Multiquip Concrete Vibrator UM13225 1 1/4 Inch Head 9 3/5 Foot Flexible Shaft Construction Tool (120V, 3 4/5 Amps, Deep Footing Consolidation)
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Multiquip UM13225 Handheld Electric Concrete Vibrator Assembly
The Multiquip UM13225 Handheld Electric Concrete Vibrator Assembly is a 120V portable consolidation tool featuring a 1 1/4-inch steel head and a 9 3/5-foot overall flexible shaft reach engineered for deep footing placement. Powered by a 3 4/5-amp double-insulated motor delivering up to 15,500 VPM, this system displaces internal air voids to ensure maximum density in stiff pours.
Best Used For:
- Deep Footing Consolidation: Displacing trapped air pockets and honeycombing across thick concrete foundation footings.
- Medium Wall Form Pours: Liquefying 3-inch or higher slump concrete mixes within medium-width wall assemblies.
- Structural Column Placement: Navigating intermediate rebar networks to pack wet concrete thoroughly around internal steel supports.
Key Performance & Safety Features
- Extended Flexible Shaft: 8 1/5-foot drive shaft provides deep immersion access for tall forms and subterranean footings.
- High-Frequency Output: Produces 12,000 to 15,500 VPM for rapid, continuous air-pocket evacuation.
- Vibration-Dampened Grip: Ergonomic handle reduces hand strain and operator fatigue during extended pouring tasks.
- Sealed Motor Protection: Sealed ventilation system blocks concrete dust and slurry splatter from internal electrical components.
What's Included
- (1) Multiquip Handheld Motor Unit (115V)
- (1) 8 1/5 ft. Flexible Shaft
- (1) 1 1/4 in. Vibrator Head
Technical Specifications
| Model Number | UM13225 |
| Head Diameter | 1 1/4 in. |
| Shaft Length | 8 1/5 ft. |
| Overall Length | 9 3/5 ft. |
| Voltage | 115V / 120V |
| Amperage | 3 4/5 Amps |
| Power | 280 Watts |
| Frequency (VPM) | 12,000 - 15,500 VPM |
| Amplitude | 27/1000 in. |
| Total Weight | 16 1/2 lbs |
Pro-Tip: Insert the head quickly to the bottom of the pour and withdraw it at approximately 1 to 2 inches per second to ensure smooth air release without causing aggregate segregation.