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G576 查看數據表(PDF) - Global Mixed-mode Technology Inc

零件编号
产品描述 (功能)
生产厂家
G576
GMT
Global Mixed-mode Technology Inc GMT
G576 Datasheet PDF : 12 Pages
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Global Mixed-mode Technology Inc.
G576
Absolute Maximum Ratings Over Operating
Free-Air Temperature (unless other-wise noted)*
Input voltage range for card power:
VCC5.......................................………..…….-0.3V to 7V
VCC3.....…...........................…….……... -0.3V to 7V
VCC12.....................................……..…….-0.3V to 14V
Logic input voltage...................….........…….-0.3V to 7V
Output current (each card):IO (AVCC/BVCC)..internally limited
IO(AVPP/BVPP)..…internally limited
Operating virtual junction temperature range, TJ.
.........…............……………..…….………-40°C to 150°C
Operating free-air temperature range,.TA
……………………………………………………………..……………..-40°C to 85°C
Storage temperature range, TSTG
………………………...........….....……….-55°C to 150°C
Lead temperature 1.6 mm (1/16 inch) from case for
10 seconds.……..………………………………...….260°C
Thermal resistance θJA
SSOP 28……………………………………….….125°C/W
Power dissipation PD (TA +25°C)
SSOP 28……………………………………………800mW
ESD…………………………..…………………….…Note1
*Stresses beyond those listed under "absolute maximum ratingsmay cause permanent damage to the device. These are stress rating
only, and functional operation of the device at these or any other conditions beyond those indicated under "recommended operating
conditionsis not implied. Exposure to absolute–maximum-rated conditions for extended periods may affect device reliability.
Note 1: ESD (electrostatic discharge) sensitive device. Proper ESD precautions are recommended to avoid performance degradation or
less of functionality.
Recommended Operating Conditions
VCC5
Input voltage, VI
VCC3
VCC12
Output current
IO (AVCC/BVCC)
IO (AVPP/BVPP)
Operating virtual junction temperature, TJ
MIN
0
0
0
-40
MAX
5.25
5.25
13.5
1.0
150
125
UNIT
V
V
V
A
mA
°C
Electrical Characteristics (TA=25°C)
Power Switch
PARAMETER
TEST CONDITIONS*
5V to AVCC/BVCC
VCC5 = 5V
3.3V to AVCC/BVCC
VCC5 = 5V, VCC3 =3.3V
Switch resistance
3.3V to AVCC/BVCC
5V to AVPP/BVPP
VCC5 = 0V, VCC3 =3.3V
TJ = 25°C
3.3V to AVPP/BVPP
TJ = 25°C
12V to AVPP/BVPP
TJ = 25°C
VO (AVPP/BVPP) Clamp low voltage
IPP at 10mA
VO (AVCC/BVCC) Clamp low voltage
ICC at 10mA
IIKG Leakage current
IPP high-impedance State TA = 25°C
ICC high-impedance State TA = 25°C
VCC5 = 5V
VO (AVCC/BVCC)=5V, VO (AVPP/BVPP)=12V
II Input current
VCC5= 0V, VCC3 = 3.3V VO (AVCC/BVCC)=3.3V, VO (AVPP/BVPP)=12V
Shutdown mode
VO (AVCC/BVCC)=VO (AVPP/BVPP)= Hi-Z
IOS Short-circuit Output- IO(AVCC/BVCC)
Output powered into a short to GND
current Limit
IO(AVPP/BVPP)
MIN
0.8
120
TYP
130
130
130
3.6
3.4
1.2
0.18
0.13
1
1
75
75
1
MAX
180
180
180
6
6
6
0.8
0.8
10
10
150
150
3
2.2
400
UNIT
m
V
V
µA
µA
A
mA
*Pulse-testing techniques maintain junction temperature close to ambient temperatures; thermal effects must be taken into account separately.
Ver: 1.0
Jan 23, 2003
TEL: 886-3-5788833
http://www.gmt.com.tw
3

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