Customization: | Available |
---|---|
Communication Mode: | Full Duplex |
Type: | Data Center Switch |
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Item
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CE8851-32CQ8DQ-P
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|
Physical Features
|
Dimensions (W x D x H)
|
442 mm x 600 mm x 43.6 mm
|
Weight
|
9.1/12.2 kg
|
|
Switching capacity
|
19.2 Tbit/s
|
|
Forwarding performance
|
4350 Mpps
|
|
Ports
|
32*100GE QSFP28,8*400G QSFPDD
NOTE:By default, the CE8851-32CQ8DQ-P supports only 32*100GE ports. To upgrade to 32*200GE ports, purchase the CE88-RTU-U32CQ hardware RTU.To use 8*400GE QSFPDD ports, purchase the CE88-RTU-8DQ hardware RTU.
|
|
Management
interface |
Out-of-band management
port |
1 x GE RJ45 management interface
|
Console port
|
1 x RJ45 interface
|
|
USB port
|
1
|
|
CPU
|
Main frequency
|
1.4 GHz
|
Number of cores
|
4
|
|
Storage
|
RAM
|
8 GB
|
NOR flash
|
64 MB
|
|
NAND flash
|
4 GB
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System
|
System buffer
|
64 MB
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Power Supply
System |
Power modules
|
1200 W AC
|
Rated voltage range (V)
|
AC: 100 V to 240 V
|
|
Maximum voltage range (V)
|
AC: 90 V to 290 V
|
|
Maximum input current
|
AC 600 W: 100 V to 240 V, 8 A
|
|
Maximum power
|
32 x 200GE + 8 x 400GE: 1152 W (100% traffic load, all downlink ports with 6.5 W 200G optical modules, all uplink ports with 12 W 400G optical modules, 40°C, dual power modules)
- 32 x 100GE + 8 x 400GE: 973 W (100% traffic load, all downlink ports with 5 W 100G optical modules, all uplink ports with 12 W 400G optical modules, 40°C, dual power modules) |
|
Environment
specifications |
Long-term operating
temperature (°C) |
0°C to 40°C (0-1800 m)
The temperature decreases by 1°C each time the altitude increases by 220 m. |
Storage temperature (°C)
|
-40°C to +70°C
|
|
Relative humidity
|
5% to 95%
|
|
Operating altitude (m)
|
Up to 5000
|
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Surge protection
|
AC power supply protection: 6 kV in common mode and 6 kV in differential mode
|
Product Characteristics
|
1,High-Density 400GE/200GE/100GE/50GE Aggregation and Outstanding Switching Capacity
2,Inter-device Link Aggregation, High Efficiency and Reliability
3,Virtualized Hardware Gateway, Enabling Quick Deployment
4,Standard Interfaces, Enabling Openness and Interoperability
5,ZTP, Implementing Automatic O&M
6,FabricInsight-based Intelligent O&M
7,iMaster NCE-based Simplified Network Deployment
8,Flexible Airflow Design, Improving Energy Efficiency
9,Clear Indicators, Simplifying Maintenance
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