Today, we are officially launching the new-generation Semiconductor Device Analyzer SA8000. Built on an architecture with fully independent intellectual property rights, a high-end test platform that combines sub-femtoampere current resolution and modular
With advances in semiconductor process technologies, the market requires instrument manufacturers to provide faster and more precise solutions for arbitrary linear waveform generation and fast measurement.
The semiconductor testing, automotive electronics, and passive component industries are undergoing the same transformation: test frequencies are rising to the MHz range, and bias voltages are gradually exceeding 40 V. At the same time, there is a growing
Semight is committed to breaking through core technologies of high-end optoelectronic test instruments. Through the accumulation of experience in high-speed signal processing and integrity analysis, our high-speed BERT has ushered in a brand-new upgrade.
Silicon Carbide (SiC) MOSFETs have emerged as game-changers in power electronics due to their wide bandgap, enabling them to handle significantly higher voltages and temperatures than traditional silicon devices. With a critical electric field nearly an o
WAT is a cornerstone of semiconductor manufacturing, ensuring that wafers meet the highest standards of quality, reliability, and performance. Test structures are designed in on the wafer (usually in the scribe line) to provide critical insights into the
Semight’s newly upgraded 12-channel PXIe SMU S2014C redefines testing capabilities in high-density integration and high dynamic response scenarios, featuring ultra-fine resolution of 1μV/1pA and a sampling rate of 1MS/s. This advancement accelerating inno
Along with the growth in AI computing power demands, the global optical communication industry is under increasing pressure to enhance data transmission rate. 800Gbps technology has already been gradually commercialized, and recently, industry leading pla