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Mã sản phẩm: QFX5100-96S-AFO
Tình trạng: Còn hàng
Thương hiệu: JUNIPER
Tài liệu: Download tại đây
Thiết bị mạng Switch Juniper QFX5100-96S-AFO (QFX5100 96S AFO) QFX5100, 96 SFP/SFP+ Ports, 8 QSFP+ Ports, Layer 3, AC PSU, front-to-back airflow
Hỗ trợ kinh doanh
Ms. Lan
Mr Ánh
Ms Mỹ
Mr Liêm
Ms.Thương
Ms.Vân Anh
Hỗ trợ kỹ thuật
Mr. Kỳ
Mr Hoàng
Mr Công
Ms.Oanh
Liên hệ nhận giá tốt
Thông số kỹ thuật
Mô tả tổng quan
Juniper QFX5100-96S-AFO là thiết bị chuyển mạch Ethernet mật độ cao, được thiết kế cho các môi trường trung tâm dữ liệu và mạng doanh nghiệp quy mô lớn, nơi yêu cầu độ trễ thấp, hiệu năng vượt trội và khả năng mở rộng linh hoạt. Thiết bị hỗ trợ đầy đủ các tính năng Layer 2 và Layer 3 tiên tiến như Virtual Extensible LAN (VXLAN), giao thức Open vSwitch Database (OVSDB), BGP Add-Path, MPLS, L3 VPN và IPv6 6PE, đáp ứng hiệu quả các kiến trúc mạng truyền thống cũng như mạng định nghĩa bằng phần mềm (SDN).
Để tối ưu hóa việc vận hành và quản lý mạng, QFX5100-96S-AFO tích hợp công nghệ Virtual Chassis kết hợp với High Availability (HA), cho phép nhiều switch hoạt động như một hệ thống logic duy nhất, đồng thời nâng cao tính sẵn sàng và khả năng dự phòng. Với 96 cổng SFP/SFP+ và 8 cổng uplink QSFP+ 40GbE, cùng thiết kế luồng gió front-to-back (AFO), thiết bị phù hợp với tiêu chuẩn làm mát của trung tâm dữ liệu hiện đại, mang lại giải pháp kết nối hiệu quả, kinh tế và linh hoạt cho doanh nghiệp.

Bên cạnh đó, switch hỗ trợ nâng cấp phần mềm không gián đoạn thông qua công nghệ TISSU (Topology-Independent In-Service Software Upgrades), giúp hệ thống duy trì hoạt động liên tục trong quá trình bảo trì hoặc nâng cấp. Với khả năng hoạt động như Layer 2 gateway giữa các máy chủ vật lý và môi trường ảo hóa, cùng thông lượng chuyển mạch lên đến 2.56 Tbps hoặc 1.44 Bpps, Juniper QFX5100-96S-AFO được thiết kế để đáp ứng các yêu cầu khắt khe về hiệu suất, độ ổn định và khả năng mở rộng trong các triển khai trung tâm dữ liệu hiệu năng cao.
Thông số kỹ thuật Switch Juniper QFX5100-96S-AFO
| Hardware | |
| CPU | 1.5 GHz dual-core Intel |
| RAM | 8 GB memory |
| Storage | 32 GB SSD storage |
| Switching Capacity | 2.56 Tbps/1.44 Bpps |
| Weight | 32.5 lb (14.74 kg) |
| Dimensions (HxWxD) | 3.46 x 17.36 x 22.44 in (8.8 x 44.09 x 57 cm) |
| Switching mode | Cut-through and store-and-forward |
| Airflow | front-to-back |
| Power Consumption | 263 W |
| Interface Options | - 1GbE SFP: 96 (48 Copper 1GbE) - 10GbE SFP+: 104 (with breakout cable) - 40GbE QSFP+: 8 |
| Rack Installation Kit | Versatile four post mounting options for 19-in server rack or datacom rack |
| Power Supply and Fan Modules | • Dual redundant (1+1) and hot-pluggable power supplies • 110-240 V single phase AC power • Redundant (N+1) and hot-pluggable fan modules for front-to-back airflow |
| Performance Scale (Unidimensional) | • MAC addresses per system: 288,0003 • VLAN IDs: 4,096 • Number of link aggregation groups (LAGs): 128 • Number of ports per LAG: 32 • Number of FCoE VLANs/FC Virtual Fabrics: 4,095 • Firewall filters: 4000 • IPv4 unicast routes: 128,000 prefixes; 208,000 host routes; 644 ECMP paths • IPv4 multicast routes: 104,000 • IPv6 multicast routes: 52,000 • IPv6 unicast routes: 64,000 prefixes • ARP entries: 48,000 • Jumbo frame: 9,216 bytes • Spanning Tree Protocol (STP) - Multiple Spanning Tree Protocol (MSTP) instances: 64 - VLAN Spanning Tree Protocol (VSTP) instances: 253 • Traffic mirroring - Mirroring destination ports per switch: 4 - Maximum number of mirroring sessions: 4 - Mirroring destination VLANs per switch: 4 |
| Layer 2 Features | • STP—IEEE 802.1D (802.1D-2004) • Rapid Spanning Tree Protocol (RSTP) (IEEE 802.1w); MSTP (IEEE 802.1s) • Bridge protocol data unit (BPDU) protect • Loop protect • Root protect • RSTP and VSTP running concurrently • VLAN—IEEE 802.1Q VLAN trunking • Routed VLAN Interface (RVI) • Port-based VLAN • MAC address filtering • Private VLAN (PVLAN) • QinQ • VLAN Translation • Static MAC address assignment for interface • Per VLAN MAC learning (limit) • MAC learning disable • Link Aggregation and Link Aggregation Control Protocol (LACP) (IEEE 802.3ad) • IEEE 802.1AB Link Layer Discovery Protocol (LLDP) |
| Link Aggregation | • Multi-chassis link aggregation (MC-LAG) • Redundant Trunk Group (RTG) • LAG load sharing algorithm—bridged or routed (unicast or multicast) traffic: - IP: SIP, Dynamic Internet Protocol (DIP), TCP/UDP source port, TCP/UDP destination port - Layer 2 and non-IP: MAC SA, MAC DA, Ethertype, VLAN ID, source port - FCoE packet: Source ID (SID), Destination ID (DID), Originator exchange ID (OXID), source port |
| Layer 3 Features (IPv4) | • Static routing • Routing policy • Routing protocols (RIP, OSPF, IS-IS, BGP) • Virtual Router Redundancy Protocol (VRRP) • Bidirectional Forwarding Detection (BFD) protocol • Virtual router • Dynamic Host Configuration Protocol (DHCP) relay • Proxy Address Resolution Protocol (ARP) |
| Multicast Features | • Internet Group Management Protocol (IGMP): v1, v2 , V3 • IGMP snooping: v1, v2, v3 • IGMP Filter • PIM-SM • Multicast Source Discovery Protocol (MSDP) |
| Security and Filters | • Secure interface login and password • RADIUS • TACACS+ • Ingress and egress filters: Allow and deny, port filters, VLAN filters, and routed filters, including management port filters • Filter actions: Logging, system logging, reject, mirror to an interface, counters, assign forwarding class, permit, drop, police, mark • SSH v1, v2 • Static ARP support • Storm control, port error disable, and autorecovery • Control plane denial-of-service (DoS) protection • Dynamic ARP Inspection (DAI) • Sticky MAC address • DHCP snooping |
| Quality of Service (QoS) | • L2 and L3 QoS: Classification, rewrite, queuing • Rate limiting: - Ingress policing: 1 rate 2 color, 2 rate 3 color - Egress policing: Policer, policer mark down action - Egress shaping: Per queue on each port • 12 hardware queues per port (8 unicast and 4 multicast) • Strict priority queuing (LLQ), smoothed deficit weighted round-robin (SDWRR), weighted random early detection (WRED), weighted tail drop • 802.1p remarking • Layer 2 classification criteria: Interface, MAC address, Ethertype, 802.1p, VLAN • Congestion avoidance capabilities: WRED • Trust IEEE 802.1p (ingress) • Remarking of bridged packets |
| Data Center Bridging (DCB) | • Priority-based flow control (PFC)—IEEE 802.1Qbb • Enhanced Transmission Selection (ETS)—IEEE 802.1Qaz • Data Center Bridging Exchange Protocol (DCBX), DCBx FCoE, and iSCSI type, length, and value (TLVs) |
| Fibre Channel over Ethernet (FCoE) | • FCoE transit switch (FIP snooping ACL installation) • FCoE session path learning • FCoE session health monitoring • Graceful restart for FIP snooping • FC-BB-6 VN2VN snooping |
| Virtual Chassis | • 40GbE and 10GbE as Virtual Chassis port • Virtual Chassis Routing Engine (RE) election • Virtual Chassis pre-provisioning (plug and play) • Auto-LAG formation of Virtual Chassis ports • Mixed Virtual Chassis support • FCoE transit across Virtual Chassis members • QoS on Virtual Chassis ports • Local Designated Forwarding • Graceful RE switchover (GRES) • Nonstop routing (NSR) • Nonstop bridging (NSB) • Monitor distributed aggregate interface • Control plane protection for virtual RE |
| High Availability | • Topology-independent in-service software upgrade (TISSU) • Bidirectional Forwarding Detection (BFD) • Uplink failure detection (UFD) |
| MPLS | • Static label-switched paths (LSPs) • RSVP-based signaling of LSPs • LDP-based signaling of LSPs • LDP tunneling (LDP over RSVP) • MPLS class of service (CoS) • MPLS access control list (ACL)/policers • MPLS LSR support • IPv6 tunneling (6PE) (via IPv4 MPLS backbone) • MPLS Operation, Administration, and Maintenance (OAM)— LSP ping • IPv4 L3 VPN (RFC 2547, 4364) |
| Server Virtualization Management and SDN-Related Protocols | • Junos Space Virtual Control • IEEE 802.1Qbg (VEPA hairpin forwarding) • VMware NSX VXLAN L2 Gateway • VXLAN OVSDB • OpenFlow 1.3 client |
| Management and Operations | • Management and Operations • Contrail Networking • Junos Space Network Director • Role-based CLI management and access • CLI via console, telnet, or SSH • Extended ping and traceroute • Junos OS configuration rescue and rollback • Image rollback • SNMP v1/v2/v3 • Junos XML management protocol • sFlow v5 • High frequency statistics collection • Beacon LED for port and system • Automation and orchestration • Zero-touch provisioning (ZTP) • OpenStack Neutron Plug-in • Puppet • Chef • Python • Junos OS event, commit, and OP scripts |
| Traffic Mirroring | • Port-based • LAG port • VLAN-based • Filter-based • Mirror to local • Mirror to remote destinations (L2 over VLAN) |
| Standards Compliance | |
| IEEE Standard | IEEE standard, IEEE 802.1D, IEEE 802.1w, IEEE 802.1, IEEE 802.1Q, IEEE 802.1p, IEEE 802.1ad, IEEE 802.3ad, IEEE 802.1AB, IEEE 802.3x, IEEE 802.1Qbb, IEEE 802.1Qaz, IEEE 802.3an |
| T11 Standards | INCITS T11 FC-BB-5 |
| Safety | • CAN/CSA-C22.2 No. 60950-1 (2007) Information Technology Equipment—Safety • UL 60950-1 (2nd Ed.) Information Technology Equipment— Safety • EN 60950-1 (2005) Information Technology Equipment— Safety • IEC 60950-1 (2005) Information Technology Equipment— Safety (All country deviations): CB Scheme report. • EN 60825-1 +A1+A2 (1994) Safety of Laser Products—Part 1: Equipment Classification • GR-63-Core (2006) Network Equipment, Building Systems (NEBS) Physical Protection • GR-1089-Core (2006) EMC and Electrical Safety for Network Telecommunications Equipment • SR-3580 (1995) NEBS Criteria Levels (Level 3) |
| EMC | • FCC 47CFR, Part 15 Class A (2009) USA Radiated Emissions • EN 55022 Class A (2006)+ A1 2007 European Radiated Emissions • VCCI Class A (2007) Japanese Radiated Emissions • BSMI CNS 13438 and NCC C6357 Taiwan Radiated Emissions • AS/NZS CISPR22:2009 |
| Environmental Ranges | • Operating temperature: 32° to 104° F (0° to 40° C) • Storage temperature: -40° to 158° F (-40° to 70° C) • Operating altitude: up to 2,000 (610 m) • Relative humidity operating: 5% to 90% (noncondensing) • Relative humidity non-operating: 0% to 95% (noncondensing) |
Power Supply và Fans
| JPSU-850W-AC-AFO | AC 850W PSU, front-to-back airflow for QFX5100-96S |
| QFX5100-96S-FANAFO | Front-to-back Airflow Fan Module for QFX5100-96S |
License
| QFX5100-HDNSE-LIC | QFX5100-24Q and QFX5100-96S Advanced Feature License for IS-IS, BGP, VxLAN and MPLS |
| QFX-VCF-LIC | License for Virtual Chassis Fabric |
Module quang Juniper
QFX-SFP-1GE-T | SFP 1000BASE-T Copper Transceiver Module for up to 100 m transmission on Cat5 |
QFX-SFP-1GE-SX | SFP 1000BASE-SX Gigabit Ethernet Optics, 850 nm for up to 550 m transmission on MMF |
QFX-SFP-1GE-LX | SFP 1000BASE-LX Gigabit Ethernet Optics, 1,310 nm for 10 km transmission on SMF |
QFX-SFP-10GE-SR | SFP+ 10GBASE-SR 10 Gigabit Ethernet Optics, 850 nm for up to 300 m transmission on multimode fiber (MMF) |
QFX-SFP-10GE-USR | SFP+ 10 Gigabit Ethernet Ultra Short Reach Optics, 850 nm for 10 m on OM1, 20 m on OM2, 100 m on OM3 multimode fiber (MMF) |
QFX-SFP-10GE-LR | SFP+ 10GBASE-LR 10 Gigabit Ethernet Optics, 1,310 nm for 10 km transmission on single mode fiber-optic (SMF) |
QFX-SFP-10GE-ER | SFP+ 10GBASE-ER 10 Gigabit Ethernet Optics, 1,550 nm for 40 km transmission on single-mode fiber (SMF) |
EX-SFP-10GE-ZR | SFP+ 10GBASE-ZR 10 Gigabit Ethernet Optics, 1,550 nm for 80 km transmission on single-mode fiber (SMF) |
QFX-SFP-DAC-1M | SFP+ 10 Gigabit Ethernet Direct Attach Copper (twinax copper cable) 1 m |
QFX-SFP-DAC-3M | SFP+ 10 Gigabit Ethernet Direct Attach Copper (twinax copper cable) 3 m |
QFX-SFP-DAC-5M | SFP+ 10 Gigabit Ethernet Direct Attach Copper (twinax copper cable) 5 m |
QFX-SFP-DAC-1MA | SFP+ 10 Gigabit Ethernet Direct Attach Copper (active twinax copper cable) 1 m |
QFX-SFP-DAC-3MA | SFP+ 10 Gigabit Ethernet Direct Attach Copper (active twinax copper cable) 3 m |
QFX-SFP-DAC-5MA | SFP+ 10 Gigabit Ethernet Direct Attach Copper (active twinax copper cable) 5 m |
QFX-SFP-DAC-7MA | SFP+ 10 Gigabit Ethernet Direct Attach Copper (active twinax copper cable) 7 m |
QFX-SFP-DAC-10MA | SFP+ 10 Gigabit Ethernet Direct Attach Copper (active twinax copper cable) 10 m |
QFX-QSFP-DAC-1M | QSFP+ to QSFP+ Ethernet Direct Attach Copper (twinax copper cable) 1m passive |
QFX-QSFP-DAC-3M | QSFP+ to QSFP+ Ethernet Direct Attach Copper (twinax copper cable) 3m passive |
JNP-QSFP-DAC-5M | QSFP+ to QSFP+ Ethernet Direct Attach Copper (twinax copper cable) 5m passive |
QFX-QSFP-DACBO-1M | QSFP+ to SFP+ 10 Gigabit Ethernet Direct Attach Breakout Copper (twinax copper cable) 1m |
QFX-QSFP-DACBO-3M | QSFP+ to SFP+ 10 Gigabit Ethernet Direct Attach Breakout Copper (twinax copper cable) 3m |
QFX-QSFP-40G-SR4 | QSFP+ 40GBASE-SR4 40 Gigabit Optics, 850 nm for up to 150 m transmission on MMF |
QFX-QSFP-40G-ESR4 | QSFP+ 40GBASE-ESR4 40 Gigabit Optics, 300 m(400 m) with OM3(OM4) MMF |
JNP-QSFP-40G-LR4 | QSFP+ 40GBASE-LR4 40 Gigabit Optics, 1310nm for up to 10km Transmission on SMF |
JNP-QSFP-40G-LX4 | QSFP+ 40GBASE-LX4 40 Gigabit Optics, 100m(150m) with OM3(OM4) duplex MMF |
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