The applications of 3D printing span many industries, from aircraft fuel nozzles to dental aligners. Here we look at some of the most important uses of the technology.
A centralized 720 kW power system built with MEAN WELL's SHP-10K power supplies and engineered by Sager Electronics delivers high-efficiency, low-maintenance performance for a horticultural facility running 720 LED lights per room, simplifying control, scaling reliably, and minimizing heat.
An international team of researchers has developed a silicon-based metasurface that transmits light in a narrow range of wavelengths irrespective of a source's polarization.
This article provides a comprehensive overview of motor controllers, covering definitions, types, control strategies, design considerations, selection guidelines, and emerging trends.
Explore how first-principles engineering and human judgment shape reliable high-voltage IC design, from yield thinking to long-term system lifetime and root-cause discipline.
This article explains what is LDO, how the LDO regulator works, discusses key specifications such as dropout voltage, line/load regulation, noise, and PSRR, and shows how to select and design with LDOs to meet demanding engineering requirements.
The integrated design achieves accurate micro gas chromatography and can help reduce the cost of monitoring chemical synthesis, natural gas pipelines or at-home air quality.
Hybrid bonding provides the adhesive free, copper to copper interconnects that are driving cutting edge 3D chip stacking. This article explains the theory, process, benefits, challenges, applications, and emerging trends of hybrid bonding for engineers.
In this episode, we talk about the engineers that built a wireless tag that detects and remembers overheating without a chip or a battery, enabling cold-chain monitoring without creating electronic waste.
The applications of 3D printing span many industries, from aircraft fuel nozzles to dental aligners. Here we look at some of the most important uses of the technology.
A centralized 720 kW power system built with MEAN WELL's SHP-10K power supplies and engineered by Sager Electronics delivers high-efficiency, low-maintenance performance for a horticultural facility running 720 LED lights per room, simplifying control, scaling reliably, and minimizing heat.
An international team of researchers has developed a silicon-based metasurface that transmits light in a narrow range of wavelengths irrespective of a source's polarization.
This whitepaper introduces LTG as a new solution for thermal-aware electronics. It explains how the technology works, what sets its silicon architecture apart from conventional materials, and why it is a phenomenal solution for dense, thermally challenging designs.
Capacitor codes can seem like a cryptic puzzle, but they hold vital information about capacitance, voltage ratings, tolerance, and more. In this guide, we'll break down capacitor marking codes, SMD capacitor identification, capacitor value lookup, EIA capacitor codes, and decipher capacitor symbols
Understand the theory behind resistors, explore real world applications, and learn how to select the right component for reliable designs. This article targets digital design and hardware engineers, and electronics engineering students looking for an authoritative resource on resistors.
Conventional microcontrollers make digital control impractical in 50 W-1 kW power supplies due to cost and power demands. ROHMs LogiCoA™ overcomes this with a hybrid, event-driven design that adds calibration, logging, and software flexibility for efficient, scalable power electronics solutions.
Nexperia's MLPAK MOSFETs offer a balanced, scalable solution for modern power and signal designs, combining proven manufacturing, compact form factors, and application-driven performance across consumer, industrial, and embedded systems.
A team of Caltech engineers has developed a smart capsule called PillTrek, which can measure pH, temperature, and a variety of different biomarkers. It incorporates simple, inexpensive sensors in a miniature wireless electrochemical workstation that relies on low-power electronics.
Researchers have developed a self-powered microneedle patch to monitor a range of health biomarkers without drawing blood or relying on batteries or external devices.