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TS941AI-TS941I-TS942AI-TS944I Fast Delivery,Good Price
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TS942AISTN/a950avaiOUTPUT RAIL TO RAIL MICROPOWER OPERATIONAL AMPLIFIERS
TS944ISTN/a55avaiOUTPUT RAIL TO RAIL MICROPOWER OPERATIONAL AMPLIFIERS
TS941AISGS-THOMSONN/a3000avaiOUTPUT RAIL TO RAIL MICROPOWER OPERATIONAL AMPLIFIERS
TS941AISTN/a800avaiOUTPUT RAIL TO RAIL MICROPOWER OPERATIONAL AMPLIFIERS
TS941ISGS-THOMSONN/a3000avaiOUTPUT RAIL TO RAIL MICROPOWER OPERATIONAL AMPLIFIERS


TS941AI ,OUTPUT RAIL TO RAIL MICROPOWER OPERATIONAL AMPLIFIERSABSOLUTE MAXIMUM RATINGSSymbol Parameter Value Unit1)V12 VCC Supply voltage2)V±12 Vid Differential ..
TS941AI ,OUTPUT RAIL TO RAIL MICROPOWER OPERATIONAL AMPLIFIERSTS941TS942TS944OUTPUT RAIL TO RAILMICROPOWER OPERATIONAL AMPLIFIERSn RAIL TO RAIL OUTPUT VOLTAGE SW ..
TS941AID ,OUTPUT RAIL TO RAIL MICROPOWER OPERATIONAL AMPLIFIERSTS941TS942TS944OUTPUT RAIL TO RAILMICROPOWER OPERATIONAL AMPLIFIERS ■ RAIL TO RAIL OUTPUT VOLTAGE ..
TS941AIDT ,OUTPUT RAIL TO RAIL MICROPOWER OPERATIONAL AMPLIFIERSELECTRICAL CHARACTERISTICSV = +2.5V, V = 0V, R connected to V ,CC DD L CC/2T = 25°C (unless otherwi ..
TS941AILT ,OUTPUT RAIL TO RAIL MICROPOWER OPERATIONAL AMPLIFIERSELECTRICAL CHARACTERISTICSV = +3V, V = 0V, R connected to V ,CC DD L CC/22)T = 25°C (unless otherwi ..
TS941BID ,OUTPUT RAIL TO RAIL MICROPOWER OPERATIONAL AMPLIFIERSELECTRICAL CHARACTERISTICSV = +3V, V = 0V, R connected to V ,CC DD L CC/22)T = 25°C (unless otherwi ..
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TS941AI-TS941I-TS942AI-TS944I
OUTPUT RAIL TO RAIL MICROPOWER OPERATIONAL AMPLIFIERS
RAILTO RAIL OUTPUT VOLTAGE SWINGn MICROPOWER CONSUMPTION (1.2μA) SINGLE SUPPLY OPERATION (2.7Vto 10V) CMOS INPUTS ULTRA LOW INPUT BIAS CURRENT (1pA) ESD PROTECTION (2kV) LATCH-UP IMMUNITY (ClassA) AVAILABLEIN SOT23-5 MICROPACKAGEDESCRIPTION
The TS94x (Single, Dual& Quad)is Operational
Amplifier characterizedfor 2.7Vto 10V operation
over -40°Cto +85°C temperature range.is exhibitingan excellent consumption- 1.2μA,
while featuring 10kHz gain bandwidth product,
1.5mA output capability and output Railto Railop-
eration- 2.85Vtyp@3V with RL=10kΩ.
The TS94x Op-Ampis idealfor battery-powered
systems, where verylow supply current and out-
put Railto Railare required.Its verylow- 1pAtyp
input bias current and constant supply current
over supply voltage enhance TS94x’s perfor-
mance nearthe endofthelife battery charge.
APPLICATION
Battery-powered systems (Alarm) Portable communication systems (Pagers)n Smoke/gas/fire detectors Instrumentation& sensoring PH Meter
ORDER CODE
N=Dual
in LinePackage(DIP)D=Small Outline Package(SO)- alsoavailableinTape&Reel(DT)P=Thin Shrink Small Outline Package (TSSOP)-only availableTape&Reel(PT)
PIN CONNECTIONS
(top view)
Part
Number
Temperature
Range
Package SOT23
MarkingNDPL

TS941I
TS941AI
TS941BI
-40, +85°C
K201
K202
K203
TS942I
TS942AI
TS942BI
-40, +85°C
TS944I
TS944AI
TS944BI
-40, +85°C 4
InvertinginputNon-invertinginput
Output
VDD
VCC 5
InvertingInput1
N.C.
Non-invertingInput1
VDD
VCC
Output2
N.C.
N.C.
InvertingInput2
Non-invertingInput2
Non-invertingInput1VV
Output3
Output4
Non-invertingInput4
InvertingInput4
Non-invertingInput3
InvertingInput3
Output1
InvertingInput1
Output2 -
InvertingInput1
Output1
Non-invertingInput1
VDD
VCC
Output2
InvertingInput2
Non-inverting Input2
TS941ILT
TS944IN-TS944ID-TS944IDT-TS944IPT
TS941ID-TS941IDT
TS942IN-TS942ID-TS942IDT-TS942IPT
TS941
TS942
TS944

OUTPUT RAIL TO RAIL
MICROPOWER
OPERATIONAL AMPLIFIERS
TS941-TS942-TS944
ABSOLUTE MAXIMUM RATINGS
OPERATING CONDITIONS
Symbol Parameter Value Unit

VCC Supply voltage1) 12 V
Vid Differential Input Voltage2) ±12 V
Vin Input Voltage Range3) -0.3to 12.3 V
Toper Operating FreeAir Temperature Range -40to+85 °Cstd Storage Temperature Range -65to +150 °C Maximum Junction Temperature 150 °C
Rthjc Thermal Resistance Junctionto Case4)
SOT23-5
DIP8
DIP14
SO8
SO14
TSSOP8
TSSOP14
°C/Wthja Thermal Resistance Junctionto Ambient- SOT23-5 256 °C/W
ESD Human Body Model 2 kV
Latch-up Immunity ClassA
Lead Temperature (soldering, 10sec) 260 °C Allvoltages values, except differential voltage arewith respectto network terminal. Differential voltagesare non-invertinginput terminalwith respectto theinvertinginput terminal.The magnitudeofinputand output voltagesmust never exceedVCC +0.3V. Short-circuitscan cause excessive heatingand destructive dissipation.
Symbol Parameter Value Unit

VCC Supply Voltage 2.7to10 V
Vicm Common Mode Input Voltage Range VCC--0.2toVCC+-1.3 V
TS941-TS942-TS944
ELECTRICAL CHARACTERISTICS

VCC= +3V,Vee= 0V,RL connectedto VCC/2,
Tamb =25°C (unless otherwise specified)
Symbol Parameter Min. Typ. Max. Unit

Vio
Input Offset Voltage
TS941/2/4
TS941/2/4A
TS941/2/4B
ΔVio Input Offset Voltage Drift 7 μV/°C
Iio Input Offset Current1) Maximum values including unavoidable inaccuratesofthe industrialtest. 100 pA
Iib Input Bias Current1) 1 150 pA
CMR Common Mode Rejection Ratio 85 dB
SVR Supply Voltage Rejection Ratio 85 dB
Avd Large Signal Voltage Gain= 2Vpp RL =1MΩ 100 dB
VOH
High Level Output Voltage
VID= 100mV RL =1MΩ= 10kΩ
VOL
Low Level Output Voltage
VID= -100mV RL =1MΩ= 10kΩ
Output Source Current
VID= 100mV,VO =VDD
Output Sink Current
VID= -100mV,VO =VCC
ICC Supply Current(per amplifier)
AVCL=1,no load 1.2 2 μA
GBP Gain Bandwith Product RL =1MΩ,CL= 50pF 10 kHz Slew Rate RL =1MΩ,CL= 50pF 4 V/ms Phase Margin CL= 50pF 65 Degrees
TS941-TS942-TS944
ELECTRICAL CHARACTERISTICS

VCC= +5V,Vee= 0V,RL connectedto VCC/2,
Tamb =25°C (unless otherwise specified)
Symbol Parameter Min. Typ. Max. Unit

Vio
Input Offset Voltage
TS941/2/4
TS941/2/4A
TS941/2/4B
ΔVio Input Offset Voltage Drift 7 μV/°C
Iio Input Offset Current1) 1 100 pA
Iib Input Bias Current1) 1 150 pA
CMR Common Mode Rejection Ratio 85 dB
SVR Supply Voltage Rejection Ratio 85 dB
Avd Large Signal Voltage Gain= 2Vpp RL =1MΩ 100 dB
VOH
High Level Output Voltage
VID= 100mV RL =1MΩ= 10kΩ
VOL
Low Level Output Voltage
VID= -100mV RL =1MΩ= 10kΩ
Output Source Current
VID= 100mV,VO =VDD
Output Sink Current
VID= -100mV,VO =VCC
ICC Supply Current(per amplifier)
AVCL=1,no load 1.2 2 μA
GBP Gain Bandwith Product RL =1MΩ,CL= 50pF 10 kHz Slew Rate RL =1MΩ,CL= 50pF 5 V/ms Phase Margin CL= 50pF 65 Degrees Maximum values including unavoidable inaccuratesofthe industrialtest.
TS941-TS942-TS944
Input Offset Voltage Driftvs Temperature

-40 -20 0 20 40 60 80
Temperature(°C)
Input
Offset
Voltage
Drift
Vcc=3V&5V
Supply Current/Amplifiervs Supply Voltage Overdrive
468 10
Supply Voltage(V)
Supply
Current
Vid=- 100mV
Tamb=25°C
Vid=+ 100mV
Output Short-Circuit Currentvs Temperature

-40 -20 0 20 40 60 80
Output
Short-circuit
Current
(mA)
Isink, Vcc=3V
Isource,Vcc=3V
Isink, Vcc=5V
Isource, Vcc=5V
Temperature(°C)
Supply Current/Amplifiervs Supply Voltage
2 468 10
Supply Voltage(V)
Supply
Current
Tamb=25°C
Supply Current/Amplifiervs Temperature

-40 -20 0 20 40 60 80
Temperature(°C)
Supply
Current
Vccfrom 2.6Vto10V
Output Short-Circuit Currentvs
Supply Voltage
6 8 10
Source
Sink
Output
Short-Circuit
Current
(mA)
Supply Voltage(V)
Tamb=25°C
TS941-TS942-TS944
Output Short-circuit Currentvs
Output Voltage

Output
Short-Circuit
Current
(mA)
Output Voltage(V) 1 2 3-2.0
Vcc=2.6V= +85°C
Source
Sink= -40°C =-40°C +25°CT= +25°C =+25°C +85°C
OutputShort-circuit Currentvs
Output Voltage

Output
Short-Circuit
Current
(mA)
OutputVoltage(V) 2345
Vcc=5V -40°C= +85°C
Source
Sink =-40°C= +25°C =+25°C= +85°C 6 8 10
1,000
Voltage
Referenced
Vcc
(mV)
SupplyVoltage(V)
RLtiedtoVdd
SingleSupply
Vid= +100mV
RL=10kohm
RL=100kohm
RL=1Mohm
High Level Output Voltagevs Supply Voltage

Voltage
referenced
Vdd
(mV)
Output
Short-Circuit
Current
(mA)
Output Voltage(V) 2
Vcc=3V= -40°C= +85°C
Source
Sink= -40°C= +25°C= +25°C
T=+85°C
Output Short-circuit Currentvs
Output Voltage

Output Short-circuit Currentvs
OutputVoltage

Output Voltage(V)
Output
Short-Circuit
Current
(mA)
024 68 10
Vcc =10V -40°C =+85°C
Source
Sink= -40°C= +25°C= +25°C= +85°C
Low LevelOutputVoltage vsSupplyVoltage
6 8 10
1,000
Supply Voltage(V)
RLtiedtoVcc
Single Supply
Vid=-100mV
RL=10kohm
RL=100ohm
RL=1Mohm
Voltage
referenced
Vcc
(mV)
TS941-TS942-TS944
Gain andPhasevs Frequency

100 1,000 10,000 100,000
Frequency(Hz)
Gain
(dB)
Phase= 1Mohm=50pF
Vcc=3V&5V
gain
phase
Small Signal Transient Response

0.0 0.5 1.0 1.5 2.0
Time(ms)
Output
Voltage
(mV)
Vcc= +-2.5V
Gain=-1=1Mohm=50pF
Slew Rate Positive and Negativevs
Temperature

-80 -40 0 40 80 120
Temperature(°C)
Slew
Rate
(V/ms)
Slewrate negative
Slewrate positive
Gain=+1=1Mohm= 100pf
Vcc=5V
Gainand Phasevs Frequency

100 1,000 10,000 100,000
Frequency(Hz)
Gain
(dB)
Phase=1Mohm= 100pF
Vcc=3V&5V
gain
phase
Large Signal Transient Response

0.0 1.0 2.0 3.0 4.0 5.0
Time(ms)
Output
Voltage
(V)
Vcc= +-2.5V
Gain=-1=1Mohm=50pF
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