BOLAB Systems GmnH - Amplifiers & Power Supply
See "Specifications & Details" tab for more information.

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Advanced Ripple Testing: Meets ISO 21498, LV123, VW 80300, Nissan MES PW 67602, Mazda, and emerging standards. |
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Series Amplifier Integration: High accuracy ripple injection, minimal distortion, and enhanced safety. |
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Waveform Versatility: Sine, square, trapezoidal, pulses, and triangle waveform generation. |
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WaveMaster Software: Fast DUT impedance measurement, automated test sequences, and dynamic voltage/current control. |
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High Power Capability: Ripple Voltage up to 100 Vpp, currents from 100A to 2000A+, and frequency range 10 Hz–300+ kHz. |
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Future-Proof Design: Modular architecture for easy upgrades and adaptation to new standards. |

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

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High current power stage (uni-directional) |
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Up to 32 channels for switching low-current signals (bi-directional) |
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Switching of resistive, inductive, capacitive passive, and active loads/devices |
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Input voltage up to 100V |
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Output current up to 200A DC |

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DC - 200 kHz bandwidth DC |
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MHz (small signal -3 dB) |
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Output voltage ±75 Vpk |
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Rise / fall time 100 V/µs |
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USB interface standard, LAN optional |
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Analog control input 0 ... ±10 V for control of voltage and current |
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Monitor outputs for measured voltage and current values (not all models) |
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Modularly extensible via master-slave mode |
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Parallel and Series Connections for two or more units |

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DC - 200 kHz bandwidth DC |
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MHz (small signal -3 dB) |
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Output voltage ±75 Vpk |
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Rise / fall time 100 V/µs |
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USB interface standard, LAN optional |
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Analog control input 0 ... ±10 V for control of voltage and current |
|
Monitor outputs for measured voltage and current values (not all models) |
|
Modularly extensible via master-slave mode |
|
Parallel and Series Connections for two or more units |

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DUT Current Ratings: 40A, 76A, 114A, 152A, 190A, 228A |
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Voltage Ripple: Up to 200 kHz (500 kHz) |
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Amplifier: BOLAB 100-TS Series 4-quadrant system |
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Load Dump Generator: BOLAB 10/63-210 1C |
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Switching: FIS 100-xx & FIS SM 96-2 (expandable) |
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Power Supply: BOLAB or third-party compatible |
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High-Voltage & Insulation Testing: G1-1G-T & 90-4K |
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Modular & Scalable: Full ISO 16750-2:2023 compliance |

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Full Compliance – Meets all ISO 7637-4 test requirements |
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Pulse A Testing – Simulates MOSFET/IGBT switching noise (100 kHz – 10 MHz) |
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Pulse B Testing – Low-frequency sinusoidal disturbances (3 kHz – 300 kHz) |
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High-Power RF Amplifier – 75W output (100 kHz – 400 MHz) for clean signal generation |
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Burst Generator – Supports configurable burst parameters (1–1000 cycles) |
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Power Meter & Directional Coupler – Accurate transient measurement (100 kHz – 10 MHz) |
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Integrated Transformer – Isolates high-voltage circuits & prevents transient damage |
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Scalable & Modular – Configurable for custom DUT testing needs |
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Turnkey Solution – Includes generator, amplifier, coupler, and switching solutions |

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BLS 100-TS, For Low Voltage ISO 7637-2 & 16750-2 Transient testing |
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Protocol reports |
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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 |

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Technologically advanced, fast-switching, compact 19-inch power supplies |
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High control dynamics in the 100...200 µs range – even at higher power levels |
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Exceptional current accuracy of <0.02% FS, additional high-resolution current measurement range included as standard |
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Full power regeneration and a high degree of efficiency, resulting in a significant reduction of energy consumption and heat dissipation, low acoustic noise |
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Wide current-voltage range with an auto-ranging factor of 3 |
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Full digital CV, CC, CP, CR, and Ri-Sim control modes |

|
Technologically advanced, fast-switching, compact 19-inch power supplies |
|
High control dynamics in the 100...200 µs range – even at higher power levels |
|
Exceptional current accuracy of <0.02% FS, additional high-resolution current measurement range included as standard |
|
Full power regeneration and a high degree of efficiency, resulting in a significant reduction of energy consumption and heat dissipation, low acoustic noise |
|
Wide current-voltage range with an auto-ranging factor of 3 |
|
Full digital CV, CC, CP, CR, and Ri-Sim control modes |

|
Technologically advanced, fast-switching, compact 19-inch power supplies |
|
High control dynamics in the 100...200 µs range – even at higher power levels |
|
Exceptional current accuracy of <0.02% FS, additional high-resolution current measurement range included as standard |
|
Full power regeneration and a high degree of efficiency, resulting in a significant reduction of energy consumption and heat dissipation, low acoustic noise |
|
Wide current-voltage range with an auto-ranging factor of 3 |
|
Full digital CV, CC, CP, CR, and Ri-Sim control modes |

|
Technologically advanced, fast-switching, compact 19-inch power supplies |
|
High control dynamics in the 100...200 µs range – even at higher power levels |
|
Exceptional current accuracy of <0.02% FS, additional high-resolution current measurement range included as standard |
|
Full power regeneration and a high degree of efficiency, resulting in a significant reduction of energy consumption and heat dissipation, low acoustic noise |
|
Wide current-voltage range with an auto-ranging factor of 3 |
|
Full digital CV, CC, CP, CR, and Ri-Sim control modes |

|
Technologically advanced, fast-switching, compact 19-inch power supplies |
|
High control dynamics in the 100...200 µs range – even at higher power levels |
|
Exceptional current accuracy of <0.02% FS, additional high-resolution current measurement range included as standard |
|
Full power regeneration and a high degree of efficiency, resulting in a significant reduction of energy consumption and heat dissipation, low acoustic noise |
|
Wide current-voltage range with an auto-ranging factor of 3 |
|
Full digital CV, CC, CP, CR, and Ri-Sim control modes |

|
Technologically advanced, fast-switching, compact 19-inch power supplies |
|
High control dynamics in the 100...200 µs range – even at higher power levels |
|
Exceptional current accuracy of <0.02% FS, additional high-resolution current measurement range included as standard |
|
Full power regeneration and a high degree of efficiency, resulting in a significant reduction of energy consumption and heat dissipation, low acoustic noise |
|
Wide current-voltage range with an auto-ranging factor of 3 |
|
Full digital CV, CC, CP, CR, and Ri-Sim control modes |

|
Technologically advanced, fast-switching, compact 19-inch power supplies |
|
High control dynamics in the 100...200 µs range – even at higher power levels |
|
Exceptional current accuracy of <0.02% FS, additional high-resolution current measurement range included as standard |
|
Full power regeneration and a high degree of efficiency, resulting in a significant reduction of energy consumption and heat dissipation, low acoustic noise |
|
Wide current-voltage range with an auto-ranging factor of 3 |
|
Full digital CV, CC, CP, CR, and Ri-Sim control modes |

|
Technologically advanced, fast-switching, compact 19-inch power supplies |
|
High control dynamics in the 100...200 µs range – even at higher power levels |
|
Exceptional current accuracy of <0.02% FS, additional high-resolution current measurement range included as standard |
|
Full power regeneration and a high degree of efficiency, resulting in a significant reduction of energy consumption and heat dissipation, low acoustic noise |
|
Wide current-voltage range with an auto-ranging factor of 3 |
|
Full digital CV, CC, CP, CR, and Ri-Sim control modes |

|
Technologically advanced, fast-switching, compact 19-inch power supplies |
|
High control dynamics in the 100...200 µs range – even at higher power levels |
|
Exceptional current accuracy of <0.02% FS, additional high-resolution current measurement range included as standard |
|
Full power regeneration and a high degree of efficiency, resulting in a significant reduction of energy consumption and heat dissipation, low acoustic noise |
|
Wide current-voltage range with an auto-ranging factor of 3 |
|
Full digital CV, CC, CP, CR, and Ri-Sim control modes |

|
Technologically advanced, fast-switching, compact 19-inch power supplies |
|
High control dynamics in the 100...200 µs range – even at higher power levels |
|
Exceptional current accuracy of <0.02% FS, additional high-resolution current measurement range included as standard |
|
Full power regeneration and a high degree of efficiency, resulting in a significant reduction of energy consumption and heat dissipation, low acoustic noise |
|
Wide current-voltage range with an auto-ranging factor of 3 |
|
Full digital CV, CC, CP, CR, and Ri-Sim control modes |

|
Technologically advanced, fast-switching, compact 19-inch power supplies |
|
High control dynamics in the 100...200 µs range – even at higher power levels |
|
Exceptional current accuracy of <0.02% FS, additional high-resolution current measurement range included as standard |
|
Full power regeneration and a high degree of efficiency, resulting in a significant reduction of energy consumption and heat dissipation, low acoustic noise |
|
Wide current-voltage range with an auto-ranging factor of 3 |
|
Full digital CV, CC, CP, CR, and Ri-Sim control modes |

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100-TS, VW 80000 / LV 124 : Battery test systems Test systems for 12 V | 24 V | 48 V batteries |
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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 |

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100-TS, VW 80300 / LV 123 / LV 148 : HV Electric vehicle test systems |
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BOLAB´s new and world´s unique solutions in testing High Voltage profiles for Electric Vehicles are very powerful, flexible, and modular. |
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Three different solutions for high-speed testing, a medium-range for covering most profiles, and a low budget. Powerful solutions for starting and gaining experience are available. |
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Modularity is one of the most important characteristics of BOLAB´s systems. |
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Start with a “small” system of 1 KW (1.000 V, 15 A) and expand module by module as applications require and budgets allow. |
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It was never this easy to get involved with high voltage tests for Electric Vehicles and to build up these tests to a most powerful solution. delete here |