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GDTL494 数据表(PDF) 3 Page - E-Tech Electronics LTD

部件名 GDTL494
功能描述  V O L T A G E M O D E P W M C O N T R O L C II R C U II T
PDF  5 Pages
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制造商  ETL [E-Tech Electronics LTD]
网页  http://e-tech.com.hk
标志 ETL - E-Tech Electronics LTD

GDTL494 数据表(HTML) 3 Page - E-Tech Electronics LTD

  GDTL494 Datasheet HTML 1Page - E-Tech Electronics LTD GDTL494 Datasheet HTML 2Page - E-Tech Electronics LTD GDTL494 Datasheet HTML 3Page - E-Tech Electronics LTD GDTL494 Datasheet HTML 4Page - E-Tech Electronics LTD GDTL494 Datasheet HTML 5Page - E-Tech Electronics LTD  
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ISSUED DATE :2003/05/26
REVISED DATE :2004/10/05B
Open-Loop Voltage Amplification
Vo=3v,Vo=0.5V to 3.5V
70
95
dB
Unity-Gain Bandwidth
800
kHz
Common-Mode Rejection Ratio Error
Vcc=40V,TA=25 :
65
80
dB
Output Sink Current(pin 3)
VID=-15mV to –5V V(pin 3)=0.5V
0.3
0.7
mA
Output source Current(pin 3)
VID=15Mv to –5V V(pin 3)=3.5V
-2
mA
Output Section
Collector off-state current
VCE=40V,Vcc=40v
2
100
A
Emitter off-state current
Vcc=Vc=40V,VE=0
-100
A
Common-Emitter
VE=0,Ic=200mA
1.1
1.3
V
Collector-Emitter saturation
Voltage
Emitter-Follower
Vc=15V,IE=-200mA
1.5
2.5
Output Control Input Current
Vi=Vref
3.5
mA
Dead Time Control Section
Input bias(pin 4)
Vi=0 to 5.25 V
-2
-10
A
Maximum duty cycle, each output
VI(pin 4)=0
45
%
Input threshold Voltage (pin 4)
Zero duty cycle
3
3.3
V
Maximum duty cycle
0
PWM comparator Section
Input Threshold Voltage(pin 3)
Zero Duty cycle
4
4.5
V
Input Sink current (pin 3)
V(pin 3)=0.7V
0.3
0.7
mA
Total Device
Standby supply current Vcc=15V
6
10
Vcc=40V
Pin 6 at Vref,all other Input s and
outputs open
9
15
mA
Average supply current
V pin 4 =2V
7.5
mA
Switching Characteristics, Ta = 25 ::::
Output Voltage Rise Time
100
200
ns
Output Voltage Fall Time
Common-emitter configuration
25
100
ns
Output Voltage Rise Time
100
200
ns
Output Voltage Fall Time
Emitter-follower configuration
40
100
ns
Note 1 All typical values except for temperature coefficient are at Ta=25 : .
Note 2 For conditions shown as MIN or MAX, use appropriate value under recommended operating conditions.
Note 3 Duration of the short -circuit should not exceed one second.
Note 4 Standard deviation is a measure of the statistical distribution the mean as derived from the formula:



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