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 Product >> Cisco >> ALL
 
Product_Id:
72815573416
ProductName:
SPA-8CHOC12
Specification:
Product Notes:
Product Category:
Cisco
 
   Product Description

Cisco SPA-8XCHOC12/DS0 (Market Name: SPA-8CHOC12) Full Official Technical Specification

1. Product Overview

Official Full Designation

Cisco SPA-8CHOC12 (market shorthand; formal part number:SPA-8XCHOC12/DS0):
Cisco Double-Height 8-Port Channelized OC-12c / STM-4 Shared Port Adapter built on Cisco I-Flex modular SPA/SIP architecture for ultra-high-density service provider mobile backhaul and multi-service aggregation routing platforms. Equipped with eight independent hot-swappable SFP optical transceiver slots for channelized SONET/SDH transport, supporting full hierarchical channelization of each OC-12 payload down to individual DS0 64Kbps time slots. The SPA delivers native TDM circuit emulation (CESoPSN/SAToP), ATM, Frame Relay, and POS packet transport simultaneously on separate logical sub-channels, optimized for 2G/3G/4G/5G mobile radio backhaul, traditional leased-line migration, enterprise PBX voice interconnection, multi-service carrier access aggregation and converged voice, video and data edge network deployments.

Core Product Definition

The Cisco SPA-8XCHOC12/DS0 is a double-height I-Flex Shared Port Adapter designed to work with Cisco SPA Interface Processors (SIPs) on high-end service provider and enterprise routing chassis, with primary deployment on Cisco ASR 9000 Series aggregation routers. It features eight independent SFP slots compatible with all Cisco-certified OC-12 optical transceivers (short-reach SR, intermediate-reach IR, long-reach LR single-mode fiber optics, optical transmission distance ranging from 2km up to 80km).
Unlike non-channelized OC-12 POS SPAs, this SPA is purpose-built for high-density eight-port channelized SONET operation. Each physical OC-12 port supports complete hierarchical channelization: every OC-12 can be logically split into four OC-3 groups, each OC-3 further divided into 28 T1s or 21 E1s, and each T1/E1 can be broken down into individual DS0 64 kbps voice/data time slots.
Each port supports multiple isolated transport modes on separate logical sub-interfaces:
  1. Channelized TDM circuit emulation over packet (CESoPSN, SAToP)
  2. ATM cell switching over SONET (AAL1/AAL2/AAL5)
  3. Frame Relay over channelized sub-interfaces
  4. Standard Packet over SONET (POS) for pure IPv4/IPv6 and MPLS backbone trunking
All TDM framing overhead processing, channel mapping, timeslot cross-connect, ATM segmentation/reassembly (SAR), Frame Relay LMI and POS HDLC/PPP encapsulation are fully hardware offloaded by the SPA’s dedicated SONET framer and multi-service FPGA chipset. It eliminates CPU-intensive TDM and packet processing burdens on the host route processor, maintaining stable control-plane performance even under full OC-12 line-rate mixed multi-service traffic load across all eight ports simultaneously.
Full Online Insertion and Removal (OIR) capability is supported for the entire SPA card and all hot-swappable SFP optical modules, enabling non-disruptive live maintenance on production carrier access networks. The modular I-Flex SPA/SIP architecture allows network designers to mix and match eight-port channelized OC-12 SPAs, four-port channelized OC-12 SPAs, dual-port channelized OC-12 SPAs, single-port channelized OC-12 SPAs, non-channelized POS SPAs, Gigabit Ethernet SPAs, ATM SPAs and serial T3/E3 SPAs on a single SIP interface processor for fully customized multi-service aggregation chassis configurations.

SKU Naming Breakdown

  1. SPA: Shared Port Adapter, Cisco I-Flex modular expansion interface architecture
  2. 8XCHOC12: 8 = eight independent physical ports; CH = Channelized; OC12 = OC-12 (622.08 Mbps SONET) optical interface
  3. /DS0: Designates full DS0 granular channelization support down to individual 64Kbps voice/data time slots
  4. Standard spare suffix = : SPA-8XCHOC12/DS0= for factory-new standalone spare units
  5. Cisco Refresh refurbished variant suffix -RF: SPA-8XCHOC12/DS0-RF

Product Lifecycle Notice

  • Global official release year: 2015
  • End-of-Sale (EoS) Status: Discontinued hardware; Cisco permanently ceased new production of SPA-8XCHOC12/DS0
  • Direct upgrade replacement hardware: Next-generation high-density multi-port channelized OC-12 SPA series, SPA-1CHOC48 channelized OC-48 SPA
  • Minimum required operating system versions:
    IOS-XR 4.2 for Cisco ASR 9000 Series aggregation routers (primary deployment platform)
    IOS 12.2(33)SR for Cisco 7600 / Catalyst 6500 Series routers/switches
    IOS-XE 3.10S for Cisco ASR 1000 Series aggregation routers
    IOS-XR 4.2 for CRS Carrier Routing Systems and XR 12000 Series backbone routers
  • Software maintenance policy: Only critical security vulnerability patches will be released for customers holding active Cisco SMARTnet or DNA Advantage service contracts; no new feature development will be implemented for this legacy channelized SPA
  • Legacy hardware status: End-of-life equipment; certified refurbished SPA modules, validated IOS/IOS-XE/IOS-XR firmware images and 24/7 priority Cisco TAC engineering support remain available through authorized global Cisco distribution partners

Supported Router & Switch Platform Compatibility

The SPA-8XCHOC12 eight-port channelized OC-12 SPA is compatible with all Cisco routing and switching chassis equipped with SIP Interface Processors supporting double-height SPA form factors. Supported platforms include:
  1. Cisco ASR 9000 Series High-Density Carrier Aggregation Routers (primary deployment platform)
  2. Cisco ASR 1000 Series Aggregation Services Routers (ASR1002-X, ASR1004, ASR1006, ASR1009-X)
  3. Cisco 7600 Series Service Routers and Catalyst 6500 Series Multilayer Switches (7600-SIP-400 / SIP-600 interface processors supporting double-height SPA slots)
  4. Cisco 7304 Series Modular Edge Routers
  5. Cisco 12000 / XR 12000 Series Internet Backbone Routers
  6. Cisco CRS Series Carrier Routing Systems

Key Deployment Restrictions

  1. OIR function prerequisites: Full zero-traffic-impact Online Insertion and Removal requires deployment of the minimum specified IOS/IOS-XE/IOS-XR software releases. Outdated firmware versions may trigger temporary TDM circuit outages, cell loss or packet drops during SPA or SFP hot-swap maintenance operations.
  2. Double-height form factor limitation: This SPA occupies one full double-height SPA bay on any compatible SIP card; it cannot coexist with half-height SPAs in the same dual slot group.
  3. SFP transceiver compatibility lock: Only Cisco factory-certified OC-12 SFP optical transceivers are fully validated, monitored and supported. Uncertified third-party generic SFP modules frequently cause link flapping, missing Digital Optical Monitoring (DOM) telemetry, SONET alarm misreporting and hardware incompatibility faults.
  4. SIP shared fabric bandwidth constraint: Multiple SPAs installed on a single SIP processor share the internal Multigigabit Fabric backplane bus bandwidth. Simultaneous full line-rate multi-service traffic across multiple SPAs on the same SIP may introduce minor forwarding latency under extreme peak aggregate load conditions.
  5. SONET framing standard compliance limitation: The SPA strictly adheres to ANSI T1.105, Telcordia GR-253 and ITU-T G.707 standards for OC-12c concatenated SONET / STM-4 SDH framing. It cannot be configured for non-concatenated channelized SONET operation.
  6. Multi-service sub-channel separation rule: TDM CESoPSN/SAToP, ATM, Frame Relay and POS sub-interfaces are logically isolated and cannot share identical SONET payload timeslot resources simultaneously.

Standard Factory Complete Package Contents

Each factory-sealed SPA-8XCHOC12/DS0 retail or spare hardware kit contains all components required for chassis installation:
  1. SPA-8XCHOC12/DS0 double-height eight-port channelized OC-12 Shared Port Adapter main circuit card
  2. Anti-static ESD protective storage bag and custom shock-absorbent foam internal packaging
  3. Hardware quick-start installation guide covering ESD electrostatic discharge prevention procedures, SIP slot OIR insertion/removal workflows, SFP transceiver installation best practices, IOS/IOS-XE/IOS-XR channelized SONET sub-interface configuration command reference examples
  4. Global product regulatory compliance, electrical safety, electromagnetic interference (EMI) and laser safety certification documentation packet

Core Integrated Functional Capabilities

  1. Eight Independent Hot-Swappable SFP Channelized OC-12c / STM-4 Multi-Service Ports
    The SPA provides eight physical 622.08 Mbps OC-12 SONET / STM-4 SDH optical ports via field-replaceable SFP transceiver slots, fully compliant with ANSI T1.105 SONET and ITU-T G.707 SDH concatenated framing standards. Each port operates independently with separate clocking, protection switching and error monitoring logic.
    Key channelization features per port:
  • OC-12 split into four independent OC-3 logical groups
  • Each OC-3 supports 28 T1 (1.544 Mbps) or 21 E1 (2.048 Mbps) sub-channels
  • Each T1/E1 further divided into 24/30 DS0 timeslots for granular voice/data circuit cross-connect
    Multi-service transport modes supported on separate logical sub-channels per port:
  • SAToP / CESoPSN TDM circuit emulation over IP/MPLS packet networks for mobile backhaul and leased line replacement
  • ATM cell mode with full SAR segmentation and reassembly, supporting ATM PVC/SVC, AAL1/AAL2/AAL5 service adaptation layers
  • Frame Relay mode with LMI signaling, PVC mapping, CIR/EIR bandwidth policing for legacy enterprise data circuits
  • Standard POS Packet over SONET mode for pure IPv4/IPv6 and MPLS backbone trunking
    All compatible SFP optical modules support real-time Digital Optical Monitoring (DOM) telemetry, which tracks transmit optical power, receive optical power, laser bias current and internal transceiver operating temperature, viewable through IOS CLI and SNMP network monitoring tools.
    Each port supports 1+1 SONET Automatic Protection Switching (APS) linear protection switching and SDH MSP multiplex section protection for carrier-grade network fault resiliency. It also provides local internal diagnostic loopback and line-side SONET loopback testing functions for rapid circuit fault isolation.
  1. Full Line-Rate Hardware Offloaded Multi-Service Processing
    Dedicated on-board SONET channelized framer and multi-service multi-channel packet processing FPGA fully offloads all workloads from the host router’s main route processor CPU for all eight ports simultaneously, including:
  • SONET section/line/path overhead byte processing and B1/B2/B3 parity error calculation
  • Hierarchical OC-12 → OC-3 → T1/E1 → DS0 timeslot mapping and cross-connect switching
  • SAToP/CESoPSN TDM packet encapsulation, jitter buffer management, clock recovery for synchronous voice circuits
  • ATM AAL1/AAL2/AAL5 SAR cell segmentation and reassembly, ATM traffic shaping and policing
  • Frame Relay frame encapsulation, LMI signaling processing, PVC bandwidth policing
  • POS HDLC/PPP framing, IP header checksum calculation, HDLC FCS generation and verification
  • Multi-level MPLS label stack insertion and stripping, IPv4/IPv6 routing lookup
    The FPGA sustains full non-oversubscribed 622.08 Mbps bidirectional line-rate multi-service mixed traffic processing on each port with zero packet/cell/TDM frame loss under maximum simultaneous full-load sub-channel traffic conditions across all eight ports.
  1. Comprehensive SONET/SDH Channelized Transport & TDM Feature Suite
    Native hardware and software feature support for carrier-grade channelized SONET multi-service access deployments:
    OC-12c concatenated framing, complete SONET overhead processing (section, line, path overhead), B1/B2/B3 error parity counting, signal degrade (SD-BER) and signal fail (SF-BER) threshold monitoring, J1 path trace byte processing, C2 payload signal label validation, local diagnostic loopback and line network loopback modes, HDLC keepalive, PPP PAP/CHAP authentication.
    Full SONET alarm real-time monitoring metrics: LoS Loss of Signal, LoF Loss of Frame, PLOP Loss of Pointer, PPLOM Path Payload Mismatch, PUNEQ Unequipped Path, PRDI/PREI Remote Defect Indicators, BER threshold violation alarms.
    T1/E1/DS0 granular features: SF/ESF T1 framing, ANSI T1.403 FDL, independent internal/loop clocking per tributary, BERT testing, multi-layer loopback capabilities, 24-hour historical error and alarm statistics logging.
  2. Advanced Layer 2, Layer 3 & MPLS Carrier-Grade Service Features
    Fully integrated enterprise and service provider routing and packet transport capabilities: static and dynamic IP routing protocols (BGP, OSPF, EIGRP, IS-IS), policy-based routing (PBR), NAT address translation, EoMPLS Ethernet over MPLS pseudowires, VPLS virtual private LAN service, MPLS traffic engineering (TE) and segment routing. The SPA supports up to 5000 source/destination MAC accounting entries for ingress and egress traffic metering per SPA hardware module.
  3. Hardware-Accelerated Hierarchical QoS Traffic Management
    On-board dedicated multi-queue QoS processing logic enables per-port, per-sub-channel, per-VLAN and per-flow traffic classification, marking, policing, shaping and priority queuing running at full line rate without host CPU involvement.
    Supported QoS mechanisms: 802.1p CoS marking, DSCP IP precedence marking, weighted fair queuing (WFQ), low-latency queuing (LLQ) for real-time VoIP and video streams, hierarchical traffic policing and shaping for service provider SLA bandwidth tier enforcement policies.
  4. Zero-Disruption Online Insertion and Removal (OIR) Hot-Swap Maintenance
    Complete OIR compliance supports hot-swap replacement of the entire SPA card within the SIP slot and individual SFP optical transceivers on the SPA front panel, with no requirement to power cycle the host router chassis. All other active SPA interfaces hosted on the same SIP processor continue forwarding traffic, transmitting TDM circuits and switching ATM cells without interruption during hot-swap maintenance procedures, eliminating lengthy planned maintenance windows for production multi-service carrier access networks.
  5. Unified IOS / IOS-XE / IOS-XR Single Pane CLI Management
    All SPA hardware configuration, eight-port channelized SONET sub-interface provisioning, multi-service transport mode setup, QoS and ACL policy deployment, real-time traffic throughput monitoring, fault troubleshooting and SFP DOM optical telemetry functions are fully managed through the host chassis’s native Cisco IOS, IOS-XE or IOS-XR command-line interface (CLI). Network operators can view SPA hardware operational status, per logical sub-channel SONET alarm state, bidirectional ingress/egress throughput statistics, packet/cell/TDM frame error counters, SFP DOM optical metrics and hardware fault alarms alongside all other router SIP/SPA interfaces within a single consistent unified management environment.
  6. Comprehensive Real-Time Diagnostics & Remote SNMP Monitoring Toolset
    Built-in IOS diagnostic utilities dedicated to eight-port channelized OC-12 multi-service port troubleshooting: real-time link up/down state reporting, bidirectional ingress/egress byte, packet, ATM cell and TDM frame traffic counters, granular error logging (CRC errors, HDLC frame drops, BER error events, policy discard packets, ATM cell loss, TDM slip buffer errors), per-flow traffic metering and SFP DOM optical link health monitoring.
    The SPA implements standard Cisco SPA/SONET interface SNMP MIBs (RFC 2558 SONET MIB, SAToP/CESoPSN pseudowire MIB, ATM MIB, Frame Relay MIB) for remote network monitoring. Automatic SNMP trap generation is triggered for critical port link failures, SONET alarm events, SPA hardware faults and SFP optical power threshold violation events.

2. Hardware & Performance Specifications

Core Eight Channelized OC-12 SFP Multi-Service Port Technical Specifications

SFP OC-12c/STM-4 Channelized SONET/SDH Multi-Service Interface

  • Industry Standard Compliance: ANSI T1.105, Telcordia GR-253-CORE, ITU-T G.707, RFC 1662, RFC 2615 POS over SONET, RFC 4553 SAToP, RFC 5086 CESoPSN, RFC 1483 ATM over SONET, RFC 1490 Frame Relay over SONET
  • Line Rate per Port: OC-12c concatenated SONET / STM-4 SDH, 622.08 Mbps bidirectional full-duplex wire speed physical port bandwidth
  • Supported Framing Modes: Channelized hierarchical SONET payload framing; POS packet framing; ATM cell framing; Frame Relay framing; TDM circuit emulation pseudowire framing
  • Compatible Transceiver Types: All Cisco certified OC-12 SFP optical modules (SR multimode short-reach, IR intermediate single-mode, LR long-reach single-mode fiber; optical transmission range from 2km to 80km)
  • Digital Optical Monitoring (DOM): Full real-time telemetry for transmit optical power, receive optical power, laser bias current, internal SFP operating temperature
  • Clock Synchronization: Full-duplex synchronous SONET clock recovery modes (network recovered loop timing or internal local timing; Stratum 3 clock accuracy ±4.6 ppm), independent clock domain per physical port
  • Loopback Test Modes: Internal SPA local diagnostic loopback, line-side SONET network loopback
  • Jumbo Frame Support: Maximum configurable MTU payload size of 9188 bytes for POS and pseudowire encapsulated IP packets
  • SONET Alarm Monitoring Set: LoS, LoF, SF-BER, SD-BER, J1 trace mismatch, C2 payload label mismatch, B1/B2/B3 parity errors, PLOP loss of pointer, PPLOM payload mismatch, PUNEQ unequipped path, PRDI/PREI remote defect indicators
  • Protection Switching Support: 1+1 APS SONET linear protection switching, SDH MSP multiplex section protection
  • Channelization Hierarchy per OC-12 Port:
    1 OC-12 = 4 × OC-3
    1 OC-3 = 28 × T1 / 21 × E1
    1 T1 = 24 × DS0; 1 E1 = 30 × DS0

Layer 2 / Layer 3 / TDM / ATM Forwarding Performance Metrics

  • Line Rate Throughput per Port: Full non-oversubscribed 622.08 Mbps bidirectional multi-service mixed traffic processing capacity, eight-port aggregate bandwidth up to 4.992 Gbps
  • MAC Accounting Entries: Up to 5000 source/destination MAC traffic metering entries per SPA card
  • Supported Packet Encapsulations: IPv4, IPv6, MPLS multi-depth label stacks, EoMPLS pseudowires, HDLC, PPP, ATM AAL1/AAL2/AAL5, Frame Relay, SAToP/CESoPSN TDM circuit emulation
  • QoS Queue Architecture: Per logical sub-channel multi-level egress priority queues with LLQ low-latency scheduling for real-time voice and video traffic

Front Panel LED Indicator Definitions

The SPA front panel contains nine dedicated status LEDs for operational visibility: one global SPA STATUS LED, plus eight sets of per-port CAR (Carrier/Alarm) and ACT (Active/Loopback) LEDs for the eight OC-12 SFP multi-service interfaces.
  1. STATUS LED (Global SPA Hardware Operational State)
    • Off: No power supplied to the SPA card, SPA improperly seated inside the SIP slot, or catastrophic failure of the on-board SONET framer/FPGA hardware rendering the SPA non-functional
    • Solid Amber: SPA powered on, undergoing boot initialization, firmware download process or minor hardware fault detected
    • Solid Green: SPA powered, fully recognized and registered by the host SIP/route processor, all on-board SONET channelized framer and multi-service processing FPGAs fully initialized and operational, all eight OC-12 multi-service ports ready for TDM, ATM, Frame Relay and POS traffic forwarding
    • Blinking Green: SPA undergoing IOS/IOS-XE/IOS-XR hardware initialization sequence during chassis power-on boot or post-OIR hot-swap reactivation
  2. Per-Port CAR LED (Port Link & Alarm Status, eight identical LEDs for Port 1 ~ Port 8)
    • Off: No SFP transceiver installed in the SPA slot, port administratively disabled, Loss of SONET Signal (LoS) detected or SFP transceiver hardware failure
    • Solid Amber: SFP transceiver installed, port enabled, but persistent critical SONET alarm state (LoF, SF-BER, payload mismatch) with no stable valid SONET carrier signal detected
    • Solid Green: Stable error-free OC-12 SONET physical carrier link established with remote network device (SONET ADM, core router, multi-service cross-connect, mobile backhaul gateway)
  3. Per-Port ACT LED (Port Traffic & Loopback Activity, eight identical LEDs for Port 1 ~ Port 8)
    • Off: No active multi-service traffic transmitting/receiving on the port; no loopback test enabled
    • Solid Green: Loopback diagnostic mode activated on the physical port
    • Blinking Green: Active bidirectional multi-service traffic (TDM voice frames, ATM cells, Frame Relay frames, IP/MPLS packets) transmitting and receiving over the OC-12 port link; blink frequency proportional to aggregate traffic load

Electrical & Thermal Specifications

Power Consumption

  • Typical idle power draw (SPA powered on, no SFP installed, zero traffic load): ~72 Watts typical total module power dissipation
  • Typical medium-load power draw (eight LR OC-12 SFP installed, mixed moderate TDM/ATM/POS multi-service traffic across all ports): ~80 Watts typical total power dissipation
  • Maximum full-load power consumption (all eight OC-12 ports running full line-rate bidirectional multi-service mixed traffic, DOM telemetry continuously active): ≤86 Watts maximum peak thermal dissipation
  • Power Supply Input: 3.3V DC power supplied exclusively via the SIP slot internal backplane bus; no external auxiliary power connectors on the SPA hardware module

Thermal & Environmental Operating Parameters

  • Certified Continuous Operating Temperature Range: 5°C to 40°C (41°F to 104°F) standard enterprise and carrier datacenter central office equipment room ambient environment
  • Extended Short-Term Operating Temperature Range: -5°C to 70°C (23°F to 158°F) temporary commercial wide-temperature operating range
  • Non-operating Storage Temperature Range: -40°C to 70°C (-40°F to 150°F) unpowered long-term storage conditions
  • Operating Relative Humidity: 5% to 85% RH, non-condensing ambient humidity
  • Storage Relative Humidity: 5% to 95% RH, non-condensing unpowered storage humidity
  • Operating Altitude: Certified operational altitude range from -60m to 2,000m (-200ft to 6,500ft); extended validated altitude support up to 4,000m (13,000ft)
  • Cooling Architecture: Fully passive thermal dissipation design with integrated stamped aluminum heatsink mounted directly on the SPA printed circuit board; no onboard rotating cooling fans. Chassis horizontal forced airflow from the host router’s internal cooling fans provides continuous convection cooling across the SPA heatsink under full peak eight-port OC-12 line-rate multi-service traffic load.
  • NEBS Compliance: Meets GR-63-Core, GR-1089-Core NEBS environmental and surge immunity standards for carrier central office permanent deployment

Physical Form Factor & Weight

  • Form Factor: Double-height Shared Port Adapter (SPA) form factor, occupies one single double-height SPA bay on all compatible SIP processor cards
  • Bare SPA Module Net Weight (excluding SFP transceivers, cabling and retail packaging): Approximately 700 grams (0.7 kg / 1.54 lbs)
  • Physical External Dimensions (Width × Depth × Height): 171.5mm (6.75in) × 184.9mm (7.28in) × 39.6mm (1.56in)

3. Regulatory & Compliance Certifications

Fully compliant with global international industry, electrical safety, EMC/EMI, telecommunications and laser safety standards when installed inside certified compatible Cisco router chassis:
  1. Electrical Safety Standards: UL 60950-1, CSA C22.2 No. 60950-1, EN 60950-1, IEC 60950 CB Scheme, ACA TS001, AS/NZS 3260, EN 60825/IEC 60825 laser safety Class 1, 21 CFR 1040 FDA laser safety regulation, GB 4943 Chinese national IT equipment safety standard
  2. Electromagnetic Compatibility (EMC/EMI) Standards: FCC CFR Title 47 Part 15 Class A, VCCI Class A ITE, EN55022 Class A, CISPR 22 Class A, ICES-003 Class A, CISPR 24, EN 61000 series surge, ESD and radiated immunity standards
  3. SONET/SDH & SPA Architecture Compliance: ANSI T1.105, Telcordia GR-253, ITU-T G.707 OC-12/STM-4 transport standards, RFC 1662/RFC 2615 POS over SONET, SAToP/CESoPSN TDM pseudowire RFCs, ATM/Frame Relay over SONET RFCs, SFP MSA Multi-Source Agreement, Cisco I-Flex SPA/SIP modular interface architecture specifications
  4. Environmental Compliance Directives: EU RoHS Restriction of Hazardous Substances directive full compliance, EU WEEE Waste Electrical and Electronic Equipment recycling directive compliant

4. Core Deployment Advantages

  1. Modular I-Flex Double-Height Eight-Port Channelized OC-12 Multi-Service SPA Architecture Delivers Maximum Network Deployment Flexibility
    The SPA-8XCHOC12 leverages Cisco’s industry-standard I-Flex modular SPA/SIP design, enabling network architects to mix and match eight-port channelized OC-12 SPAs, four-port channelized OC-12 SPAs, dual-port channelized OC-12 SPAs, single-port channelized OC-12 SPAs, non-channelized POS SPAs, Gigabit Ethernet SPAs, ATM SPAs and serial T3/E3 SPAs on a single SIP processor card. This eliminates the requirement to deploy dedicated fixed-port eight-channelized SONET line cards for eight OC-12 multi-service access aggregation deployments. Network operators can customize interface port density, transport service types and bandwidth capacities to precisely match site-specific mobile backhaul, leased-line and enterprise voice/data circuit demands, drastically reducing upfront capital expenditure and eliminating costly hardware over-provisioning for carrier edge and aggregation network nodes. The standardized SPA form factor enables shared spare parts inventory across multiple Cisco router platforms, lowering long-term operational OpEx costs.
  2. Full Hardware Offloaded Multi-Service Processing Eliminates Host Route Processor CPU Performance Bottlenecks
    All channelized SONET overhead processing, hierarchical T1/E1/DS0 timeslot cross-connect switching, SAToP/CESoPSN TDM circuit emulation jitter buffer and clock recovery, ATM SAR cell segmentation/reassembly, Frame Relay LMI signaling, POS HDLC/PPP encapsulation, Layer 3 IP routing, MPLS label switching, QoS traffic scheduling and ACL packet filtering operations are fully offloaded to the SPA’s dedicated on-board SONET channelized framer and multi-service FPGA chipset running at full OC-12 line rate on all eight ports simultaneously. This removes all CPU-intensive multi-service workload burdens from the host router’s main route processor, preserving critical CPU resources for core control-plane functions including BGP/OSPF routing protocol adjacency maintenance, device management and system logging. It prevents routing protocol instability, excessive packet/TDM frame latency and customer circuit service outages during peak full eight-port OC-12 aggregate mixed TDM/ATM/POS traffic load conditions.
  3. Zero-Disruption OIR Hot-Swap Maintenance Minimizes Multi-Service Carrier Network Downtime
    Complete Online Insertion and Removal (OIR) functionality supports hot-swap replacement of both the entire SPA card within the SIP slot and individual SFP optical transceivers on the SPA front panel without power cycling the host router chassis. All other active SPA interfaces hosted on the same SIP processor continue forwarding IP packets, switching ATM cells and transporting synchronous TDM voice circuits without interruption during hot-swap maintenance procedures. This eliminates costly multi-hour planned maintenance windows for production carrier multi-service access and mobile backhaul networks, drastically improving mission-critical synchronous voice and data circuit service availability and reducing routine network equipment maintenance overhead for NOC network operations teams.
  4. Unified Multi-Service Carrier-Grade Feature Suite Supports End-to-End Converged Voice, Video & Data Deployments
    The SPA integrates a complete portfolio of enterprise and service provider-grade networking features fully implemented in dedicated hardware acceleration, eliminating performance limitations of slow software-only packet/TDM processing. Native support for full hierarchical channelized SONET timeslot mapping, synchronous TDM circuit emulation pseudowires (SAToP/CESoPSN), ATM AAL1/AAL2/AAL5 services, Frame Relay legacy data transport, POS IP/MPLS trunking, 1+1 APS SONET protection switching, loopback diagnostic testing, QinQ stacked VLAN trunking, jumbo IP frames, MAC/IP access control lists, MPLS pseudowires, VPLS, segment routing, hierarchical multi-level QoS scheduling and LLQ low-latency real-time voice/video prioritization enables operators to deploy fully converged unified communications, mobile radio backhaul, residential broadband carrier services and enterprise MPLS VPN aggregation workloads over eight independent OC-12 channelized SPA interfaces. This removes the requirement to deploy separate dedicated ATM, TDM and POS interface hardware for distinct network service types and further reduces total network hardware total cost of ownership (TCO).
  5. Passive Fanless Heatsink Thermal Architecture Delivers Superior Long-Term Hardware Reliability and Low Lifecycle Maintenance Costs
    The SPA-8XCHOC12 utilizes a fully passive convection cooling design with a solid integrated aluminum heatsink, containing no onboard rotating cooling fans. This completely eliminates all mechanical hardware failure risk vectors associated with fan motor wear, dust accumulation, fan power supply faults and airflow blockages, enabling stable 24/7 continuous unattended operation in remote unmanned central office equipment closets, carrier aggregation racks and off-site regional mobile backhaul edge locations with minimal long-term on-site maintenance requirements. Low idle and peak full-load power consumption reduces overall router chassis energy draw and enterprise/carrier datacenter cooling operational energy costs over multi-year hardware service lifecycles, delivering substantial long-term total cost of ownership savings for large-scale distributed multi-site carrier network deployments.
  6. Unified IOS/IOS-XE/IOS-XR Single-Pane CLI Management Simplifies Multi-Platform Network Operations and Troubleshooting
    All SPA hardware configuration, eight-port channelized SONET sub-interface provisioning, multi-service transport mode setup, port SONET alarm monitoring, QoS and ACL policy deployment, real-time traffic throughput monitoring, packet/TDM/ATM cell error counter analysis and SFP optical DOM telemetry tracking operations are fully managed through the host chassis’s native Cisco IOS, IOS-XE or IOS-XR command-line interface. Network administrators can monitor the SPA’s operational status, SONET link health and multi-service circuit traffic statistics alongside all other router SIP/SPA interfaces within a single consistent unified management environment, eliminating the need for separate standalone interface management software or dedicated out-of-band monitoring infrastructure for eight-port channelized OC-12 multi-service SPA line cards. This drastically reduces network administrator training overhead, streamlines network change management workflows and accelerates critical synchronous voice and data circuit fault resolution troubleshooting for distributed enterprise and carrier multi-service network environments.

Supplementary Product Specification Notes

UNSPSC Classification Code

43222600 (Double-height 8-port channelized OC-12c/STM-4 multi-service Shared Port Adapter (Cisco market designation SPA-8XCHOC12, formal part number SPA-8XCHOC12/DS0) built on Cisco I-Flex SPA/SIP modular interface architecture for Cisco ASR 1000, ASR 9000, 7600, 7304, 12000, CRS and Catalyst 6500 Series routing/switching platforms, equipped with eight independent hot-swappable SFP MSA-compliant OC-12 optical transceiver slots, ANSI/ITU-T compliant hierarchical channelized OC-12 SONET/SDH concatenated transport framing, multi-service transport support including SAToP/CESoPSN TDM circuit emulation, ATM, Frame Relay and POS packet transport, full line-rate wire-speed Layer 2/Layer 3/MPLS/TDM/ATM hardware multi-service processing offload, comprehensive carrier-grade hierarchical QoS, SONET alarm monitoring, 1+1 APS linear protection switching, VLAN, ACL and MPLS pseudowire feature support, zero-impact Online Insertion and Removal (OIR) hot-swap maintenance capability, fully passive fanless aluminum heatsink thermal dissipation design, double-height SPA form factor occupying one single double-height SPA bay on compatible SIP processors, optimized for ultra-high-density eight-trunk mobile radio backhaul, leased-line migration, enterprise PBX voice interconnection and converged voice/video/data carrier multi-service eight OC-12 aggregation trunk workloads).

K9 Security Compliance Note

All supported IOS/IOS-XE/IOS-XR software releases compatible with the SPA-8XCHOC12/DS0 implement AES-encrypted remote CLI access, SSH secure management sessions, secure SNMPv3 access control, IPSec encrypted site-to-site VPN tunnels and AAA identity authentication frameworks, fully meeting Cisco K9 secure IOS software classification standards required for government, financial services, healthcare and other regulated industry network deployments. The SPA’s hardware-accelerated Layer 2 MAC access control lists and Layer 3 policy filtering capabilities enable granular traffic segmentation and malicious attack mitigation at full OC-12 line rate per port, protecting enterprise and carrier production channelized SONET multi-service network infrastructure from unauthorized access, broadcast flood attacks and interception of sensitive business/customer voice and data transmitted over eight OC-12 aggregation trunk links.

Factory Hardware Warranty Terms

Standard 1-year limited hardware warranty coverage for factory-new SPA-8XCHOC12/DS0 spare kits purchased through official Cisco authorized global distribution channel partners. Extended 3-year / 5-year hardware support service contracts were available as optional add-ons via Cisco SMARTnet or Cisco DNA Advantage service contracts during the product’s active sales lifecycle, covering certified refurbished SPA hardware replacement, 24×7 priority Cisco TAC engineering technical support, and validated IOS/IOS-XE/IOS-XR firmware upgrade release delivery for resolving critical network security vulnerabilities and enabling standard carrier-grade channelized SONET multi-service interface feature set support over the SPA’s multi-year operational service lifecycle.
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