Texas Instruments Adjustable Shunt Voltage Reference 2.5 - 36V ±2.0 % 8-Pin SOP, TL431CPSR

RS Stock No.: 709-8925Brand: Texas InstrumentsManufacturers Part No.: TL431CPSR
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Technical documents

Specifications

Nominal Voltage

2.5 - 36V

Package Type

SOP

Reference Type

Adjustable

Initial Accuracy

±2.0 %

Mounting Type

Surface Mount

Topology

Shunt

Maximum Output Current

100mA

Maximum Input Voltage

37 V

Minimum Output Voltage

2.5 V

Maximum Output Voltage

36 V

Pin Count

8

Dimensions

6.2 x 5.3 x 1.95mm

Minimum Operating Temperature

0 °C

Maximum Operating Temperature

+70 °C

Length

6.2mm

Height

1.95mm

Width

5.3mm

Product details

Shunt Voltage Reference, Adjustable, TL Series

Voltage References, Texas Instruments

Precison Fixed and Adjustable Voltage Reference ICs utilsing series, shunt or series/shunt topologies and available in both through-hole and surface mount packages. Voltage References are available with initial accuracies of ±0.02 to ±2%.

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P.O.A.

Texas Instruments Adjustable Shunt Voltage Reference 2.5 - 36V ±2.0 % 8-Pin SOP, TL431CPSR
Select packaging type

P.O.A.

Texas Instruments Adjustable Shunt Voltage Reference 2.5 - 36V ±2.0 % 8-Pin SOP, TL431CPSR
Stock information temporarily unavailable.
Select packaging type

Technical documents

Specifications

Nominal Voltage

2.5 - 36V

Package Type

SOP

Reference Type

Adjustable

Initial Accuracy

±2.0 %

Mounting Type

Surface Mount

Topology

Shunt

Maximum Output Current

100mA

Maximum Input Voltage

37 V

Minimum Output Voltage

2.5 V

Maximum Output Voltage

36 V

Pin Count

8

Dimensions

6.2 x 5.3 x 1.95mm

Minimum Operating Temperature

0 °C

Maximum Operating Temperature

+70 °C

Length

6.2mm

Height

1.95mm

Width

5.3mm

Product details

Shunt Voltage Reference, Adjustable, TL Series

Voltage References, Texas Instruments

Precison Fixed and Adjustable Voltage Reference ICs utilsing series, shunt or series/shunt topologies and available in both through-hole and surface mount packages. Voltage References are available with initial accuracies of ±0.02 to ±2%.