Interface ICs
An interface IC is a type of integrated circuit that is designed to facilitate communication between two devices or systems. These devices are commonly used in electronic systems to enable the transfer of data and control signals between different components or subsystems. Some common use cases for interface ICs include connecting microcontrollers to peripherals such as sensors or displays, linking multiple processors together in a network, and enabling communication between devices using different communication protocols. Flux.ai has the world's largest community-driven public library of interface ICs, with footprints, symbols, datasheets, and simulation models. This library is a valuable resource for engineers and designers who need access to accurate and up-to-date information on these important components. Whether you are working on a new design project or simply looking to learn more about interface ICs, Flux.ai is an excellent resource to help you find the information you need.
MAX3188EEUT+T
MAX3188EEUT+T SOT-23-6_L2.9-W1.6-P0.95-LS2.8-BL LCSC Part Number: C2671283 JLCPCB Part Class: Extended Part Manufactured by ADI(亚德诺)/MAXIM(美信) MAX31889 MAX31889 is a high-accuracy digital temperature sensor from Analog Devices featuring an I²C interface and industry-leading measurement precision of ±0.25°C from -20°C to +105°C and ±0.65°C from -40°C to +125°C. Operating from a 1.7V to 3.6V supply, the device offers low power consumption with only 68µA during measurements and 0.55µA in standby mode, making it ideal for battery-powered systems. The sensor includes programmable high and low temperature alarms, a 32-word FIFO buffer for temperature data logging, configurable GPIO pins for conversion triggering and interrupt generation, and unique ROM identification for traceability. Packaged in a compact 2mm × 2mm 6-pin µDFN package, the MAX31889 is suitable for precision temperature monitoring, industrial systems, IoT devices, medical equipment, environmental sensing, and RTD replacement applications. Search Keywords: MAX31889, Analog Devices MAX31889, digital temperature sensor, I2C temperature sensor, precision temperature sensor, high accuracy temperature sensor, low power temperature sensor, industrial temperature sensor, IoT temperature sensor, environmental monitoring sensor, battery powered sensor, programmable temperature alarm, FIFO temperature sensor, RTD replacement, temperature monitoring IC, ±0.25°C temperature sensor, µDFN temperature sensor, embedded temperature sensor, thermal monitoring Hashtags: #MAX31889 #AnalogDevices #TemperatureSensor #DigitalTemperatureSensor #I2C #PrecisionSensor #ThermalMonitoring #EnvironmentalMonitoring #IndustrialElectronics #IoT #EmbeddedSystems #LowPowerDesign #BatteryPowered #Sensor #Measurement #DataLogging #Electronics #ElectronicComponents #PCBDesign #ADI
0 Uses0 StarsGL3510-OSY52
USB 3.1 QFN-64 Interface Controllers RoHS 4.75V~5.25V,0~+70,Channels 2 GL3510 is a low-power USB 3.1 Gen1 hub controller from Genesys Logic available in 2-port and 4-port configurations. It integrates USB 3.1 Gen1 SuperSpeed PHY and USB 2.0 High-Speed PHY, providing backward compatibility with USB 2.0 and USB 1.1 devices. The controller includes integrated 5V-to-3.3V and 5V-to-1.2V regulators, reducing external component count and PCB complexity. GL3510 supports USB Battery Charging Specification BC1.2, including Charging Downstream Port (CDP) and Dedicated Charging Port (DCP) modes, allowing fast charging of smartphones, tablets, and portable devices even during system sleep or power-off states. Suitable for USB hubs, docking stations, industrial computers, embedded systems, monitors, and consumer electronics. Search Keywords: GL3510, GL3510-52, Genesys Logic GL3510, USB 3.1 hub controller, USB hub IC, USB 3.1 Gen1 hub, SuperSpeed USB hub controller, USB 2.0 hub controller, 4-port USB hub, 2-port USB hub, USB BC1.2 controller, charging downstream port controller, dedicated charging port controller, USB docking station controller, embedded USB hub, USB expansion controller, USB host interface, QFN64 USB hub, QFN48 USB hub GL3510 Hashtags: #GL3510 #GL351052 #GenesysLogic #USBHub #USB31 #USB3Gen1 #SuperSpeedUSB #USBController #USBHubController #BC12 #FastCharging #DockingStation #EmbeddedSystems #IndustrialElectronics #ConsumerElectronics #PCBDesign #ElectronicComponents #USB20 #QFN64 #QFN48
0 Uses0 StarsJDY-23
JDY-23 is an ultra-low-power Bluetooth 5.0 BLE transparent transmission module operating in the 2.4GHz ISM band using GFSK modulation. The module supports wireless UART-to-BLE communication, enabling seamless data exchange between a microcontroller and smartphones, tablets, or other BLE-enabled devices. It provides up to +4dBm transmit power and a communication range of up to 60 meters under optimal conditions. The module supports configurable AT commands for changing device name, baud rate, advertising parameters, and communication settings. JDY-23 is designed for low-power IoT devices, wireless sensors, smart home equipment, industrial monitoring, wearable electronics, and battery-powered embedded applications requiring simple BLE connectivity. Search Keywords: JDY-23, JDY23, Bluetooth 5.0 module, BLE module, Bluetooth Low Energy module, UART BLE module, transparent transmission module, serial Bluetooth module, wireless UART bridge, 2.4GHz BLE transceiver, AT command BLE module, IoT Bluetooth module, low power Bluetooth module, embedded BLE module, MCU Bluetooth interface, Bluetooth serial communication, smart home BLE module, sensor BLE module, battery powered BLE module Hashtags: #JDY23 #Bluetooth5 #BLE #BluetoothLowEnergy #UARTBLE #BluetoothModule #WirelessCommunication #IoT #EmbeddedSystems #Microcontroller #SmartHome #WearableElectronics #SensorNode #LowPowerDesign #WirelessUART #ATCommands #2_4GHz #Electronics #PCBDesign #ElectronicComponents
1 Uses0 Stars453-00139R
General ISM < 1GHz LoRa™, LoRaWAN Transceiver Module 863MHz ~ 870MHz, 902MHz ~ 928MHz Antenna Not Included Surface Mount 453-00139R is a compact LoRaWAN® and LoRa® RF transceiver module from Ezurio (formerly Laird Connectivity), designed for long-range, low-power wireless communication in Industrial IoT, smart agriculture, asset tracking, smart cities, and remote monitoring applications. Based on Semtech's SX1262 LoRa transceiver, the module provides excellent RF sensitivity and robust wireless performance while simplifying integration through multiple peripheral interfaces and a surface-mount package. Key Features LoRa® and LoRaWAN® wireless communication support Frequency bands: 863–870 MHz and 902–928 MHz Up to 22 dBm transmit power High receiver sensitivity down to -139.2 dBm Data rates up to 1 Mbps Wide supply voltage range: 2.0 V to 3.7 V Multiple interfaces: UART, SPI, I²C, I²S, ADC, GPIO, PWM, and IrDA Low receive current consumption (typically 7.6–8.1 mA) Operating temperature range: -40°C to +85°C Compact 47-pad surface-mount module Suitable for battery-powered and long-range IoT applications Hashtags #LoRa #LoRaWAN #Ezurio #LairdConnectivity #SX1262 #RFModule #WirelessCommunication #IndustrialIoT #SmartAgriculture #AssetTracking #RemoteMonitoring #SubGHz #IoTModule #EmbeddedSystems #LongRangeWireless
15 Uses0 StarsTLE92466EDXUMA1
Six-channel low-side solenoid driver IC from Infineon Technologies. TLE92466EDXUMA1 integrates six constant-current low-side output channels, MOSFET power stages, current sensing, diagnostics, and a protected 32-bit SPI interface for automotive linear solenoid control in transmission, ESC, and active suspension applications. It uses a PG-DSO-36-72 exposed-pad package; per-channel programmed current is up to 1.5 A, dither operation supports up to 1.8 A, and 2.7 A applies to parallel-channel mode. #TLE92466EDXUMA1 #Infineon #AutomotiveIC #SolenoidDriver #CurrentControlIC #TransmissionControl #FunctionalSafety #ISO26262 #AECQ100 #AutomotiveElectronics #PowerManagement #EmbeddedSystems
11 Uses0 StarsBNO085
Accelerometer, Gyroscope, Magnetometer, 9 Axis Sensor I2C, SPI, UART Output The BNO085 is a high-performance 9-axis absolute orientation sensor system-in-package (SiP) that integrates a 3-axis accelerometer, 3-axis gyroscope, 3-axis magnetometer, and a low-power ARM Cortex-M0+ microcontroller running CEVA/Hillcrest SH-2 sensor fusion firmware. It provides accurate real-time orientation, motion tracking, and activity detection while offloading complex sensor fusion calculations from the host processor. The device is widely used in robotics, AR/VR systems, wearables, drones, IoT devices, and navigation applications. Key Features 9-axis motion sensing with integrated accelerometer, gyroscope, and magnetometer Built-in SH-2 sensor fusion engine for accurate orientation tracking ARM Cortex-M0+ processor for onboard motion processing Outputs quaternion, rotation vector, linear acceleration, gravity vector, angular velocity, and magnetic field data Advanced motion detection including tap, step, shake, and significant motion detection Activity classification and stability detection capabilities Low-latency rotation vectors optimized for AR/VR applications Supports I²C, SPI, and UART communication interfaces Configurable output data rates and timestamps Low-power operation suitable for battery-powered devices Compact 28-pin LGA package (5.2 mm × 3.8 mm) Operating temperature range: -40°C to +85°C Backward compatible with BNO080 designs while adding support for future application-specific libraries Applications Robotics and autonomous systems Virtual Reality (VR) and Augmented Reality (AR) Wearable devices and fitness trackers Drones and UAVs Head-mounted displays (HMDs) Industrial motion tracking IoT and smart devices Navigation and positioning systems #BNO085 #IMU #9AxisSensor #MotionTracking #SensorFusion #OrientationSensor #Robotics #AR #VR #IoT #Wearables #EmbeddedSystems #CEVA #HillcrestLabs #MotionDetection #Quaternion #InertialMeasurementUnit
30 Uses0 StarsBNO085 Adafruit Breakout Board
BNO085 - Accelerometer, Gyroscope, Magnetometer, 3 Axis Sensor Evaluation Board The BNO085 Evaluation Board is a development platform designed to evaluate and prototype applications using the BNO085 9-axis Inertial Measurement Unit (IMU). It integrates a 3-axis accelerometer, 3-axis gyroscope, and 3-axis magnetometer with an onboard ARM Cortex-M0+ processor running advanced sensor fusion algorithms. The board provides accurate real-time orientation, motion tracking, rotation vectors, and heading information while offloading complex sensor fusion calculations from the host microcontroller. It is widely used in robotics, AR/VR systems, drones, motion tracking devices, navigation systems, and IoT applications. The evaluation board typically supports I²C, SPI, and UART communication interfaces, enabling easy integration with various embedded platforms. Key Features 9-DOF motion sensing with integrated accelerometer, gyroscope, and magnetometer Built-in ARM Cortex-M0+ processor for onboard sensor fusion Real-time orientation output including quaternions, Euler angles, and rotation vectors Supports I²C, SPI, and UART communication interfaces High-speed motion tracking with low latency operation Dynamic calibration for improved accuracy and stability Integrated motion detection features such as step counting and activity tracking Configurable sensor data rates and timestamped sensor reports Low-power operation suitable for battery-powered applications Ideal for robotics, VR/AR, wearable devices, navigation, and industrial motion sensing #BNO085 #IMU #9DOF #SensorFusion #MotionTracking #OrientationSensor #Robotics #EmbeddedSystems #IoT #WearableTech #ARVR #Navigation #EvaluationBoard #Accelerometer #Gyroscope #Magnetometer #commonpartslibrary #developmentboard #accelerometer
202 Uses0 StarsMIMXRT685SFVKB
ARM® Cortex®-M33 RT-600 Microcontroller IC 32-Bit Dual-Core 300MHz External Program Memory 176-VFBGA (9x9) The RT600 is a family of dual-core microcontrollers for embedded applications featuring an Arm Cortex-M33 CPU combined with a Cadence Xtensa HiFi4 advanced Audio Digital Signal Processor CPU. The Cortex-M33 includes two hardware coprocessors providing enhanced performance for an array of complex algorithms. The family offers a rich set of peripherals and very low power consumption. The Arm Cortex-M33 is a next generation core based on the ARMv8-M architecture that offers system enhancements, such as ARM TrustZone® security, single-cycle digital signal processing, and a tightly-coupled coprocessor interface, combined with low power consumption, enhanced debug features, and a high level of support block integration. The ARM Cortex-M33 CPU employs a 3-stage instruction pipe and includes an internal prefetch unit that supports speculative branching. A hardware floating-point processor is integrated into the core. On the RT600, the Cortex-M33 is augmented with two hardware coprocessors providing accelerated support for additional DSP algorithms and cryptography. The Cadence Xtensa HiFi 4 Audio DSP engine is a highly optimized audio processor designed especially for efficient execution of audio and voice codecs and pre- and post-processing modules. It supports four 32x32-bit MACs, some support for 72-bit accumulators, limited ability to support eight 32x16-bit MACs, and the ability to issue two 64-bit loads per cycle. There is a floating point unit providing up to four single-precision IEEE floating point MACs per cycle. The RT600 provides up to 4.5 MB of on-chip SRAM (plus an additional 128 KB of tightly-coupled HiFi4 ram) and several high-bandwidth interfaces to access off-chip flash. The FlexSPI flash interface supports two channels and includes an 32 KB cache and an on-the-fly decryption engine. The RT600 is designed to allow the CortexM33 to operate at frequencies of up to 300 MHz and the HiFi4 DSP to operate at frequencies of up to 600 MHz. Key Features Dual-core architecture with Arm Cortex-M33 CPU and Cadence Xtensa HiFi4 DSP Cortex-M33 operating at up to 300 MHz HiFi4 DSP operating at up to 600 MHz Up to 4.5 MB on-chip SRAM 128 KB DSP tightly coupled memory (TCM) FlexSPI interface supporting Quad/Octal SPI Flash with execute-in-place (XIP) High-speed USB 2.0 Host/Device with integrated PHY Digital microphone (DMIC) interface supporting up to 8 channels Multiple I2S, SPI, I²C, UART, SDIO, and I3C interfaces 12-bit ADC with up to 1 MSPS sampling rate Hardware cryptography acceleration (AES, SHA, RSA, ECC) Arm TrustZone® security technology Secure boot and physically unclonable function (PUF) key storage Multiple low-power operating modes for battery-powered applications Up to 147 GPIOs depending on package option 176-pin VFBGA package (9 mm × 9 mm) Typical Applications Voice-controlled smart devices Audio processing and DSP systems Smart speakers and soundbars Industrial HMI and control panels Edge AI and machine learning applications IoT gateways and connected devices Wearable and portable electronics #NXP #iMXRT685 #RT600 #CortexM33 #HiFi4DSP #Microcontroller #EmbeddedSystems #EdgeAI #VoiceRecognition #AudioProcessing #IoT #IndustrialAutomation #SecureMCU #MachineLearning #MCUDesign
3 Uses0 StarsSTS40-CD1B-R3
Temperature Sensor Digital, Local -40°C ~ 125°C 16 b 4-DFN (1.5x1.5) STS40-CD1B-R3 is a high-accuracy digital temperature sensor from Sensirion, designed for precise temperature monitoring in space-constrained and low-power applications. Part of the STS4x series, it features a fully calibrated temperature sensing element with an I²C digital interface, providing reliable measurements over a wide operating temperature range. Its ultra-compact 4-DFN package makes it ideal for IoT devices, wearables, consumer electronics, industrial controls, and battery-powered systems. Key Features High-accuracy temperature measurement (±0.2°C typical at 25°C) Wide operating temperature range: -40°C to +125°C Digital I²C interface for easy MCU integration 16-bit temperature resolution Low operating voltage: 1.08 V to 3.6 V Factory calibrated and linearized output Ultra-small 1.5 mm × 1.5 mm DFN package Low power consumption suitable for battery-powered devices Surface-mount package for automated assembly Robust performance for industrial and consumer applications #STS40 #STS40CD1BR3 #Sensirion #TemperatureSensor #DigitalSensor #I2C #EmbeddedSystems #IoT #IndustrialAutomation #WearableElectronics #EnvironmentalMonitoring #ElectronicsDesign
14 Uses0 Stars