Media Cross Connect High Speed Family

Datasheet
Media Cross Connect™ Chassis and Interface Blades for High-Speed Applications
Highlights
36 or 144 10G ports in 1U or 5U rack space
Supports all prominent 10G protocols
Supported by existing MCC user interface and
management options
Blade is backward compatible with original SFP
protocols down to 1 Gbps
Backward compatible with existing MCC blades
OVERVIEW
Higher speed equipment and protocols are continually being developed. This inevitable evolution makes it difficult for
test labs to keep pace with the appropriate tools for quality assurance and to verify designs. Once physically wired to all
lab devices, the Media Cross Connect (MCC) allows test technicians to connect and remotely configure lab equipment
and devices to be tested through sofware, providing greater setup flexibility and improved operating efficiency. Oftenused topologies can be stored and recalled by any authorized user. Test time and configuration errors are reduced,
repeatability of tests like simulation is simplified, and expensive test equipment can be shared. Deploying the MCC in a
test lab eliminates manual cabling of test topologies, and it is the cornerstone of lab automation that enables:
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•
•
•
•
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Simplified topology configuration and automated testing
More corner cases addressed in product design
Simulated cable breaks or intermittent links in a controlled environment
Increased test lab productivity
Decreased time to market for new products
Increased equipment usage through equipment sharing
NEXT GENERATION MCC PRODUCT FAMILY
MRV’s high-speed product family includes a high-speed (HS) MCC chassis that supports up to 10.7 Gbps bidirectional,
unidirectional, or multicast mappings. This HS chassis maintains compatibility with existing MCC blades while supporting
the next generation of high-speed blades and protocols (see Table 1). The high-speed chassis is available in two sizes; a
single blade model that supports of 36 non-blocking ports or four blade model that supports 144 non-blocking ports.
The 10G SFP+ 36-port interface blade supports 10 Gbps Ethernet LAN or WAN PHY, SONET OC-192 and 10 Gbps FCoE.
It is backward compatible with SFP transceivers at data rates down to 1 Gbps. As with all MCC interface blades, the 10G
SFP+ MR blade is hot-swappable and it supports MSA compliant optics, digital diagnostics, clock and data recovery
(CDR), link integrity notification (LIN) and link flapping. This blade requires the high-speed chassis.
Refer to the MCC Chassis datasheet for information on the entire MCC product family. For a complete description
and list of all MCC interface blades, refer to the MCC Interface Blade datasheet. Both documents can be found at
www.mrv.com/tap.
1
Datasheet
Application for 10G HS Chassis and Blades: SHARED LAB RESOUCES
LAN
Analyzer
Lab Management
Shared Test Equipment
Analyzer
Analyzer
Devices Under Test
Servers
Switches
Routers
Table 1: MCC BLADE/CHASSIS COMPATABILITY
Blade Type
# of Ports
Interfaces/Protocols
Chassis Compatibility
T1/E1
36
T1/E1
DS3/E3/STS-1
18
DS3/E3/STS-1
RJ-45
36
10/100/1000 Base TX Copper Ethernet
Any
RJ-45-C
36
10/100/1000 Base TX Copper Ethernet, 100/1000
Copper/Fiber media conversion, uni-directional traffic
Any
SFP
36
Any 2R protocol up to 3.0 Gbps, 10/100/1000 Base Fiber Ethernet,
1 Gbps/2 Gbps Fibre Channel, Sonet OC-3, OC-12, OC-48
Any
SFP FC CDR
36
Any 2R protocol up to 3.0 Gbps, 1 Gbps/2 Gbps/4 Gbps
Fibre Channel with CDR
Any
SFP MR CDR
36
Any 2R protocol up to 3.0 Gbps, 10/100/1000 Base Fiber
Ethernet with CDR, 1 Gbps/2 Gbps/4 Gbps Fibre Channel
with CDR, Sonet OC-3, OC-12, OC-48 with CDR
Any
8G SFP+ FC
36
Any 2R protocol up to 3.0 Gbps, 1 Gbps/2 Gbps/4 Gbps/8 Gbps
Fibre Channel with CDR
Any
4X or 1-Slot HS
8X, HS or 1-Slot HS
6G SAS
36
(using 9 connectors)
10G XFP
9
10 Gbps Ethernet LAN Phy , Fibre Channel
Any
10G XFP MR
8 (1)
Multi-rate up to 10.7 Gbps including Ethernet LAN, WAN PHY or
Sonet OC-192 with or without FEC (2), Fibre Channel, Infiniband
Any
10G SFP+ MR
36
Multi-rate 1G to 10.7 Gbps support including Ethernet LAN,
WAN PHY or SONET OC-192 (does not support 8GFC)
SAS/SATA 3.0/6.0 Gbps
8X or 1-Slot HS
(1) Intra-blade port mapping only
(2) Use only XFPs that do not require a reference clock
2
HS or 1-Slot HS
Datasheet
MCC HIGH-SPEED EQUIPMENT
Chassis
Blade Slots
Mapping Speed
Max # Ports (@ Max Speed)
Power Supplies
Size
36 HS
1
10.3125 Gbps
36 (10G)
2 AC, Fixed
1 RU*
144 HS
4
10.7 Gbps
144 (10G)
2 AC or 2 DC
5 RU*
* 1U = 1.75 inches (44.45 mm)
Physical Specifications:
Dimensions:
36 HS Chassis
43 mm (H) x 438 mm (W) x 381 mm (D) (1.7”x 17.25”x 15”)
144 HS Chassis
221 mm (H) x 438 mm (W) x 305 mm (D) (8.7” x 17.25” x 12”)
Power Usage: Chassis/Manager
34 Watts
Power (Max.): Loaded 36 HS Chassis
85 Watts
Weight:
Loaded 144 HS Chassis
353 Watts
HS Blade
66 Watts
36 HS Chassis (As Shipped)
3.5 kg (7.5 lb)
144 HS Chassis (As Shipped)
8.1 kg (17.8 lbs)
HS Blade
1.1 kg (2.4 lbs)
Operating Temperature Range
00C to 500C (320F to 1220F)
Storage Temperature Range
-400C to 700C (-400F to 1580F)
Relative Humidity
85% maximum, non-condensing
Cooling Airflow
1 inch (2.54 centimeters) clearance from external vents
Regulatory Compliances
Media Cross Connect Chassis: FCC Part 15 (Class A); IC (Class A); EMC Directive: Emission (Class
A) and Immunity; LVD Directive: Electrical Safety; RoHS Directive, REACH SVHC Directive, WEEE
Directive: Wheelie Bin Mark
REDUNDANT POWER SUPPLIES
HS Chassis Redundant
Power Supplies
Weight
Voltages
NC316-144RPSAC (AC Version)
2.5 kg (5.5 lbs)
90 VAC - 240 VAC
NC316-144RPSDC (DC Version)
1.9 kg (4.2 lbs)
40 VDC - 58 VDC
MRV has more than 50 offices throughout the world. Addresses, phone numbers and fax numbers are listed at www.mrv.com.
Please e-mail us at [email protected] or call us for assistance.
MRV Los Angeles
MRV Boston
20415 Nordhoff Street
300 Apollo Drive
Chatsworth, CA 91311
Chelmsford, MA 01824
800-338-5316
800-338-5316
818-773-0900
978-674-6800
MRV International
Business Park Moerfelden
Waldeckerstrasse 13
64546 Moerfelden-Walldorf
Germany
Tel. (49) 6105/2070
Fax (49) 6105/207-100
All statements, technical information and recommendations related to the products herein are based upon information believed to be reliable or accurate. However, the
accuracy or completeness thereof is not guaranteed, and no responsibility is assumed for any inaccuracies. Please contact MRV Communications for more information.
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