Introduction
Kvenna’s Hydraulic Leveling Jack provides compact, robust and cost-efficient hydraulic elevation for subsea structures, ensuring safe alignment and installation of critical equipment under demanding conditions.
Kvenna’s Hydraulic Leveling Jack provides compact, robust and cost-efficient hydraulic elevation for subsea structures, ensuring safe alignment and installation of critical equipment under demanding conditions.
More about Hydraulic Leveling Jack
When offshore installations require accurate leveling prior to tie-in or structural deployment, our Hydraulic Leveling Jack (K-HLJ series) is the engineered solution. Developed for depths down to 3 000 metres, it is designed for temporary elevation of subsea structures such as manifolds, pig-launcher systems and tie-in frames. The compact housing accommodates fine control over alignment forces, enabling smooth setup and minimizing costly installation errors.
Production models range from the K-HLJ 119/100™ up to the K-HLJ 300/200™, delivering design piston forces between 237 kN and 1 484 kN. With stroke lengths from 100 mm to 200 mm and robust materials like 34CrNiMo6 and S165M steel, the jacks are built to deliver long-term reliability and precisely controlled motion under pressure.
Beyond performance, this product offers practical advantages: reduced alignment forces mean fewer auxiliary systems; a compact design simplifies deployment logistics; and cost-effective construction ensures value for operators. With the Hydraulic Leveling Jack as part of Kvenna’s product suite, customers benefit from innovative engineering backed by manufacturing and subsea installation competence.
Whether lifting heavy subsea modules or performing fine-tuning of structural components on the seabed, Kvenna’s Hydraulic Leveling Jack delivers the alignment precision and operational confidence needed in today’s challenging marine and offshore environments.


For engineering enquiries, please contact:
Erlend Nybøen Rødal | Sales Manager Product & Engineering
P: (+47) 971 77 304 | E: