AP4301 BCDSEMI | Alldatasheet
Document overview
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Technical content
Features
Input offset voltage: 0.5mV Supply current: 250µA per Op-Amp at 5.0V sup- ply voltage Unity gain bandwidth: 1MHz Output voltage swing: 0 to (VCC - 1.5)V Power supply range: 3 to 18V Fixed output voltage reference: 1.25V, 1.24V Voltage tolerance: 0.5%, 1% Sink current capability from 0.1 to 80mA Package types: DIP-8 and SOIC-8
Applications
Figure 1. Package Types of AP4301
DUAL OPAMP AND VOLTAGE REFERENCE AP4301 March, 2003 Advanced Analog Circuits Data Sheet Rev.1.0
Ordering Information
1.25V 0.5% -40 to 85oC AP4301AP-C AP4301AP-C Tube AP4301BP-C AP4301BP-C 1.24V 0.5% AP4301AP-D AP4301AP-D AP4301BP-D AP4301BP-D SOIC-8 1.25V 0.5% AP4301AM-C AP4301AM-C Tube/Reel AP4301BM-C AP4301BM-C 1.24V 0.5% AP4301AM-D AP4301AM-D AP4301BM-D AP4301BM-D AP 4301 X X - X Output Voltage Reference C: 1.25V D: 1.24V Circuit Type Voltage Tolerence A:0.5% B:1% Package M:SOIC-8 P: DIP-8
DUAL OPAMP AND VOLTAGE REFERENCE AP4301 March, 2003 Advanced Analog Circuits Data Sheet Rev.1.0 Parameter Symbol Value Unit Power Supply Voltage (VCC to GND) VCC V OPAMP 1 and 2 Input Voltage Range (Pins 2, 5, 6) VIN - 0.3 to VCC - 0.3 V OPAMP 2 Input Differential Voltage (Pins 5, 6) VID V Voltage Reference Cathode Current (Pin 3) IK 100 mA Power Dissipation PD DIP-8 800 mW SOIC-8 500 Storage Temperature Range TSTG -65 to 150 oC ESD Protection Voltage (Machine Model) ≥ 200 V Absolute Maximum Ratings Note: Stresses greater than those listed under "Absolute Maximum Ratings " may cause permanent damage to the device. These are stress ratings only, and functional operation of the device at these or any other conditions beyond those indicated under "Recommended Operation Ratings " is not implied. Exposure to "Absolute Maximum Rat- ings " for extended periods may affect device reliability. Parameter Min Max Unit Supply Voltage V Ambient Temperature -40 oC Recommended Operating Ratings
DUAL OPAMP AND VOLTAGE REFERENCE AP4301 March, 2003 Advanced Analog Circuits Data Sheet Rev.1.0 Operating Conditions: VCC = +5V, TA= 25oC unless otherwise specified.
Electrical Characteristics
Total Supply Current, excluding Cur- rent in Voltage Reference VCC = 5V, no load, -40oC ≤TA ≤85oC 0.5 0.8 mA VCC = 18V, no load, -40oC ≤TA ≤85oC 0.6 1.2 Voltage Reference Section Refeence Voltage for AP4301-C IK = 10mA TA = 25oC 0.5% tolerance 1.244 1.250 1.256 V 1% tolerance 1.237 1.263 Reference Voltage for AP4301- D IK = 10mA TA = 25oC 0.5% tolerance 1.234 1.240 1.246 V 1% tolerance 1.227 1.252 Reference Voltage Deviation Over Full Temperature Range IK = 10mA, TA = -40 to 85oC mV Minimum Cathode Current for Regulation 0.2 mA Dynamic Impedance IK = 1.0 to 80mA, f<1kHz 0.2 0.5 Ω OPAMP 1 Section (VCC = 5V, VO = 1.4V, TA = 25oC, unless otherwise noted) Input Offset Voltage TA = 25oC 0.5 mV TA = -40 to 85oC Input Offset Voltage Temperature Drift TA = -40 to 85oC µV/ oC Input Bias Current (Inverting Input Only) TA = 25oC 150 nA Large Signal Voltage Gain VCC = 15V, RL = 2KΩ, VO = 1.4 to 11.4V 100 dB Power Supply Rejection Ratio VCC = 5 to 18V dB Output Current Source VCC = 15V, VID = 1V, VO =2V mA Sink VCC = 15V, VID = -1V, VO = 2V mA Output Voltage Swing (High) VCC = 18V, RL = 10KΩ, VID = 1V 16.5 V Output Voltage Swing (Low) VCC = 18V, RL = 10KΩ, VID = -1V 100 mV Slew Rate VCC = 18V, RL = 2kΩ, AV = 1, VIN = 0.5 to 2V, CL = 100pF 0.2 0.5 V/µ s Gain Bandwidth Product VCC = 18V, RL = 2kΩ, CL = 100pF, VIN = 10mV, f = 100kHz 0.5 MHz
DUAL OPAMP AND VOLTAGE REFERENCE AP4301 March, 2003 Advanced Analog Circuits Data Sheet Rev.1.0 Parameter Conditions Min Typ Max Unit OPAMP2 Section (VCC = 5V, VO = 1.4V, TA = 25oC, unless otherwise noted ) Input Offset Voltage TA = 25oC 0.5 mV TA = -40 to 85oC Input Offset Voltage Temperature Drift TA = -40 to 85oC µV/oC Input Offset Current TA = 25oC nA Input Bias Current TA = 25oC 150 nA Input Voltage Range VCC = 0 to 18V VCC - 1.5 V Common Mode Rejection Ratio TA = 25oC, VCM = 0 to 3.5V dB Large Signal Voltage Gain VCC = 15V, RL = 2kΩ , VO = 1.4 to 11.4V 100 dB Power Supply Rejection Ratio VCC = 5 to 18V dΒ Output Current Source VCC = 15V , VID = 1V, VO = 2V mA Sink VCC = 15V, VID = -1V, VO = 2V mA Output Voltage Swing ( High ) VCC = 18 , RL = 10kΩ , VID = 1V 16.5 V Output Voltage SWing ( Low ) VCC = 18 , RL = 10kΩ , VID = -1V 100 mV Slew Rate VCC = 18V, RL = 2kΩ , AV = 1, VIN = 0.5 to 2V , CL = 100pF 0.2 0.5 V/µ s Gain Bandwidth Product VCC = 18V, RL = 2kΩ, CL = 100pF, VIN = 10mV, f=100kHz 0.5 MHz Electrical Characteristics (Continued) Operating Conditions: VCC = +5V, TA= 25oC unless otherwise specified.
Figure 11. Operational Amplifier Voltage Gain
Figure 12. Typical Application of AP4301
DUAL OPAMP AND VOLTAGE REFERENCE AP4301 March, 2003 Advanced Analog Circuits Data Sheet Rev.1.0 Mechanical Dimensions DIP - 8 R0.75 6.60±0.50 0.457 0.254 0.13MIN 2.54 10.0MAX 0.28±0.07 1.46±0.31 7.62±0.25 3.30±0.30 9.2±0.10 φ3×0.15±0.05 0.7
DUAL OPAMP AND VOLTAGE REFERENCE AP4301 March, 2003 Advanced Analog Circuits Data Sheet Rev.1.0 SOIC - 8 Mechanical Dimensions (Continued) D ±4° ±2° R0.15 R0.15 1.00 0.42±0.09 4.9±0.10 1.55±0.20 0.2±0.10 0.90 φ0.8 6.00±0.20 0.22±0.03 0.70±0.025 0.32 0.20 3.90±0.10 20:1 D
IA LOW DROPOUT LINEAR REGULATOR AZ1117 Advanced Analog Circuits http://www.aacmicro.com USA: 1510 Montague Expressway, San Jose, CA 95131, USA Tel: 408-433-9888, Fax: 408-432-9888 China: 8th Floor, Zone B, 900 Yi Shan Road, Shanghai 200233, China Tel: 86-21-6495-9539, Fax: 86-21-6485-9673 Taiwan: Room 2210, 22nd Fl, 333, Keelung Road, Secretary 1, Taipei, Taiwan Tel: 886-2-2564-3699, Fax: 886-2-2564-3770 IMPORTANT NOTICE Advanced Analog Circuits Corporation reserves the right to make changes to its products or specifications at any time, without notice, to improve design or performance and to supply the best possible product. Advanced Analog Circuits does not assume any responsibility for use of any circuitry described other than the circuitry embodied in Advanced Analog Circuits' products. The company makes no representation that circuitry described herein is free from patent infringement or other rights of Advanced Analog Circuits Corporation.