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CCHN is a trusted U.S. registered company in industrial automation & controls, CCHN's goal is helping saving your money by bypassing all kinds of local dealers/agents in buying industrial automation products from Chinese manufacturers directly. You will be enjoyed to get free tech support on how to choose, how to wire, how to commissioning with CCHN professional engineers. Shopping for your automation systems on CCHN one-stop online store now. The price on the website only for sample reference. for Mass order,please send the enquiry to us.

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Foam cutting is a device for processing materials in the chemical industry such as foam and sponges. It mainly uses the high

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CCHN Industry
 
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CCHN Industry

CCHN is a trusted U.S. registered company in industrial automation & controls, CCHN's goal is helping saving your money by bypassing all kinds of local dealers/agents in buying industrial automation products from Chinese manufacturers directly. You will be enjoyed to get free tech support on how to choose, how to wire, how to commissioning with CCHN professional engineers. Shopping for your automation systems on CCHN one-stop online store now. The price on the website only for sample reference. for Mass order,please send the enquiry to us.

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Foam cutting is a device for processing materials in the chemical industry such as foam and sponges. It mainly uses the high

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Triaxial Accelerometer Sensor, Voltage Output
 
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Triaxial Accelerometer Sensor, Voltage Output


$1289.60
Cheap price triaxial accelerometer sensor with 0-5V voltage output, working temperature -40°C ~ 85°C, 20g Rms, 20-2
SKU: CHN-AS-AKF390
Free Shipping Worldwide
Delivery date: 6-12 days

3-axis accelerometer sensor with cross-axis sensitivity 1%/ 2%, six measuring range can be chosen. It has advantages of strong structure, low power consumption and excellent deviation stability, which guarantees outstanding output reliability.

Parameters

ModelAKF390
Measuring Range (g)±2±4±8±10±20±40
Sensitivity (± 10%) (mA/g)1250625312.525012562.5
Nonlinearity (% FS)(highest)<0.5<0.8<1
Lateral vibration sensitivity ratio (%)125
Deviation Temperature Coefficient (%/ ℃) (Typical value)0.010.05
Cross-axis sensitivity (%)12
Resonance frequency (kHz)2.45.5
noise density (μg/ Hz)2186.6
0g output 2.5V (mV)<0.01<0.008
Bandwidth (3Db) (Hz)1000
Resolution/ Threshold (@ 1Hz) (mg) (highest)<1
Deviation Calibration (mg) (max)<1
Measuring AxisX, Y, Z
Up/ off Power Repeatablity (mg) (max)<2
ReliabilityMIL-HDBK-217, Grade 2
Shock Resistance100g@11ms, Triaxial and Identical (Half Sine Wave)
Recovery Time<1ms (1000g, 1/2 Sin 1ms, Shock Acting On The i Axis)
Vibration20g Rms, 20-2000Hz (Random Noise, o, p, i Per Axis For Action 30 Minutes )
Input(Vdd_Vss)9-36 VDC
Current Consumption<60mA @ 12 VDC
ConnectorIndustrial standard M12 connector
Weight73.5g
Dimension34.3*34.3*38.5mm
CertificateCE
Warranty12 months

Dimension (unit=mm)

 Dimension of accelerometer sensor

Dimension of Mounting Fittings (unit=mm)

Mounting dimension of accelerometer sensor  

        Magnetic adsorption base plate                                                                                  L-type adapter plate 

Electrical Connection

Electrical connection of acceleromrter sensor

Tips: Selection Guide of Triaxial Accelerometer Sensor.

1. Output type

This is the first thing to consider. This depends on the interface between your system and the accelerometer. Generally, the voltage and acceleration of the analog output are proportional, for example, 2.5V corresponds to an acceleration of 0g, and 2.6V corresponds to an acceleration of 0.5g. Digital output generally uses pulse width modulation (PWM) signals.

If you use a microcontroller with only digital inputs, such as BASIC Stamp, then you can only choose a digital output accelerometer, but the problem is that you have to take up an extra clock unit to process the PWM signal, and it is also for the processor. A big burden.

If the microcontroller you are using has an analog input port, such as PIC/AVR/OOPIC, you can easily use an acceleration sensor with an analog interface, all you need is to add a command similar to "acceleration=read_adc()" in the program , And the speed of processing this instruction is only a few microseconds.

2. Number of measuring axes

For most projects, the two-axis acceleration sensor can already meet most applications. For some special applications, such as UAV and ROV control, a three-axis acceleration sensor may be suitable.

3. Maximum measured value

If you only need to measure the inclination angle of the robot relative to the ground, a ±1.5g acceleration sensor is sufficient. But if you need to measure the dynamic performance of the robot, ±2g should also be sufficient. If your robot will suddenly start or stop, then you need a ±5g sensor.