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CA-DR-2002
CA-DR-2002
Two Axis DC MEMS Accelerometer Transducer for Vibration Measurement
FEATURES:
Differential capacitance working principle
Wide frequency range from DC to 400Hz
Stable performance
Convenient in use
Specifications:
Sensitivity (at 20°±5C) | 33±10% mV/ m/s2 (X、Y) |
Measurement range (pk) | ±20m/s2 |
Transverse sensitivity | ≤5 % |
Non-linearity | ≤0.5% |
Frequency response see graph below | DC to 500 Hz |
Mounted resonance | 10,000Hz |
Temperature range | -40 to +85 ℃ |
Temperature sensitivity | 0.5%/℃ |
Shock Limit (No Supply) | ±5000 m/s2 |
Power Supply | +5 to +16 VDC |
Operating Current | ≤3mA |
Offset Voltage(0 g) | 2.5±0.1VDC |
Noise(100Hz) | <1mVrms |
Output impedance | <100 Ω |
Weight | 22 g |
Case material | Stainless Steel |
Mounting | 4-Φ2.8 hole |
Output Cable
| 2m integral 4 core shielded cable: Red: Power Supply; White: Ground; Green : X-axial output; Blue: Y-axial output;
|
Accessories | |
Calibration Chart | one |
M2.5×20 Screw | 4 |
Image:
Typical Temperature Response
Typical Frequency Response
Two Axis DC MEMS Accelerometer Transducer for Vibration Measurement
FEATURES:
Differential capacitance working principle
Wide frequency range from DC to 400Hz
Stable performance
Convenient in use
Specifications:
Sensitivity (at 20°±5C) | 33±10% mV/ m/s2 (X、Y) |
Measurement range (pk) | ±20m/s2 |
Transverse sensitivity | ≤5 % |
Non-linearity | ≤0.5% |
Frequency response see graph below | DC to 500 Hz |
Mounted resonance | 10,000Hz |
Temperature range | -40 to +85 ℃ |
Temperature sensitivity | 0.5%/℃ |
Shock Limit (No Supply) | ±5000 m/s2 |
Power Supply | +5 to +16 VDC |
Operating Current | ≤3mA |
Offset Voltage(0 g) | 2.5±0.1VDC |
Noise(100Hz) | <1mVrms |
Output impedance | <100 Ω |
Weight | 22 g |
Case material | Stainless Steel |
Mounting | 4-Φ2.8 hole |
Output Cable
| 2m integral 4 core shielded cable: Red: Power Supply; White: Ground; Green : X-axial output; Blue: Y-axial output;
|
Accessories | |
Calibration Chart | one |
M2.5×20 Screw | 4 |
Image:
Typical Temperature Response
Typical Frequency Response
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