• $399.00
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    Hantek Oscilloscope, DSO2C35 Digital Oscilloscope 350 MHz Bandwidth with Dual Channels 2GSa/s Sample Rate Support 32 Automatic Measurement (350MHz/2CH/Hantek DSO2C35)

    • Core parameters: Dual-channel, 2 GS/s sampling rate, 350 MHz bandwidth; maximum storage depth of 80 Kpts (single-channel) and 40 Kpts (dual-channel); Time base range: 1 ns/div~1 ks/div; Support 1 M/50 impedance switching to ensure signal integrity; 8-bit vertical resolution; 500 uV-10 V vertical measurement gear, 300 VCAT withstand voltage input
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    Core parameters: Dual-channel, 2 GS/s sampling rate, 350 MHz bandwidth; maximum storage depth of 80 Kpts (single-channel) and 40 Kpts (dual-channel); Time base range: 1 ns/div~1 ks/div; Support 1 M/50 impedance switching to ensure signal integrity; 8-bit vertical resolution; 500 uV-10 V vertical measurement gear, 300 VCAT withstand voltage input
    Full functionality:Standard SCPI remote control instructions, convenient for users to build testing systems; Comes with five standard serial protocol triggers and decoding, supporting protocols including UART, LIN, CAN, SPI, IIC, making it easy to analyze serial bus data;Save and export function, which can save settings CSV, Information such as images, reference waveforms, and waveforms;Four sampling methods: normal, average, peak, and high-precision
    High usability and compatibility:14 operating languages, including English, German, French, Italian, Spanish, Polish, Dutch, Portuguese, and other popular languages;Manual, single time, one click AUTO measurement, simple and fast waveform measurement;XY mode supports dual window display, making it easy to understand waveform phase changes
    Powerful measurement and analysis functions:32 automatic measurement and threshold measurement functions, with test results supporting statistical analysis;There are two cursor measurement modes: manual and tracking, and the Math function also supports cursor measurement;FFT scale display, convenient for reading results
    Applicable scenarios: Diagnosis and repair of household appliances, automobiles, audio equipment, etc.; capturing and analyzing special signals generated in laboratory experiments; precise analysis of signals generated during the design, testing, and optimization of circuit boards, chips, and systems by engineers; teaching of electronics and electrical engineering-related courses in university laboratories or training institutions

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