19.H6.ACS-11B0
The KEB 19.H6.ACS-11B0 from the H6 Combivert Multi-Axis Drives series is a high-precision piezoresistive pressure transmitter designed for robust industrial applications. It operates on a 10–30 VDC supply voltage and delivers a standard 4–20 mA output signal, covering a measuring range of 0–10 bar. Constructed from durable stainless steel, this device provides reliable pressure measurement in demanding environments while weighing approximately 180 g. Its primary function is to convert pressure variations in fluids or gases into a proportional electrical signal for process monitoring and control systems.
Detailed technical specifications underscore the transmitter’s suitability for harsh conditions. The sensor type is piezoresistive, ensuring high sensitivity and linearity over its measuring span. It withstands an overpressure limit of 20 bar without damage, and its medium temperature range extends from –40 °C to +125 °C, accommodating extreme thermal cycles. The process connection employs a G 1/2" male thread, and the electrical interface utilizes an M12x1, 4-pin connector for secure and standardized installation. With a protection class of IP67, the unit offers full resistance to dust ingress and temporary immersion, making it ideal for wet or dusty industrial settings.
Beyond core performance, the 19.H6.ACS-11B0 excels in compatibility, durability, and efficiency. Its housing material of stainless steel resists corrosion, while the low weight of approx. 180 g simplifies mounting and minimizes mechanical stress. The device’s compact design and standard electrical connection facilitate seamless integration with control systems, data acquisition modules, and PLCs. Certified to EN 60721-3-3 environmental stress standards and rated for operation in humidity levels from 5% to 85% (non-condensing), this pressure transmitter maintains stable accuracy under varying ambient conditions. In industrial automation, using the 19.H6.ACS-11B0 ensures precise process control, minimized downtime, and enhanced operational safety.