SCA2120-D07 VTI Automotive Digital Accelerometer Platform
Data Sheet
SCA2120-D07 2-AXIS ACCELEROMETER WITH DIGITAL SPI INTERFACE
Features
• • • • • • • • • • • • 3.3V supply voltage ±2 g measurement range 2-axis measurement YZ directions +-70mg offset accuracy over temp range Internal temperature sensor SPI digital interface Enhanced self diagnostics features Size 7.6 x 3.3 x 8.6 mm (w x h x l) Qualified according to AEC-Q100 standard Package, pin-out and SPI protocol compatible with VTI digital accelerometer product family RoHS compliant Dual Flat Lead (DFL) plastic package suitable for lead free soldering process and SMD mounting Proven capacitive 3D-MEMS technology
Applications
SCA2120-D07 is targeted to automotive applications. Typical applications include • Electronic Stability Control (ESC) • Hill Start Aid (HSA) • Electronic Parking Brake (EPB) • Roll Over • Suspension • Inclination • Industrial applications
General Description
SCA2120-D07 is a two axis accelerometer component based on VTI capacitive 3D-MEMS technology. The component integrates high accuracy micromechanical acceleration sensing together with a flexible SPI digital interface. Dual Flat Lead (DFL) housing of the component guarantees robust operation over the product lifetime. SCA2120-D07 is designed, manufactured and tested for high stability, reliability and quality requirements of automotive applications. The accelerometer has extremely stable output over wide range of temperature, humidity and mechanical noise. The component is qualified against AEC-Q100 standard and has several advanced self diagnostics features. The DFL housing is suitable for SMD mounting and the component is compatible with RoHS and ELV directives. SCA2120-D07 is a part of VTI digital accelerometer family and fully compatible with single axis accelerometers (SCA800 series) and other multi axis accelerometers (SCA2100 series and SCA3100 series).
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SCA2120-D07
Performance Characteristics
Vdd=3.3 V and ambient temperature unless otherwise specified. Parameter Condition Min 3.0 Active mode Power down mode Measurement axes (YZ) Temperature range -40 ... +125 °C Temperature range -40 ... +125 °C 12 bit output +1g ... -1g range +2g...+1g, -1g...-2g 2-complement -3dB frequency -4 -20 -40 0 30 55 5 0.1 2000 50 8 2 1 20 000 Typ 3 0.05 -2 -40 -100 -70 900 4 20 40 ±3.5 Max 3.6 5 2 125 100 70 Units V mA mA g °C mg mg Count/g % FS mg mg % Counts Hz mg RMS s Hz pF MHz kV kV g
Analog and digital Vdd Current consumption Measurement range Operating temperature Offset total error A) Offset temperature dependency B) Sensitivity Total sensitivity error Linearity error Cross-Axis sensitivity Zero acceleration output Amplitude response C) Noise Power on setup time Output data rate Output load SPI clock rate ESD protection Moisture sensitivity level Mechanical shock
A)
Human Body Model Charge Device Model IPC/JEDEC J-STD-020C, Level 3
B) C)
Includes offset deviation from 0g value including calibration error and change over lifetime, temperature and supply voltage. Offset dependency due to temperature. Value is a relative value and has not to be centered to zero. See figure 4.
C/V
Analog calibration & ADC
DEMUX 1:4
Lowpass Filter Lowpass Filter Lowpass Filter Lowpass Filter
Decimation Decimation
Coordinate Mapping and Calibration
SCK SPI i/f MISO MOSI CSB
Decimation Decimation
Oscillator & clock
Reference
NonVolatile Memory
Temperature sensor
Continuous self test
Start-up self test
Figure 1. SCA2120-D07 Block diagram
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SCA2120-D07
Figure 2. Accelerometer measuring directions
Figure 3. Housing dimensions
Figure 4. Frequency and phase response curves
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SCA2120-D07
Document Change Control
Author TVi Department/Role ABU / Product manager Approved by
Rev. A B
Date 28.8.2006 6.10.2006
Change Description Preliminary release Resolution from 13 bit to 12 bit, RoHS compliant added Other minor changes Frequency and phase response graph updated, linearity spec. increased to +/-2.0g Version change from D05 to D07 due obsoletion of the old version. No changes in the performance spec.
Author TL TL
Reviewed by
ECN
C
20.6.2007
MiA
D
22.11.2007
TVi
JVa, MiA, JNi
3845
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