A calibration by Custom-Cal is performed by engineers with extensive OEM experience. We have the expertise and the necessary standards to perform the ANRITSU MP2102A Calibration, onsite calibration may be available. We specialize in quick turnaround times and we can handle expedited deliveries upon request.

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   ANRITSU MP2102A   Description / Specification:    
ANRITSU MP2102A BERTWave SS, Eye/Pulse Scope

The Anritsu MP2102A BERTWave SS is an Eye/Pulse pattern tester supporting high-speed mask tests. It's clock recovery function eliminates the need for a trigger source when evaluating optical output characteristics, and the full range of mask patterns makes the MP2102A ideal for both evaluating the physical layer of equipment supporting various 2G, 4G, and 8GFC applications, and for testing optical transceivers at acceptance inspection. The Eye/Pulse pattern Clock recovery (Option-055) function supports rates of 8.5 GHz to 12.5 GHz and 0.1 GHz to 2.7 GHz to perform mask tests for most applications. High-speed sampling supports fast mask tests in about 12 s, cutting measurement times.

Eye/Pulse Scope.
Wave Display: Eye Pattern, Pulse Pattern.
Measurement Function: Time and Amplitude tests, Histogram, Eye Mask/Mask Margin Tests.
Digital System: 100 k sample/s (typ.).
Horizontal System Clock Trigger Input;
  Frequency Range: 0.1 GHz to 12.5 GHz,
  Sensitivity: 100 mVp-p (typ.),
  Maximum Amplitude: 2 Vp-p.
Vertical System (Electrical Input);
  Bandwidth (-3 dB): DC to 20 GHz (min.), DC to 25 GHz (typ.),
  Flatness: ±1 dB (typ.),
  RMS Noise: 3.5 mV or less, 2 mV (typ.),
  Maximum Input: ±2 V.
Vertical System (Optical Input);
  Fiber: 62.5 μm, Multimode, accepts single mode,
  Wavelength: 750 nm to 1650 nm,
  Bandwidth: DC to 9 GHz (typ., Unfiltered, -3 dB electrical).

External 10 MHz Input Connector;
Amplitude: 0.7 Vp-p to 2 Vp-p, AC coupled.
Connector: BNC connector, 50 Ω.
Waveform: Square or Sine wave.

External Reference Clock Input;
External: 1/16 Clock Input.
Amplitude: 0.2 Vp-p to 1.5 Vp-p, AC coupled.
Connector: SMA connector, 50 Ω.
Waveform: Square or Sine wave.

-021, Dual Electrical Receiver.
-023, Optical/Single-ended Electrical Receiver.
-030, GPIB.
-037, FC Connector.
-040, SC Connector.
-055, Clock Recovery.
-061, 1 High Bit Rate Filter.
-062, 2 High Bit Rate Filter Bank.
-063, 3 to 4 High Bit Rate Filter Bank.
-064, 1 to 2 Low Bit Rate Filter Bank.
-065, 3 to 4 Low Bit Rate Filter Bank.
-066, 1 High Bit Rate/1 to 2 Low Bit Rate Filter Bank.
-067, 1 to 2 High Bit Rate/3 to 4 Low Bit Rate Filter Bank.
-068, 2 to 3 High Bit Rate/1 to 2 Low Bit Rate Filter Bank.
-069, 3 High Bit Rate/3 Low Bit Rate Filter Bank.
-070, LPF for 156M (L).
-071, LPF for 622M (L).
-072, LPF for 1.0G (L).
-073, LPF for 1.2G (L).
-076, LPF for 2.1G (H).
-077, LPF for 2.5G (H).
-078, LPF for 2.6G (H).
-079, LPF for 3.1G (H).
-080, LPF for 4.2G (H).
-081, LPF for 5.0G (H).
-082, LPF for 6.2G (H).
-084, LPF for 9.9G to 10.3G (H).
-085, LPF for 10.5G to 11.3G (H).
-086, LPF for Multi 10G (H).


Standard Calibration $980.00 *
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*This is a Web introductory price for one calibration of the ANRITSU MP2102A. 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 Communication Terms and Definitions. For a complete list go to our  Terms and Definitions Page.

Bit Error Ratio (BER)
Bit Error Ratio (BER) is the ratio of errors caused by the number of bits in a data stream that have been altered due to noise, interference, distoriton or bit synchronization errors.

Multiplexing (also known as muxing) is a method by which multiple analog message signals or digital data streams are combined into one signal over a shared medium. Multiplexing divides the capacity of the low-level communication channel into several higher-level logical channels, one for each message signal or data stream to be transferred.

Sensitivity is the minimum magnitude of input signal required to produce a specified output signal having a specified signal-to-noise ratio, or other specified criteria.

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