fits make: Acura. year: 2010–2013.

( Brand: Walker Oe Base Sensor ), ( Manufacturer Part Number: 95WGCWMR ), ( Part Type: Oxygen Sensor ), ( Engine: 3.7l V6 ), ( Compatible Make/model: Acura Zdx ), ( Compatible Years: 2010 2011 2012 2013 10 11 12 13 ), ( Position: Downstream Rear ), ( Fitment Info: Oe Base Sensor ), ( Manufacturer Warranty: 12 Month Warranty ), ( Attention: Read Full Description To Confirm Fitment ), ( Cs-sku: 400 )
Introducing the Walker Base Sensor 95WG CWMR, a downstream rear oxygen sensor specifically designed for the Acura ZDX models from 2010 to 2013 with a 3.7L V6 engine. This sensor is an essential component of your vehicle's exhaust system, responsible for monitoring the oxygen content in your car's exhaust gases.
The Walker Base Sensor 95WG CWMR boasts a robust and durable design, ensuring reliable performance over an extended period. Its advanced technology enables precise measurement of oxygen levels, allowing your vehicle's engine management system to optimize fuel delivery and combustion efficiency.
The sensor housing is made from high-quality materials, ensuring resistance to corrosion and damage from extreme temperatures and harsh environmental conditions. The sensor element itself is designed for superior sensitivity and accuracy in detecting oxygen levels, ensuring optimal engine performance and longevity.
Installing the Walker Base Sensor 95WG CWMR is a straightforward process, and it is compatible with OEM (Original Equipment Manufacturer) sensors. By choosing this sensor, you'll not only be upgrading your vehicle's performance but also benefiting from the peace of mind that comes with using a high-quality, aftermarket part from a trusted brand like Walker.
In summary, the Walker Base Sensor 95WG CWMR is a downstream rear oxygen sensor designed for the Acura ZDX 2010-2013 3.7L V6 models. Its durable design, advanced technology, and precise measurement capabilities make it an excellent choice for maintaining optimal engine performance and longevity.
The Walker Base Sensor 95WG-CWMR is a downstream rear oxygen sensor designed for use in the Acura ZDX 2010-2013 with a 3.7L V6 engine. This sensor plays a crucial role in maintaining the vehicle's emission system and fuel efficiency. In this article, we will discuss the pros and cons of purchasing this particular oxygen sensor to help you make an informed decision.
Pros:1. Improved Emission System: The Walker Base Sensor 95WG-CWMR helps to maintain the optimal functioning of the emission system by accurately measuring the amount of oxygen in the exhaust gases. This ensures that the vehicle is producing the least possible harmful emissions, which is essential for environmental concerns and for passing emissions tests.
2. Enhanced Fuel Efficiency: An accurate oxygen sensor reading also leads to improved fuel efficiency. The sensor ensures that the engine is receiving the optimal fuel-air mixture, which helps the engine burn fuel more efficiently, resulting in fewer fuel consumption and saving you money on gas.
3. OEM Quality: The Walker Base Sensor 95WG-CWMR is designed to meet or exceed OEM specifications. This ensures a perfect fit and function, and you can be confident that the sensor will perform as intended.
4. Cost-Effective: Compared to buying a new OEM sensor from a dealership, purchasing a Walker Base Sensor 95WG-CWMR is a more cost-effective solution. Aftermarket sensors like this one offer the same functionality and performance at a lower price, making it an attractive option for budget-conscious consumers.
Cons:1. Potential for Incorrect Readings: While the Walker Base Sensor 95WG-CWMR is designed to meet OEM specifications, there is still a possibility that it may not provide accurate readings for every vehicle. In some cases, the sensor may not work as effectively as an OEM sensor, leading to potential issues with the emission system or fuel efficiency.
2. Installation Complexity: Installing an oxygen sensor can be a complex process, especially for those without automotive experience. While the installation process is generally straightforward, it may require the use of specialized tools and knowledge, which could add to the overall cost and time investment.
3. Potential for Damage During Installation: During the installation process, there is a risk of damaging other components or the sensor itself. If the sensor is not installed properly, it may not function optimally, and you could end up spending more money on repairs or replacement.
Conclusion:The Walker Base Sensor 95WG-CWMR is a cost-effective solution for those in need of a downstream rear oxygen sensor for their Acura ZDX 2010-2013 3.7L V6. It offers the same functionality and performance as an OEM sensor while saving you money. However, it is essential to understand that there are potential risks, such as incorrect readings and installation complexities, which could impact the performance of the sensor.
Recommendation:If you are comfortable with the potential risks and are looking for a cost-effective solution, the Walker Base Sensor 95WG-CWMR is a good option. However, if you want the peace of mind that comes with an OEM sensor and are willing to pay the higher price, it may be worth considering purchasing an OEM sensor from a dealership. Ultimately, the decision comes down to your budget, experience level, and desired level of risk.
Monitors exhaust gases and reduces pollutants for a cleaner environment. Downstream Rear Walker Oxygen Sensor fits Acura ZDX 2010 - 2013 3.7L V6 95WGCWMR: Position: Brand: condition: New Notes: OE Base Sensor, Features:Coated in with electrodes made of a gas-permeable platinum layer. Wrench Size: 22. Universal Or Specific Fit.
Detailed Applications Years: Vehicle: Engine: 2010 - 2013 Acura ZDX3.7L V6. Sensor Type: Narrow-Band. Measures oxygen levels to fine-tune air-fuel mixture, improving fuel economy and saving costs. Product Specifications Heated: Yes.
Wire Quantity: 4. Determines the oxygen content of exhaust gas, monitoring air fuel ratio for combustion efficiency. Coating prevents contamination and erosion of the electrode surfaces by combustion residue particulates in exhaust gases.