LP6217 POWER | Alldatasheet

Document overview

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Technical content

Features

— Up to 94% efficiency — Shut-down current:<1uA  — Output voltage Up to 24V — 1MHz fixed frequency switching — High switch on current:2.1A,24V@200mΩ — Adjustable OCP: 0.5A-2A — Available in SOT23-6 Package

Applications

— Battery products — Host Products — Motor Power Devices Typical Application Circuit 22pF 45K LP6217 OCPEN LX FB GND Vin 20K Vout 22uF Vin 22uF 10K 4.7uH Pin Configurations 6 4 LP6217B6F (SOT23-6)

P r e l i m i n a r y L P 6 2 1 7 L P 6 2 1 7 – 0 0 V e r s i o n 1 . 0 D a t a s h e e t S e p . - 2 0 1 0 www.lowpowersemi.com P a g e 2 o f 6 Functional Pin Description PIN PIN Name Description 1 Vin IC Power Supply. 2 GND Ground. 3 OCP Current Limit Adjustable pin. 4 LX Output switching node. SW is the drain of the internal N-Channel MOSFET and RDS-ON is 100m Ω. Connect the inductor to SW to Complete the step-up converter. 5 EN Regulator On/off Control Input. A logic high input(VEN>1.4V) turns on the regulator. A logic low input(VEN<0.4V) puts the LP6217 into low current shutdown mode. 6 FB Regulation Feedback Input. Connect to an external resistive voltage divider from the output to FB to set the output voltage.Vfb=0.6V. Function Block Diagram

P r e l i m i n a r y L P 6 2 1 7 L P 6 2 1 7 – 0 0 V e r s i o n 1 . 0 D a t a s h e e t S e p . - 2 0 1 0 www.lowpowersemi.com P a g e 3 o f 6 Absolute Maximum Ratings Package Thermal Resistance Recommended Operating Conditions

Electrical Characteristics

Parameter Conditions LP6217 Units Min Typ. Max Supply Voltage 2.2 5 V Output Voltage Range 2.5 24 V Supply Current(Shutdown) VEN=VOUT=0V,VSW=5V 0.05 1 uA Supply Current VFB=1.3V 0.2 mA Disable Supply Current EN=GND 0.1 uA Feedback Voltage 0.588 0.6 0.612 V Feedback Input Current VFB=1.2V 50 nA Switching Frequency 1 MHz Maximum Duty Cycle 80 85 90 % EN Input Low Voltage 0.6 V EN Input High Voltage 1.4 V Mosfet On Resistance 200 m Ω Mosfet Voltage(VDS) 26 V NMOS Current Limit 2.1 A OCP Adjustable Range R3=10k-100k Ω 0.5 2.5 A Soft-start Reset Switch Resistance 100 Ω Soft-start Input Source Current VSS=1.2V 4.0 uA

P r e l i m i n a r y L P 6 2 1 7 L P 6 2 1 7 – 0 0 V e r s i o n 1 . 0 D a t a s h e e t S e p . - 2 0 1 0 www.lowpowersemi.com P a g e 4 o f 6 Typical Operating Characteristics (VDD=3.3V ,Vout=5V)

P r e l i m i n a r y L P 6 2 1 7 L P 6 2 1 7 – 0 0 V e r s i o n 1 . 0 D a t a s h e e t S e p . - 2 0 1 0 www.lowpowersemi.com P a g e 5 o f 6 Operation Information Output Voltage The error amplifier compares a sample of the dc-dc converter output voltage with the 0.6V (VREF) reference and generates an error signal for the PWM comparator. Output voltage of dc-dc converter is setting with the resistor divider by the following equation: V o u t = ( R 1 / R 2 + 1 ) X 0.6V Oscillator The switching frequency of LP6217 up to operate at either 1MHz. Soft Start The soft start is functional after power on. The interval of soft start time is determined by a capacitor connected to SS pin. When EN pin is taken high, the soft start capacitor (CSS) is charged by a constant current of 4 μA (typ). During this interval, the SS voltage dire ctly controls the peak inductor current. The maximum load current is available after the soft-start interval is completed. Once the EN pin is take n low, the soft-start capacitor is discharged to ground to prepare for next start-up. The load must wait for the soft-start interval to finish before drawing a significant amount of load current. The duration after which the load can begin to draw maximum load current is: EN The LP6217 can be turn off to reduce the supply current to 0.1μA when EN is low. In this mode, the internal reference, error amplifier, comparators, and biasing circuitry turn off while the N-channel MOSFET is turned off. The boost converter’s output is connected to VCC by the external inductor and catch diode. Output Current Capability The output current capability of the LP6217 is a function of current limit, input voltage, operation frequency, and inductor value. Because of the slope compensation used to stabilize the feedback loop, the duty cycle affects the current limit. The output current capability is governed by the following equation: Current Limitation The internal power-MOS switch current is monitored cycle-by-cycle and is limited to the value not exceed 2A (Typ.). When the switch current reaches the limited value, the internal power-MOS is turned off immediately until the next cycle. A resistor between OCP and GND pin programs peak switch current. The resistor value should be between 10k and 100k. The current limit will be set from 2.5A to 0.5A. Keep traces at this pin as short as possible. Do not put capacitance at this pin. Layout considerations Typical for all switching power supplies, the layout is an important step in the design; especially at high peak currents and switching frequencies. If the layout is not carefully done, the regulator might show noise problem sand duty cycle jitter. The input capacitor should be placed as close as possible to the inpu t pin for good input voltage viltering. The inductor and diode should be placed as close as possible to the switch pin to minimize the noise coupling into other circuits. Since the feedback pin and network is a high impedance circuit the feedback network should be routed away from the inductor. Th e feedback pin and feedback network should be shielded with a ground plane or trace to minimize noise coupling into this circuit.

P r e l i m i n a r y L P 6 2 1 7 L P 6 2 1 7 – 0 0 V e r s i o n 1 . 0 D a t a s h e e t S e p . - 2 0 1 0 www.lowpowersemi.com P a g e 6 o f 6 Packaging Information