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    • High Bandwidth & Sampling Rate: Models available in 200 MHz, 350 MHz, 500 MHz, and 1 GHz with up to 5 GS/s sample rate.
    • Deep Memory Capture: Up to 250 Mpts in interleaved mode, allowing detailed waveform analysis.
    • Advanced Triggering & Waveform Capture: Zone Triggering, History Mode (100,000 waveforms), and a waveform capture rate of 500,000 wfm/s.
    • Math & Measurement Functions: 9 basic math functions (FFT, addition, subtraction, multiplication, division, etc.) and 50+ automatic measurement parameters.
    • Bode Plot & Power Analysis: Standard features include Bode Plot for frequency response testing and comprehensive power analysis for applications like power quality assessment, current harmonics, inrush current, and switching loss.
    • Mixed Signal Debugging: Optional 16-channel MSO capability for digital signal acquisition.
    • Connectivity & Remote Access: USB, LAN, and embedded web server for remote control and data analysis.

     

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    • Protocol reports
    • Generation of waveforms with synchronous data acquisition
    • Modular Expandable
    • Individual Waveform Generation
    • Standard Libraries included
    • Unlimited Waveform size
    • 2 different Waveforms synchronously
    • DLL’s for LabView, Vector CANoe / CAPL, C#, C++, ANSI C, Python, etc.
    • Simulation of imported oscilloscope waveform

     

  • BOLAB revolutionizes EV testing with powerful, flexible, and modular HV Electric Vehicle Test Systems. These solutions offer high-speed testing, covering diverse profiles and budgets. Features include a modular design, adaptability, and WaveMaster Software for custom waveforms. Benefit from efficiency, precision, and cost-efficiency in EV testing. Discover the future of high-speed testing with BOLAB’s innovative solutions.

    • Dynamic set up: During a simple frame reading, users can define elements to be acquired, recorded, visualized and surveyed in real time.
    •  Macro-command: Users can write and execute complex test sequences thanks to macro-command functions.
    •  Local & Distant Integration: AT-DIAG can be driven and interrogated by external software. It can also be used with a computer through Ethernet.
    • Communication ports: Communication is done through RS232, NI CAN acq. Card, specific acquisition card or system.
    •  Protocols: FREERUNNING, KWP2000, CAN, LIN, FlexRay, ARINC, … Possibility to implement new protocols (customized protocol, …).
    •  Multi-product & Multi-protocol Communication: Communication can be set up with multiple addresses and protocols during a single test.

     

    • 1 software for all your equipment
    • 1 software for all standards
    • 1 software for your electrical and EMC tests
    • Advanced functions of monitoring and control
    • Automated reports
    • Team of specialists at your disposal

     

    • Fast: ACA compression and parallelization allow to speed up the calculation
    • Accurate: Fully validated with measurement results on real mock-up
    • Innovative: New method from research labs
    • Powerful: Compute very large models
    • Easy: Dedicated graphical user interface with modern layout

     

    • Fast: ACA compression and parallelization allow to speed up the calculation
    • Accurate: Fully validated with measurement results on real mock-up
    • Innovative: New method from research labs
    • Powerful: Compute very large models
    • Easy: Dedicated graphical user interface with modern layout

     

    • Unique user interface for all tests
    • Independent from any measuring device manufacturers
    • Free drivers and over 500 supported devices
    • Efficient and dedicated Technical support
    • Wide range of supported standards (ENxx, CISPR, AUTOMOTIVE, DO160, …)
    • Interface Agilent VEE™, WindowsLabView™, LabWindows CVI™, Visual C++
    • Operating system: Win XP, Vista, Seven, Windows 8
    • Report in MS Office™ 2003, 2007, 2010, 2013, Open office

     

  • Bidirectional (source & sink), Regenerative 0…65VDC to 0…1500VDC, 20kW up to 1.5 MW 

    • cell system nominal voltage and type of chemistry
    • number of cells
    • internal resistance and associated parameters
    • cell temperature progression
    • allowed current
    • charge efficiency
    • energy computing and management facilities
    • time-dependent and functional dependent parameters