FLUKE 863 REPAIR and FLUKE 863 CALIBRATION

 
Custom-Cal has a high success rate in the repair of the FLUKE 863. A calibration by Custom-Cal is performed by engineers with extensive OEM experience. We have the expertise and the necessary standards to perform the FLUKE 863 Calibration, onsite calibration may be available. We specialize in quick turnaround times and we can handle expedited deliveries upon request.

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   FLUKE 863   Description / Specification:    
FLUKE 863 Graphical Multimeter

The Fluke 863 Graphical Multimeter features a graphical waveform display providing a clear view of glitches, distorted waveforms, and noise. Perform pulse-width, duty-cycle, decibel, period and conductance measurements, as well as peak hold, and min/max/avg with timestamp functions. Trend graphing plots readings for up to 30 hours, in intervals of 1 second to 15 minutes. Relative mode shows the difference between a saved reading and current readings, and a Touch Hold function captures stable readings.
Specifications.

AC Voltage.
Range: 300 mV to 1000 V (Resolution 0.01 mV to 100 mV).
Input Impedance: 1.11 MΩ ±1% in series with 0.1 µF.
Volts-Hertz Product: 2 x 107.
Common Mode Rejection: >60 dB at 50 Hz and 60 Hz (1 kΩ unbalance).
Common Mode Volts-Hertz Product: 1 x 107.
dBm Reference: 2, 4, 8, 16, 50, 75, 93, 110, 125, 135, 150, 300, 600, 900, 1000, and 1200Ω.
Overload Protection: 1000V rms.

DC Voltage.
Range: 300 mV to 1000 V (Resolution 0.01 mV to 100 mV).
Input Impedance: V DC-10 MΩ, mV DC-10 MΩ, mV DC Hi-Z ->1000 MΩ.
Normal Mode Rejection: >60 dB at 50 Hz or 60 Hz.
Common Mode Rejection: >120 dB a dc, >90 dB at 50 Hz and 60 Hz (1 kΩ unbalance).
Overload Protection: 1000 V rms.

Maximum Allowable Peak AC + DC Voltage (without causing a reading error).
300 mV, 3000 mV ranges: 15V.
30V range: 1000V; 300V, 1000V ranges: 1414V.

Diode Test (Manual).
Range: 3V.
Resolution: 0.0001V.
Accuracy: ±0.05% of reading + 2 digits.
Open Circuit Voltage: 3.1V.
Auto Diode Test Accuracy: 20%.

Current Range: 300 µA to 10 A.

Conductance.
Range: 300 to 3000 nS.
Resolution: 0.01 nS to 0.1 nS @ 0.5% +20 Accuracy.
Open Circuit Voltage: 3.2 V.

Capacitance.
Range: 1000 pF to 10000 µF.
Resolution: 10 pF to 100 µF.
Overload Protection: 1000V rms.

Resistance.
Range: 300 Ω to 30 MΩ.
Resolution: 0.01 Ω to 1 kΩ



 

Standard Calibration $260.00 *
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*This is a Web introductory price for one calibration of the FLUKE 863. Price does not in most cases include measurement performance data. Pricing does include NIST traceable calibration and issue of a calibration certificate and calibration label. Pricing may vary slightly due to volume and location of laboratory supporting calibration. Volume pricing may apply. On-site fees may apply depending on logistics, location and volume of work to be completed during the visit.


Related Bench Equipment Terms and Definitions. For a complete list go to our  Terms and Definitions Page.

Channel Bandwidth
Channel Bandwidth is the bandwidth over which power is measured. This is usually the bandwidth in which almost all of the power of a signal is contained.

Jitter
Jitter in technical terms is the deviation in or displacement of some aspect of the pulses in a high-frequency digital signal. Jitter is the time variation of a periodic signal in electronics and telecommunications, often in relation to a reference clock source. Jitter may be observed in characteristics such as the frequency of successive pulses, the signal amplitude, or phase of periodic signals. Jitter is a significant, and usually undesired, factor in the design of almost all communications links (e.g., USB, PCI-e, SATA, OC-48). In clock recovery applications it is called timing jitter.

Overshoot
Overshoot is the distortion that follows a major transition; the difference between the peak power point and the pulse-top amplitude computed as a percentage of the pulse-top amplitude.

Rise Time
Rise time refers to the time required for a signal to change from a specified low value to a specified high value, usually 10 and 90 percent of pulse-top amplitude (vertical display is linear power).


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