FEIG – HyWEAR compact sR

The HyWEAR compact sR is a basic barcode wearable that combines a compact barcode scanner with a comfortable fingerless glove. It is designed to make manual material handling processes more efficient by freeing both hands to perform work. The powerful optical engine can identify both 1D and 2D barcodes, and it is installed on a flexibly adjustable handcuff, leaving the user’s fingers, hand, and arm free to move. With easy integration into existing processes through Bluetooth 5.0, this wearable device offers a high level of convenience and productivity.

Specification

  • Housing: Robust ABS material
  • Dimensions: 60 mm x 50 mm x 23 mm (2.36 inch x 97 inch x 0.91 inch)
  • Weight: Approximately 70 g
  • Color: Black (translucent)/red
  • Protection class: IP54
  • Image resolution: 752 x 480 Pixel
  • Reading field of view: 36 x 23
  • Aimer: 650 nm Laser
  • Barcode decoding: Supports 1D barcodes such as EAN-8, EAN-13, UPC-A, UPC-E, Code 128, Code 39, Code 93, Interleaved 2of5, and 2D barcodes including DataMatrix, QR Code, and PDF417
  • Radio functions: Bluetooth 5.0 with protocols HID and SPP
  • Signal indicator: Red/green/yellow/blue status LEDs, buzzer, and vibration feedback
  • Battery: 1100 mAh Lithium-Polymer, 3.7 V
  • Standard range*: Supports various barcode types at different distances depending on print quality, contrast, and lighting conditions

Benefits

Hands-free Efficiency

The HyWEAR compact sR allows users to perform manual material handling tasks more efficiently by freeing both hands. With the powerful barcode scanner installed on a flexible handcuff, users can easily scan barcodes without hindering their hand and arm movements.

Easy Integration

This wearable device can be seamlessly integrated into existing processes through Bluetooth 5.0. There is no need for special receiving stations, making the integration process quick and hassle-free.

Maximum Process Reliability

The HyWEAR compact sR provides visual feedback through highly visible status LEDs, as well as vibration feedback and acoustic signals. This ensures maximum process reliability and minimizes the risk of incorrect scans, improving overall productivity and accuracy.

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