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What is G914H?

This electronic component, produced by the manufacturer "Global Mixed-mode Technology", performs the same function as "Low-Noise LDO Regulators".


G914H Datasheet PDF - Global Mixed-mode Technology

Part Number G914H
Description Low-Noise LDO Regulators
Manufacturers Global Mixed-mode Technology 
Logo Global Mixed-mode Technology Logo 


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Global Mixed-mode Technology Inc.
G914X
300mA High PSRR, Low-Noise LDO Regulators
Features
„ Ultra Low Output Noise30µV (rms)
„ Ultra Low 55µA No-Load Supply Current
„ Ultra Low Dropout 70mV @ 50mA Load
„ Guarantee 300mA Output Current
„ Over-Temperature and Short-Circuit Protection
„ Fixed Mode: 2.70V (G914A), 2.80V (G914B)
3.00V (G914C), 3.30V (G914D)
2.50V (G914E), 2.85V (G914F)
1.50V (G914G), 1.80V (G914H)
„ Adjustable Mode: from 1.25V to 5.50V (G914Z)
„ PSRR=70dB
„ Max. Supply Current in Shutdown Mode < 1µA
„ Stable with low cost ceramic capacitors
General Description
The G914X is a low supply current, high PSRR low
dropout linear regulator that comes in a space saving
SOT-23-5 package. The supply current at no-load is
55µA. In the shutdown mode, the maximum supply
current is less than 1µA. Operating voltage range of
the G914X is from 2.5V to 5.5V. The over-current pro-
tection limit is set at 500mA typical and 400mA mini-
mum. An over- temperature protection circuit is built-in
in the G914X to prevent thermal overload. These
power saving features make the G914X ideal for use
in the battery-powered applications such as notebook
computers, cellular phones, and PDAs.
Applications
„ Notebook Computers
„ Cellular Phones
„ PDA
„ Hand-Held Devices
„ Battery-Powered Application
Ordering Information
ORDER
NUMBER
ORDER NUMBER
(Pb free)
G914A
G914Af
G914B
G914Bf
G914C
G914Cf
G914D
G914Df
G914E
G914Ef
G914F
G914Ff
G914G
G914Gf
G914H
G914Hf
G914Z
G914Zf
Pin Configuration
MARKING
4Axx
4Bxx
4Cxx
4Dxx
4Exx
4Fxx
4Gxx
4Hxx
4Zxx
VOLTAGE
2.70V
2.80V
3.00V
3.30V
2.50V
2.85V
1.50V
1.80V
Adjustable
TEMP.
RANGE
-40°C~ +85°C
-40°C~ +85°C
-40°C~ +85°C
-40°C~ +85°C
-40°C~ +85°C
-40°C~ +85°C
-40°C~ +85°C
-40°C~ +85°C
-40°C~ +85°C
PACKAGE
SOT-23-5
SOT-23-5
SOT-23-5
SOT-23-5
SOT-23-5
SOT-23-5
SOT-23-5
SOT-23-5
SOT-23-5
Typical Application Circuit
G914A~G914H
IN 1
5 OUT
GND 2
SHDN 3
4 BYP
CIN
1µF
BATTERY
G914A~G914H
IN OUT
SHDN
GND
BYP
OUTPUT
VOLTAGE
CBYP
10nF
COUT
4.7µF
IN 1
SOT-23-5
G914Z
5 OUT
GND 2
SHDN 3
4 SET
BATTERY 1CµIFN
Fixed mode
G914Z
IN OUT
SHDN
SET
GND
OUTPUT
VOLTAGE
R1
C4.O7UµTF
R2
Ver: 1.8
Jul 24, 2007
SOT-23-5
Adjustable mode
TEL: 886-3-5788833
http://www.gmt.com.tw
1

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G914H equivalent
Global Mixed-mode Technology Inc.
Typical Performance Characteristics (continued)
G914X
Ground Current vs. Temperature
100
G914D
VIN = 4.3V
80 IOUT =0A
60
40
20
0
-40 -30 -20 -10 0 10 20 30 40 50 60 70 80 90 10 11 12 13
0000
Junction Temperature TJ (°C)
SHDN Input Bias Current vs. Temperature
0.20
0.10
G914D
VIN=4.3V
VSHDN=VIN
0.00
-0.10
-0.20
-40 -30 -20 -10 0 10 20 30 40 50 60 70 80 90 10 11 12 13
0000
Junction Temperature TJ (°C)
Shutdown Supply Current vs. Temperature
1.00
0.60
G914D
VIN = 4.3V
0.20
-0.20
-0.60
-1.00
-40 -30 -20 -10 0 10 20 30 40 50 60 70 80 90 10 11 12 13
0000
Junction Temperature TJ (°C)
Output Voltage vs. Temperature
3.36
3.34
G914D
ILOAD=1mA
VIN=5.5V
3.32
3.30
3.28
3.26
VIN=3.4V
VIN=4.3V
3.24
-40 -30 -20 -10 0 10 20 30 40 50 60 70 80 90 10 11 12 13
0000
Junction Temperature TJ (°C)
Dropout Voltage vs. Temperature
400
350 G914D
300
ILOAD=150mA
250
200
150
100 ILOAD=50mA
50
ILOAD=0mA
0
-40 -30 -20 -10 0 10 20 30 40 50 60 70 80 90 10 11 12 13
0000
Junction Temperature TJ (°C)
Ver: 1.8
Jul 24, 2007
5
TEL: 886-3-5788833
http://www.gmt.com.tw


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On this page, you can learn information such as the schematic, equivalent, pinout, replacement, circuit, and manual for G914H electronic component.


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Featured Datasheets

Part NumberDescriptionMFRS
G914The function is 150mA Low-Dropout Linear Regulators. ETCETC
G914AThe function is Low-Noise LDO Regulators. Global Mixed-mode TechnologyGlobal Mixed-mode Technology
G914BThe function is Low-Noise LDO Regulators. Global Mixed-mode TechnologyGlobal Mixed-mode Technology

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