TABOR P9488B CALIBRATION and TABOR P9488B REPAIR

 
A calibration by Custom-Cal is performed by engineers with extensive OEM experience. We have the expertise and the necessary standards to perform the TABOR P9488B Calibration, onsite calibration may be available. We specialize in quick turnaround times and we can handle expedited deliveries upon request.

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   TABOR P9488B   Description / Specification:    
TABOR P9488B Arbitrary Waveform Generator

The Tabor Electronics P9488B Arbitrary Waveform Generator is ideal for applications in Quantum Computing, Electronic Warfare, Radar, and next generation communications such as 5G, 6G, Ultrawide Bandwidth, Wi-Fi 6, 7, and more. Built on the latest RF DAC and RF ADC technology, this product has a max sample rate of 9GS/s that allows for multiple Nyquist zone operation, providing frequency ranges more than 10GHz. It has an innovative task-oriented programming and signal processing environment. When used in combination with its optional RF Digitizer it becomes an Arbitrary Waveform Transceiver, able to change waveforms in real-time; making it ideal for improving the coherence time of a Qubit, characterizing an RF amplifier, or responding to an Electronic Warfare threat.

Specifications:
Number of channels: 8
Memory: 8 GS
Max sample rate: 9G/s
Output instantaneous bandwidth: 4.5 GHz
Resolution: 16-bit

DC output voltage window: ±1.15 V
DC output amplitude accuracy: ±(3% + 2 mV)
DC output max usable frequency: 4.5 GHz

Direct output amplitude accuracy: ±(3% + 2 mV)
Direct output max usable frequency: 10 GHz

Number of markers: 16
Marker voltage window: ±1.15 V
Marker amplitude accuracy: ±7%
Marker resolution: 8 pts
Marker coarse delay range: 0 to 2048 pts
Marker fine delay range: 0 to 1.2 ns

Trigger input range: -5 V to +5 V
Trigger input sensitivity: 200 mV
Trigger max toggle frequency: 10 MHz
Trigger minimum pulse width: 50 ns

Sync clock frequency: SCLK/8
Digitizer max sampling rate: 5.4G/s single channel mode, 2.7G/s dual channel mode



 



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

Averaging
Averaging is a mathematical process to reduce the variation in a measurement by summing the data points from multiple measurements and dividing by the number of points summed.

Fall Time
Fall time is the time required for the amplitude of a pulse to decrease (fall) from a specified value (usually 90 percent of the peak value exclusive of overshoot or undershoot) to another specified value (usually 10 percent of the maximum value exclusive of overshoot or undershoot).

Noise Density
Noise Density is the amount of noise within a defined bandwidth, usually normalized to 1 Hz.

Resolution Bandwidth (RBW)
Resolution Bandwidth (RBW) is the minimum bandwidth over which you can separate two signals and still see them.


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