MCP9700A-E MICROCHIP | Alldatasheet
Document overview
- Manufacturer or author: Provided By ALLDATASHEET.COM(FREE DATASHEET DOWNLOAD SITE)
- PDF pages: 44
Technical content
Analog & Interface Product Selector Guide Thermal Management • Motor Driver • Interface Peripherals Power Management • Linear & Mixed Signal • Safety & Security Analog & Interface Products www.microchip.com/analog
Analog & Interface Product Selector Guide Table of Contents Thermal Management Serial Output Temperature Sensors with Open Loop Fan Controllers Closed Loop Fan Controllers with SMBus/I Motor Drivers Stepper Motors, DC Motors and Power Management Linear Regulators Application Specific LDO Linear Regulators . . 10 Switching Regulators Combination Products . . . . 11 Low-Side Drivers, 0 .5A to 1 .2A Peak Low-Side Drivers, 1 .5A Peak Output Current . . 14 Low-Side Drivers, 2 .0A to 12 .0A Peak Linear Mixed Signal Successive Approximation Register (SAR) Frequency-to-Voltage/Voltage-to-Frequency Interface IEEE 802 .15 .4 ZigBee® RF Transceiver Products . 29 USB Port Power Controllers Safety & Security Part Number Designations Analog Products with “TC”, “MCP”, “RE46C”, Analog Design and Development Tools Miscellaneous Analog Demonstration Featured Analog Development Tools
3Analog & Interface Product Selector Guide Microchip’s integrated analog technology, peripherals and features are engineered to meet today’s demanding design requirements . Our broad spectrum of analog products addresses thermal management, power management, battery management, mixed-signal, linear, interface and safety & security solutions . Combined with “Intelligent Analog” microcontrollers, Microchip offers an extensive analog portfolio for thousands of high-performance design applications in the automotive, communications (wireless), consumer, computing and industrial control markets . Our broad portfolio of stand-alone analog and interface devices offers highly integrated solutions that combine various analog functions in space-saving packages and support a variety of bus interfaces . Many of these devices support functionality that enhances the analog features currently available on PIC®microcontrollers . Want a Business Partner, Not Just a Vendor? Successful companies recognize the value of a strategic supplier relationship to help them deliver innovative products to their markets in a timely manner . They trust their suppliers to furnish quality components for current design opportunities as well as provide technology road maps and innovative solutions to stay ahead of tomorrow’s design trends . Microchip Technology provides low-risk product development, lower total system cost and faster time to market to more than 45,000 of these successful companies worldwide . Headquartered in Chandler, Arizona, Microchip offers outstanding technical support along with dependable delivery and quality . Founded in 1989, Microchip’s business model is based on a series of guiding values that aim to establish successful customer partnerships by exceeding expectations for products, services and attitude . Continuous improvement, technology innovation and the pursuit of the highest quality possible drive Microchip’s company culture . The result is a worldwide organization dedicated to delivering whole product solutions which include high performance silicon devices, easy-to-use development tools, outstanding technical support and sophisticated technical documentation . Are Quality and Delivery a Concern? Microchip’s quality systems are certified according to the International Organization for Standards/Technical Specification (ISO/TS)-16949:2002 requirements . This demonstrates that the Company’s quality systems meet the most stringent industry quality-management system standards, resulting in high-quality semiconductor products . Are You Looking for Complete Analog & Interface Design Solutions? Microchip Technology’s Stand-Alone Analog & Interface Portfolio Power Management LDO & Switching Regulators Charge Pump DC/DC Converters Power MOSFET Drivers PWM Controllers System Supervisors Voltage Detectors Voltage References Li-Ion/Li-Polymer Battery Chargers Mixed-Signal A/D Converter Families Digital Potentiometers D/A Converters V/F and F/V Converters Energy Measurement ICs Current/DC Power ICs Interface CAN Peripherals Infrared Peripherals LIN Transceivers Serial Peripherals Ethernet Controllers USB Peripheral USB Port Power Controllers Linear Op Amps Instrumentation Amps Programmable Gain Amplifiers Comparators Safety & Security Photoelectric Smoke Detectors Ionization Smoke Detectors Ionization Smoke Detector Front Ends Piezoelectric Horn Drivers Thermal Management Temperature Sensors Fan Speed Controllers/ Fan Fault Detectors Motor Drive Stepper and DC 3/uni0424 Brushless DC Motor Driver Direct control over manufacturing resources allows shortened design and production cycles . By owning the wafer fabrication facilities and the majority of the test and assembly operations, and by employing proprietary statistical process control techniques, Microchip has been able to achieve and maintain high production yields . Need Additional Support and Resources? Microchip is committed to supporting its customers by helping design engineers develop products faster and more efficiently . Customers can access three main service areas at www .microchip .com . The Support area provides a fast way to get questions answered . The Sample area offers evaluation samples of any Microchip device . microchipDIRECT provides 24-hour pricing, ordering, inventory and credit for convenient purchasing of all Microchip devices and development tools . This site also features online programming capabilities . Finally, the Training area offers opportunities to expand your knowledge with Microchip’s online web seminars and hands-on courses at our worldwide Technical Training Centers . Our seminars and training classes are designed to fit your schedule and offer an overview of many product, development tool and application topics . Visit www .microchip .com/training for class content and schedules . Have you ever encountered a technical dilemma at a critical point in your design development and your supplier was not available to answer your questions? Microchip’s first ever 24/7 global technical support line brings technical support resources any time help is needed . Because some technical problems require hands-on assistance in order to be resolved quickly, Microchip has also developed a global team of field applications engineers and field sales engineers for local assistance .
Analog & Interface Product Selector Guide Thermal managemenT Thermal managemenT ProducTs: Temperature sensors Part # Typical accuracy (°c) maximum accuracy @ 25°c (°c) maximum Temperature range (°c) Vcc range (V) maximum supply current (µa) Features Packages logic output Temperature sensors TC6501 ±0.5 ±3 −55 to +125 +2.7 to +5.5 40 Cross to MAX6501, Open-drain 5-pin SOT-23A TC6502 ±0.5 ±3 −55 to +125 +2.7 to +5.5 40 Cross to MAX6502, Push-pull 5-pin SOT-23A TC6503 ±0.5 ±3 −55 to +125 +2.7 to +5.5 40 Cross to MAX6503, Open-drain 5-pin SOT-23A TC6504 ±0.5 ±3 −55 to +125 +2.7 to +5.5 40 Cross to MAX6504, Push-pull 5-pin SOT-23A TC620 ±1 ±3 −40 to +125 +4.5 to +18 400 Two resistor-programmable trip points 8-pin PDIP, 8-pin SOIC TC621 Note 1 Note 1 −40 to +85 +4.5 to +18 400 Requires external thermistor, resistor-programmable trip points 8-pin PDIP, 8-pin SOIC TC622 ±1 ±5 −40 to +125 +4.5 to +18 600 Dual output, TO-220 for heat sink mounting, resistor-programmable trip points 8-pin PDIP, 8-pin SOIC, 5-pin TO-220 TC623 ±1 ±3 −40 to +125 +2.7 to +4.5 250 Two resistor-programmable trip points 8-pin PDIP, 8-pin SOIC TC624 ±1 ±5 −40 to +125 +2.7 to +4.5 300 Dual output, resistor-programmable trip points 8-pin PDIP, 8-pin SOIC MCP9501 ±1 ±4 −40 to +125 +2.7 to +5.5 40 Active-High, Push-Pull Output, Rising Temperature Switch 5-pin SOT-23 MCP9502 ±1 ±4 −40 to +125 +2.7 to +5.5 40 Active-Low, Open Drain Output, Rising Temperature Switch 5-pin SOT-23 MCP9503 ±1 ±4 −40 to +125 +2.7 to +5.5 40 Active-High, Push-Pull Output, Falling Temperature Switch 5-pin SOT-23 MCP9504 ±1 ±4 −40 to +125 +2.7 to +5.5 40 Active-Low, Open Drain Output, Falling Temperature Switch 5-pin SOT-23 MCP9509 ±0.5 NS −40 to +125 +2.7 to +5.5 50 Resistor-programmable temperature switch 5-pin SOT-23 MCP9510 ±0.5 NS −40 to +125 +2.7 to +5.5 80 Resistor-programmable temperature switch 6-pin SOT-23 Voltage output Temperature sensors MCP9700 ±1 ±4 −40 to +125 +2.3 to +5.5 12 Linear Active Thermistor® IC, Temperature slope: 10 mV/°C 3-pin TO-92, 5-pin SC-70, 3-pin SOT-23 MCP9701 ±1 ±4 −40 to +125 +3.1 to +5.5 12 Linear Active Thermistor® IC, Temperature slope: 19.53 mV/°C, cross to MAX6612 3-pin TO-92, 5-pin SC-70, 3-pin SOT-23 MCP9700A ±1 ±2 −40 to +125 +2.3 to +5.5 12 Linear Active Thermistor® IC, Temperature slope: 10 mV/°C 3-pin TO-92, 5-pin SC-70, 3-pin SOT-23 MCP9701A ±1 ±2 −40 to +125 +3.1 to +5.5 12 Linear Active Thermistor® IC, Temperature slope: 19.53 mV/°C, cross to MAX6612 3-pin TO-92, 5-pin SC-70, 3-pin SOT-23 TC1046 ±0.5 ±2 −40 to +125 +2.7 to +4.4 60 High precision temperature-to-voltage converter, 6.25 mV/°C 3-pin SOT-23B TC1047 ±0.5 ±2 −40 to +125 +2.7 to +4.4 60 High precision temperature-to-voltage converter, 10 mV/°C 3-pin SOT-23B TC1047A ±0.5 ±2 −40 to +125 +2.5 to +5.5 60 High precision temperature-to-voltage converter, 10 mV/°C 3-pin SOT-23B serial output Temperature sensors saving one-shot temperature measurement 5-pin SOT-23 one-shot temperature measurement, multi-drop capability 8-pin MSOP, 8-pin SOIC Power-saving one-shot temperature measurement 5-pin SOT-23 Power-saving one-shot temperature measurement, Multi-drop capability 8-pin MSOP, 8-pin SOIC MCP9804 ±0.25 ±1 −40 to +125 +2.7 to +5.5 400 User programmable temperature limits with alert output, 1°C temp. accuracy from −40°C to +125°C 8-pin MSOP, 8-pin 2 × 3 DFN MCP9805 ±0.5 ±1(2) −20 to +125 +3.0 to +3.6 400 JEDEC compatible register set, SMbus/I2C compatible interface, Programmable, Shut-down modes and EVENT output 8-pin TSSOP, 8-pin 2 × 3 DFN MCP9843 ±0.5 ±1(2) −20 to +125 +3.0 to +3.6 500 Compliant to JEDEC TS2002 specification 8-pin TSSOP, 8-pin 2 × 3 DFN, 8-pin 2 × 3 TDFN MCP98242 ±0.5 ±1(2) −20 to +125 +3.0 to +3.6 400 Same temperature sensor as MCP9805 plus integrated DDR2 Serial Presence Detect EEPROM 8-pin TSSOP, 8-pin 2 × 3 DFN MCP98243 ±1 ±3 −40 to +125 +3.0 to +3.6 500 Serial output temperature sensor with integrated EEPROM 8-pin TSSOP, 8-pin 2 × 3 DFN, 8-pin 2 × 3 TDFN MCP98244 ±1 ±3 −40 to +125 +1.7 to +3.6 500 Serial output temperature sensor with integrated EEPROM 8-pin 2 × 3 TDFN note 1: These devices use an external temperature sensor. Accuracy of the total solution is a function of the accuracy of the external sensor. 2: Maximum accuracy measured at 85°C.
Analog & Interface Product Selector Guide serial output Temperature sensors (continued) Part # Typical accuracy (°c) maximum accuracy @ 25°c (°c) maximum Temperature range (°c) Vcc range (V) maximum supply current (µa) Features Packages TC77 ±0.5 ±1 −55 to +125 +2.7 to +5.5 400 SPI compatible interface, 0.0625°C temperature resolution 5-pin SOT-23A, 8-pin SOIC TC72 ±0.5 ±1 −55 to +125 +2.65 to +5.5 400 SPI compatible interface, Power-saving one-shot temperature measurement, 0.25°C temperature resolution 8-pin MSOP, 8-pin 3 × 3 DFN TC74 ±0.5 ±2 −40 to +125 +2.7 to +5.5 350 SMbus/I2C compatible interface, 1°C temperature resolution 5-pin SOT-23A, 5-pin TO-220 TCN75A ±0.5 ±2 −40 to +125 +2.7 to +5.5 500 SMbus/I2C compatible interface, power-saving one-shot temperature measurement, multi-drop capability, 0.0625°C to 0.5°C adjustable temperature resolution 8-pin MSOP, 8-pin SOIC TCN75 ±0.5 ±2 −55 to +125 +2.7 to +5.5 1,000(3) SMbus/I2C compatible interface, multi-drop capability, interrupt output, 0.5°C temperature resolution 8-pin MSOP, 8-pin SOIC serial output Temperature sensors with remote diode monitors Part # # of remote Temp. sensors Typical accuracy (°c) maximum accuracy @ 25°c (°c) maximum Temperature range (°c) ambient Temp. sensor alert/ Therm hardware shutdown Vcc range (V) Typical supply current (µa) description and additional Features Packages EMC1033 2 ±1.0 ±3 −40 to +125 1 2 – 3.0–3.6 50 Triple SMBus/I2C™ Sensor with Resistance Error Correction 8-pin MSOP EMC1043 2 ±0.5 ±1.0 −40 to +125 1 – – 3.0–3.6 105 Triple SMBus/I2C Sensor with Resisitance Error Correction, Beta Compensation and Hotter of Two Zones 8-pin MSOP EMC1046 5 ±0.25 ±1.0 −40 to +125 1 – – 3.0–3.6 395 Sextuple SMBus/I2C Sensor with Resisitance Error Correction, Beta Compensation and Hottest of Thermal Zones 10-pin MSOP EMC1047 6 ±0.25 ±1.0 −40 to +125 1 – – 3.0–3.6 395 Septuple SMBus/I2C Sensor with Resisitance Error Correction, Beta Compensation and Hottest of Thermal Zones 10-pin MSOP EMC1053 2 ±0.5 ±1.0 −40 to +125 1 – – 3.0–3.6 105 Triple SMBus/I2C Sensor with Resistance Error Correction and Hotter of Two Zones 8-pin MSOP EMC1063 2 ±0.5 ±1.0 −40 to +125 1 – 3.0–3.6 105 Triple SMBus/I2C Sensor with Hotter of Two Zones 8-pin MSOP EMC1072 1 ±0.25 ±1.0 −40 to +125 1 2 – 3.0–3.6 430 Dual SMBus/I2C Sensor with Selectable Address 8-pin MSOP EMC1073 2 ±0.25 ±1.0 −40 to +125 1 2 – 3.0–3.6 430 Triple SMBus/I2C Sensor with Selectable Address 10-pin MSOP EMC1074 3 ±0.25 ±1.0 −40 to +125 1 2 – 3.0–3.6 430 Quad SMBus/I2C Sensor with Selectable Address 10-pin MSOP EMC1412 1 ±0.25 ±1.0 −40 to +125 1 2 – 3.0–3.6 430 Dual SMBus/I2C Sensor with Resisitance Error Correction, Beta Compensation and Selectable Address 8-pin TDFN, 8-pin MSOP EMC1413 2 ±0.25 ±1.0 −40 to +125 1 2 – 3.0–3.6 430 Triple SMBus/I2C Sensor with Resisitance Error Correction, Beta Compensation and Selectable Address 10-pin DFN, 10-pin MSOP EMC1414 3 ±0.25 ±1.0 −40 to +125 1 2 – 3.0–3.6 430 Quad SMBus/I 2C Sensor with Resisitance Error Correction, Beta Compensation and Selectable Address 10-pin MSOP, 10-pin DFN EMC1422 1 ±0.25 ±1.0 −40 to +125 1 1 1 3.0–3.6 430 Dual SMBus/I 2C Sensor with Resisitance Error Correction, Beta Compensation and Resistor Settable Hardware Thermal Shutdown 8-pin MSOP EMC1423 2 ±0.25 ±1.0 −40 to +125 1 1 1 3.0–3.6 430 Triple SMBus/I2C Sensor with Resisitance Error Correction, Beta Compensation and Resistor Settable Hardware Thermal Shutdown 10-pin MSOP EMC1424 3 ±0.25 ±1.0 −40 to +125 1 1 1 3.0–3.6 430 Quad SMBus/I2C Sensor with Resisitance Error Correction, Beta Compensation and Resistor Settable Hardware Thermal Shutdown 10-pin MSOP EMC1428 7 ±0.25 ±1.0 −40 to +125 1 1 1 3.0–3.6 450 Octal SMBus/I2C Sensor Resisitance Error Correction, Beta Compensation and Resistor Settable Hardware Thermal Shutdown & Hottest of Thermal Zones 16-pin QFN note 1: These devices use an external temperature sensor. Accuracy of the total solution is a function of the accuracy of the external sensor. 2: Maximum accuracy measured at 85°C. 3: TCN75 idle current is 250 mA. This device also has a Software Shutdown mode that reduces supply current to < 1 mA.
Analog & Interface Product Selector Guide Thermal managemenT ProducTs: open loop Fan controllers and Fan Fault detectors Part # description # of Temp. monitors Typical accuracy (°c) maximum accuracy @ 25°c (°c) maximum Temperature range (°c) Vcc range (V) maximum supply current (µa) Features Packages EMC2101 Single SMBus I2C™ Fan Manager 2 ±0.5 ±1 −40 to +125 +3.0 to +3.6 1,000 Fan Controller with high frequency PWM driver, programmable fan speed table and alert 8-pin MSOP, 8-pin SOIC EMC2300 Triple SMBus I2C Fan Manager 3 ±0.25 ±3 −0 to +70 +3.0 to +3.6 3,000 Fan Controller with high frequency PWM driver, programmable fan speed table, voltage monitors, alert 16-pin SSOP EMC6D103S Triple SMBus I Fan Manager 3 ±0.25 ±3 −0 to +70 +3.0 to +3.6 3,000 Fan Controller with high frequency PWM driver, programmable fan speed table, voltage monitors, alert 24-pin SSOP1 TC642 Fan Manager 1 Note 1 Note 1 −40 to +85 +3.0 to +5.5 1,000 FanSense™ Fan Monitor, Minimum fan speed control 8-pin PDIP, 8-pin SOIC, 8-pin MSOP TC642B Fan Manager 1 Note 1 Note 1 −40 to +85 +3.0 to +5.5 400 FanSense Fan Monitor, Minimum fan speed control, Fan auto-restart 8-pin PDIP, 8-pin SOIC, 8-pin MSOP TC646 Fan Manager 1 Note 1 Note 1 −40 to +85 +3.0 to +5.5 1,000 FanSense Fan Monitor, Auto-shutdown 8-pin PDIP, 8-pin SOIC, 8-pin MSOP TC646B Fan Manager 1 Note 1 Note 1 −40 to +85 +3.0 to +5.5 400 FanSense Fan Monitor, Auto-shutdown, Fan auto-restart 8-pin PDIP, 8-pin SOIC, 8-pin MSOP TC647 Fan Manager 1 Note 1 Note 1 −40 to +85 +3.0 to +5.5 1,000 FanSense Fan Monitor, Minimum fan speed control 8-pin PDIP, 8-pin SOIC, 8-pin MSOP TC647B Fan Manager 1 Note 1 Note 1 −40 to +85 +3.0 to +5.5 400 FanSense Fan Monitor, Minimum fan speed control, Fan auto-restart 8-pin PDIP, 8-pin SOIC, 8-pin MSOP TC648 Fan Manager 1 Note 1 Note 1 −40 to +85 +3.0 to +5.5 1,000 Overtemperature alert, Auto-shutdown 8-pin PDIP, 8-pin SOIC, 8-pin MSOP TC648B Fan Manager 1 Note 1 Note 1 −40 to +85 +3.0 to +5.5 400 Overtemperature alert, Auto-shutdown, Fan auto-restart 8-pin PDIP, 8-pin SOIC, 8-pin MSOP TC649 Fan Manager 1 Note 1 Note 1 −40 to +85 +3.0 to +5.5 1,000 FanSense Fan Monitor, Auto-shutdown 8-pin PDIP, 8-pin SOIC, 8-pin MSOP TC649B Fan Manager 1 Note 1 Note 1 −40 to +85 +3.0 to +5.5 400 FanSense Fan Monitor, Auto-shutdown, Fan auto-restart 8-pin PDIP, 8-pin SOIC, 8-pin MSOP TC650 Fan Manager 1 ±1 ±3 −40 to +125 +2.8 to +5.5 90 Overtemperature alert 8-pin MSOP TC651 Fan Manager 1 ±1 ±3 −40 to +125 +2.8 to +5.5 90 Overtemperature alert, Auto-shutdown 8-pin MSOP TC652 Fan Manager 1 ±1 ±3 −40 to +125 +2.8 to +5.5 90 FanSense Fan Monitor, Overtemperature alert 8-pin MSOP TC653 Fan Manager 1 ±1 ±3 −40 to +125 +2.8 to +5.5 90 FanSense Fan Monitor, Overtemperature alert, Auto-shutdown 8-pin MSOP TC654 Dual SMbus Fan Manager 1 Note 1 Note 1 −40 to +85 +3.0 to +5.5 320 FanSense Fan Monitor, RPM data 10-pin MSOP TC655 Dual SMbus Fan Manager 1 Note 1 Note 1 −40 to +85 +3.0 to +5.5 320 FanSense Fan Monitor, RPM data, Overtemperature alert 10-pin MSOP TC664 Single SMbus Fan Manager 1 Note 1 Note 1 −40 to +85 +3.0 to +5.5 320 FanSense Fan Monitor, RPM data 10-pin MSOP TC665 Single SMbus Fan Manager 1 Note 1 Note 1 −40 to +85 +3.0 to +5.5 320 FanSense Fan Monitor, RPM data, Overtemperature alert 10-pin MSOP TC670 Predictive Fan Fault Detector 1 N/A N/A −40 to +85 +3.0 to +5.5 150 FanSense Fan Monitor, Programmable threshold 6-pin SOT-23 note 1: These devices use an external temperature sensor. Accuracy of the total solution is a function of the accuracy of the external sensor. Thermal managemenT ProducTs: closed loop Fan controllers with smBus/I2c™ Interface Part # # of Fan drivers PWm/linear control # of remote Temp. monitors ambient Temp. sensor Typical accuracy (°c) maximum accuracy @ 25°c (°c) maximum Temperature range (°c) Vcc range (V) smBus alert system shutdown Voltage monitors description Packages EMC2112 1 Linear 3 1 ±0.25 ±1.0 0 to +85 +3.3 and +5 Yes Yes No RPM-Based Fan Controller with HW Thermal Shutdown 20-pin QFN EMC2103-1 1 PWM 1 1 ±0.5 ±1.0 −40 to +125 +3.0 to +3.6 Yes Yes No RPM-Based Fan Controller with Hardware Thermal Shutdown 12-pin QFN EMC2103-2 1 PWM 3 1 ±0.5 ±1.0 −40 to +125 +3.0 to +3.6 Yes Yes No RPM-Based Fan Controller with Hardware Thermal Shutdown 16-pin QFN EMC2103-4 1 PWM 3 1 ±0.5 ±1.0 −40 to +125 +3.0 to +3.6 Yes Yes No RPM-Based Fan Controller with Hardware Thermal Shutdown and EEPROM loadable 16-pin QFN EMC2104 2 PWM 4 1 ±0.25 ±1.0 −40 to +85 +3.0 to +3.6 Yes Yes Yes Dual RPM-Based PWM Fan Controller with Hardware Thermal Shutdown 20-pin QFN EMC2105 1 Linear 4 1 ±0.25 ±1.0 −40 to +85 +3.3 and +5.0 Yes Yes Yes RPM-Based High Side Fan Controller with Hardware Thermal Shutdown 20-pin QFN
Analog & Interface Product Selector Guide Thermal managemenT ProducTs: closed loop Fan controllers with smBus/I2c™ Interface (continued) Part # # of Fan drivers PWm/linear control # of remote Temp. monitors ambient Temp. sensor Typical accuracy (°c) maximum accuracy @ 25°c (°c) maximum Temperature range (°c) Vcc range (V) smBus alert system shutdown Voltage monitors description Packages EMC2106 2 PWM and Linear 4 1 ±0.25 ±1.0 −40 to +85 +3.3 and +5.0 Yes Yes Yes RPM-Based High Side Fan Controller with Hardware Thermal Shutdown EMC2113 1 PWM 3 1 ±0.5 ±1.0 −40 to +125 +3.0 to +3.6 Yes Yes No Single RPM-Based Fan Controller with Multiple Temperature Zones & Hardware Thermal Shutdown 16-pin QFN EMC2301 1 PWM N/A N/A N/A N/A −40 to +125 +3.0 to +3.6 Yes No N/A Single RPM-Based PWM Fan Speed Controller 8-pin MSOP EMC2302 2 PWM N/A N/A N/A N/A −40 to +125 +3.0 to +3.6 Yes No N/A Dual RPM-Based PWM Fan Speed Controller 10-pin MSOP EMC2303 3 PWM N/A N/A N/A N/A −40 to +125 +3.0 to +3.6 Yes No N/A Triple RPM-Based PWM Fan Speed Controller 12-pin QFN EMC2305 5 PWM N/A N/A N/A N/A −40 to +125 +3.0 to +3.6 Yes No N/A Penta RPM-Based PWM Fan Speed Controller 16-pin QFN mOTOr DrIVerS moTor drIVer ProducTs: stepper motors, dc motors and 3-Phase Bldc motors Part # motor Type Input Voltage range (V) Internal/ external FeTs output current (ma) control scheme motor speed output Protections Temperature operating range (°c) Features Packages MTS62C19A One Bipolar Stepper Motor or Two DC Motors 10.0 to 40.0 Internal 750 Direct PWM Input, Current Limit Control, Microstepping No Overtemperature, Under Voltage −40 to +105 Dual Full Bridge Motor Driver for Stepper Motors, Pin compatible with Allegro 6219 24-pin SOIC MTS2916A One Bipolar Stepper Motor or Two DC Motors 10.0 to 40.0 Internal 750 Direct PWM Input, Current Limit Control, Microstepping No Overtemperature, Under Voltage −40 to +105 Dual Full Bridge Motor Driver for Stepper Motors, Pin compatible with Allegro 2916 24-pin SOIC MTD6501C 3-Phase Brushelss DC Motor 2.0 to 14.0 Internal 800 Sensorless Sinusoidal Frequency Generator Overtemperature, Motor Lock-up, Overcurrent, Overvoltage −30 to +95 3-Phase BLDC 180° Sinusoidal Sensorless Fan Motor Driver, Overcurrent limitation, Output Switching Frequency at 20 kHz Thermally Enhanced 8-pin SOP MTD6501D 3-Phase Brushelss DC Motor 2.0 to 14.0 Internal 500 Sensorless Sinusoidal Frequency Generator Overtemperature, Motor Lock-up, Overcurrent, Overvoltage −30 to +95 3-Phase BLDC 180° Sinusoidal Sensorless Fan Motor Driver, Boost Mode, Overcurrent limitation, Output Switching Frequency at 20 kHz 10-pin MSOP MTD6501G 3-Phase Brushelss DC Motor 2.0 to 14.0 Internal 800 Sensorless Sinusoidal Frequency Generator Overtemperature, Motor Lock-up, Overcurrent, Overvoltage −30 to +95 3-Phase BLDC 180° Sinusoidal Sensorless Fan Motor Driver, Overcurrent limitation, Output Switching Frequency at 23 kHz Thermally Enhanced 8-pin SOP MTD6502B 3-Phase Brushelss DC Motor 2.0 to 5.5 Internal 750 Sensorless Sinusoidal Frequency Generator Overtemperature, Motor Lock-up, Overcurrent, Overvoltage −40 to +125 3-Phase BLDC Sinusoidal Sensorless Fan Motor Driver, Direction control, Overcurrent limitation, Output Switching Frequency at 30 kHz 10-pin 3 × 3 TDFN MTD6505 3-Phase Brushelss DC Motor 2.0 to 5.5 Internal 750 Sensorless Sinusoidal Frequency Generator Overcurrent, Overvoltage, Overtemperature, Motor Lock-up −40 to +125 180° Sinusoidal Sensorless Drive, Direction Control, Programmable BEMF Coefficient Range, Output Switching Frequency at 30 kHz 10-pin 3 × 3 UDFN POWer managemenT PoWer managemenT: Voltage references Part # Vcc range (V) output Voltage (V) max. load current (ma) Initial accuracy (max.%) Temperature coefficient (ppm/°c) maximum supply current (µa @ 25°c) Packages MCP1525 2.7 to 5.5 2.5 ±2 ±1 50 100 3-pin TO-92, 3-pin SOT-23B MCP1541 4.3 to 5.5 4.096 ±2 ±1 50 100 3-pin TO-92, 3-pin SOT-23B
Analog & Interface Product Selector Guide PoWer managemenT: linear regulators Part # max. Input Voltage (V) output Voltage (V) output current (ma) Junction Temperature range (°c) Typical active current (µa) Typical dropout Voltage @ max. Iout (mV) Typical output Voltage accuracy (%) Features Packages 50 ma to 250 ma low-dropout linear regulators Shutdown, Reference bypass input 5-pin SOT-23A Shutdown, Error output 5-pin SOT-23A TC1070 6.0 1.23 → V in 50 −40 to +125 50 85 – Shutdown, Adjustable 5-pin SOT-23A Error output 6-pin SOT-23A MCP1790 30 3.0, 3.3, 5.0 70 −40 to +125 70 500 ±0.2 Ceramic output capacitor stable 3-pin SOT-223, 3-pin DDPAK MCP1791 30 3.0, 3.3, 5.0 70 −40 to +125 70 500 ±0.2 Ceramic output capacitor stable, Shutdown, Power good 5-pin SOT-223, 5-pin DDPAK Shutdown 5-pin SC-70, 5-pin SOT-23A Shutdown, Reference bypass input 5-pin SOT-23A Shutdown, Error output 5-pin SOT-23A TC1071 6.0 1.23 → V in 100 −40 to +125 50 180 – Shutdown, Adjustable 5-pin SOT-23A Error output 6-pin SOT-23A Shutdown, Reference bypass input 5-pin SOT-23A Shutdown, Error output 5-pin SOT-23A TC1187 6.0 1.23 → Vin 150 −40 to +125 50 270 – Shutdown, Adjustable 5-pin SOT-23A Shutdown 5-pin SOT-23A, 5-pin SC-70 5-pin SOT-223, 8-pin 2 × 3 TDFN 3-pin SOT-223, 8-pin 2 × 3 TDFN Shutdown, High PSRR 5-pin SOT-23A
Analog & Interface Product Selector Guide PoWer managemenT: linear regulators (continued) Part # max. Input Voltage (V) output Voltage (V) output current (ma) Junction Temperature range (°c) Typical active current (µa) Typical dropout Voltage @ max. Iout (mV) Typical output Voltage accuracy (%) Features Packages 50 ma to 250 ma low-dropout linear regulators (continued) MCP1804 28 1.8 to 18 150 −40 to +85 50 1300 ±2 Shutdown, High PSRR 5-pin SOT-23, 5-pin SOT-89, 3-pin SOT-89, 3-pin SOT-223 Short-circuit protection 3-pin TO-92, 3-pin SOT-23A, 3-pin SOT-89 4.0, 5.0 250 −40 to +125 2 650 ±0.4 Ceramic output capacitor stable, Ultra-low ground current, 13.2V V in max. 3-pin TO-92, 3-pin SOT-23A, 3-pin SOT-89 4.0, 5.0 250 −40 to +125 2 650 ±0.4 Ceramic output capacitor stable, Ultra-low ground current, 16V V in max. 3-pin SOT-23A, 3-pin SOT-89, 3-pin SOT-223 4.0, 5.0 250 −40 to +125 2 650 ±0.4 Ceramic output capacitor stable, Ultra- low ground current 3-pin SOT--23A, 3-pin SOT-89, 3-pin SOT-223, 8-pin 2 × 3 DFN 300 ma low-dropout linear regulators Error output 8-pin MSOP, 8-pin SOIC TC1174 6.0 1.23 → Vin 300 −40 to +125 50 240 – Shutdown, Reference bypass input, Adjustable 8-pin MSOP, 8-pin SOIC Shutdown, High PSRR 5-pin SOT-23A MCP1824 6.0 Adjustable: 0.8 to 5.0 300 −40 to +125 120 200 ±0.5 Ceramic output capacitor stable, Shutdown, Power good 5-pin SOT-223, 5-pin SOT-23 500 ma to 800 ma low-dropout linear regulators Overcurrent protection 3-pin TO-220, 3-pin DDPAK, 3-pin SOT-223 Error output 8-pin SOIC, 5-pin TO-220, 5-pin DDPAK TC1268 6.0 2.5 500 −40 to +125 80 350 ±0.5 Shutdown, Reference bypass input, Error output 8-pin SOIC Shutdown, C delay, Power good 8-pin 2 × 3 DFN, 8-pin SOIC Adjustable: 0.8 to 5.0 500 −40 to +125 120 210 ±0.5 Ceramic output capacitor stable, Shutdown, Power good 5-pin TO-220, 5-pin DDPAK, 5-pin SOT-223 3-pin SOT-223 Overcurrent protection 3-pin TO-220, 3-pin DDPAK, 3-pin SOT-223 Error output 8-pin SOIC, 5-pin TO-220, 5-pin DDPAK Overcurrent protection 3-pin SOT-223, 3-pin DDPAK
Analog & Interface Product Selector Guide PoWer managemenT: linear regulators (continued) Part # max. Input Voltage (V) output Voltage (V) output current (ma) Junction Temperature range (°c) Typical active current (µa) Typical dropout Voltage @ max. Iout (mV) Typical output Voltage accuracy (%) Features Packages 1a and above low-dropout linear regulators Adjustable: 0.8 to 5.0 1000 −40 to +125 140 300 ±0.4 Ceramic output capacitor stable, Shutdown, C delay, Power good 8-pin 3 × 3 DFN, 8-pin SOIC Adjustable: 0.8 to 5.0 1000 −40 to +125 140 300 ±0.5 Ceramic output capacitor stable, Shutdown, Power good 5-pin TO-220, 5-pin DDPAK, 5-pin SOT-223 3-pin SOT-223 Adjustable: 0.8 to 5.0 1500 −40 to +125 140 330 ±0.5 Ceramic output capacitor stable, Shutdown, C delay, Power good 8-pin 3 × 3 DFN, 8-pin SOIC Adjustable: 0.8 to 5.0 1500 −40 to +125 140 330 ±0.5 Ceramic output capacitor stable, Shutdown, Power good 5-pin DDPAK, 5-pin TO-220 application specific low-dropout linear regulators TC1266 6.0 3.3 200 −5 to +70 230 200 ±1.0 PCI compliant 8-pin SOIC, 8-pin MSOP TC1267 6.0 3.3 400 −5 to +70 230 300 ±1.0 PCI compliant 5-pin DDPAK TC57 8 2.5, 3.0, 3.3 4,000(1) −40 to +85 50 100(1) ±2.0 Shutdown, External transistor 5-pin SOT-23A TC59 −10 −3.0, −5.0 100 −40 to +85 3 380 ±0.5 Negative LDO 3-pin SOT-23A note 1: Depending on external transistor configuration. PoWer managemenT: low-dropout regulator combination Products LDO plus Reset output 8-pin MSOP TC1301A LDO2: 1.5–3.3 LDO1: 300 LDO2: 150 −40 to +125 103 LDO1: 104 LDO2: 150 ±0.5 Dual LDO plus Reset output, Shutdown, Reference bypass, Voltage detect 8-pin MSOP, 8-pin 3 × 3 DFN TC1301B LDO2: 1.5–3.3 LDO1: 300 LDO2: 150 −40 to +125 114 LDO1: 104 LDO2: 150 ±0.5 Dual LDO plus Reset, per channel output shutdown, Reference bypass 8-pin MSOP, 8-pin 3 × 3 DFN TC1302A LDO2: 1.5–3.3 LDO1: 300 LDO2: 150 −40 to +125 103 LDO1: 104 LDO2: 150 ±0.5 Dual LDO, Output shutdown reference bypass, Voltage detect 8-pin MSOP, 8-pin 3 × 3 DFN TC1302B LDO2: 1.5–3.3 LDO1: 300 LDO2: 150 −40 to +125 114 LDO1: 104 LDO2: 150 ±0.5 Dual LDO, per channel output shutdown, Reference bypass 8-pin MSOP, 8-pin 3 × 3 DFN TC1305 6.0 2.5, 2.8, 3.0 150 (1) −40 to +125 120 240 ±0.5 Dual LDO plus Reset output, Reference bypass input, Shutdown, Select Mode™ selectable output voltages 10-pin MSOP TC1306 6.0 1.8, 2.8, 3.0 150 (1) −40 to +125 120 240 ±0.5 Dual LDO plus Reset output, Shutdown, Select Mode™ selectable output voltages 8-pin MSOP TC1307 Quad LDO plus Reset output, Shutdown, Select Mode™ selectable output voltages 16-pin QSOP note 1: LDOs with shutdown (except Power Management Combination Products as indicated) have typical shutdown currents of 0.05 mA. PoWer managemenT: switching regulators Part # description Input Voltage range (V) output Voltage (V) operating Temperature range (°c) control scheme switching Frequency (khz) Typical active current (µa) output current (ma) Features Packages MCP1601 Synchronous Buck Regulator 2.7 to 5.5 0.9V to Vin −40 to +85 PFM/PWM/LDO 750 825 (PWM) 125 (PFM) 500 UVLO, Auto-switching, LDO 8-pin MSOP MCP1602 Synchronous Buck Regulator 2.7 to 5.5 0.8 to 4.5 −40 to +85 PFM/PWM 2000 35 500 PFM, PWM auto-switching, UVLO, Soft start, Power good indicator 10-pin MSOP, 10-pin 3 × 3 DFN MCP1603 Synchronous Buck Regulator 2.7 to 5.5 0.8 to 4.0 −40 to +85 PFM/PWM 2000 45 500 Overtemperature and Overcurrent protection 5-pin TSOT-23, 8-pin 2 × 3 DFN
Analog & Interface Product Selector Guide PoWer managemenT: switching regulators (continued) Part # description Input Voltage range (V) output Voltage (V) operating Temperature range (°c) control scheme switching Frequency (khz) Typical active current (µa) output current (ma) Features Packages MCP1612 Synchronous Buck Regulator 2.7 to 5.5 0.8 to 5.5 −40 to +85 Constant frequency, PWM 1400 5000 1000 Overall efficiency > 94%, Soft start, Overtemperature and Overcurrent protection 8-pin MSOP, 8-pin 3 × 3 DFN MCP1623/4 Step-up DC/DC Regulator 0.65 to 6 2.0 to 5.5 −40 to +85 PWM or PWM/PFM 500 19 175 Integrated synchronous boost regulator, 0.65V start-up voltage, Soft start, True load disconnect 6-pin SOT-23, 8-pin 2 × 3 DFN MCP1640/B/C/D Step-up DC/DC Regulator 0.65 to 6 2.0 to 5.5 −40 to +85 PWM or PWM/PFM 500 19 350 Integrated synchronous boost regulator, 0.65V start-up voltage, Soft start, True load disconnect or input-to-output bypass option 6-pin SOT-23, 8-pin 2 × 3 DFN MCP1650 Step-up DC/DC Controller 2.7 to 5.5 2.5 to ext. tx limited −40 to +125 Constant frequency 750 120 560/440 2 duty cycles for min. and max. loads, Shutdown control, UVLO, Soft start 8-pin MSOP MCP1651 Step-up DC/DC Controller 2.7 to 5.5 2.5 to ext. tx limited −40 to +125 Constant frequency, 2 fixed DC 750 120 560/440 2 duty cycles for min. and max. loads, Shutdown control, low battery detect, UVLO, Soft start 8-pin MSOP MCP1652 Step-up DC/DC Controller 2.7 to 5.5 2.5 to ext. tx limited −40 to +125 Constant frequency, 2 fixed DC 750 120 560/440 2 duty cycles for min. and max. loads, Shutdown control, Power good indicator, UVLO, Soft start 8-pin MSOP MCP1653 Step-up DC/DC Controller 2.7 to 5.5 2.5 to ext. tx limited −40 to +125 Constant frequency, 2 fixed DC 750 120 560/440 2 duty cycles for min. and max. loads, Shutdown control, Low battery detect, Power good indicator, UVLO, Soft start 10-pin MSOP MCP16301 30V Input Buck Regulator 4.0 to 30 2.0 to 15 −40 to +85 PWM 500 2000 600 Integrated N-channel, UVLO, Soft start, Overtemperature protection SOT23-6 MCP16321 Synchronous Buck Regulator 6 to 24 0.9 to 5 −40 to +125 PWM/PFM 1000 2300 1000 Integrated switches, Internal compensation, Peak current mode control, Soft-start, UVLO, Power good pin 16-pin 3 × 3 QFN MCP16322 Synchronous Buck Regulator 6 to 24 0.9 to 5 −40 to +125 PWM/PFM 1000 2300 2000 Integrated switches, Internal compensation, Peak current mode control, Soft-start, UVLO, Power good pin 16-pin 3 × 3 QFN MCP16323 Synchronous Buck Regulator 6 to 18 0.9 to 5 −40 to +125 PWM/PFM 1000 2300 3000 Integrated switches, Internal compensation, Peak current mode control, Soft-start, UVLO, Power good pin 16-pin 3 × 3 QFN TC105 Step-down DC/DC Controller 2.2 to 10 3.0, 3.3, 5.0 −40 to +85 PFM/PWM 300 57 1,000 Low power shutdown mod 5-pin SOT-23A TC115 Step-up DC/DC Regulator 0.9 to 10 3.0, 3.3, 5.0 −40 to +85 PFM/PWM 100 80 140 Feedback voltage sensing, Low power shutdown mode 5-pin SOT-89 TC110 Step-up DC/DC Controller 2.0 to 10 3.0, 3.3, 5.0 −40 to +85 PFM/PWM 100/300 50/120 300 Soft start, Low power shutdown mode 5-pin SOT-23A PoWer managemenT: switching regulators combination Products TC1303 Synchronous Buck Regulator, LDO w/ Power good 2.7 to 5.5 DC/DC: 0.8 to 4.5 LDO: 1.5 to 3.3 −40 to +85 PFM/PWM 2000 65/600 DC/DC: 500 mA LDO: 300 mA PFM/PWM auto-switching, Power good output 10-pin MSOP, 10-pin 3 × 3 DFN TC1304 Synchronous Buck Regulator, LDO 2.7 to 5.5 DC/DC: 0.8 to 4.5 LDO: 1.5 to 3.3 −40 to +85 PFM/PWM 2000 65/600 DC/DC: 500 mA LDO: 300 mA PFM/PWM auto-switching, Power sequencing 10-pin MSOP, 10-pin 3 × 3 DFN TC1313 Synchronous Buck Regulator, LDO 2.7 to 5.5 DC/DC: 0.8 to 4.5 LDO: 1.5 to 3.3 −40 to +85 PFM/PWM 2000 65/600 DC/DC: 500 mA LDO: 300 mA PFM/PWM auto-switching 10-pin MSOP, 10-pin 3 × 3 DFN PoWer managemenT: PWm controllers Part # description Input Voltage range (V) operating Temp. range (°c) switching Frequency (khz) Typical active current (ma) Features Packages MCP1630 Current mode, high-speed PWM to use with PIC® MCUs 3.0 to 5.5 −40 to +125 1000 2.8 UVLO, Short circuit and Overtemperature protection, Integrated MOSFET driver 8-pin MSOP, 8-pin 2 × 3 DFN MCP1630V Voltage mode, high-speed PWM to use with PIC MCUs 3.0 to 5.5 −40 to +125 1000 2.8 UVLO, Short circuit and Overtemperature protection, Integrated MOSFET driver 8-pin MSOP, 8-pin 2 × 3 DFN MCP1631 Current mode, high-speed PWM to use with PIC MCUs 3.0 to 5.5 −40 to +125 2000 3.7 UVLO, Integrated error, Current and voltage sense amplifiers, Overvoltage comparator and MOSFET driver 20-pin SSOP, 20-pin TSSOP, 20-pin 4 × 4 QFN MCP1631HV Current mode, high-speed PWM to use with PIC MCUs 3.5 to 16 −40 to +125 2000 3.7 Integrated 16V LDO, UVLO, Integrated error, Current and voltage sense amplifiers, Overvoltage comparator and MOSFET driver 20-pin SSOP, 20-pin TSSOP MCP1631V Voltage mode, high-speed PWM to use with PIC MCUs 3.0 to 5.5 −40 to +125 2000 3.7 UVLO, Integrated error, Current and voltage sense amplifiers, Overvoltage comparator and MOSFET driver 20-pin SSOP, 20-pin TSSOP, 20-pin 4 × 4 QFN MCP1631VHV Voltage mode, high-speed PWM to use with PIC MCUs 3.5 to 16 −40 to +125 2000 3.7 Integrated 16V LDO, UVLO, Integrated error, Current and voltage sense amplifiers, Overvoltage comparator and MOSFET driver 20-pin SSOP, 20-pin TSSOP MCP19035 Synchronous Buck PWM Controller with Integrated MOSFET Driver Family 4.5 to 30 −40 to +125 300 6 Multiple dead-time options for low-FOM MOSFET compatibility, Integrated current sense capability for short circuit protection, Integrated synchronous MOSFET driver and linear voltage regulator 10-pin 3 × 3 DFN
Analog & Interface Product Selector Guide PoWer managemenT: charge Pump dc-to-dc converters Part # Input Voltage range (V) output Voltage (V) operating Temp. range (°c) maximum Input current(1) (µa) Typical active output current (ma) Features Packages Inverting or doubling charge Pumps TC1044S 1.5 to 12 Vout = −Vin or Vout = 2 Vin −40 to +85 160 20 85 kHz oscillator, Boost mode 8-pin PDIP, 8-pin SOIC TC7660 1.5 to 10 Vout = −Vin or Vout = 2 Vin −40 to +85 180 20 10 kHz oscillator 8-pin PDIP, 8-pin SOIC TC7660H 1.5 to 10 Vout = −Vin or Vout = 2 Vin −40 to +85 1,000 20 120 kHz oscillator 8-pin PDIP, 8-pin SOIC TC7660S 1.5 to 12 Vout = −Vin or Vout = 2 Vin −40 to +85 160 20 45 kHz oscillator, Boost mode 8-pin PDIP, 8-pin SOIC TC7662B 1.5 to 15 Vout = −Vin or Vout = 2 Vin −40 to +85 180 20 35 kHz oscillator, Boost mode 8-pin PDIP, 8-pin SOIC TC1240 2.5 to 4.0 Vout = 2 Vin −40 to +85 900 40 Shutdown, 160 kHz oscillator 6-pin SOT-23A TC1240A 2.5 to 5.5 Vout = 2 Vin −40 to +85 900 40 Shutdown, 160 kHz oscillator 6-pin SOT-23A TC7662A 3.0 to 18 Vout = −Vin or Vout = 2 Vin −40 to +85 200 40 12 kHz oscillator 8-pin PDIP, 8-pin SOIC TC962 3.0 to 18 Vout = −Vin or Vout = 2 Vin −40 to +85 200 80 Selectable 12 kHz or 24 kHz oscillator 8-pin PDIP, 16-pin SOIC Inverting and doubling charge Pumps TC682 2.4 to 5.5 Vout = −2 Vin −40 to +85 400 10 12 kHz oscillator 8-pin PDIP, 8-pin SOIC regulated charge Pumps MCP1252 2.1/2.7 to 5.5 2.0 to 5.5 Selectable 3.3V or 5.0V or Adjustable 1.5V to 5.5V −40 to +85 120 120 mA for Vin > 3.0V Power good output, 650 kHz oscillator 8-pin MSOP MCP1253 2.1/2.7 to 5.5 2.0 to 5.5 Selectable 3.3V or 5.0V or Adjustable 1.5V to 5.5V −40 to +85 120 120 mA for Vin > 3.0V Power good output, 1 MHz oscillator 8-pin MSOP MCP1256 1.8 to 3.6 3.3 −40 to +85 100 100 Power good, Sleep mode 10-pin MSOP, 10-pin 3 × 3 DFN MCP1257 1.8 to 3.6 3.3 −40 to +85 100 100 Sleep mode, Low battery indication 10-pin MSOP, 10-pin 3 × 3 DFN MCP1258 1.8 to 3.6 3.3 −40 to +85 100 100 Power good output, Input/output bypass 10-pin MSOP, 10-pin 3 × 3 DFN MCP1259 1.8 to 3.6 3.3 −40 to +85 100 100 Low battery indication, Input/output bypass 10-pin MSOP, 10-pin 3 × 3 DFN note 1: Measured at Vdd = 5.0V at 25°C and no load. PoWer managemenT: cPu/system supervisors Part # Vcc range (V) operating Temp. range (°c) nominal reset Voltage (V) reset Type output Typical reset Pulse Width (ms) Typical supply current (µa) additional Features Packages Bond options 2.63, 2.32, 1.9 Active-Low CMOS Push-Pull 120 1 3-pin SOT-23B, 3-pin SC-70, 3-pin TO-92 N/A 2.63, 2.32, 1.9 Active-Low CMOS Push-Pull 120 1 Max. 809 Pinout 3-pin SOT-23B, 3-pin SC-70, 3-pin TO-92 N/A 2.63, 2.32, 1.9 Active-Low Open-Drain 120 1 3-pin SOT-23B, 3-pin SC-70, 3-pin TO-92 N/A 2.63, 2.32, 1.9 Active-Low Open-Drain 120 1 100 kW Internal Pull-up Resistor 3-pin SOT-23B, 3-pin SC-70, 3-pin TO-92 N/A MCP1316 1.0 to 5.5 −40 to +125 4.6, 2.9 (1) Active-Low CMOS Push-Pull 200 5 Watchdog Input (WDI), Time-out = 1.6 sec., Manual Reset 5-pin SOT-23 N/A MCP1317 1.0 to 5.5 −40 to +125 4.6, 2.9 (1) Active-High CMOS Push-Pull 200 5 Watchdog Input (WDI), Time-out = 1.6 sec., Manual Reset 5-pin SOT-23 N/A MCP1318 1.0 to 5.5 −40 to +125 4.6, 2.9 (1) Active-Low/ High CMOS Push-Pull 200 5 Watchdog Input (WDI), Time-out = 1.6 sec. 5-pin SOT-23 N/A MCP1319 1.0 to 5.5 −40 to +125 4.6, 2.9(1) Active-Low/ High CMOS Push-Pull 200 1 Manual Reset 5-pin SOT-23 N/A Manual Reset 5-pin SOT-23 N/A MCP1321 1.0 to 5.5 −40 to +125 4.6, 2.9 (1) Active-Low Open-Drain/ CMOS Push-Pull 200 5 Watchdog Input (WDI), Time-out = 1.6 sec., Manual Reset (Active-Low Open-Drain, Active-High Push-Pull) 5-pin SOT-23 N/A
2.63 Active-Low CMOS Push-Pull 280 7 Manual Reset 4-pin SOT-143,
Analog & Interface Product Selector Guide PoWer managemenT: cPu/system supervisors (continued) Part # Vcc range (V) operating Temp. range (°c) nominal reset Voltage (V) reset Type output Typical reset Pulse Width (ms) Typical supply current (µa) additional Features Packages Bond options
2.63 Active-High CMOS Push-Pull 280 7 Manual Reset 4-pin SOT-143, 5-pin
2.63 Active-Low Open-Drain 0 7 Manual Reset 4-pin SOT-143, 5-pin
2.93, 2.63, 2.32 Active-Low CMOS Push-Pull 240 12 3-pin SOT-23B, 3-pin SC-70 N/A 2.93, 2.63, 2.32 Active-High CMOS Push-Pull 240 12 3-pin SOT-23B, 3-pin SC-70 N/A 3.075, 2.92, 2.62 Active-Low CMOS Push-Pull 350 45 3-pin TO-92, 3-pin SOT-23B D, H 3.075, 2.92, 2.62 Active-Low CMOS Push-Pull 350 45 3-pin SOT-23B N/A 3.075, 2.92, 2.62 Active-High CMOS Push-Pull 350 45 3-pin TO-92, 3-pin SOT-23B D, H 3.075, 2.92, 2.62 Active-High CMOS Push-Pull 350 45 3-pin SOT-23B N/A 3.075, 2.92, 2.62 Active-Low Open-Drain 350 45 3-pin TO-92, 3-pin SOT-23, 8-pin SOIC D, G, H 3.075, 2.92, 2.62 Active-Low Open-Drain w/5 kOhm Pull-up 350 45 3-pin TO-92, 3-pin SOT-23, 8-pin SOIC D, F, H TC1232 4.5 to 5.5 −40 to +85 4.62, 4.37 Active-Low/High Open-Drain 610 50 Watchdog Timer 8-pin PDIP, 8-pin SOIC, 16-pin SOIC N/A TC32M 4.5 to 5.5 −40 to +85 4.5 Active-Low Open-Drain 700 50 Watchdog Timer 3-pin TO-92, 3-pin SOT-223 N/A note 1: Other reset voltage options available: 2.0V to 4.7V in 100 mV increments. Contact local Microchip sales office. PoWer managemenT: Voltage detectors Part # Vcc range (V) operating Temp. range (°c) nominal reset Voltage (V) reset Type output minimum reset Pulse Width (ms) Typical supply current (µa) Features Packages 2.63, 2.32, 1.90 Active-Low Open-Drain – 1 3-pin SOT-23B, 3-pin TO-92, 3-pin SC-70, 3-pin SOT-89 2.63, 2.32, 1.90 Active-Low CMOS Push-Pull – 1 3-pin SOT-23B, 3-pin TO-92, 3-pin SC-70, 3-pin SOT-89 2.1, 1.4 Active-Low CMOS Push-Pull or Open-Drain – 1 3-pin SOT-23A, 3-pin SOT-89, 3-pin TO-92 PoWer managemenT: Power mosFeT drivers Part # configuration operating Temp. range (°c) Peak output current (a) output resistance (rh/rl) (max. W @ 25°c) maximum supply Voltage (V) Input/output delay (td1, td2)(1) (ns) Packages low-side drivers, 0.5a to 1.2a Peak output current MCP1401 Single, Inverting −40 to +125 0.5 18/16 18 40/40 5-pin SOT-23 MCP1402 Single, Non-inverting −40 to +125 0.5 18/16 18 40/40 5-pin SOT-23 TC1410 Single, Inverting −40 to +85 0.5 22/22 16 30/30 8-pin PDIP, 8-pin SOIC, 8-pin MSOP TC1410N Single, Non-inverting −40 to +85 0.5 22/22 16 30/30 8-pin PDIP, 8-pin SOIC, 8-pin MSOP TC1411 Single, Inverting −40 to +85 1.0 11/11 16 30/30 8-pin PDIP, 8-pin SOIC, 8-pin MSOP TC1411N Single, Non-inverting −40 to +85 1.0 11/11 16 30/30 8-pin PDIP, 8-pin SOIC, 8-pin MSOP TC1426 Dual, Inverting 0 to +70 1.2 18/18 16 75/75 8-pin PDIP, 8-pin SOIC note 1: t d1 = delay time from input low-to-high transition to output transition. td2 = delay time from input high-to-low transition to output transition.
Analog & Interface Product Selector Guide PoWer managemenT: Power mosFeT drivers (continued) Part # configuration operating Temp. range (°c) Peak output current (a) output resistance (rh/rl) (max. W @ 25°c) maximum supply Voltage (V) Input/output delay (td1, td2)(1) (ns) Packages low-side drivers, 0.5a to 1.2a Peak output current (continued) TC1427 Dual, Non-inverting 0 to +70 1.2 18/18 16 75/75 8-pin PDIP, 8-pin SOIC TC1428 Dual, Inverting and Non-inverting 0 to +70 1.2 18/18 16 75/75 8-pin PDIP, 8-pin SOIC TC4467 Quad, Inverting −40 to +85 1.2 15/15 18 40/40 14-pin PDIP, 16-pin SOIC (W) TC4468 Quad, Non-inverting −40 to +85 1.2 15/15 18 40/40 14-pin PDIP, 16-pin SOIC (W) TC4469 Quad, Non-inverting −40 to +85 1.2 15/15 18 40/40 14-pin PDIP, 16-pin SOIC (W) low-side drivers, 1.5a Peak output current MCP1415 Single, Inverting −40 to +125 1.5 7.5/5.5 18 50/55 5-pin SOT-23 MCP1416 Single, Non-inverting −40 to +125 1.5 7.5/5.5 18 50/55 5-pin SOT-23 TC4403 Single, Non-inverting Floating Load Driver −40 to +85 1.5 5/5 18 33/38 8-pin PDIP TC4404 Dual, Inverting −40 to +85 1.5 10/10 18 15/32 8-pin PDIP, 8-pin SOIC TC4405 Dual, Non-inverting −40 to +85 1.5 10/10 18 15/32 8-pin PDIP, 8-pin SOIC TC4426A Dual, Inverting −40 to +125 1.5 9/9 18 30/30 8-pin PDIP, 8-pin SOIC, 8-pin DFN TC4427A Dual, Non-inverting −40 to +125 1.5 9/9 18 30/30 8-pin PDIP, 8-pin SOIC, 8-pin DFN TC4428A Dual, Inverting and Non-inverting −40 to +125 1.5 9/9 18 30/30 8-pin PDIP, 8-pin SOIC, 8-pin DFN TC4426 Dual, Inverting −40 to +125 1.5 10/10 18 20/40 8-pin PDIP, 8-pin SOIC, 8-pin DFN, 8-pin MSOP TC4427 Dual, Non-inverting −40 to +125 1.5 10/10 18 20/40 8-pin PDIP, 8-pin SOIC, 8-pin DFN, 8-pin MSOP TC4428 Dual, Inverting and Non-inverting −40 to +125 1.5 10/10 18 20/40 8-pin PDIP, 8-pin SOIC, 8-pin DFN, 8-pin MSOP TC426 Dual, Inverting −40 to +85 1.5 15/10 18 50/75 8-pin PDIP, 8-pin SOIC TC427 Dual, Non-inverting −40 to +85 1.5 15/10 18 50/75 8-pin PDIP, 8-pin SOIC TC428 Dual, Inverting and Non-inverting −40 to +85 1.5 15/10 18 50/75 8-pin PDIP, 8-pin SOIC TC1412 Single, Inverting −40 to +85 2 6/6 16 35/35 8-pin PDIP, 8-pin SOIC, 8-pin MSOP TC1412N Single, Non-inverting −40 to +85 2 6/6 16 35/35 8-pin PDIP, 8-pin SOIC, 8-pin MSOP MCP14E6 Dual, Inverting −40 to +125 2 2.2/2.8 18 45/45 8-pin PDIP, 8-pin SOIC, 8-pin DFN MCP14E7 Dual, Non-inverting −40 to +125 2 2.2/2.8 18 45/45 8-pin PDIP, 8-pin SOIC, 8-pin DFN MCP14E8 Dual, Inverting and Non-inverting −40 to +125 2 2.2/2.8 18 45/45 8-pin PDIP, 8-pin SOIC, 8-pin DFN MCP14E9 Dual, Inverting −40 to +125 3 2.2/2.8 18 75/75 8-pin PDIP, 8-pin SOIC, 8-pin DFN MCP14E10 Dual, Non-inverting −40 to +125 3 2.2/2.8 18 75/75 8-pin PDIP, 8-pin SOIC, 8-pin DFN MCP14E11 Dual, Inverting and Non-inverting −40 to +125 3 2.2/2.8 18 75/75 8-pin PDIP, 8-pin SOIC, 8-pin DFN low-side drivers, 2.0a to 12.0a Peak output current TC1413 Single, Inverting −40 to +85 3 4/4 16 35/35 8-pin PDIP, 8-pin SOIC, 8-pin MSOP TC1413N Single, Non-inverting −40 to +85 3 4/4 16 35/35 8-pin PDIP, 8-pin SOIC, 8-pin MSOP TC4423A Dual, Inverting −40 to +125 3 3 (typ)/4 (typ) 18 40 (typ)/40 (typ) 8-pin PDIP, 8-pin SOIC, 8-pin DFN TC4424A Dual, Non-inverting −40 to +125 3 3 (typ)/4 (typ) 18 40 (typ)/40 (typ) 8-pin PDIP, 8-pin SOIC, 8-pin DFN TC4425A Dual, Inverting and Non-inverting −40 to +125 3 3 (typ)/4 (typ) 18 40 (typ)/40 (typ) 8-pin PDIP, 8-pin SOIC, 8-pin DFN TC4423 Dual, Inverting −40 to +125 3 5/5 18 33/38 8-pin PDIP, 16-pin SOIC (W), 8-pin DFN TC4424 Dual, Non-inverting −40 to +125 3 5/5 18 33/38 8-pin PDIP, 16-pin SOIC (W), 8-pin DFN TC4425 Dual, Inverting and Non-inverting −40 to +125 3 5/5 18 33/38 8-pin PDIP, 16-pin SOIC (W), 8-pin DFN MCP14E3 Dual, Inverting −40 to +125 4.0 3.5/3.0 18 55/55 8-pin PDIP, 8-pin SOIC, 8-pin 6 × 5 DFN MCP14E4 Dual, Non-inverting −40 to +125 4.0 3.5/3.0 18 55/55 8-pin PDIP, 8-pin SOIC, 8-pin 6 × 5 DFN MCP14E5 Dual, Inverting and Non-inverting −40 to +125 4.0 3.5/3.0 18 55/55 8-pin PDIP, 8-pin SOIC, 8-pin 6 × 5 DFN MCP1403 Dual, Inverting −40 to +125 4.5 3/3.5 18 48/48 8-pin PDIP, 8-pin SOIC, 8-pin 6 × 5 DFN, 16-pin SOIC note 1: t d1 = delay time from input low-to-high transition to output transition. td2 = delay time from input high-to-low transition to output transition.
Analog & Interface Product Selector Guide PoWer managemenT: Power mosFeT drivers (continued) Part # configuration operating Temperature range (°c) Peak output current (a) output resistance (rh/rl) (max. W @ 25°c) maximum supply Voltage (V) Input/output delay (td1, td2)(1) (ns) Packages low-side drivers, 2.0a to 12.0a Peak output current (contined) MCP1404 Dual, Non-inverting −40 to +125 4.5 3/3.5 18 48/48 8-pin PDIP, 8-pin SOIC, 8-pin 6 × 5 DFN, 16-pin SOIC MCP1405 Dual, Inverting and Non-inverting −40 to +125 4.5 3/3.5 18 48/48 8-pin PDIP, 8-pin SOIC, 8-pin 6 × 5 DFN, 16-pin SOIC MCP1406 Single, Inverting −40 to +125 6 1.8 (typ)/2.0 (typ) 18 30/30 5-pin TO-220, 8-pin PDIP, 8-pin 6 × 5 DFN, 8-pin SOIC MCP1407 Single, Non-inverting −40 to +125 6 1.8 (typ)/2.0 (typ) 18 30/30 5-pin TO-220, 8-pin PDIP, 8-pin 6 × 5 DFN, 8-pin SOIC TC429 Single, Inverting −40 to +85 6 2.5/2.5 18 53/60 8-pin PDIP, 8-pin DFN, 8-pin SOIC TC4420 Single, Non-inverting −40 to +125 6 2.8/2.5 18 55/55 8-pin PDIP, 8-pin SOIC, 5-pin TO-220, 8-pin DFN TC4429 Single, Inverting −40 to +125 6 2.8/2.5 18 55/55 8-pin PDIP, 8-pin SOIC, 5-pin TO-220, 8-pin DFN TC4421 Single, Inverting −40 to +125 9 1.4 (typ)/1.7 18 30/33 8-pin PDIP, 5-pin TO-220, 8-pin DFN TC4421A Single, Inverting −40 to +125 9 1.25 (typ)/1.5 18 38/42 8-pin PDIP, 8-pin SOIC, 5-pin TO-220, 8-pin 6 × 5 DFN TC4422 Single, Non-inverting −40 to +125 9 1.4 (typ)/1.7 18 30/33 8-pin PDIP, 5-pin TO-220, 8-pin DFN TC4422A Single, Non-inverting −40 to +125 9 1.25 (typ)/1.5 18 38/42 8-pin PDIP, 8-pin SOIC, 5-pin TO-220, 8-pin 6 × 5 DFN TC4451 Single, Inverting −40 to +125 12 0.6 (typ)/1.5 18 15/15 8-pin SOIC, 8-pin PDIP, 8-pin 6 × 5 DFN, 5-pin TO-220, 5-pin DDPAK TC4452 Single, Non-inverting −40 to +125 12 0.6 (typ)/1.5 18 15/15 8-pin SOIC, 8-pin PDIP, 8-pin 6 × 5 DFN, 5-pin TO-220, 5-pin DDPAK high-side/low-side drivers TC4626 Single, Inverting −40 to +85 1.5 15/10 6 35/45 8-pin PDIP, 16-pin SOIC (W) TC4627 Single, Non-inverting −40 to +85 1.5 15/10 6 35/45 8-pin PDIP, 16-pin SOIC (W) TC4431 Single, Inverting −40 to +85 1.5 10/10 30 62/78 8-pin PDIP, 8-pin SOIC TC4432 Single, Non-inverting −40 to +85 1.5 10/10 30 62/78 8-pin PDIP, 8-pin SOIC synchronous Buck high-side drivers MCP14628 Dual, Non-inverting −40 to +85 2 2.5/2.5 5 (Vdd), 36 (Boot Pin) 18/20 8-pin SOIC, 8-pin 3 × 3 DFN MCP14700 Dual, Non-inverting −40 to +125 2 2.5/2.5 5 (Vdd), 36 (Boot Pin) 25/25 8-pin SOIC, 8-pin 3 × 3 DFN note 1: t d1 = delay time from input low-to-high transition to output transition. td2 = delay time from input high-to-low transition to output transition. PoWer managemenT: Power mosFeTs Part # Vds (V) configuration Polarity rds (on) @ 4.5V (mΩ, max.) rds (on) @ 10V (mΩ, max.) Qg @ 4.5V (nc, max.) Id (a, max. @ 25°c, Tcase) Vgs (th) (V, min.) Qgd (nc, Typ.) rg (Ω, Typ.) Packages MCP87022 25 Single N 2.6 2.3 29 100 1 9 1.2 8-pin PDFN MCP87050 25 Single N 6 5 15 100 1 4.7 1.1 8-pin PDFN MCP87055 25 Single N 7 6 14 60 1.1 4.5 2.1 8-pin PDFN PoWer managemenT: Battery chargers Part # mode cell Type # of cells Vcc range (V) cell Voltage (V) maximum charging current (ma) max. Voltage regulation (%) Int/ext FeT Features Packages MCP73123 Linear LiFePO4 1 4 to 16 3.6 1100 ±0.5 Int 6.5V Overvoltage Protection, LiFePO4 charging 10-pin 3 × 3 DFN MCP73223 Linear LiFePO4 2 4 to 16 7.2 1100 ±0.6 Int 13V Overvoltage Protection, LiFePO4 charging 10-pin 3 × 3 DFN MCP73841 Linear Li-Ion/Li-Polymer 1 4.5 to 12 4.1, 4.2 N/A ±0.5 Ext Safety charge timers, Temperature monitor, Charge current set by external FET10-pin MSOP
Analog & Interface Product Selector Guide PoWer managemenT: Battery chargers (continued) Part # mode cell Type # of cells Vcc range (V) cell Voltage (V) maximum charging current (ma) max. Voltage regulation (%) Int/ext FeT Features Packages MCP73841 Linear Li-Ion/Li-Polymer 1 4.5 to 12 4.1, 4.2 N/A ±0.5 Ext Safety charge timers, Temperature monitor, Charge current set by external FET 10-pin MSOP MCP73842 Linear Li-Ion/Li-Polymer 2 8.7 to 12 8.2, 8.4 N/A ±0.5 Ext Safety charge timers, Temperature monitor, Charge current set by external FET 10-pin MSOP MCP73843 Linear Li-Ion/Li-Polymer 1 4.5 to 12 4.1, 4.2 N/A ±0.5 Ext Safety charge timers, Charge current set by external FET 8-pin MSOP MCP73844 Linear Li-Ion/Li-Polymer 2 8.7 to 12 8.2, 8.4 N/A ±0.5 Ext Safety charge timers, Charge current set by external FET 8-pin MSOP MCP73811 Linear Li-Ion/Li-Polymer 1 3.7 to 6.0 4.2 500 ±1.0 Int Selectable charge current (100 mA, 500 mA), Charge enable input 5-pin SOT-23 MCP73812 Linear Li-Ion/Li Polymer 1 3.7 to 6.0 4.2 500 ±1.0 Int Programmable charge current (100 mA, 500 mA), Charge enable input 5-pin SOT-23 MCP73830/L Linear Li-Ion/Li-Polymer 1 3.75 to 6.0 4.2 1000/200 ±0.75 Int Soft-start, Charge enable pin 6-pin 2 × 2 TDFN Tri-state STAT pin 5-pin SOT-23, 8-pin 2 × 3 DFN Open-drain STAT pin 5-pin SOT-23, 8-pin 2 × 3 DFN Thermal regulation 16-pin 4 × 4 QFN Multiple V reg outputs, Safety timer, Power good output 10-pin 3 × 3 DFN, 10-pin MSOP Multiple Vreg outputs, Safety timer, Timer enable input 10-pin 3 × 3 DFN, 10-pin MSOP Thermal regulation, Thermistor input, Power good output 10-pin 3 × 3 DFN, 10-pin MSOP Thermal regulation, Timer enable input 10-pin 3 × 3 DFN, 10-pin MSOP 1500 (A/C Adapter) 500 (USB) ±0.5 Int Simultaneous charging of load and battery, Load-dependent charging, Multiple programmable charge currents 20-pin 4 × 4 QFN, 20-pin SSOP PoWer managemenT: hot swap controllers Part # number of outputs Vpos to Vneg differential Voltage (V) Junction Temperature range (°c) oVlo uVlo Power good Int/ext FeT applications Packages MCP18480 1 −0.3 to +15.0 −40 to +85 Adjustable Adjustable Adjustable Ext −48V Telecom/Datacom, Bus/Backplane 20-pin SSOP lInear lInear: op amps Part # # per Package gBWP Iq Typical (µa) Vos max (mV) Typical Input Bias current (pa) Input Voltage noise density (nV/rthz) operating Voltage (V) Temperature range (°c) Features Packages MCP6441 1 9 kHz 0.45 4.5 1 190(1) 1.8 to 6.0 −40 to +125 Rail-to-Rail Input/Output 5-pin SOT-23(S), 5-pin SC-70(S) MCP6442 2 9 kHz 0.45 4.5 1 190(1) 1.8 to 6.0 −40 to +125 Rail-to-Rail Input/Output 8-pin SOIC, 8-pin MSOP, 8-pin 2 × 3 TDFN MCP6444 4 9 kHz 0.45 4.5 1 190(1) 1.8 to 6.0 −40 to +125 Rail-to-Rail Input/Output 14-pin SOIC, 14-pin TSSOP MCP6031 1 10 kHz 0.9 0.15 1 165(1) 1.8 to 5.5 −40 to +125 Rail-to-Rail Input/Output 8-pin SOIC, 8-pin MSOP, 8-pin 2 × 3 DFN, 5-pin SOT-23 MCP6032 2 10 kHz 0.9 0.15 1 165(1) 1.8 to 5.5 −40 to +125 Rail-to-Rail Input/Output 8-pin SOIC, 8-pin MSOP MCP6033 1 10 kHz 0.9 0.15 1 165(1) 1.8 to 5.5 −40 to +125 Rail-to-Rail Input/Output, Chip select 8-pin SOIC, 8-pin MSOP, 8-pin 2 × 3 DFN MCP6034 4 10 kHz 0.9 0.15 1 165(1) 1.8 to 5.5 −40 to +125 Rail-to-Rail Input/Output 14-pin SOIC, 14-pin TSSOP MCP6041 1 14 kHz 0.6 3 1 170(1) 1.4 to 6.0 −40 to +125 Rail-to-Rail Input/Output 8-pin PDIP, 8-pin SOIC, 8-pin MSOP, 5-pin SOT-23(S) legend: S = Standard Pinout; R = Reverse Pinout; U = Alternative Pinout note 1: Values are typical at 1 kHz 2: Values are typical at 10 kHz
Analog & Interface Product Selector Guide lInear: op amps (continued) Part # # per Package gBWP Iq Typical (µa) Vos max (mV) Typical Input Bias current (pa) Input Voltage noise density (nV/rthz) operating Voltage (V) Temperature range (°c) Features Packages MCP6042 2 14 kHz 0.6 3 1 170(1) 1.4 to 6.0 −40 to +125 Rail-to-Rail Input/Output 8-pin PDIP, 8-pin SOIC, 8-pin MSOP MCP6043 1 14 kHz 0.6 3 1 170(1) 1.4 to 6.0 −40 to +125 Rail-to-Rail Input/Output, Chip select 8-pin PDIP, 8-pin SOIC, 8-pin MSOP, 6-pin SOT-23(S) MCP6044 4 14 kHz 0.6 3 1 170(1) 1.4 to 6.0 −40 to +125 Rail-to-Rail Input/Output 14-pin PDIP, 14-pin SOIC, 14-pin TSSOP MCP6141 1 100 kHz 0.6 3 1 170(1) 1.4 to 6.0 −40 to +125 Rail-to-Rail Input/Output, G >10 stable 5-pin SOT-23(S), 8-pin PDIP, 8-pin SOIC, 8-pin MSOP MCP6142 2 100 kHz 0.6 3 1 170(1) 1.4 to 6.0 −40 to +125 Rail-to-Rail Input/Output, G >10 stable 8-pin PDIP, 8-pin SOIC, 8-pin MSOP MCP6143 1 100 kHz 0.6 3 1 170(1) 1.4 to 6.0 −40 to +125 Rail-to-Rail Input/Output, G >10 stable, Chip select 8-pin PDIP, 8-pin SOIC, 8-pin MSOP, 6-pin SOT-23(S) MCP6144 4 100 kHz 0.6 3 1 170(1) 1.4 to 6.0 −40 to +125 Rail-to-Rail Input/Output, G >10 stable 14-pin PDIP, 14-pin SOIC, 14-pin TSSOP MCP606 1 155 kHz 19 0.25 1 38(1) 2.5 to 6.0 −40 to +85 Rail-to-Rail Output 8-pin PDIP, 8-pin SOIC, 8-pin TSSOP, 5-pin SOT23(S) MCP607 2 155 kHz 19 0.25 1 38(1) 2.5 to 6.0 −40 to +85 Rail-to-Rail Output 8-pin PDIP, 8-pin SOIC, 8-pin TSSOP MCP608 1 155 kHz 19 0.25 1 38(1) 2.5 to 6.0 −40 to +85 Rail-to-Rail Output, Chip select 8-pin PDIP, 8-pin SOIC, 8-pin TSSOP MCP609 4 155 kHz 19 0.25 1 38(1) 2.5 to 6.0 −40 to +85 Rail-to-Rail Output 14-pin PDIP, 14-pin SOIC, 14-pin TSSOP MCP616 1 190 kHz 19 0.15 15000 32(1) 2.3 to 5.5 −40 to +85 Rail-to-Rail Output, PNP input 8-pin PDIP, 8-pin SOIC, 8-pin MSOP MCP617 2 190 kHz 19 0.15 15000 32(1) 2.3 to 5.5 −40 to +85 Rail-to-Rail Output, PNP input 8-pin PDIP, 8-pin SOIC, 8-pin MSOP MCP618 1 190 kHz 19 0.15 15000 32(1) 2.3 to 5.5 −40 to +85 Rail-to-Rail Output, Chip select, PNP input 8-pin PDIP, 8-pin SOIC, 8-pin MSOP MCP619 4 190 kHz 19 0.15 15000 32(1) 2.3 to 5.5 −40 to +85 Rail-to-Rail Output, PNP input 14-pin PDIP, 14-pin SOIC, 14-pin TSSOP MCP6231 1 300 kHz 20 5 1 52(1) 1.8 to 6.0 −40 to +125 Rail-to-Rail Input/Output 8-pin PDIP, 8-pin SOIC, 8-pin MSOP, 8-pin 2 × 3 TDFN, 5-pin SC-70 (U), 5-pin SOT-23(S, R, U) MCP6232 2 300 kHz 20 5 1 52(1) 1.8 to 6.0 −40 to +125 Rail-to-Rail Input/Output 8-pin PDIP, 8-pin SOIC, 8-pin MSOP, 8-pin 2 × 3 TDFN MCP6234 4 300 kHz 20 5 1 52(1) 1.8 to 6.0 −40 to +125 Rail-to-Rail Input/Output 14-pin PDIP, 14-pin SOIC, 14-pin TSSOP MCP6051 1 385 kHz 30 0.15 1 34(2) 1.8 to 6.0 −40 to +125 Rail-to-Rail Input/Output 8-pin SOIC, 8-pin 2 × 3 DFN, 5-pin SOT-23(S) MCP6052 2 385 kHz 30 0.15 1 34(2) 1.8 to 6.0 −40 to +125 Rail-to-Rail Input/Output 8-pin SOIC, 8-pin 2 × 3 DFN MCP6054 4 385 kHz 30 0.15 1 34(2) 1.8 to 6.0 −40 to +125 Rail-to-Rail Input/Output 14-pin SOIC, 14-pin TSSOP MCP6241 1 550 kHz 50 5 1 45(1) 1.8 to 5.5 −40 to +125 Rail-to-Rail Input/Output 8-pin PDIP, 8-pin SOIC, 8-pin MSOP, 8-pin 2 × 3 TDFN, 5-pin SC-70 (U), 5-pin SOT-23(S ,R, U) MCP6242 2 550 kHz 50 5 1 45(1) 1.8 to 5.5 −40 to +125 Rail-to-Rail Input/Output 8-pin PDIP, 8-pin SOIC, 8-pin MSOP MCP6244 4 550 kHz 50 5 1 45(1) 1.8 to 5.5 −40 to +125 Rail-to-Rail Input/Output 14-pin PDIP, 14-pin SOIC, 14-pin TSSOP MCP6061 1 730 kHz 60 0.15 1 25(2) 1.8 to 6.0 −40 to +125 Rail-to-Rail Input/Output 8-pin SOIC, 8-pin 2 × 3 DFN, 5-pin SOT-23(S) MCP6062 2 730 kHz 60 0.15 1 25(2) 1.8 to 6.0 −40 to +125 Rail-to-Rail Input/Output 8-pin SOIC, 8-pin 2 × 3 DFN MCP6064 4 730 kHz 60 0.15 1 25(2) 1.8 to 6.0 −40 to +125 Rail-to-Rail Input/Output 14-pin SOIC, 14-pin TSSOP MCP6001 1 1 MHz 100 4.5 1 28(1) 1.8 to 6.0 −40 to +125 Rail-to-Rail Input/Output 5-pin SOT-23(S, R, U), 5-pin SC-70(R) MCP6002 2 1 MHz 100 4.5 1 28(1) 1.8 to 6.0 −40 to +125 Rail-to-Rail Input/Output 8-pin PDIP, 8-pin SOIC, 8-pin MSOP, 8-pin 2 × 3 DFN MCP6004 4 1 MHz 100 4.5 1 28(1) 1.8 to 6.0 −40 to +125 Rail-to-Rail Input/Output 14-pin PDIP, 14-pin SOIC, 14-pin TSSOP MCP6401 1 1 MHz 45 4.5 1 28(1) 1.8 to 6.0 −40 to +125 Rail-to-Rail Input/Output 5-pin SOT-23(S, R, U), 5-pin SC-70(R) MCP6402 2 1 MHz 45 4.5 1 28(1) 1.8 to 6.0 −40 to +125 Rail-to-Rail Input/Output 8-pin SOIC, 8-pin 2 × 3 TDFN MCP6404 4 1 MHz 45 4.5 1 28(1) 1.8 to 6.0 −40 to +125 Rail-to-Rail Input/Output 14-pin SOIC, 14-pin TSSOP MCP6L01 1 1 MHz 85 5 2 24(2) 1.8 to 6.0 −40 to +125 Rail-to-Rail Input/Output 5-pin SOT-23(S, R, U), 5-pin SC-70(S) MCP6L02 2 1 MHz 85 5 2 24(2) 1.8 to 6.0 −40 to +125 Rail-to-Rail Input/Output 8-pin SOIC, 8-pin MSOP MCP6L04 4 1 MHz 85 5 2 24(2) 1.8 to 6.0 −40 to +125 Rail-to-Rail Input/Output 14-pin SOIC, 14-pin TSSOP MCP6071 1 1.2 MHz 110 0.15 1 19(2) 1.8 to 6.0 −40 to +125 Rail-to-Rail Input/Output 8-pin SOIC, 8-pin 2 × 3 DFN, 5-pin SOT-23(S) MCP6072 2 1.2 MHz 110 0.15 1 19(2) 1.8 to 6.0 −40 to +125 Rail-to-Rail Input/Output 8-pin SOIC, 8-pin 2 × 3 DFN MCP6074 4 1.2 MHz 110 0.15 1 19(2) 1.8 to 6.0 −40 to +125 Rail-to-Rail Input/Output 14-pin SOIC, 14-pin TSSOP MCP6H01 1 1.2 MHz 135 3.5 10 35(1) Single Supply: 3.5 to 16 Dual Supply: ±1.75 to ±8 −40 to +125 Rail-to-Rail Output 8-pin SOIC, 8-pin 2 × 3 TDFN, 5-pin SOT-23(S), 5-pin SC-70(S) MCP6H02 2 1.2 MHz 135 3.5 10 35(1) Single Supply: 3.5 to 16 Dual Supply: ±1.75 to ±8 −40 to +125 Rail-to-Rail Output 8-pin SOIC, 8-pin 2 × 3 TDFN MCP6H04 4 1.2 MHz 135 3.5 10 35(1) Single Supply: 3.5 to 16 Dual Supply: ±1.75 to ±8 −40 to +125 Rail-to-Rail Output 14-pin SOIC, 14-pin TSSOP legend: S = Standard Pinout; R = Reverse Pinout; U = Alternative Pinout note 1: Values are typical at 1 kHz 2: Values are typical at 10 kHz
Analog & Interface Product Selector Guide lInear: op amps (continued) Part # # per Package gBWP Iq Typical (µa) Vos max (mV) Typical Input Bias current (pa) Input Voltage noise density (nV/rthz) operating Voltage (V) Temperature range (°c) Features Packages MCP6271 1 2 MHz 170 3 1 20(1) 2.0 to 6.0 −40 to +125 Rail-to-Rail Input/Output 8-pin PDIP, 8-pin SOIC, 8-pin MSOP, 5-pin SOT-23(S, R) MCP6272 2 2 MHz 170 3 1 20(1) 2.0 to 6.0 −40 to +125 Rail-to-Rail Input/Output 8-pin PDIP, 8-pin SOIC, 8-pin MSOP MCP6273 1 2 MHz 170 3 1 20(1) 2.0 to 6.0 −40 to +125 Rail-to-Rail Input/Output, Chip select 8-pin PDIP, 8-pin SOIC, 8-pin MSOP, 6-pin SOT-23(S) MCP6274 4 2 MHz 170 3 1 20(1) 2.0 to 6.0 −40 to +125 Rail-to-Rail Input/Output 14-pin PDIP, 14-pin SOIC, 14-pin TSSOP MCP6275 2 2 MHz 150 3 1 20(1) 2.0 to 6.0 −40 to +125 Rail-to-Rail Input/Output, Dual connected, Chip select 8-pin PDIP, 8-pin SOIC, 8-pin MSOP MCP6471 1 2 MHz 100 1 1 27(1) 2.0 to 5.5 −40 to +125 Rail-to-Rail Input/Output 5-pin SOT-23(S), 5-pin SC-70(S) MCP6L71 1 2 MHz 150 4 1 19(2) 2.0 to 6.0 −40 to +125 Rail-to-Rail Input/Output 8-pin SOIC(S), 8-pin MSOP(S), 5-pin SOT-23(S, R) MCP6L72 2 2 MHz 150 4 1 19(2) 2.0 to 6.0 −40 to +125 Rail-to-Rail Input/Output 8-pin SOIC, 8-pin MSOP MCP6L74 4 2 MHz 150 4 1 19(2) 2.0 to 6.0 −40 to +125 Rail-to-Rail Input/Output 14-pin SOIC, 14-pin TSSOP MCP6H71 1 2.7 MHz 480 4 10 28(1) Single Supply: 3.5 to 12 Dual Supply: ±1.75 to ±6 −40 to +125 Rail-to-Rail Output 8-pin SOIC, 8-pin 2 × 3 TDFN MCP6H72 2 2.7 MHz 480 4 10 28(1) Single Supply: 3.5 to 12 Dual Supply: ±1.75 to ±6 −40 to +125 Rail-to-Rail Output 8-pin SOIC, 8-pin 2 × 3 TDFN MCP6H74 4 2.7 MHz 480 4 10 28(1) Single Supply: 3.5 to 12 Dual Supply: ±1.75 to ±6 −40 to +125 Rail-to-Rail Output 14-pin SOIC, 14-pin TSSOP MCP601 1 2.8 MHz 230 2 1 29(1) 2.7 to 6.0 −40 to +125 Rail-to-Rail Output 8-pin PDIP, 8-pin SOIC, 8-pin TSSOP, 5-pin SOT-23(S, R) MCP602 2 2.8 MHz 230 2 1 29(1) 2.7 to 6.0 −40 to +125 Rail-to-Rail Output 8-pin PDIP, 8-pin SOIC, 8-pin TSSOP MCP603 1 2.8 MHz 230 2 1 29(1) 2.7 to 6.0 −40 to +125 Rail-to-Rail Output, Chip select 8-pin PDIP, 8-pin SOIC, 8-pin TSSOP, 6-pin SOT-23(S) MCP604 4 2.8 MHz 230 2 1 29(1) 2.7 to 6.0 −40 to +125 Rail-to-Rail Output 14-pin PDIP, 14-pin SOIC, 14-pin TSSOP MCP6L1 1 2.8 MHz 200 3 1 21(2) 2.7 to 6.0 −40 to +125 Rail-to-Rail Output 8-pin SOIC(S), 8-pin MSOP(S), 5-pin SOT-23(S, R) MCP6L2 2 2.8 MHz 200 3 1 21(2) 2.7 to 6.0 −40 to +125 Rail-to-Rail Output 8-pin SOIC, 8-pin MSOP MCP6L4 4 2.8 MHz 200 3 1 21(2) 2.7 to 6.0 −40 to +125 Rail-to-Rail Output 14-pin SOIC, 14-pin TSSOP MCP6481 1 4 MHz 240 1 1 23(1) 2.2 to 5.5 −40 to +125 Rail-to-Rail Input/Output 5-pin SOT-23(S), 5-pin SC-70(S) MCP6281 1 5 MHz 445 3 1 16(1) 2.2 to 6.0 −40 to +125 Rail-to-Rail Input/Output 8-pin PDIP, 8-pin SOIC, 8-pin MSOP, 5-pin SOT-23(S, R) MCP6282 2 5 MHz 445 3 1 16(1) 2.2 to 6.0 −40 to +125 Rail-to-Rail Input/Output 8-pin PDIP, 8-pin SOIC, 8-pin MSOP MCP6283 1 5 MHz 445 3 1 16(1) 2.2 to 6.0 −40 to +125 Rail-to-Rail Input/Output, Chip select 8-pin PDIP, 8-pin SOIC, 8-pin MSOP, 6-pin SOT-23(S, R) MCP6284 4 5 MHz 445 3 1 16(1) 2.2 to 6.0 −40 to +125 Rail-to-Rail Input/Output 14-pin PDIP, 14-pin SOIC, 14-pin TSSOP MCP6285 2 5 MHz 400 3 1 16(1) 2.2 to 6.0 −40 to +125 Rail-to-Rail Input/Output, Dual connected, Chip select 8-pin PDIP, 8-pin SOIC, 8-pin MSOP MCP6H81 1 5.5 MHz 700 4 10 23 (1) Single Supply: 3.5 to 12 Dual Supply: ±1.75 to ±6 −40 to +125 Rail-to-Rail Output 8-pin SOIC, 8-pin 2 × 3 TDFN MCP6H82 2 5.5 MHz 700 4 10 23(1) Single Supply: 3.5 to 12 Dual Supply: ±1.75 to ±6 −40 to +125 Rail-to-Rail Output 8-pin SOIC, 8-pin 2 × 3 TDFN MCP6H84 4 5.5 MHz 700 4 10 23(1) Single Supply: 3.5 to 12 Dual Supply: ±1.75 to ±6 −40 to +125 Rail-to-Rail Output 14-pin SOIC, 14-pin 2 × 3 TDFN MCP6491 1 7.5 MHz 530 1 1 19(1) 2.4 to 5.5 −40 to +125 Rail-to-Rail Input/Output 5-pin SOT-23(S), 5-pin SC-70(S) MCP6021 1 10 MHz 1000 0.5 1 8.7(2) 2.5 to 5.5 −40 to +125 Rail-to-Rail Input/Output, 1/2 Vcc Vref 8-pin PDIP, 8-pin SOIC, 8-pin TSSOP, 8-pin MSOP, 5-pin SOT-23 (S, R) MCP6022 2 10 MHz 1000 0.5 1 8.7(2) 2.5 to 5.5 −40 to +125 Rail-to-Rail Input/Output 8-pin PDIP, 8-pin SOIC, 8-pin TSSOP MCP6023 1 10 MHz 1000 0.5 1 8.7(2) 2.5 to 5.5 −40 to +125 Rail-to-Rail Input/Output, Chip select, 1/2 V cc Vref 8-pin PDIP, 8-pin SOIC, 8-pin TSSOP MCP6024 4 10 MHz 1000 0.5 1 8.7(2) 2.5 to 5.5 −40 to +125 Rail-to-Rail Input/Output 14-pin PDIP, 14-pin SOIC, 14-pin TSSOP MCP6291 1 10 MHz 1000 3 1 8.7(2) 2.4 to 6.0 −40 to +125 Rail-to-Rail Input/Output 8-pin PDIP, 8-pin SOIC, 8-pin MSOP, 5-pin SOT-23(S, R) MCP6292 2 10 MHz 1000 3 1 8.7(2) 2.4 to 6.0 −40 to +125 Rail-to-Rail Input/Output 8-pin PDIP, 8-pin SOIC, 8-pin MSOP legend: S = Standard Pinout; R = Reverse Pinout; U = Alternative Pinout note 1: Values are typical at 1 kHz 2: Values are typical at 10 kHz
Analog & Interface Product Selector Guide lInear: op amps (continued) Part # # per Package gBWP Iq Typical (µa) Vos max (mV) Typical Input Bias current (pa) Input Voltage noise density (nV/rthz) operating Voltage (V) Temperature range (°c) Features Packages MCP6293 1 10 MHz 1000 3 1 8.7(2) 2.4 to 6.0 −40 to +125 Rail-to-Rail Input/Output, Chip select 8-pin PDIP, 8-pin SOIC, 8-pin MSOP, 6-pin SOT-23(S) MCP6294 4 10 MHz 1000 3 1 8.7(2) 2.4 to 6.0 −40 to +125 Rail-to-Rail Input/Output 14-pin PDIP, 14-pin SOIC, 14-pin TSSOP MCP6295 2 10 MHz 1100 3 1 8.7(2) 2.4 to 6.0 −40 to +125 Rail-to-Rail Input/Output, Dual connected, Chip select 8-pin PDIP, 8-pin SOIC, 8-pin MSOP MCP6H91 1 10 MHz 2000 4 10 23(1) Single Supply: 3.5 to 12 Dual Supply: ±1.75 to ±6 −40 to +125 Rail-to-Rail Output 8-pin SOIC, 8-pin 2 × 3 TDFN MCP6H92 2 10 MHz 2000 4 10 23(1) Single Supply: 3.5 to 12 Dual Supply: ±1.75 to ±6 −40 to +125 Rail-to-Rail Output 8-pin SOIC, 8-pin 2 × 3 TDFN MCP6H94 4 10 MHz 2000 4 10 23(1) Single Supply: 3.5 to 12 Dual Supply: ±1.75 to ±6 −40 to +125 Rail-to-Rail Output 14-pin SOIC, 14-pin TSSOP MCP6L91 1 10 MHz 850 4 1 9.4(2) 2.4 to 6.0 −40 to +125 Rail-to-Rail Input/Output 8-pin SOIC(S), 8-pin MSOP(S), 5-pin SOT-23(S, R) MCP6L92 2 10 MHz 850 4 1 9.4(2) 2.4 to 6.0 −40 to +125 Rail-to-Rail Input/Output 8-pin SOIC, 8-pin MSOP MCP6L94 4 10 MHz 850 4 1 9.4(2) 2.4 to 6.0 −40 to +125 Rail-to-Rail Input/Output 14-pin SOIC, 14-pin TSSOP MCP621 1 20 MHz 2500 0.2 5 13(3) 2.5 to 5.5 −40 to +125 Rail-to-Rail Output, Chip select, mCal Technology 8-pin SOIC, 8-pin 2 × 3 TDFN MCP621S 1 20 MHz 2500 0.2 5 13 (3) 2.5 to 5.5 −40 to +125 Rail-to-Rail Output, mCal Technology 5-pin SOT-23(S) MCP622 2 20 MHz 2500 0.2 5 13(3) 2.5 to 5.5 −40 to +125 Rail-to-Rail Output, mCal Technology 8-pin SOIC, 8-pin 3 × 3 DFN MCP623 1 20 MHz 2500 0.2 5 13(3) 2.5 to 5.5 −40 to +125 Rail-to-Rail Output, Chip select, mCal Technology 6-pin SOT-23 (S) MCP624 4 20 MHz 2500 0.2 5 13(3) 2.5 to 5.5 −40 to +125 Rail-to-Rail Output, mCal Technology 14-pin SOIC, 14-pin TSSOP MCP625 2 20 MHz 2500 0.2 5 13(3) 2.5 to 5.5 −40 to +125 Rail-to-Rail Output, Chip selects, mCal Technology 10-pin MSOP, 10-pin 3 × 3 DFN MCP629 4 20 MHz 2500 0.2 5 13 (3) 2.5 to 5.5 −40 to +125 Rail-to-Rail Output,Chip selects, mCal Technology 16-pin 4 × 4 QFN MCP631 1 24 MHz 2500 8 4 10 (3) 2.5 to 5.5 −40 to +125 Rail-to-Rail Output 8-pin SOIC, 8-pin 2 × 3 TDFN, 5-pin SOT-23(S) MCP632 2 24 MHz 2500 8 4 10(3) 2.5 to 5.5 −40 to +125 Rail-to-Rail Output 8-pin SOIC, 8-pin 3 × 3 DFN MCP633 1 24 MHz 2500 8 4 10(3) 2.5 to 5.5 −40 to +125 Rail-to-Rail Output, Chip select 8-pin SOIC, 6-pin SOT-23 MCP634 4 24 MHz 2500 8 4 10(3) 2.5 to 5.5 −40 to +125 Rail-to-Rail Output 14-pin SOIC, 14-pin TSSOP MCP635 2 24 MHz 2500 8 4 10(3) 2.5 to 5.5 −40 to +125 Rail-to-Rail Output, Chip selects 10-pin MSOP, 10-pin 3 × 3 DFN MCP639 4 24 MHz 2500 8 4 10(3) 2.5 to 5.5 −40 to +125 Rail-to-Rail Output, Chip selects 16-pin 4 × 4 QFN MCP651 1 50 MHz 6000 0.2 6 7.5(3) 2.5 to 5.5 −40 to +125 Rail-to-Rail Output, Chip select, mCal Technology 8-pin SOIC, 8-pin 2 × 3 TDFN MCP651S 1 50 MHz 6000 0.2 6 7.5 (3) 2.5 to 5.5 −40 to +125 Rail-to-Rail Output, mCal Technology 5-pin SOT-23(S) MCP652 2 50 MHz 6000 0.2 6 7.5(3) 2.5 to 5.5 −40 to +125 Rail-to-Rail Output, mCal Technology 8-pin SOIC, 8-pin 3 × 3 DFN MCP653 1 50 MHz 6000 0.2 6 7.5(3) 2.5 to 5.5 −40 to +125 Rail-to-Rail Output, Chip select, mCal Technology 6-pin SOT-23 (S) MCP654 4 50 MHz 6000 0.2 6 7.5(3) 2.5 to 5.5 −40 to +125 Rail-to-Rail Output, mCal Technology 14-pin SOIC, 14-pin TSSOP MCP655 2 50 MHz 6000 0.2 6 7.5(3) 2.5 to 5.5 −40 to +125 Rail-to-Rail Output, Chip selects, mCal Technology 10-pin MSOP, 10-pin 3 × 3 DFN MCP659 4 50 MHz 6000 0.2 6 7.5 (3) 2.5 to 5.5 −40 to +125 Rail-to-Rail Output,Chip selects, mCal Technology 16-pin 4 × 4 QFN MCP660 3 60 MHz 6000 8 6 6.8(3) 2.5 to 5.5 −40 to +125 Rail-to-Rail Output 14-pin SOIC, 14-pin TSSOP MCP661 1 60 MHz 6000 8 6 6.8(3) 2.5 to 5.5 −40 to +125 Rail-to-Rail Output 8-pin SOIC, 8-pin 2 × 3 TDFN, 5-pin SOT-23(S) MCP662 2 60 MHz 6000 8 6 6.8(3) 2.5 to 5.5 −40 to +125 Rail-to-Rail Output 8-pin SOIC, 8-pin 3 × 3 DFN MCP663 1 60 MHz 6000 8 6 6.8(3) 2.5 to 5.5 −40 to +125 Rail-to-Rail Output, Chip select 8-pin SOIC, 6-pin SOT-23 MCP664 4 60 MHz 6000 8 6 6.8(3) 2.5 to 5.5 −40 to +125 Rail-to-Rail Output 14-pin SOIC, 14-pin TSSOP MCP665 2 60 MHz 6000 8 6 6.8(3) 2.5 to 5.5 −40 to +125 Rail-to-Rail Output, Chip selects 10-pin MSOP, 10-pin 3 × 3 DFN MCP669 4 60 MHz 6000 8 6 6.8(3) 2.5 to 5.5 −40 to +125 Rail-to-Rail Output, Chip selects 16-pin 4 × 4 QFN legend: S = Standard Pinout; R = Reverse Pinout; U = Alternative Pinout note 1: Values are typical at 1 kHz 2: Values are typical at 10 kHz 3: Values are typical at 1 MHz
Analog & Interface Product Selector Guide lInear: Zero-drift operational amplifiers Part # # per Package gBWP Iq max (ma) Vos max (µV) Vos drift max (µV/°c) operating Voltage (V) Temperature range (°c) Features Packages MCP6V11 1 80 kHz 0.011 8 0.05 1.6 to 5.5 −40 to +125 Rail-to-Rail Input/Output 5-pin SOT-23(S, U), 5-pin SOT-70(U) MCP6V31 1 300 kHz 0.034 8 0.05 1.8 to 5.5 −40 to +125 Rail-to-Rail Input/Output 5-pin SOT-23(S, U), 5-pin SOT-70(U) TC7652 1 0.4 MHz 3 5 0.05 5 to 16 0 to +70 Single and Split Supply, Low Noise 8-pin PDIP, 14-pin PDIP TC913A/B 2 1.5 MHz 1.1 15 0.15/0.30 7 to 16 0 to +70 Single and Split Supply 8-pin PDIP, 8-pin SOIC TC7650 1 2 MHz 3.5 5 0.05 4.5 to 16 0 to +70 Single and Split Supply 8-pin PDIP, 14-pin PDIP MCP6V26 1 2 MHz 0.8 2 0.05 2.3 to 5.5 −40 to +125 Rail-to-Rail Input/Output 8-pin SOIC, 8-pin MSOP, 8-pin 2 × 3 TDFN MCP6V27 2 2 MHz 0.8 2 0.05 2.3 to 5.5 −40 to +125 Rail-to-Rail Input/Output 8-pin SOIC, 8-pin MSOP, 8-pin 4 × 4 DFN MCP6V28 1 2 MHz 0.8 2 0.05 2.3 to 5.5 −40 to +125 Rail-to-Rail Input/Output, Chip select 8-pin SOIC, 8-pin MSOP, 8-pin 2 × 3 TDFN lInear: Programmable gain amplifiers (Pga) Part # channels −3dB BW (mhz) Iq Typ. (ma) Vos (µV) operating Voltage (V) Temperature range (°c) Features Packages MCP6S21 1 2 to 12 1.1 275 2.5 to 5.5 −40 to +85 SPI, 8 Gain steps, Software shutdown 8-pin PDIP, 8-pin SOIC, 8-pin MSOP MCP6S22 2 2 to 12 1.1 275 2.5 to 5.5 −40 to +85 SPI, 8 Gain steps, Software shutdown 8-pin PDIP, 8-pin SOIC, 8-pin MSOP MCP6S26 6 2 to 12 1.1 275 2.5 to 5.5 −40 to +85 SPI, 8 Gain steps, Software shutdown 14-pin PDIP, 14-pin SOIC, 14-pin TSSOP MCP6S28 8 2 to 12 1.1 275 2.5 to 5.5 −40 to +85 SPI, 8 Gain steps, Software shutdown 16-pin PDIP, 16-pin SOIC MCP6S91 1 1 to 18 1.0 4000 2.5 to 5.5 −40 to +125 SPI, 8 Gain steps, Software shutdown, Vref 8-pin PDIP, 8-pin SOIC, 8-pin MSOP MCP6S92 2 1 to 18 1.0 4000 2.5 to 5.5 −40 to +125 SPI, 8 Gain steps, Software shutdown 8-pin PDIP, 8-pin SOIC, 8-pin MSOP MCP6S93 2 1 to 18 1.0 4000 2.5 to 5.5 −40 to +125 SPI, 8 Gain steps, Software shutdown, Vref, SO 10-pin MSOP lInear: selectable gain amplifiers (sga) Part # channels −3dB BW (khz) Iq (µa) Vos (mV) operating Voltage (V) Temperature range (°c) gain steps (V/V) Features Packages MCP6G01 1 900 110 4.5 1.8 to 5.5 −40 to +125 1, 10, 50 Tri-State control pin 8-pin SOIC, 8-pin MSOP, 5-pin SOT-23(S, R, U) MCP6G02 2 900 110 4.5 1.8 to 5.5 −40 to +125 1, 10, 50 Tri-State control pin 8-pin SOIC, 8-pin MSOP MCP6G03 1 900 110 4.5 1.8 to 5.5 −40 to +125 1, 10, 50 Tri-State control pin, Chip select 8-pin SOIC, 8-pin MSOP MCP6G04 4 900 110 4.5 1.8 to 5.5 −40 to +125 1, 10, 50 Tri-State control pin 14-pin SOIC, 14-pin TSSOP lInear: Instrumentation amplifiers Part # # Per Package gBWP Iq max (ma) max Vos (µV) Vos drift max (µV/°c) operating Voltage (V) Temperature range (°c) Features Packages MCP6N11 1 500 kHz 1.1 350 2.7 1.8 to 5.5 −40 to +125 Rail-to-Rail Input/Output, mCal Technology 8-pin SOIC, 8-pin 2 × 3 TDFN legend: S = Standard Pinout; R = Reverse Pinout; U = Alternative Pinout
Analog & Interface Product Selector Guide lInear: comparators Part # # per Package Vref (V) Typical Propagation delay (µs) Iq Typical (µa) Vos max (mV) operating Voltage (V) Temperature Range (°C) Features Packages MCP6541 1 – 4 1 5 1.6 to 5.5 −40 to +125 Push-Pull, Rail-to-Rail Input/Output 5-pin SOT-23(S, R, U), 5-pin SC-70(S, U), 8-pin PDIP, 8-pin SOIC, 8-pin MSOP MCP6542 2 – 4 1 5 1.6 to 5.5 −40 to +125 Push-Pull, Rail-to-Rail Input/Output 8-pin PDIP, 8-pin SOIC, 8-pin MSOP MCP6543 1 – 4 1 5 1.6 to 5.5 −40 to +125 Push-Pull, Rail-to-Rail Input/Output, Chip select 8-pin PDIP, 8-pin SOIC, 8-pin MSOP MCP6544 4 – 4 1 5 1.6 to 5.5 −40 to +125 Push-Pull, Rail-to-Rail Input/Output 14-pin PDIP, 14-pin SOIC, 14-pin TSSOP MCP6546 1 – 4 1 5 1.6 to 5.5 −40 to +125 Open-drain, 9V, Rail-to-Rail Input/Output 5-pin SOT-23(S, R, U), 5-pin SC-70(S, U), 8-pin PDIP, 8-pin SOIC, 8-pin MSOP MCP6547 2 – 4 1 5 1.6 to 5.5 −40 to +125 Open-drain, 9V, Rail-to-Rail Input/Output 8-pin PDIP, 8-pin SOIC, 8-pin MSOP MCP6548 1 – 4 1 5 1.6 to 5.5 −40 to +125 Open-drain, 9V, Rail-to-Rail Input/Output, Chip select 8-pin PDIP, 8-pin SOIC, 8-pin MSOP MCP6549 4 – 4 1 5 1.6 to 5.5 −40 to +125 Open-drain, 9V, Rail-to-Rail Input/Output 14-pin PDIP, 14-pin SOIC, 14-pin TSSOP ref 6-pin SOT-23 MCP6561 1 – 0.047 100 10 1.8 to 5.5 −40 to +125 Push-Pull, Rail-to-Rail Input/Output 5-pin SOT-23(S, R, U), 5-pin SC-70(S) MCP6562 2 – 0.047 100 10 1.8 to 5.5 −40 to +125 Push-Pull, Rail-to-Rail Input/Output 8-pin SOIC, 8-pin MSOP MCP6564 4 – 0.047 100 10 1.8 to 5.5 −40 to +125 Push-Pull, Rail-to-Rail Input/Output 14-pin SOIC, 14-pin TSSOP MCP6566 1 – 0.047 100 10 1.8 to 5.5 -40 to +125 Open-Drain, Rail-to-Rail Input/Output 5-pin SOT-23(S, R, U), 5-pin SC-70(S) MCP6567 2 – 0.047 100 10 1.8 to 5.5 -40 to +125 Open-Drain, Rail-to-Rail Input/Output 8-pin SOIC, 8-pin MSOP MCP6569 4 – 0.047 100 10 1.8 to 5.5 -40 to +125 Open-Drain, Rail-to-Rail Input/Output 14-pin SOIC, 14-pin TSSOP legend: S = Standard Pinout; R = Reverse Pinout; U = Alternative Pinout mIXeD SIgnal mIXed sIgnal: successive approximation register (sar) a/d converters Part # resolution (bits) maximum sampling rate (ksamples/sec) # of Input channels Input Type Interface Input Voltage range (V) max. supply current (µa) max. Inl Temperature range (°c) Packages MCP3021 10 22 1 Single-ended I2C™ 2.7 to 5.5 250 ±1 LSB −40 to +125 5-pin SOT-23A MCP3001 10 200 1 Single-ended SPI 2.7 to 5.5 500 ±1 LSB −40 to +85 8-pin PDIP, 8-pin SOIC, 8-pin MSOP, 8-pin TSSOP MCP3002 10 200 2 Single-ended SPI 2.7 to 5.5 650 ±1 LSB −40 to +85 8-pin PDIP, 8-pin SOIC, 8-pin MSOP, 8-pin TSSOP MCP3004 10 200 4 Single-ended SPI 2.7 to 5.5 550 ±1 LSB −40 to +85 14-pin PDIP, 14-pin SOIC, 14-pin TSSOP MCP3008 10 200 8 Single-ended SPI 2.7 to 5.5 550 ±1 LSB −40 to +85 16-pin PDIP, 16-pin SOIC MCP3221 12 22 1 Single-ended I2C™ 2.7 to 5.5 250 ±2 LSB −40 to +125 5-pin SOT-23A MCP3201 12 100 1 Single-ended SPI 2.7 to 5.5 400 ±1 LSB −40 to +85 8-pin PDIP, 8-pin SOIC, 8-pin MSOP, 8-pin TSSOP MCP3202 12 100 2 Single-ended SPI 2.7 to 5.5 550 ±1 LSB −40 to +85 8-pin PDIP, 8-pin SOIC, 8-pin MSOP, 8-pin TSSOP MCP3204 12 100 4 Single-ended SPI 2.7 to 5.5 400 ±1 LSB −40 to +85 14-pin PDIP, 14-pin SOIC, 14-pin TSSOP MCP3208 12 100 8 Single-ended SPI 2.7 to 5.5 400 ±1 LSB −40 to +85 16-pin PDIP, 16-pin SOIC MCP3301 13 100 1 Differential SPI 2.7 to 5.5 450 ±1 LSB −40 to +85 8-pin PDIP, 8-pin SOIC, 8-pin MSOP, 8-pin TSSOP MCP3302 13 100 2 Differential SPI 2.7 to 5.5 450 ±1 LSB −40 to +85 14-pin PDIP, 14-pin SOIC, 14-pin TSSOP MCP3304 13 100 4 Differential SPI 2.7 to 5.5 450 ±1 LSB −40 to +85 16-pin PDIP, 16-pin SOIC
Analog & Interface Product Selector Guide mIXed sIgnal: delta-sigma a/d converters Part # resolution (bits) maximum sampling rate (samples/sec) # of Input channels Interface supply Voltage range (V) Typical supply current (µa) Typical Inl (ppm) Temperature range (°c) Features Packages MCP3421 18 to 12 4 to 240 1 Diff I2C™ 2.7 to 5.5 155 10 −40 to +125 PGA, Vref 6-pin SOT-23A MCP3422 18 to 12 4 to 240 2 Diff I2C 2.7 to 5.5 145 10 −40 to +125 PGA, Vref 8-pin SOIC, 8-pin MSOP, 8-pin 2 × 3 DFN MCP3423 18 to 12 4 to 240 2 Diff I2C 2.7 to 5.5 145 10 −40 to +125 PGA, Vref, Selectable I2C™ addressing 10-pin MSOP, 10-pin 3 × 3 DFN MCP3424 18 to 12 4 to 240 4 Diff I2C 2.7 to 5.5 145 10 −40 to +125 PGA, Vref, Selectable I2C addressing 14-pin SOIC, 14-pin TSSOP MCP3425 16 to 12 15 to 240 1 Diff I2C 2.7 to 5.5 155 10 −40 to +125 PGA, Vref 6-pin SOT-23A MCP3426 16 to 12 15 to 240 2 Diff I2C 2.7 to 5.5 145 10 −40 to +125 PGA, Vref 8-pin SOIC, 8-pin MSOP, 8-pin 2 × 3 DFN MCP3427 16 to 12 15 to 240 2 Diff I2C 2.7 to 5.5 145 10 −40 to +125 PGA, Vref, Selectable I2C addressing 10-pin MSOP, 10-pin 3 × 3 DFN MCP3428 16 to 12 15 to 240 4 Diff I2C 2.7 to 5.5 145 10 −40 to +125 PGA, Vref, Selectable I2C addressing 14-pin SOIC, 14-pin TSSOP MCP3550-50 22 13 1 Diff SPI 2.7 to 5.5 120 2 −40 to +125 50 Hz rejection 8-pin SOIC, 8-pin MSOP MCP3550-60 22 15 1 Diff SPI 2.7 to 5.5 140 2 −40 to +125 60 Hz rejection 8-pin SOIC, 8-pin MSOP MCP3551 22 14 1 Diff SPI 2.7 to 5.5 120 2 −40 to +125 Simultaneous 50/60 Hz rejection 8-pin SOIC, 8-pin MSOP MCP3553 20 60 1 Diff SPI 2.7 to 5.5 140 2 −40 to +125 8-pin SOIC, 8-pin MSOP mIXed sIgnal: energy measurement Ics Part # dynamic range Typical accuracy adc channels gain selection output Type Typical Voltage reference drift (ppm/°c) Typical supply current (ma) analog Voltage range (V) digital Voltage range (V) Temperature range (°c) Features Packages MCP3901 24-bit resolution 91 dB Programmable data rate 20-pin SSOP, 20-pin 4 × 4 QFN MCP3903 24-bit resolution 91 dB Programmable data rate 28-pin SSOP MCP3909 1000:1 0.1% 2 up to 16 Active power MCP3911 24-bit resolution 94.5 dB data rate 20-pin SSOP, 20-pin 4 × 4 QFN mIXed sIgnal: current/dc Power measurement Ics Part # # of current sensors description Full scale range (mV) current measurement max. accr (%) effective sampling Interval min. to max. (msec) Bus Voltage range (V) # of Temp. monitors (ambient, remote) Temp. accuracy Typ./max. (°c) alert/ Therm Peak detection address select Package PAC1710 1 SMBus/I2C™ Current/ DC Power Sensor 10, 20, 40, 80 ±1 2.5 to 2,600 0 to + 40 – – 1 – Yes 10-pin DFN PAC1720 2 Dual SMBus/I2C Current/ DC Power Sensor 10, 20, 40, 80 ±1 2.5 to 2,600 0 to + 40 – – 1 – Yes 10-pin DFN EMC1701-1 1 SMBus/I2C Current/DC Power Sensor with Temperature Monitoring 10, 20, 40, 80 ±1 2.5 to 2,600 +3 to +24 1, 0 ±0.25/±1 2 Hardware Yes 12-pin 4 × 4 QFN EMC1701-2 1 SMBus/I2C Current/DC Power Sensor with Temperature Monitoring 10, 20, 40, 80 ±1 2.5 to 2,600 +3 to +24 1, 0 ±0.25/±1 2 Software Yes 10-pin MSOP EMC1702-1 1 SMBus/I2C Current/DC Power Sensor with Two Temperature Monitors 10, 20, 40, 80 ±1 2.5 to 2,600 +3 to +24 1, 1 ±0.25/±1 2 Hardware Yes 12-pin 4 × 4 QFN EMC1704-1 1 SMBus/I2C Current/DC Power Sensor with Four Temperature Monitors 10, 20, 40, 80 ±1 2.5 to 2,600 +3 to +24 1, 3 ±0.25/±1 2 Software Yes 14-pin SOIC EMC1704-2 1 SMBus/I2C Current/DC Power Sensor with Four Temperature Monitors 10, 20, 40, 80 ±1 2.5 to 2,600 +3 to +24 1, 3 ±0.25/±1 2 Hardware Yes 16-pin 4 × 4 QFN
Analog & Interface Product Selector Guide mIXed sIgnal: dual slope a/d converters Part # supply Voltage (V) Input Voltage range resolution sampling rate (conv/s) Input channels data Interface Temperature range (°c) Features Packages TC500 ±4.5 to ±7.5 Vss + 1.5V to Vdd – 1.5V Up to 16 bits 4 to 10 1 3-Wire 0 to +70 Differential input range, Programmable resolution/ conversion time 16-pin PDIP, 16-pin SOIC TC500A ±4.5 to ±7.5 Vss + 1.5V to Vdd – 1.5V Up to 17 bits 4 to 10 1 3-Wire 0 to +70 Differential input range, Programmable resolution/ conversion time 16-pin PDIP, 16-pin SOIC TC510 +4.5 to +5.5 V ss + 1.5V to Vdd – 1.5V Up to 17 bits 4 to 10 1 3-Wire 0 to +70 Differential input range, Programmable resolution/ conversion time, Charge pump (−V) output pin 24-pin PDIP, 24-pin SOIC TC514 +4.5 to +5.5 V ss + 1.5V to Vdd – 1.5V Up to 17 bits 4 to 10 4 3-Wire 0 to +70 Differential input range, Programmable resolution/ conversion time, Charge pump (−V) output pin 28-pin PDIP, 28-pin SOIC TC520A +4.5 to +5.5 – – – – Serial port 0 to +70 Optional serial interface adapter for TC500/500A/510/514 14-pin PDIP, 16-pin SOIC TC7109 ±4.5 to ±5.5 V ss + 1.5V to Vdd – 1.0V 12 bits plus sign bit 2 to 10 1 Parallel or Serial port −25 to +85 Differential input range 40-pin PDIP, 44-pin PLCC, 44-pin MQFP TC7109A ±4.5 to ±5.5 V ss + 1.5V to Vdd – 1.0V 12 bits plus sign bit 2 to 10 1 Parallel or Serial port −25 to +85 Differential input range 40-pin PDIP, 44-pin PLCC, 44-pin MQFP mIXed sIgnal: Binary and Bcd a/d converters Part # description supply Voltage (V) Input Voltage range resolution (digits) resolution (counts) max Power (mW) data Interface Temperature range (°c) Features Packages TC850 Binary A/D ±5 Vss + 1.5V to Vdd – 1.5V 15-bit ±32,768 35 8-bit parallel −25 to +70 Highest conversion speed (40 conv/sec) 44-pin PLCC, 40-pin PDIP TC14433 BCD A/D ±4.5 to ±8 ±199.9 mV to 1.999V 3½ ±2,000 20 MUXed BCD −40 to +85 For DMM, DPM, Data loggers 24-pin SOIC, 24-pin PDIP, 28-pin PLCC TC14433A BCD A/D ±4.5 to ±8 ±199.9 mV to 1.999V 3½ ±2,000 20 MUXed BCD −40 to +85 For DMM, DPM, Data loggers 24-pin PDIP, 28-pin PLCC mIXed sIgnal – dIsPlay a/d conVerTers Part # display Type supply Voltage (V) resolution (digits) resolution (counts) Power (mW) Temperature range (°c) Features Packages TC7106 LCD 9 3½ ±2,000 10 −25 to +85 For DMM, DPM, Data logger applications 40-pin PDIP, 44-pin PLCC, 44-pin MQFP TC7106A LCD 9 3½ ±2,000 10 −25 to +85 For DMM, DPM, Data logger applications 40-pin PDIP, 44-pin PLCC, 44-pin MQFP TC7107 LED ±5 3½ ±2,000 10 −25 to +85 For DMM, DPM, Data logger applications 40-pin PDIP, 44-pin PLCC, 44-pin MQFP TC7107A LED ±5 3½ ±2,000 10 −25 to +85 For DMM, DPM, Data logger applications 40-pin PDIP, 44-pin PLCC, 44-pin MQFP TC7116 LCD 9 3½ ±2,000 10 −25 to +85 Hold function 40-pin PDIP, 44-pin PLCC, 44-pin MQFP TC7116A LCD 9 3½ ±2,000 10 −25 to +85 Hold function 40-pin PDIP, 44-pin PLCC, 44-pin MQFP TC7117 LED ±5 3½ ±2,000 10 −25 to +85 Hold function 40-pin PDIP, 44-pin PLCC, 44-pin MQFP TC7117A LED ±5 3½ ±2,000 10 −25 to +85 Hold function 40-pin PDIP, 44-pin PLCC, 44-pin MQFP TC7126 LCD 9 3½ ±2,000 0.5 −25 to +85 Low-power TC7106 40-pin PDIP, 44-pin PLCC, 44-pin MQFP TC7126A LCD 9 3½ ±2,000 0.5 −25 to +85 Low-power TC7106 40-pin PDIP, 44-pin PLCC, 44-pin MQFP TC7129 LCD 9 4½ ±20,000 4.5 0 to +70 Lowest noise ±3 mV sensitivity 40-pin PDIP, 44-pin PLCC, 44-pin MQFP
Analog & Interface Product Selector Guide mIXed sIgnal: digital Potentiometers Part # # of Taps memory # per Package Interface resistance (kohms) Inl (max) dnl (max) Temperature range (°c) comments Packages MCP4011 64 Volatile 1 Up/Down 2.1, 5, 10, 50 0.5 0.5 −40 to +125 Potentiometer mode 8-pin SOIC, 8-pin MSOP, 8-pin 2 × 3 DFN MCP4012 64 Volatile 1 Up/Down 2.1, 5, 10, 50 0.5 0.5 −40 to +125 Rheostat mode 6-pin SOT-23 MCP4013 64 Volatile 1 Up/Down 2.1, 5, 10, 50 0.5 0.5 −40 to +125 Potentiometer to Vss 6-pin SOT-23 MCP4014 64 Volatile 1 Up/Down 2.1, 5, 10, 50 0.5 0.5 −40 to +125 Rheostat to Vss 5-pin SOT-23 MCP4017 128 Volatile 1 I2C™ 5, 10, 50, 100 0.5 0.25 −40 to +125 7-bit, Volatile, I2C digital potentiometer 6-pin SC-70 MCP4018 128 Volatile 1 I2C 5, 10, 50, 100 0.5 0.25 −40 to +125 7-bit, Volatile, I2C digital potentiometer 6-pin SC-70 MCP4019 128 Volatile 1 I2C 5, 10, 50, 100 0.5 0.25 −40 to +125 7-bit, Volatile, I2C digital potentiometer 5-pin SC-70 MCP40D17 128 Volatile 1 I2C 5, 10, 50, 100 0.5 0.25 −40 to +125 7-bit, Volatile, I2C digital potentiometer 6-pin SC-70 MCP40D18 128 Volatile 1 I2C 5, 10, 50, 100 0.5 0.25 −40 to +125 7-bit, Volatile, I2C digital potentiometer 6-pin SC-70 MCP40D19 128 Volatile 1 I2C 5, 10, 50, 100 0.5 0.25 −40 to +125 7-bit, Volatile, I2C digital potentiometer 5-pin SC-70 MCP4021 64 Nonvolatile 1 Up/Down 2.1, 5, 10, 50 0.5 0.5 −40 to +125 Potentiometer mode, Shutdown, WiperLock™ Technology 8-pin SOIC, 8-pin MSOP, 8-pin 2 × 3 DFN MCP4022 64 Nonvolatile 1 Up/Down 2.1, 5, 10, 50 0.5 0.5 −40 to +125 Rheostat mode, Shutdown, WiperLock™ Technology 6-pin SOT-23 MCP4023 64 Nonvolatile 1 Up/Down 2.1, 5, 10, 50 0.5 0.5 −40 to +125 Potentiometer to Vss, WiperLock Technology 6-pin SOT-23 MCP4024 64 Nonvolatile 1 Up/Down 2.1, 5, 10, 50 0.5 0.5 −40 to +125 Rheostat to Vss, Shutdown, WiperLock Technology 5-pin SOT-23 MCP4141 128 Nonvolatile 1 SPI 5, 10, 50, 100 0.5 0.25 −40 to +125 Potentiometer mode, Shutdown 8-pin PDIP, 8-pin SOIC, 8-pin MSOP, 8-pin 3 × 3 DFN MCP4142 128 Nonvolatile 1 SPI 5, 10, 50, 100 0.8 0.25 −40 to +125 Rheostat mode, Shutdown 8-pin PDIP, 8-pin SOIC, 8-pin MSOP, 8-pin 3 × 3 DFN MCP4241 128 Nonvolatile 2 SPI 5, 10, 50, 100 0.5 0.25 −40 to +125 Potentiometer mode, Shutdown, WiperLock Technology 14-pin PDIP, 14-pin SOIC, 14-pin TSSOP, 16-pin 4 × 4 QFN MCP4242 128 Nonvolatile 2 SPI 5, 10, 50, 100 0.8 0.25 −40 to +125 Rheostat mode, Shutdown 10-pin MSOP, 10-pin 3 × 3 DFN MCP4131 129 Volatile 1 SPI 5, 10, 50, 100 0.5 0.25 −40 to +125 Potentiometer mode, Shutdown 8-pin PDIP, 8-pin SOIC, 8-pin MSOP, 8-pin 3 × 3 DFN MCP4132 129 Volatile 1 SPI 5, 10, 50, 100 0.8 0.25 −40 to +125 Rheostat mode, Shutdown 8-pin PDIP, 8-pin SOIC, 8-pin MSOP, 8-pin 3 × 3 DFN MCP4231 128 Volatile 2 SPI 5, 10, 50, 100 0.5 0.25 −40 to +125 Potentiometer mode, Shutdown, WiperLock Technology 14-pin PDIP, 14-pin SOIC, 14-pin TSSOP, 16-pin 4 × 4 QFN MCP4232 128 Volatile 2 SPI 5, 10, 50, 100 0.8 0.25 −40 to +125 Rheostat mode, Shutdown 10-pin MSOP, 10-pin 3 × 3 DFN MCP41010 256 Volatile 1 SPI 10 1 1 −40 to +85 Potentiometer mode, Shutdown 8-pin PDIP, 8-pin SOIC MCP41050 256 Volatile 1 SPI 50 1 1 −40 to +85 Potentiometer mode, Shutdown 8-pin PDIP, 8-pin SOIC MCP41100 256 Volatile 1 SPI 100 1 1 −40 to +85 Potentiometer mode, Shutdown 8-pin PDIP, 8-pin SOIC MCP4151 256 Volatile 1 SPI 5, 10, 50, 100 1 0.5 −40 to +125 Potentiometer mode, Shutdown 8-pin PDIP, 8-pin SOIC, 8-pin MSOP, 8-pin 3 × 3 DFN MCP4152 256 Volatile 1 SPI 5, 10, 50, 100 1 0.5 −40 to +125 Rheostat mode, Shutdown 8-pin PDIP, 8-pin SOIC, 8-pin MSOP, 8-pin 3 × 3 DFN MCP4161 256 Nonvolatile 1 SPI 5, 10, 50, 100 1 0.5 −40 to +125 Potentiometer mode, Shutdown 8-pin PDIP, 8-pin SOIC, 8-pin MSOP, 8-pin 3 × 3 DFN MCP4162 256 Nonvolatile 1 SPI 5, 10, 50, 100 1 0.5 −40 to +125 Rheostat mode, Shutdown 8-pin PDIP, 8-pin SOIC, 8-pin MSOP, 8-pin 3 × 3 DFN MCP42010 256 Volatile 2 SPI 10 1 1 −40 to +85 Potentiometer mode, Shutdown 14-pin PDIP, 14-pin SOIC, 14-pin TSSOP MCP42100 256 Volatile 2 SPI 100 1 1 −40 to +85 Potentiometer mode, Shutdown 14-pin PDIP, 14-pin SOIC, 14-pin TSSOP MCP4251 256 Volatile 2 SPI 5, 10, 50, 100 1 0.5 −40 to +125 Potentiometer mode, Shutdown, WiperLock Technology 14-pin PDIP, 14-pin SOIC, 14-pin TSSOP, 16-pin 4 × 4 QFN MCP4252 256 Volatile 2 SPI 5, 10, 50, 100 1 0.5 −40 to +125 Rheostat mode, Shutdown 10-pin MSOP, 10-pin 3 × 3 DFN MCP4261 256 Nonvolatile 2 SPI 5, 10, 50, 100 1 0.5 −40 to +125 Potentiometer mode, Shutdown, WiperLock Technology 14-pin PDIP, 14-pin SOIC, 14-pin TSSOP, 16-pin 4 × 4 QFN MCP4262 256 Nonvolatile 2 SPI 5, 10, 50, 100 1 0.5 −40 to +125 Rheostat mode, Shutdown 10-pin MSOP, 10-pin 3 × 3 DFN MCP4341 129 Nonvolatile 4 SPI 5, 10, 50, 100 0.8 0.375 −40 to +125 7-bit, Volatile potentiometer with an SPI interface 20-pin TSSOP, 20-pin 4 × 4 QFN MCP4342 129 Nonvolatile 4 SPI 5, 10, 50, 100 0.8 0.375 −40 to +125 7-bit, Volatile rheostat with an SPI interface 14-pin TSSOP MCP4361 257 Nonvolatile 4 SPI 5, 10, 50, 100 1 0.5 −40 to +125 8-bit, Non-volatile potentiometer with an SPI interface 20-pin TSSOP, 20-pin 4 × 4 QFN
Analog & Interface Product Selector Guide mIXed sIgnal: digital Potentiometers (continued) Part # # of Taps memory # per Package Interface resistance (kohms) Inl (max) dnl (max) Temperature range (°c) comments Packages MCP4362 257 Nonvolatile 4 SPI 5, 10, 50, 100 1 0.5 −40 to +125 8-bit, Non-volatile rheostat with an SPI interface 14-pin TSSOP MCP4331 129 Volatile 4 SPI 5, 10, 50, 100 0.8 0.375 −40 to +125 7-bit, Volatile potentiometer with an SPI interface 20-pin TSSOP, 20-pin 4 × 4 QFN MCP4332 129 Volatile 4 SPI 5, 10, 50, 100 0.8 0.375 −40 to +125 7-bit, Volatile rheostat with an SPI interface 14-pin TSSOP MCP4351 257 Volatile 4 SPI 5, 10, 50, 100 1 0.5 −40 to +125 8-bit, Non-volatile potentiometer with an SPI interface 20-pin TSSOP, 20-pin 4 × 4 QFN MCP4352 257 Volatile 4 SPI 5, 10, 50, 100 1 0.5 −40 to +125 8-bit, Non-volatile rheostat with an SPI interface 14-pin TSSOP MCP4441 129 Nonvolatile 4 I2C 5, 10, 50, 100 0.5 0.25 −40 to +125 Potentiometer mode, WiperLock Technology 20-pin TSSOP, 20-pin 4 × 4 QFN MCP4442 129 Nonvolatile 4 I2C 5, 10, 50, 101 0.8 0.375 −40 to +125 Rheostat mode, WiperLock Technology 14-pin TSSOP MCP4461 257 Nonvolatile 4 I2C 5, 10, 50, 102 1 0.5 −40 to +125 Potentiometer mode, WiperLock Technology 20-pin TSSOP, 20-pin 4 × 4 QFN MCP4462 257 Nonvolatile 4 I2C 5, 10, 50, 103 1 0.5 −40 to +125 Rheostat mode, WiperLock™ Technology 14-pin TSSOP MCP4531 128 Volatile 1 I2C 5, 10, 50, 100 0.5 0.25 −40 to +125 Potentiometer mode 8-pin MSOP MCP4631 128 Volatile 2 I2C 5, 10, 50, 100 0.5 0.25 −40 to +125 Potentiometer mode 14-pin TSSOP, 16-pin 4 × 4 QFN MCP4541 128 Nonvolatile 1 I2C 5, 10, 50, 100 0.5 0.25 −40 to +125 Potentiometer mode, WiperLock Technology 8-pin MSOP MCP4641 128 Nonvolatile 2 I2C 5, 10, 50, 100 0.5 0.25 −40 to +125 Potentiometer mode, WiperLock Technology 14-pin TSSOP, 16-pin 4x4 QFN MCP4651 256 Volatile 2 I2C 5, 10, 50, 100 1 0.5 −40 to +125 Potentiometer mode 14-pin TSSOP, 16-pin 4 × 4 QFN MCP4561 256 Nonvolatile 1 I2C 5, 10, 50, 100 1 0.5 −40 to +125 Potentiometer mode, WiperLock Technology 8-pin MSOP MCP4661 256 Nonvolatile 2 I2C 5, 10, 50, 100 1 0.5 −40 to +125 Potentiometer mode, WiperLock Technology 14-pin TSSOP, 16-pin 4 × 4 QFN MCP4532 128 Nonvolatile 1 I2C 5, 10, 50, 100 0.8 0.375 −40 to +125 Rheostat mode 8-pin MSOP, 8-pin 3 × 3 DFN MCP4632 128 Volatile 2 I2C 5, 10, 50, 100 0.8 0.375 −40 to +125 Rheostat mode 10-pin MSOP, 10-pin 3 × 3 DFN MCP4542 128 Nonvolatile 1 I2C 5, 10, 50, 100 0.8 0.375 −40 to +125 Rheostat mode, WiperLock Technology 8-pin MSOP, 8-pin 3 × 3 DFN MCP4552 256 Volatile 1 I2C 5, 10, 50, 100 1 0.5 −40 to +125 Rheostat mode 8-pin MSOP, 8-pin 3 × 3 DFN MCP4652 256 Nonvolatile 2 I2C 5, 10, 50, 100 1 0.5 −40 to +125 Rheostat mode 10-pin MSOP, 10-pin 3 × 3 DFN MCP4562 256 Nonvolatile 1 I2C 5, 10, 50, 100 1 0.5 −40 to +125 Rheostat mode, WiperLock Technology 8-pin MSOP, 8-pin 3 × 3 DFN MCP4662 256 Nonvolatile 2 I2C 5, 10, 50, 100 1 0.5 −40 to +125 Rheostat mode, WiperLock Technology 10-pin MSOP, 10-pin 3 × 3 DFN mIXed sIgnal: Frequency-to-Voltage/Voltage-to-Frequency converters Part # Frequency range (khz) Full scale (ppm Fs/°c) non-linearity (%Fs) Temperature range (°c) Packages TC9400 100 ±40 ±0.05 −40 to +85 14-pin PDIP, 14-pin SOIC TC9401 100 ±40 ±0.02 −40 to +85 14-pin PDIP, 14-pin SOIC TC9402 100 ±100 ±0.25 −40 to +85 14-pin PDIP, 14-pin SOIC
Analog & Interface Product Selector Guide mIXed sIgnal: d/a converters Part # resolution (Bits) dacs per Package Interface Vref output settling Time (µs) dnl (lsB) Typical standby current (µa) Typical operating current (µa) Temperature range (°c) Packages TC1320 8 1 SMbus Ext 10 0.8 0.1 350 −40 to +85 8-pin MSOP, 8-pin SOIC TC1321 10 1 SMbus Ext 10 2 0.1 350 −40 to +85 8-pin MSOP, 8-pin SOIC MCP47A1 6 1 I2C™/SMBus Ext 15 0.5 90 130 −40 to +125 6-pin SC-70 MCP4706 8 1 I2C Ext 6 0.05 0.06 210 −40 to +125 6-pin SOT-23 MCP4716 10 1 I2C Ext 6 0.188 0.06 210 −40 to +125 6-pin SOT-23 MCP4725 12 1 I2C Vdd 6 0.75 1 210 −40 to +125 6-pin SOT-23 MCP4726 12 1 I2C Ext 6 0.75 0.06 210 −40 to +125 6-pin SOT-23 MCP4728 12 4 I2C Int/Vdd 6 0.75 0.04 800 −40 to +125 10-pin MSOP MCP4801 8 1 SPI Int 4.5 0.5 0.3 330 −40 to +125 8-pin PDIP, 8-pin SOIC, 8-pin MSOP, 8-pin DFN MCP4802 8 2 SPI Int 4.5 0.5 3.3 415 −40 to +125 8-pin PDIP, 8-pin SOIC, 8-pin MSOP MCP4811 10 1 SPI Int 4.5 0.5 0.3 330 −40 to +125 8-pin PDIP, 8-pin SOIC, 8-pin MSOP, 8-pin DFN MCP4812 10 2 SPI Int 4.5 0.5 3.3 415 −40 to +125 8-pin PDIP, 8-pin SOIC, 8-pin MSOP MCP4821 12 1 SPI Int 4.5 1 0.3 330 −40 to +125 8-pin PDIP, 8-pin SOIC, 8-pin MSOP, 8-pin DFN MCP4822 12 2 SPI Int 4.5 1 3.3 415 −40 to +125 8-pin PDIP, 8-pin SOIC, 8-pin MSOP MCP4901 8 1 SPI Ext 4.5 0.5 3.3 175 −40 to +125 8-pin PDIP, 8-pin SOIC, 8-pin MSOP, 8-pin DFN MCP4902 8 2 SPI Ext 4.5 0.5 0.3 350 −40 to +125 14-pin PDIP, 14-pin SOIC, 14-pinTSSOP MCP4911 10 1 SPI Ext 4.5 0.5 3.3 175 −40 to +125 8-pin DFN, 8-pin MSOP, 8-pin PDIP, 8-pin SOIC MCP4912 10 2 SPI Ext 4.5 0.5 0.3 350 −40 to +125 14-pin PDIP, 14-pin SOIC, 14-pinTSSOP MCP4921 12 1 SPI Ext 4.5 0.75 3.3 175 −40 to +125 8-pin PDIP, 8-pin SOIC, 8-pin MSOP, 8-pin DFN MCP4922 12 2 SPI Ext 4.5 0.75 0.3 350 −40 to +125 14-pin PDIP, 14-pin SOIC, 14-pin TSSOP note: The analog output is voltage. InTerFaCe InTerFace: controller area network (can) Products Part # operating Voltage (V) Temperature range (°c) Tx Buffers rx Buffers Filters masks Interrupt output unique Features Packages MCP2510(1) 2.7 to 5.5 −40 to +125 3 2 6 2 Yes CAN 2.0B Active controller with SPI interface to MCU, 3 transmit buffers, 2 receive buffers, HW and SW message triggers 18-pin PDIP, 18-pin SOIC, 20-pin TSSOP MCP2515 2.7 to 5.5 −40 to +125 3 2 6 2 Yes MCP2510 pin compatible upgrade with enhanced features including higher throughput and data byte filtering 18-pin PDIP, 18-pin SOIC, 20-pin TSSOP MCP25020 2.7 to 5.5 −40 to +125 3 2 2 1 N/A CAN 2.0B Active I/O Expander, Configurable I/O, 2 PWM outputs 14-pin PDIP, 14-pin SOIC MCP25025 2.7 to 5.5 −40 to +85 3 2 2 1 N/A CAN 2.0B Active I/O Expander, Configurable I/O,
2 PWM outputs, One-wire CAN option 14-pin PDIP, 14-pin SOIC
MCP25050 2.7 to 5.5 −40 to +125 3 2 2 1 N/A Mixed-Signal CAN 2.0B Active I/O Expander, Configurable I/O, 4 10-bit ADCs, 2 PWM outputs 14-pin PDIP, 14-pin SOIC MCP25055 2.7 to 5.5 −40 to +85 3 2 2 1 N/A Mixed-Signal CAN 2.0B Active I/O Expander, Configurable I/O, 4 10-bit ADCs, 2 PWM outputs, One-wire CAN option 14-pin PDIP, 14-pin SOIC MCP2551 4.5 to 5.5 −40 to +125 N/A N/A N/A N/A N/A High-speed CAN Transceiver (1 Mbps max. CAN bus speed), ISO11898 compatible, Industry standard pinout 8-pin PDIP, 8-pin SOIC note 1: Not recommended for new designs.
Analog & Interface Product Selector Guide InTerFace: Infrared Products Part # operating Voltage (V) operating Temp. range (°c) max. Baud rate (Kbaud) unique Features Packages MCP2120 2.5 to 5.5 −40 to +85 325 UART to IR encoder/decoder with both hardware and software baud rate selection 14-pin PDIP, 14-pin SOIC MCP2122 1.8 to 5.5 −40 to +85 16× less than clock input UART to IR encoder/decoder 8-pin PDIP, 8-pin SOIC MCP2140A 2.0 to 5.5 −40 to +85 9.6 IrDA® Standard protocol handler plus bit encoder/decoder, Fixed baud rate, Low-cost 18-pin PDIP, 18-pin SOIC, 20-pin SSOP MCP2150 3.0 to 5.5 −40 to +85 115.2 IrDA® Standard protocol handler plus bit encoder/decoder on one chip for DTE applications, Programmable ID 18-pin PDIP, 18-pin SOIC, 20-pin SSOP MCP2155 3.0 to 5.5 −40 to +85 115.2 IrDA® Standard protocol handler plus bit encoder/decoder on one chip for DCE applications, Programmable ID 18-pin PDIP, 18-pin SOIC, 20-pin SSOP IrDA® is a registered trademark of Infrared Data Association InTerFace: ethernet Products Part # operating Voltage (V) operating Temp. range (°c) mac Phy TX/rX ram Interface Features Packages ENC28J60 3.1 to 3.6 −40 to +85 Yes 10Base-T 8 KB SPI
- 10Base-T Ethernet controller, IEEE 802.3™ compliant
- Loopback test modes, Auto-polarity detection
- Clock out pin with programmable frequencies 28-pin SOIC, 28-pin SSOP, 28-pin 6 × 6 QFN, 28-pin SPDIP ENC424J600 3.0 to 3.6 −40 to +85 Yes 10/100Base-T 24 KB
- SPI
- 8-bit multiplexed parallel interface
- 10/100 Ethernet controller, IEEE 802.3(TM) compliant
- Cryptographic Security Engines: MD5, SHA-1, AES, RSA
- Preprogrammed unique MAC address
- Loopback test modes, Auto-polarity detection
- Clock out pin with programmable frequencies 44-pin TQFP, 44-pin QFN ENC624J600 3.0 to 3.6 −40 to +85 Yes 10/100Base-T 24 KB
- SPI
- 8-bit or 16-bit multiplexed or demultiplexed parallel interface
- 10/100 Ethernet controller, IEEE 802.3(TM) compliant
- Cryptographic Security Engines: MD5, SHA-1, AES, RSA
- Preprogrammed unique MAC address
- Loopback test modes, Auto-polarity detection
- Clock out pin with programmable frequencies 64-pin TQFP InTerFace: Passive access Products Part # operating Voltage (V) operating Temp. range (°c) Bus Type rF carrier Frequency data Format Features Packages MCP2030 1.8 to 3.6 −40 to +85 SPI 125 kHz NRZ Three axis signal conditioning devices for passive access applications, High-sensitivity, Configurable smart wake-up filter 14-pin PDIP, 14-pin SOIC, 14-pin TSSOP InTerFace: lIn Transceiver Products Part # description Vreg output Voltage (V) operating Temp. range (°c) Vreg output current (ma) Vcc range (V) max Baud rate lIn specification supported Packages MCP2003A Stand-alone LIN Transceiver (industry standard pinout) None −40 to +125 None 6 to 27 20 Kbaud Revision 1.3, 2.0, 2.1, SAE J2602 8-pin PDIP, 8-pin SOIC, 8-pin 4 × 4 DFN MCP2004A Stand-alone LIN Transceiver with TXE/Fault I/O None −40 to +125 None 6 to 27 20 Kbaud Revision 1.3, 2.0, 2.1, SAE J2602 8-pin PDIP, 8-pin SOIC, 8-pin 4 × 4 DFN MCP2021A LIN Transceiver with integrated V reg 5.0 ± 3%, 3.3 ± 3% −40 to +125 70 6 to 18 20 Kbaud Revision 1.3, 2.0, 2.1, SAE J2602 8-pin PDIP, 8-pin SOIC, 8-pin 4 × 4 DFN MCP2022A LIN Transceiver with integrated V reg, RESET pin 5.0 ± 3%, 3.3 ± 3% −40 to +125 70 6 to 18 20 Kbaud Revision 1.3, 2.0, 2.1, SAE J2602 14-pin PDIP, 14-pin SOIC, 14-pin TSSOP MCP2025 LIN Transceiver with integrated V reg 5.0 ± 3%, 3.3 ± 3% −40 to +125 70 6 to 18 20 Kbaud Revision 2.0 8-pin PDIP, 8-pin SOIC, 8-pin 4 × 4 DFN MCP2050 LIN Transceiver with integrated V reg, WWDT 5.0 ± 3%, 3.3 ± 3% −40 to +125 70 6 to 18 20 Kbaud Revision 1.3, 2.0, 2.1, SAE J2602 14-pin PDIP, 14-pin SOIC, 20-pin QFN
Analog & Interface Product Selector Guide InTerFace: serial Peripherals Part # description operating Voltage (V) operating Temp. range (°c) Bus Type max. Bus Frequency (khz) Features Packages MCP23008 8-bit I/O Port Expander 1.8 to 5.5 −40 to +85 I2C™ 1700 3 HW address pins, HW interrupt, 25 mA source/sink capability per I/O 18-pin PDIP, 18-pin SOIC, 20-pin SSOP, 20-pin 4 × 4 QFN MCP23S08 8-bit I/O Port Expander 1.8 to 5.5 −40 to +85 SPI 10000 2 HW address pins, HW interrupt, 25 mA source/sink capability per I/O 18-pin PDIP, 18-pin SOIC, 20-pin SSOP, 20-pin 4 × 4 QFN MCP23009 8-bit I/O Port Expander 1.8 to 5.5 −40 to +125 I 2C™ 3400 1 HW address pin, HW interrupt, 25 mA source/sink per I/O, 100 kHz, 400 kHz and 3.4 MHz I2C™ supported 18-pin PDIP, 18-pin SOIC, 20-pin SSOP MCP23S09 8-bit I/O Port Expander 1.8 to 5.5 −40 to +125 SPI 10000 HW interrupt, 25 mA source/sink per I/O 18-pin PDIP, 18-pin SOIC MCP23016 16-bit I/O Port Expander 2.0 to 5.5 −40 to +85 I2C™ 400 3 HW address inputs, HW interrupt, 25 mA source/sink capability per I/O 28-pin PDIP, 28-pin SOIC, 28-pin SSOP, 28-pin 6 × 6 QFN MCP23017 16-bit I/O Expander 1.8 to 5.5 −40 to +125 I 2C™ 1700 3 HW address pins, 25 mA sink/source per I/O, 100 kHz, 400 kHz and 3-4 MHz I 2C™ supported, Interrupt output 28-pin PDIP, 28-pin SOIC, 28-pin SSOP, 28-pin QFN MCP23S17 16-bit I/O Expander 1.8 to 5.5 −40 to +125 SPI 10000 3 HW address pins, 25 mA sink/source per I/O, Interrupt output 28-pin PDIP, 28-pin SOIC, 28-pin SSOP, 28-pin QFN MCP23018 16-bit I/O Port Expander 1.8 to 5.5 −40 to +125 I 2C™ 3400 1 HW address pin, 2 HW interrupts, 25 mA source/sink per I/O, 100 kHz, 400 kHz and 3.4 MHz I 2C™ supported 24-pin SSOP, 28-pin SOIC, 28-pin SDIP MCP23S18 16-bit I/O Port Expander 1.8 to 5.5 −40 to +125 SPI 10000 2 HW interrupts, 25 mA source/sink per I/O 28-pin SOIC, 28-pin SDIP INTERFACE: IEEE 802.11™ Modules Part # Pin count Frequency range (ghz) sensitivity (dBm) Power output (dBm) rssI Tx Power consumption (ma) rx Power consumption (ma) clock sleep mac mac Features Protocols encryption Interface Packages MRF24WB0MA 36 2.412–2.484 −91 10 Yes 156 85 25 MHz 0.1 μA(1) Yes 802.11b, long range, low power Wi-Fi® Connection Manager, Announce, DNS, DDNS, DHCP , FTP , HTTP , NBNS, SNMP , SNTP , SSL, TCP , UDP , ZeroConf (2) WPA2-PSK, WPA-PSK, WEP 4-wire SPI 36/Module MRF24WB0MB 36 2.412–2.484 −91 10 Yes 156 85 25 MHz 0.1 μA(1) Yes 802.11b, long range, low power Wi-Fi Connection Manager, Announce, DNS, DDNS, DHCP , FTP , HTTP , NBNS, SNMP , SNTP , SSL, TCP , UDP , ZeroConf (2) WPA2-PSK, WPA-PSK, WEP 4-wire SPI 36/Module MRF24WG0MA 36 2.412–2.484 −95 18 Yes 240 156 25 MHz 0.1 mA(1) Yes 802.11b/g, Wi-Fi Direct, SoftAP, WPS Wi-Fi Connection Manager, Announce, DNS, DDNS, DHCP , FTP , HTTP , NBNS, SNMP , SNTP , SSL, TCP , UDP , ZeroConf (2) WPA2-PSK, WPA-PSK, WEP 4-wire SPI 36/Module MRF24WG0MB 36 2.412–2.484 −95 18 Yes 240 156 25 MHz 0.1 mA(1) Yes 802.11b/g, Wi-Fi Direct, SoftAP, WPS Wi-Fi Connection Manager, Announce, DNS, DDNS, DHCP , FTP , HTTP , NBNS, SNMP , SNTP , SSL, TCP , UDP , ZeroConf (2) WPA2-PSK, WPA-PSK, WEP 4-wire SPI 36/Module RN171 49 2.412–2.484 −83 12 Yes 130 30 44 MHz 4 μA Yes 802.11b/g, SoftAP, WPS, Webscan DHCP, DNS, ARP, ICMP, FTP client, HTTP client, TCP, UDP WEP, WPA, WPA2 UART, SPI Slave, Wi-Fi 49/Module RN131C 44 2.412–2.484 −85 18 Yes 210 (+18 dBm) 40 44 MHz 4 μA Yes 802.11b/g, SoftAP, WPS, Webscan DHCP, DNS, ARP, ICMP, FTP client, HTTP client, TCP, UDP WEP, WPA, WPA2 UART, SPI Slave, Wi-Fi 44/Module RN131G 44 2.412–2.484 −85 18 Yes 210 (+18 dBm) 40 44 MHz 4 μA Yes 802.11b/g, SoftAP, WPS, Webscan DHCP, DNS, ARP, ICMP, FTP client, HTTP client, TCP, UDP WEP, WPA, WPA2 UART, SPI Slave, Wi-Fi 44/Module note 1: Indicates “off” current note 2: Supported in the provided stack INTERFACE: Bluetooth Modules Part # Pin count Frequency range (ghz) sensitivity (dBm) Power output (dBm) Power consumption sleep mac Profiles Interface Packages RN41-I/RM 35 2.412–2.484 −80 15 Standby/Idle 25 mA, Connected (normal mode) 30 mA, Connected (low power Sniff) 8 mA Standby/Idle (Deep sleep enabled) 250 μA Yes SPP, DUN, HID, iAP, HCI, RFCOMM, L2CAP, SDP UART, USB, Bluetooth 35/Module RN42-I/RM 35 2.412–2.484 −80 4 Standby/Idle 25 mA, Connected (normal mode) 30 mA, Connected (low power Sniff) 8 mA Standby/Idle (Deep sleep enabled) 26 μA Yes SPP, DUN, HID, iAP, HCI, RFCOMM, L2CAP, SDP UART, USB, Bluetooth 35/Module
Analog & Interface Product Selector Guide INTERFACE: IEEE 802.15.4 ZigBee® RF Transceiver Products Part # Pin count Frequency range (ghz) sensitivity (dBm) Power output (dBm) rssI Tx Power consumption (ma) rx Power consumption (ma) clock (mhz) sleep mac mac Features encryption Interface Packages MRF24J40 40 2.405 to 2.48 −95 0 Yes 23 19 20 2 μA Yes CSMA-CA AES128 4-wire SPI 40-pin QFN MRF24J40MA 12 2.405 to 2.48 −95 0 Yes 23 19 20 2 μA Yes CSMA-CA AES128 4-wire SPI 12/Module MRF24J40MB 12 2.405 to 2.48 −102 20 Yes 130 25 20 5 μA Yes CSMA-CA AES128 4-wire SPI 12/Module MRF24J40MC 12 2.405 to 2.48 −108 20 Yes 120 25 20 12 μA Yes CSMA-CA AES128 4-wire SPI 12/Module INTERFACE: Sub-GHz Transceivers Part # Pin count Frequency range (mhz) sensitivity (dBm) Power output (dBm) rssI Tx Power consumption (ma) rx Power consumption (ma) clock (mhz) sleep Interface Packages MRF49XA 16 433/868/915 −110 7 Yes 15 mA @ 0 dBm 11 10 MHz 0.3 μA 4-wire SPI 16-pin TSSOP MRF89XA 32 868/915/950 −113 12.5 Yes 25 mA @ 0 dBm 3 12.8 MHz 0.1 µA 4-wire SPI 32-pin TQFN MRF89XAM8A 12 868 −113 12.5 Yes 25 mA @ 0 dBm 3 12.8 MHz 0.1 µA 4-wire SPI 12/Module MRF89XAM9A 12 915 −113 12.5 Yes 25 mA @ 0 dBm 3 12.8 MHz 0.1 µA 4-wire SPI 12/Module INTERFACE: Sub-GHz Transmitters Part # Pin count Frequency range (mhz) Program memory (Bytes) eeProm (bytes) ram (bytes) digital Timer Watch dog Timer max. speed (mhz) IcsP modulation data rate (ksps) output Power (dBm) operating Voltage (V) Packages PIC12F529T48A 6 418–868 2.3K 64 201 1 1 8 Yes OOK/FSK 100 10 2.0–3.7 14-pin TSSOP PIC12F529T39A 6 310–928 2.3K 64 201 1 1 8 Yes OOK/FSK 100 10 2.0–3.7 14-pin TSSOP PIC12LF1840T48A 6 418–868 7.1K 256 256 2 1 32 Yes OOK/FSK 100 10 1.8–3.6 14-pin TSSOP PIC12LF1840T39A 6 310–928 7.1K 256 256 2 1 32 Yes OOK/FSK 100 10 1.8–3.6 14-pin TSSOP rfPIC12F675F 6 380–450 1.7K 128 64 1 1 20 Yes ASK/FSK 40 10 2.0–5.5 20-pin SSOP rfPIC12F675H 6 850–930 1.7K 128 64 1 1 20 Yes ASK/FSK 40 10 2.0–5.5 20-pin SSOP rfPIC12F675K 6 290–350 1.7K 128 64 1 1 20 Yes ASK/FSK 40 10 2.0–5.5 20-pin SSOP InTerFace: usB Products Part # usB speed usB compliant Phy mcu Interface Tx/rx Buffer size (bytes) number of gPIo operating Voltage (V) Packages MCP2200 Full-Speed USB (12 Mb/s), Low-Speed USB (1.5 Mb/s) Yes Yes UART 128/128 8 2.7 to 5.5 20-pin SOIC, 20-pin TSSOP, 20-pin QFN MCP2210 Full-Speed USB (12 Mb/s), Low-Speed USB (1.5 Mb/s) Yes Yes SPI 64 9 3.3 to 5.5 20-pin SOIC, 20-pin TSSOP, 20-pin QFN InTerFace: usB Port Power controllers with charger emulation Part # description usB Port Power switch (55m) hi-speed usB 2.0 switch Battery charger emulation Profiles 8 resistor set current limits charging Indicator output attach detection output current measurement Power allocation Interface Packages UCS1001-1 USB Port Power Controller with Charger Emulation 1 1 9 up to 2.5A Yes – – – Discrete I/0 20-pin 4 × 4 QFN UCS1001-2 USB Port Power Controller with Charger Emulation 1 1 9 up to 2.5A – Yes – – Discrete I/O 20-pin 4 × 4 QFN UCS1002-1 Programmable USB Port Power Controller with Charger Emulation 1 1 9 + 1 programmable up to 2.5A Yes – Yes Yes I2C™/SMBus 20-pin 4 × 4 QFN
Analog & Interface Product Selector Guide SaFeTY & SeCUrITY saFeTy & securITy: Photoelectric smoke detector Ics Part # horn driver alarm Pattern alarm memory low Battery detection chamber Test alarm Interconnect sensitivity Timer Internal Por alternate diagnostic mode operating Temp. range (°c) Packages RE46C140 NFPA Temporal No Yes Yes Yes Yes Yes – −25 to +75 16-pin PDIP, 16-pin SOIC RE46C141 NFPA Temporal No Yes Yes Yes – Yes – −25 to +75 16-pin PDIP, 16-pin SOIC RE46C143 Continuous Tone No Yes Yes Yes – Yes – −25 to +75 16-pin PDIP, 16-pin SOIC RE46C144 Continuous Tone No Yes Yes Yes Yes Yes – −25 to +75 16-pin PDIP, 16-pin SOIC RE46C145 NFPA Temporal No Yes Yes Yes Yes Yes Yes −25 to +75 16-pin PDIP, 16-pin SOIC RE46C165 NFPA Temporal Yes Yes Yes Yes Yes Yes Yes −25 to +75 16-pin PDIP, 16-pin SOIC RE46C166 Continuous Tone Yes Yes Yes Yes Yes Yes Yes −25 to +75 16-pin PDIP, 16-pin SOIC RE46C167 NFPA Temporal Yes Yes Yes Yes Yes Yes Yes −25 to +75 16-pin PDIP, 16-pin SOIC RE46C168 Continuous Tone Yes Yes Yes Yes Yes Yes Yes −25 to +75 16-pin PDIP, 16-pin SOIC RE46C190 NFPA Temporal or Continuous Tone Yes Yes Yes Yes Yes Yes – −10 to +60 16-pin SOIC saFeTy & securITy: Ionization smoke detector Ics Part # horn driver alarm Pattern alarm memory low Battery detection reverse Battery Protection alarm Interconnect hush Timer Power-up low Battery Test operating Temp. range (°c) Packages RE46C120 NFPA Temporal or Continuous Tone No Yes Yes – – – −10 to +60 16-pin PDIP RE46C121 NFPA Temporal No Yes Yes Yes – – −10 to +60 16-pin PDIP RE46C122 NFPA Temporal No Yes Yes Yes Yes Yes −10 to +60 16-pin PDIP RE46C126 Continuous Tone No Yes Yes Yes – – −10 to +60 16-pin PDIP RE46C127 Continuous Tone No Yes Yes Yes Yes Yes −10 to +60 16-pin PDIP RE46C128 NFPA Temporal No Yes Yes Yes – Yes −10 to +60 16-pin PDIP RE46C129 Continuous Tone No Yes Yes Yes – Yes −10 to +60 16-pin PDIP RE46C152 NFPA Temporal or Continuous Tone No Yes Yes Yes Yes Yes −10 to +60 16-pin PDIP RE46C162 NFPA Temporal or Continuous Tone Yes Yes Yes Yes Yes Yes −10 to +60 16-pin PDIP RE46C163 NFPA Temporal or Continuous Tone Yes Yes Yes Yes Yes Yes −10 to +60 16-pin PDIP RE46C180 NFPA Temporal or Continuous Tone Yes Yes No Yes Yes Yes −10 to +60 16-pin PDIP, 16-pin SOIC saFeTy & securITy: Ionization smoke detector Front ends Part # microprocessor compatible output output options Typical application operating Temperature range (°c) Packages RE46C112 Yes Vout 1/4 of Vdd or Vout 1/4 of Detect Input 3V or 3.3V Microprocessor −10 to +60 8-pin PDIP RE46C114 Yes Vout 1/2 of Vdd or Vout 1/2 of Detect Input 5V Microprocessor −10 to +60 8-pin PDIP
Analog & Interface Product Selector Guide saFeTy & securITy: Piezoelectric horn drivers Part # operating Voltage (V) led driver Voltage regulator (V) low Battery detection Interconnect Power good operating Temp. range (°c) Packages RE46C100 6 to 16 – – – – – −40 to +85 8-pin PDIP, 8-pin SOIC RE46C101 6 to 16 Yes – – – – −40 to +85 8-pin PDIP, 8-pin SOIC RE46C104 4 to 8 – – – – – 0 to +50 14-pin PDIP, 14-pin SOIC RE46C105 6 to 12 Yes 3.3 or 5 Yes – – −40 to +85 14-pin PDIP, 14-pin SOIC RE46C107 2 to 5 Yes 3 or 3.3 Yes – – 0 to +50 16-pin PDIP, 16-pin SOIC RE46C108 6 to 12 – 3.3 or 5 – – – −40 to +85 8-pin PDIP, 8-pin SOIC RE46C109 6 to 12 – 3 Yes Yes Yes −40 to +85 16-pin PDIP, 16-pin SOIC RE46C117 2 to 5 – – – – – 0 to +50 8-pin PDIP, 8-pin SOIC RE46C119 6 to 12 – 3 Yes Yes Yes −40 to +85 16-pin PDIP, 16-pin SOIC RE46C317 2 to 5 Yes – – – – −10 to +65 8-pin PDIP, 8-pin SOIC RE46C318 2 to 5 Yes – – – – −10 to +65 8-pin PDIP, 8-pin SOIC
Analog & Interface Product Selector Guide Part Number Suffix Designations Ordering Information for all Microchip Analog Products beginning with “TC” prefix (formerly TelCom Semiconductor Products) TC 7106 A-60 1 C P L 713 Taping Direction: TR or 713: Standard Taping, blank: no tape and reel Number of Package Pins (See specific data sheet) Package Type Operating Temperature Range: C: Commercial Range (0°C to +70°C) E: Extended Industrial Range (-40°C to +85°C) I: Industrial Range (-25°C to +85°C) M: Military Range (-55°C to +125°C) V: See Data Sheet for Specific Temperature Range (Extra Feature Code and/or Tolerance)* (See specific data sheet) (Output Voltage or Detect Voltage)* (If applicable, see specific data sheet) Electrical Performance Grade Option (Variation/Option)* (If applicable, see specific data sheet) A: Test Selection Criteria (See specific data sheet) R: Reversed Pin Layout Product Part Number (2 to 6 characters, see specific data sheet) Product Prefix NOTE: ( )* Used for voltage regulators and detectors . Analog Product Part Numbers Package Description # of Pins Package Description # of Pins AB TO-220 3 MB SOT-89 3 AK TO-220 7 MF DFN (3 × 3) 8 AT TO-220 5 MT SOT-89 5 AV TO-220 (Formed) 5 NB SOT-23B 3 BB TO-220B 3 OA SOIC (N) 8 CB SOT-23A 3 OD SOIC (N) 14 CH SOT-23A 6 OE SOIC (W) 16 CT SOT-23A 5 OG SOIC (W) 24 DB SOT-223 3 OI SOIC (W) 28 EB DDPAK 3 OR SOIC (N) 16 EK DDPAK 7 PA PDIP (N) 8 ET DDPAK 5 PD PDIP (N) 14 HA SOP 8 PE PDIP (N) 16 JA CDIP (N) 8 PF PDIP (N) 24 JD CDIP (N) 14 PG PDIP (W) 24 JE CDIP (N) 16 PI PDIP (W) 28 JG CDIP (W) 24 PJ PDIP (W) 28 JI CDIP (W) 28 PL PDIP (W) 40 JL CDIP (W) 40 QR QSOP (N) 16 KU MQFP 64 RC SOT-143 4 KW MQFP 44 SI SSOP (W) 28 LB SC-70 3 UA MSOP 8 LI PLCC 28 UN MSOP 10 LS PLCC 68 VB DPAK 3 LT SC-70 5 ZB TO-92 3 LW PLCC 44 ZM TO-92 2
Analog & Interface Product Selector Guide Package Type (see table below) Operating Temperature Range: - blank: Commercial Range (0°C to +70°C) I: Industrial (-40°C to +85°C) E: Extended Industrial Range (-40°C to +125°C Supervisor Bond Options: blank: Not Applicable Reset Voltage Thresholds or Performance Grade Options: (1-3 characters, see specific data sheets) 270: 2 .7V reset threshold 300: 3 .0V reset threshold 315: 3 .15V reset threshold 450: 4 .5V reset threshold 460: 4 .6V reset threshold 475: 4 .7V reset threshold 485: 4 .85V reset threshold or B: Grade (see specific data sheet) C: Grade (see specific data sheet) or blank: not applicable Tape and Reel: T: Tape and Reel blank: No Tape and Reel Product Part Number (3-6 characters, see specific data sheet) Product Prefix Part Number Suffix Designations Ordering Information for all Microchip Analog Products beginning with “MCP” prefix MCP xxxxx T - yyy z h / qq Analog Product Part Numbers Package Description # of Pins Tube/Bag Qty. Reel Qty. TO TO-92 3 1000 N/A TT SOT-23 3 N/A 3000 OT SOT-23 5 N/A 3000 P PDIP 8 60 N/A SN SOIC 8 100 3300 ST TSSOP 8 100 2500 MS MSOP 8 100 2500 MC DFN (2 × 3) 8 N/A 3300 MF DFN (3 × 3) 8 50 3300 MF DFN (3 × 3, 10-Pin) 10 120 3300 ST TSSOP 14 96 2500 P PDIP 14 30 N/A SL SOIC 14 57 2600 P PDIP 18 25 N/A SO SOIC 18 42 1100 ST TSSOP 20 74 2500 SS SSOP 20 67 1600 ML QFN (6 × 6) 28 50 1600 ML QFN (4 × 4) 16 91 3300
Analog & Interface Product Selector Guide Tape and Reel: TF: Tape and Reel F: No Tape and Reel Package Type (2 to 4 characters, see table below) Product Part Number (3 characters, see specific data sheet) Product Prefix Part Number Suffix Designations RE46C xxx yyyy zz Analog Product Part Numbers Package Description # of Pins Tube/Bag Qty. Reel Qty. E8 PDIP 8 60 N/A S8 SOIC 8 100 3300 E14 PDIP 14 30 N/A S14 SOIC 14 57 2600 E16 PDIP 16 30 N/A S16 SOIC 16 50 2600 SW16 SOIC (300 mil) 16 47 1000 Tape and Reel: TR: Tape and Reel Blank: No Tape and Reel Package Type (see table below) Functional Option (refer to data sheet) Product Part Number (4-5 characters) Product Prefix for USB port power controllers Part Number Suffix Designations Ordering Information for all Microchip Analog Products beginning with “UCS” prefix UCS xxxxx - y - ppp - tt Package Description # of Pins Reel Qty. BP QFN (4 × 4) 20 4000
Analog & Interface Product Selector Guide Tape and Reel: TR: Tape and Reel Blank: No Tape and Reel Package Type (see table below) Functional Option (refer to data sheet) Product Part Number Product Prefix for Current and DC Power Sensors Part Number Suffix Designations Ordering Information for all Microchip Analog Products beginning with “PAC” prefix PAC xxxx - y - ppp - tt Package Description # of Pins Reel Qty. AIA DFN (3 × 3) 10 4000 AIZL MSOP 10 4000 KP QFN (4 × 4) 12 4000 YZT SOIC 14 4000 AP QFN (4 × 4) 16 4000 Analog Product Part Numbers Tape and Reel: TR: Tape and Reel Blank: No Tape and Reel Package Type (see table below) Functional Option (refer to data sheet) Number of Temperature Sensors Product Part Number Product Prefix for Current and DC Power Sensors (shared with Thermal Products) Part Number Suffix Designations Ordering Information for all Microchip Analog Products beginning with “EMC” prefix Current/DC Power Sensors: Temperature Sensors/Remote Diode Monitors: EMC 170 x - y - pppp - tt EMC 1 b c d - y - pppp - tt Package Description # of Pins Reel Qty. AIA DFN (3 × 3) 10 4000 AIZL MSOP 10 4000 KP QFN (4 × 4) 12 4000 YZT SOIC 14 4000 AP QFN (4 × 4) 16 4000 Tape and Reel: TR: Tape and Reel Blank: No Tape and Reel Package Type (see table below) Address Option Number of Temperature Monitors Product Part Number 2: Hardware shutdown Otherwise arbitrary Product Part Number Arbitrary Product Part Number 1: Designates it is a temp . sensor Product Prefix for Temperature Sensors (shared with Fan Controller Products) Package Description # of Pins Reel Qty. AIA DFN (3 × 3) 10 4000 AC3 TDFN (2 × 3) 8 5000 ACZL MSOP 8 4000 ACZT SOIC 8 4000 AIZL MSOP 10 4000 AP QFN (4 × 4) 16 4000 YZT SOIC 14 4000
Analog & Interface Product Selector Guide Tape and Reel: TR: Tape and Reel Blank: No Tape and Reel Package Type (see table below) Functional Option (refer to data sheet) Product Part Number arbitrary Product Part Number 3: Designates fan speed controller (except EMC2300) Product Part Number 2: Designates it is a fan controller Product Prefix for Fan Controllers Shared with Temperature Sensors Part Number Suffix Designations Ordering Information for all Microchip Analog Products beginning with “EMC” prefix Fan Controllers: EMC 2 a xx - y - pppp - tt Package Description # of Pins Tube Qty. Reel Qty. ACZT SOIC 8 N/A 4000 ACZL MSOP 8 N/A 4000 AP QFN (4 × 4) 16 N/A 4000 BP QFN (4 × 4) 20 N/A 4000 KP QFN 12 N/A 4000 AZC SSOP 16 97 2800 DZK QFN 28 N/A 4000 CZC SSOP 24 N/A 2500 Analog Product Part Numbers
Analog & Interface Product Selector Guide Evaluation, Demonstration and Development Kits Order # Description Devices Supported Thermal Management Demonstration and Evaluation Tools ADM00345 MTD6505 3-Phase BLDC Sensorless Fan Controler Demonstration Board MTD6505 MCP9700DM-PCTL MCP9700 Temperature-to-Voltage Converter PICtail™ Demonstration Board MCP9800 MCP9700DM-TH1 MCP9700 Thermistor Demonstration Board MCP9700, MCP6S92 MCP9800DM-PCTL MCP9800 Temperature Sensor PICtail Demonstration Board MCP9800 MCP9800DM-TS1 MCP9800 Temperature Sensor Demonstration Board MCP9800 MCP9800DM-DL MCP9800 Temperature Data Logger Demonstration Board MCP9800 MCP9800DM-DL2 MCP9800 Temperature Data Logger Demonstration Board 2 MCP9800, MCP101, PIC10F202, 24LC16B TC1047ADM-PICTL TC1047A Temperature-to-Voltage Converter PICtail™ Demonstration Board TC1047A TC642DEMO TC64X/64XB Fan Speed Controller Demonstration Board TC642, TC646, TC647, TC648, TC649 TC650DEMO TC650 Fan Controller Demonstration Board TC650 TC652DEMO TC652 Fan Controller Demonstration Board TC652 TC72DM-PICTL TC72 Digital Temperature Sensor PICtail Demonstration Board TC72 TC74DEMO TC74 Serial Digital Thermal Sensor Demonstration Board TC74 TC77DM-PICTL TC77 Thermal Sensor PICtail Demonstration Board TC77 TMPSNS-RTD1 PT100 RTD Evaluation Board MCP6S26, MCP3301, MCP6024, MCP41010, PIC18F2550, TC1071, MCP6002 TMPSNSRD-RTD2 RTD Reference Design Board MCP3551, MCP9804 TMPSNSRD-TCPL1 Thermocouple Reference Design MCP9804, MCP3421 EVB-EMC1043 EMC1043 Evaluation Board EMC1043 EVB-EMC1043C EMC1043 Evaluation Board with External Diode Off-Board Cable EMC1043 EVB-EMC1412 EMC1412 Evaluation Board EMC1412 EVB-EMC14xx EMC1412 Evaluation Board EMC1412, EMC1413, EMC1414 EVB-EMC2101 EMC2101 Evaluation Board EMC2101 EVB-EMC2103-1 EMC2103-1 Evaluation Board EMC2103-1 Mixed Signal Demonstration and Evaluation Tools ADM00310 MCP3903 ADC Evaluation Board for 16-bit MCUs MCP3903, MCP2200, PIC24, dsPIC33 ADM00317 MCP47X6 PICtail Plus Daughter Board MCP4726, MCP4716, MCP4706 ADM00333 PIC18F87J72 Evaluation Board PIC18F87J72 ADM00398 MCP3911 ADC Evaluation Board for 16-bit MCUs MCP3911 ARD00280 PIC18F87J72 Single Phase Energy Meter Reference Design N/A ARD00330 PIC18F87J72 Energy Monitoring PICtail™ Plus Daughter Board N/A ARD00342 MCP3901 and PIC18F65J90 Shunt Meter Reference Design MCP3901, PIC18F65J90 DV3201A MCP3XXX Single/Dual ADC MXDEV® Daughter Board MCP3001, MCP3002, MCP3201, MCP3202 DV3204A MCP3204/08 MXDEV Daughter Board MCP3004, MCP3008, MCP3204, MCP3208 DV42XXX MCP42XXX Digital Potentiometer Evaluation Board MCP42010, MCP42050, MCP42100 DVMCPA MXDEV Analog Evaluation System MCP3001/02, MCP3004/08, MCP3201/08, MCP3204/08 Analog Design Development Tools
Analog & Interface Product Selector Guide Evaluation, Demonstration and Development Kits Order # Description Devices Supported Mixed Signal Demonstration and Evaluation Tools (Continued) MCP2030DM-TPR MCP2030 Bidirectional Communications Demonstration Kit MCP2030, MCP3421, PIC16F636, TC4421, PIC18F4680 MCP3221DM-PCTL MCP3221 PICtail Demonstration Board MCP3221 MCP3421EV MCP3421 SOT-23-6 Evaluation Board MCP3421 MCP3421DM-BFG MCP3421 Battery Fuel Gauge Demonstration Board MCP3421, MCP73831, MCP1702, PIC18F4550 MCP3421DM-WS1 MCP3421 Weight Scale Demonstration Board MCP3421, MCP6V07, PIC18F4550 MCP3422EV MCP3422 Evaluation Board MCP3422 MCP3423EV MCP3423 Evaluation Board MCP3423 MCP3424EV MCP3424 Evaluation Board MCP3424 MCP3425EV MCP3425 SOT 23-6 Evaluation Board MCP3425 MCP3551DM-PCTL MCP3551 Delta-Sigma ADC Demonstration Board MCP3551 MCP355XDV-MS1 MCP355X Sensor Application Developer’s Board MCP3551, MCP3553, MCP3550-50, MCP3550- MCP355XDM-TAS MCP355X Tiny Application Sensor Demonstration Board MCP3551, MCP3553, MCP3550-50, MCP3550- MCP3901EV-MCU16 MCP3901 ADC Evaluation Board for 16-bit MCUs MCP3901, PIC24F, PIC24H, dsPIC33, PIC18F86J55 MCP3905EV MCP3905 Energy Meter Evaluation Board MCP3905 MCP3905RD-PM1 MCP3905 Energy Meter Reference Design MCP3905 MCP3909EV-MCU16 MCP3909 ADC Evaluation Board for 16-bit MCUs MCP3909 MCP3909RD-3PH1 MCP3909 3-Phase Energy Meter Reference Design MCP3909, PIC18F2520, PIC18F4550 MCP3909RD-3PH3 MCP3909 and dsPIC33F 3-Phase Energy Meter Reference Design MCP3909, dsPIC33FJ128GP706 MCP3909RD-1PH1 MCP3909 and PIC18F85J90 Single Phase Energy Meter Reference Design MCP3909, PIC18F85J90 MCP401XEV MCP401X Evaluation Board MCP40D18, MCP4017, MCP4018, MCP4019, MCP40D17, MCP40D19 MCP4XXXDM-DB MCP4XXX Digital Potentiometer Daughter Board MCP4011, MCP4021, MCP42XXX MCP402XEV MCP402X Non-Volatile Digital Potentiometer Evaluation Board MCP4021, MCP4022, MCP4023, MCP4024 MCP42XXDM-PTPLS MCP42XX PICtail Plus Daughter Board MCP4231, MCP4232, MCP4241, MCP4242, MCP4251, MCP4252, MCP4261, MCP4262 MCP42XXEV MCP42XX Evaluation Board MCP4231, MCP4241, MCP4251, MCP4261 MCP43XXEV MCP43XX Evaluation Board MCP4331, MCP4341, MCP4351, MCP4361 MCP46XXDM-PTPLS MCP46XX PICtail Plus Daughter Board MCP4631, MCP4641, MCP4651, MCP47652, MCP4661, MCP4662 MCP46XXEV MCP46XX Evaluation Board MCP4631, MCP4641, MCP4651, MCP4661 MCP4725EV MCP4725 SOT 23-6 Evaluation Board MCP4725 MCP4725DM-PTPLS MCP4725 PICtail Plus Daughter Board MCP4725 MCP4728EV MCP4728 Quad DAC Evaluation Board MCP4728 MXSIGDM Mixed Signal PICtail Demonstration Board TC132X, MCP330X, MCP320X, MCP482X, MCP492X, MCP3221, MCP3021, MCP1525 EVB-EMC1701 EMC1701 Evaluation Board EMC1701-1, EMC1701-2 EVB-PAC1710 PAC1710 Evaluation Board PAC1710 EVB-PAC1720 PAC1720 Evaluation Board PAC1720 Analog Design Development Tools
Analog & Interface Product Selector Guide Evaluation, Demonstration and Development Kits Order # Description Devices Supported Power Management Demonstration and Evaluation Tools ADM00360 MCP16301 High Voltage Buck Converter 300 mA D2PAK Demo Board MCP16301 ADM00414 MCP16321 Evaluation Board MCP16321 ADM00423 MCP16322 Evaluation Board MCP16321, MCP16322 ADM00427 MCP16323 Evaluation Board MCP16321, MCP16322, MCP16323 ADM00434 MCP19035 300 KHz Synchronous Buck Controller Evaluation Board MCP19035 ARD00386 MCP1640 12V/50 mA Two Cell Input Boost Converter Reference Design MCP1640 MCP1252DM-BKLT MCP1252 Charge Pump Backlight Demonstration Board MCP1252 MCP1256/7/8/9EV MCP1256/7/8/9 Charge Pump Evaluation Board MCP1256, MCP1257, MCP1258, MCP1259 MCP1601EV MCP1601 Buck Regulator Evaluation Board MCP1601 MCP1602EV MCP1602 Evaluation Board MCP1602 MCP1603EV MCP1603 Buck Converter Evaluation Board MCP1603 MCP1603RD-TNY MCP1603 Tiny Reference Design MCP1603 MCP1612EV MCP1612 Synchronous Buck Regulator Evaluation Board MCP1612 MCP1630RD-DDBK1 MCP1630 +12V in Dual Output Buck Converter Reference Design MCP1630 MCP1630RD-DDBK3 MCP1630 Bidirectional 4-Cell Li-Ion Charger Reference Design MCP1630V , PIC16F88, MCP6022 MCP1630RD-NMC1 MCP1630 Low-Cost NiMH Battery Charger Reference Design MCP1630, PIC12F683, MCP6292, MCP1702 MCP1630DM-DDBK1 MCP1630 1A Bias Supply Demonstration Board MCP1630 MCP1630DM-DDBS1 MCP1630 Automotive Input Boost Converter Demonstration Board MCP1630, PIC12F683 MCP1630DM-LED2 MCP1630 Boost Mode LED Driver Demonstration Board MCP1630V , PIC12F683, MCP1702 MCP1630RD-LIC1 MCP1630 Li-Ion Multi Bay Battery Charger Reference Design MCP1630 MCP1630RD-LIC2 MCP1630 Low Cost Li-Ion Battery Charger Reference Design MCP1630 MCP1630RD-SALED MCP1630 SEPIC Automotive LED Driver Reference Board MCP16301 MCP1630DM-NMC1 MCP1630 NiMH Battery Charger Demonstration Board MCP1630 MCP1630DM-DDBS2 MCP1630 Coupled Inductor Boost Demonstration Board MCP1630, PIC12F683 MCP1630DM-DDBK4 MCP1630 Automotive Input, Triple Output Converter Demonstration Board MCP1630, PIC12F683 MCP1631RD-DCPC1 MCP1631HV Digitally Controlled Programmable Current Source Reference Design MCP1631HV , PIC16F616 MCP1631RD-MCC1 MCP1631HV Multi-Chemistry Battery Charger Reference Design MCP1631HV , PIC16F883 MCP1631RD-MCC2 MCP1631HV Multi-Chemistry Battery Charger Reference Design MCP1631HV , PIC16F883 MCP1640EV-SBC MCP1640 Sync Boost Converter Evaluation Board MCP1640 MCP1640RD-4ABC MCP1640 Single Quad-A Battery Boost Converter Reference Design MCP1640, PIC12F617 MCP1650DM-LED1 MCP1650 3W White LED Demonstration Board MCP1650 MCP1650DM-LED2 MCP1650 Multiple White LED Demonstration Board MCP1650 MCP1650EV MCP1650 Boost Controller Evaluation Board MCP1650 MCP1650DM-DDSC1 MCP1650 SEPIC Power Supply Demonstration Board MCP1650 MCP1726EV MCP1726 1A LDO Evaluation Board MCP1726 MCP73113EV-1SOVP MCP73113 OVP Single Cell Li-Ion Battery Charger Evaluation Board MCP73113, MCP73114 MCP73213EV-2SOVP MCP73213 OVP Dual Cell Li-Ion Battery Charger Evaluation Board MCP73213 MCP73X23EV-LFP MCP73X23 OVP Lithium Iron Phosphate Battery Charger Evaluation Board MCP73123, MCP73223 MCP73871DM-VPCC MCP73871 Demonstration Board with Voltage Proportional Current Control MCP73871 MCP7381XEV MCP7381X Low-Cost Li-Ion Battery Charger Evaluation Board MCP73811, MCP73812 MCP7382XEV MCP7382X Li-Ion Battery Charger Evaluation Board MCP7382X MCP73831EV MCP73831 Evaluation Kit MCP73831 Analog Design Development Tools
Analog & Interface Product Selector Guide Analog Design Development Tools Evaluation, Demonstration and Development Kits Order # Description Devices Supported Power Management Demonstration and Evaluation Tools (Continued) MCP73833EV MCP73833 Li-Ion Battery Charger Evaluation Board MCP73833, MCP73834 MCP7383XEV-DIBC MCP73837/8 AC/USB Dual Input Battery Charger Evaluation Board MCP73837, MCP73838 MCP7383XRD-PPM MCP7383X Li-Ion System Power Path Management Reference Design MCP73831, MCP73832, MCP73833, MCP73834 MCP7384XEV MCP7384X Li-Ion Battery Charger Evaluation Board MCP7384X MCP73855EV MCP73855 Li-Ion Battery Charger Evaluation Board MCP73855 MCP7386XEV MCP7386X Li-Ion Battery Charger Evaluation Board MCP7386X MCP73871EV MCP73871 Evaluation Board MCP73871 SOT23-3EV-VREG SOT23-3 Voltage Regulator Evaluation Board MCP1701A, MCP1702, MCP1703 SOT223-3EV-VREG SOT223-3 Voltage Regulator Evaluation Board MCP1791, MCP1824, MCP1825, MCP1826 SOT89-3EV-VREG SOT89-3 Voltage Regulator Evaluation Board MCP1700, MCP1701A, MCP1702, MCP1703 SOT23-5EV-VREG SOT23-5 Voltage Regulator Evaluation Board MCP1801, MCP1802, TC1014/1015/1185, and other SOT23-5 LDOs SOT223-5EV-VREG SOT223-5 Voltage Regulator Evaluation Board MCP1790, MCP1824, MCP1825, MCP1826 TO263-3EV-VREG TO220-3/TO263-3 Voltage Regulator Evaluation Board MCP1790, MCP1825S, MCP1826S, MCP1827S TO263-5EV-VREG TO220-5/TO263-5 Voltage Regulator Evaluation Board MCP1790, MCP1791, MCP1825, MCP1826, MCP1827 TC110DM TC110 Boost Converter Demonstration Board TC110, MCP73832 TC115EV TC115 PFM/PWM Boost Converter Evaluation Board TC115 TC1016/17EV TC1016/17 LDO Linear Regulator Evaluation Board TC1016/17 TC1303BDM-DDBK1 TC1303B Demonstration Board TC1303B TC1303DM-DDBK2 TC1303 DFN Adjustable Output Demonstration Board TC1303C EVB-UCS1001 UCS1001 Evaluation Board UCS1001-1, UCS1001-2 EVB-UCS1002 UCS1002 Evaluation Board UCS1002 Interface Products Demonstration and Evaluation Tools ADM00419 MCP2210 Breakout Module MCP2210 ADM00421 MCP2210 Evaluation Kit MCP2210 DV251001 MCP2510/2515 CAN Developer’s Kit MCP2515, MCP2510 DV250501 MCP250XX CAN I/O Expanders Developer’s Kit MCP25020, MCP25025, MCP25050, MCP25055 GPIODM-KPLCD GPIO Expander Keypad and LCD Demonstration Board MCP23008, MCP23S08, MCP23017, MCP23S17, PIC18F4550, MCP1702 MCP212XDM MCP2120/22 Developer's Board MCP2120, MCP2122 MCP212XEV-DB MCP212X Developer’s Daughter Board MCP212X MCP2140DM-TMPSNS MCP2140 IrDA® Wireless Temp Demonstration Board MCP2140 MCP215X/40EV-DB MCP215X/40 Developer’s Daughter Board MCP2140, MCP2150/55 MCP215XDM MCP215X Data Logger Demonstration Board MCP2150/55 MCP2150DM MCP2150 Developer's Board MCP2150, MCP2155 MCP2200EV-VCP MCP2200 USB to RS232 Demonstration Board MCP2200 MCP23X08EV MCP23X08 8-bit GPIO Expander Evaluation Board MCP23008, MCP23S08 MCP23X17EV MCP23X17 16-bit GPIO Expander Evaluation Board MCP23017, MCP23S17 MCP2515DM-BM MCP2515 CAN Bus Monitor Demonstration Board MCP2515, MCP2551 MCP2515DM-PCTL MCP2515 CAN Controller PICtail™ Demonstration Board MCP2515 MCP2515DM-PTPLS MCP2515 PICtail™ Plus Daughter Board MCP2515, MCP2551 PKSERIAL-I2C1 PICkit™ Serial I 2C™ Demonstration Board 24LC02B, MCP9801, MCP3221, TC1321, MCP23008 PKSERIAL-SPI1 PICkit™ Serial SPI Demonstration Board 25LC020A, TC77, MCP3201, MCP4822, MCP41010, MCP6S92, MCP23S08
Analog & Interface Product Selector Guide Evaluation, Demonstration and Development Kits Order # Description Devices Supported Linear Demonstration and Evaluation Tools ADM00375 MCP6H04 Evaluation Board MCP6H04 ARD00354 MCP6N11 and MCP6V2X Wheatstone Bridge Reference Design MCP6N11, MCP6001, MCP6V26, MCP6V27, PIC18F2553 MCP6031DM-PTPLS MCP6031 Photodiode PICtail™ Plus Demonstration Board MCP6031 MCP651EV-VOS MCP651 Input Offset Evaluation Board MCP651 MCP661DM-LD MCP661 Line Driver Demonstration Board MCP661, MCP662, MCP665 MCP6S22DM-PICTL MCP6S22 PGA PICtail™ Demonstration Board MCP6S22 MCP6S2XEV MCP6S2X PGA Evaluation Board MCP6S2X MCP6SX2DM-PCTLPD MCP6SX2 PGA Photodiode PICtail™ Demonstration Board MCP6S22/92 MCP6SX2DM-PCTLTH MCP6SX2 PGA Thermistor PICtail™ Demonstration Board MCP6S22/92 MCP6V01DM-VOS MCP6V01 Input Offset Demonstration Board MCP6V01, MCP6V03, MCP6V06, MCP6V08 MCP6V01RD-TCPL MCP6V01 Thermocouple Auto-Zeroed Reference Design MCP6V01 MCP6XXXEV-AMP1 MCP6XXX Amplifier Evaluation Board 1 MCP6021 MCP6XXXEV-AMP2 MCP6XXX Amplifier Evaluation Board 2 MCP6021 MCP6XXXEV-AMP3 MCP6XXX Amplifier Evaluation Board 3 MCP6021 MCP6XXXEV-AMP4 MCP6XXX Amplifier Evaluation Board 4 MCP6021 MCP6XXXDM-FLTR Active Filter Demonstration Board Kit MCP6271 PIC16F690DM-PCTLHS Humidity Sensor PICtail™ Demonstration Board MCP6291, PIC16F690 Analog Blank Evaluation Boards SC70EV SC70-6 and SOT-23-6/8 to DIP-8 Evaluation Board SC70-6/5/3, SOT-23-8/6/5/3, and DIP-8 Devices SOIC8EV SOIC/MSOP/TSSOP/DIP 8-pin Evaluation Board 8-pin SOIC, MSOP , TSSOP , DIP Devices SOIC14EV SOIC/TSSOP/DIP 14-pin Evaluation Board 14-pin SOIC, TSSOP , DIP Devices TSSOP20EV 20-pin TSSOP and SSOP Evaluation Board TSSOP-20/16/14/8 and SSOP-20 VSUPEV SOT-23-3 Voltage Supervisor Evaluation Board SOT-23-3 Devices VSUPEV2 SOT-23-5/6 Voltage Supervisor Evaluation Board SOT-23-5, SOT-23-6 Devices Miscellaneous Analog Demonstration and Evaluation Tools ADM00308 MTS2916A Dual Full-Bridge Stepper Motor Driver Evaluation Board MTS2916A ADM00344 RE46C190 Demonstration Board RE46C190 HFIELDEV Magnetic Field Evaluation Board N/A INTRFCEV PSRR and Digital Noise Evaluation Board N/A Analog Design Development Tools
42 Analog & Interface Product Selector Guide
Thermal Management Products MCP9700 Thermistor Demo Board (MCP9700DM-TH1) The MCP9700 Thermistor Demo Board contains the analog circuitry to measure temperature . The board uses BC Components’
232264055103 NTC thermistor to convert
temperature to resistance . The thermistor is placed in a voltage divider which converts resistance to voltage . This voltage is filtered and placed at the MCP6S22 Programmable Gain Amplifier’s (PGA) CH0 input . The PGA gains and buffers the thermistor . PT100 RTD Evaluation Board (TMPSNS-RTD1) This board demonstrates how to bias a Resistive Temperature Detector (RTD) and accurately measure temperature . Up to two RTDs can be connected . The RTDs are biased using constant current source and the output voltage is scaled using a differential amplifier . The output is then connected to a 12-bit differential Analog-to-Digital Converter (ADC) MCP3301 . The ADC outputs serial data to a PIC18F2550 device using a Serial Peripheral Interface (SPI) . The data is transmitted to a PC using a USB interface . A Microsoft Excel® macro is used as a Graphical User Interface (GUI) to acquire the data . The acquired data is stored in an Excel worksheet and graphed as a real-time strip chart display . MCP9800 Temperature Data Logger Demo Board (MCP9800DM-DL) Allows users to store up to 128,000 temperature readings from the MCP9800 sensor to the 24LC1025, Microchip’s 1024 Kbit EEPROM . A PIC16F684 MCU communicates with the sensor and EEPROM . In addition, the PIC MCU interfaces to a PC using the PICkit™ 1 Flash Starter Kit and transfers the temperature readings from the EEPROM to the PC . Microsoft Excel® can be used to view the data . Mixed Signal Products MCP3901 and PIC18F65J90 Shunt Meter Reference Design (ARD00342) The MCP3901 and PIC18F65J90 Energy Meter Reference Design is a fully functional IEC Class 0 .5 compliant single-phase meter . This low-cost design does not use any transformers and requires few external components . The PIC18F65J90 directly drives the LCD and includes both an isolated USB connection for meter calibration and access to the device power calculations . The system calculates active energy, active power, RMS current, RMS voltage, reactive energy, reactive power, apparent power, and other typical power quantities . MCP3421 Battery Fuel Gauge Demonstration Board (MCP3421DM-BFG) This board is used to demonstrate the MCP3421 18-bit delta-sigma ADC for battery fuel gauging applications . It includes two MCP3421 devices, MCP73831 (single cell Li-Ion/ Li-Polymer Charger) and PIC18F4550 MCU . The board measures: (1) the battery voltage and (2) the current coming out from the battery in the discharging mode and into the battery in the charging mode using the ADC device (if charging mode is enabled (optional)) . It calculates the total fuel used and also fuel remaining . MCP4725 PICtail Plus Daughter Board (MCP4725DM-PTPLS) This daughter board demonstrates the MCP4725 (12 bit DAC with non-volatile memory) features using the Explorer 16 Development Board and the PICkit Serial Analyzer . MCP42XX PICtail Plus Daughter Board (MCP42XXDM-PTPLS) The MCP42XX PICtail Plus Daughter Board is used to demonstrate the operation of the MCP42XX Digital Potentiometers . The operation of the MCP41XX devices is similar to the MCP42XX devices . Therefore, this demo board can be used as a development platform for either device family . This board is designed to be used in conjunction with either the PIC24 Explorer 16 Demo Board or the PICkit Serial Analyzer . Power Management Products MCP1631HV Multi-Chemistry Battery Charger Reference Design (MCP1631RD-MCC1) This reference design is a complete stand- alone constant current battery charger for NiMH, NiCd or constant current/constant voltage for Li-Ion battery packs . When charging NiMH or NiCd batteries, the reference design is capable of charging one, two, three or four batteries connected in series and one or two series batteries for Li-Ion . This board utilizes the MCP1631HV (high-speed PIC MCU PWM TSSOP-20) and PIC16F883 (28-pin SSOP) . MCP73871 Demo Board with Voltage Proportional Current Control (MCP73871DM-VPCC) The MCP73871 Demo Board with Voltage Proportional Current Control is designed to demonstrate Microchip’s stand-alone linear Li-Ion battery charger with system power path and load sharing management control solution . The MCP73871 integrates the required elements to meet design challenges when developing new Li-Ion/ Li-Polymer battery powered products . Featured Analog Development Tools
43Analog & Interface Product Selector Guide LIN Serial Analyzer (APGDT001) The LIN Serial Analyzer development system enables a Personal Computer (PC) to communicate with a LIN (Local Interface Network) bus . The PC program uses a graphical user interface to enter and display message frames occurring on the target bus . USB to UART Converter Evaluation Board (MCP2200EV-VCP) The MCP2200EV-VCP is a USB-to-RS232 development and evaluation board for the MCP2200 USB-to-UART device . The board allows for easy demonstration and evaluation of the MCP2200 . The accompanying software allows the special device features to be configured and controlled . The board is powered from USB and has a test point associated with each GPIO pin . In addition, two of these pins are connected to LEDs which can be used to indicate USB-to-UART traffic when the associated pins are configured as TxLED and RxLED pins respectively . Linear Products MCP6V01 Thermocouple Auto-Zeroed Ref Design Board (MCP6V01RD-TCPL) The MCP6V01 design board demonstrates how to use a difference amplifier system to measure Electromotive Force (EMF) voltage at the cold junction of thermocouple in order to accurately measure temperature of the thermocouple bead . This can be done by using the MCP6V01 auto-zeroed op amp because of its ultra low offset Voltage (VOS) and high Common Mode Rejection Ratio (CMRR) . MCP6N11 and MCP6V2X Wheatstone Bridge Reference Design (ARD00354) This board demonstrates the performance of Microchip’s MCP6N11 instrumentation amplifier (INA) and a traditional three op amp INA using Microchip’s MCP6V26 and MCP6V27 auto-zeroed op amps . The input signal comes from an RTD temperature sensor in a Wheatstone bridge . Real world interference is added to the bridge’s output, to provide realistic performance comparisons . Data is gathered and displayed on a PC, for ease of use . MCP6H04 Evaluation Board (ADM00375) The MCP6H04 Evaluation Board is intended to support an instrumentation amplifier and show the capability of the MCP6H04 operational amplifier . It uses a quad op amp in a difference amplifier configuration with input buffers and voltage reference . The test points for the power supply, ground, input signals, output signals, and voltage reference allow lab equipment to be connected to the board . MCP73X23 OVP Lithium Iron Phosphate Battery Charger Evaluation Board (MCP73X23EV-LFP) The MCP73X23 Lithium Iron Phosphate Battery Charger Evaluation board demonstrates the features of Microchip’s MCP73123 and MCP73223 Lithium Iron Phosphate (LiFePO4) Battery Charge Management Controller with Input Overvoltage Protection . MCP7383X Li-Ion System Power Path Management Reference Design (MCP7383XRD-PPM) This reference design is developed to assist product designers in reducing product design cycle and time by utilizing Microchip’s stand-alone Li-Ion battery charge management controllers with system power path management . Due to the natural characteristics of Li-Ion/Li-Polymer batteries, they are the most popular power sources for mobile devices, however, extra care in design is always important . System Power Path Management allows end-users to charge their batteries without interruption . MCP1640 Sync Boost Converter Evaluation Board (MCP1640EV-SBC) The MCP1640 Synchronous Boost Converter Evaluation board demonstrates the MCP1640 in two boost-converter applications with multiple output voltages . It can be used to evaluate both package options (SOT-23-6 and 2 × 3-8 DFN) . This board was developed to help engineers reduce the product design cycle time . MCP1252 Charge Pump Backlight Demo Board (MCP1252DM-BKLT) The MCP1252 board demonstrates the use of a charge pump device in an LED application and acts as a platform to evaluate the MCP1252 device in general . Light intensity is controlled uniformly through the use of ballast resistors . A PIC10F206 MCU provides an enable signal to the MCP1252 and accepts a push-button input that allows the white LEDs to be adjusted to five different light intensities . Interface Products MCP2515 CAN Bus Monitor Demo Board (MCP2515DM-BM) The MCP2515 CAN Bus Monitor Demo board kit contains two identical boards which can be connected together to create a simple two node Controller Area Network (CAN) bus, which can be controlled and/or monitored via the included PC interface . The board(s) can also be connected to an existing CAN bus . controlled uniformly through the use of ballast resistors . Featured Analog Development Tools
Microchip Technology Inc . 2355 W . Chandler Blvd . Chandler, AZ 85224-6199 www.microchip.com AMERICAS Atlanta Tel: 678-957-9614 Boston Tel: 774-760-0087 Chicago Tel: 630-285-0071 Cleveland Tel: 216-447-0464 Dallas Tel: 972-818-7423 Detroit Tel: 248-538-2250 Indianapolis Tel: 317-773-8323 Los Angeles Tel: 949-462-9523 Santa Clara Tel: 408-961-6444 Toronto Mississauga, Ontario Tel: 905-673-0699 EUROPE Austria - Wels Tel: 43-7242-2244-39 Denmark - Copenhagen Tel: 45-4450-2828 France - Paris Germany - Munich Tel: 49-89-627-144-0 Italy - Milan Tel: 39-0331-742611 Netherlands - Drunen Tel: 31-416-690399 Spain - Madrid Tel: 34-91-708-08-90 UK - Wokingham Tel: 44-118-921-5869 ASIA/PACIFIC Australia - Sydney Tel: 61-2-9868-6733 China - Beijing Tel: 86-10-8569-7000 China - Chengdu Tel: 86-28-8665-5511 China - Chongqing Tel: 86-23-8980-9588 China - Hangzhou Tel: 86-571-2819-3187 China - Hong Kong SAR Tel: 852-2943-5100 China - Nanjing Tel: 86-25-8473-2460 China - Qingdao Tel: 86-532-8502-7355 China - Shanghai Tel: 86-21-5407-5533 China - Shenyang Tel: 86-24-2334-2829 China - Shenzhen Tel: 86-756-8864-2200 China - Wuhan Tel: 86-27-5980-5300 China - Xiamen Tel: 86-592-2388138 China - Xian Tel: 86-29-8833-7252 China - Zhuhai Tel: 86-756-3210040 Sales Offi ce Listing ASIA/PACIFIC India - Bangalore Tel: 91-80-3090-4444 India - New Delhi Tel: 91-11-4160-8631 India - Pune Tel: 91-20-2566-1512 Japan - Osaka Tel: 81-6-6152-7160 Japan - Tokyo Tel: 81-3-6880-3770 Korea - Daegu Tel: 82-53-744-4301 Korea - Seoul Tel: 82-2-554-7200 Malaysia - Kuala Lumpur Tel: 60-3-6201-9857 Malaysia - Penang Tel: 60-4-227-8870 Philippines - Manila Tel: 63-2-634-9065 Singapore Tel: 65-6334-8870 Taiwan - Hsin Chu Tel: 886-3-5778-366 Taiwan - Kaohsiung Tel: 886-7-213-7828 Taiwan - Taipei Tel: 886-2-2508-8600 Thailand - Bangkok Tel: 66-2-694-1351 11/29/11 Support Microchip is committed to supporting its customers in developing products faster and more efficiently . We maintain a worldwide network of field applications engineers and technical support ready to provide product and system assistance . In addition, the following service areas are available at www.microchip.com: ■ Support link provides a way to get questions answered fast: http://support.microchip.com ■ Sample link offers evaluation samples of any Microchip device: http://sample.microchip.com ■ Forum link provides access to knowledge base and peer help: http://forum.microchip.com ■ Buy link provides locations of Microchip Sales Channel Partners: www.microchip.com/sales Training If additional training interests you, then Microchip can help . We continue to expand our technical training options, offering a growing list of courses and in-depth curriculum locally, as well as significant online resources – whenever you want to use them . ■ Technical Training Centers: www.microchip.com/training ■ MASTERs Conferences: www.microchip.com/masters ■ Worldwide Seminars: www.microchip.com/seminars ■ eLearning: www.microchip.com/webseminars ■ Resources from our Distribution and Third Party Partners www.microchip.com/training Information subject to change . The Microchip name and logo, the Microchip logo, dsPIC, MPLAB and PIC are registered trademarks and PICDEM, PICtail and mTouch are trademarks of Microchip Technology Incorporated in the U .S .A . and other countries . © 2012 Energizer . Energizer and other marks are trademarks owned by Energizer . All other trademarks mentioned herein are property DS21060AC