HEDS-5500#F11 Overview
The HEDS-5500#F11 is a high-performance incremental optical encoder designed for precise position and speed sensing in industrial automation and motion control systems. Featuring a robust construction and reliable optical sensing technology, it delivers consistent accuracy and durability under varying environmental conditions. This encoder supports efficient integration into a wide range of electromechanical systems, offering engineers and sourcing specialists a dependable solution for feedback applications. For detailed technical insights and sourcing options, visit IC Manufacturer.
HEDS-5500#F11 Technical Specifications
| Parameter | Specification |
|---|---|
| Encoder Type | Incremental Optical Encoder |
| Resolution | 500 pulses per revolution (PPR) |
| Output Type | Quadrature TTL Compatible |
| Supply Voltage | 5 VDC ?? 5% |
| Current Consumption | Maximum 30 mA |
| Operating Temperature Range | 0??C to +70??C |
| Maximum Shaft Speed | 10,000 RPM |
| Output Waveform | Square wave, 90?? phase-shifted channels |
| Shaft Diameter | 6 mm |
| Starting Torque | 0.5 N??cm typical |
HEDS-5500#F11 Key Features
- High-resolution output: Provides 500 pulses per revolution, enabling precise position tracking and speed measurement for enhanced control accuracy.
- Quadrature output signals: Offers two output channels with 90?? phase difference, facilitating direction sensing and improving system feedback reliability.
- TTL compatible outputs: Ensures straightforward interface with standard digital electronics, reducing integration complexity and enabling seamless communication with controllers.
- Wide operating temperature range: Supports reliable performance from 0??C to +70??C, making it suitable for diverse industrial environments.
- Low current consumption: Operates efficiently with a maximum current draw of 30 mA, contributing to reduced power requirements in system design.
- Robust mechanical design: Incorporates a 6 mm shaft diameter and low starting torque, which minimize mechanical wear and extend operational lifetime.
HEDS-5500#F11 Advantages vs Typical Alternatives
This encoder distinguishes itself from typical alternatives through its balanced combination of high resolution and low power consumption. Its optical sensing method ensures accuracy and noise immunity, while TTL compatible outputs enable easy integration with common industrial controllers. The robust operating temperature range and low starting torque enhance reliability and mechanical efficiency, providing a cost-effective, long-lasting solution for position feedback in automation systems.
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Typical Applications
- Industrial motion control systems requiring precise shaft position and speed feedback to optimize motor performance and system accuracy.
- Robotics applications where accurate incremental encoding is essential for precise movement and positioning.
- Conveyor and material handling equipment that rely on reliable speed sensing and position tracking to maintain throughput and safety.
- Automation machinery integration for closed-loop control systems demanding stable and repeatable encoder feedback signals.
HEDS-5500#F11 Brand Info
The HEDS-5500#F11 is part of a well-established family of optical encoders known for their precision and durability in industrial applications. This product line is engineered to meet rigorous quality standards, ensuring consistent performance across diverse operating conditions. Designed and manufactured with a focus on reliability and ease of integration, the device caters to engineers seeking dependable incremental encoders for a variety of electromechanical systems.
FAQ
What type of output signals does the encoder provide?
The encoder delivers quadrature output signals with two channels offset by 90 degrees. These TTL compatible square wave outputs enable accurate direction and position sensing in digital control systems.
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What is the maximum operational speed supported by this encoder?
It supports a maximum shaft speed of up to 10,000 revolutions per minute, suitable for high-speed industrial applications requiring rapid and precise rotational feedback.
How does the device perform under different temperature conditions?
The encoder operates reliably within a temperature range of 0??C to +70??C, accommodating typical industrial environments without compromising accuracy or durability.
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What supply voltage is required for proper operation?
The device requires a stable 5 VDC supply with a tolerance of ??5%, ensuring consistent performance and compatibility with common industrial power standards.
How does the low starting torque benefit system design?
A low starting torque of approximately 0.5 N??cm minimizes mechanical resistance during shaft rotation, reducing wear on motor components and enhancing overall system efficiency and longevity.












