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The Honeywell KS85092320 is an air/gas ratio control module built to ensure efficient regulation of fuel mixtures. It incorporates various features for robust performance in demanding applications.
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| Manufacturer | Honeywell |
|---|---|
| Product Type | Air/Gas Ratio Control Module |
| Product Line | Other |
| Part Number | KS85092320 |
| Low-Fire Adjusting Range | -2 to +2 mbar |
| Nominal Size (DN) | DN 65 |
| Max. Inlet Pressure | 200 mbar |
| Air Control Pressure Range | 0.5 to 120 mbar |
| Outlet Pressure Range | 0.2 to 119 mbar |
| Max. Differential Inlet-to-Outlet Pressure | 100 mbar |
| Transmission (Gas:Air) Ratio | 1:1 |
| Control (Turndown) Range | 1:10 |
| Min. Operating Temperature | -15 °C |
| Max. Operating Temperature | 60 °C |
| Housing Material | Aluminum-silicon alloy (AlSi) |
| Diaphragm Material | NBR |
| Valve Disc Material | Aluminum |
The KS85092320 from Honeywell serves as a functional air/gas ratio control module, weighing 26.45 lbs. Its design caters to precise control of air-to-gas mixtures, a critical factor in combustion processes. This module supports a low-fire adjusting range of -2 to +2 mbar, allowing for fine-tuning in challenging conditions.
With a nominal size classification of DN 65, it effectively handles a maximum inlet pressure of 200 mbar. The air control pressure can be adjusted between 0.5 and 120 mbar, while the outlet pressure range is from 0.2 to 119 mbar. The maximum differential pressure between the inlet and outlet is capped at 100 mbar.
Exposure to various temperatures does not compromise functionality, as the module operates efficiently within a range of -15 °C to 60 °C. The robust housing is constructed from an aluminum-silicon alloy (AlSi), ensuring durability. The diaphragm, made from NBR material, complements the module’s overall design, while the valve disc is also crafted from aluminum, promoting reliable performance in diverse operational circumstances. This device is engineered for industries requiring accurate fuel mixture control while adhering to stringent operational standards.