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TS324 Datasheet(PDF) 2 Page - Taiwan Semiconductor Company, Ltd

Part No. TS324
Description  Low Power Quad Operational Amplifiers
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Maker  TSC [Taiwan Semiconductor Company, Ltd]
Homepage  http://www.taiwansemi.com
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TS324 Datasheet(HTML) 2 Page - Taiwan Semiconductor Company, Ltd

   
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TS324
Low Power Quad Operational Amplifiers
2/8
Version: A09
Electrical Characteristics (VCC = 5V, Ta=25ºC; unless otherwise specified.)
Characteristics
Symbol
Min
Typ
Max
Unit
Input Offset Voltage
VCC= 5.0V to 30V, VIC= 0V to VCC -1.7 V, Vo= 1.4V, RS= 0Ω
TLOW ≤ TA ≤THIGH
VIO
--
--
2.0
--
7.0
9.0
mV
Average Temperature Coefficient of Input Offset Voltage
ΔVIO/ΔT
--
7.0
--
uV/
oC
Input Offset Current
TA=+25ºC
TLOW ≤ Ta ≤THIGH
IIO
--
--
5.0
--
50
150
nA
Average Temperature Coefficient of input Offset Current
ΔIIO/ΔT
--
10
--
pA/
oC
Input Bias Current
TA=+25ºC
TLOW ≤ TA ≤THIGH
IIB
--
--
-90
--
-250
-500
nA
Input Common-Mode Voltage Range
VCC =30 V (Note1)
VCC =30 V, TLOW ≤ TA ≤THIGH
VICR
0
0
--
--
28.3
28
V
Differential Input Voltage Range
VIDR
--
--
VCC
V
Large Signal Open-Loop Voltage Gain
RL = 2.0K, VCC =15V, For Large VO Swing,
TLOW ≤ Ta ≤THIGH
AVOL
25
15
100
--
--
--
V/mV
Channel Separation
1.0 KHz to 20KHz
--
--
-120
--
dB
Common Mode Rejection Ratio
RS ≤ 10 kΩ
CMRR
65
70
--
dB
Power Supply Rejection Ratio
PSRR
65
100
--
dB
Output Voltage -- High Limit
VCC = 30 V, RL = 2 kΩ
VCC = 30 V, RL = 10 kΩ
VOH
26
27
--
28
--
--
V
Output Voltage -- Low Limit
VCC = 5.0 V, RL = 10 kΩ
VOL
--
5.0
20
mV
Output Source Current VID=+1.0V,VCC=15V
IO+
20
40
--
mA
Output Sink Current
VID = -1.0 V, VCC = 15 V
VID = -1.0 V, VO = 200 mV
IO-
10
12
20
50
--
--
mA
uA
Output Short Circuit to Ground (Note 2)
IOS
--
40
60
mA
Power Supply Current
VCC = 30 V, VO = 0 V, RL = ∞
VCC = 5.0 V, VO = 0 V, RL = ∞
ICC
--
--
1.5
0.7
3.0
1.2
mA
Notes
1, The input common mode voltage or either input signal voltage should not be allowed to go negative by more than
0.3 V. The upper end of the common mode voltage range is VCC 17V, but either or both inputs can go to +32V.
2, Short circuits from the output to VCC can cause excessive heating and eventual destruction. Destructive dissipation
can recruit from simultaneous shorts on all amplifiers.


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