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Parts for your 2020 Holden Commodore-Map sensor

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Genuine OEM Map Sensor - MP138GEN

Genuine OEM Map Sensor - MP138GEN

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$636
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Goss MAP Sensor - MP171

Goss MAP Sensor - MP171

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$437
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Goss MAP Sensor - MP198

Goss MAP Sensor - MP198

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$270
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Genuine OEM MAP Sensor - MP235GEN

Genuine OEM MAP Sensor - MP235GEN

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$1,773
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Genuine OEM MAP Sensor - MP238GEN

Genuine OEM MAP Sensor - MP238GEN

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$1,800
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Genuine OEM MAP Sensor - MP164GEN

Genuine OEM MAP Sensor - MP164GEN

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$1,098
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Genuine OEM MAP Sensor - MP230GEN

Genuine OEM MAP Sensor - MP230GEN

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$1,237
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Explore 4WD & Adventure

Genuine OEM Map Sensor - MP178GEN

Genuine OEM Map Sensor - MP178GEN

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$889
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Genuine OEM MAP Sensor - MP198GEN

Genuine OEM MAP Sensor - MP198GEN

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$862
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Genuine OEM Map Sensor - MP241GEN

Genuine OEM Map Sensor - MP241GEN

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$855
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Genuine OEM MAP Sensor - MP237GEN

Genuine OEM MAP Sensor - MP237GEN

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$1,358
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Goss MAP Sensor - MP235

Goss MAP Sensor - MP235

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$679
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Goss MAP Sensor - MP230

Goss MAP Sensor - MP230

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$559
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Goss MAP Sensor - MP123

Goss MAP Sensor - MP123

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$521
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Genuine OEM Map Sensor - MP222GEN

Genuine OEM Map Sensor - MP222GEN

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$530
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Genuine OEM Map Sensor - MP243GEN

Genuine OEM Map Sensor - MP243GEN

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$409
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Goss MAP Sensor - MP139

Goss MAP Sensor - MP139

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$497
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Genuine OEM Map Sensor - MP177GEN

Genuine OEM Map Sensor - MP177GEN

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$430
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Genuine OEM Map Sensor - MP128GEN

Genuine OEM Map Sensor - MP128GEN

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$466
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Goss MAP Sensor - MP207

Goss MAP Sensor - MP207

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$371
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Goss MAP Sensor - MP128

Goss MAP Sensor - MP128

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$353
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Goss MAP Sensor - MP203

Goss MAP Sensor - MP203

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$257
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Goss MAP Sensor - MP238

Goss MAP Sensor - MP238

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$220
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Fuelmiser MAP Sensor - CMS255

Fuelmiser MAP Sensor - CMS255

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$195
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Goss MAP Sensor - MP239

Goss MAP Sensor - MP239

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$164
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Goss MAP Sensor - MP175

Goss MAP Sensor - MP175

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$151
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Goss Map Sensor - MP284

Goss Map Sensor - MP284

$657
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Showing 118 - 144 of 144 products

Understanding the MAP Sensor on the 2020 Holden Commodore

The 2020 Holden Commodore is a finely tuned machine, packed with modern technology designed to optimise performance, fuel efficiency, and emissions. When it comes to sensors that help manage the engine's air and fuel mixture, the MAP sensor or Manifold Absolute Pressure sensor is a key player in many vehicles. So, how does the 2020 Holden Commodore fit into the story? Is a MAP sensor part of its engine management system? And if it is, what should owners know about it?

Firstly, it's important to clarify that the 2020 Holden Commodore, particularly the VFII and the newer ZB model based on the Opel Insignia platform, mostly utilises a mass air flow (MAF) sensor rather than a traditional MAP sensor as part of its engine management strategy. This is pretty common in modern vehicles, especially those equipped with turbocharged engines and advanced electronic control units (ECUs).

Unlike older or simpler engines where the MAP sensor is the primary sensor measuring intake manifold pressure to help the ECU calculate air density and fuel delivery, the Commodore's ECU relies more heavily on the MAF sensor combined with other components like throttle position sensors, oxygen sensors, and crankshaft position sensors to ensure optimal engine performance. The MAF sensor measures the actual volume and density of air entering the engine, often providing more precise real-time data than the MAP in these setups.

So why doesn't the 2020 Holden Commodore use a MAP sensor the way some other cars might? There are several reasons why vehicle manufacturers choose MAF over MAP sensors or decide to omit MAP sensors entirely.

  • Engine Design and ECU Calibration: Modern fuel-injected engines with variable valve timing and turbocharging can utilise MAF sensors for direct and continuous airflow measurement, leading to more accurate air-fuel ratio control. This reduces the need for manifold pressure readings.
  • Performance and Emissions: Using MAF sensors helps improve fuel efficiency, reduce emissions, and maintain smooth engine operation under varying loads and speeds.
  • Simplicity and Cost: Eliminating or reducing redundant sensors can reduce overall complexity and car repair costs without compromising performance.

That said, some versions of the Commodore's V6 or V8 engines, especially earlier models, did incorporate MAP sensors. But the 2020 model's sophisticated engine management system primarily depends on the MAF sensor as the main air measurement tool.

For those Commodore owners who do have a model or variant with a MAP sensor, understanding the sensor's purpose, maintenance, and replacement can be helpful to keep the engine running smoothly.

The MAP sensor plays a crucial role in engine management by measuring the absolute pressure inside the intake manifold. This data lets the engine control unit know how much air is entering the engine based on pressure changes when the throttle opens or closes. It helps calculate the right fuel injection volume and ignition timing.

Because the MAP sensor directly impacts engine performance, a faulty one can cause issues like poor fuel economy, rough idling, stalling, and even trouble starting the engine. Drivers might notice the Check Engine Light come on or experience hesitation under acceleration.

Maintaining or replacing the MAP sensor on a car that uses it is relatively straightforward. During servicing, technicians will check the sensor's wiring and vacuum connections to ensure there are no leaks or damage. A dirty or faulty MAP sensor can often be cleaned with an electrical contact cleaner or replaced if damaged.

Replacement sensors are typically affordable and widely available for aftermarket purchase. Many technicians recommend replacing the MAP sensor if the engine displays performance symptoms related to poor intake manifold pressure readings or if diagnostic trouble codes specific to the MAP sensor appear.

Regular maintenance of the intake system can also extend the MAP sensor's life. This includes replacing air filters on schedule, checking for vacuum leaks and ensuring the throttle body stays clean.

For owners of the 2020 Holden Commodore, while the MAP sensor may not be a standard component on most models due to the reliance on the MAF sensor, understanding the role these sensors play in managing engine air intake is valuable. It also highlights how modern cars employ different sensor strategies to achieve clean, efficient, and powerful engine performance.

If a specific Commodore variant does feature a MAP sensor, keeping an eye on sensor health through scheduled servicing or professional diagnostics can prevent drivability issues down the track. Proper sensor function ultimately contributes to the smooth running and longevity of the vehicle's engine system.