The hazardous locations 646GZE-7011 Series is a rugged, heavy duty gage pressure switch with a stainless steel port and diaphragm for corrosion resistance and wet conditions.
The 646GZE-7011 Series is rated to 15 Amps and UL/CSA explosion proof, Class I, Groups A, B, C and D, and Class II Groups E, F and G.
It comes with high vibration and shock resistance utilizing Dual Snap® disc spring technology.
ATEX - Baseefa Certified for Potentially Explosive Atmospheres. Models 646**Y, II 2 GD Ex d IIC, Ex Tb IIIC, Baseefa 05-ATEX-0011X. (Option Y)
c-UL, UL/CSA Explosion-proof: Div. 1, 2 Hermetically Sealed Electrical Assembly P/N 17-51 (17-73 for M Model Option), Listed by Both Underwriter’s Laboratories, Inc. (File No. E32961) & Canadian Standard Association (CSA)Testing Laboratories (File No. L
Electrical Connectors
1/2” NPT Male
Electrical Contacts
Gold
Silver
Electrical Rating
1 A at 125 Vac, 50/60 Hz
11 A at 125/250 Vac Resistive, 5 A at 28 Vdc, 0.5 A at 125 Vdc
15 A at 125/250/480 Vac Resistive, 0.2 A at 250 Vdc
Enclosure, Body Material
Aluminum
Environmental Protection
Hazardous Area
IP54
IP66
NEMA 13
NEMA 4, 7, 9, 13 / IP54, 66
NEMA 7
NEMA 9
NACE & NIST
NACE MR-0175: 2003
NPT Connection
1/2” NPT Female
O-Ring Material
Ethylene Propylene (EPR)
Viton
Operating Temperature
-40° to 86° C
-40° to 187° F
Process Connection Material
316 Stainless Steel
Proof Pressure
bar: 51.7 - 517
kPa: 5,171 - 51,711
psig: 750 - 7,500
Service
Sour (Oil & Gas)
Set Point - Decreasing
bar: 0.03 - 312
kPa: 2.8 - 31,164
psig: 0.4 - 4,520
Set Point - Increasing
bar: 0.09 - 345
kPa: 9.7 - 34,473.7
psig: 1.4 - 5,000
Switch Type
DPDT
SPDT
System Pressure
bar: 34.5 - 345
kPa: 3,447 - 34,474
psig: 500 - 5,000
Boilers & Burners
Chemical & Petrochemical Plants
Chemical Refining & Processing
Degreasers & Evaporators
Fluid Management
Food Processing
Ground Support Equipment
Hydraulic & Lubrication Systems
Heating & Air Conditioning
Manufacturing Process
Oil & Gas
Pipelines
Power Generation
Power Plants
Pulp & Paper Mills
Pumps, Compressors & Turbines
Recovery Systems
Refineries
Reverse Osmosis Systems & Filters
Safety Systems
Specialized OEM Equipment
Steel Mills
Utilities
Water Treatment, Waste & Sewage Treatment Facilities
Advantages of Belleville Disc Spring Pressure Switches
Belleville disc springs, named after their inventor Julien Belleville, are conical-shaped washers that provide a type of spring mechanism. When used in pressure switches, Belleville disc springs offer several advantages due to their unique properties and design. These advantages make them suitable for a wide range of applications, from industrial machinery to safety equipment and a preferred choice in applications where reliability, precision, and durability are critical.
High Load Capacity in a Compact Size
Belleville disc springs can support high loads with relatively small deflections compared to other spring types. This high load capacity in a compact form factor is advantageous in pressure switches where space may be limited.
Adjustable Operating Force
By using Belleville springs with application-specific properties, the operating force and deflection characteristics of the pressure switch can be finely tuned. This flexibility allows for precise control over the actuation point of the switch.
Long Service Life
The resilience and durability of Belleville disc springs contribute to a long service life, even in applications with high cycling rates. This durability ensures that pressure switches maintain their accuracy and reliability over time.
Wide Range of Operating Temperatures
Belleville disc springs perform reliably over a wide range of temperatures, making them suitable for applications exposed to extreme heat or cold.
Tolerance to Impurities
Belleville disc springs can tolerate some degree of impurities and deformation without significant loss of functionality. This characteristic is beneficial in environments where the pressure switch might be exposed to contaminants.
Shock and Vibration Resistance
The inherent design of Belleville disc springs provides excellent resistance to shock and vibration. This makes Belleville disc spring-based pressure switches highly reliable in dynamic and challenging environments, such as in compressors, chemical, petrochemical, and heavy machinery applications.
Minimal Maintenance
The simple and robust design of Belleville disc springs requires minimal maintenance. This reduces the overall cost of ownership and increases the reliability of the pressure switch.
Quick Response Time
Belleville disc springs can react quickly to changes in pressure, ensuring that the pressure switch responds promptly to operating conditions. This rapid response is critical in applications where safety or system performance is dependent on timely pressure regulation.
Predictable Behavior
The mechanical properties and behavior of Belleville disc springs under load are predictable, which facilitates trusted design, operation, and calibration of pressure switches.