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Tigercat · Forwarder

Tigercat 1075C

Heavy 20-tonne-class forwarder at ~27.5 t machine weight, supported through Onetrak.

5 published specificationsAustralian representation: Onetrak

Positioning

Where this machine sits

The 1075C is a 20-tonne-payload forwarder that weighs roughly 27.5 tonnes — notably heavier than others in the same payload class. That is a design choice rather than an inefficiency: mass in a forwarder buys stability under load, durability and traction, and it costs ground pressure and transport.

It is supported in Australia through Onetrak, which is a material part of the ownership case at this capital level. Parts availability and technician access convert directly into production days in a two-machine crew, and the distribution arrangement belongs in the comparison alongside the specification.

Published figures

Specifications

Indicative published manufacturer and distributor information. Confirm every figure, lift chart and hydraulic requirement with the manufacturer or authorised dealer before purchase.

Payload class20 t
Machine weight~27.5 t
Peak engine power~230 kW depending on emissions configuration
Standard crane reach8.5 m
Optional cranesup to ~195 kNm gross lift torque

Interpretation

What the published figures actually constrain

A specification table tells you what the machine is. This is what each of those numbers means for the work you would put it to.

Published figureWhat it means commercially
~27.5 t machine weight at 20 t payload classHeavier than comparable-payload machines. That buys stability and durability, and it costs ground pressure, transport cost and suitability for soft or sensitive ground.
~230 kW peak power depending on emissions configurationThe configuration matters for both performance and servicing. Confirm which emissions configuration is being offered and what fuel and fluid requirements come with it.
8.5 m standard crane reach, optional cranes to ~195 kNmStandard reach suits typical extraction geometry; the optional crane capacities address heavier material at reach. Specify against how far and how heavy, not against the catalogue maximum.
Onetrak Australian representationThe practical support question. Ask what parts are held in Australia, where, and what response time is guaranteed in writing — this is a production input, not an after-sales consideration.

Design intent

Built heavy for durability under load

~27.5 t at a 20 t payload class is notably heavier than comparable machines. Mass in a forwarder buys stability under load, durability and traction, and it costs ground pressure and transport — a deliberate trade rather than an inefficiency.

Sustained duty it is built around

  • Rough ground under sustained load
  • Firm terrain with long hauls
  • Operations prioritising durability over flotation
  • Continuous extraction duty

Commercial fit

Where this machine earns its cost

Right machine when

  • Demanding ground where machine robustness matters more than machine weight
  • Long extraction distances with large stems
  • Regions inside Onetrak's branch network, where parts and technician access are strongest

Wrong machine when

  • Soft or wet soils where 27.5 t of machine weight before payload becomes a compliance problem
  • Thinning work

Before you sign

Verify these for this specific model

Beyond the standard buying criteria for the class, these are the questions this machine in particular raises.

  • Machine weight against your soil bearing capacity in the wet season
  • Emissions configuration, since peak power varies with it
  • Distance to the nearest Onetrak branch holding forwarder parts

Running cost

What drives the cost of owning this machine

The additional mass has a real operating cost in fuel and transport, and a real return in durability and stability under load. Which side wins depends on terrain: on firm ground with long hauls the machine's robustness earns; on soft or sensitive ground the ground-pressure penalty is the dominant factor.

Support arrangements affect the cost of ownership as much as any specification in a two-machine crew. Extraction downtime stops the harvester too once the coupe fills, so response time has a multiplier attached to it.

As with any forwarder, haul distance sets throughput. Model tonnes per shift at your actual extraction distances rather than at a nominal figure before comparing machines.

In practice

Ownership considerations in Australian conditions

Weigh the mass against your ground

27.5 tonnes is an advantage on firm terrain and a liability on soft or compaction-sensitive sites. Where further rotations follow, confirm what ground pressure the estate will accept before specifying.

Confirm the emissions configuration and what it requires

Power is quoted as depending on emissions configuration. Establish which is being supplied, and what fuel quality, fluids and servicing that configuration requires in your operating area.

Put the support arrangement in writing

Ask what is held in Australian stock, where, and what response is guaranteed. In an interdependent crew this is worth quantifying as expected downtime hours against your hourly production value.

Questions

Common questions about this machine

Why is this machine heavier than other 20 tonne forwarders?

Mass in a forwarder is largely a durability and stability decision. A heavier structure carries load more stably, tolerates rough ground better and generally lasts longer under sustained duty. The cost is ground pressure, fuel and transport — so the extra weight is an advantage on firm terrain with long hauls and a disadvantage on soft or compaction-sensitive sites.

How much does the Australian distribution arrangement matter?

At this capital level, a great deal. In a two-machine cut-to-length crew, extraction downtime stops the harvester too once the coupe fills, so a day waiting on a part costs more than a day of forwarder production. Ask what parts are held in Australia and where, and what response time is guaranteed in writing — then price that difference into the machine comparison.

Should I take the standard 8.5 m crane or an option?

Standard reach suits typical extraction geometry, and the optional higher-capacity cranes exist for heavier material at reach rather than for reach alone. Specify against two measurements from your own sites: how far material sits from the extraction track, and how heavy the pieces are at that distance. Capability beyond both is cost carried on every load.

Same class

Alternatives to compare against

Other forwarders covered in this guide.

In service

Fleet packages that use this class