Allegro Microsystems Through Hole Hall Effect Sensor, SIP, 3-Pin

RS Stock No.: 753-2002Brand: Allegro MicrosystemsManufacturers Part No.: A1324LUA-T
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Technical documents

Specifications

Sensor Type

Hall Effect Sensors

Mounting Type

Through Hole

Magnetic Type

Linear

Maximum Operating Supply Voltage

5.5 V

Minimum Operating Supply Voltage

4.5 V

Package Type

SIP

Pin Count

3

Maximum Operating Temperature

+150 °C

Minimum Operating Temperature

-40 °C

Product details

A1324/5/6 Linear Hall Effect Sensor with Analogue Output, Allegra Microsystems

The Allegro A1324/5/6 linear Hall-effect sensor ICs provide a voltage output that is proportional to the applied magnetic field. Featuring a quiescent voltage output of 50% of the supply voltage and are pre-programmed to sensitivities of 5.0 mV/g, 3.125 mV/g, and 2.5 mV/g, respectively.

Each IC integrates a Hall element, temperature-compensating circuitry, a small-signal high-gain amplifier, a clamped low-impedance output stage, and a proprietary dynamic offset cancellation technique.

Available in a 3-pin ultra-mini SIP package, and a 3-pin surface mount SOT-23 package.

Temperature-stable quiescent output voltage and sensitivity
Output voltage proportional to magnetic flux density
Low-noise output increases accuracy
Precise recoverability after temperature cycling
Ratiometric rail-to-rail output
Wide ambient temperature range: –40°C to 150°C
Immune to mechanical stress
Solid-state reliability
Enhanced EMC performance for stringent automotive applications

Hall Effect Sensors, Allegro MicroSystems

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€ 1.935

Each (In a Pack of 2) (ex VAT)

Allegro Microsystems Through Hole Hall Effect Sensor, SIP, 3-Pin
Select packaging type

€ 1.935

Each (In a Pack of 2) (ex VAT)

Allegro Microsystems Through Hole Hall Effect Sensor, SIP, 3-Pin
Stock information temporarily unavailable.
Select packaging type

Buy in bulk

quantityUnit pricePer Pack
2 - 8€ 1.935€ 3.87
10 - 18€ 1.581€ 3.16
20 - 48€ 1.404€ 2.81
50 - 98€ 1.192€ 2.38
100+€ 1.145€ 2.29

Ideate. Create. Collaborate

JOIN FOR FREE

No hidden fees!

design-spark
design-spark
  • Download and use our DesignSpark software for your PCB and 3D Mechanical designs
  • View and contribute website content and forums
  • Download 3D Models, Schematics and Footprints from more than a million products
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You may be interested in

Technical documents

Specifications

Sensor Type

Hall Effect Sensors

Mounting Type

Through Hole

Magnetic Type

Linear

Maximum Operating Supply Voltage

5.5 V

Minimum Operating Supply Voltage

4.5 V

Package Type

SIP

Pin Count

3

Maximum Operating Temperature

+150 °C

Minimum Operating Temperature

-40 °C

Product details

A1324/5/6 Linear Hall Effect Sensor with Analogue Output, Allegra Microsystems

The Allegro A1324/5/6 linear Hall-effect sensor ICs provide a voltage output that is proportional to the applied magnetic field. Featuring a quiescent voltage output of 50% of the supply voltage and are pre-programmed to sensitivities of 5.0 mV/g, 3.125 mV/g, and 2.5 mV/g, respectively.

Each IC integrates a Hall element, temperature-compensating circuitry, a small-signal high-gain amplifier, a clamped low-impedance output stage, and a proprietary dynamic offset cancellation technique.

Available in a 3-pin ultra-mini SIP package, and a 3-pin surface mount SOT-23 package.

Temperature-stable quiescent output voltage and sensitivity
Output voltage proportional to magnetic flux density
Low-noise output increases accuracy
Precise recoverability after temperature cycling
Ratiometric rail-to-rail output
Wide ambient temperature range: –40°C to 150°C
Immune to mechanical stress
Solid-state reliability
Enhanced EMC performance for stringent automotive applications

Hall Effect Sensors, Allegro MicroSystems

Ideate. Create. Collaborate

JOIN FOR FREE

No hidden fees!

design-spark
design-spark
  • Download and use our DesignSpark software for your PCB and 3D Mechanical designs
  • View and contribute website content and forums
  • Download 3D Models, Schematics and Footprints from more than a million products
Click here to find out more
You may be interested in