Netgear ProSafe GSM7328S 24-PORT Stackable Gigabit L3 Managed Switch

Netgear ProSafe GSM7328S 24-PORT Stackable Gigabit L3 Managed Switch

Netgear ProSafe GSM7328S 24-PORT Stackable Gigabit L3 Managed Switch

B&H # NEGSM7328S MFR # GSM7328S-200NAS
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Product Highlights

  • 4 10-Gigabit High-Speed Module Bays
  • 4 10/100/1000 Mbps Combo Ports
  • Built-in 10 Gigabit
  • Enterprise-Class Layer 3 Including IPv6
  • Flexible Stack with GSM72xxPS / GSM73xxS
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Netgear GSM7328S overview

  • 1Description

The ProSafe GSM7328S 24-PORT Stackable Gigabit L3 Managed Switch from Netgear allows the most flexible and easy-to-deploy Gigabit infrastructure. All 24 ports of 10/100/1000 Mbps interfaces deliver maximum throughput and low latency. Four Gigabit interfaces provide optional fiber connectivity for longer reach Gigabit Ethernet requirements. Two built-in 10 Gigabit Ethernet SFP+ interfaces on the front, and two 10 Gigabit module bays on the rear, permitting both uplinks and local/distant stacking, provide versatile 10 Gigabit deployment possibilities.

The ProSafe GSM7328S low-cost, stackable, Gigabit Ethernet switch delivers flexibility where you need it - to high-speed, high-density workgroups at the edge of the network, in the backbone of growing networks or for bandwidth-thirsty file and application servers. The ProSafe GSM7328S fully-managed switch delivers 24 ports of auto-sensing 10/100/1000 Mbps interfaces for high-density copper connectivity. The non-blocking design of the switch deliver simultaneous, full wire-speed, low-latency throughput to all ports.

A full suite of Layer 3 switching functionality ensures reliable routing between VLANs and network segmentation where and when you need it, at no additional cost. By configuring the switches into a stack of up to 8 units across a 48 Gbps bi-directional ring, a high-density, single IP-addressable switch can be built.

Robust security features include IEEE 802.1x port-based authentication and access control lists, ensuring that only authorized users can access your network. Secure management of the switch is available through Secure Sockets Layer for the Web GUI and Secured Shell for command-line sessions or with SNMP v3 for network management software.

For workgroup deployments in cost-sensitive organizations that require Layer 3 switching, additional Gigabit capacity, high-value price point, flexibility of stacking, and reduced maintenance requirements, the ProSafe GSM7328S switch delivers the ideal access-edge solution.

With a high-value price point, flexible design, and reduced maintenance requirements, the ProSafe GSM7328S switch solutions yield a high return on investment, and are ideal for delivering highly reliable, converged voice, video, and data services over a single network infrastructure.

Enterprise-Class L3
Combining superior resiliency, enterprise-class security and non-blocking performance, the ProSafe GSM7328S switch offers IPv4/IPv6 dynamic routing protocols such as OSPF, VRRP and multicast for converged applications with unsurpassed affordability. Together with VLANs routing, voice-class prioritization, and chassis-like stack with Layer 2+ PoE GSM7228PS / GSM7252PS or high-density fiber L3 GSM7328FS, the ProSafe GSM7328S switch can be deployed at the enterprise edge, remote branch offices and closer to the core of small and medium-sized businesses' growing networks.
High Availability
The ProSafe GSM7328S switch comes with a removable power module for the main power supply. In the event of a power supply failure, the switch can immediately shift to an external RPS device while the internal power module is replaced for 100% uptime. Like all Netgear ProSafe Managed Switches, the ProSafe GSM7328S switch is backed by the Netgear ProSafe Lifetime Warranty.
In desktop switching environments, wire-speed performance with full QoS control for all 10/100/1000 interfaces is critical. The 2 high-speed 10 G/24 G module bays provide unprecedented flexibility, whether you are stacking between switches, attaching bandwidth thirsty file servers, or aggregating critical data to the core of your network.
Easy to Use
Simplify and reduce IT staff workload and mean time-to-repair with intuitive, GUI-based device configuration, and an industry-standard command-line interface. The EZ-Config tool simplifies initial configuration steps to streamline the out-of-box set-up. For easy tracking of port usage, use the text-based port description to label how ports are used. Stacking capabilities allow you to build a single-IP manageable device with up to eight switches utilizing ultra-high-speed 48 Gbps across intelligent bi-directional redundant stacking links.
Non-stop Service
The new rev 2 hardware now comes with a removable power module as the switch's main power supply. In the event of a power supply failure, the switch will change to use the external RPS device for power, and the internal power module can be replaced without an RMA of the entire switch. This will avoid the problem of service disruption or down time due to power supply failure.
  • SNMP v1, v2c, v3 with multiple IP addresses
  • Port mirroring support (many-to-one)
  • Flow-based mirroring
  • TFTP, SFTP, HTTP, SCP, or local USB flash for configuration files and firmware upgrades
  • Runtime image download (TFTP)
  • Dual software image
  • Port description
  • sFlow
  • Web-based graphical user interface (ProSafe Control Center Web GUI)
  • Command Line Interface (Industrial Standard CLI: ISCLI)
  • IPv6 Management
  • Cable Test
  • Thermal sensor with alerts
  • SSLv3/TLSv1.0 Web security for the GUI
  • Secured Shell (SSHv1, v2) for CLI
  • Telnet sessions for management CPU (5 sessions)
  • Configurable Management VLAN
  • Per port: Speed, link, activity
  • Per device: Power, fan status, stack ID
  • RPS, master
UPC: 606449067972
In the Box
Netgear ProSafe GSM7328S 24-PORT Stackable Gigabit L3 Managed Switch
  • Power Cord
  • Rubber Footpads for Tabletop Installation
  • Rubber Caps for the SFP and SFP+ Sockets
  • Rack Mounting Kit
  • Null-Modem Serial Cable (RS-232) with 9-pin Connector
  • Resource CD
  • 24/7 Basic Technical Support Free for 90-Days
  • Table of Contents
    • 1Description

    Netgear GSM7328S specs

    Physical Interfaces Front:

    • 24 auto-sensing RJ45 10/100/1000 ports
    • 4 shared SFP ports for Gigabit fiber uplinks (shared with the last 4 RJ45 ports)
    • 2 independent 10 Gigabit SFP+ ports
    • USB port (config/firmware files storage)


    • 2 additional 10 Gigabit I/O module bays
    • Serial RS-232 port for console


    • 24 x Gigabit ports + 4 x 10 Gigabit ports
    Processor & Memory
    • Processor: MPC8633 @ 666 MHz
    • System memory: 256 MB (RAM)
    • Packet buffer memory: 6 Mb per switch
    • Code storage (flash): 32 MB
    Hardware Stacking
    • GSM7352S
    • GSM7228PS/GSM7252PS
    • GSM7328FS
    • Previous GSM7328Sv1/GSM7352Sv1
    • Stack height 8 switches/384 ports
    Performance Summary
    • Switching fabric: 144 Gbps
    • Throughput: 107.1 Mpps
    • Forwarding mode: Store-and-forward
    • Latency (64-byte frames, 10 to 100 Mbps): <35.2μs
    • Latency (64-byte frames, 1 Gbps): <4.1μs
    • Latency (64-byte frames, 10 Gbps): <2.0μs
    • Addressing: 48-bit MAC address
    • Address database size: 8,000 MAC addresses
    • Number of VLANs: 1,024 (IEEE 802.1Q) simultaneously out of 4,096 VLAN IDs
    • Number of multicast groups filtered: 1,024
    • Number of trunks: 64 trunks, 8-port per trunk
    • Number of hardware queues for QoS: 8
    • Number of static routes: 224
    • Number of IP interfaces: 128
    • Jumbo frame support: up to 9K packet size
    • Acoustic noise (ANSI-S10.12): 44 dB @ 25°C ambient temperature
    • Heat dissipation: 260.49 Btu/hr
    • Mean time between failures (MTBF): 211,069 hours (~24.1 years) @ 25 °C and 98,705 hours (~11.3 years) @ 55 °C ambient temperature
    Form Factor Rack mountable
    L3 Services - Routing
    • L2+ static routing (subnets, VLANs)
    • 224 IP routes (L3-capable hardware)
    • 128 IP interfaces (L3-capable hardware)
    • IP Source Guard
    • L3 IPv4/IPv6 unicast dynamic routing
    • RIP v1/v2 (IPv4)
    • OSPF v2/v3 (IPv4)
    • OSPFv3 (IPv6)
    • OSPF equal-cost multi-path (4 - ECMP routes)
    • VRRP 64 instances (IPv4)
    • IPv6 tunnel support
    • ICMPv6
    L3 Services - DHCP
    • IPv4 DHCP server (1,024 clients)
    • IPv4 DHCP L2 relay, DHCP snooping
    • IPv6 DHCP server (1,024 clients)
    • IPv6 DHCP/BOOTP relay
    • IPv6 DHCP snooping
    • DNSv6 support
    L3 Services - Multicast
    • IGMP querier
    • IPv4/IPv6 multicast streams routing between VLANs, subnets or different networks
    • IPv4/IPv6 PIM-SM (sparse mode)
    • IPv4/IPv6 PIM-DM (dense mode)
    • Distance Vector Multicast Routing Protocol (DVMRP)
    • Neighbor discovery
    L2 Services - Switching
    • MAC Address table: 8,000
    • ARP cache size: 1,664
    • Proxy ARP, Dynamic ARP Inspection
    L2 Services - VLANS
    • IEEE 802.1Q static VLAN (up to 1,024 VLANs out of 4,096 VLAN IDs)
    • IEEE 802.1v Protocol VLAN
    • Port-based VLAN
    • MAC-based VLAN
    • IP subnet-based VLAN
    • Protocol-based VLAN
    • Voice VLAN (based on IP phones OUIs)
    • Guest VLAN with IEEE 802.1x
    • Auto VLAN Assignment via RADIUS
    • IEEE 802.1 Q-in-Q (Double-VLAN tagging)
    • GARP with GVRP/GMRP (automatic registration for membership in VLANs or in multicast groups)
    • Private VLAN groups
    L2 Services - Availability
    • IEEE 802.3ad Link Aggregation (Static or LACP) up to 64 trunks per stack and up to 8 ports per trunk
    • User selectable LAG hashing algorithm
    • IEEE 802.1D Spanning Tree Protocol
    • IEEE 802.1w Rapid Spanning Tree
    • IEEE 802.1s Multiple Spanning Tree
    L2 Services - Multicast
    • IGMP v1, v2, v3 snooping support
    • IGMP querier mode support
    • Static multicast filtering (1,024 Multicast groups)
    • IPv6: MLD v1, v2 snooping support
    • MLD proxy
    L2/L3/L4 Services - QOS
    • IPv4 / IPv6 L2/L3/L4 QoS: MAC, IP, TCP/UDP ports
    • IEEE 802.1p Class of Service (CoS)
    • DiffServ QoS (RFC 2998)
    • Weighted round robin (WRR) queue technology
    • Strict priority queue technology
    • Ingress rate limit in 1 Kbps increments
    • Egress traffic shaping
    L2/L3/L4 Services - Security
    • IPv4 / IPv6 access control lists (ACL) L2/L3/L4: MAC, IP, TCP
    • MAC-based source/destination ACL
    • IP subnet-based source/destination ACL
    • Protocol-based source/destination ACL
    • ACL over VLAN
    • Dynamic ACLs
    • 1,024 ACLs
    • Network storm protection including broadcast multicast and unicast traffic
    • DoS
    • Protected ports
    • Port locking
    • MAC filtering
    • Port security
    • DHCP snooping
    • IP Source Guard
    • Dynamic ARP inspection
    • RADIUS (RFC 2865)
    • RADIUS accounting (RFC 2866)
    • IEEE 802.1x port access authentication (RADIUS)
    • Network access control: Captive portal with internal authentication or external RADIUS authentication
    • Possible configuration of 10 captive portals
    • TACACS+
    IEEE Network Protocols
    • IEEE 802.3 Ethernet
    • IEEE 802.3i 10BASE-T
    • IEEE 802.3u 100BASE-T
    • IEEE 802.3ab 1000BASE-T
    • IEEE 802.3z Gigabit Ethernet 1000BASE-SX/LX
    • IEEE 802.3ae 10-Gigabit Ethernet
    • IEEE 802.3ad Trunking (LACP)
    • IEEE 802.1AB LLDP with ANSI/TIA-1057 (LLDP-MED)
    • IEEE 802.1 D Spanning Trees (STP)
    • IEEE 802.1s Multiple Spanning Tree (MSTP)
    • IEEE 802.1w Rapid Spanning Tree (RSTP)
    • IEEE 802.1p Quality of Service
    • IEEE 802.1Q VLAN tagging
    • IEEE 802.1v Protocol-based VLAN
    • IEEE 802.1X Radius network access control
    • IEEE 802.3x Flow control
    IETF RFC Standard-System Facilities
    • RFC 768 UDP
    • RFC 783 TFTP
    • RFC 791 IP
    • RFC 792 ICMP
    • RFC 793 TCP
    • RFC 826 Ethernet ARP
    • RFC 894 Transmission of IP datagrams over Ethernet networks
    • RFC 896 Congestion control in IP/TCP Networks
    • RFC 951 BOOTP
    • RFC 1321 Message-digest algorithm
    • RFC 1534 Interoperation between BOOTP and DHCP
    • RFC 2131 DHCP Client/Server
    • RFC 2132 DHCP options & BOOTP vendor extensions
    • RFC 2030 Simple Network Time Protocol (SNTP) Version 4 for IPv4, IPv6 and OSI
    • RFC 2865 RADIUS Client (both Switch and Management access)
    • RFC 2866 RADIUS Accounting
    • RFC 2868 RADIUS Attributes for Tunnel Protocol support
    • RFC 2869 RADIUS Extensions
    • RFC2869bis RADIUS Support for Extensible Authentication Protocol (EAP)
    • RFC 3164 The BSD Syslog Protocol
    • RFC 3580 802.1X RADIUS usage guidelines (VLAN assignment via RADIUS, dynamic VLAN)
    IETF RFC Standards - Switching MIB
    • RFC 1213 MIB-II
    • RFC 1493 Bridge MIB
    • RFC 1643 Ethernet-like MIB
    • RFC 2233 The Interfaces Group MIB using SMI v2
    • RFC 2674 VLAN MIB
    • RFC 2613 SMON MIB
    • RFC 2618 RADIUS Authentication Client MIB
    • RFC 2620 RADIUS Accounting MIB
    • RFC 2737 Entity MIB version 2
    • RFC 2819 RMON Groups 1, 2, 3 & 9
    • IEEE 802.1X MIB (IEEE 802.1-PAE-MIB 2004 Revision)
    • IEEE 802.1AB – LLDP MIB
    • ANSI/TIA 1057 – LLDP-MED MIB
    • Private Enterprise MIBs supporting switching features
    IETF RFC Standards - IPV4 Routing
    • RFC 1027 Using ARP to implement transparent subnetgGateways (Proxy ARP)
    • RFC 1256 ICMP Router Discovery Messages
    • RFC 1765 OSPF Database Overflow
    • RFC 1812 Requirements for IP Version 4 routers
    • RFC 2082 RIP-2 MD5 authentication
    • RFC 2131 DHCP relay
    • RFC 2328 OSPF Version 2
    • RFC 2370 The OSPF Opaque LSA Option
    • RFC 2453 RIP v2
    • RFC 3046 DHCP Relay Agent Information option
    • RFC 3101 The OSPF “Not So Stubby Area” (NSSA) Option
    • RFC 3137 OSPF Stub Router Advertisement
    • RFC 3768 VRRP – Virtual Router Redundancy Protocol
    • Route Redistribution across RIP, OSPF and BGP
    • VLAN routing
    IETF RFC Standards-IPV4 Routing MIB
    • RFC 1724 RIP v2 MIB Extension
    • RFC 1850 OSPF MIB
    • RFC 2096 IP Forwarding Table MIB
    • RFC 2787 VRRP MIB
    • Private enterprise MIB supporting routing features
    IETF RFC Standards - Multicast
    • RFC 1112 Host extensions for IP Multicasting
    • RFC 2236 Internet Group Management Protocol, Version 2
    • RFC 2365 Administratively Scoped IP Multicast
    • RFC 2710 Multicast Listener Discovery (MLD) for IPv6
    • RFC 3376 Internet Group Management Protocol, Version 3
    • RFC 3810 Multicast Listener Discovery Version 2 (MLDv2) for IPv6
    • RFC 3973 Protocol Independent Multicast - Dense Mode (PIM-DM)
    • RFC 4601 Protocol Independent Multicast - Sparse Mode (PIM-SM)
    • Draft-ietf-idmr-dvmrp-v3-10 Distance Vector Multicast Routing Protocol
    • Draft-ietf-magma-igmp-proxy-06 IGMP/MLD-based Multicast Forwarding (“IGMP/MLD Proxying”)
    • Draft-ietf-magma-igmpv3-and-routing-05 IGMPv3/MLDv2 and Multicast Routing Protocol Interaction
    • Draft-ietf-pim-sm-bsr-05 Bootstrap Router (BSR) Mechanism for PIM
    IETF RFC Standards - Multicast MIB
    • RFC 2932 IPv4 Multicast Routing MIB
    • RFC 5060 Protocol Independent Multicast MIB
    • Draft-ietf-idmr-dvmrp-mib-11 Distance-Vector Multicast Routing Protocol MIB
    • Draft-ietf-magma-mgmd-mib-05 Multicast Group Membership Discovery MIB
    • Draft-ietf-pim-bsr-mib-06 – PIM Bootstrap Router MIB
    • Private Enterprise MIB supporting Multicast features
    IETF RFC Standards - IPV6 Routing
    • RFC 1981 – Path MTU for IPv6
    • RFC 2460 – IPv6 Protocol specification
    • RFC 2461 – Neighbor Discovery
    • RFC 2462 – Stateless Auto Configuration
    • RFC 2464 – IPv6 over Ethernet
    • RFC 2711 – IPv6 Router Alert
    • RFC 2740 – OSPFv3
    • RFC 3056 – Connection of IPv6 Domains via IPv4 Clouds
    • RFC 3315 – DHCPv6 (stateless + relay)
    • RFC 3484 – Default Address Selection for IPv6
    • RFC 3493 – Basic Socket Interface for IPv6
    • RFC 3542 – Advanced Sockets API for IPv6
    • RFC 3587 – IPv6 Global Unicast Address Format
    • RFC 3736 – Stateless DHCPv6
    • RFC 4213 – Basic Transition Mechanisms for IPv6
    • RFC 4291 - Addressing Architecture for IPv6
    • RFC 4443 – ICMPv6
    IETF RFC Standards-IPV6 Routing MIB
    • RFC 2465 – IPv6 MIB
    • RFC 2466 – ICMPv6 MIB
    IETF RFC Standards - QOS
    • RFC 2474 Definition of the Differentiated Services Field (DS Field) in the IPv4 and IPv6 Headers
    • RFC 2475 An Architecture for Differentiated Services
    • RFC 2597 Assured Forwarding PHB Group
    • RFC 3246 An Expedited Forwarding PHB (Per-Hop Behavior)
    • RFC 3260 New Terminology and Clarifications for DiffServ
    • RFC 3289 - Management Information Base for the Differentiated Services Architecture (read-only)
    • Private MIBs for full configuration of DiffServ, ACL and CoS functionality
    IETF RFC Standards - Management
    • RFC 854 Telnet
    • RFC 855 Telnet Option
    • RFC 1155 SMI v1
    • RFC 1157 SNMP
    • RFC 1212 Concise MIB Definitions
    • RFC 1867 HTML/2.0 Forms with file upload extensions
    • RFC 1901 Community-based SNMP v2
    • RFC 1908 Coexistence between SNMP v1 & SNMP v2
    • RFC 2068 HTTP/1.1 protocol as updated by draft-ietf-http-v11-spec-rev-03
    • RFC 2271 SNMP Framework MIB
    • RFC 2295 Transparent Content Negotiation
    • RFC 2296 Remote Variant Selection; RSVA/1.0 State Management “cookies” – draft-ietf-http-state-mgmt-05
    • RFC 2576 Coexistence between SNMP v1, v2 and v3
    • RFC 2578 SMI v2
    • RFC 2579 Textual Conventions for SMI v2
    • RFC 2580 Conformance statements for SMI v2
    • RFC 3410 Introduction and Applicability Statements for Internet Standard Management Framework
    • RFC 3411 An Architecture for Describing SNMP Management Frameworks
    • RFC 3412 Message Processing & Dispatching
    • RFC 3413 SNMP Applications
    • RFC 3414 User-Based Security Model
    • RFC 3415 View-based Access Control Model
    • RFC 3416 Version 2 of SNMP Protocol Operations
    • RFC 3417 Transport Mappings
    • RFC 3418 Management Information Base (MIB) for the Simple Network Management Protocol (SNMP)
    • SSL 3.0 and TLS 1.0:
      RFC 2246 The TLS Protocol, Version 1.0
      RFC 2818 HTTP over TLS
      RFC 2346 AES Ciphersuites for Transport Layer Security
    • SSH 1.5 and 2.0:
      RFC 4253 SSH Transport Layer Protocol
      RFC 4252 SSH Authentication Protocol
      RFC 4254 SSH Connection Protocol
      RFC 4251 SSH Protocol Architecture
      RFC 4716 SECSH Public Key File Format
      RFC 4419 Diffi e-Hellman Group Exchange for the SSH Transport Layer Protocol


    Physical Specifications
    • Per port: Speed, link, activity
    • Per device: Power, fan status, stack ID
    • RPS, master
    Dimensions (WxDxH) 17.3 x 15.4 x 1.7" (440 x 391 x 43 mm)
    Weight 13.89 lb (6.3 kg)
    Power Consumption 65.64 W maximum 100-240VAC, 50-60Hz universal input (all ports used)
    Environmental Specifications Operating:

    • Temperature: 32 to 122° F (0 to 50° C)
    • Humidity: 90% maximum relative humidity, non-condensing
    • Altitude: 10,000 ft (3,000 m) maximum


    • Temperature: - 4 to 158° F (-20 to 70° C)
    • Humidity: 95% maximum relative humidity, non-condensing
    • Altitude: 10,000 ft (3,000 m) maximum
    Electromagnetic Emissions & Immunity
    • CE mark, commercial
    • FCC Part 15 Class A, VCCI Class A
    • Class A EN 55022 (CISPR 22) Class A
    • Class A C-Tick
    • EN 50082-1
    • EN 55024
    • CE mark, commercial
    • CSA certified (CSA 22.2 #950)
    • UL listed (UL 1950)/cUL IEC 950/EN 60950
    • AFM735 100BASE-FX SFP GBIC
    • AGM731F 1000BASE-SX SFP GBIC
    • AGM732F 1000BASE-LX SFP GBIC
    • AXC753 3m SFP+ to XFP Direct Attach Cable
    • AXC761 1m SFP+ Direct Attach Cable
    • AXC763 3m SFP+ Direct Attach Cable
    • AXM763 10GBASE-LRM SFP+ GBIC (Long Reach Multimode)
    • AX742 24Gigabit Stacking Kit
    • AX743 10Gigabit SFP+ Adapter Module
    • AX744 10Gigabit CX4 Module
    • APS135W Power Supply Spare Module
    • RPS5412 Optimal Power External Redundant Power Supply
    Packaging Info
    Package Weight 18.25 lb
    Box Dimensions (LxWxH) 22.6 x 21.2 x 5.9"

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