ROTARY POSITION SENSOR,HALL EFFECT Rotary Position Sensors 6

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Part RoHS Manufacturer Sensors or Transducers Type Mounting Feature No. of Terminals Output Type Package Shape or Style Output Range Package Body Material Maximum Supply Voltage Maximum Output Current Technology Excitation Frequency Minimum Measurement Range (Degrees) Body Length/Diameter Body Width Power Supplies (V) Output Circuit Type Maximum Accuracy (%) Package Equivalence Code Sub-Category Linearity (%) Body Height Maximum Measurement Range (Degrees) Minimum Supply Voltage Maximum Operating Temperature Resistance (Total) Response Time Resistance Tolerance Phase Shift Minimum Operating Temperature Terminal Finish Termination Type Output Interface Type Output (V) Maximum Operating Current Additional Features Housing JESD-609 Code Operating Frequency

A1333LLPTR-DD-T

Allegro MicroSystems

ROTARY POSITION SENSOR,HALL EFFECT

SURFACE MOUNT

DIGITAL VOLTAGE

RECTANGULAR

16.5 V

0 deg

7.8 mm

4.4 inch

1.2 mm

360 deg

4 V

150 Cel

15 us

-40 Cel

TIN

SOLDER

SPI INTERFACE

19 mA

ISO-26262

e3

MA702GQ-Z

Monolithic Power Systems

ROTARY POSITION SENSOR,HALL EFFECT

SURFACE MOUNT

DIGITAL VOLTAGE

SQUARE

0.40-2.40V

3.6 V

3 mm

3 inch

3 V

125 Cel

10 us

-40 Cel

SOLDER

4-WIRE INTERFACE

13.8 mA

IT ALSO HAVE 2-WIRE SSI INTERFACE; IT ALSO HAVE POWER-UP TIME RESPONSE TIME OF 12 MILLI SECOND

MLX90397RLQ-AAA-000-RE

Melexis N V

ROTARY POSITION SENSOR,HALL EFFECT

A1333LLETR-T

Allegro MicroSystems

ROTARY POSITION SENSOR,HALL EFFECT

SURFACE MOUNT

DIGITAL VOLTAGE

RECTANGULAR

16.5 V

0 deg

5 mm

4.4 inch

1.1 mm

360 deg

4 V

150 Cel

15 us

-40 Cel

SOLDER

SPI INTERFACE

19 mA

ISO-26262

AAS33051LLPBTR-DD

Allegro MicroSystems

ROTARY POSITION SENSOR,HALL EFFECT

AS5262-HMFP

Ams Ag

ROTARY POSITION SENSOR,HALL EFFECT

SURFACE MOUNT

ANALOG VOLTAGE

SQUARE

5.5 V

0 deg

6 mm

6 inch

.9 mm

360 deg

4.5 V

150 Cel

-40 Cel

TIN

SOLDER

6-WIRE INTERFACE

12 mA

e3

Rotary Position Sensors

Rotary position sensors are electronic devices that are used to measure the rotational position of a shaft or object. They are commonly used in industrial automation, automotive, and robotics applications.

Rotary position sensors typically consist of a sensing element, such as a potentiometer or encoder, and a signal processing circuit that converts the position measurement into a usable electrical signal. The sensing element measures the rotational position of the shaft or object and generates an electrical signal proportional to the position.

There are two main types of rotary position sensors: absolute and incremental. Absolute sensors provide an output signal that represents the absolute position of the shaft, while incremental sensors provide an output signal that represents the change in position from a reference point.

Rotary position sensors offer several advantages over other types of sensors. They provide accurate and precise measurements of rotational position, which can be used for control and monitoring purposes. They are also highly reliable and can operate in harsh environments and extreme temperatures.

However, rotary position sensors also have some limitations, such as susceptibility to wear and tear over time and limited range of operation.