# Fulham Workhorse 2 WH2-277-C Ballast - Solid State Electronic

The Fulham Workhorse 2 WH2-277-C is a robust solid-state electronic ballast, engineered for reliable and efficient lighting across diverse applications. This ballast ensures consistent performance, making it ideal for both indoor and outdoor lighting solutions.

This model operates at 277V AC, 50/60Hz, with a maximum current of 0.15A. It features RFI, EMI, and FCC Part 18A sound rating to minimize interference. The **Fulham Workhorse 2 WH2-277-C** is built to withstand demanding conditions with a temperature rating of 70°C.

-   **Reliable Performance:** Consistent and efficient operation for various lighting needs.
-   **Durable Design:** Withstands tough conditions, suitable for outdoor use.
-   **Safety Assured:** Maximum voltage output circuit to ground is less than 600VAC.
-   **Quick Start:** Instant start type CC ensures fast lighting solutions.
-   **Compact and Lightweight:** Easy to install and maintain.

**Specifications:**  
Voltage: 277V AC  
Frequency: 50/60Hz  
Maximum Current: 0.15A  
Temperature Rating: 70°C  
Minimum Start Temperature: -20°F  
Start Type: Instant Start CC  
Weight: 190 grams

The **Fulham Workhorse 2 WH2-277-C** offers long-lasting lighting solution for various industrial and automation system. Trust in Fulham's quality. Contact us at [info@ramautomations.com](mailto:info@ramautomations.com) for inquiries.

[info@ramautomations.com](mailto:info@ramautomations.com)

## Details

- **Price:** 999.0 USD
- **Vendor:** Fulham
- **Type:** Lighting > Ballasts > Electronic Ballast
- **Tags:** 277V ballast, automation lighting, electronic ballast, Fulham, industrial lighting, solid state ballast, Workhorse 2 WH2-277-C

## Variants

| Variant | Price | Available |
|---------|-------|-----------|
| Used | 999.00 USD | In stock |

## Images

- Fulham Workhorse 2 WH2-277-C Ballast - Solid State Electronic-Ram Automations

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> Source: [Ram Automations](https://ramautomations.com/products/fulham-workhorse-2-wh2-277-c-ballast)
> Updated: 2026-09-19
