Sensors
A sensor is a device that detects and measures a physical property or phenomenon, such as temperature, pressure, or motion. Sensors are used in a wide range of applications, including industrial automation, environmental monitoring, healthcare, and transportation. Flux.ai is the world's largest community-driven public library of sensors, with footprints, symbols, datasheets, and simulation models. Our extensive collection of sensors covers a variety of use cases and industries, making it easy to find the perfect sensor for your application. Whether you need a temperature sensor for HVAC systems, a pressure sensor for automotive applications, or a motion sensor for security systems, Flux.ai has you covered. Our comprehensive library of sensors is constantly updated with the latest and most innovative technologies, ensuring that you have access to the best sensors available. So, if you need a sensor for your next project, be sure to check out Flux.ai and take advantage of our extensive collection and expert support.
ESP32-C3
Bluetooth, WiFi 802.11b/g/n, Bluetooth v5.0 Transceiver Module 2.402GHz ~ 2.48GHz Antenna Not Included Surface Mount The ESP32-C3 is a low-power, highly integrated 32-bit microcontroller (MCU) from Espressif Systems that combines 2.4 GHz Wi-Fi and Bluetooth® 5 Low Energy (BLE) connectivity in a single chip. Built around a single-core RISC-V processor running at up to 160 MHz, it is designed for secure, cost-effective IoT and embedded applications. The ESP32-C3 offers excellent wireless performance, low power consumption, robust security features, and a rich set of peripherals, making it ideal for smart home devices, industrial automation, wearable electronics, wireless sensors, and consumer IoT products. Key Features 32-bit RISC-V single-core CPU running up to 160 MHz Integrated 2.4 GHz Wi-Fi (802.11 b/g/n) and Bluetooth® 5 LE Low-power architecture with multiple sleep modes for battery-powered devices Advanced security features including Secure Boot, Flash Encryption, AES, SHA, RSA, HMAC, and hardware random number generator (RNG) Rich peripheral set including GPIO, UART, SPI, I²C, I²S, PWM, ADC, TWAI (CAN), USB Serial/JTAG, and timers Supports external QSPI flash memory and OTA (Over-the-Air) firmware updates Compact package options suitable for space-constrained embedded designs Fully supported by the ESP-IDF, Arduino, and MicroPython development ecosystems #ESP32C3 #Espressif #RISCV #WiFi #BluetoothLE #IoT #EmbeddedSystems #Microcontroller #WirelessMCU #LowPower #SmartHome #IndustrialIoT #SecureMCU #EdgeComputing #FirmwareDevelopment
11 Uses0 StarsE22-900M22S
868/915MHz SPI SMD LoRa Module E22-900M22S is a compact, industrial-grade LoRa® wireless transceiver module developed by Ebyte, based on the Semtech SX1262 RF chipset. Operating in the 868/915 MHz ISM band, it communicates through an SPI interface and is designed for long-range, low-power wireless data transmission. The module offers excellent receiver sensitivity, strong anti-interference performance, and supports both LoRa and FSK modulation, making it suitable for smart metering, industrial automation, IoT sensor networks, remote monitoring, and wireless control applications. Key Features Based on the Semtech SX1262 LoRa transceiver Operates in the 850–930 MHz frequency range (optimized for 868/915 MHz ISM bands) SPI interface with data rates up to 10 Mbps Maximum transmit power of +22 dBm (160 mW) Receiver sensitivity up to −147 dBm (LoRa mode) Supports LoRa and FSK modulation Programmable air data rate up to 62.5 kbps (LoRa) and 300 kbps (FSK) Long communication range of up to 7 km under ideal line-of-sight conditions Wide operating voltage: 1.8 V to 3.7 V (3.3 V recommended) Ultra-low receive current (~6.8 mA) and low sleep current Industrial operating temperature: −40°C to +85°C Compact 20 × 14 × 2.8 mm SMD package with castellated pads/IPEX antenna options Suitable for IoT, AMI, smart home, industrial sensors, wireless alarms, and remote control systems. #Ebyte #E22Series #E22900M22S #SX1262 #LoRa #WirelessModule #SubGHz #SPI #IoT #IndustrialAutomation #SmartMetering #RemoteMonitoring #EmbeddedSystems #RFModule
70 Uses0 StarsTGS2611-C00
The TGS2611-C00 specification defines the engineering requirements for a semiconductor gas sensor designed for the detection of combustible gases in industrial, commercial, and embedded monitoring systems. This specification establishes the functional, electrical, mechanical, environmental, and quality requirements necessary to ensure accurate gas detection, stable sensing characteristics, and long-term operational reliability. The sensor is intended for use in gas leak detection equipment, safety monitoring systems, residential and commercial appliances, industrial automation, and environmental monitoring applications. It utilizes semiconductor sensing technology to detect target combustible gases with high sensitivity and repeatable performance, enabling reliable monitoring and early warning in safety-critical environments. Engineering Requirements The gas sensor shall be manufactured using qualified semiconductor sensing materials and controlled production processes to ensure consistent sensitivity, repeatability, and long-term stability. The sensing element shall maintain reliable performance under specified operating voltage, temperature, humidity, and environmental conditions. Electrical characteristics shall provide stable output response, repeatable detection performance, and predictable recovery behavior following gas exposure. The sensor shall maintain reliable operation during continuous monitoring while minimizing drift and preserving measurement consistency throughout its service life. The sensing element shall provide dependable detection of the intended combustible gases while maintaining resistance to environmental influences and normal operational contaminants. The sensor shall exhibit stable response characteristics suitable for integration with embedded control systems and gas monitoring electronics. Mechanical construction shall provide adequate protection for the sensing element while allowing sufficient exposure to the surrounding atmosphere for effective gas diffusion. The package shall withstand handling, vibration, thermal cycling, and standard assembly processes without degradation of sensing performance or structural integrity. Workmanship shall be free from defects including contamination, mechanical damage, corrosion, package deformation, or structural inconsistencies that could adversely affect sensing accuracy or reliability. Inspection, validation, and testing shall be performed using calibrated equipment and controlled quality procedures to verify compliance with engineering and manufacturing requirements. Any deviation from this specification shall require formal engineering evaluation, documented technical justification, and approval through the established engineering change control process before implementation. Documentation Supporting documentation shall include engineering drawings, electrical specifications, gas sensitivity characteristics, qualification reports, inspection records, reliability data, material declarations, and revision-controlled manufacturing documentation. All documentation shall be maintained under formal configuration management and quality assurance systems to ensure complete product traceability. Revision Control Any modification to this specification shall be managed through the formal engineering change management process. All revisions shall undergo technical review, validation, and approval before release to ensure continued compliance with design intent and applicable engineering standards. #EngineeringSpecification #GasSensor #CombustibleGasSensor #SemiconductorSensor #GasDetection #IndustrialSafety #EmbeddedSystems #EnvironmentalMonitoring #QualityAssurance #EngineeringDocumentation
0 Uses0 Stars