| Weld-In Threaded Bung | A threaded boss welded directly to the exhaust pipe, manifold, or downpipe. | Creates a permanent mounting point for a threaded oxygen sensor. | Custom exhaust fabrication, replacement exhaust sections, and sensor relocation. | Stainless steel or mild steel. | Requires welding; the port must be positioned correctly to prevent condensation from collecting on the sensor tip. |
| Screw-In Sensor Spacer or Extender | A threaded adapter installed between the exhaust bung and the oxygen sensor. | Moves the sensor tip farther from the direct exhaust stream and provides additional clearance. | Tight installation areas, sensor clearance issues, and selected exhaust-system configurations. | Heat-resistant stainless steel or plated steel. | The thread size and depth must match the sensor and bung; excessive spacing can affect sensor response. |
| Angled or Offset Adapter | A threaded fitting that changes the sensor angle or shifts the sensor away from nearby components. | Improves physical clearance and helps route the sensor away from heat shields, frames, or other obstructions. | Modified exhaust systems and installations with limited underbody space. | Stainless steel is commonly used for high-temperature exhaust applications. | The final sensor position should avoid contact with surrounding parts and should not create a low point where moisture can accumulate. |
| Bolt-On Flange Adapter | Uses a machined or stamped flange with bolts, studs, or a clamping interface instead of a welded bung. | Provides a removable oxygen-sensor mounting solution for compatible exhaust assemblies. | Modular exhaust sections, serviceable assemblies, and applications where welding is impractical. | Stainless steel, carbon steel, or other heat-resistant metals. | Flange dimensions, bolt spacing, gasket compatibility, and sealing surfaces must match the exhaust component. |
| Dual-Sensor or Multi-Port Adapter | A fitting or exhaust section with two or more threaded sensor ports. | Allows additional sensors to be installed without fabricating a new exhaust section. | Data logging, calibration work, testing, and systems requiring an additional sensor port. | Stainless steel or mild steel. | Unused ports need suitable plugs, and sensor placement should preserve adequate exhaust-gas exposure and heat management. |
| Thread-Size Conversion Adapter | A threaded insert or adapter that connects components with different thread specifications. | Adapts a sensor or exhaust bung when the thread form, diameter, or pitch is different. | Repair work, replacement exhaust parts, and mixed-component installations. | Heat-resistant steel or stainless steel. | Thread specifications must be confirmed before installation; forced or mismatched threads can cause leakage or permanent damage. |
| Electrical Connector or Harness Adapter | A plug-in wiring adapter, pigtail, or connector conversion harness. | Connects an oxygen sensor to a vehicle harness when the connector shape or wire termination differs. | Sensor replacement, wiring repairs, and installations involving different connector configurations. | Automotive-grade copper conductors, insulation, terminals, and heat-resistant protective sleeving. | Wire functions, polarity, heater-circuit requirements, sealing, and routing away from exhaust heat must be verified. |