AEDS-964x Series, Encoders

Results:
6
Manufacturer
Series
Pulses per Revolution
Orientation
Termination Style
Output Type
Actuator Type
Encoder Type
Built in Switch
Rotational Life (Cycles Min)
Grade
Mounting Type
Qualification
Voltage - Supply
Detent
Results remaining6
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AEDS-964x
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ImageProduct DetailPriceAvailabilityECAD ModelMounting TypeVoltage - SupplyOrientationGradeTermination StyleSeriesEncoder TypeOutput TypePulses per RevolutionActuator TypeDetentBuilt in SwitchRotational Life (Cycles Min)Qualification
AEDS-9640-110
ROTARY ENCODR OPTICAL 360 LPI
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
Chassis Mount
3.3V
Vertical
-
Terminal Pins
AEDS-964x
Optical
Quadrature (Incremental)
360 LPI
Codestrip Not Included
No
No
-
-
AEDS-9640-210
ROTARY ENCODR OPTICAL 300 LPI
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
Chassis Mount
3.3V
Vertical
-
Terminal Pins
AEDS-964x
Optical
Quadrature (Incremental)
300 LPI
Codestrip Not Included
No
No
-
-
AEDS-9640-P10
ROTARY ENCODR OPTICAL 150 LPI
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
Chassis Mount
3.3V
Vertical
-
Terminal Pins
AEDS-964x
Optical
Quadrature (Incremental)
150 LPI
Codestrip Not Included
No
No
-
-
AEDS-9641-110
ROTARY ENCODR OPTICAL 360 LPI
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
Chassis Mount
3.3V
Right Angle
-
Terminal Pins
AEDS-964x
Optical
Quadrature (Incremental)
360 LPI
Codestrip Not Included
No
No
-
-
AEDS-9641-210
ROTARY ENCODR OPTICAL 300 LPI
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
Chassis Mount
3.3V
Right Angle
Terminal Pins
AEDS-964x
Optical
Quadrature (Incremental)
300 LPI
Codestrip Not Included
No
No
-
AEDS-9641-P10
ROTARY ENCODR OPTICAL 150 LPI
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
Chassis Mount
3.3V
Right Angle
-
Terminal Pins
AEDS-964x
Optical
Quadrature (Incremental)
150 LPI
Codestrip Not Included
No
No
-
-

About  Encoders

Encoders are sophisticated devices that convert motion or position changes into electrical signals, providing valuable feedback about the movement of objects or machinery. They employ various sensing methods such as optical, mechanical, or magnetic to accurately track and monitor motion. The primary function of an encoder is to generate electrical signals that represent the position, direction, and speed of the object being monitored. These signals can be encoded in different formats, including binary, octal, hexadecimal, grey code, or through changes in output signals such as frequency or differential voltage. This encoding allows for precise and reliable measurement of the object's position or motion. Encoders offer a wide range of options and features to accommodate different applications. They come in various supply voltages, mounting types, output resolution per revolution, and actuators. This versatility enables encoders to be utilized in a diverse array of industries and applications. Encoders find extensive use in industries such as manufacturing, robotics, automation, and motion control systems. They play a crucial role in ensuring accurate positioning, speed control, synchronization, and feedback for machinery and equipment. In summary, encoders are advanced devices that convert motion or position changes into electrical signals. They utilize different sensing methods and encoding techniques to accurately track and measure motion. With their wide range of options and capabilities, encoders are essential components in various industries, providing precise feedback and control for optimal performance.