The IK 97 MM PRESSURE GAUGE RANGE 0 TO 5 KG/CM2 / 0 TO 70 PSI, CONNECTION 3/8 INCH is a high-quality, precision instrument designed for accurate pressure measurement in various industrial and commercial applications. With a 97mm dial, this pressure gauge provides clear, easy-to-read readings across a pressure range of 0 to 5 KG/CM2 (0 to 70 PSI), making it ideal for systems that require reliable monitoring of medium pressure levels. Whether used in manufacturing processes, HVAC systems, or fluid control systems, the IK pressure gauge helps ensure that equipment operates safely and efficiently.
Built with durability in mind, the IK 97 MM pressure gauge features robust construction that resists wear, vibration, and temperature fluctuations, ensuring accurate readings in demanding environments. The 3/8-inch connection provides easy integration into various systems, offering a secure and leak-free installation. Its large dial size ensures visibility even from a distance, allowing operators to quickly assess pressure levels and take corrective action when necessary, preventing system failures or damage to equipment.
This pressure gauge is essential for industries where pressure control is critical to maintaining system integrity and performance. By accurately monitoring pressure, the IK 97 MM PRESSURE GAUGE helps detect deviations from optimal operating conditions, enabling timely interventions to maintain smooth operations. It is ideal for use in pumps, compressors, hydraulic systems, and other pressure-sensitive equipment, where maintaining the correct pressure is vital to preventing operational inefficiencies or costly repairs.
With its precise measurement range, durable construction, and ease of installation, the IK 97 MM PRESSURE GAUGE RANGE 0 TO 5 KG/CM2 / 0 TO 70 PSI, CONNECTION 3/8 INCH is a reliable and cost-effective solution for ensuring safe and efficient pressure management in a wide range of industrial applications. Its versatility, reliability, and user-friendly design make it an invaluable tool for maintaining the operational stability of pressure systems.