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CatalogProduct OverviewMK64FN1M0VLL12 CAD ModelsMK64FN1M0VLL12 Pin ConfigurationMK64FN1M0VLL12 Block DiagramMK64FN1M0VLL12 FeaturesMK64FN1M0VLL12 DatasheetMK64FN1M0VLL12 SpecificationsMK64FN1M0VLL12 ManufacturerUsing WarningMK64FN1M0VLL12 FAQ Product OverviewThe K64 product family members are optimized for cost-sensitive applications requiring low-power, USB/Ethernet connectivity, and up to 256 KB of embedded SRAM. These devices share the comprehensive enablement and scalability of the Kinetis family. MK64FN1M0VLL12 CAD ModelsFigure: MK64FN1M0VLL12 PCB Symbol Figure: MK64FN1M0VLL12 Footprint Figure: MK64FN1M0VLL12 3D Models MK64FN1M0VLL12 Pin ConfigurationFigure: MK64FN1M0VLL12 Pin Configuration MK64FN1M0VLL12 Block DiagramFigure: MK64FN1M0VLL12 Block Diagram MK64FN1M0VLL12 Features1)PerformanceUp to 120 MHz ARM® Cortex®-M4 core with DSPinstructions and floating point unit2)Memories and memory interfacesUp to 1 MB program flash memory and 256 KB RAMUpto 128 KB FlexNVM and 4 KB FlexRAM on deviceswith FlexMemoryFlexBus external bus interface3)System peripheralsMultiple low-power modes, low-leakage wake-up unitMemory protection unit with multi-master protection16-channel DMA controllerExternal watchdog monitor and software watchdog4)Security and integrity modulesHardware CRC moduleHardware random-number generatorHardware encryption supporting DES, 3DES, AES,MD5,SHA-1, and SHA-256 algorithms128-bit unique identification (ID) number per chip4)Analog modulesTwo 16-bit SAR ADCsTwo 12-bit DACsThree analog comparators (CMP)Voltage reference5)Communication interfacesEthernet controller with MII and RMII interfaceUSB full-/low-speed On-the-Go controllerController Area Network (CAN) moduleThree SPI modulesThree I2C modules. Support for up to 1 Mbit/sSix UART modulesSecure Digital Host Controller (SDHC)I2S module6)TimersTwo 8-channel Flex-Timers (PWM/Motor control)Two 2-channel FlexTimers (PWM/Quad decoder)IEEE 1588 timers32-bit PITs and 16-bit low-power timersReal-time clockProgrammable delay block7)Clocks3 to 32 MHz and 32 kHz crystal oscillatorPLL, FLL, and multiple internal oscillators48 MHz Internal Reference Clock (IRC48M)8)Operating CharacteristicsVoltage range: 1.71 to 3.6 VFlash write voltage range: 1.71 to 3.6 VTemperature range (ambient): –40 to 105°C MK64FN1M0VLL12 DatasheetYou can download the datasheet from the link given below:MK64FN1M0VLL12 Datasheet MK64FN1M0VLL12 SpecificationsProduct AttributeAttribute ValueManufacturer:NXPProduct Category:ARM Microcontrollers - MCUMounting Style:SMD/SMTPackage / Case:LQFP-100Core:ARM Cortex M4Program Memory Size:1 MBData Bus Width:32 bitADC Resolution:16 bitMaximum Clock Frequency:120 MHzNumber of I/Os:66 I/OData RAM Size:256 kBOperating Supply Voltage:1.71 V to 3.6 VOperating Temperature-40°C ~ 105°C (TA)Packaging:TrayAnalog Supply Voltage:3.3 VBrand:NXP SemiconductorsData RAM Type:FlashData ROM Type:EEPROMI/O Voltage:3.3 VInterface Type:CAN, I2C, I2S, UART, SDHC, SPIMoisture Sensitive:YesNumber of ADC Channels:2 ChannelProcessor Series:ARMProduct:MCUProduct Type:ARM Microcontrollers - MCUProgram Memory Type:FlashSubcategory:Microcontrollers - MCUSupply Voltage - Max:3.6 VSupply Voltage - Min:1.71 VUnit Weight:0.024339 oz MK64FN1M0VLL12 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. MK64FN1M0VLL12 FAQWhat are ARM microcontrollers?The Arm® Cortex®-M group of processor cores is a series of cores optimized for power efficiency and deterministic operation. It is widely used in microcontrollers (MCUs) and can also be found embedded into multi-core microprocessors (MPUs).What does ARM stand for?ARM (stylised in lowercase as arm, previously an acronym for Advanced RISC Machines and originally Acorn RISC Machine) is a family of reduced instruction set computing (RISC) architectures for computer processors, configured for various environments. What is the advantages of ARM?ARM performs single operation at a time. This makes it work faster. It has lower latency that is quicker response time. ARM processors are designed so that they can be used in cases of multiprocessing systems where more than one processors are used to process information. Which architecture is used in ARM?An ARM processor is one of a family of CPUs based on the RISC (reduced instruction set computer) architecture developed by Advanced RISC Machines (ARM). ARM makes 32-bit and 64-bit RISC multi-core processors. What is the 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. 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 2021-11-12
CatalogDescriptionLSM6DSMTR CAD ModelsLSM6DSMTR Pin ConfigurationLSM6DSMTR Block Diagram of FiltersLSM6DSMTR FeaturesLSM6DSMTR ApplicationsEmbedded Low-power FeaturesLSM6DSMTR DatasheetLSM6DSMTR SpecificationsLSM6DSMTR ManufacturerUsing WarningLSM6DSMTR FAQDescriptionThe LSM6DSM is a system-in-package featuring a 3D digital accelerometer and a 3D digital gyroscope performing at 0.65 mA in high-performance mode and enabling always-on low-power features for an optimal motion experience for the consumer. The LSM6DSM supports main OS requirements, offering real, virtual and batch sensors with 4 kbyte for dynamic data batching. ST’s family of MEMS sensor modules leverages the robust and mature manufacturing processes already used for the production of micromachined accelerometers and gyroscopes. The various sensing elements are manufactured using specialized micromachining processes, while the IC interfaces are developed using CMOS technology that allows the design of a dedicated circuit which is trimmed to better match the characteristics of the sensing element. The LSM6DSM has a full-scale acceleration range of ±2/±4/±8/±16 g and an angular rate range of ±125/±250/±500/±1000/±2000 dps. The LSM6DSM fully supports EIS and OIS applications as the module includes a dedicated configurable signal processing path for OIS and auxiliary SPI configurable for both the gyroscope and accelerometer. High robustness to mechanical shock makes the LSM6DSM the preferred choice of system designers for the creation and manufacturing of reliable products. The LSM6DSM is available in a plastic land grid array (LGA) package. LSM6DSMTR CAD Models Figure: PCB Symbol Figure: Footprint Figure: 3D Model LSM6DSMTR Pin Configuration Figure: Pin Configuration LSM6DSMTR Block Diagram of Filters Figure: Block Diagram of Filters LSM6DSMTR Features“Always-on” experience with low power consumption for both accelerometer and gyroscopePower consumption: 0.4 mA in combo normal mode and 0.65 mA in combo high-performance modeSmart FIFO up to 4 kbyte based on features setAndroid M compliantAuxiliary SPI for OIS data output for gyroscope and accelerometerHard, soft ironing for external magnetic sensor corrections±2/±4/±8/±16 gfull scale±125/±250/±500/±1000/±2000 dps full scaleAnalog supply voltage: 1.71 V to 3.6 VSPI & I2C serial interface with main processor data synchronizationDedicated gyroscope low-pass filters for UI and OIS applicationsSmart embedded functions: pedometer, step detector and step counter, significant motion and tiltStandard interrupts: free-fall, wakeup, 6D/4D orientation, click and double-clickEmbedded temperature sensorECOPACK®, RoHS and “Green” compliant LSM6DSMTR ApplicationsMotion tracking and gesture detectionSensor hubIndoor navigationIoT and connected devicesSmart power saving for handheld devicesEIS and OIS for camera applicationsVibration monitoring and compensation Embedded Low-power FeaturesThe LSM6DSM has been designed to be fully compliant with Android, featuring the following on-chip functions:4 kbyte data buffering – 100% efficiency with flexible configurations and partitioning – Possibility to store timestampEvent-detection interrupts (fully configurable): – Free-fall – Wakeup – 6D orientation – Click And double-click sensing – Activity / inactivity recognitionSpecific IP blocks with negligible power consumption and high-performance: – Pedometer functions: step detector and step counters – Tilt – Absolute Wrist Tilt – Significant Motion DetectionSensor hub – Up to 6 total sensors: 2 internal (accelerometer and gyroscope) and 4 external sensorsData rate synchronization with external trigger for reduced sensor access and enhanced fusion LSM6DSMTR DatasheetYou can download the datasheet from the link given below:LSM6DSMTR -Datasheet LSM6DSMTR SpecificationsManufacturer:STMicroelectronicsProduct Category:IMUs - Inertial Measurement UnitsSensor Type:6-axisSensing Axis:X, Y, ZSensitivity:0.061 mg/LSB, 0.122 mg/LSB, 0.244 mg/LSB, 0.488 mg/LSBAcceleration:2 g, 4 g, 8 g, 16 gOutput Type:DigitalInterface Type:I2C, SPIResolution:16 bitOperating Supply Current:650 uASupply Voltage - Min:1.71 VSupply Voltage - Max:3.6 VMinimum Operating Temperature:- 40 CMaximum Operating Temperature:+ 85 CPackage / Case:LGA-14Packaging:ReelPackaging:Cut TapePackaging:MouseReelBrand:STMicroelectronicsMoisture Sensitive:YesProduct Type:IMUs - Inertial Measurement UnitsSeries:LSM6DSMFactory Pack Quantity:5000Subcategory:SensorsUnit Weight:0.004233 oz LSM6DSMTR 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. LSM6DSMTR FAQWhere is inertial sensor used?High-end inertial sensors are used in military and aerospace applications like smart ammunition, aircraft dynamics control, crash detection, seat ejection system in aircrafts, and microgravity measurement. Accelerometers consist of a mechanical sensing element that can measure acceleration in one or more axis. What is an IMU used for?An Inertial Measurement Unit (IMU) is a device that can measure and report specific gravity and angular rate of an object to which it is attached. What does the IMU consist of?The IMU is a sensor that measures triaxial acceleration and triaxial angular velocity. The IMU consists of an accelerometer, which can output linear acceleration signals on three axes in space, and a gyroscope, which can output angular velocity signals on three axes in space.
Kynix On 2021-11-11
Product OverviewThe ADG1408/ADG1409 are monolithic iCMOS® analog multiplexers comprising eight single channels and four differential channels, respectively. The ADG1408 switches one of eight inputs to a common output, as determined by the 3-bit binary address lines, A0, A1, and A2. The ADG1409 switches one of four differential inputs to a common differential output, as determined by the 2-bit binary address lines, A0 and A1. An EN input on both devices is used to enable or disable the device. When disabled, all channels are switched off. This blog will introduce ADG1409YRUZ systematically from its features, pinout to its specifications, applications, also including ADG1409YRUZ datasheet and so much more. CatalogProduct OverviewADG1409YRUZ FeaturesADG1409YRUZ PinoutADG1409YRUZ ApplicationsADG1409YRUZ CAD ModelsADG1409YRUZ Block DiagramADG1409YRUZ Circuit DiagramADG1409YRUZ SpecificationADG1409YRUZ ManufacturerADG1409YRUZ DatasheetUsing WarningsADG1409YRUZ FAQ ADG1409YRUZ Features7 Ω maximum on resistance at 25°C5 Ω on-resistance flatnessUp to 190 mA continuous currentFully specified at ±15 V/+12 V/±5 V3 V logic-compatible inputsRail-to-rail operationBreak-before-make switching action16-lead TSSOP and 4 mm × 4 mm LFCSP ADG1409YRUZ PinoutThe following figure is the diagram of ADG1409YRUZ pinout. ADG1409YRUZ Pinout ADG1409YRUZ ApplicationsRelay replacementAudio and video routingAutomatic test equipmentData acquisition systemsTemperature measurement systemsAvionicsBattery-powered systemsCommunication systemsMedical equipment ADG1409YRUZ CAD ModelsThe followings are ADG1409YRUZ Symbol, Footprint, and 3D Model. ADG1409YRUZ Symbol ADG1409YRUZ Footprint ADG1409YRUZ 3D Model ADG1409YRUZ Block DiagramThe following figure shows the block diagram of ADG1409YRUZ. ADG1409YRUZ Block DiagramADG1409YRUZ Circuit DiagramThe following is the circuit diagram of ADG1409YRUZ. Address to Output Switching Times, tTRANSITION ADG1409YRUZ SpecificationProduct AttributeAttribute ValueManufacturer:Analog Devices Inc.Product Category:Multiplexer Switch ICsSeries:ADG1409Product:MultiplexersMounting Style:SMD/SMTNumber of Channels:4 ChannelConfiguration:2 x 4:1On Resistance - Max:4 OhmsOff Time - Max:100 nsMinimum Operating Temperature:- 40 CMaximum Operating Temperature:+ 125 CPackaging:TubeBandwidth:115 MHzBrand:Analog DevicesDevelopment Kit:EVAL-CN0251-SDPZHeight:1.05 mmLength:5 mmOff Isolation - Typ:- 70 dBOperating Supply Voltage:12 VPd - Power Dissipation:4.9 mWProduct Type:Multiplexer Switch ICsSubcategory:Switch ICsWidth:4.4 mm ADG1409YRUZ ManufacturerAnalog Devices has built one of the longest standing, highest growth companies within the technology sector utilizing cultural pillars such as innovation, performance, and excellence. Acknowledged industry-wide as the world leader in data conversion and signal conditioning technology, Analog Devices serves over 100,000 customers, representing virtually all types of electronic equipment. Celebrating over 50 years as a leading global manufacturer of high-performance integrated circuits used in analog and digital signal processing applications, Analog Devices is headquartered in Norwood, Massachusetts, with design and manufacturing facilities throughout the world. Analog Devices' is included in the S&P 500 Index. ADG1409YRUZ DatasheetYou can download ADG1409YRUZdatasheet from the link given below:ADG1409YRUZ Datasheet Using WarningsNote: Please check their parameters and pin configuration before replacing them in your circuit. ADG1409YRUZ FAQWhat is a multiplexer?A multiplexer (MUX) is a device that can receive multiple input signals and synthesize a single output signal in a recoverable manner for each input signal. It is also an integrated system that usually contains a certain number of data inputs and a single output. What are multiplexers used for?A multiplexer is a device that takes multiple analog signals and forwards the selected input into a single line. These devices are used to increase the amount of data that can be transmitted over a network. What is multiplexer with example?Multiplexer means many into one. A multiplexer is a circuit used to select and route any one of the several input signals to a single output. A simple example of an non-electronic circuit of a multiplexer is a single pole multi-position switch. A mechanical switch cannot perform this task efficiently. How do multiplexers work?A multiplexer is a system of multiple inputs and just one output to receive signals coming from multiple acquisition networks. The device transfers all input signals to a microprocessor, which receives and processes the data, transmits it to the output devices, and controls the system as a whole. What is multiplexer in data communication?Multiplexing is the technology that is able to combine multiple communication signals together in order for them to traverse an otherwise single signal communication medium simultaneously.
Kynix On 2021-11-11
CatalogProduct OverviewMBR0540T1G CAD ModelsMBR0540T1G Marking DiagramMBR0540T1G FeaturesMBR0540T1G Mechanical CharacteristicsMBR0540T1G DatasheetMBR0540T1G SpecificationsMBR0540T1G ManufacturerUsing WarningMBR0540T1G FAQ Product OverviewThe Schottky Power Rectifier employs the Schottky Barrier principle with a barrier metal that produces optimal forward voltage drop−reverse current trade off. Ideally suited for low voltage, high frequency rectification, or as a free wheeling and polarity protection diodes in surface mount applications where compact size and weight are critical to the system. This package provides an alternative to the leadless 34 MELF style package. MBR0540T1G CAD ModelsFigure: MBR0540T1G PCB Symbol Figure: MBR0540T1G Footprint Figure: MBR0540T1G 3D Models MBR0540T1G Marking DiagramFigure: MBR0540T1G Marking Diagram MBR0540T1G FeaturesGuardring for Stress ProtectionVery Low Forward VoltageEpoxy Meets UL 94 V−0 @ 0.125 inPackage Designed for Optimal Automated BoardAssemblyAEC−Q101 Qualified and PPAP CapableNRVB Prefix for Automotive and Other ApplicationsRequiring Unique Site and Control Change RequirementsAll Packages are Pb−Free* MBR0540T1G Mechanical CharacteristicsDevice Marking: B4Polarity Designator: Cathode BandWeight: 11.7 mg (approximately)Case: Epoxy MoldedFinish: All External Surfaces Corrosion Resistant andTerminal Leads are Readily SolderableLead and Mounting Surface Temperature for Soldering Purposes:260℃ max. for 10 SecondsESD Rating:Human Body Model = 3B Machine Model = C MBR0540T1G DatasheetYou can download the datasheet from the link given below:MBR0540T1G Datasheet MBR0540T1G SpecificationsProduct AttributeAttribute ValueManufacturer:onsemiProduct Category:Schottky Diodes & RectifiersProduct:Schottky DiodesMounting Style:SMD/SMTPackage / Case:SOD-123-2Configuration:SingleTechnology:SiIf - Forward Current:500 mAVrrm - Repetitive Reverse Voltage:40 VVf - Forward Voltage:620 mVIfsm - Forward Surge Current:5.5 AIr - Reverse Current:20 uAOperating Temperature - Junction-55°C ~ 150°CSeries:MBR0540Brand:onsemiHeight:1.12 mmLength:2.69 mmProduct Type:Schottky Diodes & RectifiersSubcategory:Diodes & RectifiersTermination Style:SMD/SMTType:Schottky DiodeWidth:1.6 mmPart # Aliases:MBR0540T3GUnit Weight:0.001058 oz MBR0540T1G ManufacturerOnsemi is driving energy efficient innovations, empowering customers to reduce global energy use. The company offers a comprehensive portfolio of energy efficient power and signal management, logic, discrete and custom solutions to help design engineers solve their unique design challenges in automotive, communications, computing, consumer, industrial, LED lighting, medical, military/aerospace and power supply applications. onsemi operates a responsive, reliable, world-class supply chain and quality program, and a network of manufacturing facilities, sales offices and design centers in key markets throughout North America, Europe, and the Asia Pacific regions. Using WarningNote: Please check their parameters and pin configuration before replacing them in your circuit. MBR0540T1G FAQWhat is meant by Schottky diode?The Schottky diode (named after the German physicist Walter H. Schottky), also known as Schottky barrier diode or hot-carrier diode, is a semiconductor diode formed by the junction of a semiconductor with a metal. It has a low forward voltage drop and a very fast switching action.Which metal is used in Schottky diode?A metal-semiconductor junction is formed between a metal and a semiconductor, creating a Schottky barrier instead of a semiconductor-semiconductor junction as in conventional diodes. The semiconductor would typically be N-type silicon and typical metals used are molybdenum, platinum, chromium or tungsten. What is a Schottky diode used for?Schottky diodes are used for their low turn-on voltage, fast recovery time and low-loss energy at higher frequencies. These characteristics make Schottky diodes capable of rectifying a current by facilitating a quick transition from conducting to blocking state. How do I know if my Schottky diode is bad?Listen for a “beep” or a “buzz” from the multimeter. If the Schottky diode responds as expected, the multimeter will sound a tone. If the multimeter does not sound a tone, the Schottky diode is not functioning correctly. What is the difference between diode and Schottky diode?Like other diodes, the Schottky diode controls the direction of current flow in a circuit. However, unlike standard diodes, the Schottky diode is known for its low forward voltage and fast switching ability. This makes them an ideal choice for radio frequency applications and any device with low voltage requirements.
Kynix On 2021-11-11
Product OverviewThe FXOS8700CQR1 is a 6-axis Digital Sensor combines industry-leading accelerometer and magnetometer sensors. The 14-bit accelerometer and 16-bit magnetometer are combined with a high-performance ASIC to enable an E-compass solution capable of a typical orientation resolution of 0.1 and sub-5° compass heading accuracy for most applications. This blog will introduce FXOS8700CQR1 systematically from its features, pinout to its specifications, applications, also including FXOS8700CQR1 datasheet and so much more. CatalogProduct OverviewRelated Video IntroductionFXOS8700CQR1 FeaturesFXOS8700CQR1 PinoutFXOS8700CQR1 ApplicationsFXOS8700CQR1 CAD ModelsFXOS8700CQR1 Block DiagramFXOS8700CQR1 Circuit DiagramFXOS8700CQR1 SpecificationFXOS8700CQR1 ManufacturerFXOS8700CQR1 DatasheetUsing WarningsFXOS8700CQR1 FAQ Related Video Introduction Video: How an accelerometer works! FXOS8700CQR1 Video Description: A simplified explanation of how a capacitive MEMS accelerometer works. FXOS8700CQR1 FeaturesHighly Integrated±1200µT Wide Dynamic RangeEmbedded Vector Magnitude DetectionEmbedded Autonomous Hard Iron CalibrationLow-power Consumption32-sample FIFO for Acceleration Data OnlyIntegrated Accelerometer and Magnetometer Self-test Functions FXOS8700CQR1 PinoutThe following figure is the diagram of FXOS8700CQR1 pinout. FXOS8700CQR1 Pinout FXOS8700CQR1 ApplicationsSecurity: motion detection, door opening, smart home applications, robotics, andunmanned aerial vehicles (UAVs) with electronic compass (e-compass) function.Medical applications: patient monitoring, fall detection, and rehabilitationE-compass in mobile devices, tablets, and personal navigation devicesUser interface (menu scrolling by orientation change, tap detection for buttonreplacement)Orientation detection (portrait/landscape: up/down, left/right, back/front orientationidentification)Augmented reality (AR), gaming, and real-time activity analysis (pedometry, freefall,and drop detection for hard disk drives and other devices)Power management for mobile devices using inertial and magnetic event detectionWearable devices: motion detection, activity monitoring, sports monitoring, contextawareness, and shock and vibration monitoring (mechatronic compensation, shipping, and warranty usage logging) FXOS8700CQR1 CAD ModelsThe followings are FXOS8700CQR1 Symbol, Footprint, and 3D Model. FXOS8700CQR1 Symbol FXOS8700CQR1 Footprint FXOS8700CQR1 3D Model FXOS8700CQR1 Block DiagramThe following figure shows the block diagram of FXOS8700CQR1. FXOS8700CQR1 Block Diagram FXOS8700CQR1 Circuit DiagramThe following is the electrical connection of FXOS8700CQR1. FXOS8700CQR1 Circuit Diagram FXOS8700CQR1 SpecificationProduct AttributeAttribute ValueManufacturer:NXPProduct Category:AccelerometersSensor Type:3-axisSensing Axis:X, Y, ZOutput Type:DigitalSupply Voltage - Max:3.6 VSupply Voltage - Min:1.95 VMinimum Operating Temperature:- 40 CMaximum Operating Temperature:+ 85 CMounting Style:SMD/SMTPackage / Case:QFN-16Brand:NXP SemiconductorsMoisture Sensitive:YesOperating Supply Voltage:1.95 V to 3.6 VProduct Type:AccelerometersFactory Pack Quantity:1500Subcategory:SensorsTradename:XtrinsicType:6 Axis SensorPart # Aliases:9.35311E+11Unit Weight:0.000808 oz FXOS8700CQR1 ManufacturerNXP Semiconductors enables secure connections and infrastructure for a smarter world, advancing solutions that make lives easier, better and safer. As the world leader in secure connectivity solutions for embedded applications, NXP is driving innovation in the secure connected vehicle, end-to-end security and privacy and smart connected solutions markets. FXOS8700CQR1 DatasheetYou can download FXOS8700CQR1 datasheet from the link given below:FXOS8700CQR1 Datasheet Using WarningsNote: Please check their parameters and pin configuration before replacing them in your circuit. FXOS8700CQR1 FAQIs the fxos8700cq a linear or linear accelerometer?FXOS8700CQ is a small, low-power, 3-axis, linear accelerometer and 3-axis, magnetometer combined into a single package. The device features a selectable I2C or point-to-point SPI serial interface with 14-bit accelerometer and 16-bit magnetometer ADC resolution along with smart-embedded functions. What is a linear accelerometer?The linear accelerometer measures the acceleration applied to the sensor built-in into the device, excluding the force of gravity, in m/s². For example, you could use this sensor to see how fast your car is going. The linear acceleration sensor always has an offset, which you need to remove. What 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. What are the types of accelerometer?There are three different types of accelerometers, and they are each designed to efficiently function in their intended environments. The three types are: piezoelectric, piezoresistance and capacitive. How does an accelerometer work?An accelerometer is a device that measures the vibration, or acceleration of motion of a structure. The force caused by vibration or a change in motion (acceleration) causes the mass to "squeeze" the piezoelectric material which produces an electrical charge that is proportional to the force exerted upon it.
Kynix On 2021-11-11
Product OverviewThe MMA8452Q is a smart, low-power, three-axis, capacitive, micromachined accelerometer with 12 bits of resolution. This accelerometer is packed with embedded functions with flexible user programmable options, configurable to two interrupt pins. Embedded interrupt functions allow for overall power savings relieving the host processor from continuously polling data. This blog will introduce MMA8452QR1 systematically from its features, pinout to its specifications, applications, also including MMA8452QR1 datasheet and so much more. CatalogProduct OverviewRelated Video IntroductionMMA8452QR1 FeaturesMMA8452QR1 PinoutMMA8452QR1 ApplicationsMMA8452QR1 CAD ModelsMMA8452QR1 Block DiagramMMA8452QR1 Application DiagramMMA8452QR1 SpecificationMMA8452QR1 ManufacturerMMA8452QR1 DatasheetUsing WarningsMMA8452QR1 FAQ Related Video Introduction Video: Arduino Nano - MMA8452Q 3-Axis 12-bit/8-bit Digital Accelerometer Tutorial MMA8452QR1 Video Description: MMA8452Q 3-Axis 12-bit/8-bit Digital Accelerometer I²C Mini Module. The MMA8452Q, manufactured by Freescale Semiconductor, Inc., is a smart, low-power, three-axis, capacitive, micromachined accelerometer with 12 bits of resolution. This accelerometer is packed with embedded functions with flexible user programmable options, configurable to two interrupt pins.The MMA8452Q has user selectable full scales of ±2g/±4g/±8g with high-pass filter filtered data as well as non-filtered data available real-time. MMA8452QR1 Features1.95 V to 3.6 V supply voltage1.6 V to 3.6 V interface voltage±2 g/±4 g/±8 g dynamically selectable full-scaleOutput data rates (ODR) from 1.56 Hz to 800 Hz99 μg/√Hz noise12-bit and 8-bit digital outputI2C digital output interfaceTwo programmable interrupt pins for six interrupt sourcesThree embedded channels of motion detection— Freefall or motion detection: one channel— Pulse detection: one channel— Transient detection: one channelOrientation (portrait/landscape) detection with set hysteresisAutomatic ODR change for auto-wake and return to sleepHigh-pass filter data available real-timeSelf-testCurrent consumption: 6 μA to 165 μA MMA8452QR1 PinoutThe following figure is the diagram of MMA8452QR1 pinout. MMA8452QR1 Pinout MMA8452QR1 ApplicationsE-compass applicationsStatic orientation detection (portrait/landscape, up/down, left/right, back/frontposition identification)Notebook, e-reader, and laptop tumble and freefall detectionReal-time orientation detection (virtual reality and gaming 3D user position feedback)Real-time activity analysis (pedometer step counting, freefall drop detection for HDD, dead-reckoning GPS backup)Motion detection for portable product power saving (auto-sleep and auto-wake for cell phone, PDA, GPS, gaming)Shock and vibration monitoring (mechatronic compensation, shipping and warranty usage logging)User interface (menu scrolling by orientation change, pulse detection for button replacement) MMA8452QR1 CAD ModelsThe followings are MMA8452QR1 Symbol, Footprint, and 3D Model. MMA8452QR1 Symbol MMA8452QR1 Footprint MMA8452QR1 3D Model MMA8452QR1 Block DiagramThe following figure shows the block diagram of MMA8452QR1. MMA8452QR1 Block Diagram MMA8452QR1 Application DiagramThe following is the application diagram of MMA8452QR1. MMA8452QR1 Application Diagram MMA8452QR1 SpecificationProduct AttributeAttribute ValueManufacturer:NXPProduct Category:AccelerometersSensor Type:3-axisSensing Axis:X, Y, ZAcceleration:2 g, 4 g, 8 gSensitivity:256 count/g, 512 count/g, 1024 count/gOutput Type:DigitalInterface Type:I2CResolution:8 bit, 12 bitSupply Voltage - Max:3.6 VSupply Voltage - Min:1.95 VMinimum Operating Temperature:- 40 CMaximum Operating Temperature:+ 85 CMounting Style:SMD/SMTBrand:NXP SemiconductorsProduct Type:AccelerometersSeries:MMA8452QFactory Pack Quantity:1000Subcategory:SensorsTradename:XtrinsicPart # Aliases:9.35325E+11Unit Weight:0.004586 oz MMA8452QR1 ManufacturerNXP Semiconductors enables secure connections and infrastructure for a smarter world, advancing solutions that make lives easier, better and safer. As the world leader in secure connectivity solutions for embedded applications, NXP is driving innovation in the secure connected vehicle, end-to-end security and privacy and smart connected solutions markets. MMA8452QR1 DatasheetYou can download MMA8452QR1 datasheet from the link given below:MMA8452QR1 Datasheet Using WarningsNote: Please check their parameters and pin configuration before replacing them in your circuit. MMA8452QR1 FAQWhat kind of accelerometer is the mma8452qr1 by NXP?The MMA8452Q is a smart low-power, three-axis, capacitive micromachined accelerometer with 12 bits of resolution. This accelerometer is packed with embedded functions with flexible user-programmable options, configurable to two interrupt pins. What does an accelerometer do?An accelerometer is a device that measures the vibration, or acceleration of motion of a structure. The force caused by vibration or a change in motion (acceleration) causes the mass to "squeeze" the piezoelectric material which produces an electrical charge that is proportional to the force exerted upon it. Where is an accelerometer used?Accelerometers can be used to measure vibration on cars, machines, buildings, process control systems and safety installations. They can also be used to measure seismic activity, inclination, machine vibration, dynamic distance and speed with or without the influence of gravity. What does accelerometer do in mobile phones?Accelerometers in mobile phones are used to detect the orientation of the phone. The gyroscope, or gyro for short, adds an additional dimension to the information supplied by the accelerometer by tracking rotation or twist. How does accelerometer measure steps?We are going to count steps by using the accelerometer to count bounces up and down. Because the phone can rotate in any direction, we will use gravity to know which direction down is. A pedometer can count steps by counting the number of bounces in the direction of gravity.
Kynix On 2021-11-10
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