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Product Features
Technical Overview
This jumper cord implements the IEC 60320 C13 to C14 connector standard, providing a standardized interface for server power connections. The C13 female connector interfaces with power distribution units, while the C14 male connector mates directly with server power inlets.
The 3-pin configuration supports standard grounding requirements for server equipment, maintaining electrical safety in enterprise environments. The cord's construction ensures reliable current delivery for server workloads without voltage drop concerns across its 4.9-foot span.
This section brings together practical product details such as First End Connector Type, First End Connector Detail, Second End Connector Type, Cord Length, so buyers can judge configuration, deployment fit, and day-to-day suitability with less guesswork.
Key Product Advantages
This Lenovo jumper cord delivers essential benefits for server infrastructure management and maintenance.
Server-Grade Reliability
Engineered specifically for server applications with connectors that withstand repeated mating cycles in data center environments.
- IEC 60320 certified connectors
- 3-pin grounded configuration
- Lenovo quality assurance
Optimized Length
The 4.9-foot cord provides sufficient reach for typical rack installations while minimizing excess cable that can impede airflow.
- Balanced reach for rack mounting
- Reduced cable clutter
- Improved thermal management
Direct Compatibility
Designed specifically for Lenovo ThinkSystem servers, ensuring proper fit and electrical characteristics for supported models.
- Tested with ThinkSystem hardware
- Guaranteed connector alignment
- Server-optimized current rating
Deployment / Use Cases
The 4L67A08368 jumper cord serves critical roles in server infrastructure deployment and maintenance scenarios.
In data center environments, this cord connects rack-mounted PDUs to individual server units, creating reliable power pathways for compute resources. During server replacements or upgrades, having compatible jumper cords on hand ensures rapid deployment without compatibility concerns.
This section brings together practical product details such as First End Connector Type, First End Connector Detail, Second End Connector Type, Cord Length, so buyers can judge configuration, deployment fit, and day-to-day suitability with less guesswork.
Data Center Rack Integration
Connect power distribution units to Lenovo ThinkSystem servers in standard 19-inch rack configurations, maintaining organized cable management.
Server Maintenance and Replacement
Keep as spare inventory for quick server swaps or additions, reducing downtime during hardware refreshes or expansion projects.
Highlights
- IEC 60320 C13 to C14 connector configuration
- 4.9-foot (1.50-meter) cord length for rack installations
- 3-pin grounded connectors for electrical safety
- Specifically designed for server applications
- Compatible with Lenovo ThinkSystem SR550, 7X03, and 7X04 servers
- Lenovo-manufactured quality assurance
- Standardized power interface for data center environments
- Reliable power delivery for server workloads
Specifications
| Specifications | |
|---|---|
| Manufacturer | Lenovo Group Limited |
| Manufacturer Part Number | 4L67A08368 |
| Brand Name | Lenovo |
| Product Name | Jumper Cord |
| Product Type | Jumper Cord |
| Technical Information | |
| First End Connector Type | IEC 60320 C13 |
| First End Connector Detail | 3-pin IEC 60320 C13 Female |
| Second End Connector Type | IEC 60320 C14 |
| Second End Connector Detail | 3-pin IEC 60320 C14 Male |
| Device Supported | Server |
| Physical Characteristics | |
| Cord Length | 4.9 ft (1.50 m) |
| Miscellaneous | |
| Compatibility | Lenovo ThinkSystem Servers: SR550 7X03 7X04 |
FAQ
What types of connectors does this Lenovo jumper cord use?
This jumper cord features IEC 60320 C13 and C14 connectors. The first end has a C13 female connector (3-pin) that typically connects to power distribution units, while the second end has a C14 male connector (3-pin) that connects directly to server power inlets. This standardized configuration ensures compatibility with server equipment using IEC 60320 power interfaces.
How long is the Lenovo 4L67A08368 jumper cord?
The cord measures 4.9 feet in length, which equals 1.50 meters. This length provides sufficient reach for typical rack installations where servers are mounted horizontally and power distribution units are mounted vertically or horizontally within the same cabinet, while minimizing excess cable that could impede airflow or access.
Which Lenovo servers are compatible with this jumper cord?
This jumper cord is specifically compatible with Lenovo ThinkSystem servers including the SR550 model and 7X03/7X04 series. These servers use standard IEC 60320 C14 power inlets that mate perfectly with the C14 male connector on this cord, ensuring proper electrical connection and physical fit.
Is this jumper cord suitable for non-server equipment?
While technically compatible with any device using IEC 60320 C14 power inlets, this cord is specifically engineered and tested for server applications. The construction and current rating are optimized for server workloads, making it ideal for data center and enterprise server environments rather than general office equipment.
What are the advantages of using Lenovo-branded jumper cords?
Lenovo-branded jumper cords like the 4L67A08368 are designed and tested specifically for Lenovo server hardware, ensuring perfect connector alignment, proper electrical characteristics, and reliable performance. They undergo Lenovo's quality assurance processes and are guaranteed to work correctly with supported ThinkSystem servers, reducing compatibility concerns in critical infrastructure.
Can this cord be used in rack-mounted server installations?
Yes, the 4.9-foot length is specifically optimized for rack-mounted server installations. It provides enough reach to connect vertically or horizontally mounted power distribution units to servers within the same rack while maintaining clean cable management. The length balances sufficient connectivity with minimal excess cable that could impede airflow in densely packed server cabinets.