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| Image | Part Number | Manufacturer | Description | Series | Operating Temperature | Mounting Type | RoHS Status | Type | Output Type | Voltage Rating | Current | Output Configuration |
|---|---|---|---|---|---|---|---|---|---|---|---|---|
| 25BR22-B-1-16C | Grayhill, Inc. | ROTARY ENCODER MECHANICAL 16PPR | 25 | - | PCB, Through Hole | - | - | Binary (Absolute) | - | - | - | |
| 61C11-01-08-02 | Grayhill, Inc. | ROTARY ENCODER OPTICAL 32PPR | 61C | - | Panel, PCB Through Hole | - | - | Quadrature (Incremental) | - | - | - | |
| PEC11-4020F-N0024 | Bourns, Inc. | ROTARY ENCODER MECHANICAL 24PPR | PEC11 | - | Panel, PCB Through Hole | - | - | Quadrature (Incremental) | - | - | - | |
| H25D-SS-5000-ABZC-28V/5-EM18 | BEI Sensors | ROTARY ENCODER OPTICAL 5000PPR | H25 | - | Chassis Mount | - | - | Quadrature with Index (Incremental) | - | - | - | |
| 60AD18-8-M-040C | Grayhill, Inc. | ROTARY ENCODER OPTICAL 20PPR | 60AD | - | Panel Mount | - | - | Quadrature (Incremental) | - | - | - | |
| 62A18-02-120S | Grayhill, Inc. | ROTARY ENCODER OPTICAL 20PPR | 62A | - | Panel Mount | - | - | Quadrature (Incremental) | - | - | - | |
| 62M15-L4-040CH | Grayhill, Inc. | ROTARY ENCODER OPTICAL 24PPR | 62M | - | Surface Mount | - | - | Quadrature (Incremental) | - | - | - | |
| HS35F-100-R2-SS-2000-ABZC-28V/5-SM18 | BEI Sensors | ROTARY ENCODER OPTICAL 2000PPR | HS35 | - | Chassis Mount, Motors | - | - | Quadrature with Index (Incremental) | - | - | - | |
| HEDB-9040-B13 | Avago Technologies (Broadcom Limited) | ROTARY ENCODER OPTICAL 1000PPR | HEDB-9040 | - | Chassis Mount, Motors | - | - | Quadrature with Index (Incremental) | - | - | - | |
| HEDS-9140#H00 | Avago Technologies (Broadcom Limited) | ROTARY ENCODER OPTICAL 400PPR | HEDS | - | Chassis Mount | - | - | Quadrature with Index (Incremental) | - | - | - |
Encoders are devices designed to convert mechanical motion or position changes into electrical signals for position feedback or motion control applications. These devices utilize different encoding techniques such as optical, magnetic, or capacitive principles to track the rotational or linear displacement of shafts, wheels, or actuators accurately. Encoders find applications in industrial automation, robotics, CNC machines, servo motors, and motion control systems for tasks such as position feedback, speed control, and motion synchronization. They offer advantages such as high resolution, accuracy, and reliability, making them essential components in precision motion control and positioning applications.