Vendor: Honeywell

Honeywell 51153818-103 Jumper Kit

SKU: 51153818-103
In stock: 9
Description

Honeywell 51153818-103 Jumper Kit

The Honeywell 51153818-103, also cataloged as the 51153818-103 insulated jumper set, operates as a dedicated hardware component for signal routing and terminal addressing within Honeywell DCS and PLC termination assemblies.

Hardware Specifications

Parameter Specification
Model 51153818-103
Brand Honeywell
Origin Not specified
Weight 0.5 kg to 1.0 kg (with packaging)
Dimensions Standard termination jumper size
Operating Temp -20 deg C to +70 deg C
Power Consumption Not applicable (passive component)
Jumper Material Copper alloy with PVC insulation
Voltage Rating Up to 24–30 VDC (logic/signal circuits)
Current Rating Signal and control loops only
Included Jumpers Violet jumpers numbered 21–30
Compatible Systems Honeywell DCS, PLC, HPMM, C2000

Signal Routing and Termination Behavior

The 51153818-103 kit provides insulated copper jumpers for low-voltage logic and control circuits. Each jumper is numbered 21–30, supporting deterministic routing across Honeywell termination racks. Channel-to-channel isolation is preserved through physical separation, while the PVC insulation ensures reduced cross-talk and stable continuity in dense wiring environments. The series numbering scheme (101 through 104) enables engineers to manage complex rack addressing with sequential identification.

Frequently Asked Questions

Q: Can these jumpers be used for high-power loads? A: No, they are strictly rated for low-voltage logic and signal circuits, not for power distribution.

Q: Are the jumpers hot-swappable under energized conditions? A: Jumper insertion or removal should be performed with circuits de-energized to prevent transient signal loss.

Q: How does the numbering assist in rack configuration? A: Sequential numbering (21–30 in this kit) provides clear identification for wiring blocks, reducing misrouting in multi-channel assemblies.

Field Installation Guidelines

  • Verify terminal numbering before inserting jumpers to avoid unintended bridging.
  • Ensure full seating of jumper elements to maintain stable continuity.
  • Maintain separation between analog and relay wiring to minimize induced noise.
  • Ground shielded wiring at a single reference point to reduce interference.
  • Avoid bending or deforming jumper elements during installation.