Vollständige Spezifikationen

MXS-9200 - MEMS optical switch

Übersicht
Jointly developed with DiCon Fiberoptics, this laboratory-grade, high performance optical switch is optimized for use with EXFO LTB solutions and with software control via SCPI over Ethernet.
MXS-9200 - MEMS optical switch

Leistungsmerkmale

  • Available with singlemode, multimode and polarization maintaining fiber
  • Configurations up to 192x192 and beyond
  • Industry leading performance, specifications and reliability
  • Includes 3D Matrix and 1xN array models
  • Powerful Web GUI for configuration and manual operation
  • Fast SCPI-over-Ethernet remote-control capabilities

Anwendungen

  • Research, development and manufacturing testing of optical transceivers
  • Multiple DUT testing
  • Automated testing of optical components, systems and sub-assemblies

Spezifikationen

Technical specifications
Singlemode MxN matrix, MXS-9200 — Optical specifications
Insertion Loss 30.8 dB typical
1.4 dB max.
Stability 4,50.02 dB typical
0.05 dB max.
Crosstalk-85 dB typical
-60 dB max.
Back Reflection-55 dB typical
-45 dB max.
Switching Time15 ms typical
25 ms max.
WDL 60.3 dB max. for 2x8 to 16x16
0.4 dB max. for 24x24 to 192x192
PDL0.08 dB typical
0.1 dB max.
Repeatability 70.01 dB typical
0.06 dB max.
Durability109 Cycles
Optical Power500 mW max.
Operating Temperature0 to 50 oC
Storage Temperature-20 to 60 oC
Relative Humidity0% to 80% non-condensing
Fiber Type9/125 um singlemode
PM MxN matrix, MXS-9200 — Optical specifications
Insertion Loss 30.8 dB typical
1.4 dB max.
Stability 4,50.02 dB typical
0.05 dB max.
Crosstalk-85 dB typical
-60 dB max.
Back Reflection-55 dB typical
-45 dB max.
Switching Time15 ms typical
25 ms max.
WDL 60.3 dB max.
PER 722 dB typical
18 dB min.
Repeatability 80.01 dB typical
0.06 dB max.
Durability109 Cycles
Optical Power500 mW max.
Operating Temperature0 to 50 oC
Storage Temperature-20 to 60 oC
Relative Humidity0% to 80% non-condensing
Fiber TypePolarization Maintaining
Multimode MxN matrix, MXS-9200 — Optical specifications
Insertion Loss 30.8 dB typical
1.4 dB max.
Stability 4,50.02 dB typical
0.05 dB max.
Crosstalk 6-70 dB typical
-65 dB max.
Back Reflection-25 dB typical
-20 dB max.
Switching Time15 ms typical
25 ms max.
Repeatability 70.01 dB typical
0.06 dB max.
Durability109 Cycles
Optical Power500 mW max.
Operating Temperature0 to 50 oC
Storage Temperature-20 to 60 oC
Relative Humidity0% to 80% non-condensing
Fiber Type50/125 um multimode
Operating Wavelength Range850 & 1310 nm
Singlemode 1xN array, MXS-9200 — Optical specifications
Insertion Loss 20.7 dB max
Crosstalk-50 dB max.
Back Reflection-50 dB max.
Switching Time30 ms max.
WDL 30.5 dB max.
PDL0.15 dB max.
Repeatability 40.02 dB max.
Durability109 Cycles
Optical Power500 mW max.
Operating Temperature0 to 50 oC
Storage Temperature-20 to 60 oC
Relative Humidity0% to 80% non-condensing
Fiber Type9/125 um singlemode
PM 1x4 array, MXS-9200 — Optical specifications
Insertion Loss 20.7 dB max
Crosstalk-50 dB max.
Back Reflection-50 dB max.
Switching Time30 ms max.
WDL 30.5 dB max.
PER 418 dB min.
Repeatability 50.02 dB max.
Durability109 Cycles
Optical Power500 mW max.
Operating Temperature0 to 50 oC
Storage Temperature-20 to 60 oC
Relative Humidity0% to 80% non-condensing
Fiber TypePolarization Maintaining
Multimode 1xN array, MXS-9200 — Optical specifications
Insertion Loss 31x4: 1.0 dB max.
1x8: 1.0 dB max.
1x12: 1.2 dB max.
Crosstalk 450 um -25 dB max.
62.5 um -20 dB max.
Back Reflection-20 dB max.
Switching Time30 ms max.
Repeatability 50.02 dB max.
Durability109 Cycles
Optical Power500 mW max.
Operating Temperature0 to 50 oC
Storage Temperature-20 to 60 oC
Relative Humidity0% to 80% non-condensing
Fiber Type50/125 um multimode, or 62.5/125 um multimode
Singlemode MxN matrix notes: 1. Specifications referenced without connectors at 23 ± 5 oC. Add 0.4 dB for connector loss. 2. Specifications valid when wavelength is set to the wavelength range in use (O, C, L or U band). Note: Each wavelength band has its own wavelength band index, which can be set to optimize the optical performance for that band. Only one wavelength band index can be selected at a time. The provided wavelength band index will be 1310nm, 1550nm & 1625nm for the full band version. Set a nearby wavelength band index to have the best performance if the selected band has no wavelength band index. 3. Insertion Loss (IL) specification is defined at 1550 nm (C band). Operation at 1310 nm (O band) adds 0.1 dB typical, 0.2 dB max. Operation at 1590 nm (L band) adds 0.1 dB typical, 0.2 dB max. Operation at 1625 nm (U band) adds 0.2 dB typical, 0.4 dB max. 4. Stability is defined as the difference between highest and lowest insertion loss for a given connection, over a given period. 5. Defined over 10 second period using 10 kHz sample rate. 6. WDL is measured in a +/- 20 nm range centered at the set wavelength (1310, 1550, 1590 or 1625 nm). Operation in U band adds 0.1 dB to the max. 7. Repeatability is defined within 100 cycles. PM MxN matrix notes: 1. Specifications referenced without connectors at 23 ± 5 oC. Add 0.4 dB for connector loss. 2. Specifications valid when wavelength is set to the wavelength range in use (O, C, L or U band). Note: Each wavelength band has its own wavelength band index, which can be set to optimize the optical performance for that band. Only one wavelength band index can be selected at a time. The provided wavelength band index will be 1310nm, 1550nm & 1625nm for the full band version. Set a nearby wavelength band index to have the best performance if the selected band has no wavelength band index. 3. Insertion Loss (IL) specification is defined at 1550 nm (C band). Operation at 1310 nm (O band) adds 0.1 dB typical, 0.2 dB max. Operation at 1590 nm (L band) adds 0.1 dB typical, 0.2 dB max. Operation at 1625 nm (U band) adds 0.2 dB typical, 0.4 dB max. 4. Stability is defined as the difference between highest and lowest insertion loss for a given connection, over a given period. 5. Defined over 10 second period using 10 kHz sample rate. 6. WDL is measured in a +/- 20 nm range centered at the set wavelength (1310, 1550, 1590 or 1625 nm). Operation in U band adds 0.1 dB to the max. 7. PER 14dB with connector. 8. Repeatability is defined within 100 cycles. PM matrix ordering notes shown with specs: 3. Connector key orientation is default to be slow axis. 1. PER specification covers 1270nm to 1510nm. 2. PER specification covers 1440nm to 1640nm. Multimode MxN matrix notes: 1. Specifications referenced without connectors at 23 ± 5 oC. Add 0.4 dB for connector loss. 2. Specifications valid when wavelength is set to the wavelength band. 3. IL is measured with a reference mode condition, CPR=15 dB. 4. Stability is defined as the difference between highest and lowest insertion loss for a given connection, over a given period. 5. Defined over 10 second period using 10 kHz sample rate. 6. Optical off state isolation is the same as the crosstalk specification. 7. Repeatability is defined within 100 cycles. Singlemode 1xN array notes: 1. Specifications referenced without connectors at 23 ± 5 oC. Add 0.4 dB for connector loss. Note: Each wavelength band has its own wavelength band index, which can be set to optimize the optical performance for that band. Only one wavelength band index can be selected at a time. The provided wavelength band index will be 1310nm, 1550nm & 1625nm for the full band version. Set a nearby wavelength band index to have the best performance if the selected band has no wavelength band index. 2. Insertion Loss (IL) specification is defined at 1550 nm & 1625 nm. Operation at 1310 nm adds 0.2 dB max. 3. WDL is defined within a wavelength band, and is measured over 1290 - 1330 nm, 1530 - 1570 nm, and 1605 - 1641 nm. 4. Repeatability is defined within 100 cycles. PM 1x4 array notes: 1. Specifications referenced without connectors at 23 ± 5 oC. Add 0.4 dB for connector loss. Note: Each wavelength band has its own wavelength band index, which can be set to optimize the optical performance for that band. Only one wavelength band index can be selected at a time. The provided wavelength band index will be 1310nm, 1550nm & 1625nm for the full band version. Set a nearby wavelength band index to have the best performance if the selected band has no wavelength band index. 2. Insertion Loss (IL) specification is defined at 1550 nm & 1625 nm. Operation at 1310 nm adds 0.2 dB max. 3. WDL is defined within a wavelength band, and is measured over 1290 - 1330 nm, 1530 - 1570 nm, and 1605 - 1641 nm. 4. PER 14dB with connector. 5. Repeatability is defined within 100 cycles. Multimode 1xN array notes: 1. Specifications referenced without connectors at 23 ± 5 oC. Add 0.4 dB for connector loss. 2. Specifications valid when wavelength is set to the wavelength band. 3. IL is measured with a reference mode condition, CPR=15 dB. 4. Optical off state isolation is the same as the crosstalk specification. 5. Repeatability is defined within 100 cycles.
General specifications
Key product highlights
AvailabilityAvailable exclusively from EXFO
PerformanceResearch-grade optical performance with excellent crosstalk, repeatability and stability
DesignHigh density design in many fiber types (SM, PM, MM)
Remote controlHigh speed SCPI over ethernet and REST API remote control
Front panelFront panel display and controls
Web interfacePowerful WEB GUI for local control and administration
ServiceField serviceable software upgrade
NetworkingDual ethernet ports for redundant network interface
ModulesRemovable control unit and power unit
Available configurations
1MxN Matrix; switch size min 2x8, max 192x192; fiber type: Singlemode
2MxN Matrix; switch size min 2x8, max 32x32; fiber type: SM Polarization Maintaining
3MxN Matrix; switch size min 2x8, max 64x64; fiber type: Multimode
41xN Array; switch size min 1x4, max 1x8; fiber type: Singlemode
51xN Array; switch size min 1x4, max 1x4; fiber type: SM Polarization Maintaining
Electrical specifications (platform)
Latching TypeNon-latching
Control TypeEthernet Interface with SCPI Command Set and REST API
Supply VoltageAC 100 - 240 V, 50/60 Hz
MxN matrix — Electrical configurations
Singlemode MxN (examples)2-8 (2 inputs and 8 outputs)
2-16 (2 inputs and 16 outputs)
4-4 (4 inputs and 4 outputs)
4-8 (4 inputs and 8 outputs)
4-12 (4 inputs and 12 outputs)
4-16 (4 inputs and 16 outputs)
8-8 (8 inputs and 8 outputs)
8-16 (8 inputs and 16 outputs)
16-16 (16 inputs and 16 outputs)
24-24 (24 inputs and 24 outputs)
32-32 (32 inputs and 32 outputs)
48-48 (48 inputs and 48 outputs)
64-64 (64 inputs and 64 outputs)
96-96 (96 inputs and 96 outputs)
192-192 (192 inputs and 192 outputs)
Other configurations available upon request.
PM MxN (examples)2-8 (2 inputs and 8 outputs)
2-16 (2 inputs and 16 outputs)
2-32 (2 inputs and 32 outputs)
4-8 (4 inputs and 8 outputs)
4-16 (4 inputs and 16 outputs)
4-32 (4 inputs and 32 outputs)
8-8 (8 inputs and 8 outputs)
16-16 (16 inputs and 16 outputs)
16-32 (16 inputs and 32 outputs)
32-32 (32 inputs and 32 outputs)
Other configurations available upon request.
Multimode MxN (examples)2-8 (2 inputs and 8 outputs)
2-16 (2 inputs and 16 outputs)
2-32 (2 inputs and 32 outputs)
4-8 (4 inputs and 8 outputs)
4-32 (4 inputs and 32 outputs)
16-16 (16 inputs and 16 outputs)
16-32 (16 inputs and 32 outputs)
32-32 (32 inputs and 32 outputs)
64-64 (64 inputs and 64 outputs)
Other configurations available upon request.
MxN matrix — Chassis size (by switch size / connector family)
Singlemode MxN2x8: FC 1U / SC 1U / LC 1U
2x16: FC 1U / SC 1U / LC 1U
4x4: FC 1U / SC 1U / LC 1U
4x8: FC 1U / SC 1U / LC 1U
4x12: FC 1U / SC 1U / LC 1U
4x16: FC 1U / SC 1U / LC 1U
8x8: FC 1U / SC 1U / LC 1U
8x16: FC 1U / SC 1U / LC 1U
16x16: FC 1U / SC 1U / LC 1U
24x24: FC 2U / SC 1U / LC 1U
32x32: FC 2U / SC 2U / LC 1U
48x48: FC 2U / SC 2U / LC 2U
64x64: FC 3U / SC 3U / LC 2U
96x96: FC 4U / SC 3U / LC 2U
192x192: FC 8U / SC 6U / LC 4U
PM MxN2x8: FC 1U / SC 1U / LC 1U
2x16: FC 1U / SC 1U / LC 1U
2x32: FC 1U / SC 1U / LC 1U
4x8: FC 1U / SC 1U / LC 1U
4x16: FC 1U / SC 1U / LC 1U
4x32: FC 1U / SC 1U / LC 1U
8x8: FC 1U / SC 1U / LC 1U
16x16: FC 1U / SC 1U / LC 1U
16x32: FC 2U / SC 2U / LC 1U
32x32: FC 2U / SC 2U / LC 1U
Multimode MxN2x8: FC 1U / SC 1U / LC 1U
2x16: FC 1U / SC 1U / LC 1U
2x32: FC 1U / SC 1U / LC 1U
4x8: FC 1U / SC 1U / LC 1U
4x32: FC 1U / SC 1U / LC 1U
16x16: FC 1U / SC 1U / LC 1U
16x32: FC 2U / SC 2U / LC 1U
32x32: FC 2U / SC 2U / LC 1U
64x64: FC 3U / SC 3U / LC 2U
1xN array — Chassis size (by number of switches)
Singlemode 1xN (1x4 / 1x8)1 switch: 1x4 1U; 1x8 1U
2 switches: 1x4 1U; 1x8 1U
4 switches: 1x4 1U; 1x8 1U
6 switches: 1x4 1U; 1x8 2U
PM 1x41 switch: 1U
2 switches: 1U
4 switches: 1U
Multimode 1xN (1x4 / 1x8)1 switch: 1x4 1U; 1x8 1U
2 switches: 1x4 1U; 1x8 1U
4 switches: 1x4 1U; 1x8 1U
6 switches: 1x4 1U; 1x8 2U
8 switches: 1x4 1U; 1x8 2U
Mechanical specifications — Chassis dimensions
1UHeight: 44 mm (1.7 in)
Width: 483 mm (19 in)
Depth: 435 mm (17.1 in)
2UHeight: 88 mm (3.5 in)
Width: 483 mm (19 in)
Depth: 435 mm (17.1 in)
3UHeight: 133 mm (5.2 in)
Width: 483 mm (19 in)
Depth: 435 mm (17.1 in)
4UHeight: 177 mm (7.0 in)
Width: 483 mm (19 in)
Depth: 435 mm (17.1 in)
5UHeight: 222 mm (8.7 in)
Width: 483 mm (19 in)
Depth: 435 mm (17.1 in)
6UHeight: 266 mm (10.5 in)
Width: 483 mm (19 in)
Depth: 435 mm (17.1 in)
8UHeight: 355 mm (14.0 in)
Width: 483 mm (19 in)
Depth: 435 mm (17.1 in)