Giá khuyến mại: | Liên hệ |
Hỗ trợ & Tư Vấn TP.HCM
Hỗ trợ & Tư Vấn Hà Nội
MÔ TẢ SẢN PHẨM
Đặc điểm nổi bật của Ruckus ICX7150-48-4X1G
Lưu ý: các tính năng Advance như (OSPF, VRRP, PIM, PBR...) yêu cầu phải mua thêm license BR-ICX-7150-210U410R-P-01 để kích hoạt
ĐÁNH GIÁ VỀ SẢN PHẨM
Thông số kỹ thuật
Performance and Scalability | |
Switching capacity (data rate, full duplex) | 180 Gbps |
Forwarding capacity (data rate, full duplex) | 134 Mpps |
10/100/1000 Mbps RJ45 downlinks | 48 |
10/100/1000 Mbps RJ45 uplinks (full duplex only, no PoE) | 2 |
1/10 Gbps SFP/SFP+ uplinks | 4 (with license) |
Base IPv4/v6 Layer 3 routing (static routing, RIP) | Yes |
Advanced IPv4/v6 Layer 3 routing (OSPF, VRRP, PIM, PBR features) | With license |
Aggregated stacking bandwidth (data rate, full duplex) | 480 Gbps |
Stacking density (maximum switches in a stack) | 12 |
Stacking ports (maximum ports usable for stacking) | Up to 4×10 GbE SFP+ |
Maximum stacking distance (distance between stacked switches) | 10 km |
Campus Fabric | Fabric Port Extender (PE) |
Power | |
Power inlet (AC) | C14 |
Input voltage/frequency | AC: 100 to 240 VAC @ 50 to 60 Hz |
Power supply rated maximum (AC) | 65 W |
Switch power consumption (25°C) Idle (no PoE load) 10% traffic (full PoE load) 100% traffic (full PoE load) |
24 W 38 W 39 W |
Airflow | Fanless |
Switch heat dissipation (25°C) Idle (no PoE load) 10% traffic (full PoE load) 100% traffic (full PoE load) |
83 BTU/hr 131 BTU/hr 132 BTU/hr |
ENVIRONMENT | |
Net Weight (Kg) | 4.82 |
Dimensions (mm) | 440 (W) x 370 (D) x 43.65 (H) |
Acoustics (25°C, min fan speed) | Fanless |
MTBF (25°C) | 714,420 hours |
SPECIFICATIONS | |
Connector options | - 10/100/1000 Mbps RJ-45 - 1 Gbps SFP ports - 1/10 Gbps SFP+ ports - Out-of-band Ethernet management: 10/100/1000 Mbps RJ-45 - Console management: RJ45 serial port and USB Type-C port with serial communication device class support - File transfer: USB port, standard-A plug |
DRAM | 1 GB |
NVRAM (Flash) | 2 GB |
Packet buffer size | 12/24 port: 2 MB, 48 port: 4 MB |
Maximum MAC addresses | 16,384 |
Maximum VLANs Maximum PVLANs |
- 4,095 - 32 |
Maximum STP (spanning trees instances) | 254 |
Maximum VEs | 128 |
Maximum ARP entries | 4,094 |
Maximum routes (in hardware) | - 1,000 (IPv4), 1,000 (IPv6) - Next hop address: 4,094 |
Trunking | - Maximum ports per trunk: 16 - Maximum trunk groups: 128 |
Maximum jumbo frame size | 9,216 bytes |
QoS priority queues | 8 per port |
Multicast groups | - 3,072 (Layer 2) - 2,048 (Layer 3) |
Quality of Service (QoS) | - ACL Mapping and Marking of ToS/DSCP (CoS) - ACL Mapping and Marking of 802.1p - ACL Mapping to Priority Queue - Classifying and Limiting Flows Based on TCP Flags - DiffServ Support - Honoring DSCP and 802.1p (CoS) - MAC Address Mapping to Priority Queue - Priority Queue Management using Weighted Round Robin (WRR), Strict Priority (SP), and a combination of WRR and SP |
Traffic management | - ACL-based inbound rate limiting and traffic policies - Broadcast, multicast, and unknown unicast rate limiting - Inbound rate limiting per port - Outbound rate limiting per port and per queue |
Security | - 802.1X authentication - MAC authentication - Flexible authentication - Web authentication - DHCP snooping - Dynamic ARP inspection - Neighbor Discovery (ND) Inspection - Bi-level Access Mode (Standard and EXEC Level) - EAP pass-through support - IEEE 802.1X username export in sFlow - Protection against Denial of Service (DoS) attacks - Authentication, Authorization, and Accounting (AAA) - MAC Address Locking MAC Port Security - Advanced Encryption Standard (AES) with SSHv2 - RADIUS/TACACS/TACACS+ - Secure Copy (SCP) - Secure Shell (SSHv2) - Protected Ports - Local Username/Password - Change of Authorization (CoA) RFC 5176 - Trusted Platform Module - RADSEC (RFC 6614) - Encrypted Syslog (RFC 5425) |
SDN features | - OpenFlow v1.0 and v1.3 - OpenFlow with hybrid port mode - Operates with an OpenDayLight Controller |
High availability | - Layer 3 VRRP/VRRP-E protocol redundancy - Real-time state synchronization across the stack - Hitless failover and switchover from master to standby stack controller - Hot insertion and removal of stacked units - Layer 2 VSRP switch redundancy - In Service Software Update (ISSU) |
FEATURE SETS | |
Layer 2 feature set | - 802.1s Multiple Spanning Tree - 802.1x Authentication - Auto MDI/MDIX - BPDU Guard, Root Guard - Dual-Mode VLANs - MAC-based VLANs, Dynamic MAC-based VLAN activation - Dynamic VLAN Assignment - Dynamic Voice VLAN Assignment - Fast Port Span - GVRP: GARP VLAN Registration Protocol - IGMP Snooping (v1/v2/v3) - IGMP Proxy for Static Groups - IGMP v2/v3 Fast Leave - Inter-Packet Gap (IPG) adjustment - Link Fault Signaling (LFS) - MAC Address Filtering - MAC Learning Disable - MLD Snooping (v1/v2) - Multi-device Authentication - Per-VLAN Spanning Tree (PVST/PVST+/PRST) - Mirroring: Port-based, ACL-based, MAC Filter-based, and VLAN-based - PIM-SM v2 Snooping - Port Loop Detection - Private VLAN - Remote Fault Notification (RFN) - Single-instance Spanning Tree - Trunk Groups (static, LACP) - Uni-Directional Link Detection (UDLD) - Metro-Ring Protocol (MRP) (v1, v2) - Virtual Switch Redundancy Protocol (VSRP) - Q-in-Q and selective Q-in-Q - VLAN Mapping - Topology Groups |
Base Layer 3 IP routing feature set | - IPv4 and IPv6 static routes - RIP v1/v2, RIPng - ECMP - Port-based Access Control Lists - Layer 3/Layer 4 ACLs - Host routes - Virtual Interfaces - Routed Interfaces - Route-only Support - Routing Between Directly Connected Subnets |
Premium Layer 3 IP routing feature set with software license | - IPv4 and IPv6 dynamic routes - OSPF v2, v3 - PIM-SM, PIM-SSM, PIM-DM, PIM passive (IPv4, IPv6) - PBR Virtual Route Redundancy Protocol VRRP (IPv4) - VRRP v3 (IPv6) - VRRP-E(IPv4/IPv6) |
STANDARD COMPLIANCE | |
IEEE standards compliance | - 802.1AB LLDP/ LLDP-MED - 802.1D MAC Bridging - 802.1p Mapping to Priority Queue - 802.1s Multiple Spanning Tree (MST) - 802.1w Rapid Reconfiguration of Spanning Tree (RSTP) - 802.1x Port-based Network Access Control (PNAC) - 802.3 Carrier Sense Multiple Access/Collision Detection (CSMA/CD) - 802.3ab 1000BASE-T - 802.3 10Base-T - 802.3ad Link Aggregation (Dynamic and Static) - 802.1 AX-2008 Link Aggregation - 802.3ae 10 Gigabit Ethernet - 802.3af Power over Ethernet - 802.3at Power over Ethernet Plus - 802.3bz Multigigabit Ethernet - 802.3u 100Base-TX - 802.3x Flow Control - 802.3z 1000Base-SX/LX - 802.3 MAU MIB (RFC 2239) - 802.1Q VLAN Tagging - 802.1BR Bridge Port Extension - 802.3az Energy Efficient Ethernet* (hardware ready) |
ENVIRONMENT | |
Temperature | Operating temperature: -5°C to 45°C Storage temperature: −25°C to 70°C |
Humidity | Operating relative humidity: 5% to 95% at 45°C, non-condensing Non-operating relative humidity: 0% to 95% at 70°C, non-condensing |
Altitude | Operating altitude: 10,000 ft (3,000 m) maximum Storage altitude: 39,000 ft (12,000 m) maximum |
COMPLIANCE/CERTIFICATION | |
Electromagnetic emissions | FCC Class A (Part 15); EN 55022/CISPR-22 Class A; VCCI Class A; ICES-003 Electromagnetic Emission; AS/NZS 55022; EN 61000-3-2 Power Line Harmonics; EN 61000-3-3 Voltage Fluctuation and Flicker; EN 61000-6-3 Emission Standard (supersedes: EN 50081-1) |
Safety | CAN/CSA-C22.2 NO. 60950-1-07; UL 60950-1 Second Edition; IEC 60950-1 Second Edition; EN 60950-1:2006 Safety of Information Technology Equipment; EN 60825-1 Safety of Laser Products—Part 1: Equipment Classification, Requirements and User’s Guide; EN 60825-2 Safety of Laser Products—Part 2: Safety of Optical Fibre Communication Systems |
Immunity | EN 61000-6-1 Generic Immunity and Susceptibility (supersedes EN 50082-1); EN 55024 Immunity Characteristics (supersedes EN 61000-4-2 ESD); EN 61000-4-3 Radiated, Radio Frequency, Electromagnetic Field; EN 61000-4-4 Electrical Fast Transient; EN 61000-4-5 Surge; EN 61000-4-6 Conducted Disturbances Induced by Radio-Frequency Fields; EN 61000-4-8 Power Frequency Magnetic Field; EN 61000-4-11 Voltage Dips and Sags |
Environmental regulatory compliance | RoHS-compliant (6 of 6); WEEE-compliant |
Vibration | IEC 68-2-36, IEC 68-2-6 |
Shock and drop | IEC 68-2-27, IEC 68-2-32 |