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Brakes and Lamp inspection -Brake and lamp inspection to receive a certificate of compliance that the vehicle is in safe operating condition before the DMV will issue a title to the owner of the vehicle. The brake and lamp inspections and certification must be performed by a repair shop that is certified to perform these inspections.
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SMT16030 DIGITAL TEMPERATURE SENSOR Features Absolute accuracy ± 0.7 °C Linear output within 0.2 °C Resolution better then 0.005 °C Duty Cycle output Calibrated on chip TTL, CMOS compatible Temperature range 175 °C (-45 to +130 °C) Directly connectable to data input of microprocessor Easy multiplexing of multiple sensors Typical applications Heater systems Measuring instruments Washing machines Overheating protection Appliances Introduction The Smartec temperature sensor is a sophisticated full silicon temperature sensor with a digital output. The one wire output (duty-cycle modulated) can be directly connected to all kinds of micro-controllers without the need of A/D conversion. The temperature range is –45 °C to 150 °C. The high resolution (< 0.005 °C) makes the sensor useful for high precision applications. The sensor is available in various housings like T018, T092, T0220 and for high volume production in SOIC. Special housing can be manufactured on request. Product highlights The SMART TEMPERATURE SENSOR features a duty-cycle modulated square wave output voltage with linear response to temperatures in the -45 °C to +130 °C range. The absolute accuracy is better than 1.2 °C. In the range from -30 to +100 °C absolute accuracy is better than 0.7 °C, while the linearity is better than 0.2 °C (Model TO18). -1– SMARTEC B.V, Delpratsingel 26 4811 AP Breda, The Netherlands WWW.SMARTEC.NL Tel: +31(0)765205353 SMT16030 Version 7/2005 The SMART TEMPERATURE SENSOR is calibrated during test and burn-in of the chip. The integrated modulator ensures the sensor unit can communicate effectively with low-cost microcontrollers without the need of (onboard) A/D converters or an Xtal controlled oscillator. The SMART TEMPERATURE SENSOR combines digital output and on-chip calibration to ensure major cost reductions and performance-related advantages. In applications where multiple sensors are used, easy multiplexing can be obtained by using a corresponding number of microprocessor inputs or by using low cost digital multiplexers. Since the sensor requires no subsequent calibration, optimal cost savings are recorded both during manufacturing and in the course of after-sales servicing. Pin-out and housing. SOIC-8 TO92 TO18 TO220 2 Pin 1 5.08 Pin 1 3.85 6.1 Pin 7 GND Pin 8 Out bottom view All Sizes in mm. 0.41 1.27 Pin 5 3 1 +V 123 1 3 2 1 Output 2 + Vcc metal backplate = GND 3 GND HEC housing C = 100 nF C 2 3 2.5 1 Pin 1 Output (between Vcc and GND) Pin 2 + Vcc Pin 3 GND 8.5 mm -2– SMARTEC B.V, Delpratsingel 26 4811 AP Breda, The Netherlands WWW.SMARTEC.NL Tel: +31(0)765205353 SMT16030 Version 7/2005 Specifications TO18 Parameters min typ Supply voltage 4.75 5 Supply current 160 2 TO92 max max 1 TO220 Max HEC max SOIC-8 max Units 7.2 * * * * V. 200 * * * * µA. 130 * * * * °C -30 + 100 ° C 0.7 1.2 1.7 1.5 1 °C -45 + 130 °C 1.2 2 1.7 1.5 1.5 °C 5 Non linearity 0.2 0.4 0.5 1.0 1.0 °C Supply voltage sensitivity ...
Device Overview The UM6 Ultra-Miniature Orientation Sensor combines sensor measurements from rate gyros, accelerometers, and magnetic sensors to measure orientation at 500 Hz. The UM6 also has the capability to interface with external GPS modules to provide position, velocity, course, and speed information. Communication with the UM6 is performed over either a TTL (3.3V) UART or a SPI bus. The UM6 is configured by default to automatically transmit data over the UART. The UM6 can be configured to automatically transmit raw sensor data, processed sensor data, angle estimates, and angle estimate covariances at user configurable rates ranging from 20 Hz to 300 Hz in roughly 1 Hz increments. The UM6 can also receive and parse GPS packets, automatically transmitting new GPS position, velocity, and satellite data whenever it is available. Alternatively, the UM6 can operate in "silent mode," where data is transmitted only when specific requests are received over the UART. Regardless of the transmission mode and rate, internal angle estimates are updated at 500 Hz to improve accuracy. The UM6 simplifies integration by providing a number of automatic calibration routines, including rate gyro bias calibration, magnetometer hard and soft iron calibration, and accelerometer "zeroing" to compensate for sensor-platform misalignment. All calibration routines are triggered by sending simple commands over the serial interface. The UM6 comes factory-calibrated to remove soft and hard iron distortions present in the enclosure. When integrated into the end-user system, additional calibration may be necessary to correct other magnetic field distortions. Magnetometer calibration can be performed using the UM6 interface software, available for free download from www.chrobotics.com/downloads. Temperature compensation of rate gyro biases is also supported by the UM6. An internal temperature sensor is used to measure temperature, and third-order compensation is applied to remove the effects of temperature-induced bias. By default, the terms used in compensation are all zero, which means that no temperature compensation is performed. The compensation terms must be determined experimentally by the end-user. On special request, compensation can be performed on each device at the factory. The UM6 can be configured to use either Euler Angles or quaternions for attitude estimation. In Euler Angle mode, magnetometer updates are restricted to yaw alone. This can be useful in cases where distortions are possible or even expected, and where it would be undesirable for those distortions to affect pitch and roll angles (i.e. on a flying rotorcraft). In quaternion mode, Euler Angles are still available, but there are no restrictions on what angles the magnetometer is allowed to influence. The UM6 is available in an OEM version (the UM6-LT) that has a slightly larger footprint and does not include an enclosure. The UM6-LT is functionally equivalent to the UM6, but magnetometer calibration is not performed at the factory.
01 July 2008 The BMP085 digitalPage 1 sensor is functionally compatible to the existing Bosch pressure Sensortec SMD500 digital pressure sensor. Product photos andofpictures such for © Bosch Sensortec GmbH reserves all rights even in the event of industrial property rights. We reserve all rights disposal are illustration purposes only and registered from the real product’s appearance. as copying and passing on to third parties. BOSCH and the symbol aremay differ trademarks of Robert Bosch GmbH, Germany. Specifications Specifications are subject to change without notice. are subject to change without notice. BMP085 Data sheet Bosch Sensortec BMP085 Digital pressure sensor Key features Pressure range: Supply voltage: 300 ... 1100hPa (+9000m ... -500m above sea level) 1.8 ... 3.6V (VDDA) 1.62V ... 3.6V (VDDD) LCC8 package: Robust, ceramic lead-less chip carrier (LCC) package Small footprint: 5.0mm x 5.0mm Super-flat: 1.2mm height Low power: 5µA at 1 sample / sec. in standard mode Low noise: 0.06hPa (0.5m) in ultra low power mode 0.03hPa (0.25m) ultra high resolution mode < 0.1m possible with software averaging algorithm - Temperature measurement included - I2C interface - Fully calibrated - Pb-free, halogen-free and RoHS compliant, - MSL 1 New features comparison Smaller package height Faster conversion time (standard mode each) Faster I2C data transfer Extended min. supply voltage Lower stand-by current (typ.) External clock BMP085 1.2mm 7.5ms (max.) max. 3.4MHz min. 1.8V 0.1µA not necessary SMD500 1.55mm 34ms max. 400kHz min. 2.2V 0.7µA necessary Typical applications • Enhancement of GPS navigation (dead-reckoning, slope detection, etc.) • In- and out-door navigation • Leisure and sports • Weather forecast • Vertical velocity indication (rise/sink speed) Rev. 1.0 Page 2 01 July 2008 © Bosch Sensortec GmbH reserves all rights even in the event of industrial property rights. We reserve all rights of disposal such as copying and passing on to third parties. BOSCH and the symbol are registered trademarks of Robert Bosch GmbH, Germany. Specifications are subject to change without notice. BMP085 Data sheet Bosch Sensortec BMB085 general description The BMP085 is the fully pin- and function compatible successor of the SMD500, a new generation of high precision digital pressure sensors for consumer applications. The universal C-code SMD500/BMP085 (“BMP085_SMD500_API”) is fully upward compatible to SMD500 and recognizes automatically the device ID. Customers already working with the SMD500 pressure sensor are invited to contact Bosch Sensortec as soon as they intend to switch-over to the BMP085 sensor for getting first-hand support. The ultra-low power, low voltage electronics of the BMP085 is optimized for use in mobile phones, PDAs, GPS navigation devices and outdoor equipment. With a low altitude noise of merely 0.25m at fast conversion time, the BMP085 offers superior performance. The I2C interface allows for easy system integration with a microcontroller. The BMP085 is based on piezo-resistive technology for EMC robustness, high accuracy and linearity as well as long term stability. Robert Bosch is the world market leader for pressure sensors in automotive applications. Based on the experience of over 150 million pressure sensors in the field, the BMP085 continues a ...
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