Cisco IR1101-K9 là thiết bị định tuyến tích hợp dịch vụ được thiết kế đặc biệt cho môi trường công nghiệp, nơi yêu cầu cao về độ bền, tính linh hoạt trong triển khai và khả năng kết nối đa dạng. Với kích thước nhỏ gọn, khả năng mở rộng phần cứng và hỗ trợ mạng di động LTE, thiết bị này là lựa chọn lý tưởng cho các ứng dụng IoT phân tán, thành phố thông minh, giao thông thông minh, và năng lượng.

Đặc điểm nổi bật của Cisco IR1101-K9
- Cổng WAN Gigabit Ethernet RJ45/SFP, phù hợp cả cho môi trường cáp đồng truyền thống lẫn nơi cần tốc độ cao, khoảng cách xa bằng quang.
- Cổng LAN Fast Ethernet RJ45, đủ cho các kết nối thiết bị công nghiệp như camera IP, bộ điều khiển, gateway cảm biến.
- Mini-USB console, dùng để cấu hình thiết bị qua CLI, kết nối với laptop, hoạt động như cổng console thông thường.
- Modular nâng cấp LTE/5G, slot dành cho các module như CAT6 LTE Advanced, CAT4, CAT7 hoặc 5G NSA/SA.
- Nguồn DC rộng, từ 9.6 đến 60 V DC cho khả năng linh hoạt cao trong tích hợp.
- Access Control Lists và Control Plane Policing, giúp lọc lưu lượng và bảo vệ thiết bị khỏi các cuộc tấn công DoS hoặc truy cập không hợp lệ.
- VPN phổ biến như IPsec, DMVPN và FlexVPN, với thuật toán mã hóa hiện đại như AES-256 và SHA-2, đảm bảo bảo mật tối ưu cho các kết nối.
- Tường lửa Zone-Based Firewall, giúp phân vùng mạng và kiểm soát truy cập giữa các vùng, giảm nguy cơ tấn công và truy cập trái phép.
Router Cisco IR1101-K9 là giải pháp lý tưởng cho các hệ thống đòi hỏi độ bền cao, an ninh, và khả năng kết nối linh hoạt qua nhiều phương tiện: Ethernet, LTE/5G,… Với kiến trúc modular, OS XE mạnh mẽ và chính sách bảo hành dài hạn, IR1101‑K9 giúp bạn triển khai nhanh chóng, quản lý dễ dàng và mở rộng theo nhu cầu, từ giám sát cảm biến, điều khiển từ xa đến vệ tinh ngành công nghiệp IoT.
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Rút gọn
| Model | IR1101-K9 | |
| Description | Cisco Catalyst IR1101 Rugged Series Router with SL-IR1101-NE software license | |
| Management | SKU | Description |
| Cisco IoT Field Network Director (FND) for hosting on premises |
IOTFND-SOFTWARE-K9 | FND Top Level Subscription |
| IOT-IRDNA | IoT FND License for Managing IR1101 Router | |
| Cisco Catalyst Center | IOTFND-IR1100 | Cisco IoT DNA-C Subscription License for IR1101 |
| FirstNet Bundle | Hardware PID | Cloud manager (subscription PID) |
| Expansion Module | Description | |
| IRM-1100-SPMI | Expansion module for dual active LTE, local storage for applications, SFP and input/output ports | |
| IRM-1100-SP | Expansion module for dual active LTE and SFP | |
| IRM-1100-4A2T4 | Serial and Ethernet Expansion Module for Asynchronous Serial and GE interfaces | |
| Softwware license | Description | |
| SL-IR1101-NE(default) | Network Essentials for core routing and security features | |
| SL-IR1101-NA | Network Advantage for advanced routing and app-based policy management | |
| SL-IR1101-NE-NPE | Network Essentials tied for No Payload Encryption software | |
| SL-IR1101-NA-NPE | Network Advantage for No Payload Encryption software | |
| Features | Benefits | |
| IOT enablement | ||
| Lightweight, compact, modular, and ruggedized form factor | Designed for tight installation inside cabinets. All the Input/Output (I/O) ports and connectors are located on the front panel for easy wiring inside cabinets | |
| No additional power supply for the expansion module | Easily add an expansion module without requiring an additional power input | |
| Raw socket transport and SCADA | The raw socket can be used to transport SCADA data from RTUs. This method is an alternative to the Block Serial Tunnel (BSTUN) protocol. The Cisco IR1101 also supports DNP3 serial–to–DNP3/IP and IEC 60870 T101–to–IEC 60870 T104 protocol translations, serving as a SCADA gateway | |
| Multiple mounting options | Floor or wall mounting and DIN rail mounting in horizontal or vertical orientations | |
| Increased performance to run concurrent services | The multi-core processor architecture allows businesses to take advantage of network-supported speeds | |
| Multiple WAN and LAN connections | ||
| Four fast Ethernet interfaces | ● Allows multiple Ethernet devices (sensors, Remote Terminal Unit [RTU], PLCs) in anindustrial environment to connect for visibility and management of assets | |
| ● IEEE 802.1Q VLANs | ||
| ● Layer 3 support through VLAN interfaces | ||
| ● 4KV isolation for Electrostatic Discharge (ESD) protection | ||
| WAN diversity | ● Multiple WAN links for high reliability: Gigabit Ethernet layer 3 SFP (copper and fiber)and 4G LTE/5G provides WAN diversity and business continuity | |
| ●Gigabit Ethernet WAN interface can be configured for layer 3 routing or layer 2 switching | ||
| Dual active LTE interfaces | Concurrent connectivity to two cellular networks for high reliability, load balancing, and differentiated services | |
| Serial interface | A RS-232 asynchronous serial interface (RJ45 DTE) can be used with raw socket, protocol translation, and connections to locate Remote Terminal Unit (RTU), sensors, and PLCs for SCADA transport and management. | |
| Transparent roaming between wireless networks | ||
| Dual Subscriber-IdentityModule (SIM) over cellular | Provides active and backup connectivity for high reliability over LTE and HSPA networks | |
| Cisco IOS® mobile IP | ● Transparent roaming for mobile networks, enabling mission-critical applications to stay connected, even when moving between networks | |
| ● The assigned IP addresses to the home network are maintained in private and public networks | ||
| ● Supports Proxy Mobile IP (PMIPv6) and Network Mobility (NEMO) | ||
| Cellular fallback | Multiple technologies (5G, 4G LTE, 3G, and 2G) are available to support connectivity to the best one available. 2G fallback is not supported in North America. | |
| Software | ||
| Cisco IOS XE | Designed to enable businesses to deploy services more quickly with lower TCO and complexity. | |
| ● Openness and programmability: Standards-based programmable interfaces enableprocess and workflow automation. NETCONF, RESTCONF, IETF YANG, Pythonscripting, and custom libraries enable automation of event-based workflows | ||
| ● Secure: Multi-level, end-to-end security and trust are built in. The built-in CiscoNext Generation Encryption and Quantum Computing Resistant algorithms areexpected to meet security and scalability requirements for the next two decades | ||
| ● Modular: Enables patching of software bug fixes and graceful insertion and removal of software modules for ease of maintenance | ||
| ● Common software stack: Reduces business and network complexity whilemanaging an array of Cisco devices | ||
| Network management solutions | ||
| Operational phase | Application | Description |
| Device staging and configuration for a few routers | Cisco WebUI | ● A GUI-based device-management tool that simplifies provisioning of devices for a small-scale deployment through easy-to-use wizards. |
| Deploy, manage, monitor, and maintain IoT routers and assets at scale | Cisco IoT Field Network Director (FND) for hosting on premises | ● Rapid scaling - zero-touch deployment and secure enrollment for tens of thousands of gateways |
| ● Enhanced security – role-based access and user audit trail and secure communications for data transport across networks, VPN tunnels, geo-fencing, alerts, and notifications for data and physical security | ||
| ● Increased reliability – reliable communications over cellular or Ethernet networks, lifecycle management, and 24/7 real-time monitoring and alerts | ||
| Embedded management capabilities | ||
| Cisco IOS Embedded Event Manager (EEM) | A distributed and customized approach to event detection and recovery. Provides the ability to monitor events and take corrective or any other desired action when the monitored events, such as a high or low threshold, occur. | |
| Cisco IOS XE IP ServiceLevel Agreements (IP-SLA) | Helps assure the performance of new, business-critical IP applications as well as IP services by actively monitoring and reliably reporting traffic statistics such as jitter, response time, packet loss, and connectivity. | |
| Simple Network Management Protocol (SNMP), Syslog, NetFlow | Open-standards-based network monitoring and accounting tools, such as SNMP for 3G, 4G and, provide a common management platform for many different devices. | |
| LTE network management and diagnostics | A dedicated diagnostic port on a cellular module enables logging of data during debugging sessions that can be analyzed by industry-standard tools such as Qualcomm CDMA Air Interface Tester (CAIT) and Spirent Universal Diagnostic Monitor (UDM). | |
| Cisco IOS XE Software Features on the IR1101 | ||
| Cisco IOS Software requirements | ● Cisco IOS XE Software: Universal Cisco IOS Software image | |
| ● Cisco IOS XE Software Release 16.10.1 or later | ||
| IPv4 and IPv6 services features |
● Routing Information Protocol Versions 1 and 2 (RIPv1 and RIPv2) | |
| ● Generic Routing Encapsulation (GRE) and Multipoint GRE (MGRE) | ||
| ● Standard 802.1d Spanning Tree Protocol (STP) | ||
| ● Network Address Translation (NAT) | ||
| ● Dynamic Host Configuration Protocol (DHCP) server, relay, and client | ||
| ● Dynamic Host Configuration Protocol (DHCP) server, relay, and client | ||
| ● Dynamic DNS | ||
| ● DNS Proxy and DNS Spoofing | ||
| ● Access Control Lists (ACLs) | ||
| ● IPv4 and IPv6 multicast | ||
| ● IP Service-Level Agreement (IP SLA) | ||
| ● Open Shortest Path First (OSPFv2 and OSPFv3) | ||
| ● Border Gateway Protocol (BGP) | ||
| ● Enhanced Interior Gateway Routing Protocol (EIGRP) | ||
| ● Virtual Route Forwarding (VRF) Lite | ||
| ● Next Hop Resolution Protocol (NHRP) | ||
| ● Serial data encapsulation and relay | ||
| ● L2TPv3 over sub-interfaces and VLAN | ||
| Security features | Secure connectivity: | |
| ● Secure Sockets Layer (SSL) VPN for secure remote access | ||
| ● Hardware-accelerated encryption with minimal impact to system performance | ||
| ● Next Generation Encryption (NGE) and Quantum Computing Resistant (QCR) algorithms such as AES-256, SHA-384, and SHA-512 | ||
| ● Public-Key-Infrastructure (PKI) support | ||
| ● IPsec tunnels | ||
| ● NAT transparency | ||
| ● Dynamic Multipoint VPN (DMVPN) | ||
| ● Tunnel-less Group Encrypted Transport VPN | ||
| ● Flex VPN | ||
| ● IPsec stateful failover | ||
| ● VRF-aware IPsec | ||
| ● IPsec over IPv6 | ||
| Cisco IOS-XE Application Aware Firewall: | ||
| ● Zone-based policy firewall | ||
| ● VRF-aware stateful inspection routing firewall | ||
| ● Stateful inspection transparent firewall | ||
| ● Advanced application inspection and control | ||
| ● Secure HTTPS, FTP, and Telnet Authentication Proxy | ||
| ● Dynamic and static port security | ||
| ● Firewall stateful failover | ||
| ● VRF-aware firewall | ||
| Integrated Threat Control: | ||
| ● Control-plane policing | ||
| ● Flexible packet matching | ||
| ● Network foundation protection | ||
| Quality of Service (QoS) | ● Provides LTE QoS with support for up to 8 concurrent bearers on each cellular WAN interface for traffic classification and prioritization |
|
| ● Provides traffic precedence to delay-sensitive and mission-critical services | ||
| ● Facilitates low-latency routing of delay-sensitive industrial applications | ||
| ● Supported on all LAN and WAN interfaces, including cellular | ||
| ● Low-Latency Queuing (LLQ) | ||
| ● Weighted Fair Queuing (WFQ) | ||
| ● Class-Based WFQ (CBWFQ) | ||
| ● Class-Based Traffic Shaping (CBTS) | ||
| ● Class-Based Traffic Policing (CBTP) | ||
| ● Policy-Based Routing (PBR) | ||
| ● Class-Based QoS MIB | ||
| ● Class of Service (CoS)-to-Differentiated Services Code Point (DSCP) mapping | ||
| ● Class-Based Weighted Random Early Detection (CBWRED) | ||
| ● Resource Reservation Protocol (RSVP) | ||
| ● Real-Time Transport Protocol (RTP) header compression (cRTP) | ||
| ● Differentiated Services (DiffServ) | ||
| ● QoS preclassify and prefragmentation | ||
| ● Hierarchical QoS (HQoS) | ||
| High-availability features | ● Dual active LTE backhaul with expansion module | |
| ● Virtual Router Redundancy Protocol (VRRP) (RFC 2338) | ||
| ● Hot Standby Router Protocol (HSRP) | ||
| ● Dual SIM support on the LTE module for cellular failover | ||
| IPv6 features | ● IPv6 addressing architecture | |
| ● IPv6 unicast and multicast forwarding | ||
| ● IPv6 ACLs | ||
| ● IPv6 over cellular | ||
| ● IPv6 routing | ||
| ● IPv6 domain name resolution | ||
| Feature | Specification | |
| Memory | ||
| Default and maximum DRAM | 4 GB | |
| Default and maximum Flash memory |
4 GB (usable) | |
| Ingress protection rating | IP30 | |
| Physical characteristics | ||
| Physical dimensions (H x W x D) Chassis |
2.36 in. x 5.22 in. x 4.92 in. (60 x 132.5 x 124.9 mm) | |
| Expansion Module (IRM-1100-SP or IRM-1100-SPMI) | 1.3 in. x 5.2 in. x 4.9 in. (33 x 132 x 124 mm) | |
| Expansion Module (IRM-11004A2T) | 0.9 in. x 5.2 in. x 4.9 in. (23 x 132 x 124 mm) | |
| Weight | ||
| Chassis | 2.25 lbs (1.02 kg) | |
| Expansion Module | ||
| IRM-1100-SPMI: | 1.65 lbs (0.75 kg) | |
| IRM-1100-SP: | 1.45 lbs (0.66 kg) | |
| IRM-1100-4A2T: | 0.94 lbs (0.43 kg) | |
| Mounting options | Panel, wall, and din rail (vertical and horizontal) mount | |
| Power specifications | Nominal voltage: +/-12V to +/-48V DC | |
| Minimum and maximum input voltage: 9.6-60V DC | ||
| Maximum and minimum input current: 1.24A (9.6V DC) and 0.26A (60V DC) | ||
| Power consumption | At idle: 6.6W | |
| Typical: 9.8W | ||
| Maximum: 12W | ||
| Additional 10W (typical) with expansion module and 2nd cellular | ||
| Interfaces on the base platform | ||
| Console | Mini type-B USB | |
| WAN interfaces | ● Combo 10/100/1000 Gigabit Ethernet port (RJ45 and SFP) on the base platform | |
| ● An additional 10/100/1000 Gigabit Ethernet SFP on the expansion module. | ||
| ● 5G/LTE: Modular with options for single and dual active LTE and LTE-Advanced | ||
| LAN interfaces | ● Four 10/100BASE-T Fast Ethernet ports | |
| Input and output | ● ALARM input port | |
| Interfaces on Serial and Ethernet Expansion Module | ||
| Serial Interfaces | ● 4 x Isolated asynchronous serial ports (RS232/RS485/RS422)(DCE) | |
| Ethernet Interfaces | ● 2 x GE RJ45 LAN ports on serial expansion module | |
| LEDs | ● System OK | |
| ● Link for Ethernet WAN ports | ||
| ● VPN | ||
| ● Tricolor user-configurable LED | ||
| ● ALARM | ||
| Serial interface | ● Isolated RS-232 RJ45 DTE port | |
| ● Support for asynchronous mode with speeds up to 115,200 baud | ||
| Serial protocols | SCADA, DNP3, T101-104, Raw Socket TCP, and UDP | |
| Environmental characteristics | ||
| Environmental operating temperature range |
–40 to 140°F (–40 to 60°C) in a sealed NEMA cabinet with no airflow | |
| –40 to 158°F (–40 to 70°C) in a vented cabinet with 40 Linear Feet per Minute (LFM) of air | ||
| –40 to 167°F (–40 to 75°C) in a forced air enclosure with 200 LFM of air | ||
| Type tested at 85°C for 16 hours | ||
| Operating altitude | 40°C up to 13,800 ft (operating) per IEC 68-2-41 | |
| Non-operating temperature | –40 to 185°F (–40 to 85°C) | |
| Non-operating shock and vibration | ● 50-60G (3.76 m/s minimum) | |
| ● 3-500Hz at 1.12 GRMS (BP at 10 and 100 Hz) | ||
| Standard safety certifications | ● UL 60950-1, 2nd edition | |
| ● CAN/CSA C22.2 No. 60950-1, 2nd edition | ||
| ● EN 60950-1, 2nd edition | ||
| ● CB to IEC 60950-1, 2nd edition with all group differences and national deviations | ||
| Hazardous locations standards | ● ANSI/ISA 12.12.01 (Class 1, Div 2 A-D) | |
| ● CSA 213 (Class 1, Div 2 A-D) | ||
| ● IEC 60079-0 and -15 IECEx test report (Class I, Zone 2, gas groups IIC) | ||
| ● EN 60079-0 and -15 ATEX certification (Class I, Zone 2, gas groups IIC) | ||
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