CBW151AXM-Q-JP: Why Is This Cisco Access Poin
Key Features of the CBW151AXM-Q-JP The Cisco CBW1...
The Cisco ESR-6300-CON-K9= is a ruggedized control module designed for Cisco’s Industrial Ethernet 4000 Series routers, specifically optimized for mission-critical deployments in extreme temperatures (-40°C to 75°C) and high-vibration environments. Key features include:
In oil/gas field deployments, the ESR-6300-CON-K9= supports SD-WAN with 350Mbps encrypted throughput (upgradeable via license), enabling real-time telemetry data transmission from remote drilling sites to centralized SCADA systems. Cisco’s field tests showed <1ms jitter during 72-hour operations at 70°C ambient temperatures.
The module’s IEEE 1588v2 Precision Time Protocol (PTP) synchronization ensures ±500ns timing accuracy for V2X communication networks, critical for coordinating LiDAR/radar sensors in smart transportation systems.
Feature | ESR-6300-CON-K9= | Consumer Routers |
---|---|---|
Firmware Integrity | Hardware-rooted TAM | Software-only validation |
Encryption Acceleration | Dedicated ASIC (IPsec/VPN) | CPU-based processing |
Threat Detection | Real-time MACsec monitoring | Basic SPI firewall |
Three throughput licenses define operational capabilities:
! Enable SD-WAN with hardware encryption
configure terminal
platform hardware crypto-engine enable
sdwan
interface Tunnel0
tunnel protection ipsec profile ESR6300-IPSEC
If throughput falls below licensed limits:
show license throughput
show platform hardware temperature
Generic control modules lack:
For guaranteed compatibility, purchase the ESR-6300-CON-K9= from itmall.sale’s Cisco industrial networking portfolio.
The ESR-6300-CON-K9= isn’t merely a router component – it’s the operational backbone for industries where network downtime costs exceed 500K/hour.Whileits500K/hour. While its 500K/hour.Whileits8,500 price point may deter budget-focused projects, the combination of military-grade resilience and Cisco’s end-to-end security framework makes it indispensable for modern industrial automation. As 5G-driven edge computing evolves, this module’s ability to handle encrypted multi-gigabit workloads positions it as a long-term infrastructure investment rather than a disposable commodity.