ENCODER SENSOR (9740)

₹1000 / Pcs.

  • Advanced 9740 Optical Core: Built utilizing highly responsive optical photo-interrupter technology to read standard raster scales with extreme precision, delivering instant positioning data to your mainboard.

  • Broad Machine Board Compatibility: Works seamlessly across a wide variety of industrial printer control frameworks (including Hoson, BYHX, and Senyang setups) running popular Epson, Konica, or Ricoh printhead arrays.

  • Anti-Contaminant Shielded Casing: Encased in a rugged polymer shell designed to isolate the delicate internal sensor lens from micro-fine ink vapors, ambient workshop dust, and static charge.

Category: SENSOR
vendor: CMYK
Contry Of Origin: CHINA
Return :

  • Advanced 9740 Optical Core: Built utilizing highly responsive optical photo-interrupter technology to read standard raster scales with extreme precision, delivering instant positioning data to your mainboard.

  • Broad Machine Board Compatibility: Works seamlessly across a wide variety of industrial printer control frameworks (including Hoson, BYHX, and Senyang setups) running popular Epson, Konica, or Ricoh printhead arrays.

  • Anti-Contaminant Shielded Casing: Encased in a rugged polymer shell designed to isolate the delicate internal sensor lens from micro-fine ink vapors, ambient workshop dust, and static charge.

Parameter Specification
Part Name 9740 Wide-Format Printer Raster Decoder Sensor
Condition 100% Brand New Factory-Original
Core Components Integrated 9740 Series Optical Reader
Output Signal Type High-Accuracy Digital HTL / TTL Quadrature Data

Achieve flawless graphic layout, razor-sharp text legibility, and immaculate dot placement with our premium 9740 Encoder Sensor. Precision-engineered as a mission-critical positioning module for industrial wide-format printing machinery, this commercial-grade optical reader acts as the primary positioning guide for your printer's carriage axis. It glides continuously along the physical raster ribbon, capturing real-time position coordinates down to microscopic intervals.