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LT3582 Datasheet(PDF) 8 Page - Linear Technology |
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LT3582 Datasheet(HTML) 8 Page - Linear Technology |
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8 / 28 page ![]() LT3582/LT3582-5/LT3582-12 8 3582512f PIN FUNCTIONS CA (Pin 1): I2C Address Select Pin. Tie this pin to VIN to set the 7-bit address to 0110 001. Tie to GND for 1000 101. VOUTN (Pin 2): Negative Output Voltage Pin. When the con- verter is operating, this pin is regulated to the programmed negative output voltage. Place a ceramic capacitor from this pin to GND. SWN (Pins 3 & 4): Negative switching node for the In- verting converter. This is the drain of the internal PMOS power switch. Connect one end of the Inverting inductor to these pins. Keep the trace area on these pins as small as possible. VIN (Pin 5): Input supply pin and source of the PMOS power switch. This pin must be bypassed locally with a ceramic capacitor. The operating voltage range of this pin is 2.55V to 5.5V. RAMPN (Pin 6): Soft start ramp pin for the Inverting converter. Place a capacitor from this pin to GND. A programmable current of 1μA - 8μA (LT3582) or 1μA (LT3582-5/LT3582-12) charges this pin during startup, limiting the ramp rate of VOUTN. This pin is discharged to GND during shutdown. RAMPP (Pin 7): Soft start ramp pin for the Boost converter. Place a capacitor from this pin to GND. A programmable currentof1μA-8μA(LT3582)or1μA(LT3582-5/LT3582-12) charges this pin during startup, limiting the ramp rate of VOUTP. This pin is discharged to GND in shutdown. SHDN (Pin 8): Shutdown Pin. Drive this pin to 1.1V or higher to enable the part. Drive to 0.3V or lower to shut down. Includes an integrated 222k pulldown resistor. VOUTP (Pin 9): Output of the Boost converter output disconnect circuit. A ceramic capacitor should be placed from this node to GND. During shutdown, this pin is disconnected from the Boost network which allows this pin to discharge to GND, assuming a load is present to discharge the capacitance. CAPP (Pins 10 & 11): Connect the Boost output capacitor from these pins to GND. During shutdown, the voltage on these pins will remain close to the input voltage due to the path through the Boost inductor and Schottky. During normal operation, CAPP will be boosted slightly higher than the programmed output voltage. SWP (Pin 12): Positive switching node for the Boost converter. This is the drain of the internal NMOS power switch. Connect one end of the Boost inductor to this pin. Keep the trace area on this pin as small as possible. GND (Pin 13): Ground Pin. Tie to a local ground plane. Proper PCB layout is required to achieve advertised performance; see Applications Information section for more information. VPP (Pin 14): Programming Voltage Pin. Drive this pin to 13-15V when programming the OTP memory. Float otherwise. A bypass capacitor should be placed from this node to GND if VPP is used for programming. If VPP falls below 13V during OTP programming, an internal FAULT bit, which can be read through the I2C interface, can be set high. SDA (Pin 15): I2C Bidirectional Data Pin. Tie to GND or VIN if unused. SCL (Pin 16): I2C Clock Pin. Tie to GND or VIN if unused. Exposed Pad (Pin 17): Ground Pin. Tie to a local ground plane. Proper PCB layout is required to achieve advertised performance; see Applications Information section for more information. |
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