Overview
The Hamm HD90.4 is a vibratory smooth drum roller listed in the Heavy Equipment Hub equipment database with structured specifications for comparison, research, and machine selection. Key specification points include engine power of 118 hp, operating weight of 22,046 lb and fuel capacity of 47.6 gal. This model can be reviewed for equipment comparison, jobsite planning, fleet research, and specification-based machine selection. Use the full specifications table to compare the Hamm HD90.4 against similar vibratory smooth drum roller models by power, weight, capacity, dimensions, speed, and other technical values.
Key Specifications
Operating Weight
22,046.30
lb
Gross Power
118.10
hp
Overall Length
15.10
ft
Full Specifications
15 specs
Dimensions
Height to Top of Cab
9.81 ft / 2.99 m
Overall Length
15.10 ft / 4.60 m
Engine
--
Bomag BW 161 AD-5
Centrifugal Force - High
20,458 lb / 9,279 kg
Centrifugal Force - Low
19,109 lb / 8,668 kg
Drum Width
66.20 in / 1,681 mm
Engine Make
2349
Engine Model
BF4M2012C
Fuel Capacity
47.60 gal / 180.2 L
Gross Power
118 hp / 88.1 kW
Nominal Amplitude - High
0.10 in / 3 mm
Nominal Amplitude - Low
0.10 in / 3 mm
Operating Weight
22,046 lb / 10,000 kg
Power Measured @
2,300 rpm
Vibration Frequency 1
50 Hz
Frequently Asked Questions
What is the operating weight of the Hamm HD90.4? +
The Hamm HD90.4 has an operating weight of 22,046 lb (10,000 kg). This places it in a class suited for vibratory smooth drum roller applications where ground pressure and transport weight are key considerations.
How powerful is the Hamm HD90.4 engine? +
The Hamm HD90.4 produces 118 hp (88.1 kW) of engine power. This output is typical for its weight class and designed to handle demanding Vibratory Smooth Drum Roller work cycles efficiently.
How does the Hamm HD90.4 compare to similar Vibratory Smooth Drum Roller models? +
You can compare the Hamm HD90.4 side by side with any other model using the Heavy Equipment Hub compare tool. Key comparison points include engine power, operating weight, digging depth, hydraulic flow, and overall dimensions.