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TLC2652C-8DRG4 |TLC2652C8DRG4TIN/a800avaiPrecision Chopper-Stabilized Operational Amplifier 8-SOIC
TLC2652I-8D |TLC2652I8DTIN/a318avaiPrecision Chopper-Stabilized Operational Amplifier


TLC2652C-8DRG4 ,Precision Chopper-Stabilized Operational Amplifier 8-SOIC maximum ratings over operating free-air temperature range (unless otherwise noted)Supply voltage V ..
TLC2652I-8D ,Precision Chopper-Stabilized Operational Amplifier        SLOS019E ..
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TLC2654C-8DRG4 ,Low-Noise Chopper-Stabilized Operational Amplifier 8-SOIC block diagramVDD+11Clamp 9CLAMPCircuit5IN+10+OUTIN– –4CICMainABBA+Compensation-–BiasingA BNullCircu ..
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TMP101NA/3KG4 ,Temperature Sensor with I2C/SMBus Interface with Alert Function in SOT-23 6-SOT-23 -55 to 125Features One Address Pin and an2Two-Wire, and I C interface compatibility. TheALERT PinTMP100 devic ..
TMP102AIDRLR ,1.4V-Capable Temperature Sensor with I2C/SMBus Interface and Alert Function in SOT-563 6-SOT -40 to 125Electrical Characteristics table....... 5• Changed the Temperature Error vs Temperature graph in th ..
TMP102AIDRLT ,1.4V-Capable Temperature Sensor with I2C/SMBus Interface and Alert Function in SOT-563 6-SOT -40 to 125Maximum Ratings(1)over operating free-air temperature range (unless otherwise noted)MIN MAX UNITSup ..
TMP102AIDRLTG4 ,1.4V-Capable Temperature Sensor with I2C/SMBus Interface and Alert Function in SOT-563 6-SOT -40 to 125features an SMBus alertInterface Compatibilityfunction. The device is specified to operate over• NI ..


TLC2652C-8DRG4-TLC2652I-8D
Precision Chopper-Stabilized Operational Amplifier
AVD... 135 dB Min CMRR... 120 dB Min k SVR ...110 dB Min Single-Supply Operation Common-Mode Input Voltage RangeIncludes the Negative Rail No Noise Degradation With External
Capacitors Connected to V DD−

description

The TLC2652 and TLC2652A are high-precision
chopper-stabilized operational amplifiers using
Texas Instruments Advanced LinCMOS pro-
cess. This process, in conjunction with unique
chopper-stabilization circuitry, produces opera-
tional amplifiers whose performance matches or
exceeds that of similar devices available today.
Chopper-stabilization techniques make possible
extremely high dc precision by continuously
nulling input offset voltage even during variations
in temperature, time, common-mode voltage, and
power supply voltage. In addition, low-frequency
noise voltage is significantly reduced. This high
precision, coupled with the extremely high input
impedance of the CMOS input stage, makes the
TLC2652 and TLC2652A an ideal choice for
low-level signal processing applications such as
strain gauges, thermocouples, and other
transducer amplifiers. For applications that
require extremely low noise and higher usable
bandwidth, use the TLC2654 or TLC2654A
device, which has a chopping frequency of kHz.
The TLC2652 and TLC2652A input common-mode range includes the negative rail, thereby providing superior
performance in either single-supply or split-supply applications, even at power supply voltage levels as low as
±1.9 V.
Two external capacitors are required for operation of the device; however, the on-chip chopper-control circuitry
is transparent to the user. On devices in the 14-pin and 20-pin packages, the control circuitry is made accessible
to allow the user the option of controlling the clock frequency with an external frequency source. In addition, the
clock threshold level of the TLC2652 and TLC2652A requires no level shifting when used in the single-supply
configuration with a normal CMOS or TTL clock input.
Please be aware that an important notice concerning availability, standard warranty, and use in critical applications of
Texas Instruments semiconductor products and disclaimers thereto appears at the end of this data sheet.
CLAMP
NC − No internal connection
INT/EXT
CLK IN
CLK OUT
VDD+
OUT
CLAMP
C RETURN
D014, J, OR N PACKAGE
(TOP VIEW)

CLK OUT
VDD+
OUT
FK PACKAGE
(TOP VIEW)

INT/EXTNC
CLAMP
CLK IN NC
C RETURN
DD−
IN−
IN+XB
CXA
IN−
IN+
VDD−
VDD−
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