Description:
The DDS-LPS RELIANCE is an advanced industrial positioning sensor designed to provide high accuracy and reliability in a variety of automation systems. Manufactured by Reliance, a recognized leader in control and automation technologies, this model is specifically built for precise distance measurement and position tracking in industrial environments.
Ideal for applications where space constraints and high-speed processes demand exceptional accuracy, the DDS-LPS RELIANCE offers exceptional performance in automated systems, ensuring seamless operation and minimal downtime.
Application Scenarios:
In an automated packaging facility, the DDS-LPS RELIANCE sensor is integrated into a robotic arm for precise placement and alignment of packages. The sensor’s high-precision position tracking ensures that each package is placed with the correct orientation on the conveyor belt, reducing errors and speeding up the overall production process.
For instance, a customer in the automotive manufacturing industry utilizes the DDS-LPS RELIANCE to monitor and control the position of parts as they move through an assembly line. This helps in reducing the risk of faulty assembly, improving overall production accuracy and quality. The sensor’s precise tracking capabilities ensure parts are always in the right position, preventing costly production delays.
Parameter:
| Main Parameters | Value/Description |
|---|---|
| Product Model | DDS-LPS RELIANCE |
| Manufacturer | Reliance |
| Product Category | Positioning Sensor |
| Measurement Range | 0 to 5000 mm |
| Output Signal | Analog (0–10 V, 4–20 mA), Digital (Pulse) |
| Response Time | ≤ 5 ms |
| Operating Voltage | 12 to 24 V DC |
| Mounting Type | Flush or non-flush mounting |
| Temperature Range | -20°C to +70°C |
| Protection Rating | IP65, IP67 |
| Housing Material | Stainless Steel or Polycarbonate |
Key Parameters Explanation:
- Measurement Range: The DDS-LPS RELIANCE offers a broad measurement range of up to 5000 mm, making it highly versatile for various industrial applications.
- Output Signal: This sensor provides both analog (0-10 V, 4-20 mA) and digital (pulse) outputs, allowing easy integration into various automation and control systems.
- Response Time: With a fast response time of ≤ 5 ms, the DDS-LPS RELIANCE ensures rapid feedback, critical for high-speed applications.
- Temperature Range: The wide operating temperature range of -20°C to +70°C makes the sensor adaptable to diverse industrial environments, from cold storage to high-heat production lines.
- Protection Rating: With IP65 and IP67 ratings, the DDS-LPS RELIANCE is fully protected against dust and water ingress, ensuring reliable performance even in harsh conditions.
Technical Principles and Innovative Values:
- Innovation Point 1: The DDS-LPS RELIANCE uses advanced optical sensing technology that delivers superior position accuracy, enabling precise measurement even in high-speed processes.
- Innovation Point 2: The dual output configuration (analog and digital) provides flexibility for integration into various control systems, enhancing adaptability in different automation setups.
- Innovation Point 3: The high-speed response time of ≤ 5 ms ensures that the sensor can keep up with rapid machine movements, making it suitable for fast-paced industrial operations.
- Innovation Point 4: The rugged and durable design with IP65/IP67 protection ensures that the sensor can withstand challenging environments, including exposure to dust, dirt, and water, common in industrial sectors.
Application Cases and Industry Value:
In an automated material handling system at a logistics warehouse, the DDS-LPS RELIANCE was used to track the position of totes as they moved along the conveyor system. The sensor’s ability to accurately detect the location of each tote, even in high-speed operations, improved sorting efficiency by 20%, reducing the time spent on manual checks.
In another case, a DDS-LPS RELIANCE sensor was installed in a car assembly line to monitor the positioning of components on a moving conveyor. The precise position feedback helped optimize robotic arm movements, reducing the chances of faulty assembly and minimizing rework. This led to a significant decrease in production downtime and a noticeable increase in assembly line throughput.
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