Texas Instruments Fixed Shunt Voltage Reference 1.235V ±1.0 % 3-Pin TO-92, LM385BLPR-1-2

RS Stock No.: 732-1345PBrand: Texas InstrumentsManufacturers Part No.: LM385BLPR-1-2
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Technical documents

Specifications

Nominal Voltage

1.235V

Package Type

TO-92

Reference Type

Fixed

Initial Accuracy

±1.0 %

Mounting Type

Through Hole

Topology

Shunt

Maximum Output Current

20mA

Minimum Output Voltage

1.22 V

Maximum Output Voltage

1.25 V

Pin Count

3

Load Regulation

20 mV

Dimensions

5.21 x 4.19 x 5.34mm

Minimum Operating Temperature

0 °C

Maximum Operating Temperature

+70 °C

Length

5.21mm

Height

5.34mm

Width

4.19mm

Product details

Shunt Voltage Reference, Fixed, 1.2V to 2.3V

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 Fixed Shunt Voltage Reference 1.235V ±1.0 % 3-Pin TO-92, LM385BLPR-1-2
Select packaging type

P.O.A.

Texas Instruments Fixed Shunt Voltage Reference 1.235V ±1.0 % 3-Pin TO-92, LM385BLPR-1-2
Stock information temporarily unavailable.
Select packaging type

Technical documents

Specifications

Nominal Voltage

1.235V

Package Type

TO-92

Reference Type

Fixed

Initial Accuracy

±1.0 %

Mounting Type

Through Hole

Topology

Shunt

Maximum Output Current

20mA

Minimum Output Voltage

1.22 V

Maximum Output Voltage

1.25 V

Pin Count

3

Load Regulation

20 mV

Dimensions

5.21 x 4.19 x 5.34mm

Minimum Operating Temperature

0 °C

Maximum Operating Temperature

+70 °C

Length

5.21mm

Height

5.34mm

Width

4.19mm

Product details

Shunt Voltage Reference, Fixed, 1.2V to 2.3V

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%.