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Diagnosing A/C Wiring Failures on a CAT 259D Compact Track Loader
#1
The CAT 259D and Its HVAC Electrical System
The Caterpillar 259D is a compact track loader designed for high-performance operation in construction, landscaping, and utility work. Introduced in the early 2010s, the 259D features a sealed and pressurized cab option with integrated heating, ventilation, and air conditioning (HVAC). The A/C system includes a compressor clutch, pressure switches, blower motor, and thermostat switch—all coordinated through a relay-controlled circuit.
Caterpillar’s HVAC wiring on the 259D is routed through multiple connectors and switches, with power originating from the cab switch and passing through pressure sensors and a thermostat before reaching the compressor clutch. This layered design ensures the system only engages under safe operating conditions, such as adequate refrigerant pressure and proper cab temperature.
Symptoms of A/C Failure and Initial Checks
A common issue reported by operators is the compressor clutch failing to engage, even after replacing pressure switches and relays. In some cases, manually jumping power to the clutch confirms that the compressor itself is functional, pointing to a wiring or control fault upstream.
Typical symptoms include:
  • No power at the compressor clutch
  • Blower motor functioning normally
  • A/C switch in cab showing correct input and output voltages
  • No response from low-pressure switch when jumped
  • Absence of condenser fan or wiring (depending on configuration)
These signs suggest a break in the control circuit, often caused by a faulty connector, corroded terminal, or overlooked inline switch.
Terminology and Circuit Components
- Compressor Clutch: An electromagnetic device that engages the compressor when powered, allowing refrigerant circulation.
- Low-Pressure Switch: A safety sensor that prevents compressor operation if refrigerant pressure is too low, protecting against damage.
- Thermostat Switch: A temperature-sensitive switch that regulates compressor engagement based on cab temperature.
- Relay: An electrically operated switch that controls high-current devices using low-current signals.
- Wire 567-hv13 and 520-hv12: Specific circuit identifiers used in CAT wiring diagrams to trace power flow from the blower switch to the A/C switch.
Tracing the Fault and Resolving the Issue
In one diagnostic case, the operator confirmed power at the A/C switch using wire identifiers 567-hv13 (input) and 520-hv12 (output). The blower motor worked, and the condenser was mounted in the door—typical for this model. However, the low-pressure switch showed no power, and jumping it had no effect.
The breakthrough came when tracing the circuit beyond the cab switch. Beneath the cab floor, a thermostat switch was discovered—an inline component not immediately visible or listed in basic schematics. The connector to this switch had poor contact due to corrosion and vibration. After cleaning and reseating the connector, power flowed to the compressor clutch, and the A/C system engaged normally.
Recommendations for Technicians and Operators
To troubleshoot A/C wiring issues on the CAT 259D:
  • Confirm compressor clutch operation by manually applying power
  • Verify blower motor and A/C switch voltages using wire identifiers
  • Inspect pressure switches and relay function
  • Trace wiring beyond visible components, especially under the cab floor
  • Clean and reseat all connectors, checking for corrosion or loose pins
  • Use a full wiring schematic matched to the machine’s serial number (e.g., FTL04527)
If the machine lacks a condenser fan, verify whether the configuration uses passive airflow or if a fan was removed during prior service. Some models rely on engine cooling fans to draw air across the condenser.
Field Anecdotes and Broader Lessons
One technician recalled a similar issue on a CAT 279D, where the A/C system failed intermittently. After weeks of testing, the fault was traced to a broken wire inside a loom near the cab hinge—flexing during door operation had caused internal fatigue. Another operator in Tennessee found that rodents had chewed through the thermostat wire, causing a complete circuit break.
These stories highlight the importance of inspecting hidden components and not relying solely on surface-level diagnostics. In compact machines, wiring is often routed through tight spaces and exposed to vibration, moisture, and temperature extremes.
Conclusion
A/C wiring failures on the CAT 259D often stem from overlooked connectors, hidden switches, or corroded terminals. While the compressor and switches may be functional, a single break in the circuit can prevent engagement. With careful tracing, schematic reference, and connector inspection, technicians can restore cold air and avoid unnecessary part replacements. In compact loaders, the smallest wire can make the biggest difference—and the best diagnostics start beneath the surface.
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