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TS951INSTN/a2500avaiInput/Output Rail-to-Rail Low Power Operational Amplifier


TS951IN ,Input/Output Rail-to-Rail Low Power Operational Amplifierabsolute maximum ratings Symbol Parameter Value Unit1V14 VCC Supply voltage 2V ±1 Vid Differenti ..
TS951IYLT ,Real input & output rail to rail / low distortion (0.01%)Absolute maximum ratingsSymbol Parameter Value Unit(1)V Supply voltage 14CC(2)V Differential input ..
TS952ID ,INPUT/OUTPUT RAIL TO RAIL LOW POWER OP-AMPSABSOLUTE MAXIMUM RATINGS Symbol Parameter Value Unit1)V12 VCC Supply voltage 2)V±1 Vid Differe ..
TS952IDT ,INPUT/OUTPUT RAIL TO RAIL LOW POWER OP-AMPSTS951TS952TS954INPUT/OUTPUT RAIL TO RAILLOW POWER OPERATIONAL AMPLIFIER ■ RAIL TO RAIL INPUT COMMO ..
TS952IN ,INPUT/OUTPUT RAIL TO RAIL LOW POWER OP-AMPSELECTRICAL CHARACTERISTICS+ -V = +3V, V = 0V, T = 25°C (unless otherwise specified) CC DD ambOPE ..
TS952IPT ,INPUT/OUTPUT RAIL TO RAIL LOW POWER OP-AMPSABSOLUTE MAXIMUM RATINGS Symbol Parameter Value Unit1)V12 VCC Supply voltage 2)V±1 Vid Differe ..
UAA4000 ,Remote Control TransmitterBLOCK DIAGRAM SUPPLY SWITCH & REGULATOR SWITC H MATRIX CURRENT . det, sounces PULSE ..
UAA4006ADP , SWITCH MODE POWER SUPPLY CONTROL CIRCUIT
UAA4009 ,Remote Control Receiver£77 SGS-'r'HtNRSOH jiiijl]CR(5)E[r/%7iiic(N%)2i) UAA4009 REMOTE CONTROL RECEIVER ON-CH ..
UAA4009 ,Remote Control ReceiverGENERAL DESCRIPTION PPM DEMODULATION The receiver operates on a timescale fixed by an in- te ..
UAA4713DP ,MOTION DETECTOR INTERFACEapplications.The device can be usedprogrammable timer will start and switch a lampin a wide range o ..
UAA4713FP ,MOTION DETECTOR INTERFACEABSOLUTE MAXIMUM RATINGSSymbol Parameter Test Conditions UnitI7 AC Supply Current 60 mAI7 Peak Curr ..


TS951IN
Input/Output Rail-to-Rail Low Power Operational Amplifier
Rail-to-rail input common-mode voltage range Rail-to-rail output voltage swing Operating from 2.7V to 12V High-speed (3MHz, 1V/µs) Low consumption (0.9mA @ 3V) Supply voltage rejection ratio: 80dB Latch-up immunity Available in SOT23-5 micropackage
Description

The TS95x family are rail-to-rail BiCMOS
operational amplifiers optimized and fully
specified for 3V and 5V operation.
The TS951 is housed in the space-saving 5 pins
SOT23 package that makes it well suited for
battery-powered systems. This micropackage
simplifies the PC board design because of it’s
ability to be placed in tight spaces (outside
dimensions are: 2.8mm x 2.9mm)
Applications
Set-top boxes Laptop/notebook computers Transformer/line drivers Personal entertainments (CD players) Portable communication (cell phones,
pagers)
Instrumentation & sensoring Digital to analog converter buffers Portable headphone speaker drivers
Pin Connections (top view)
Order Codes
TS951-TS952-TS954

Input/Output Rail-to-Rail Low Power Operational Amplifier
TS951-TS952-TS954 Absolute Maximum Ratings
1 Absolute Maximum Ratings
Table1: Key parameters and their absolute maximum ratings
Table2: Operating Conditions
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. If Vid > ±1V, the maximum input cur-
rent must not exceed ±1mA. In this case (Vid > ±1V) an input serie resistor must be added to limit input current. Short-circuits can cause excessive heating and destructive dissipation. Human body model, 100pF discharged through a 1.5kΩ resistor into pin of device. Machine model ESD, a 200pF cap is charged to the specified voltage, then discharged directly into the IC with no external series resistor
(internal resistor < 5Ω), into pin to pin of device.
Electrical Characteristics TS951-TS952-TS954 Electrical Characteristics
Table3: VCC = +3V, VDD = 0V, RL connected to Vcc /2, Tamb = 25°C (unless otherwise specified)
TS951-TS952-TS954 Electrical Characteristics

Table4:VCC = +5V, VDD = 0V, RL connected to Vcc /2, Tamb = 25°C (unless otherwise specified)
Electrical Characteristics TS951-TS952-TS954
Figure 1: Supply current vs. supply voltage
Figure 2: Output short circuit current vs.
output voltage
Figure 3: Voltage gain and phase vs. frequency
Figure 4: Supply current vs. temperature
Figure 5: Output short circuit current vs.
temperature
Figure 6: Slew rate vs. temperature
TS951-TS952-TS954 Electrical Characteristics
Figure 7: THD + noise vs. Vout
Figure 8: THD + noise vs. frequency
Figure 9: THD + noise vs. Vout
Figure 10: Equivalent input noise voltage vs.
frequency
Package Mechanical Data TS951-TS952-TS954
3 Package Mechanical Data
3.1 DIP8 package
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