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Product OverviewThe STM32F103VBT6 is a 32-bit medium-density performance line Microcontroller Unit offers two 12-bit ADCs and 3 general purpose 16-bit timers plus one PWM timer, as well as standard and advanced communication interfaces up to two I²Cs and SPIs, three USARTs, an USB and a CAN. It incorporates the high performance ARM® Cortex®-M3 32bit RISC core operating at a 72MHz frequency, high-speed embedded memories and an extensive range of enhanced I/Os and peripherals connected to two APB buses. The 100-pin general-purpose microcontroller unit (MCU) feature 128kB flash memory. This blog will introduce STM32F103VBT6 systematically from its features, pinout to its specifications, applications, also including STM32F103VBT6 datasheet and so much more. CatalogProduct OverviewSTM32F103VBT6 FeaturesSTM32F103VBT6 PinoutSTM32F103VBT6 ApplicationsSTM32F103VBT6 CAD ModelsSTM32F103VBT6 Block DiagramSTM32F103VBT6 Circuit DiagramSTM32F103VBT6 PackageSTM32F103VBT6 SpecificationSTM32F103VBT6 ManufacturerSTM32F103VBT6 DatasheetUsing WarningsSTM32F103VBT6 FAQ STM32F103VBT6 FeaturesPOR, PDR and programmable voltage detectorPLL for CPU clockLow power - Sleep, stop and standby modesVBAT supply for RTC and backup registersDual-sample and hold capabilityDebug mode - Serial wire debug (SWD) and JTAG interfaces2 Watchdog timersSysTick timer - 24-bit down counterCRC calculation unit, 96-bit unique ID STM32F103VBT6 PinoutThe following figure is the diagram of STM32F103VBT6 pinout. STM32F103VBT6 Pinout STM32F103VBT6 ApplicationsThe STM32F103xx medium-density performance line microcontroller family are suitable for a wide range of applications such as motor drives, application control, medical and handheld equipment, PC and gaming peripherals, GPS platforms, industrial applications, PLCs, inverters, printers, scanners, alarm systems, video intercoms, and HVACs. STM32F103VBT6 CAD ModelsThe followings are STM32F103VBT6 Symbol, Footprint, and 3D Model. STM32F103VBT6 Symbol STM32F103VBT6 Footprint STM32F103VBT6 3D Model STM32F103VBT6 Block DiagramThe following figure shows the block diagram of STM32F103VBT6. STM32F103VBT6 Block Diagram STM32F103VBT6 Circuit DiagramThe following is the the typical application with a 32.768 kHz crystal . STM32F103VBT6 Circuit Diagram STM32F103VBT6 PackageThe following diagram shows the STM32F103VBT6 package. STM32F103VBT6 Package STM32F103VBT6 SpecificationProduct AttributeAttribute ValueFamily NameSTM32FPackage TypeLQFPMounting TypeSurface MountPin Count100Device CoreARM Cortex M3Data Bus Width32bitProgram Memory Size128 kBMaximum Frequency72MHzRAM Size20 kBUSB Channels1 x DeviceNumber of PWM Units1 x 16 bitNumber of SPI Channels2Typical Operating Supply Voltage2 → 3.6 VNumber of UART Channels0Number of Ethernet Channels0Instruction Set ArchitectureRISCNumber of CAN Channels1Number of ADC Units2Number of Timers3Number of I2C Channels2Number of PCI Channels0Program Memory TypeFlashDimensions14.2 x 14.2 x 1.45mmPulse Width Modulation1 (16 bit) (Motor Control)Maximum Number of Ethernet Channels0Timers3 x 16 bitNumber of USART Channels3Number of LIN Channels0Height1.45mmTimer Resolution16bitMinimum Operating Temperature-40 °CWidth14.2mmADCs16 x 12 bitLength14.2mmMaximum Operating Temperature+85 °C STM32F103VBT6 ManufacturerSTMicroelectronics is a global independent semiconductor company and a leader in developing and delivering semiconductor solutions across the spectrum of microelectronics applications. An unrivaled combination of silicon and system expertise, manufacturing strength, Intellectual Property (IP) portfolio, and strategic partners positions, STMicroelectronics is at the forefront of System-on-Chip (SoC) technology and its products play a key role in enabling today's convergence trends. STM32F103VBT6 DatasheetYou can download STM32F103VBT6 datasheet from the link given below:STM32F103VBT6 Datasheet Using WarningsNote: Please check their parameters and pin configuration before replacing them in your circuit. STM32F103VBT6 FAQWhat is ARM STM?The Arm CoreSight System Trace Macrocell (STM) is a trace source that enables real-time instrumentation of software with no impact on system behavior or performance. What is a microcontroller used for?In the office, microcontrollers are used in computer keyboards, monitors, printers, copiers, fax machines, and telephone systems to name a few. In your home, microcontrollers are used in microwave ovens, washers and dryers, security systems, lawn sprinkler station controllers, and music/video entertainment components. What are examples of microcontroller?The examples of 8-bit microcontrollers are Intel 8031/8051, PIC1x, and Motorola MC68HC11 families. The 16-bit microcontroller performs greater precision and performance as compared to the 8-bit. Where are microcontrollers used in everyday life?Devices used in the kitchen and around the house such as refrigerators, TVs, radios, washing machines, dishwashers and even humidifiers frequently use microcontrollers. Any electronic consumer product that has a key entry for operation has a microcontroller inside. All electronic watches have microcontrollers. What is difference between microprocessor and microcontroller?Microprocessor consists of only a Central Processing Unit, whereas Micro Controller contains a CPU, Memory, I/O all integrated into one chip. The microprocessor uses an external bus to interface to RAM, ROM, and other peripherals, on the other hand, Microcontroller uses an internal controlling bus.
Kynix On 2021-11-18
CatalogDescriptionFunctional DiagramAssembly DiagramOutline DrawingFeaturesTypical ApplicationsMounting & Bonding Techniques for Millimeterwave GaAs MMICsHandling PrecautionsMountingWire BondingDatasheetSpecificationsManufacturerUsing WarningFAQDescriptionThe HMC462 is a GaAs MMIC pHEMT Low Noise Distributed Amplifier which operates between 2 and 20 GHz. The amplifier provides 15 dB of small signal gain, 2.5 dB noise figure, and up to +15.5 dBm of output power at 1dB compression. Gain flatness is excellent at ±0.3 dB from 8 - 14 GHz making the HMC462 ideal for EW, ECM, and Radar applications. The HMC462 requires a single supply of +5V @ 63 mA and is the self biased version of the HMC463. The wideband amplifier I/Os are internally matched to 50 Ohms facilitating integration into Multi-Chip Modules (MCMs). All data is measured with the chip in a 50 Ohm test fixture connected via 0.025 mm (1 mil) diameter wire bonds of 0.31 mm (12 mils) length. Functional Diagram Figure: Functional Diagram Assembly Diagram Figure: Assembly Diagram Outline Drawing Figure: Outline Drawing FeaturesNoise Figure: 2 dBGain: 15 dBP1dB +15.5 dBmSelf-Biased: +5V @ 63 mA50 Ohm Matched Input/OutputDie Size: 3.0 x 1.3 x 0.1 mm Typical ApplicationsThe HMC462 is ideal for:Test InstrumentationMicrowave Radio & VSATMilitary & SpaceTelecom InfrastructureFiber Optics Mounting & Bonding Techniques for Millimeterwave GaAs MMICs The die should be attached directly to the ground plane eutectically or with conductive epoxy (see HMC general Handling, Mounting, Bonding Note). 50 Ohm Microstrip transmission lines on 0.127mm (5 mil) thick alumina thin film substrates are recommended for bringing RF to and from the chip. If 0.254mm (10 mil) thick alumina thin film substrates must be used, the die should be raised 0.150mm (6 mils) so that the surface of the die is coplanar with the surface of the substrate. One way to accomplish this is to attach the 0.102mm (4 mil) thick die to a 0.150mm (6 mil) thick molybdenum heat spreader (moly-tab) which is then attached to the ground plane. Microstrip substrates should be located as close to the die as possible in order to minimize bond wire length. Typical die-to-substrate spacing is 0.076mm to 0.152 mm (3 to 6 mils). Handling Precautions Follow these precautions to avoid permanent damage. Storage: All bare die are placed in either Waffle or Gel based ESD protective containers, and then sealed in an ESD protective bag for shipment. Once the sealed ESD protective bag has been opened, all die should be stored in a dry nitrogen environment. Cleanliness: Handle the chips in a clean environment. DO NOT attempt to clean the chip using liquid cleaning systems. Static Sensitivity: Follow ESD precautions to protect against > ± 250V ESD strikes. Transients: Suppress instrument and bias supply transients while bias is applied. Use shielded signal and bias cables to minimize inductive pickup. General Handling: Handle the chip along the edges with a vacuum collet or with a sharp pair of bent tweezers. The surface of the chip may have fragile air bridges and should not be touched with vacuum collet, tweezers, or fingers. Mounting The chip is back-metallized and can be die mounted with AuSn eutectic preforms or with electrically conductive epoxy. The mounting surface should be clean and flat. Eutectic Die Attach: A 80/20 gold tin preform is recommended with a work surface temperature of 255 ℃ and a tool temperature of 265 ℃. When hot 90/10 nitrogen/hydrogen gas is applied, tool tip temperature should be 290 ℃. DO NOT expose the chip to a temperature greater than 320 ℃ for more than 20 seconds. No more than 3 seconds of scrubbing should be required for attachment. Epoxy Die Attach: Apply a minimum amount of epoxy to the mounting surface so that a thin epoxy fillet is observed around the perimeter of the chip once it is placed into position. Cure epoxy per the manufacturer’s schedule. Wire Bonding Ball or wedge bond with 0.025mm (1 mil) diameter pure gold wire. Thermosonic wirebonding with a nominal stage temperature of 150℃ and a ball bonding force of 40 to 50 grams or wedge bonding force of 18 to 22 grams is recommended. Use the minimum level of ultrasonic energy to achieve reliable wirebonds. Wirebonds should be started on the chip and terminated on the package or substrate. All bonds should be as short as possible <0.31mm (12 mils). DatasheetYou can download the datasheet from the link given below:HMC462-Datasheet SpecificationsManufacturer:Analog Devices Inc.Product Category:RF AmplifierMounting Style:SMD/SMTType:Low Noise AmplifiersTechnology:GaAsOperating Frequency:2 GHz to 20 GHzP1dB - Compression Point:15.5 dBmGain:15 dBOperating Supply Voltage:5 VNF - Noise Figure:2 dBOIP3 - Third Order Intercept:26 dBmOperating Supply Current:63 mAMinimum Operating Temperature:- 55 ℃Maximum Operating Temperature:+ 85 ℃Series:HMC462GPackaging:Gel PackBrand:Analog DevicesFrequency Range:2 GHz to 20 GHzInput Return Loss:19 dBNumber of Channels:1 ChannelPd - Power Dissipation:2.2 WProduct Type:RF AmplifierFactory Pack Quantity:25Subcategory:Wireless & RF Integrated CircuitsTest Frequency:8 GHz to 16 GHzUnit Weight:0.035838 oz ManufacturerAnalog Devices, Inc. (ADI), also known simply as Analog, is an American multinational semiconductor company specializing in data conversion, signal processing and power management technology, headquartered in Wilmington, Massachusetts. Using WarningNote: Please check their parameters and pin configuration before replacing them in your circuit. FAQWhat does a low noise amplifier do?A low-noise amplifier (LNA) is commonly found in all receivers. Its role is to boost the received signal a sufficient level above the noise floor so that it can be used for additional processing. The noise figure of the LNA therefore directly limits the sensitivity of the receiver. Why low noise amplifier is not kept at the indoor unit?For low noise, the amplifier needs to have a high amplification in its first stage. Therefore JFETs and HEMTs are often used. The LNA boosts the antenna signal to compensate for the feedline losses going from the (outdoor) antenna to the (indoor) receiver. What is the difference between low noise amplifier and power amplifier?Power amplifier is optimized for power gain. It does not have to be differential, for example. Types: audio amplifiers, video amplifiers, buffers, RF, etc. Low-noise amplifier (LNA) is optimized for low input noise, either voltage noise Vn or current noise In.
Kynix On 2021-11-18
CatalogProduct OverviewMPXV5010GP CAD ModelsMPXV5010GP SchematicMPXV5010GP FeaturesMPXV5010GP ApplicationsMPXV5010GP DatasheetMPXV5010GP SpecificationsMPXV5010GP ManufacturerUsing WarningMPXV5010GP FAQ Product OverviewThe MPxx5010 series piezoresistive transducers are state-of-the-art monolithic silicon pressure sensors designed for a wide range of applications, but particularly those employing a microcontroller or microprocessor with A/D inputs. This transducer combines advanced micromachining techniques, thin-film metallization, and bipolar processing to provide an accurate, high level analog output signal that is proportional to the applied pressure. The axial port has been modified to accommodate industrial grade tubing. MPXV5010GP CAD ModelsFigure: MPXV5010GP PCB Symbol Figure: MPXV5010GP Footprint Figure: MPXV5010GP 3D Models MPXV5010GP SchematicFigure: MPXV5010GP Fully Integrated Pressure Sensor Schematic MPXV5010GP Features5.0% Maximum Error over 0℃to 85℃Ideally Suited for Microprocessor or Microcontroller-Based SystemsDurable Epoxy Unibody and Thermoplastic (PPS)Surface Mount PackageTemperature Compensated over -40℃to +125℃Patented Silicon Shear Stress Strain GaugeAvailable in Differential and Gauge ConfigurationsAvailable in Surface Mount (SMT) or Through-hole (DIP) Configurations MPXV5010GP ApplicationsHospital BedsHVACRespiratory SystemsProcess ControlWashing Machine Water Level Measurement (Reference AN1950)Ideally Suited for Microprocessor orMicrocontroller-Based SystemsAppliance Liquid Level and Pressure Measurement MPXV5010GP DatasheetYou can download the datasheet from the link given below:MPXV5010GP Datasheet MPXV5010GP SpecificationsProduct AttributeAttribute ValueManufacturer:NXPProduct Category:Board Mount Pressure SensorsPressure Type:GaugeOperating Pressure:0 Pa to 10 kPaAccuracy:5%Output Type:AnalogMounting Style:SMD/SMTOperating Supply Voltage:5 VPort Type:Single Radial BarbedPackage / Case:DIP-8Operating Temperature:-40°C ~ 125°CSeries:MPXx5010Packaging:TrayBrand:NXP SemiconductorsOperating Supply Current:5 mAOutput Voltage:4.7 VPort Size:4.93 mmProduct Type:Pressure SensorsSubcategory:SensorsSupply Voltage - Max:5.25 VSupply Voltage - Min:4.75 VPart # Aliases:9.35319E+11Unit Weight:0.061909 oz MPXV5010GP ManufacturerNXP Semiconductors N.V. is a Netherlands-domiciled American semiconductor manufacturer with headquarters in Eindhoven, Netherlands that focuses in the automotive industry. The company employs approximately 31,000 people in more than 35 countries, including 11,200 engineers in 33 countries. Using WarningNote: Please check their parameters and pin configuration before replacing them in your circuit. MPXV5010GP FAQWhat is meant by pressure sensor?A pressure sensor is a device or instrument which is able to measure the pressure in gases or liquids. A pressure sensor consists of a pressure-sensitive element which can determine the pressure being applied and components to convert the information into an output signal. Why are pressure sensors used?A pressure sensor is a device for pressure measurement of gases or liquids. Pressure sensors are used for control and monitoring in thousands of everyday applications. Pressure sensors can also be used to indirectly measure other variables such as fluid/gas flow, speed, water level, and altitude. Where would a pressure sensor be used?Pressure sensors are used for many automotive, medical, industrial, consumer and building devices, which depend on accurate and stable pressure measurements in order to operate reliably.
Kynix On 2021-11-18
Product OverviewThe LD39200 provides 2 A of maximum current with an input voltage range from 1.25 V to 6.0 V, and a typical dropout voltage of 130 mV.It is stable with ceramic capacitors on the output (10 µF).Typical power supply rejection ratio is 70 dB at 1 kHz and starts to roll off at 20 kHz.The enable logic control function puts the LD39200 in shutdown mode, reducing the total current consumption to 10 nA (typ.).Power Good flag is available on a dedicated pin.The device also includes reverse current protection, short-circuit constant current limit and thermal protection.Typical applications are for Telecom infrastructure and consumer. This blog will introduce LD39200DPUR systematically from its features, pinout to its specifications, applications, also including LD39200DPUR datasheet and so much more. CatalogProduct OverviewLD39200DPUR FeaturesLD39200DPUR PinoutLD39200DPUR ApplicationsLD39200DPUR CAD ModelsLD39200DPUR Application SchematicLD39200DPUR Block DiagramLD39200DPUR PackageLD39200DPUR SpecificationLD39200DPUR ManufacturerLD39200DPUR DatasheetUsing WarningsLD39200DPUR FAQ LD39200DPUR FeaturesInput voltage from 1.25 V to 6.0 VUltra low drop: 130 mV (typ.) at 2 A load1 % output accuracy at 25 °C, 2 % in full temperature rangeHigh PSRR: 70 dB at 1 kHzReverse current protection2 A guaranteed output currentAvailable in fixed and adjustable output voltage version from 0.5 V with 100 mV stepPower GoodInternal current and thermal limitOperating junction temperature range: -40 °C to 125 °CDFN6 (3 x 3 mm) and DFN8 (4 x 4 mm) packages LD39200DPUR PinoutThe following figure is the diagram of LD39200DPUR pinout. LD39200DPUR Pinout LD39200DPUR ApplicationsTelecom infrastructureMedium power POL LD39200DPUR CAD ModelsThe followings are LD39200DPUR Symbol, Footprint, and 3D Model. LD39200DPUR Symbol LD39200DPUR Footprint LD39200DPUR 3D Model LD39200DPUR Application SchematicThe following is the LD39200DPUR typical application schematic. LD39200DPUR Application Schematic LD39200DPUR Block DiagramThe following figure shows the block diagram of LD39200DPUR. LD39200DPUR Block Diagram LD39200DPUR PackageThe following diagram shows the LD39200DPUR package. LD39200DPUR Package LD39200DPUR SpecificationAttributeValueBrandSTMicroelectronicsRegulator TypeLow Dropout VoltageMaximum Output Current2 AOutput Voltage0.8 → 4.5 VNumber of Outputs1Line Regulation0.1 %/VAccuracy±3 %Load Regulation0.4 %/AMounting TypeSurface MountPackage TypeDFNQuiescent Current3 mAPin Count8Output TypeAdjustableDimensions4.1 x 4.1 x 0.95 mmHeight0.95 mmWidth4.1 mmMinimum Operating Temperature-40 °CMinimum Input Voltage1.25 VMaximum Operating Temperature+125 °CLength4.1 mmMaximum Input Voltage6 V LD39200DPUR ManufacturerSTMicroelectronics is a global independent semiconductor company and a leader in developing and delivering semiconductor solutions across the spectrum of microelectronics applications. An unrivaled combination of silicon and system expertise, manufacturing strength, Intellectual Property (IP) portfolio, and strategic partners positions, STMicroelectronics is at the forefront of System-on-Chip (SoC) technology and its products play a key role in enabling today's convergence trends. LD39200DPUR DatasheetYou can download LD39200DPUR datasheet from the link given below:LD39200DPUR Datasheet Using WarningsNote: Please check their parameters and pin configuration before replacing them in your circuit. LD39200DPUR FAQWhat are LDO voltage regulators?An LDO regulator is a linear regulator that can operate at a very low potential difference between the input and output voltage. A linear regulator is a type of power supply IC that can output a steady voltage from an input voltage and is used in a variety of electronic devices. How does a LDO regulator work?The working principle of LDO regulator is just like that of an ordinary linear voltage regulator. The essential components of an LDO voltage regulator are a reference voltage source, error amplifier and series pass element (BJT or MOSFET). What is the use of LDO regulator?LDO regulators are used to derive lower output voltages from a main supply or battery. The output voltage is ideally stable with line and load variations, immune to changes in ambient temperature, and stable over time.
Kynix On 2021-11-18
CatalogDescriptionLIS2DE12TR CAD ModelsLIS2DE12TR Pin ConnectionsLIS2DE12TR Block DiagramLIS2DE12TR FeaturesLIS2DE12TR ApplicationsLIS2DE12TR DatasheetLIS2DE12TR SpecificationsLIS2DE12TR ManufacturerUsing WarningLIS2DE12TR FAQDescriptionThe LIS2DE12 is an ultra-low-power highperformance three-axis linear accelerometer belonging to the “femto” family with digital I2C/SPI serial interface standard output. The LIS2DE12 has user-selectable full scales of ±2g/±4g/±8g/±16g and is capable of measuring accelerations with output data rates from 1 Hz to 5.3 kHz. The self-test capability allows the user to check the functionality of the sensor in the final application. The device may be configured to generate interrupt signals by detecting two independent inertial wake-up/free-fall events as well as by the position of the device itself. The LIS2DE12 is available in a small thin plastic land grid array package (LGA) and is guaranteed to operate over an extended temperature range from -40 °C to +85 °C. LIS2DE12TR CAD Models Figure: PCB Symbol Figure: Footprint Figure: 3D Model LIS2DE12TR Pin Connections Figure: Pin Connections LIS2DE12TR Block Diagram Figure: Block Diagram LIS2DE12TR FeaturesWide supply voltage, 1.71 V to 3.6 VIndependent IO supply (1.8 V) and supply voltage compatibleUltra-low power consumption down to 2 μA±2g/±4g/±8g/±16g selectable full scalesI2C/SPI digital output interface8-bit data output2 independent programmable interrupt generators for free-fall and motion detection6D/4D orientation detection“Sleep-to-wake” and “return-to-sleep” functionsFree-fall detectionMotion detectionEmbedded temperature sensorEmbedded FIFOECOPACK®, RoHS https://en.wikipedia.org/wiki/Restriction_of_Hazardous_Substances_Directiveand “Green” compliant LIS2DE12TR ApplicationsMotion-activated functionsDisplay orientationShake controlPedometerGaming and virtual reality input devicesImpact recognition and logging LIS2DE12TR DatasheetYou can download the datasheet from the link given below:LIS2DE12TR-Datasheet LIS2DE12TR SpecificationsManufacturer:STMicroelectronicsProduct Category:AccelerometersSensor Type:3-axisSensing Axis:X, Y, ZAcceleration:2 g, 4 g, 8 g, 16 gSensitivity:187.5 mg/digitOutput Type:DigitalInterface Type:I2C, SPIResolution:8 bitSupply Voltage - Max:3.6 VSupply Voltage - Min:1.71 VMinimum Operating Temperature:- 40 ℃Maximum Operating Temperature:+ 85 ℃Mounting Style:SMD/SMTPackage / Case:LGA-12Packaging:ReelPackaging:Cut TapePackaging:MouseReelBrand:STMicroelectronicsMoisture Sensitive:YesProduct Type:AccelerometersSeries:LIS2DE12Factory Pack Quantity:8000Subcategory:SensorsUnit Weight:0.002716 oz LIS2DE12TR ManufacturerSTMicroelectronics is a French-Italian multinational electronics and semiconductors manufacturer headquartered in Plan-les-Ouates near Geneva, Switzerland. The company resulted from the merger of two government-owned semiconductor companies in 1987: "Thomson Semiconducteurs" of France and "SGS Microelettronica" of Italy. It is commonly called "ST", and it is Europe's largest semiconductor chip maker based on revenue. While STMicroelectronics corporate headquarters and the headquarters for EMEA region are based in the Canton of Geneva, the holding company, STMicroelectronics N.V. is incorporated in the Netherlands. Using WarningNote: Please check their parameters and pin configuration before replacing them in your circuit. LIS2DE12TR FAQWhat is the difference between accelerometer and linear accelerometer?Using the key principles of angular momentum, the gyroscope helps indicate orientation. In comparison, the accelerometer measures linear acceleration based on vibration. The typical two-axis accelerometer gives users a direction of gravity in an aircraft, smartphone, car or other device. Can accelerometer measure linear acceleration?Description. Get the measurement of acceleration in m/s2 in the X, Y, and Z directions from the accelerometer on the Android™ device. The Accelerometer block has three outputs: X , Y , and Z. The X and Y axes, which are perpendicular to the acceleration of Earth gravity, both output ≈0 What is MEMS accelerometer sensor?MEMS accelerometers are used wherever there is a need to measure linear motion, either movement, shock or vibration but without a fixed reference. They measure the linear acceleration of whatever they are attached to.
Kynix On 2021-11-18
CatalogProduct OverviewLIS2HH12TR Pin ConnectionsLIS2HH12TR Block DiagramLIS2HH12TR FeaturesLIS2HH12TR ApplicationsLIS2HH12TR DatasheetLIS2HH12TR SpecificationsLIS2HH12TR ManufacturerUsing WarningLIS2HH12TR FAQ Product OverviewThe LIS2HH12 is an ultra-low-power highperformance three-axis linear accelerometer belonging to the “pico” family. The LIS2HH12 has full scales of ±2g/±4g/±8g and is capable of measuring accelerations with output data rates from 10 Hz to 800 Hz. The self-test capability allows the user to check the functioning of the sensor in the final application. The LIS2HH12 has an integrated first-in, first-out (FIFO) buffer allowing the user to store data in order to limit intervention by the host processor. The LIS2HH12 is available in a small thin plastic land grid array package (LGA) and it is guaranteed to operate over an extended temperature range from -40 °C to +85 °C. LIS2HH12TR Pin ConnectionsFigure: LIS2HH12TR Pin Connections LIS2HH12TR Block DiagramFigure: LIS2HH12TR Block Diagram LIS2HH12TR Timing DiagramFigure: LIS2HH12TR I2C slave timing diagram Figure: LIS2HH12TR SPI slave timing diagram LIS2HH12TR FeaturesWide supply voltage, 1.71 V to 3.6 VIndependent IOs supply (1.8 V) and supply voltage compatibleUltra-low power consumption2g/±4g/±8g full-scaleI2C/SPI digital output interface16-bit data outputEmbedded temperature sensorEmbedded self-testEmbedded FIFO10000 g high shock survivabilityECOPACK®, RoHS and “Green” compliant LIS2HH12TR ApplicationsMotion-controlled user interfacesGaming and virtual realityPedometersIntelligent power saving for handheld devicesDisplay orientationClick/double-click recognitionImpact recognition and loggingVibration monitoring and compensation LIS2HH12TR DatasheetYou can download the datasheet from the link given below:LIS2HH12TR Datasheet LIS2HH12TR SpecificationsProduct AttributeAttribute ValueManufacturer:STMicroelectronicsProduct Category:AccelerometersSensor Type:3-axisSensing Axis:X, Y, ZAcceleration:2 g, 4 g, 8 gSensitivity:0.061 mg/digit, 0.122 mg/digit, 0.244 mg/digitOutput Type:DigitalInterface Type:I²C, SPIResolution:16 bitSupply Voltage:1.71V ~ 3.6VOperating Supply Current:180 uAOperating Temperature-40°C ~ 85°C (TA)Mounting Style:SMD/SMTPackage / Case:LGA-12Brand:STMicroelectronicsMoisture Sensitive:YesProduct Type:AccelerometersSeries:LIS2HH12Subcategory:SensorsUnit Weight:0.002787 oz LIS2HH12TR ManufacturerSTMicroelectronics is a French-Italian multinational electronics and semiconductors manufacturer headquartered in Plan-les-Ouates near Geneva, Switzerland. The company resulted from the merger of two government-owned semiconductor companies in 1987: "Thomson Semiconducteurs" of France and "SGS Microelettronica" of Italy. It is commonly called "ST", and it is Europe's largest semiconductor chip maker based on revenue. While STMicroelectronics corporate headquarters and the headquarters for EMEA region are based in the Canton of Geneva, the holding company, STMicroelectronics N.V. is incorporated in the Netherlands. Using WarningNote: Please check their parameters and pin configuration before replacing them in your circuit. LIS2HH12TR FAQWhat is an LIS2HH12TR?STMicroelectronics' LIS2HH12 MEMS Digital Output Motion Sensor is an ultra-low-power high-performance three-axis linear accelerometer belonging to the "pico" family. The self-test capability allows the user to check the functioning of the sensor in the final application. What is STMicroelectronics accelerometer?STMicroelectronics MEMS Accelerometers include analog and digital sensors featuring up to ±400g acceleration full scale and from 1.71V to 3.6V supply voltage. Accelerometers are an ideal choice for ultra-low-power applications and have advanced power-saving features. What is an accelerometer used for?An accelerometer is a basic technology that converts mechanical motion into an electrical signal. It is an electromechanical device that measures acceleration force, whether caused by gravity or motion.
Kynix On 2021-11-17
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