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SKU: DL100-21AA2101-FS
Estimated delivery: June 9th - June 11th
Order for next-day shipment.
The SICK DL100-21AA2101 is a high-performance long-range distance sensor designed to deliver millimeter-precision positioning for automated industrial logistics. Utilizing advanced Time-of-Flight (ToF) laser technology, this Dx100 Pro model provides reliable measurements across distances of up to 100 meters, making it the ideal solution for automated stacker cranes and transfer cars. The specific "21AA2101" model features a Synchronous Serial Interface (SSI), which transmits position data as a high-speed, noise-immune digital bit stream directly to motion controllers. Built for harsh environments, it includes an integrated heater to operate in temperatures as low as -40°C, ensuring maximum system availability and precise control loop integration.
The SICK DL100-21AA2101 is a high-performance long-range distance sensor designed to deliver millimeter-precision positioning for automated industrial logistics. Utilizing advanced Time-of-Flight (ToF) laser technology, this Dx100 Pro model provides reliable measurements across distances of up to 100 meters, making it the ideal solution for automated stacker cranes and transfer cars. The specific "21AA2101" model features a Synchronous Serial Interface (SSI), which transmits position data as a high-speed, noise-immune digital bit stream directly to motion controllers. Built for harsh environments, it includes an integrated heater to operate in temperatures as low as -40°C, ensuring maximum system availability and precise control loop integration.
The DL100 Pro is the industry standard for positioning automated stacker cranes (AS/RS) and transfer cars. Using Time-of-Flight laser technology, it measures distances up to 100 meters with millimeter precision. This specific model utilizes an SSI (Synchronous Serial Interface), transmitting position data as a high-speed digital bit-stream immune to electrical noise.
The code 21AA2101 defines the output. Unlike analog sensors (0-10V) which can fluctuate with noise, SSI sends a precise digital number.
The controller sends a clock pulse train. The sensor replies by shifting out data bits synchronously. Fast, digital, precise.
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