Broadcom Optical Encoders 68

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Part RoHS Manufacturer Optoelectronic Type Mounting Feature Terminal Finish Maximum On State Voltage Configuration Maximum Supply Voltage No. of Functions No. of Elements Peak Wavelength (nm) Packing Method Output Circuit Type Maximum Response Time Sub-Category Maximum Operating Temperature Minimum Operating Temperature Additional Features JESD-609 Code Gap Size Maximum On State Current

AEDT-9811-N00

Broadcom

ROTARY POSITION ENCODER

CHASSIS MOUNT

SINGLE, 3 CHANNELS

5.5 V

1

115 Cel

-40 Cel

AEDT-9811-R00

Broadcom

ROTARY POSITION ENCODER

CHASSIS MOUNT

SINGLE, 3 CHANNELS

5.5 V

1

115 Cel

-40 Cel

AEDT-9811-T00

Broadcom

ROTARY POSITION ENCODER

CHASSIS MOUNT

SINGLE, 3 CHANNELS

5.5 V

1

115 Cel

-40 Cel

AEDT-9811-U00

Broadcom

ROTARY POSITION ENCODER

CHASSIS MOUNT

SINGLE, 3 CHANNELS

5.5 V

1

115 Cel

-40 Cel

AEDT-9811-W00

Broadcom

ROTARY POSITION ENCODER

CHASSIS MOUNT

SINGLE, 3 CHANNELS

5.5 V

1

115 Cel

-40 Cel

AEDT-9811-Z00

Broadcom

ROTARY POSITION ENCODER

CHASSIS MOUNT

SINGLE, 3 CHANNELS

5.5 V

1

115 Cel

-40 Cel

AEDR-9830-102

Broadcom

INCREMENTAL ROTARY ENCODER

SURFACE MOUNT

SINGLE, 3 CHANNELS

3.63 V

1

TR

115 Cel

-40 Cel

CAN ALSO OPERATE ON 5V, TTL COMPATIBLE

AEDR-9820-100

Broadcom

ROTARY/LINEAR POSITION ENCODER

SURFACE MOUNT

SINGLE, 3 CHANNELS

3.63 V

1

TR, 7 INCH

115 Cel

-40 Cel

CAN ALSO OPERATE ON 5V, TTL COMPATIBLE

AEDR-9820-102

Broadcom

ROTARY/LINEAR POSITION ENCODER

SURFACE MOUNT

SINGLE, 3 CHANNELS

3.63 V

1

TR, 7 INCH

115 Cel

-40 Cel

CAN ALSO OPERATE ON 5V, TTL COMPATIBLE

AEDR-9820A-102

Broadcom

INCREMENTAL ROTARY ENCODER

SURFACE MOUNT

SINGLE, 3 CHANNELS

3.63 V

1

TR, 7 INCH

125 Cel

-40 Cel

CAN ALSO OPERATE ON 5V, TTL COMPATIBLE

AEDR-9830A-102

Broadcom

INCREMENTAL ROTARY ENCODER

SURFACE MOUNT

SINGLE, 3 CHANNELS

3.63 V

1

TR, 7 INCH

125 Cel

-40 Cel

CAN ALSO OPERATE ON 5V, TTL COMPATIBLE

AEDR-9820A-100

Broadcom

INCREMENTAL ROTARY ENCODER

SURFACE MOUNT

SINGLE, 3 CHANNELS

3.63 V

1

TR, 7 INCH

125 Cel

-40 Cel

CAN ALSO OPERATE ON 5V, TTL COMPATIBLE

AEDR-9830A-100

Broadcom

INCREMENTAL ROTARY ENCODER

SURFACE MOUNT

SINGLE, 3 CHANNELS

3.63 V

1

TR, 7 INCH

125 Cel

-40 Cel

CAN ALSO OPERATE ON 5V, TTL COMPATIBLE

AEDR-9920-100

Broadcom

INCREMENTAL ROTARY ENCODER

SURFACE MOUNT

SINGLE, 3 CHANNELS

3.6 V

1

TR, 7 INCH

115 Cel

-40 Cel

Can also operate on 5.5V

AEDR-9920-102

Broadcom

INCREMENTAL ROTARY ENCODER

SURFACE MOUNT

SINGLE, 3 CHANNELS

3.6 V

1

TR, 7 INCH

115 Cel

-40 Cel

Can also operate on 5.5V

AEDS-9140A00

Broadcom

ROTARY POSITION ENCODER

BOARD MOUNT

SINGLE, 3 CHANNELS

5 V

1

115 Cel

-40 Cel

TTL COMPATIBLE

HEDM-5540-B02

Broadcom

ROTARY POSITION ENCODER

THROUGH HOLE MOUNT

SINGLE, 3 CHANNELS

5.5 V

1

Optical Position Encoders

85 Cel

-40 Cel

AEDR-8311-1K2

Broadcom

ROTARY/LINEAR POSITION ENCODER

SURFACE MOUNT

SINGLE

5.5 V

1

TR

85 Cel

0 Cel

TTL COMPATIBLE

AEDR-8311-1K0

Broadcom

ROTARY/LINEAR POSITION ENCODER

SURFACE MOUNT

SINGLE

5.5 V

1

TR

85 Cel

0 Cel

TTL COMPATIBLE

AEDR-8311-1K1

Broadcom

ROTARY/LINEAR POSITION ENCODER

SURFACE MOUNT

SINGLE

5.5 V

1

TR

85 Cel

0 Cel

TTL COMPATIBLE

Optical Encoders

Optical encoders are electronic devices that convert rotary or linear motion into digital signals. They are commonly used in a wide range of applications, including industrial automation, robotics, and computer peripherals.

Optical encoders consist of a light source, a sensing element, and a rotating or linear scale. The light source, typically an LED or laser, emits light onto the scale, and the sensing element, typically a photodiode or phototransistor, detects the light reflected back from the scale. The sensing element generates a signal based on the amount of light detected, which is then processed by an electronic circuit to produce a digital output signal.

Optical encoders can be categorized into two types based on their operating principle: incremental and absolute. Incremental encoders generate a series of digital pulses that correspond to the relative position of the encoder, while absolute encoders generate a unique digital code that corresponds to the absolute position of the encoder.