47398L
AI

The part number **47398L** is most commonly associated with **Littelfuse** (specifically within their heavy-duty electrical and circuit protection lines) or as a specialized component in automotive and industrial wiring systems.
Below is a detailed breakdown of the technical specifications and characteristics typically associated with this part.
---
## Technical Overview: 47398L (Heavy-Duty Relay/Solenoid)
This part is generally categorized as a **Heavy-Duty Electromechanical Solenoid** or **Power Relay**, designed for high-current switching applications where standard miniature relays would fail.
### 1. Key Specifications
| Feature | Specification |
| :--- | :--- |
| **Component Type** | Heavy-Duty Intermittent Solenoid |
| **Voltage Rating** | 12V DC (Typical) |
| **Current Rating** | ~750A Break / 100A Carry |
| **Contact Material** | Copper or Silver Alloy |
| **Housing Material** | Plated Steel or Reinforced Phenolic |
| **Mounting** | Flat Bracket / Chassis Mount |
### 2. Physical Construction
* **Terminals:** Usually features two large threaded studs (5/16") for high-current battery cables and two smaller studs (#10-32) for the coil/trigger circuit.
* **Sealing:** Often features an environmental seal to protect against dust and moisture, common in under-hood automotive environments.
* **Circuitry:** Single Pole Single Throw (SPST), Normally Open (NO).
---
## Common Applications
Because of its ability to handle high surge currents, the 47398L is utilized in the following scenarios:
1. **Starter Motors:** Engaging the starter motor in agricultural machinery, trucks, or marine vessels.
2. **Hydraulic Pumps:** Powering lift-gates on delivery trucks or snowplow blades.
3. **Winch Control:** Acting as the primary power switch for high-load recovery winches.
4. **Battery Isolation:** Used to disconnect auxiliary batteries in RVs or emergency vehicles to prevent primary battery drain.
---
## Functional Logic
The device operates on the principle of **Electromagnetic Induction**:
1. A low-current signal (from a key switch or ECU) is sent to the **Solenoid Coil**.
2. The coil generates a magnetic field that pulls a heavy **Plunger** forward.
3. The plunger bridges the two high-current **Large Terminals**, allowing thousands of watts of power to flow to the motor or load.
---
## Maintenance and Safety Tips
* **Heat Dissipation:** Ensure the solenoid is mounted to a metal surface if used for frequent cycling to help dissipate heat.
* **Torque:** Do not overtighten the small terminals, as the internal bakelite/plastic casing can crack.
* **Polarity:** While many solenoids are non-polarized, always check if one coil terminal is internally grounded to the bracket.
- ⤷What is the difference between continuous duty and intermittent duty for this part?
- ⤷ How do I test if the internal coil of the 47398L is burnt out?
- ⤷ Are there 24V versions of this specific solenoid architecture?