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TSV611AILT ,Rail to rail input/output CMOS op-ampapplications■ Smoke detectors MiniSO-8/SO-8■ Proximity sensors ■ Portable devices■ Signal c ..
TSV611ICT ,Rail to rail input/output CMOS op-ampElectrical characteristics at V = +1.8 V CC+with V = 0 V, V = V /2, T = 25° C, and R connected to V ..
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TSV612IDT ,Rail to rail input/output CMOS op-ampTSV611, TSV611A, TSV612, TSV612ARail-to-rail input/output 10 µA, 120 kHzCMOS operational amplifiers
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TSV611AICT-TSV611AILT-TSV611ICT-TSV611ILT-TSV612AIDT-TSV612IDT
Rail to rail input/output CMOS op-amp
January 2010 Doc ID 15768 Rev 2 1/19
TSV611, TSV611A, TSV612, TSV612ARail-to-rail input/output 10 µA, 120 kHz
CMOS operational amplifiers
Features Rail-to-rail input and output Low power consumption: 10 µA typ at 5V Low supply voltage: 1.5 to 5.5V Gain bandwidth product: 120 kHz typ Unity gain stable Low input offset voltage: 800 µV max (A
version) Low input bias current: 1 pA typ Temperature range: -40 to +85°C
Applications Battery-powered applications Smoke detectors Proximity sensors Portable devices Signal conditioning Active filtering Medical instrumentation
DescriptionThe TSV61x family of single and dual operational
amplifiers offers low voltage, low power operation
and rail-to-rail input and output.
The devices also feature an ultra-low input bias
current as well as a low input offset voltage.
The TSV61x have a gain bandwidth product of
120 kHz while consuming only 10 µA at 5V.
These features make the TSV61x family ideal for
sensor interfaces, battery supplied and portable
applications, as well as active filtering.
Absolute maximum ratings and operating conditions TSV611, TSV611A, TSV612, TSV612A2/19 Doc ID 15768 Rev 2
Absolute maximum ratings and operating conditions
Table 1. Absolute maximum ratings All voltage values, except differential voltage are with respect to network ground terminal. Differential voltages are the non-inverting input terminal with respect to the inverting input terminal. Vcc-Vin must not exceed 6V. Short-circuits can cause excessive heating and destructive dissipation. Rth are typical values. Human body model: 100 pF discharged through a 1.5 kΩ resistor between two pins of the device, done for all couples of pin combinations with other pins floating. Machine model: a 200 pF cap is charged to the specified voltage, then discharged directly between two pins of the device with no external series resistor (internal resistor < 5 Ω), done for all couples of pin combinations with other pins floating. Charged device model: all pins plus package are charged together to the specified voltage and then discharged directly to ground.
Table 2. Operating conditions
TSV611, TSV611A, TSV612, TSV612A Electrical characteristicsDoc ID 15768 Rev 2 3/19
2 Electrical characteristics Table 3. Electrical characteristics at VCC+ = +1.8V
with VCC- = 0 V, Vicm = VCC/2, Tamb = 25° C, and RL connected to VCC/2
(unless otherwise specified)
Electrical characteristics TSV611, TSV611A, TSV612, TSV612A4/19 Doc ID 15768 Rev 2 Guaranteed by design.
Table 3. Electrical characteristics at VCC+ = +1.8V
with VCC- = 0 V, Vicm = VCC/2, Tamb = 25° C, and RL connected to VCC/2
(unless otherwise specified) (continued)
TSV611, TSV611A, TSV612, TSV612A Electrical characteristicsDoc ID 15768 Rev 2 5/19
Table 4. VCC+ = +3.3V , VCC- = 0 V, Vicm = VCC/2, Tamb = 25° C,
RL connected to VCC/2 (unless otherwise specified) Guaranteed by design.