Kongsberg Lands Full-Ship Systems Package for Solstad/SBM’s 4,000m Deepwater Newbuild

Kongsberg Maritime has secured a broad integrated-systems contract for the new multi-purpose deepwater installation and construction vessel being built for the 50.1% Solstad Offshore / 49.9% SBM Offshore joint venture at CIMC Raffles’ Haiyang base in China. The 132.6-meter vessel is scheduled for delivery in the first half of 2029 and is designed for FPSO installation, subsea construction, SURF work, mooring installation and IMR operations in water depths of up to 4,000 meters. Kongsberg’s package reaches well beyond bridge electronics, combining dynamic positioning, thruster control, propulsion, switchboards, generators, propulsion motors, battery energy storage, automation and heavy deck machinery. It will also include what Kongsberg expects to be the world’s largest anchor-handling winch, its first anchor-handling application of the new XT140 permanent-magnet motor, and handling equipment capable of working with chains up to 220 mm.

Deepwater Installation Newbuild

Operator Impact Snapshot

System Integration
HIGH

One supplier reaches from the bridge to the stern

Kongsberg's scope connects dynamic positioning, propulsion, thruster control, energy storage, switchboards, automation and deck machinery rather than treating each system as a separate equipment island.

Mooring Installation
HIGH

220 mm chain handling moves the vessel into heavy territory

Shark jaws and tow pins are being designed around chains up to 220 mm, while the winch package includes what is expected to become the world's largest anchor-handling winch.

Subsea Capability
HIGH

4,000-meter operations broaden the addressable project range

The vessel is designed for shallow and deepwater work including subsea installation, SURF, FPSO mooring, IMR and related construction activities at water depths reaching 4,000 meters.

Commercial Backlog
HIGH

A 14-year charter sits behind the newbuild

SBM Offshore has committed to an initial 14-year charter with at least 270 utilization days annually. Additional annual utilization can be exercised and the overall arrangement carries options extending another 11 years.

Lifecycle Technology
WATCH

The equipment contract can extend far beyond delivery

Kongsberg says the integrated package creates opportunities for lifecycle support, remote monitoring and service agreements after the vessel enters operation in 2029.

4,000m
Maximum operating water depth stated by CIMC Raffles
500t
Active-heave-compensated main crane specified for the vessel
220mm
Maximum chain size for Kongsberg shark jaws and tow pins
14 Yr
Initial SBM Offshore charter commitment after delivery
Integrated Vessel Architecture

The Kongsberg Package Reaches Across Six Operating Layers

The significant part of the award is not any single component. Propulsion, positioning, power and deck machinery are being designed to operate as a coordinated vessel system.

Operating Layer Equipment / System Operational Function Integration Point Supply Position
Dynamic Positioning DP system and thruster control Maintains vessel position during mooring installation, ROV work, lifting and subsea construction. Continuously coordinates propulsion demand with available thruster and power capacity. KONGSBERG
Propulsion Twin CPP shaftlines, azimuth thrusters, rudders and complete thruster package Transit propulsion, stationkeeping and high-thrust offshore maneuvering. Linked directly with DP and power-management functions. KONGSBERG
Power & Energy Switchboards, generators, propulsion motors and battery energy storage Supplies propulsion, deck machinery, hotel and mission loads. Battery and generation can respond to changing peak loads from DP, winches and offshore operations. INTEGRATED
Anchor Handling High-capacity anchor-handling winches, shark jaws and tow pins Mooring installation with chains up to 220 mm. Winch operation is coordinated with vessel energy, automation, propulsion and DP systems. KONGSBERG / IP HUSE
Heavy Lifting Winches Two heavy-duty active-heave-compensated lifting winches Compensates for vessel motion while handling heavy equipment through the water column. Adds another rapidly changing load to the integrated vessel power and control architecture. KONGSBERG
ROV Handling Newly developed low-tilt ROV launch and recovery system Deployment and recovery of remotely operated subsea vehicles. Supports subsea operations alongside vessel positioning and deck-control systems. KONGSBERG
Bridge & Automation Navigation, bridge and automation systems Provides the crew with vessel, navigation and machinery control. Brings multiple mission-critical systems into a coordinated operational environment. INTEGRATED
Primary Mission Crane 500t AHC crane Heavy subsea and offshore construction lifting. A major vessel electrical and operational load, but the crane itself is separate from the announced Kongsberg package. VESSEL EQUIPMENT

Normand Installer

Delivered2006
Length123.65 m
Beam28 m
Main Crane250 t
Accommodation100
Published DP ClassDP3
VS

2029 Newbuild

Target DeliveryH1 2029
Length132.6 m
Beam32 m
Main Crane500 t AHC
Accommodation100
Published DP ClassDP2
The DP notation is worth noticing. The existing Normand Installer is published by Solstad as DP3, while CIMC Raffles lists the new vessel as DP2. That does not make the new vessel less capable overall. The designs target different technical and redundancy requirements, and the newbuild adds materially greater crane capacity, wider beam, 4,000-meter working capability, battery storage and a much more integrated handling architecture.
Interactive Offshore Power Model

DP, Winch, Crane & Battery Peak-Load Calculator

Test an offshore installation scenario where dynamic positioning, deck machinery, lifting and subsea systems demand power at the same time, then calculate the battery capacity needed to cover the peak.

Why this matters for an integrated vessel: anchor handling can increase propulsion and winch demand at the same moment, while DP attempts to maintain position. Battery storage and coordinated energy management can help absorb short power peaks without sizing every generator around the maximum theoretical simultaneous load.
Total Peak Vessel Load 0 MW
Usable Generator Capacity 0 MW
Peak-Shaving Requirement 0 MW
Battery Power Available 0 MW
Battery Energy Required 0 kWh
Battery Runtime at Required Load 0 min
Generator Utilization Before Battery 0%
Power Margin After Battery 0 kW

Simultaneous Offshore Load Stack

The bars show the individual loads contributing to the entered installation or anchor-handling operation.

Base / Auxiliary
0 kW
Propulsion + DP
0 kW
Anchor Winch
0 kW
Crane / Lifting
0 kW
ROV / Subsea
0 kW
Integrated Power Signal
Calculating...

Peak Load 0 MW
This is an illustrative engineering screening tool, not a model of the actual Solstad/SBM vessel electrical system. Kongsberg has confirmed that the newbuild will include generators, propulsion motors, battery energy storage, DP, propulsion and high-capacity deck machinery, but detailed component power ratings and battery capacity have not been publicly disclosed. Replace all default inputs with project-specific load data for engineering use.
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