Bosch Knock Sensor 2 Pin
The genuine "Bosch Knock Sensor 2 Pin" is a critical component used for detecting structural-born vibrations in spark ignition engines, particularly those caused by uncontrolled combustion. This sensor is engineered to operate effectively even in extreme conditions, making it a dependable choice for engine monitoring.
Electrical Data:
Frequency Range: 3 to 25 kHz
Weight: 48 g
Sensor Head Height: 18 mm
Sensitivity at 5 kHz: 26 ± 8 mV/g
Max. Sensitivity Change Over Time: -17%
Linearity Between 5 to 15 kHz: -10% to 10%
Linearity Between 15 to 20 kHz: 20% to 50%
Main Resonance Frequency: 30 kHz
Impedance: > 1 MOhm
Temperature Dependence of Sensitivity: 0.04 mV/g°C
Capacity Field: 1,150 ± 200 pF
The genuine "Bosch Knock Sensor 2 Pin" is a critical component used for detecting structural-born vibrations in spark ignition engines, particularly those caused by uncontrolled combustion. This sensor is engineered to operate effectively even in extreme conditions, making it a dependable choice for engine monitoring.
Electrical Data:
Frequency Range: 3 to 25 kHz
Weight: 48 g
Sensor Head Height: 18 mm
Sensitivity at 5 kHz: 26 ± 8 mV/g
Max. Sensitivity Change Over Time: -17%
Linearity Between 5 to 15 kHz: -10% to 10%
Linearity Between 15 to 20 kHz: 20% to 50%
Main Resonance Frequency: 30 kHz
Impedance: > 1 MOhm
Temperature Dependence of Sensitivity: 0.04 mV/g°C
Capacity Field: 1,150 ± 200 pF
The genuine "Bosch Knock Sensor 2 Pin" is a critical component used for detecting structural-born vibrations in spark ignition engines, particularly those caused by uncontrolled combustion. This sensor is engineered to operate effectively even in extreme conditions, making it a dependable choice for engine monitoring.
Electrical Data:
Frequency Range: 3 to 25 kHz
Weight: 48 g
Sensor Head Height: 18 mm
Sensitivity at 5 kHz: 26 ± 8 mV/g
Max. Sensitivity Change Over Time: -17%
Linearity Between 5 to 15 kHz: -10% to 10%
Linearity Between 15 to 20 kHz: 20% to 50%
Main Resonance Frequency: 30 kHz
Impedance: > 1 MOhm
Temperature Dependence of Sensitivity: 0.04 mV/g°C
Capacity Field: 1,150 ± 200 pF