RH3-1K-NI-SP-010 | Relative Humidity, RH Outputs: 0-10 VDC, Wall Plate 304SS, ± 3% Accuracy, 1,000 Ohm Nickel RTD, 0-10VDC | ACI
Relative Humidity, RH Outputs: 0-5 & 0-10 VDC (Default), Wall Plate 304SS, ± 3% Accuracy, 1, 000 Ohm Nickel RTD
Documents and manuals
ACI RH3-1K-NI-SP-010 Documents
Overview
Details for RH3-1K-NI-SP-010
Relative Humidity, RH Outputs: 0-10 VDC, Wall Plate 304SS, ± 3% Accuracy, 1,000 Ohm Nickel RTD, 0-10VDC
The ACI Relative Humidity with Thermistor Wall Plate Series utilizes a thermoset polymer capacitive sensing element with a factory applied hygroscopic lter to deliver a proportional analog voltage output signal. The hygroscopic lter provides added resistance to moisture, dust, and other chemicals for greater long term reliability. The RH Stainless Plate transmitter features integral DIP switches for eld selection of the proper output signal and supply voltage to meet your applications requirements. Each unit also contains 0%, 50%, and 100% test options to verify that the transmitter is both working and properly installed. Field calibration can be performed by using the increment and decrement calibration DIP switches without the need to replace the sensing element. These enhancements provide increased exibility and outstanding long-term reliability. All RH Stainless Plate transmitters come standard with an attractive brushed nish stainless steel, single gang wall mounting plate and are designed to mount over a single gang junction box in the wall. The PCBs are conformally coated for added protection from moisture and other contaminants. A temporary plastic sensor cover is included to provide protection for the RH sensor from chemicals used in wash down applications. Three and Five-point NIST Calibration Certicates are available but they must be ordered separately when placing your order. Applications: Pharmaceutical, Hospitals, Operating Rooms, Vivariums, Clean Rooms, Process Control, Wash Down Environments & Stability Chambers
Specifications
Item Number | RH3-1K-NI-SP-010 |
Brand | ACI |