Honeywell
Honeywell MC-PC1X02 Differential Pressure Transducer
Manufacturer: Honeywell
Product No.: MC-PC1X02
Product Type: Pressure Transducer
Product Origin: USA
Payment:T/T, Western Union
Weight: 1800g
Shipping port: Xiamen
Warranty: 12 months
Product Overview
The Honeywell MC-PC1X02 is a differential pressure transducer designed for measuring pressure differences of non-corrosive gases in industrial applications.
- Pressure Range: ±125 psi (±8.62 kPa)
- Output: 4–20 mA DC
- Accuracy: ±2% Full Scale
- Supply Voltage: 12–30 VDC
- Power Consumption: 5 mA max
- Operating Temperature: -20°C to +60°C
- Housing Material: Polyphenylene Sulfide (PPS)
- Process Connection: 1/8-inch NPT
Provides reliable pressure measurement with low power consumption and robust construction.
FAQ
- What media is supported? Non-corrosive gases only.
- Is it suitable for liquid service? No, designed for gas applications.
- What is the output signal? Standard 4–20 mA two-wire loop.
Installation Guide
- Mount the transducer in a location protected from extreme vibration and temperature.
- Connect process tubing to the 1/8-inch NPT ports (high and low side).
- Wire the 4–20 mA output observing polarity.
- Apply power within the 12–30 VDC range.
- Zero and span check as required by the application.
Selection Tips
- Select MC-PC1X02 for differential pressure measurement of clean, non-corrosive gases.
- Verify the ±125 psi range matches your process requirements.
- Ensure supply voltage is within 12–30 VDC.
Return policy
We aim to provide reliable products and a smooth purchasing experience. If there is a problem with your order, please contact us and we will assist according to our Refund Policy.
Shipping
We provide international shipping options to meet different delivery requirements. Please review details regarding methods and timelines in our Shipping Policy.
Warranty
We provide a 12-month warranty for all products, subject to normal use and proper installation.
You may also like
Product Guide
Mitigating SCADA Performance Drops During Shift Transitions
Mitigating SCADA Performance Drops During Shift Transitions
Optimizing SCADA Performance: Why Remote Clients Experience Lag
Optimizing SCADA Performance: Why Remote Clients Experience Lag