onsemi Programmable Shunt Voltage Reference 2.5 - 36V ±1.0 % 3-Pin SOT-23F, KA431SAMFTF

RS Stock No.: 166-2140Brand: ON SemiconductorManufacturers Part No.: KA431SAMFTF
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Technical documents

Specifications

Nominal Voltage

2.5 - 36V

Package Type

SOT-23F

Reference Type

Programmable

Initial Accuracy

±1.0 %

Mounting Type

Surface Mount

Topology

Shunt

Maximum Output Voltage

36 V

Pin Count

3

Dimensions

3 x 1.7 x 1mm

Height

1mm

Width

1.7mm

Minimum Operating Temperature

-25 °C

Maximum Operating Temperature

+85 °C

Length

3mm

Country of Origin

Malaysia

Product details

Voltage Reference, Adjustable, Fairchild Semiconductor

For low power, low current applications, the shunt regulators from Fairchild Semiconductor feature adjustable/programmable output voltages with superb thermal stability. The shunt regulators provide low dynamic output impedance and fast turn-on response while operating over the industrial temperature range.

Voltage References, Fairchild Semiconductor

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P.O.A.

onsemi Programmable Shunt Voltage Reference 2.5 - 36V ±1.0 % 3-Pin SOT-23F, KA431SAMFTF

P.O.A.

onsemi Programmable Shunt Voltage Reference 2.5 - 36V ±1.0 % 3-Pin SOT-23F, KA431SAMFTF
Stock information temporarily unavailable.

Technical documents

Specifications

Nominal Voltage

2.5 - 36V

Package Type

SOT-23F

Reference Type

Programmable

Initial Accuracy

±1.0 %

Mounting Type

Surface Mount

Topology

Shunt

Maximum Output Voltage

36 V

Pin Count

3

Dimensions

3 x 1.7 x 1mm

Height

1mm

Width

1.7mm

Minimum Operating Temperature

-25 °C

Maximum Operating Temperature

+85 °C

Length

3mm

Country of Origin

Malaysia

Product details

Voltage Reference, Adjustable, Fairchild Semiconductor

For low power, low current applications, the shunt regulators from Fairchild Semiconductor feature adjustable/programmable output voltages with superb thermal stability. The shunt regulators provide low dynamic output impedance and fast turn-on response while operating over the industrial temperature range.

Voltage References, Fairchild Semiconductor