SCA830-D07 1-AXIS INCLINOMETER WITH DIGITAL SPI INTERFACE

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1 () DATA SHEET SCA83-D7 -AXIS INCLINOMETER WITH DIGITAL SPI INTERFACE Features 3.3V supply voltage g measurement range Single axis measurement in Y direction 3 offset accuracy over temp range SPI digital interface Extensive self diagnostics features Size 7.6 x 3.3 x 8.6 mm (w x h x l) Qualified according to AEC-Q 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 High resolution 6-bit A/D converter Applications The SCA83-D7 is targeted to applications with high stability requirements. Typical applications include Hill Start Aid (HSA) Electronic Parking Brake (EPB) Roll Over detection Suspension control Inclinometers Motion and position measurements General Description The SCA83-D7 is a single axis inclinometer component based on VTI's capacitive 3D-MEMS technology. The component integrates high accuracy micromechanical acceleration sensing together with a flexible SPI digital interface. Dual Flat Lead (DFL) housing guarantees reliable operation over product lifetime. The SCA83-D7 is designed, manufactured and tested for high stability, reliability and quality requirements of automotive applications. The inclinometer has an extremely stable output over wide ranges of temperature, humidity and mechanical noise. The component is qualified to the AEC-Q standard and has several advanced self diagnostics features. The DFL housing is suitable for SMD mounting and the component is compatible with the RoHS and ELV directives. The SCA83-D7 is a part of VTI's digital accelerometer family and fully compatible with its single axis accelerometers (SCA8 Series) and other multi axis accelerometers (SCA Series and SCA3 Series). Murata Electronics Oy SCA83-D7 Doc. No D

2 () Performance Characteristics Vdd=3.3 V and ambient temperature unless otherwise specified. Parameter Condition Min Typ A) Max Units Analog and digital Vdd V Current consumption Active mode Power down mode 6.3. ma ma Measurement range Measurement axis (Y) g Operating temperature -4 C Total offset error B) Temperature range C Offset stability C) Temperature range C Offset calibration error ± ±. Offset temperature drift Temperature range C 3 E) Temperature range C ±3 F) ±.8 Sensitivity 6 bit output between ± Count/g /Count Total sensitivity error Temperature range C -4 4 % FS Sensitivity calibration C ±C ±.4 % FS Sensitivity temperature drift Temperature range C ±.9 % FS Linearity error +g... -g range - Cross-Axis sensitivity ± ±3. % Zero acceleration output -complement Counts Amplitude response -3dB frequency 6. Hz Noise. RMS Power on setup time.3 s Output data rate Hz Output load pf SPI clock rate 8 MHz ESD protection Human Body Model Charge Device Model kv kv Moisture sensitivity level IPC/JEDEC J-STD-C, Level 3 Mechanical shock g ID register value Customer readable ID register (7hex) A A) B) C) D) E) F) Typical ± values are ±3 sigma variation limits from validation test population. Includes offset deviation from g value including calibration error and drift over lifetime, temperature and supply voltage. After mounting of ECU the application and after offset zero-setting at room temperature. Relevant offset failure due to temperature dependency of offset as well as aging over lifetime Includes offset deviation from g value including calibration error and drift over lifetime. Offset drift due to temperature. Value is a relative value and has been centered to zero. Error defined as maximum change of offset in temperature range. Offset (max)-offset Min). % tested in production. Biggest change of output from RT value due temperature. Figure. SCA83-D7 Block diagram Murata Electronics Oy SCA83-D7 Doc. No D

3 Offset[] 3 () Typical Performance characteristics Offset calibration error Offset [] Temperature dependency of offset Offset drift at temperature range o C + o C +3 Sigma Mean -3 Sigma Temp [ o C] Offset drift [] Sensitivity at o C Sensitivity [LSB/g] Sensitivity drift at temperature range -4 o C + o C Sensitivity error [% FS] Murata Electronics Oy SCA83-D7 Doc. No D

4 4 () Measurement directions Figure. Accelerometer measuring directions Earth gravitation PIN Figure 3. Zero acceleration output position Housing dimensions Figure 4. Housing dimensions Murata Electronics Oy SCA83-D7 Doc. No D

5 () Application Note for Acceleration Output Reading (6 bit output sensitivity) This is addition to SCA8X_X_3 Product Family Specification chapter 3.. DOUT_LSB DOUT_MSB Address: 4h Bits Mode Initial Name Description Value 7: R h DATA Acceleration data LSB frame Read always DOUT_MSB prior to DOUT_LSB. Address: h Bits Mode Initial Name Description Value 7: R h DATA Acceleration data MSB frame Reading of this register latches DOUT_LSB. The bit level description of acceleration data from DOUT_LSB... DOUT_MSB registers is presented below. The acceleration data is presented in 's complement format. At g acceleration the output is ideally h. +/-g product DOUT MSB bits(7:) DOUT LSB bits(7:) 6b Bit number [-] Bits (:) SCA8xx s, 6, 8, 64, 3, 6, 8, 4,,,,,,3,6,3 [] [Dec] +g position 3 -g position Full-scale Full-scale s = sign bit Acceleration bits can be converted to acceleration (Acc) using following equation Acc 3 4 s b4 b3 3 b b b 3 b b b b9 9 b8 8 b7 7 b6 6 b b4 4 b3 4 Murata Electronics Oy SCA83-D7 Doc. No D

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