Huawei CE6863H-48S6CQ-K Switch with 48-port 25GE SFP28, 6-port 100GE QSFP28, 2 power slots PN#02354VTA
Memory: DRAM: 4 GB
NOR Flash: 64 MB
NAND Flash: 4 GB
Applicable power module:
PAC600S12-CB (600W AC Power Module)
PAC600S12-DB (600W AC Power Module)
PAC600S12-EB (600W AC Power Module)
PAC600S12-CF (600W AC Power Module)
PAC600S12-DF (600W AC Power Module)
PAC600S12-EF (600W AC Power Module)
PDC1000S12-DB (1000W DC Power Module)
PDC1000S12-DF (1000W DC Power Module)
PHD1K2S12-DB (1200W HVDC Power Module)
Huawei CloudEngine 6863H series switches are next-generation 25GE access switches that provide high performance and high port density for data center networks (DCNs). It helps enterprises and carriers build DCNs in the cloud computing era. They can also work as core or aggregation switches on campus networks.
Item | Specification |
Dimensions with packaging (H x W x D) [mm (in.)] | 175 mm x 650 mm x 550 mm (6.89 in. x 25.59 in. x 21.65 in.) |
Dimensions without packaging (H x W x D) [mm (in.)] | Basic dimensions (excluding the parts protruding from the body): 43.6 mm x 442.0 mm x 420.0 mm (1.72 in. x 17.40 in. x 16.54 in.) Maximum dimensions (the depth is the distance from ports on the front panel to the parts protruding from the rear panel): 43.6 mm x 442.0 mm x 446.1 mm (1.72 in. x 17.40 in. x 17.56 in.) |
Weight without packaging [kg (lb)] | 5.7 kg (12.57 lb) (excluding optical modules, power modules, and fan modules) |
Weight without packaging (full configuration) [kg (lb)] | 7.8 kg (17.2 lb) (including AC power modules and fan modules but excluding optical modules. If the device supports multiple models of modules, the heaviest modules are used for the measurement.) |
Weight with packaging [kg (lb)] | 8.95 kg (19.73 lb) |
Weight with packaging (full configuration) [kg (lb)] | 11.05 kg (24.36 lb) |
Installation Type | Cabinet installation |
CPU | Quad-core, 1.4 GHz |
Memory | DRAM: 4 GB |
NOR Flash | 64 MB |
NAND Flash | 4 GB |
USB | It can be used for log backup and USB-based deployment. This function is reserved. |
Power supply mode | AC DC HVDC |
Console port | RJ45 |
Downlink Service interface | 48*25GE SFP28 NOTE: 1. 25GE ports can be used as 10GE ports. When working in GE mode. ports 1 to 8, 9 to 12, 13 to 16, 17 to 24, 25 to 28, 29 to 36, 37 to 44, and 45 to 48 form different groups. When the port mode GE command is run on any port in a group, all the ports in the group are configured to work at the rate of 1 Gbit/s. In this case, the ports can go Up only after GE media are installed. If a medium with a different rate is installed on a port, the port goes Down. 2. 10GE LRM/80 km linear optical modules are not supported. 3. 25GE 1 m copper cables and 10GE 1 m/3 m/5 m copper cables are supported, but auto-negotiation of copper cables is not supported. 25GE copper cables can only be used on M-LAG peer-link ports. |
Uplink Service interface | 6*100GE QSFP28 NOTE: 1. Each 100GE QSFP28 port can be used as a 40GE port. 2. A 100GE QSFP28 port cannot be split into 4x25GE and 4x10GE ports. 3. 100GE and 40GE 1 m/3 m/5 m copper cables are supported, and auto-negotiation of copper cables is not supported. 100GE and 40GE copper cables can only be used on M-LAG peer-link ports. When 100GE 3 m/5 m copper cables are used on such ports, these cables must work in the RS FEC mode. If they work in the non-RS FEC mode, the ports are in error-down state. |
Service port supporting the stack function | Reserved function. This function is not enabled. |
RTC | Supported |
Typical power consumption [W] | 226 W (100% throughput, SFP28 high-speed cables on 48 ports and QSFP28 high-speed cables on 6 ports, dual power modules) 261 W (100% throughput, short-distance optical modules on all ports, dual power modules) |
Typical heat dissipation [BTU/hour] | 771 BTU/hour (100% throughput, SFP28 high-speed cables on 48 ports and QSFP28 high-speed cables on 6 ports, dual power modules) 891 BTU/hour (100% throughput, short-distance optical modules on all ports, dual power modules) |
Static power consumption [W] | 167 W |
Static heat dissipation [BTU/hour] | 570 BTU/hour |
Maximum power consumption [W] | 384 W |
Maximum heat dissipation | 1310 BTU/hour |
Number of power modules | 2 |
Redundant power supply | 1+1 backup |
Rated input voltage [V] | Rated AC input voltage range: 100 V AC to 240 V AC; 50/60 Hz Rated –48 V DC input voltage range: –48 V DC to –60 V DC Rated input voltage range for 600 W AC & 240 V DC: 240 V DC Rated input voltage range for 1200 W HVDC: 240 V DC to 380 V DC |
Input voltage range [V] | Maximum AC input voltage range: 90 V AC to 290 V AC; 45 Hz to 65 Hz Maximum –48 V DC input voltage range: –38.4 V DC to –72 V DC Maximum input voltage range for 600 W AC & 240 V DC: 190 V DC to 290 V DC Maximum input voltage range for 1200 W HVDC: 190 V DC to 400 V DC |
Maximum input current [A] | 600 W AC&240 V DC power module (PAC600S12 series): · 8 A (100 V AC to 240 V DC) · 4 A (240 V DC) 1000 W DC power module (PDC1000S12 series): 30 A (–48 V DC to –60 V DC) 1200 W high-voltage DC power module (PHD1K2S12 series): 8 A |
Rated output power [W] | 600 W (AC&240 V HVDC) 1000 W (–48 V DC) 1200 W (380 V HVDC) |
Power supply surge protection [kV] | AC: 6 kV in common mode and 6 kV in differential mode DC: 4 kV in common mode and 2 kV in differential mode HVDC: 4 kV in common mode and 2 kV in differential mode |
Types of fans | Pluggable |
Number of fans | 4 |
Redundant fans | Supports 3+1 backup. Fan modules work in hot backup mode. If a fan module fails, the system can still work properly for a short period of time. However, you are advised to replace the faulty fan module immediately. |
Heat dissipation mode | Air cooling |
Airflow direction | Front-to-rear or rear-to-front, depending on the selected fan modules and power modules |
Availability | 0.999996284 |
MTBF [year] | 47.81 years |
MTTR [hour] | 1.95 hours |