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MAX6784TCB+ Datasheet(PDF) 7 Page - Maxim Integrated Products |
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MAX6784TCB+ Datasheet(HTML) 7 Page - Maxim Integrated Products |
7 / 20 page Low-Power, 1% Accurate, Dual-/Triple-/Quad-Level Battery Monitors in Small TDFN and TQFN Packages _ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ __ _ 7 Pin Description PIN MAX6782/ MAX6783 MAX6784/ MAX6785 NAME FUNCTION 1 1 IN2 Battery Monitor Input 2. Connect to an external resistive divider to set the trip threshold for monitor 2. 2 2 IN3 Battery Monitor Input 3. Connect to an external resistive divider to set the trip threshold for monitor 3. 3 — IN4 Battery Monitor Input 4. Connect to an external resistive divider to set the trip threshold for monitor 4. 4 3 REF Reference Output. REF can source up to 1mA. REF does not require an external bypass capacitor for stability. Keep the capacitance from REF to GND below 50pF. 5 4 HADJ1 Hysteresis Adjustment Input 1. Connect HADJ1 to GND to select an internal preset hysteresis option. Connect a resistive divider from REF to HADJ1 and to GND to externally adjust the hysteresis for IN1 from its internal preset hysteresis (see Figure 6). 6 5 HADJ2 Hysteresis Adjustment Input 2. Connect HADJ2 to GND to select an internal preset hysteresis option. Connect a resistive divider from REF to HADJ2 and to GND to externally adjust the hysteresis for IN2 from its internal preset hysteresis (see Figure 6). 7 6 HADJ3 Hysteresis Adjustment Input 3. Connect HADJ3 to GND to select an internal preset hysteresis option. Connect a resistive divider from REF to HADJ3 and to GND to externally adjust the hysteresis for IN3 from its internal preset hysteresis (see Figure 6). 8 — HADJ4 Hysteresis Adjustment Input 4. Connect HADJ4 to GND to select an internal preset hysteresis option. Connect a resistive divider from REF to HADJ4 and to GND to externally adjust the hysteresis for IN4 from its internal preset hysteresis (see Figure 6). 9— LBO4 Active-Low, Low-Battery Output 4. LBO4 asserts when VIN4 falls below the falling threshold voltage. LBO4 deasserts when VIN4 exceeds the rising threshold voltage. 10 7 LBO3 Active-Low, Low-Battery Output 3. LBO3 asserts when VIN3 falls below the falling threshold voltage. LBO3 deasserts when VIN3 exceeds the rising threshold voltage. 11 8 LBO2 Active-Low, Low-Battery Output 2. LBO2 asserts when VIN2 falls below the falling threshold voltage. LBO2 deasserts when VIN2 exceeds the rising threshold voltage. 12 9 LBO1 Active-Low, Low-Battery Output 1. LBO1 asserts when VIN1 falls below the falling threshold voltage. LBO1 deasserts when VIN1 exceeds the rising threshold voltage. 13 10 BATT Battery Input. Power supply to the device. For better noise immunity, bypass BATT to GND with a 0.1µF capacitor as close to the device as possible. 14 11 GND Ground 15 — N.C. No Connection. Not internally connected. 16 12 IN1 Battery Monitor Input 1. Connect to an external resistive divider to set the trip threshold for monitor 1. MAX6782/MAX6783/MAX6784/MAX6785 |
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