High-Bandwidth Isolation Amplifiers
The high-bandwidth isolation amplifier developed by Startorus Fusion is designed for high-speed analog signal isolation. It supports ±2.5 V input, with a bandwidth ranging from DC to 50 MHz and an isolation voltage of 1500 VDC. It features 8 independent and mutually isolated channels. With a 1 MΩ input impedance, errors caused by the internal resistance of signal sources can be reduced. It also incorporates noise suppression measures to minimize system noise impact. The isolation amplifier is housed in a compact and portable aluminum alloy casing, making it easy to operate and use.

High-Bandwidth Isolation Amplifiers

The high-bandwidth isolation amplifier developed by Startorus Fusion is designed for high-speed analog signal isolation. It supports ±2.5 V input, with a bandwidth ranging from DC to 50 MHz and an isolation voltage of 1500 VDC. It features 8 independent and mutually isolated channels. With a 1 MΩ input impedance, errors caused by the internal resistance of signal sources can be reduced. It also incorporates noise suppression measures to minimize system noise impact. The isolation amplifier is housed in a compact and portable aluminum alloy casing, making it easy to operate and use.
General Isolation Amplifiers
The general isolation amplifier developed by Startorus Fusion is designed for analog signal isolation. The isolation amplifier supports ±10 V input, with a bandwidth ranging from DC to 200 kHz and an isolation voltage of up to 3000 VDC. It offers multiple gain settings such as ×1, ×5, ×10, equivalent to an input range of ±1 V to ±10 V, eliminating the need for external attenuators or gain stages. With a 1 MΩ input impedance, errors caused by the internal resistance of signal sources can be reduced. It also features an internal low-pass filter to suppress signal noise. The output load capacity can reach 250 mA, ensuring reliability and signal-to-noise ratio in long-distance signal transmission. Additionally, the isolation amplifier adopts a 2U panel lock form, providing flexible multi-channel expansion capabilities.

General Isolation Amplifiers

The general isolation amplifier developed by Startorus Fusion is designed for analog signal isolation. The isolation amplifier supports ±10 V input, with a bandwidth ranging from DC to 200 kHz and an isolation voltage of up to 3000 VDC. It offers multiple gain settings such as ×1, ×5, ×10, equivalent to an input range of ±1 V to ±10 V, eliminating the need for external attenuators or gain stages. With a 1 MΩ input impedance, errors caused by the internal resistance of signal sources can be reduced. It also features an internal low-pass filter to suppress signal noise. The output load capacity can reach 250 mA, ensuring reliability and signal-to-noise ratio in long-distance signal transmission. Additionally, the isolation amplifier adopts a 2U panel lock form, providing flexible multi-channel expansion capabilities.
10 kV Isolation Amplifier
The 10 kV Isolation Amplifier is a high-safety analog signal isolation device designed for nuclear fusion plasma experiments and high-voltage, high-electromagnetic-interference environments. The unit provides electrical isolation withstanding up to 10 kV DC, enabling safe and stable signal transmission under high common-mode voltage conditions. The system employs a custom-designed isolation transformer combined with a multi-stage analog signal processing architecture, achieving exceptional isolation performance without compromising signal accuracy or stability. Housed in a compact chassis with standardized connectors, the instrument is well suited for plasma diagnostics, high-voltage power supply testing, and high-energy physics measurement systems.

10 kV Isolation Amplifier

The 10 kV Isolation Amplifier is a high-safety analog signal isolation device designed for nuclear fusion plasma experiments and high-voltage, high-electromagnetic-interference environments. The unit provides electrical isolation withstanding up to 10 kV DC, enabling safe and stable signal transmission under high common-mode voltage conditions. The system employs a custom-designed isolation transformer combined with a multi-stage analog signal processing architecture, achieving exceptional isolation performance without compromising signal accuracy or stability. Housed in a compact chassis with standardized connectors, the instrument is well suited for plasma diagnostics, high-voltage power supply testing, and high-energy physics measurement systems.
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