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AS1341-BTDT-1K Просмотр технического описания (PDF) - austriamicrosystems AG

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AS1341-BTDT-1K
AmsAG
austriamicrosystems AG AmsAG
AS1341-BTDT-1K Datasheet PDF : 18 Pages
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AS1341
Datasheet - Detailed Description
8.2 Dropout Voltage
A buck converter’s minimum input-to-output voltage differential (dropout voltage) determines the lowest usable supply voltage. In battery-
powered systems, this limits the useful end-of-life battery voltage. To maximize battery life, the AS1341 operates with duty cycles up to 100%,
which minimizes the dropout voltage and eliminates switching losses while in dropout. When the supply voltage approaches the output voltage,
the P-channel MOSFET remains on continuously to supply the load.
Note: Dropout voltage is defined as the difference between the input and output voltages when the input is low enough for the output to drop
out of regulation.
For a step-down converter with 100% duty cycle, dropout is related to the MOSFET drain-to-source on-resistance (RDSON) and inductor series
resistance (RINDUCTOR), and thus it is proportional to the load current:
VDROPOUT = IOUT x (RDSON + RINDUCTOR)
(EQ 1)
8.3 Shutdown
A logic low on pin SHDNN shuts down the AS1341; a logic high on SHDNN powers on the device.
In shutdown mode the supply current drops to 0.8µA to maximize battery life, and the internal P-channel MOSFET turns off to isolate the output
from the input. The output capacitance and load current determine the output voltage decay rate.
Note: Pin SHDNN should not be left floating. If the shutdown feature is not used, connect SHDNN to IN.
8.4 Power-OK Output
The AS1341 provides a Power OK output (POK) that goes high-impedance when the output reaches 92.5% of its regulation point. POK goes low
when the output is below 92.5% of the regulation point and the AS1341 is turned on (IN 4.5V and SHDNN 2.4V). A 12kto 1Mpullup
resistor between pin POK and pin IN or pin OUT or another voltage (IN) can provide a microprocessor logic control signal.
Note: Connect pin POK to GND when the Power-Ok feature is not used.
8.5 Thermal-Overload Protection
Integrated thermal-overload protection limits total power dissipation in the AS1341. During continuous thermal-overload conditions, when the
AS1341 junction temperature exceeds TJ = +145ºC, the internal thermal sensor turns off the pass transistor, allowing the AS1341 to cool down.
When the AS1341 junction temperature cools by 10ºC, the thermal sensor turns the pass transistor on again resulting in a pulsed output.
www.ams.com/DC-DC_Step-Up/AS1341
Revision 1.09
9 - 18

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