
( Brand: Harvard ), ( Manufacturer Part Number: IPPG1002-4L ), ( Model: 100 1002 4B ), ( Part Type: Pressure Mount Gauge Case ), ( Face Diameter: 2 In ), ( Connection Diameter: 1/4 In ), ( Mounting Position: Back Mount ), ( Country Of Origin: China ), ( Maximum Pressure: 100 Psi )
The Harvard IPPG1002-4L Bottom Mount Pressure Gauge is a precision instrument designed for industrial applications requiring accurate pressure readings within the range of 0-100 Pounds per Square Inch (PSI). This durable pressure gauge features a 4-inch (100mm) dial, providing an easy-to-read, comprehensive view of the pressure levels.
The gauge is equipped with a 1/4 Minimum Inside Pipe Size (MIP) connection, ensuring a secure and standardized fit with various piping systems. The bottom mount design allows for optimal placement and flexibility in your equipment layout, making it suitable for a wide range of industrial applications.
The Harvard IPPG1002-4L pressure gauge boasts a robust stainless steel construction, ensuring resistance to corrosion and wear, even in harsh environments. The dial is clearly marked with easy-to-read graduations and features a high-visibility pointer for accurate and reliable readings.
Additionally, this pressure gauge includes a built-in pressure relief valve, providing an extra layer of safety by automatically releasing excess pressure to prevent damage to your equipment. The gauge also features a silicone diaphragm, providing superior shock resistance and minimizing the risk of damage during operation.
In summary, the Harvard IPPG1002-4L Bottom Mount Pressure Gauge offers exceptional accuracy, durability, and safety in a compact and easy-to-install design. Ideal for industries relying on precise pressure control, such as manufacturing, automotive, and hydraulics, this pressure gauge is a reliable choice for maintaining optimal system performance.
The Harvard IPPG1002-4L Pressure Gauge (0-100, Bottom Mount, 1/4 MIP) is a device used to measure the pressure in various applications. Here are its pros and cons:
Pros:1. Accurate: The gauge is designed to provide precise pressure readings, making it suitable for critical applications.
2. Durable: The gauge is built with a rugged, corrosion-resistant housing, ensuring long-term durability.
3. Bottom Mount: The bottom mount design allows for easier installation in tight spaces and helps prevent gauge movement.
4. 1/4 MIP Connection: The 1/4 MIP connection is a common and versatile fitting, making it compatible with many pressure systems.
Cons:1. Price: Compared to some other pressure gauges, this model may be more expensive due to its high precision and durability.
2. Analog Readout: Unlike digital pressure gauges, the IPPG1002-4L has an analog readout, which may not be as easy to read in certain lighting conditions.
3. Requires Regular Calibration: To maintain accuracy, the gauge may require regular calibration, which can be time-consuming and costly.
Ending Conclusion:The Harvard IPPG1002-4L Pressure Gauge is a high-quality, durable, and accurate device suitable for various applications. Its bottom mount design and 1/4 MIP connection make it easy to install and compatible with many systems. However, its higher price and the need for regular calibration are important considerations.
Recommendation:If you require a high-precision pressure gauge for critical applications and can accommodate its price and calibration requirements, the Harvard IPPG1002-4L Pressure Gauge is a recommended choice. For less demanding applications or those on a tighter budget, you may want to consider less expensive and less precise alternatives.
The American Grabby Company Harvard Pressure Gauge is a 2-inch face diameter brass pressure gauge with maximum of 100 psi. This pressure gauge is designed for accuracy and durability, making it a valuable tool monitoring maintaining air levels in range of industrial settings. It features a bottom-mount design, making it easy to install in various applications. Made by the reputable brand Harvard, this pressure gauge is a reliable solution for measuring and managing air in systems requiring precision reliability.