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[2026 Power Electronics Conference] Tektronix, “Will Help Shorten Development Time Through Higher Resolution, Synchronization, and Automated Analysis Capabilities”
Participated in the 2026 Power Electronics Conference and showcased next-generation measurement solutions
Emphasized the importance of an integrated verification environment linking oscilloscopes and automation software.
Emphasized the importance of an integrated verification environment linking oscilloscopes and automation software.
Tektronix Korea emphasized the importance of an integrated verification environment that links oscilloscopes, power supplies, source meters, and automation software, going beyond the performance of single instruments.
Tektronix Korea participated in the '2026 Power Electronics Conference' held at the Gyeongju Hwabaek Convention Center from July 13 to 16 and introduced key measurement solutions necessary for power electronics research, development, and verification.
▲ View of the Tektronix Korea booth
This academic conference is a representative event in the field of power electronics, consisting of academic presentations, plenary sessions, industrial technology sessions, exhibitions, tutorials, and industry-academia-research exchange events.
Tektronix exhibited 2 Series, 3 Series, 4 Series, and 5 Series oscilloscopes and MP5000 Series modular precision test systems at the event, and introduced Tektronix measurement technology applicable to the verification of power converters, inverters, motor drives, power supplies, batteries, and semiconductor devices.
The 2 Series MSO is a portable mixed-signal oscilloscope that puts portability and field usability at the forefront. It provides up to 500 MHz bandwidth, 2 or 4 analog channels, a maximum sampling rate of 2.5 GS/s, and a 10 M point record length, and with a 10.1-inch touchscreen and optional battery pack, it is suitable for laboratory as well as field debugging environments.
The 3 Series MDO is a device that combines spectrum analysis capabilities with a benchtop oscilloscope. It supports a bandwidth of up to 1 GHz, two or four analog channels, a sampling rate of up to 5 GS/s, and a record length of 10 M points, providing standard 1 GHz and optional 3 GHz spectrum analysis functions. It is suitable for power electronics development environments that require simultaneous monitoring of both time and frequency domains, such as IoT, embedded design, and EMI sniffing.
The 4 Series B MSO is a mixed-signal oscilloscope enhanced with high-resolution measurement and multi-channel analysis. It offers four or six FlexChannel inputs, up to 1.5 GHz bandwidth, a sampling rate of 6.25 GS/s across all channels, 12-bit vertical resolution, and a record length of up to 62.5 M points. Each FlexChannel can be utilized as eight digital inputs when connecting analog signals or logic probes, making it advantageous for the simultaneous analysis of complex power conversion circuits.
The 5 Series MSO features a large display and high channel scalability. It offers 4, 6, or 8 FlexChannel inputs, up to 2 GHz bandwidth, 6.25 GS/s real-time sampling, a 62.5M point native record length, a 12-bit ADC, and up to 16-bit vertical resolution in high-resolution mode. Equipped with a 15.6-inch Full HD touch display, it expands the field of view for developers who need to observe multiple signals simultaneously, such as three-phase power, motors, inverters, and DC-DC converters.
The MP5000 series is a modular precision test system that allows a source meter unit and a power supply module to be combined in a 1U rack space. It supports three slots and a maximum of six channels, with the SMU module providing a maximum resolution of 60V, 1.5A, and 100fA, and the PSU module providing 50W per channel, a maximum output of 50V, and 5A. Additionally, it supports USB 3.0, Gigabit Ethernet, Python, IVI drivers, and TSP scripting, enabling it to handle automated environments from the verification stage to production testing.
"A Tektronix official stated, 'The power electronics industry is facing rapidly increasing measurement challenges due to the proliferation of electric vehicles, renewable energy, data center power supplies, and high-efficiency power semiconductors.' He added, 'In particular, in fields where fast switching, high voltage, and high current coexist, such as wide-bandgap semiconductor-based power converters, we will help shorten development time through higher resolution, synchronization, and automated analysis capabilities.'"
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