Semtech Corporation, Wilhelmsen and The Things Industries (TTI) have announced a partnership to leverage Semtech’s LoRa® devices to help deliver cost-effective, robust and proven IoT systems to the maritime shipping industry. Read more
Semtech, Wilhelmsen and The Things Industries (TTI) announced its partnership to leverage Semtech’s LoRa devices to help deliver cost-effective, robust and proven IoT solutions to the maritime shipping industry. Read more
Semtech Corporation, a leading supplier of high performance analogue and mixed-signal semiconductors and advanced algorithms, Wilhelmsen and The Things Industries have announced a partnership to leverage Semtech’s LoRa devices to help deliver cost-effective, robust and proven IoT solutions to the maritime shipping industry. Read more
Wilhelmsen implements LoRa in its portfolio-wide digitalization strategy. The new maritime Internet of Things (IoT) network helps deliver cost-effective, robust and proven IoT solutions to Wilhelmsen’s customers worldwide. Read more
Maritime shipping giant Wilhelmsen will implement a potentially massive Internet of Things platform aboard ocean-going freighters around the globe that relies on LoRa low-power wireless connectivity. Read more
Semtech, Wilhelmsen and The Things Industries (TTI) have formed a partnership to use Semtech’s LoRa devices to help deliver what they describe as cost-effective, robust and proven IoT solutions to the maritime shipping industry. Read more
Byron BeMiller, Director of Smart Building Applications, Wireless and Sensing Products Group, Semtech Corporation, argues that its easier than you think for new technology to revolutionize old buildings. Read more
Semtech has announced new addition to its TClamp platform. The two-line, 36V TClamp3602P offers enhanced levels of protection against both surge and electrostatic discharge (ESD) in a small leadless package. This transient voltage suppression (TVS) array is optimized for safeguarding industrial data interfaces such as RS-485 and CAN from dangerous transient threats, while also minimizing capacitive loading on data interfaces. Read more