TCC4100 Railway Onboard Industrial Switch

TCC4100 Railway Onboard Industrial Switch

Supports up to 16 PoE ports

Supports MRD-Ring® Ethernet ring with multiple self-healing rings; node recovery <5 ms, ring recovery <50 ms (typical)

Supports IEC 62439 MRD ring media redundancy protocol

Any two ports can form a self-healing ring; multiple independent rings supported

Download

Product Overview

The TCC4100 railway onboard industrial switch is dedicated to rail transit and railway applications and complies with EN50155/50121. It remains stable under vibration/shock. It supports up to 4 Gigabit 8-pin A-code M12 + 12 FE 4-pin D-code M12 interfaces (PoE/PoE+ with built-in 130W PoE PSU). Any two ports can form a self-healing ring; multiple independent rings are supported. Patented MRD-Ring® (MRDcom Real-Time Ring) uses hardware algorithms for per-node recovery < 5 ms and ring recovery < 50 ms (typical).

The TCC4100 railway onboard switch offers high stability/reliability with local/remote monitoring of key parameters. Unique extended industrial-grade design suits harsh and field environments.

Certifications

FAQ

  • The cable is connected, but the port will not come UP / the link is down. What should I check?

    +

    1) Confirm an industrial-grade cable and proper RJ45 crimping. 2) Check speed/duplex settings; set both ends to auto-negotiation. 3) Check whether the port is administratively shut down, in the wrong VLAN, or restricted by port security.
  • What are the PoE power specifications?

    +

    Standard PoE and PoE+ are supported, with max per-port power of 15.4 W and 30 W respectively. Total system power budget must be calculated during selection to avoid insufficient supply when too many PDs are connected.
  • Which ring protocols are supported, and what is the self-healing time?

    +

    Mainstream industrial ring protocols such as ERPS (G.8032), RSTP/STP, MRP, and PRP are supported. ERPS typical self-healing is ≤50 ms; traditional RSTP is second-level. It is recommended to use one ring protocol consistently across the network.
  • How should I choose between Layer-2 and Layer-3 industrial switches?

    +

    Layer-2 switches: basic features such as VLAN, ring networks, and port mirroring; suited to access layers and same-subnet networking with strong cost performance. Layer-3 switches: add static routing, OSPF, DHCP relay, multicast, and other routing features—choose these when cross-subnet communication or core/aggregation networks are required.
  • Can non-OEM SFP optical modules work normally?

    +

    The device is compatible with generic IEEE 802.3 SFP modules. Non-OEM modules can usually be recognized, but some brands may have compatibility issues. OEM modules are recommended.
  • How do I restore factory settings if I forget the device login password?

    +

    1) Hardware reset: press and hold the RESET button for 5–10 seconds; the device reboots to factory defaults. 2) Software reset: use the vendor NMS to restore factory settings remotely. All custom configurations will be cleared after restore.
  • What are the power supply requirements for industrial switches?

    +

    DC models support 18–60 VDC or 9.6–60 VDC; AC models support 100–240 VAC, with dual redundant power inputs. Phoenix terminal wiring; reverse-polarity protection is built in so normal reverse connection will not damage the device.
  • What are the operating temperature range and protection rating of industrial switches?

    +

    All-metal aluminum alloy housing. Operating temperature is -40°C to +75°C; premium wide-temperature models reach -40°C to +85°C. Typical enclosure rating is IP40.

Features

High-performance, flexibly configurable wire-speed switch

Backplane bandwidth up to 68Gbps

Supports up to 16 PoEports

MTX140 18-port DIN-rail unmanaged industrial switch, die-cast aluminum housing: 16 FE copper + 2 GE/FE auto-sensing Combo; DIP audible/visual alarm and 1 relay alarm (1A@24VDC). IP30; operating temperature -40°C ~ +75°C. Redundant 12/24/48VDC (9.6~60VDC) and 24VAC (18~30VAC) input (Class 2 only).

Max PoE output 30W per port

The TCC4100 railway onboard switch offers high stability/reliability with local/remote monitoring of key parameters. Unique extended industrial-grade design suits harsh and field environments.

Supports MRD-Ring® Ethernet ring with multiple self-healing rings; node recovery < 5 ms; ring recovery < 50 ms (typical)

Layer-3 enhanced IP54/IP67 waterproof/dustproof: 12 FE/Gigabit auto-sensing M12 (8 with PoE/PoE+ and built-in 130W PoE PSU; 4 with power-fail bypass). Industrial isolated power (110VDC/220VAC).

Any two ports can form a self-healing ring, and multiple independent self-healing rings

The TCC4100 series 24-port high-end DIN-rail Layer-3 industrial switch can be configured with 16 Gigabit copper + 8×2.5G/1.0G/100M auto-sensing SFP. Any two ports can form a self-healing ring; multiple independent rings may use dual fiber, single fiber, twisted pair or any combination; ring recovery < 50 ms (typical).

Built-in unified MicOS RTOS for all MRDTM switches

MTBF reaches 600,000 hours

TCC4100 railway onboard industrial switch

Specifications

IEEE 802.3 CSMA/CD method and physical Layer

specifications CSMA/CD method and physical layer specifications

IEEE 802.1p Priority Queuing Priority Queuing

IEEE 802.1q VLAN tagging VLAN Tagging

IEEE 802.1d Spanning Tree Algorithm Spanning Tree Protocol

IEEE 802.1w Rapid Spanning Tree Rapid Spanning Tree Protocol

IEEE 802.1s Multiple Spanning Tree Multiple Spanning Tree Protocol

IEEE 802.3ac VLAN Tagging VLAN Tagging

IEEE 802.1x Authentication Authentication

IEEE 802.3ad Link Aggregation Link Aggregation

IEEE 802.3x Flow Control Flow Control

IEEE 802.3 Ethernet Ethernet

IEEE 802.3u Fast Ethernet Fast Ethernet

IEEE 802.3z Gigabit Ethernet Gigabit Ethernet

RFC 768 UDP User Datagram Protocol

RFC 791 IP Internet Protocol

RFC 792 ICMP Internet Control Message Protocol

RFC 793 TCP Transmission Control Protocol

RFC 826 ARP Address Resolution Protocol

RFC 854 Telnet Client & Server Telnet Client & Server

RFC 904 Exterior Gateway Protocol Formal Specifi- cation Exterior Gateway Protocol

RFC 1027 Using ARP to Implement Transparent Subnet Gateways Proxy ARP

RFC 1058 RIP Routing Information Protocol

RFC 1059, 1119 NTPv1/2 Network Time Protocol v1 and v2

RFC 1112 IGMP Host Extensions for IP Multicasting

RFC 1191 Path MTU Discovery Path MTU Discovery

RFC 1256 ICMP Router discovery protocol ICMP Router Discovery Protocol

RFC 1267 A Border Gateway Protocol 3 (BGP-3) Border Gateway Protocol

RFC 1388 RIP Version 2 Carrying Additional Infor- mation Routing Information Protocolv2

RFC 1519 CIDR (Classless Inter-domain Routing)Classless Inter-Domain Routing

RFC 1587 OSPF NSSA OSPF

The TNM4000 rack-mount 28-port Layer-2 industrial switch is widely used in transportation, energy and industrial control. All models share a unified OS for a future-oriented standardized architecture that improves utilization through consistent operations. Beyond stable, reliable, secure high-performance services, it offers flow analysis, policy-based QoS and controllable multicast optimization, with high bandwidth, VLAN support and easy maintenance for large industrial networks.

RFC 1812 Requirements for IP Version 4 Routers Requirements for IP Version 4 Routers

RFC 1994 PPP Challenge Handshake Authentica- tion Protocol (CHAP) Challenge Handshake Authentication Protocol

RFC 2068 HTTP Hypertext Transfer Protocol

RFC 213 DHCP Server DHCP Server

RFC 2138 RADIUS Remote Authentication Dial-In User Service

RFC 2139 RADIUS Accounting RADIUS Accounting

RFC 2236 IGMPv2 IGMPv2

RFC 2328 OSPF V2 OSPF v2

RFC 2338 VRRP Virtual Router Redundancy Protocol

RFC 2362 PIM-SM/DM PIM Sparse/Dense Mode

RFC 2370 The OSPF Opaque LSA Option OSPF Opaque LSA Option

RFC 2474 DiffServ Precedence

RFC 2475 DiffServ Core and Edge Router Func- tions

RFC 2597 DiffServ Assured Forwarding

RFC 2598 DiffServ Expedited Forwarding

RFC 2644 Directed Broadcasts Directed Broadcasts

RFC 3046 DHCP Relay Agent Information Option DHCP Relay Agent Information Option

RFC 3222 Forwarding Information Base (FIB) Forwarding Information Base

GMRP GARP Multicast Registration Protocol

GVRP GARP VLAN Registration Protocol

SSH2 Secure Shell 2

IGMP snooping IGMP snooping

SNMPv3 SNMPv3

TCC4100 railway onboard industrial switch

  • Hardware Performance -

    Backplane bandwidth 68Gbps
    Processor333MHz RISC
    Switching TechnologyASIC-based store-and-forward
    MAC address table16K
    Packet buffer4Mbit
    switching rate148,800 pps/FE port; 1,488,000 pps/GE port
  • Software Features +

    Management MethodsBrowser, Serial, STD-17 MIB-II, STD-58 SMIv2, STD-59 RMON, STD-62 SNMPv3, SNMPv2c, SNMPv1, RFC2925 Ping MIB, MRD Private MIBs
    DiagnosticsLEDs, log files, relay, RMON, port mirroring, TRAP
    RedundancyMRD-Ring® , MSTP, RSTP, link aggregation
    time synchronizationSNTP
    Other4K VLANS, IPv4/IPv6 multicast , storm control, MC/BC protection, Supports Jumbo Frame
  • Physical Performance +

    MTBFOver 600,000 hours
    storage temperature-40℃ ~ 85℃
    Operating temperature-40℃ ~ 85℃ (non-PoE models)
    Humidity5% ~ 95%, non-condensing
    MSM 2-port unmanaged card-type industrial fiber transceiver: 1 fixed optical (single-mode, 40 km, SC) + 1×10/100BaseT. Operating temperature -40°C~+75°C.440mm ×44.2mm ×200mm
    protection ratingIP41
    Weight2.5 kg (max)
    TCC4100 railway onboard industrial switch
  • Mechanical Characteristics +

    VibrationIEC 60068-2-6
    ShockIEC 60068-2-27
    Free fallIEC 60068-2-31
    PCBCompliant with IPC standards
  • Electromagnetic Characteristics +

    EMI radiationFCC 47 CFR Part 15 Class A
    EN55032 Class A
    EMCIEC(EN)61000-4-2, Level 4
    IEC(EN)61000-4-3, Level 4
    IEC(EN)61000-4-4, Level 4
    IEC(EN)61000-4-5, Level 4
    IEC(EN)61000-4-6, Level 4
    IEC(EN)61000-4-9, Level 4
  • Industry Certification & Testing +

    Product SafetyCE
    IEC/EN60950-1
    FCC Part 15 Subpart B Class A
    hazardous areaUL121201 (certification in progress)
    transportation industryJT/T817-2011
    rail industryEN50155; IEC/EN61373; EN50121; EN45545
    power industryIEC61850-3
    IEEE1613(C37.90.x)
    industrial control industryUL/cUL61010
    shipbuilding industryDNV-GL (certification in progress)
    TCC4100 railway onboard industrial switch

Dimensions

DimensionsDimensions

Accessories

ModelProduct Specification
TCC4100-EHR0008Layer-3 enhanced IP41 fully sealed 1U rack-mount (19-inch capable): 8 FE M12. Industrial isolated power (110VDC/220VAC).
TCC4100-EHR000GLayer-3 enhanced IP41 fully sealed 1U rack-mount (19-inch capable): 16 FE M12. Industrial isolated power (110VDC/220VAC).
TCC4100-EHR004CLayer-3 enhanced IP41 fully sealed 1U rack-mount (19-inch capable): 4 Gigabit 8-pin A-Code M12 + 12 FE 4-pin D-Code M12. Industrial isolated power (110VDC/220VAC).
TCC4100-EHR0008P130Layer-3 enhanced IP41 fully sealed 1U rack-mount (19-inch capable): 8 FE M12 (PoE/PoE+ with built-in 130W PoE PSU). Industrial isolated power (110VDC/220VAC).
TCC4100-EHR000GP130Layer-3 enhanced IP41 fully sealed 1U rack-mount (19-inch capable): 16 FE M12 (PoE/PoE+ with built-in 130W PoE PSU). Industrial isolated power (110VDC/220VAC).
TCC4100-EHR004CP130Layer-3 enhanced IP41 fully sealed 1U rack-mount (19-inch capable): 4 Gigabit 8-pin A-Code M12 + 12 FE 4-pin D-Code M12 (PoE/PoE+ with built-in 130W PoE PSU). Industrial isolated power (110VDC/220VAC).

Copyright 2026 MRD Co LTD . All Rights Reserved Shanghai ICP No.12035199

Top

Get a Quote

Leave your details and we will provide a quotation for this product.

Download

Leave your details. After successful submission, you can download the materials.