Wacker Neuson Reversible Vibratory Plates BPU5545A
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Specifications
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Model |
BPU5545A
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Category Name |
Industrial
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Year |
2022
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Sale Type |
New
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Manufacturer |
Wacker Neuson
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Price |
Contact for price CAD
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Description
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Reversible Vibratory Plates
Our reversible vibratory plates are available in various sizes. Individual - just the way you need them. You can also get select models with remote control for a high level of operating comfort and sensitive variable control.
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BPU5545A - The specialist for heavy soils
High compaction force combined with fast forward and reverse travel means the BPU 5545A achieves great productivity. It is an all-around versatile plate for all job sites that place high demands on the machine's performance potential. Its other outstanding characteristics are high operator comfort and a long service life. It is perfectly suited for the compaction of building back-fill, and of frost and sub bases when constructing roads, paths and parking lots. The 69 Hz frequency makes the BPU 5545A suitable for all purposes and compacts even medium-weight and heavy interlocking paving stone reliably. Infinitely variable forward and reverse operation including spot compaction for easy maneuverability. Ideal for trenches and large spaces.
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- The innovative guide handle provides for very low hand-arm vibration and optimizes the user-friendliness.
- The BPU 5545A is equipped with a recoil starter. Different extension plates provide a variety of operating widths.
- Comprehensive comfort features: e.g. low oil shut off and maintenance-free alternator.
- The large gasoline engine with its high reserve capacity ensures great efficiency and a long service life.
- A safety cut-out mechanism prevents the operator getting trapped between machine and an obstruction when moving backwards.
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BPU5545A TECHNICAL SPECIFICATIONS
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BPU5545A_Technical_specifications
Metric
Operating data
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| Operating weight |
340 kg |
| Centrifugal force |
55 kN |
| Base plate size (W x L) |
440 x 900 mm |
| Base plate thickness |
12 mm |
| Height (without guide handle) |
725 mm |
| Operating width (with extension plate) |
600 mm |
| Frequency |
69 Hz |
| Hand-arm vibrations |
1.5 m/s² |
| Advance travel max. (depending on soil & environmental factors) |
27 m/min |
| Surface capacity max. (depending on soil & environmental factors) |
852 m²/h |
| Transport height |
1,514 mm |
| Transport length |
1,048 mm |
| Transport width |
780 mm |
Engine / Motor
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| Engine / Motor type |
Air-cooled single cylinder, four-cycle Otto engine |
| Engine / Motor manufacturer |
Honda |
| Engine / Motor |
GX 390 |
| Displacement |
389 cm³ |
| Engine performance max. (DIN ISO 3046) |
6.4 kW |
| at rpm |
3,000 rpm |
| Operating performance max. (DIN ISO 3046) |
5.4 kW |
| at rpm |
2,600 rpm |
| Fuel consumption |
2 l/h |
| Tank capacity (fuel) |
6.1 l |
| Power transmission |
From drive motor via centrifugal clutch and V-belt direct to exciter. |
| Fuel type |
Gasoline |
| CO2 (NRSC) * |
743 g/kWh |
Imperial
Operating data
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| Operating weight |
750 lb |
| Centrifugal force |
12,364 lbf |
| Base plate size (W x L) |
17.3 x 35.4 in |
| Base plate thickness |
0.47 in |
| Height (without guide handle) |
28.3 in |
| Operating width (with extension plate) |
23.6 in |
| Frequency |
69 Hz |
| Hand-arm vibrations |
4.9 ft/s² |
| Advance travel max. (depending on soil & environmental factors) |
88.6 ft/min |
| Surface capacity max. (depending on soil & environmental factors) |
9,171 ft²/h |
| Transport height |
59.6 in |
| Transport length |
41.3 in |
| Transport width |
30.7 in |
Engine / Motor
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| Engine / Motor type |
Air-cooled single cylinder, four-cycle Otto engine |
| Engine / Motor manufacturer |
Honda |
| Engine / Motor |
GX 390 |
| Displacement |
23.7 in³ |
| Engine performance max. (DIN ISO 3046) |
6.4 kW |
| at rpm |
3,000 rpm |
| Operating performance max. (DIN ISO 3046) |
5.4 kW |
| at rpm |
2,600 rpm |
| Fuel consumption |
0.53 US gal/h |
| Tank capacity (fuel) |
6.4 US qt |
| Power transmission |
From drive motor via centrifugal clutch and V-belt direct to exciter. |
| Fuel type |
Gasoline |
| CO2 (NRSC) * |
743 g/kW-hr |
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