In many calibration laboratories, automating oscilloscope calibration represents a significant leap in productivity. Traditionally, this process demands extensive time from skilled operators performing repetitive tasks. While semi- or partial automation solutions offer some relief, they often introduce their own set of complications. Now you can explore the Fluke 9500C High-Performance Oscilloscope Calibrator Rent in Bangladesh, rent high-precision oscilloscope calibrators for labs and industries with certified accuracy and reliable performance.
Over recent years, oscilloscopes have evolved from simple two-channel instruments to complex four-channel devices. Calibrating these advanced instruments typically involves moving the calibration signal across different channels, which traditionally required manual cable adjustments. This method, especially with high-performance instruments, risks introducing measurement uncertainties due to cable and connector handling. Switching matrices, an alternative for signal routing, can lead to issues such as signal reflections and path differences, affecting calibration accuracy.
The Fluke 9500C effectively addresses these challenges, offering true, full automation through its innovative Active Heads. In the 9500C system, all necessary signals for comprehensive oscilloscope calibration are generated by detachable heads, which are remotely connected to the calibrator mainframe. These heads directly interface with the oscilloscope inputs, eliminating the need for additional cabling. Control and waveform switching are seamlessly managed by the mainframe, with the process occurring within the head itself – positioned just millimeters away from the oscilloscope input and amplifiers. Each 9500C mainframe can control up to five heads, enabling the calibration of a 4-channel oscilloscope with an external trigger. This design ensures that all required signals are supplied, controlled, and switched without any need for operator intervention or external switching mechanisms.
Efficient, effective, productive - your key to exceptional signal performance
| 9500C High-Performance Oscilloscope Calibrator | 9500C Mainframe with 9540C Head | |
| Oscilloscope Functions | Range | Best Performance |
| ACV* | 40 uV to 200Vp-p; 1 MΩ and 50 Ω Load; 10 Hz to 10 kHz Square Wave | ±0.1% + 10uV |
| DCV* | 1 mV to 200V into 1 MΩ ; 1 mV to 5V into 50 Ω | ±0.01% + 10 uV |
| Edge | 3 mV to 3 Vp-p; 500 ps into 1 MΩ or 50 Ω 1 V to 200 Vp-p; <200 ns into 1 MΩ Fast Edge 5 mV to 3 Vp-p; 125 ps |
±40 ps ±15 ps |
| Leveled Sine Frequency Range | 0.1 Hz to 4.2 GHz | ±0.15 uHz/Hz + 1 uHz |
| Leveled Sine Amplitude | 0.1 Hz to 2.1 GHz 2.1 GHz to 3.2 GHz 3.2 GHz to 4.2 GHz |
5 mV to 5 V 5 mV to 3 V 5 mV to 2 V |
| Leveled Sine Flatness | 0.1 Hz to 550 MHz 550 MHz to 1.1 GHz 1.1 GHz to 2.1 GHz 2.1 GHz to 4.2 GHz |
± 1.5% ± 2% ± 3% ± 4% |
| Marker | Up to 1 p-p; Square, Pulse, Spike or Sine; 9 ns to 55 s | ±0.15 us/s |
| Pulse | 1 to 100 nS width | < 5% + 500 ps |
| Resistance & Capacitance Measure | 50 Ω or 1 MΩ; 1 to 95 pF | 0.1% for Ohms; 2% for Capacitance |
| Input Pulse | 5V to 20V in to 50 Ω | Up to 100 s |
| General Specifications | ||
| Communication Interfaces | IEEE 488.2; USB; Ethernet | Standard |
| Specification Interval | 90d, 1yr, 2yr | |
| Specification Confidence | 99% (k=2.78) and 95% (k=1.96) | |
| Touchscreen | 17.8 cm (7 in.) Graphical User Interface | |
| Transport Case (w/ Wheels) | Included Standard | |