AQ2212 Frame Controller (9 Slots)

The AQ2211 and AQ2212 frame controllers are platforms for the AQ2200 Multi Application Test System. These frame controllers contain a variety of measurement applications that enable you to get the information you need without connecting an external controller PC. In addition, they have three different external interfaces, so you can always use the best interface for a particular measurement application.

  • Easy-to-view color display
  • USB port for data storage
  • Measurement module "hot-swapping" capability
  • Remote monitoring and measurement through a LAN

The AQ2211 and AQ2212 both have a 320×240-dot, wide-viewing-angle, high-resolution color TFT display for easy viewing. Even detailed graphs are easy to view on this display.

AQ2200 Screen1

AQ2211 frame controller

AQ2200 Screen2

AQ2212 frame controller

Display screen showing all installed modules

Multi User Function 

Up to 5 users can access to a frame controller simultaneously.
Possible to control individual modules.

AQ2211 1

Macro Programming Function 

Easy way to build auto-measurement systems, not requiring an external PC to run.
Easy programming with Macro editor, PC application software.
 

AQ2211 2

USB port for data storage
The USB port located on the front panel makes it easy to quickly save and load data. Measurements are saved in CSV format, so they can be easily imported into almost any PC application.

 

 

AQ2211 3

 

 

Measurement module "hot-swapping" capability

Measurement modules can be inserted or removed without turning off the power. This hot-swapping capability makes it easier to reconfigure your system. (warm-up time still required to ensure accurate measurements.)

Remote monitoring and measurement through a LAN

The AQ2211 and AQ2212 support USB and Ethernet as well as GP-IB, which is the standard interface for measuring instruments. Ethernet support makes remote monitoring and control even easier.
 

AQ2211 4 1

 

Quick Response in Remote Control 

Fast remote command processing
Fast LAN: 100BASE-TX compatible

 

 

Remote Viewer Software 

Displays the frame controller screen on PC.
Controls the frame as if operating on the real frame.

 

 

AQ2211 5
*The remote viewer software (free software) can be downloaded from our web side.

 

AQ2200-215 Sensor module (high Power up to +30dBm, 970 to 1660 nm)

Ideal for measuring output power of transmission equipment and optical fiber amplifiers.

AQ2200-221 Sensor module (Dual channel, long wavelength)

Increase your testing power and capability with the AQ2200-221 sensor module. Thirty two ports can be simlutaneously collectively measured using 16 units of AQ2200-221.

AQ2200-312 Optical Attenuator module

A small, lightweight variable optical attenuator providing low insertion loss
SM, GI50 and GI62.5 optical fiber models available.

AQ2200-332 Optical Attenuator module

With built-in optical power meter for monitoring power
Compact and lightweight optical variable attenuator.
SM, GI50 and GI62.5 optical fiber models available.

AQ2200-411 Optical Switch Module (1 x 4/1 x 8)

Superior switching reproducibility
Compact optical switches
SM, GI50 and GI62.5 optical fiber models available.

AQ2200-412 Optical Switch Module (1 x 16)

Superior switching reproducibility
Compact optical switches
SM and GI50 optical fiber models available.

AQ2200-421 Optical Switch Module (1 x 2/2 x 2)

Superior switching reproducibility
Compact optical switches
SM, GI50 and GI62.5 optical fiber models available.

AQ2200-642 Transceiver I/F Module

The AQ2200-642 reduces the complexity and cost of 10G optical transceiver testing by combining bus and power control features into the same mainframe that performs Signal Generation, BERT and Optical testing.

AQ2200-651 SG Module

The AQ2200-651 Signal Generator module reduces the complexity and cost of 10G optical transceiver testing by combining Signal Generation functions into the same mainframe  that provides bus and power control while performing BERT and Optical testing

Application Note
Overview:

This system does not require manual reconfiguration of optical paths and adjustments of EDFA input power, and that improves measurement throughput and avoids a human error.

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