$requestType
$attrFilterListType
| Add-On Options Available | : | 110 V Line to Platform, 500 kV Insulated Jib, 6 x 6 Chassis Mounting Configuration, Climate Specific Solution, Deep-Penetration Outrigger, Material Handling Jib, Open Seated Control Station, Radio Remote Control |
| Additional Information | : | 1500 lb Jib Winch Capacity, 60000 lb Recommended GVWR |
| Condition | : | New |
| Dimensions | : | 36 ft 9 in L x 13 ft 2 in H |
| Divisions | : | BLAZE |
| Divisions | : | CAL_LINE |
| Divisions | : | JR |
| Divisions | : | OWEN |
| Divisions | : | RELIANCE |
| Maximum Horizontal Reach | : | 80 ft |
| Maximum Working Height | : | 121 ft |
| Mobility Type | : | Wheeled |
| Model | : | E120 |
| Number of Sections | : | 4 |
| Outrigger Spread | : | 20 ft |
| Outrigger Type | : | Out-Down |
| Platform Height | : | 115 ft |
| Platform Load Capacity | : | 600 lb |
| Platform Size | : | 34 x 72 in |
| Platform Type | : | End-Hung |
| Weight | : | 28500 lb |
With a high-capacity platform, powerful lifting, and Elliott's rugged design, the E120 delivers safe, reliable performance for utility crews and electrical contractors working at height.
Elliott E-Line™ Aerial Work Platform, Model: E120, New Condition, End-Hung Platform, 121 ft Maximum Working Height, 34 x 72 in Platform, 115 ft Platform Height, 80 ft Maximum Horizontal Reach, 600 lb Platform Load Capacity, 4 Sections, Out-Down Outrigger, 20 ft Outrigger Spread, Wheeled Mobility, Add-On Options Available: 110 V Line to Platform, 500 kV Insulated Jib, 6 x 6 Chassis Mounting Configuration, Climate Specific Solution, Deep-Penetration Outrigger, Material Handling Jib, Open Seated Control Station, Radio Remote Control, 36 ft 9 in L x 13 ft 2 in H, 28500 lb Weight, Additional Information: 1500 lb Jib Winch Capacity, 60000 lb Recommended GVWR
- SPACIOUS PLATFORM FOR MAXIMUM PRODUCTIVITY - The E120 E-Line features a generous 34" x 72" platform that comfortably accommodates two workers along with their tools. This extra space allows for more efficient task execution and reduces the need for frequent repositioning