Pluggable Cables

Image Part Number Description / PDF Quantity Rfq
AFBR-2CAR03Z

AFBR-2CAR03Z

Foxconn OE Technologies

FIBER OPTIC RECEIVER

0

AFBR-7IER07Z

AFBR-7IER07Z

Foxconn OE Technologies

10G SFP+ AOC

0

AFBR-83ED03Z

AFBR-83ED03Z

Foxconn OE Technologies

10X10.3G CXP AOC 3M PLENUM FIBER

0

AFBR-8CER10Z-AB1

AFBR-8CER10Z-AB1

Foxconn OE Technologies

TXRX ALIBABA 25G SFP28 AOC 10M

0

AFBR-83ED02Z

AFBR-83ED02Z

Foxconn OE Technologies

10X10.3G CXP AOC 2M PLENUM FIBER

0

AFBR-83PD3Z

AFBR-83PD3Z

Foxconn OE Technologies

120G IB QDR CXP

0

AFBR-8CER10Z-AB2

AFBR-8CER10Z-AB2

Foxconn OE Technologies

TXRX ALIBABA 25G SFP28 AOC 10M

0

AFBR-7QER01Z

AFBR-7QER01Z

Foxconn OE Technologies

40G QSFP+ AOC

0

AFBR-8CER20Z-AB2

AFBR-8CER20Z-AB2

Foxconn OE Technologies

TXRX ALIBABA 25G SFP28 AOC 20M

0

AFBR-7IER01Z

AFBR-7IER01Z

Foxconn OE Technologies

10G SFP+ AOC

0

AFBR-83CD30Z-AL1

AFBR-83CD30Z-AL1

Foxconn OE Technologies

12X12.5G CXP AOC 30M PLEN ALCATL

0

AFBR-83CD10Z-JU1

AFBR-83CD10Z-JU1

Foxconn OE Technologies

12X12.5G CXP AOC 10M PLEN JUNIPR

0

AFBR-83PD30Z

AFBR-83PD30Z

Foxconn OE Technologies

12X10.3G CXP AOC 30M PLEN FIBER

0

AFBR-83CD01Z

AFBR-83CD01Z

Foxconn OE Technologies

12X12.5G CXP AOC 1M PLENUM FIBER

0

AFBR-8CER02Z-FT1

AFBR-8CER02Z-FT1

Foxconn OE Technologies

TXRX SFP28 AOC 2M

0

AFBR-83CD12Z-JU1

AFBR-83CD12Z-JU1

Foxconn OE Technologies

12X12.5G CXP AOC 12M PLEN FIBER

0

AFBR-83PD32Z-HW1

AFBR-83PD32Z-HW1

Foxconn OE Technologies

120G IB QDR CXP

0

AFBR-83PD50Z

AFBR-83PD50Z

Foxconn OE Technologies

12X10.3G CXP AOC 50M PLEN FIBERR

0

Pluggable Cables

1. Overview

Pluggable cables are modular cable assemblies designed for rapid deployment and hot-swappable connectivity in high-speed data transmission systems. These cable solutions integrate standardized connectors and interface protocols to enable flexible networking configurations. Key advantages include reduced installation time, scalable infrastructure management, and compatibility with evolving communication standards. They play a critical role in modern data centers, telecommunications networks, and industrial automation systems where reliable high-bandwidth connectivity is essential.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
QSFP (Quad Small Form-factor Pluggable)High-density 4-channel architecture, supports 40G-800G data ratesData center switches, high-performance computing clusters
SFP (Small Form-factor Pluggable)Compact hot-pluggable interface, supports 1G-25G speedsEnterprise networking equipment, fiber optic transceivers
DAC (Direct Attach Copper)Passive copper cables with low latency and power consumptionShort-distance server/storage connections within racks
AOC (Active Optical Cable)Optical fiber with integrated transceivers, supports long-distance transmissionInter-rack connections in large-scale data centers
RJ45 PluggableStandard Ethernet interface with backward compatibilityLocal area networks (LANs), PoE-enabled devices

3. Structure and Components

Typical pluggable cable assemblies consist of:

  • Conductive Core: Stranded or solid copper conductors (for electrical signals) or optical fibers (for AOC variants)
  • Insulation Layer: High-density polyethylene or fluorinated ethylene propylene (FEP) for signal integrity
  • Shielding: Braided copper or foil shielding to prevent EMI interference
  • Connector Housing: Thermoplastic or metal casing with latching mechanisms (e.g., LC, MPO interfaces)
  • Integrated Circuitry: EEPROM chips for digital diagnostics and identification (SFP-DD, QSFP-DD variants)

4. Key Technical Specifications

ParameterSignificance
Transmission RateDetermines data throughput capacity (10G-800Gbps)
Insertion LossMeasures signal attenuation ( 0.5dB for high-speed DACs)
Return LossIndicates impedance matching quality ( 20dB)
Operating TemperatureDefines environmental tolerance (-40 C to +85 C)
MTBF (Mean Time Between Failures)Reliability indicator (>10,000 hours)
Compliance StandardsSpecifies adherence to IEEE 802.3, SFF-8431, and RoHS

5. Application Fields

Primary industries utilizing pluggable cables include:

  • Data Centers: High-density server racks, top-of-rack (ToR) switches
  • Telecommunications: 5G base stations, optical line terminals (OLTs)
  • Enterprise Networks: Campus backbone infrastructure, security systems
  • Industrial Automation: Ethernet-based control systems, IoT gateways
  • Medical Imaging: High-resolution diagnostic equipment with real-time data transfer

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
Cisco SystemsSFP-10G-LR10GBASE-LR with 1310nm wavelength, 2km reach
FinisarQSFP-40G-SR4MPO interface, 100m OM4 MMF support
MolexActive Optical Cable 100GLC connectors, error correction coding
AmphenolRJ45-PLUG-CAT6AShielded Cat6A, PoE++ compatibility

7. Selection Guidelines

Key considerations for optimal selection:

  1. Bandwidth Requirements: Match cable speed to equipment capabilities (e.g., 400G QSFP-DD for AI servers)
  2. Distance Constraints: DAC for 5m (cost-effective), AOC for >10m (low latency)
  3. Environmental Factors: Choose industrial-grade cables for vibration-prone environments
  4. Backward Compatibility: Verify form factor alignment (SFP+, QSFP28, etc.)
  5. Total Cost of Ownership: Balance initial cost vs. power efficiency and maintenance needs

Case Study: A hyperscale data center upgraded to 400G QSFP-DD DAC cables, achieving 35% lower power consumption compared to previous generation AOC solutions.

8. Industry Trend Analysis

Emerging developments include:

  • Speed Advancements: Transition to 800Gbps per channel using PAM4 modulation
  • Optical Integration: Silicon photonics enabling pluggable optical engines
  • Smart Cabling: Embedded sensors for real-time monitoring of temperature and signal quality
  • Modular Design: Universal backplane solutions supporting mixed media types
  • Sustainability: Development of halogen-free materials and recyclable components

Market forecasts predict a 22% CAGR for pluggable cable assemblies through 2028, driven by 5G expansion and AI infrastructure growth.

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