Detailed content
Operating Range:0 to 12 inches Hg vacuum to 20 psig
Accuracy:±0.05% of full scale
Repeatability:±0.02% of full scale
Temperature Coefficient:±0.01% of full scale per °C
Response Time:≤1 second
Process Connections:1/4 NPT female, 1/2 NPT male
Output Signal:4-20 mA, 0-5V or 0-10V
Power Supply:12VDC or 24VDC
Operating Temperature:-40°C to +85°C
Storage Temperature:-40°C to +125°C
Material:Stainless Steel, Polished Chrome Plated Brass
Process Compatibility:Oil, Water, Air, Vacuum
The MKS 622A12TAE Baratron Pressure Transducer is a cutting-edge solution designed for precise and reliable pressure measurement across a wide range of industrial settings. Its robust design ensures longevity even in the most challenging environments, making it an ideal choice for applications requiring high accuracy and stability.
Equipped with advanced capacitive technology, this transducer offers unparalleled sensitivity and response time, ensuring that you receive real-time, accurate pressure readings every time. The sensor’s wide pressure range of 25 PSI to 1500 PSI accommodates various operational needs, from low-pressure systems to high-pressure environments.
With its exceptional accuracy of +/- 0.5% full scale, the MKS 622A12TAE guarantees precise measurements that meet industry standards and exceed expectations. This precision is further enhanced by its ability to operate within a broad temperature range of -40°C to 105°C, ensuring reliable performance regardless of environmental conditions.
The transducer’s process connection of 1/4 NPT allows for easy integration into existing systems, minimizing installation complexity and downtime. It also supports a versatile electrical output of 4-20mA, compatible with various control systems and automation equipment, facilitating seamless integration into complex industrial setups.
Backed by a solid power supply voltage of 12V DC, the MKS 622A12TAE ensures continuous operation without the need for frequent maintenance or power supply adjustments. Its compact yet durable design makes it suitable for space-constrained applications without compromising on functionality or performance.