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Wholesale Factory Car Air Fuel Ratio Auto Part Oxygen Sensor for Cr30 Toyota Bully OEM: 89467-28120 image 1Wholesale Factory Car Air Fuel Ratio Auto Part Oxygen Sensor for Cr30 Toyota Bully OEM: 89467-28120 image 2

Wholesale Factory Car Air Fuel Ratio Auto Part Oxygen Sensor for Cr30 Toyota Bully OEM: 89467-28120

Guanzhou Baiyun District Zhenhao Auto Parts Trade Center

Price $20.00 / Pieces
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-+Subtotal: $200
Availability In Stock
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89467-28120
Toyota
Control Sensor
Ceramic Synthetic Type
Euro I
ISO9001, TS16949, CE, CCC
Mechanical Noise and Combustion
Aerodynamic Noise
Transmission Noise
Exhaust Pipe
Middle East
MIKEY
Box
Long 41cm Heavy: 77g
China
Product Description
 Oxygen Sensors, OE:89467-28120

Products OEM:89467-28120

A range of products: 89465-0D230, 89465-0D220, 89467-12210, 89465-20810, 89465-0D170, 89465-59035, 89465-09420, 89465-52050, 89465-68070, 89465-68090, 89465-68090, 89465-68040, 89465-0M010, 89465-68030

Applicable model: Zhengzhou Nissan 2.0/ new logo 307/408 Citroen 2.0 



ECU judges the low or high air fuel ratio according to the difference of electromotive force from oxygen sensor, and controls the duration of fuel injection accordingly. However, if the electromotive force of the output is abnormal due to the fault of the oxygen sensor, (ECU) computer can not accurately control the air-fuel ratio. Therefore, the oxygen sensor can also compensate for the air-fuel ratio error caused by the wear of other parts of the mechanical and EFI system. It can be said that it is the only intelligent sensor in EFI system.

The function of the sensor is to determine whether there is excess oxygen in the exhaust of the engine after combustion, that is, the oxygen content, and to convert the oxygen content into voltage signal to transmit to the engine computer, so that the engine can achieve closed-loop control with excess air factor as the goal; to ensure that the ternary catalytic converter can control hydrocarbons (HC), carbon monoxide (CO) and nitrogen oxides in the exhaust. (NOX) All three pollutants have the greatest conversion efficiency, and the transformation and purification of pollutants are carried out to the greatest extent.

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