Brand:Honeywell DCS Item No.:51305722-001 Product Origin:USA Product Dimensions:Cable Length: 1 meter Product Weight:Shipping Weight: 3 kg Payment:T/T, Western Union, Credit Card Goods_stock:15 Shipping Port:Xiamen, China Lead Time:1-3 Days Condition:Brand New And Original Warranty:1 Year Certificate:COO
The Honeywell 51305722-001 Fiber Optic Dual Patch Cord is a high-performance industrial communication cable designed for reliable optical data transmission in automation and process control systems. It delivers stable, high-speed connectivity while minimizing the impact of electromagnetic interference, making it suitable for critical industrial environments. With its compact design and durable construction, it is ideal for both new installations and upgrades in fiber-based control networks.
Technical Specifications
Parameter
Specification
Product Model
51305722-001
Manufacturer
Honeywell
Product Type
Fiber Optic Dual Patch Cord
Application
Industrial fiber communication
Cable Type
Dual fiber patch cord
Cable Length
1 meter
Transmission Type
Optical signal
Installation Type
Control cabinet / network rack
EMI Resistance
High immunity
Operating Environment
Industrial automation systems
Maintenance
Field replaceable
Shipping Weight
3 kg
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Applications
• Industrial fiber optic communication networks
Provides high-speed optical signal transmission between control system components in automation environments requiring strong noise immunity.
• Distributed Control System (DCS) backbone connectivity
Used to link controllers, network switches, and communication modules within Honeywell process automation architectures.
• Control room and cabinet fiber interconnection
Supports structured fiber routing inside industrial panels, ensuring stable and organized communication layouts.
• High-noise industrial environments
Ideal for plants with heavy electrical interference where copper cabling is less reliable.
• Process automation infrastructure
Applied in oil & gas, chemical processing, power generation, and pharmaceutical industries for critical data transmission.
• System upgrades and network expansion
Enables reliable integration of additional fiber-connected devices during modernization projects.
Key Advantages
• High-speed optical data transmission
Ensures fast and efficient communication between industrial control components.
• Strong immunity to electromagnetic interference
Ideal for harsh industrial environments with high electrical noise levels.
• Dual patch cord configuration
Supports bidirectional communication for stable and balanced network performance.
• Consistent signal quality over distance
Maintains reliable data integrity in automation and control systems.
• Compact 1-meter design
Optimized for short-range cabinet or rack-level fiber connections.
• Industrial-grade durability
Designed for long-term operation in demanding process environments.
Technical FAQs
Q1: What is the main function of this fiber optic patch cord?
A1: It is used to transmit high-speed optical signals between compatible industrial automation devices.
Q2: Is it suitable for DCS systems?
A2: Yes, it is commonly used in distributed control system fiber networks.
Q3: What is the cable length?
A3: The standard length is 1 meter.
Q4: Why use fiber optic instead of copper cables?
A4: Fiber optic cables provide better noise immunity and higher data transmission reliability.
Q5: Can it be used in high EMI environments?
A5: Yes, it is ideal for environments with strong electromagnetic interference.
Q6: Is it suitable for control cabinets?
A6: Yes, it is commonly used for cabinet and rack-level connections.
Q7: Does it support continuous operation?
A7: Yes, it is designed for 24/7 industrial use.
Q8: Can it be used for system expansion?
A8: Yes, it supports network expansion and device integration.
Q9: Is special configuration required before installation?
A9: No, it is plug-and-connect for compatible fiber interfaces.
Q10: What industries commonly use this product?
A10: Oil & gas, power generation, chemical processing, manufacturing, and industrial automation sectors.