Typical Project Configuration · Customizable Range · 1200kW

1200 kW Weichai + STAMFORD Containerized Diesel Generator

This 1.2 MW-class containerized generator is designed for major load takeover, expansion and future paralleling. The enclosure is matched to engine heat rejection, airflow resistance, exhaust backpressure, transport weight and maintenance space.

1200 kWWeichai engineSTAMFORD alternatorHigh-power container

Product photos · Typical configuration

Configuration overview

Reference 1200 kW containerized generator with Weichai engine and STAMFORD alternator, covering large-load takeover, cooling, logistics, interfaces and acceptance.

Reference output
1200 kW / 1500 kVA @ PF 0.8
Package format
Outdoor pre-integrated container station
Engine platform
Weichai
Alternator
STAMFORD
Frequency and speed
50Hz / 1500rpm · 60Hz / 1800rpm
Electrical output
Three-phase, four-wire · Project voltage

This page presents one typical project configuration to explain output, brand combination, package format and system interfaces. The same range covers additional outputs and options; the final engine model, rating, voltage, controller, tank, dimensions and supply scope are defined for the project.

Applications

Recommended applications and package choice

Recommended for

For expansion, major load takeover and future paralleling

Suitable for large manufacturing, mining auxiliaries, campus-level critical loads and phased expansion with interfaces reserved for paralleling, distribution and remote monitoring.

Consider another package

A high-power container cannot reuse smaller-set airflow and logistics assumptions

Cooling volume, pressure loss, attenuation, enclosure weight, road access and lifting must be recalculated for the final engine and alternator models.

Typical application
Large manufacturing and expansion
Typical application
Campus-level critical-load takeover
Typical application
Future paralleling and phased capacity

Core configuration

Four core configurations behind reliable operation

01

Engine and cooling

The engine and radiator are matched to output, duty and ambient temperature, with attention to load response, service access and local support.

02

Alternator

The alternator is selected for load characteristics, excitation, insulation and temperature rise; PMG can be specified for demanding motors or UPS loads.

03

Controls and protection

The controller can integrate ATS, paralleling and remote communications together with breaker, emergency stop, charging and protection functions.

04

Structure and interfaces

The base, mounts, grounding, cable exit and lifting interfaces form the package structure; container versions also integrate airflow, exhaust, weatherproof doors and service space.

Key parameters

Parameters used for project selection

These are the parameters that shape selection and interfaces. Fuel consumption, noise and dimensions are supplied after the engine model, load factor and site environment are defined.

Reference output1200 kW / 1500 kVA @ PF 0.8
Rating basisPrime/standby rating confirmed against the final engine model, ISO 8528 conditions and project duty
Frequency / speed50 Hz / 1500 rpm or 60 Hz / 1800 rpm
Rated voltage380 / 400 / 415 / 440 / 480 V; other voltages by project
Phase / power factorThree-phase, four-wire; reference PF 0.8
Control systemDSE / ComAp / SmartGen selected for ATS, paralleling and communications
Cooling and environmentContainer airflow, resistance and 40°C/50°C ambient capability verified by heat balance
Fuel autonomyBase tank, day tank or bulk storage sized from target runtime and usable fuel volume

Quality and delivery

Delivery evidence from components and structure to testing

01

Nameplates and BOM

Engine, alternator, controller and breaker brands, models and serial information are listed in the technical and delivery documents.

02

Structure and workmanship

Base steel, welds, fasteners, mounts and coating are included in manufacturing inspection; container packages also cover doors, hinges, locks, seals and lifting points.

03

Cooling and electrical

Radiator, airflow, wiring terminations, grounding, protection and safety separation support loaded stability and long-term serviceability.

04

Factory-test records

Factory records can cover starting, no-load and staged-load operation, voltage, frequency, alarms and protection, with witnessed FAT available by project.

Project configuration

Optional systems and project inputs

Optional systems

  • ATS transfer and low-voltage distribution
  • Paralleling, N+1 and future expansion
  • Base tank, day tank and automatic transfer
  • Remote monitoring, communications and records
  • Breaker, charger, heaters and spares package
  • Special voltage, hot/high-altitude and corrosion protection

Information needed for an accurate proposal

  • Critical-load list, maximum simultaneous load and starting sequence
  • Prime/standby duty and expected annual operating hours
  • Country, frequency, voltage, grounding and grid boundary
  • Temperature, altitude, dust, salt exposure and noise target
  • Fuel runtime, refueling route and fire requirements
  • Transport, lifting, foundation, installation and FAT/SAT responsibility

Ask an engineer to verify this package against the real loads

Provide the country and city, load list, frequency, voltage, duty, installation environment and required delivery. A HOHANK engineer will verify output, component selection, interfaces and the supply boundary.

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