ADXL373BCCZ-RL7
Accelerometer X, Y, Z Axis ±400g 160Hz ~ 2.56kHz 16-LGA (3x3.25) The ADXL373BCCZ-RL7 is an ultralow power, high-g digital MEMS accelerometer developed by Analog Devices for motion sensing and impact detection applications. The device is optimized for battery-powered and always-on systems requiring continuous acceleration monitoring with minimal power consumption. It supports selectable measurement ranges suitable for shock, vibration, and activity monitoring in industrial, wearable, medical, asset tracking, and IoT applications. The accelerometer integrates embedded motion detection features, a FIFO buffer, and interrupt capabilities to reduce host processor workload and overall system power consumption. Engineering Specification Device Type Ultralow power 3-axis digital MEMS accelerometer Manufacturer Analog Devices Inc. Manufacturer Part Number ADXL373BCCZ-RL7 Measurement Axes Three-axis acceleration sensing Acceleration Range Selectable full-scale ranges supporting high-g measurements up to ±400 g Output Interface SPI digital serial communication interface Resolution High-resolution digital acceleration output with integrated filtering and signal conditioning Power Supply Requirement Operates from a low-voltage DC supply suitable for portable and embedded systems Power Consumption Designed for extremely low current operation during measurement and wake-up monitoring modes Embedded Features Integrated activity detection Motion and impact sensing FIFO data buffering Interrupt generation Wake-up detection functionality Sampling and Performance Programmable output data rates and filtering options for optimized noise and bandwidth performance Operating Temperature Range Industrial temperature range suitable for harsh environmental applications Package Type LGA surface-mount package Mounting Style Surface mount technology Application Areas Impact event recording Condition monitoring Asset tracking Industrial sensing Wearable electronics Portable instrumentation Shock and vibration monitoring Always-on motion detection systems #commonpartslibrary #integratedcircuit #accelerometer #sensor... show more0 Uses
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TDA4VM88TGCALFR
System On Chip (SOC) IC It integrates multiple processing units including CPUs, DSPs, AI accelerators, and GPU into a single chip to handle vision processing, deep learning, sensor fusion, and real-time control in automotive and industrial systems. • C7x floating point, vector DSP, up to 1.0GHz, 80 GFLOPS, 256 GOPS • Deep-learning matrix multiply accelerator (MMA), up to 8 TOPS (8b) at 1.0GHz • Vision Processing Accelerators (VPAC) with Image Signal Processor (ISP) and multiple vision assist accelerators • Depth and Motion Processing Accelerators (DMPAC) • Dual 64-bit Arm® Cortex®-A72 microprocessor subsystem at up to 2.0GHz – 1MB shared L2 cache per dual-core Cortex®- A72 cluster – 32KB L1 DCache and 48KB L1 ICache per Cortex®-A72 core • Six Arm® Cortex®-R5F MCUs at up to 1.0GHz – 16K I-Cache, 16K D-Cache, 64K L2 TCM – Two Arm® Cortex®-R5F MCUs in isolated MCU subsystem – Four Arm® Cortex®-R5F MCUs in general compute partition • Two C66x floating point DSP, up to 1.35GHz, 40GFLOPS, 160GOPS • 3D GPU PowerVR® Rogue 8XE GE8430, up to 750MHz, 96GFLOPS, 6Gpix/sec • Custom-designed interconnect fabric supporting near max processing entitlement Memory subsystem: • Up to 8MB of on-chip L3 RAM with ECC and coherency – ECC error protection – Shared coherent cache – Supports internal DMA engine • External Memory Interface (EMIF) module with ECC – Supports LPDDR4 memory types – Supports speeds up to 4266MT/s – 32-bit data bus with inline ECC • General-Purpose Memory Controller (GPMC) • 512KB on-chip SRAM in MAIN domain, protected by ECC #CommonPartsLibrary #IntegratedCircuit... show more2 Uses
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LAN9254-I/JRX
Ethernet Controller 10/100 Base-T/TX Bus Interface 80-TQFP-EP (12x12) The LAN9254-I/JRX is an EtherCAT SubDevice (slave) controller developed by Microchip Technology, designed to serve as the communication backbone for industrial automation devices participating in an EtherCAT network. The device integrates dual Ethernet physical layer transceivers directly on-chip, eliminating the need for external PHY components and simplifying the design of EtherCAT-enabled equipment such as servo drives, sensors, I/O modules, and other field devices used in real-time industrial control systems. Architecturally, the controller can operate as either a two-port or three-port node, depending on the network topology required. In its standard configuration it functions as a two-port device supporting daisy-chain connections typical of EtherCAT line topologies. When configured as a three-port device, it gains an additional management interface port that can connect to an external PHY or to another LAN9254, enabling star or tree network topologies and allowing the device to act as a branching point within a larger EtherCAT installation. Each integrated Ethernet PHY operates in full-duplex mode and supports automatic crossover detection, so the device can use either straight-through or crossover cabling without requiring manual configuration. Beyond pure protocol handling, the LAN9254 includes a substantial set of general-purpose digital input and output lines, allowing it to be used in simple field devices without requiring a separate microcontroller. For more complex applications, the device communicates with an external host processor through an integrated host bus interface that behaves like simple memory-mapped SRAM, supporting both 8-bit and 16-bit data widths along with multiple byte-ordering conventions, which makes it straightforward to interface with a wide range of microcontroller and microprocessor architectures. Internally, dual process data RAM buffers manage the exchange of real-time process data between the host application and the EtherCAT communication engine, while a dedicated interrupt line notifies the host of relevant internal events. A key feature of the device is its built-in distributed clock mechanism, which provides high-precision timing synchronization across all nodes in an EtherCAT network. This capability is essential for motion control and other applications where multiple devices must act in tight temporal coordination. The controller also provides configurable status indication through standard network activity and link LEDs, along with optional error and run-state indicators that give visibility into the health and operational state of the device at a glance. Power architecture on the LAN9254 is simplified through an integrated linear regulator, allowing the device to be operated from a single primary supply rail while internally generating the lower voltage needed for its core logic. This reduces the external power supply complexity that would otherwise be required to support separate core and I/O voltage domains. The "-I" designation on this particular part number indicates an industrial-grade temperature rating, making it suitable for deployment in factory floor and other demanding industrial environments where extended thermal range and long-term reliability are required. The device is housed in a surface-mount package consistent with dense industrial control board layouts and is compliant with RoHS material restrictions. Spec Sheet Identification Part Number: LAN9254-I/JRX Device Family: LAN9254 Manufacturer: Microchip Technology Functional Classification Device Type: EtherCAT SubDevice (slave) controller Network Role: Two/three-port configurable node Integrated PHYs: Dual Ethernet physical layer transceivers, on-chip Auto-MDIX Support: Yes, supports direct and crossover cabling Communication & Protocol Features Protocol: EtherCAT Topology Support: Daisy-chain (line), star, and tree topologies Additional Port Mode: Optional third port for branching/tap configurations Clock Synchronization: Integrated distributed clock for high-precision timing Host Interface Interface Type: SRAM-like host bus interface Data Width Support: Selectable bit-width host bus operation Endianness Support: Multiple byte-ordering modes Process Data Handling: Dual process data RAM buffers Interrupt Support: Configurable host interrupt line Digital I/O General-Purpose I/O: Integrated digital I/O lines for microcontroller-less operation Standalone Mode: Supports operation without external microcontroller for simple device designs Power Architecture Supply Configuration: Single primary supply rail Internal Regulation: Integrated linear regulator for core voltage generation Status Indication LED Support: Standard run and link/activity indicators per port Optional Indicators: Configurable error and run-state status indicators Environmental & Qualification Temperature Grade: Industrial ("-I" suffix) RoHS Compliance: Yes Package Package Type: Surface-mount, quad flat package style Mounting: Surface mount technology (SMT) Packaging Format Supply Format: Tape-and-reel, per part suffix designation #LAN9254 #Microchip #EtherCAT #SlaveController #SubDeviceController #IndustrialEthernet #IndustrialAutomation #MotionControl #EmbeddedSystems #FieldDevice #DigitalIO #HostBusInterface #DistributedClock #TQFP #RoHSCompliant #IndustrialGrade #EngineeringSpec #ComponentLibrary #CommonPartsLibrary #SemiconductorIC... show more0 Uses
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PAW3395DM-T6QU
A high-performance, low-power optical gaming mouse sensor IC from PixArt, featuring up to 26,000 CPI resolution, 650 ips tracking speed, and a 4-wire SPI interface, packaged in a 16-pin DIP with integrated infrared illumination for precise motion detection.... show more14 Uses
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AR2020CSSM13SMTA0
The onsemi AR2020 is a stacked 1/1.8-inch back side illuminated (BSI) CMOS active-pixel digital image sensor with a pixel array of 5120H x 3840V (5136H x 3856V including border pixels). The AR2020 has enhanced NIR response. It incorporates sophisticated on-chip camera functions such as Wake on Motion (WOM), context switching and multiple subsampling modes. It is programmable through a simple I2C interface and has very low power consumption. The AR2020 digital image sensor features onsemi's breakthrough low-noise CMOS imaging technology. The AR2020 sensor can generate full resolution image at up to 60 frames per second (fps) in 10-bit linear mode. AR2020 can achieve 30 fps in line interleaved high dynamic range (LI-HDR) and enhanced Dynamic Range (eDR) modes. #sensor #Transducer #Optical-Sensor #Image-Sensor #Hyperlux™ LP... show more3 Uses
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PAT9125EL-TKIT
The PAT9125EL-TKIT from PixArt Imaging Inc. is a low-power optical tracking miniature chip designed for precise motion detection using laser-based optical navigation technology. It integrates both the optical sensor and VCSEL laser light source into a single compact package, enabling accurate tracking even on smooth or glossy surfaces. This device captures sequential surface images and processes them internally to determine movement direction, speed, and displacement (X/Y data), which can be accessed by a host controller via digital interfaces. It is particularly suited for space-constrained, battery-powered, and enclosed systems, eliminating the need for mechanical components like code wheels or special surface markings. Key Features Integrated optical sensor + VCSEL laser (850 nm) in a single package No external lens required, simplifying design Wide depth of field (DOF): 1–30 mm, even on reflective surfaces Programmable resolution up to ~1275 CPI Supports I²C (TKIT) interface (SPI variant available as TKMT) Motion detection interrupt output Built-in oscillator (no external clock needed) Low power consumption: Run: ~0.7 mA Sleep: down to 10 µA Power-down: ~5 µA Pre-calibrated laser (no calibration required) IEC/EN 60825-1 Class 1 eye-safe laser compliant Key Specifications Supply Voltage: VDD: 1.7–3.6 V VLD (laser): 2.7–3.6 V Max Tracking Speed: up to ~30 inches/sec Package: 8-pin LGA (3.5 × 3.2 × 1.0 mm) Interface: I²C (for TKIT variant)... show more3 Uses
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ADXL1003BCPZ-RL
Motion Sensors - Accelerometers ADXL1003BCPZ-RL LFCSP-32_L5.0-W5.0-P0.50-TL-EP LCSC Part Number: C662289 JLCPCB Part Class: undefined Manufactured by ADI(亚德诺)... show more0 Uses
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2472
Adafruit 2472 BNO055 breakout Adafruit BNO055 Absolute Orientation Sensor is a 9-DoF intelligent motion tracking module based on the Bosch BNO055 system-in-package sensor. The device integrates a 3-axis accelerometer, 3-axis gyroscope, 3-axis magnetometer, and an onboard ARM Cortex-M0 microcontroller running Bosch sensor fusion algorithms. Unlike traditional IMUs, the BNO055 directly outputs absolute orientation data in Euler angles, quaternions, linear acceleration, gravity vectors, and calibration information, eliminating the need for complex sensor fusion calculations on the host MCU. The sensor communicates via I²C or UART interfaces and is widely used in robotics, drones, autonomous vehicles, VR/AR systems, motion tracking, navigation, balancing robots, wearable devices, and orientation sensing applications. Search Keywords: BNO055, Adafruit BNO055, Absolute Orientation Sensor, 9DOF Sensor, IMU Sensor, Bosch BNO055, Sensor Fusion IMU, Orientation Sensor, Quaternion Sensor, Euler Angle Sensor, Motion Tracking Sensor, Accelerometer Gyroscope Magnetometer, AHRS Sensor, Robotics IMU, Drone Orientation Sensor, Wearable Motion Sensor, Navigation Sensor, I2C IMU Sensor, UART IMU Sensor, Absolute Position Sensor Hashtags: #BNO055 #Adafruit #BoschSensortec #IMU #9DOF #OrientationSensor #MotionTracking #SensorFusion #Quaternion #AHRS #Accelerometer #Gyroscope #Magnetometer #Robotics #DroneTechnology #EmbeddedSystems #IoTDevices #ElectronicsDesign #PCBDesign #HardwareEngineering... show more2 Uses
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LSM6DSO32XTR
LSM6DSO32X is a low-power 6-axis IMU (Inertial Measurement Unit) from STMicroelectronics that integrates a 3-axis accelerometer with up to ±32g full-scale range and a 3-axis gyroscope with selectable ranges up to ±2000 dps. The device features an embedded Machine Learning Core (MLC), Finite State Machine (FSM), pedometer, step detector, tilt detection, motion classification, and smart sensor processing functions, enabling advanced edge AI and sensor fusion applications without continuous MCU intervention. Communication is supported through SPI, I²C, and MIPI I3C interfaces. Designed for wearable devices, smart watches, asset tracking, IoT products, motion analysis, gesture recognition, navigation systems, and low-power embedded applications. Search Keywords: LSM6DSO32X, ST LSM6DSO32X, 6-axis IMU, inertial measurement unit, accelerometer gyroscope combo, 3-axis accelerometer, 3-axis gyroscope, machine learning sensor, embedded AI sensor, motion sensor, MEMS sensor, pedometer sensor, step counter sensor, tilt detection sensor, gesture recognition sensor, SPI IMU, I2C IMU, I3C sensor, wearable sensor, navigation sensor, sensor fusion IMU, smart motion sensor, asset tracking sensor Hashtags: #LSM6DSO32X #STMicroelectronics #IMU #MEMS #Accelerometer #Gyroscope #MotionSensor #MachineLearningCore #EmbeddedAI #SensorFusion #Pedometer #Wearables #IoT #AssetTracking #Navigation #GestureRecognition #I2C #SPI #I3C #ElectronicComponents... show more0 Uses
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DRV8234RTER
Motor / Motion / Ignition Controllers & Drivers SINGLE H-BRIDGE MOTOR DRIVER... show more0 Uses
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ICM-20948
The TDK InvenSense ICM-20948 is the world's lowest power 9-axis MotionTracking™ device, optimized for Smartphones, Tablets, Wearable Sensors, and IoT applications. This highly integrated component features a 3-axis gyroscope, 3-axis accelerometer, and 3-axis compass, all housed within a compact 3 mm x 3 mm x 1 mm 24-pin QFN package. The ICM-20948 includes an onboard Digital Motion Processor™ (DMP™) that offloads motion processing algorithms from the host processor, thereby enhancing overall system power performance. It supports both I2C and high-speed SPI communication interfaces and operates within a voltage range of 1.71V to 3.6V. The device is fully compliant with Google's latest Android release and supports EIS FSYNC. Additional features include on-chip 16-bit ADCs, programmable digital filters, an embedded temperature sensor, and programmable interrupts, making it an ideal choice for applications requiring precise motion tracking and low power consumption.... show more115 Uses
1 Star
NXP Precision 9DoF Breakout
NXP Precision 9DoF breakout combines two of the best motion sensors we've tested here at Adafruit: The FXOS8700 3-Axis accelerometer and magnetometer, and the FXAS21002 3-axis gyroscope... show more26 Uses
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ezBLDC
ezBLDC is a two axis smart BLDC motor driver, powered by SimpleFOC. Implementing 2 DRV8313s this board is capable of 12V @ 2.5A / phase for control of up to 2 motors at once. With its onboard smarts, this board can accept simple UART, I2C, or step/dir commands to control complex, real-time, feedback-enabled motion, freeing up the main microcontroller to do other tasks. Implementing the hardware basics for controlling brushless DC motors can be a hassle, but it doesn't have to be. This motor driver allows anyone with an Arduino to get moving with BLDC motors, with easy IO and motor connectors onboard.... show more98 Uses
1 Star
LSM6DSOXTR
The LSM6DSOXTR is a low-power inertial measurement unit integrating a three-axis accelerometer and a three-axis gyroscope within a compact surface-mount package. Designed for motion tracking, gesture recognition, activity monitoring, and sensor fusion applications, the device incorporates embedded machine learning capabilities and programmable finite state machines to enable intelligent edge processing with reduced host processor workload. The sensor supports high-performance motion sensing while maintaining low power consumption, making it suitable for wearable devices, IoT products, industrial monitoring systems, smart home equipment, and portable electronics. Engineering Specification Device Type Six-axis inertial measurement unit featuring a three-axis accelerometer and three-axis gyroscope. Sensor Functions Motion sensing, orientation detection, vibration monitoring, gesture recognition, activity tracking, tilt sensing, and sensor fusion. Integrated Features Embedded machine learning core, finite state machine engine, sensor hub functionality, timestamp generation, event detection, and programmable interrupt generation. Communication Interface Supports digital communication through I²C, SPI, and I³C interfaces for integration with microcontrollers and embedded processors. Power Characteristics Optimized for low-power operation with multiple performance modes supporting battery-powered and always-on applications. Measurement Capabilities Provides configurable acceleration and angular rate measurement ranges with programmable output data rates and digital filtering options. Embedded Intelligence Includes on-chip machine learning and event classification capabilities to enable local data processing and reduce system power consumption. Package Style Compact surface-mount LGA package suitable for space-constrained electronic designs. Applications Wearable electronics, asset tracking devices, industrial sensors, robotics, smart appliances, navigation systems, handheld devices, health monitoring equipment, and IoT products. Manufacturer STMicroelectronics. Hashtags #LSM6DSOXTR #STMicroelectronics #IMU #MotionSensor #Accelerometer #Gyroscope #SensorFusion #MachineLearningCore #EmbeddedSystems #WearableElectronics #IndustrialAutomation #IoT #SmartDevices #MEMS #CommonPartsLibrary... show more76 Uses
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LIS2DH12TR
Motion Sensors - Accelerometers LIS2DH12TR LGA-12_L2.0-W2.0-P0.50-BL LCSC Part Number: C110926 JLCPCB Part Class: Extended Part Manufactured by ST(意法半导体)... show more67 Uses
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LIS2DW12TR
Motion Sensors - Accelerometers LIS2DW12TR LGA-12_L2.0-W2.0-P0.50-BL LCSC Part Number: C189624 JLCPCB Part Class: Extended Part Manufactured by ST(意法半导体)... show more64 Uses
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STM32H743VIT6
ARM® Cortex®-M7 STM32H7 Microcontroller IC 32-Bit 480MHz 2MB (2M x 8) FLASH 100-LQFP (14x14) # STM32H743VIT6 ## General Description The STM32H743VIT6 is a high-performance microcontroller manufactured by STMicroelectronics and based on the Arm Cortex-M7 core. It is designed for advanced embedded applications requiring exceptional processing capability, extensive peripheral integration, high-speed memory access, and real-time control performance. The device combines powerful computational resources, floating-point processing, digital signal processing capabilities, large embedded memory, and a comprehensive set of communication interfaces within a compact package. Its architecture is optimized for industrial automation, motor control, human-machine interfaces, medical devices, robotics, data acquisition systems, audio processing, edge computing, and high-performance IoT applications. ## Key Features ### Processing Architecture * Arm Cortex-M7 processor core * High-performance real-time processing capability * Floating-point unit support * Digital signal processing functionality * Advanced instruction set architecture * Optimized embedded computing performance ### Memory Resources * Embedded Flash memory * High-speed SRAM architecture * Memory protection support * Efficient code and data execution * High-bandwidth memory access capability * Advanced cache architecture ### Communication Interfaces * USART and UART communication interfaces * SPI communication interfaces * I²C communication interfaces * CAN communication support * USB connectivity capability * Ethernet networking support * SDMMC storage interface support * Flexible external communication options ### Analog Features * High-resolution analog-to-digital conversion * Digital-to-analog conversion capability * Precision signal acquisition * Analog monitoring functionality * Sensor interface compatibility ### Timer and Control Features * Advanced control timers * General-purpose timers * PWM signal generation * Encoder interface support * Motor-control functionality * Real-time clock integration * Event-driven control architecture ### Multimedia and Processing Capabilities * Audio processing support * Signal processing applications * Graphics and display interface support * High-speed data acquisition capability * Real-time analytics support * Edge computing functionality ### Power Characteristics * Optimized performance-to-power ratio * Multiple low-power operating modes * Dynamic power management support * Efficient embedded system operation ### Package Characteristics * Surface-mount package construction * Industrial-grade packaging * High-pin-count peripheral integration * Automated assembly compatible * Suitable for complex embedded designs ### Material Construction * Advanced semiconductor technology * RoHS-compliant materials * Lead-free package construction * High-reliability integrated circuit design ### Environmental Characteristics * Suitable for industrial and commercial environments * Long operational service life * Reliable continuous operation * Stable performance across operating conditions * Robust embedded processing platform ### Application Areas * Industrial Automation Systems * Robotics and Motion Control * Motor Drive Applications * Human-Machine Interfaces * Medical Equipment * Audio Processing Systems * Data Acquisition Equipment * Embedded Computing Platforms * Industrial Networking Devices * Edge Computing Solutions * Smart Energy Systems * Advanced IoT Devices * Test and Measurement Equipment * Consumer Electronics ### Compliance * RoHS Compliant * Lead-Free Compatible * Industrial-Grade High-Performance Microcontroller Solution ## Manufacturer STMicroelectronics ## Product Family STM32H7 High-Performance Microcontroller Series #STM32H743VIT6 #STM32H7 #STMicroelectronics #CortexM7 #Microcontroller #EmbeddedSystems #IndustrialAutomation #MotorControl #Robotics #EdgeComputing #IoT #DataAcquisition #EmbeddedDesign #FirmwareDevelopment #ElectronicsEngineering... show more55 Uses
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LSM6DSO32TR
Attitude Sensors LSM6DSO32TR LGA-14_L3.0-W2.5-P0.50-TL LCSC Part Number: C1864162 JLCPCB Part Class: Extended Part Manufactured by ST(意法半导体)STMicroelectronics LSM6DSO32 iNEMO 6-axis inertial measurement unit, integrated always-on 3D digital accelerometer and 3D digital gyroscope, accelerometer full-scale ranges ±4/±8/±16/±32g, gyroscope full-scale ranges ±125/±250/±500/±1000/±2000dps, low power consumption, 1.71V to 3.6V supply voltage, SPI/I2C/MIPI I3C interface, smart FIFO up to 9kbytes, embedded pedometer, step detector, tilt detection and motion functions, embedded temperature sensor, -40°C to +85°C operating range, compact 14-lead LGA 2.5 x 3.0 x 0.83mm package. Search Keywords: LSM6DSO32, ST LSM6DSO32, STMicroelectronics LSM6DSO32, LSM6DSO32TR, iNEMO inertial module, 6-axis IMU, 3D accelerometer gyroscope, 32g accelerometer, 2000dps gyroscope, LSM6DSO32 IMU sensor, LSM6DSO32 accelerometer, LSM6DSO32 gyroscope, SPI I2C I3C IMU, LGA-14 IMU, 2.5x3mm IMU, LSM6DSO32 datasheet Hashtags: #LSM6DSO32 #LSM6DSO32TR #STMicroelectronics #STIMU #iNEMO #IMUSensor #6AxisIMU #Accelerometer #Gyroscope #3DAccelerometer #3DGyroscope #32gAccelerometer #2000dpsGyroscope #I2CSensor #SPISensor #I3CSensor #LGA14 #MotionSensor... show more56 Uses
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ADXL375BCCZ-RL
Motion Sensors - Accelerometers ADXL375BCCZ-RL LGA-14_L5.0-W3.0-P0.80-BL LCSC Part Number: C662206 JLCPCB Part Class: Extended Part Manufactured by ADI(亚德诺)... show more62 Uses
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ADXL345TCCZ-EP
Accelerometer X, Y, Z Axis ±2g, 4g, 8g, 16g 0.05Hz ~ 1.6kHz 14-LGA (3x5) The ADXL345-EP is an extended performance version of the ADXL345, which is a small, thin, ultralow power, 3-axis accelerometer with high resolution (13-bit) measurement at up to ±16 g. Digital output data is formatted as 16-bit twos complement and is accessible through either a SPI (3- or 4-wire) or I2 C digital interface. The ADXL345-EP is well suited for extended temperature range industrial and aerospace equipment. It measures the static acceleration of gravity in tilt-sensing applications, as well as dynamic acceleration resulting from motion or shock. Its high resolution (3.9 mg/LSB) enables measurement of inclination changes less than 1.0°. Several special sensing functions are provided. Activity and inactivity sensing detect the presence or lack of motion by comparing the acceleration on any axis with user-set thresholds. Tap sensing detects single and double taps in any direction. Freefall sensing detects if the device is falling. These functions can be mapped individually to either of two interrupt output pins. An integrated memory management system with a 32-level first in, first out (FIFO) buffer can be used to store data to minimize host processor activity and lower overall system power consumption. Low power modes enable intelligent motion-based power management with threshold sensing and active acceleration measurement at extremely low power dissipation. The ADXL345-EP is supplied in a small, thin, 3 mm × 5 mm × 1 mm, 14-lead, enhanced plastic package. Ultralow power: as low as 23 µA in measurement mode and 0.1 µA in standby mode at VS = 2.5 V (typical) Power consumption scales automatically with bandwidth User-selectable resolution from 10 to 13 bits 4 mg/LSB scale factor in all g ranges 32-sample FIFO minimizes host processor load Single tap, double tap, and free-fall detection Activity/inactivity monitoring Supply voltage range: 2.0 V to 3.6 V I/O voltage range: 1.7 V to VS SPI (3- and 4-wire) and I2C digital interfaces Flexible interrupt modes mappable to either interrupt pin Measurement ranges selectable via serial command Bandwidth selectable via serial command 10,000 g shock survival Pb free/RoHS compliant Small and thin: 3 mm × 5 mm × 1 mm LGA package #CommonPartsLibrary #Sensor #Motion-sensor #accelerometer... show more49 Uses
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ADXL362BCCZ-RL7
Motion Sensors - Accelerometers ADXL362BCCZ-RL7 LGA-16_L3.3-W3.0-P0.50-TL LCSC Part Number: C192252 JLCPCB Part Class: Extended Part Manufactured by ADI(亚德诺)... show more59 Uses
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ADXL375BCCZ-RL7
Motion Sensors - Accelerometers ADXL375BCCZ-RL7 LGA-14_L5.0-W3.0-P0.80-BL LCSC Part Number: C481898 JLCPCB Part Class: Extended Part Manufactured by ADI(亚德诺)... show more24 Uses
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ADXL355BEZ-RL
Motion Sensors - Accelerometers ADXL355BEZ-RL LCC-14_L6.0-W6.0-P1.27-TL LCSC Part Number: C662367 JLCPCB Part Class: Extended Part Manufactured by ADI(亚德诺)... show more17 Uses
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ADXL357BEZ-RL7
Motion Sensors - Accelerometers ADXL357BEZ-RL7 LCC-14_L6.0-W6.0-P1.27-TL LCSC Part Number: C662377 JLCPCB Part Class: Extended Part Manufactured by ADI(亚德诺)... show more6 Uses
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