| Topology | Buck Converter |
| Input voltage | 1.8-5.5 V |
| Output 1 | 3.3 V / 0.4 A |
| IC revision | 2 |
Industrial IoT (IIoT) is driving technological innovation and progress in machinery and production systems. IIoT becomes more connected, with greater flexibility and control. The same technologies are gaining interest in structural health monitoring (SHM).The STDES-CBMLoRaBLE proposes an innovative modular system platform, which incorporates multiple sensors, allowing many application scenarios.The platform is based on sensors monitor vibration, environmental, inclinometer, and multiple wireless connectivities, short and long range.The main applications fields are industry and energy farms (when performing condition-based monitoring), telecommunication applications (used for pointing, leveling, and stabilizing radars and antennas), smart buildings, and infrastructure (used for leveling and structural health inclination).The hardware design consists of three boards: one main board and two expansion boards with sensors.The modularity allows the user to place the expansion close to the equipment, using an easy-to-use PCB flexible expansion cable.Monitoring is based on the edge processing running on the STM32WB5MMG microcontroller. This is the key element for all large-scale applications.Raw data streams can easily exceed the bandwidth limits of the technology used, or even the processing capabilities of the servers network and cloud systems.For these reasons, short and long-range connectivity have been considered (Bluetooth® Low Energy and LoRa) featured by an STM32WB5MMG module and an STM32WL55JC SoC. They enable nearby and remote monitoring via the STBLESensor mobile app and the DSH-PREDMNT AWS dashboard.These technologies can be used at the same time, via their user interfaces, for monitoring and setup purposes.
Order Code | Datasheet | Downloads | Status | Product series | Emitting Color | λPeak B typ.(nm) | λPeak G typ.(nm) | λPeak R typ.(nm) | λDom B typ.(nm) | λDom G typ.(nm) | λDom R typ.(nm) | IV B typ.(mcd) | IV G typ.(mcd) | IV R typ.(mcd) | VF B typ.(V) | VF G typ.(V) | VF R typ.(V) | Chip Technology | 2θ50% typ.(°) | Mount | Packaging | Qty. | Ingress Protection Code | PCB Thickness(mm) | f | Center Contact | Operating Temperature | Samples | |
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![]() | WR-SMA PCB End Launch, –, – | Status Activei| Production is active. Expected lifetime: >10 years. | Product seriesWR-SMA PCB End Launch | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | MountEnd Launch | PackagingTray | Packaging Unit180 | Ingress Protection CodeNone | PCB Thickness1.1 mm | Frequency RangeDC~18 GHz | Center ContactØ 0.76 | Operating Temperature -65 °C up to +165 °C | |||
![]() | WL-SFCC SMT Full-color Chip LED Compact, Red & Green & Blue, 465 nm | Downloads25 files RAY files
| Status Activei| Production is active. Expected lifetime: >10 years. | Product seriesWL-SFCC SMT Full-color Chip LED Compact | Emitting ColorRed & Green & Blue | Peak Wavelength (Blue) [typ.]465 nm | Peak Wavelength (Green) [typ.]522 nm | Peak Wavelength (Red) [typ.]625 nm | Dominant Wavelength (Blue) [typ.]470 nm | Dominant Wavelength (Green) [typ.]530 nm | Dominant Wavelength (Red) [typ.]621 nm | Luminous Intensity (Blue) [typ.]50 mcd | Luminous Intensity (Green) [typ.]180 mcd | Luminous Intensity (Red) [typ.]80 mcd | Forward Voltage (Blue) [typ.]2.8 V | Forward Voltage (Green) [typ.]2.7 V | Forward Voltage (Red) [typ.]2 V | Chip TechnologyAlInGaP + InGaN | Viewing Angle Phi 0° [typ.]140 ° | MountSMT | – | – | – | – | – | – | Operating Temperature -40 °C up to +85 °C | ||
![]() | WR-UMRF PCB Receptacle SMT with 3 Pads, –, – | Status Activei| Production is active. Expected lifetime: >10 years. | Product seriesWR-UMRF PCB Receptacle SMT with 3 Pads | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | – | PackagingTape and Reel | Packaging Unit1300 | Ingress Protection CodeNone | – | Frequency RangeDC~6 GHz | – | Operating Temperature -40 °C up to +90 °C |