This Kyocera KJ4A-RH printhead is designed for high speed single-pass and multi-pass applications with printers using UV ink. It is a 600dpi one colour printhead with a maximum drive frequency of 30kHz This new generation Kyocera KJ4A-RH is designed for high speed single-pass and multi-pass applications with printers using UV ink. It is a 600dpi one colour printhead with a maximum drive frequency of 30kHz. It delivers high quality with a small drop volume of 5pl at 70 m/min by making use of 2,656 nozzles arranged across 108 mm wide print swathe with 0.042mm pitch, resulting in 30.000 drops per second.
The Kyocera KJ4A-RH is equipped with internal filters that eliminate foreign objects in ink and an internal heater that adjusts the impact of external temperatures. It’s unique ink channel design provides a stable ink supply.
Specifications: - Ink Type: UV Ink - Dimensions: 200 × 30 × 68.9mm - Dry Weight: 420g - Total Nozzles:2.656 - Nozzle Pitch: 0.042mm - Standard Resolution: 600 x 600dpi - Print Width: 108.25mm - Max. Drive Frequency:30kHz - Drop Volume: 5, 7, 12 and 18pl - Max. Sprint Speed:70m/min - Input Voltage:3.3 V for logic / 29 V for driving - Special version of Kyocera UV Printhead KJ4A-RH for Gandy Gladiator - Temperature Control:Reservoir heater and thermistor are equipped
This printhead carries a manufacturer warranty and 30 days signprinthead.com (replace with a new printhead) Country of origin : Japan
Brand - Zebra Printer Model - ZM600 Technology - Thermal Part Number - 79804M
Printheads that are worn or damaged must be replaced immediately. Each Zebra printhead is easy to install and builds to engineering standards for the reliability and sustainable performance of your printer.
Honeywell's 710-179S-001 printheads feature advanced thermal control to provide advanced diagnostics. Honeywell It also features better print quality, and a durable coating for better abrasion resistance and longer service life. Printhead replacement is reduced, which increases printer uptime. Users will also notice a substantial reduction in power consumption.