S1F76610M2E Epson Electronics America, Inc., S1F76610M2E Datasheet - Page 5

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S1F76610M2E

Manufacturer Part Number
S1F76610M2E
Description
Dc-dc Converter With High Efficiency And Low Power Consumption.
Manufacturer
Epson Electronics America, Inc.
Datasheet

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
S1F76610M2E0100
Manufacturer:
EPSON/爱普生
Quantity:
20 000
Part Number:
S1F76610M2E010B
Quantity:
64
1. DESCRIPTION
(-3.6 to -12V) or triple boosting output (-5.4 to -18V) for input voltage (-1.8 to -6V).
stabilization output, and it is appropriate for LCD power.
another power supply in addition to the logic main power, using a single power supply. Therefore, it is suitable
for supplying micro-power to compact electrical devices such as hand-held computers with low power
consumption.
2. FEATURES
(1) CMOS DC-DC converter with high efficiency and low power consumption
(2) Easy conversion from input voltage V
(3) Output voltage stabilizer built-in
(4) Output current
(5) Power conversion efficiency
(6) Temperature gradient selectable for LCD power
(7) Power-off operation by external signal
(8) Serial connection enabled (V
(9) Low voltage operation: Appropriate for battery drive
(10) CR oscillation circuit built-in
(11) SSOP2-16 pin
(12) This IC is not designed for strong radiation activity proof.
S1F76610M2E Technical Manual (Rev.1.1)
The S1F76610 is a CMOS DC-DC converter with high efficiency and low power consumption.
It consists of two major components: a booster and a stabilizer. The booster assures double boosting output
The stabilizer sets any output voltage. It also provides three types of negative temperature gradients for
The S1F76610 enables you to drive an IC (liquid crystal driver, analog IC, etc.) that would usually require
Output + | V
Any output voltage settable with external resistor
3 types: -0.05%/°C, -0.30%/°C and -0.50%/°C
Static current for power-off: Max. 2µA
IN
| (+5V), +2 |V
Max. 20 mA (V
IN
IN
= -5V, V
| (+10V), 2V
Typ. 95%
IN
IN
OUT
(-5V) to four types of positive/negative voltages
= -5V)
IN
= -20V using two ICs)
(-10V), and 3V
EPSON
IN
(-15V) from input V
IN
1. DESCRIPTION
(-5V)
1

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