4045TF285 Constant Speed
- 4.5L PowerTech™
- 71 kW (95 hp)
Specifications
Emissions Certifications
General data
Model | 4045TF285 |
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Number of cylinders | 4 |
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Displacement – L (cu in) | 4.5 (275) |
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Bore and Stroke – mm (in) | 106 x 127 (4.17 x 5.0) |
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Engine Type | In-line, 4-cycle |
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Aspiration | Turbocharged |
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Length – mm (in) to rear of block | 867 (34.1) |
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Width – mm (in) | 680 (26.8) |
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Height – mm (in) | 1055 (41.5) |
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Weight, dry – kg (lb) | 491 (1082) |
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Performance data
Rated speed | 78 kW @ 1800 rpm |
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Engine power - Standby kW (hp) | 78 (105) |
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Engine power - Prime kW (hp) | 71 (95) |
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Generator efficiency % | 88-92 |
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Rated fan power | 4.7 (6.3) |
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Power factor | 0.8 |
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Calculated generator set output - Standby kVa (kWe) | 81-84 (65-67) |
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Calculated generator set output - Prime kVa (kWe) | 73-77 (59-61) |
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Features
- Cross flow head design that provides excellent breathing from a lower cost two-valve cylinder head
- The HPCR fuel system provides variable common-rail pressure, multiple injections, and higher injection pressures, up to 1600 bar (23,000 psi). It also controls fuel injection timing and provides precise control for the start, duration, and end of the injection.
- Fixed geometry turbochargers are sized for a specific power range and optimized to provide excellent performance across the entire torque curve. They are also designed to maximize fuel economy between the engine's rated speed and peak torque.
- In turbocharged engines, the air is pre-compressed. Due to the higher pressure, more air is supplied into the combustion chamber allowing a corresponding increase in fuel injection which results in greater engine output.
- The HPCR fuel system and engine control unit (ECU) allow for multiple fuel injections. The number of fuel injections, based on speed and load, help contribute to lower combustion temperatures, which reduce the formation of NOx and particulates. The multiple injection strategy also provides an added benefit of noise reduction.
- PowerTech E engines offer electronically controlled fuel systems with improved cold-start performance, precise engine speed control, torque curve shaping and more. Because these systems have less need for redundant sensors, add-on electronic governors, and shutdown devices - they result in a lower total installed cost.
- Self-adjusting poly-vee fan drive