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AiT Semiconductor Inc. www.ait-ic.com A7112 DC-DC CONVERTER BUCK (STEP-DOWN) 1.2A 1.5MHz 7V SYNCHRONOUS REV2.3 - AUG 2011 RELEASED, JUL 2016 UPDATED - - 1 - DESCRIPTION FEATURES The A7112 is a high-efficiency, DC-to-DC step-down switching regulators, capable of delivering up to 1.2A of output current. The device operates from an input voltage range of 2.6V to 7V and provides an output voltage from 0.6V to V IN, making the A7112 ideal for low voltage power conversions. Running at a fixed frequency of 1.5MHz allows the use of small external components, such as ceramic input and output caps, as well as small inductors, while still providing low output ripples. Thi s low noise output along with its excellent efficiency achieved by the internal synchronous rectifier, making A7112 an ideal green replacement for large power consuming linear regulators. Internal soft -start control circuitry reduces inrush current. Short - circuit and thermal-overload protection improves design reliability. The A7112 is available in SOT-25 and DFN6(2x2) packages. High Efficiency: Up to 97% Capable of Delivering 1.2A 1.5MHz Switching Frequency No External Schottky Diode Needed Low dropout 100% Duty operation Internal Compensation and Soft-Start Current Mode control 0.6V Reference for Low Output voltages Logic Control Shutdown (IQ<1uA) Thermal shutdown, UVLO Available in SOT-25 and DFN6(2x2)packages APPLICATION Cellular phones Digital Cameras MP3 and MP4 players Set top boxes Wireless and DSL Modems USB supplied Devices in Notebooks Portable Devices ORDER INFORMATION Package Type Part Number SOT-25 E5 A7112E5R-ADJZ A7112E5VR-ADJZ DFN6(2x2) J6 A7112J6R A7112J6VR Note Z: Pin Type V: Halogen free Package R: Tape & Reel SPQ: 3k/Reel AiT provides all RoHS products Suffix “V” means Halogen free Package TYPICAL APPLICATION 1.8V Step-Down Converter
AiT Semiconductor Inc. www.ait-ic.com A7112 DC-DC CONVERTER BUCK (STEP-DOWN) 1.2A 1.5MHz 7V SYNCHRONOUS REV2.3 - AUG 2011 RELEASED, JUL 2016 UPDATED - - 2 - PIN DESCRIPTION Top View Top View Top View Pin # Symbol Function SOT-25A SOT-25B DFN6 (2x2) 1 3 2 EN Enable pin for the IC. Drive the pin to high to enable the part, and low to disable 2 2 5 GND Ground 3 5 4 SW Inductor connection. Connect an inductor between SW and the regulator output. 4 1 3 VIN Supply voltage. 5 4 6 FB Feedback input. Connect an external resistor divider from the output to FB and GND to set the output to a voltage between 0.6V and V IN - - 1 NC Not connected
AiT Semiconductor Inc. www.ait-ic.com A7112 DC-DC CONVERTER BUCK (STEP-DOWN) 1.2A 1.5MHz 7V SYNCHRONOUS REV2.3 - AUG 2011 RELEASED, JUL 2016 UPDATED - - 3 - ABSOLUTE MAXIMUM RATINGS Max Input Voltage 8V TJ ,Max Operating Junction Temperature 125℃ TA, Ambient Temperature -40℃~85℃ Maximum Power Dissipation SOT-25 400mW DFN6(2x2) 600mW Ts, Storage Temperature -40℃~150℃ Lead Temperature & Time 260℃, 10s HBM,ESD >2000V Stress beyond above listed “Absolute Maximum Ratings” may lead permanent damage to the device. These are stress ratings only and operations of the device at these or any other conditions beyond those indicated in the operational sections of the specifications are not implied. Exposure to absolute maximum rating conditions for extended periods may affect device reliability. RECOMMENDED OPERATING CONDITIONS Parameter Symbol Value Input Voltage Range 7V Operating Junction Temperature TJ -20℃~125℃
ELECTRICAL CHARACTERISTICS
VIN=5V, TA=25℃ Parameter Symbol Conditions Min Typ Max Unit Input Voltage Range VIN 2.6 7 V Feedback Voltage VREF VIN=5V 0.588 0.6 0.612 V Feedback Leakage Current IFB 0.1 1 uA Quiescent Current IQ Active, VFB=0.65, No Switching 50 uA Shutdown 1 Line Regulation LnReg VIN=2.7V to 5.5V 0.1 0.2 %/V Load Regulation LdReg IOUT=0.01 to 1A 0.1 0.2 %/A Switching Frequency FSOC 1.1 1.5 1.9 MHz PMOS RDSON RDSONP 250 350 mΩ NMOS RDSON RDSONN 150 250 mΩ Peak Current Limit ILIMIT 1.2 1.5 2 A Inoload* VIN=5V, VOUT=3.3V, IOUT=0 75 uA SW Leakage Current ISWLK VOUT=6V, VSW=0 or 6V, EN=0V 1 uA EN Leakage Current IENLK 1 uA EN Input High Voltage VH_EN 1 V EN Input Low Voltage VL_EN 0.5 V
AiT Semiconductor Inc. www.ait-ic.com A7112 DC-DC CONVERTER BUCK (STEP-DOWN) 1.2A 1.5MHz 7V SYNCHRONOUS REV2.3 - AUG 2011 RELEASED, JUL 2016 UPDATED - - 4 - TYPICAL PERFORMANCE CHARACTERISTICS Tested under TA=25℃, unless otherwise specified 3. Efficiency vs. Output Current, VOUT= 3.3V 4. Output Ripple and SW at 1A load, VIN=5V / VOUT=1.8V
AiT Semiconductor Inc. www.ait-ic.com A7112 DC-DC CONVERTER BUCK (STEP-DOWN) 1.2A 1.5MHz 7V SYNCHRONOUS REV2.3 - AUG 2011 RELEASED, JUL 2016 UPDATED - - 5 - BLOCK DIAGRAM
AiT Semiconductor Inc. www.ait-ic.com A7112 DC-DC CONVERTER BUCK (STEP-DOWN) 1.2A 1.5MHz 7V SYNCHRONOUS REV2.3 - AUG 2011 RELEASED, JUL 2016 UPDATED - - 6 - DETAILED INFORAMTION The A7112 high-efficiency switching regulator is a small, simple, DC -to-DC step-down converter capable of delivering up to 1A of output current. The device operates in pulse-width modulation (PWM) at 1.5MHz from a 2.6V to 7V input voltage and provides an output voltage from 0.6V to VIN, making the A7112 ideal for on-board post-regulation applications. An internal synchronous rectifier improves efficiency and eliminates the typical Schottky free-wheeling diode. Using the on resistance of the internal high- side MOSFET to sense switching currents eliminates current-sense resistors, further improving efficiency and cost. Loop Operation A7112 uses a PWM current -mode control scheme. An open- loop comparator compares the integrated voltage-feedback signal against the sum of the amplified current -sense signal and the slope compensation ramp. At each rising edge of the internal clock, the internal high- side MOSFET turns on until the PWM comparator terminates the on cycle. During this on- time, current ramps up through the inductor, sourcing current to the output and storing energy in the inductor. The current mode feedback system regulates the peak inductor current as a function of the output v oltage error signal. During the off cycle, the internal high-side P-channel MOSFET turns off, and the internal low -side N-channel MOSFET turns on. The inductor releases the stored energy as its current ramps down while still providing current to the output . Current Sense An internal current -sense amplifier senses the current through the high- side MOSFET during on time and produces a proportional current signal, which is used to sum with the slope compensation signal. The summed signal then is compared with the error amplifier output by the PWM comparator to terminate the on cycle. Current Limit There is a cycle-by-cycle current limit on the high-side MOSFET of 1.5A (typ). When the current flowing out of SW exceeds this limit, the high- side MOSFET turns off and the synchronous rectifier turns on. A7112 utilizes a frequency fold- back mode to prevent overheating during short -circuit output conditions. The device enters frequency fold-back mode when the FB voltage drops below 200mV, limiting the current to 1.5A (typ) and reducing power dissipation. Normal operation resumes upon removal of the short-circuit condition. Soft-start A7112 has a internal soft -start circuitry to reduce supply inrush current during startup conditions. When the device exits under -voltage lockout (UVLO), shutdown mode, or restarts following a thermal -overload event, the l soft-start circuitry slowly ramps up current available at SW.
AiT Semiconductor Inc. www.ait-ic.com A7112 DC-DC CONVERTER BUCK (STEP-DOWN) 1.2A 1.5MHz 7V SYNCHRONOUS REV2.3 - AUG 2011 RELEASED, JUL 2016 UPDATED - - 7 - UVLO and Thermal Shutdown If VIN drops below 2.5V, the UVLO circuit inhibits switching. Once VIN rises above 2.6V, the UVLO clears, and the soft -start sequence activates. Thermal -overload protection limits total power dissipation in the device. When the junction temperature exceeds T J= +160°C, a thermal sensor forces the device into shutdown, allowing the die to cool. The thermal sensor turns the device on again after the junction temperature cools by 15°C, resulting in a pulsed output during continuous overload conditions. Following a thermal -shutdown condition, the soft-start sequence begins. Design Procedure Setting Output Voltages Output voltages are set by external resistors. The FB_ threshold is 0.6V. RTOP = RBOTTOM[(VOUT / 0.6) - 1] Input Capacitor Selection The input capacitor in a DC -to-DC converter reduces current peaks drawn from the battery or other input power source and reduces switching noise in the controller. The impedance of the input capacitor at the switching frequency should be less than that of the input source so high- frequency switching currents do not pass through the input source. The output capacitor keeps output ripple small and ensures control -loop stability. The output capacitor must also have low impedance at the switching frequency. Ceramic, polymer, and tantalum capacitors are suitable, with ceramic exhibiting the lowest ESR and hi gh-frequency impedance. Output ripple with a ceramic output capacitor is approximately as follows: V RIPPLE = IL(PEAK)[1 / (2π x fOSC x COUT)] If the capacitor has significant ESR, the output ripple component due to capacitor ESR is as follows: VRIPPLE(ESR) = IL(PEAK) x ESR
Application Information
Layout is critical to achieve clean and stable operation. The switching power stage requires particular attention. Follow these guidelines for good PC board layout: 1. Place decoupling capacitors as close to the IC as possible 2. Connect input and output capacitors to the same power ground node with a star ground configuration then to IC ground. 3. Keep the high-current paths as short and wide as possible. Keep the path of switching current (C1 to V IN and C1 to GND) short. Avoid vias in the switching paths. 4. If possible, connect V IN, SW, and GND separately to a large copper area to help cool the IC to further improve efficiency and long-term reliability. 5. Ensure all feedback connections are short and direct. Place the feedback resistors as close to the IC as possible. 6. Route high-speed switching nodes away from sensitive analog areas
AiT Semiconductor Inc. www.ait-ic.com A7112 DC-DC CONVERTER BUCK (STEP-DOWN) 1.2A 1.5MHz 7V SYNCHRONOUS REV2.3 - AUG 2011 RELEASED, JUL 2016 UPDATED - - 8 -
PACKAGE INFORMATION
Dimension in SOT-25 (Unit: mm)
AiT Semiconductor Inc. www.ait-ic.com A7112 DC-DC CONVERTER BUCK (STEP-DOWN) 1.2A 1.5MHz 7V SYNCHRONOUS REV2.3 - AUG 2011 RELEASED, JUL 2016 UPDATED - - 9 - Dimension in DFN6(2x2) (Unit: mm) Symbol Min Max A 0.80 0.90 A1 0.00 0.05 A2 0.60 0.70 A3 0.20REF. b 0.18 0.30 D 1.90 2.10 E 1.90 2.10 D2 0.70 0.90 E2 1.20 1.40 e 0.55 0.75 H 0.25REF. K 0.20 - L 0.30 0.40 R 0.11 -
AiT Semiconductor Inc. www.ait-ic.com A7112 DC-DC CONVERTER BUCK (STEP-DOWN) 1.2A 1.5MHz 7V SYNCHRONOUS REV2.3 - AUG 2011 RELEASED, JUL 2016 UPDATED - - 10 - IMPORTANT NOTICE AiT Semiconductor Inc. (AiT) reserves the right to make changes to any its product, specifi cations, to discontinue any integrated circuit product or service without notice, and advises its customers to obtain the latest version of relevant information to verify, before placing orders, that the information being relied on is current. AiT Semiconductor Inc.'s integrated circuit products are not designed, intended, authorized, or warranted to be suitable for use in life support applications, devices or systems or other critical applications. Use of AiT products in such applications is understood to be fully at the risk of the customer. As used herein may involve potential risks of death, personal injury, or serv er property, or environmental damage. In order to minimize risks associated with the customer's applications, the customer should provide adequate design and operating safeguards. AiT Semiconductor Inc . assumes to no liability to customer product design or application support. AiT warrants the performance of its products of the specifications applicable at the time of sale.