OpenInfrared Point is an ESP32-S3 powered universal remote hub with Infrared, BLE, NFC, audio streaming (Crowdfunding)

OpenInfrared Point Universal Remote Hub

OpenInfrared Point is a universal remote hub built around ESP32-S3 that lets users control compatible devices from a smartphone by scanning a QR code or tapping an NFC tag, eliminating the need for dedicated remote controls. Powered via USB-C, the Point hub can learn IR codes from existing remote controls and supports infrared, IP (HTTP), and Bluetooth Low Energy (BLE) device control, with RF support planned as a future add-on. Hardware features include an IR output for external emitters, an audio input for private TV audio streaming, built-in NFC, QR-code access, and support for controlling TVs, projectors, AV receivers, air conditioners, streaming devices, and other compatible equipment. OpenInfrared Point specifications: Wireless Module – ESP32-S3-WROOM-1 SoC – Espressif Systems ESP32-S3 CPU – Dual-core Tensilica LX7 up to 240 MHz with vector extension for AI/ML workloads RAM – 512KB SRAM; 8MB PSRAM Wireless – WiFi 4 and Bluetooth LE 5 Storage – 16MB […]

IoTLabs wM-Bus gateway – An ESP32 device with Wireless M-Bus connectivity for Home Assistant

wM Bus Gateway

IoTLabs wM-Bus Gateway is an ESP32 device supporting the Wireless M-Bus (wM-Bus) standard for receiving data from compatible meters and sensors, designed for full integration with Home Assistant. Wireless M-Bus (Wireless Meter Bus) is a wireless protocol specifically designed for remote reading of smart meters, generally gas, water, or electricity meters, and typically used by utilities, but the wM-Bus gateway allows you to deploy the standard for your home automation solution, meters, and sensors. wM-Bus gateway specifications: Main controller – ESP32 dual-core microcontroller with Wi-Fi and BLE connectivity Display – 1.3-inch OLED for live measurements and status wM-Bus – 868 MHz radio receiver; Semtech SX1276-based RFM95/RFM96 according to the code Supports T1 and C1 frames, compatible with the wmbusmeters library Antennas Built-in 2.4 GHz antenna for Wi-Fi and Bluetooth External SMA antenna for wireless M-Bus; important: must be connected before powering the device to avoid damage Misc Top button to […]

Raspberry Pi gets 10BASE-T1S/T1L Single Pair Ethernet (SPE) HAT+ board

Raspberry Pi 10BASE T1S SPE HAT

Germany-based Brechel Electronic has launched two new Single Pair Ethernet (SPE) expansion boards for Raspberry Pi platforms: the BE-IIS-HPP-T1S and the BE-IIS-HPP-T1L. Designed for technology evaluation, industrial network prototyping, and educational laboratory use, these boards add 10 Mbit/s Ethernet communication over a single twisted pair to standard Raspberry Pi SBCs. The BE-IIS-HPP-T1S is based on the Microchip LAN8651 10BASE-T1S MAC-PHY and supports IEEE 802.3cg Single Pair Ethernet over multidrop networks with up to 8 nodes, enabling distances up to 25 meters on a shared bus. For longer-reach point-to-point links, the company offers the BE-IIS-HPP-T1L, built around Analog Devices ADIN1110 MAC-PHY. Both boards are part of the BE-IIS HAT++ ecosystem, which allows multiple industrial communication HATs to be stacked on a single Raspberry Pi without running into SPI or GPIO resource conflicts. Brechel Electronic 10BASE-T1L and 10BASE-T1S specifications: Compatibility – Raspberry Pi HAT+ compliant T1L – Supports Pi 3, 4, 5, and Zero […]

M5Stack Stamp-C5 – A Tiny ESP32-C5 USB-C board/module with up to 19 GPIO, 3.7V battery support

M5Stack Stamp-C5

M5Stack Stamp-C5, also known as the M5Stamp-C5, is a tiny wireless IoT USB-C board based on the Espressif ESP32-C5 RISC-V microcontroller with dual-band WiFi 6, Bluetooth LE, and 802.15.4 (Zigbee/Thread) connectivity. Despite its small size (19.1 x 17.6mm), the module exposes up to nineteen GPIO pins, eleven on standard 2.54mm pitch headers and castellated holes, and eight on an FPC extension connector. The board also supports battery charging and ships with an external IPEX antenna for wireless connectivity, since there’s no built-in antenna. M5Stack Stamp-C5 specifications: Wireless MCU –  Espressif Systems ESP32-C5HF4 CPU Single-core 32-bit RISC-V processor @ up to 240 MHz Low-power RISC-V core @ 48 MHz acting as the main processor for power-sensitive applications Memory – 384 KB SRAM on-chip Storage – 320 KB ROM, 4MB SPI flash Wireless Dual-band (2.4/5 GHz) 802.11ax WiFi 6, 802.11b/g/n WiFi 4 backward compatibility WiFi modes: Station mode, SoftAP mode, SoftAP + […]

Norik Systems introduces nRF9151-based USB Dongle for DECT NR+ deployments

Norik DECT NR+ USB dongle

Norik Systems has developed a compact USB dongle based on Nordic Semiconductor’s nRF9151 SiP, mostly designed to work as a DECT NR+ child node or a USB-powered gateway. As a reminder, DECT NR+ is a non-cellular 5G standard for long-range low-power applications that works at 1.9 GHz and supports up to one million nodes through mesh, star, and point-to-point topologies. The Norik USB dongle enables developers to easily add DECT NR+ to gateways or child modes. Norik Systems DECT NR+ USB dongle specifications: Wireless System-in-Package – Nordic Semi nRF9151 CPU – Arm Cortex-M33 @ 64 MHz Memory – 256KB RAM Storage – 1MB flash Connectivity Multimode LTE-M/NB-IoT/NB-NTN modem with DECT NR+ support and GNSS. 700-2200 MHz LTE band support. Power Class 5 20 dBm Power Class 3 23 dBm 1.9 GHz and 915 MHz DECT NR+ band support (1, 2, 9, 22) Security – Arm TrustZone + Arm CryptoCell 310. […]

Tiny Calixto Systems AM62L STAMP SOM targets industrial automation, HMI applications, EV chargers

AM62L STAMP SOM and Evaluation Kit

Calixto Systems has introduced the AM62L STAMP SOM, a tiny (40x40mm) system-on-module around the Texas Instruments AM62L dual-core Arm Cortex-A53 CPU running at up to 1.25 GHz, along with an evaluation kit. Designed for embedded Linux applications, the module targets industrial automation, HMIs, EV chargers, and smart retail. Calixto AM62L STAMP SOM The SoM integrates up to 2GB LPDDR4x RAM and 8GB or 16GB eMMC storage, along with Gigabit Ethernet, two USB 2.0 OTG interfaces, dual SD interfaces, MIPI DSI and parallel RGB display support, McASP audio, and a wide range of industrial I/Os, including CAN FD, eight UARTs, four SPI buses, five I2C buses, ADC, DAC, PWM, GPIO, and a GPMC interface. It also integrates hardware security features such as AES encryption, RSA/ECC acceleration, DRBG, TRNG, and a unique device ID for secure embedded applications. AM62L STAMP SOM specifications: SoC – Texas Instruments Sitara AM62Lx single-core/dual-core Arm Cortex-A53 processor @ […]

u-blox F11 low-power dual-band GNSS chips and modules consume just 7mW in LEAP mode

u blox UBX F11270 KB and UBX F11170 CC L1,L5 dual band GNSS with just 7mW power consumption

u-blox has introduced the F11 platform, a new family of low-power GNSS chips and modules that includes the UBX-F11270-KB and UBX-F11170-CC dual-band GNSS chips, the UBX-M11070-KB  chip (L1-only), the MAX-M11N module (L1-only), and the EVK-F112 evaluation kit. These are designed for battery-powered applications such as aftermarket telematics, asset tracking, wearables, drones, micromobility, and other industrial and consumer devices. Among those, the UBX-F11270-KB and UBX-F11170-CC support dual-band L1/L5 GNSS that automatically switch between L1/L5 operation based on signal conditions. The UBX-M11070-KB chip and MAX-M11N module are L1 band only, but all the modules and chips in the series support LEAP (Low Energy Accurate Positioning) mode with a typical power consumption of around 7 mW. Other features include indoor detection, polygonal geofencing, and multipath mitigation. u-blox UBX-F11270-KB and UBX-F11170-CC specifications: GNSS Engine – u-blox F11 platform Memory / Storage UBX-F11270-KB – Embedded flash memory supports firmware upgrade UBX-F11170-CC – Optional external SPI […]

ESP32-C5 dual-band WiFi 6 and Bluetooth LE IoT board features 1.47-inch color LCD

ESP32-C5-LCD-1.47 board

We’ve covered plenty of connected displays based on ESP32 chips over the years, but the Waveshare ESP32-C5-LCD-1.47 is a little different, since it’s the first to feature an ESP32-C5 chip for dual-band WiFi 6 connectivity. It’s basically based on the ESP32-C6-LCD-1.47 design, but replaces the ESP32-C6 supporting 2.4 GHz WiFi 6 with an ESP32-C5 capable of handling both 2.4 GHz and 5 GHz WiFi 6. Other features mostly remain the same: a 1.47-inch 262K-color display with 320 x 172 resolution, 4MB of flash, an RGB LED, a microSD card slot, and two 9-pin headers for GPIO expansion. Waveshare ESP32-C5-LCD-1.47 specifications: Wireless MCU – Espressif Systems ESP32-C5FH4 CPU Single-core 32-bit RISC-V processor @ up to 240 MHz Low-power RISC-V core @ 40 MHz acting as the main processor for power-sensitive applications Memory – 384 KB SRAM on-chip Storage – 320 KB ROM, 4MB flash Wireless Connectivity Dual-band (2.4GHz/5 GHz) 802.11ax WiFi […]

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