IP Library Granted Patent US 10,822,906
Granted Patent B2
US 10,822,906 · App. 16/617,467 · Granted Nov 3, 2020

Subsea electric power and communication module

Inventors: Stig Fredrik Mathisen (Kongsberg, NO); Heyn Halfdan Magnus (Kongsberg, NO); Vidar Nicolaysen (Kongsberg, NO); Egil Mulstad Skrivervik (Krogstadelva, NO)
Assignee: FMC Kongsberg Subsea AS
E21B33/0355H01R13/523H05K5/0017H05K5/0069H05K5/0247H05K5/04
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Quick Facts
Patent No.
US 10,822,906
App. No.
16/617,467
Granted
Nov 3, 2020
Kind
B2
Abstract

The present invention relates to a subsea electric power and communication module ( 10 ) for controlling a subsea module ( 2 ) of a subsea oil/gas installation ( 1 ). The module ( 10 ) comprises a housing ( 20 ), a first outer connector ( 30 ) provided outside of the housing ( 20 ), where the first outer connectors ( 30 ) is configured to be connected to a subsea module ( 2 ), and a control device ( 80 ) comprising electric power supply circuitry ( 80 a ) and/or communication circuitry ( 80 b ) 40 b provided within the pressure sealed compartment ( 25 ). A penetrator device ( 50 ) is connected between the first outer connector ( 30 ) and the control device ( 80 ). The penetrator device ( 50 ) comprises a printed circuit board ( 51 ), a first sealing device ( 53 ) and a second sealing device ( 56 ) for sealing off a first area (A 53 ) and a second area (A 56 ) of the printed circuit board ( 51 ). The first area (A 53 ) is faced towards the main compartment ( 25 ), while the second area (A 56 ) is faced towards a pressure balanced compartment ( 46 ) between the pressure sealed main compartment ( 25 ) and an outside environment (OE) of the housing ( 20 ). A first inner connector (C 80 ) is connected to the first area (A 53 ) of the printed circuit board ( 51 ), where the first inner connector (C 80 ) is further connected to the control device ( 80 ). A second inner connector (C 3 x ) is connected to the second area (A 56 ) of the printed circuit boar ( 51 ), where the second inner connector (C 3 x ) is further connected to the outer connector ( 30 ). Conductive tracks ( 52 a ) are provided on the printed circuit board ( 51 ) between the first inner connector (C 80 ) and the second inner connector (C 3 x ).

Claims (35)

1. A subsea electric power and communication module for controlling a subsea module of a subsea oil/gas installation, the subsea electric power and communication module comprising:

a housing comprising a pressure sealed main compartment;

a first outer connector provided outside of the housing, the first outer connector being configured to be connected to a subsea module;

a control device comprising electric power supply circuitry and/or communication circuitry provided within the pressure sealed main compartment;

a first penetrator device connected between the first outer connector and the control device;

wherein the first penetrator device comprises:

a printed circuit board;

a first sealing device for sealing off a first area of the printed circuit board, the first area being faced towards the main compartment;

a first inner connector connected to the first area of the printed circuit board, the first inner connector being connected to the control device;

a second sealing device for sealing off a second area of the printed circuit board, the second area being faced towards a pressure balanced compartment between the pressure sealed main compartment and an environment outside of the housing;

a second inner connector connected to the second area of the printed circuit board, the second inner connector being connected to the first outer connector; and

conductive tracks provided on the printed circuit board and connecting the first inner connector and the second inner connector.

2. The subsea electric power and communication module according to claim 1 , wherein:

the housing comprises a main housing unit and a connector housing unit;

the first penetrator device is provided in a compartment between the main housing unit and the connector housing unit; and

the first outer connector is provided through the connector housing unit.

3. The subsea electric power and communication module according to claim 1 , where the main housing unit is made of aluminum or an aluminum alloy.

4. The subsea electric power and communication module according to claim 1 , further comprising:

a second penetrator device connected between a second outer connector and the control device; and

a pressure alignment channel provided through the housing between the pressure balanced compartment of the first penetrator device and a pressure balanced compartment of the second penetrator device.

5. The subsea electric power and communication module according to claim 1 , wherein the first penetrator device comprises a leakage sensor provided in the pressure balanced compartment, the leakage sensor is being electrically connected to the control device.

6. The subsea electric power and communication module according to claim 1 , wherein the first penetrator device comprises:

a first intermediate sealing device for sealing off a first intermediate area of the printed circuit board outside of the first area, the first intermediate area being faced towards a first intermediate compartment forming an additional barrier between the pressure sealed main compartment and the outside environment; and

a pressure sensor for sensing the pressure in the first intermediate compartment, the pressure sensor is being electrically connected to the control device.

7. The subsea electric power and communication module according to claim 6 , where the first penetrator device comprises:

a second intermediate sealing device for sealing off a second intermediate area of the printed circuit board outside of the second area, the second intermediate area being faced towards a second intermediate compartment forming an additional barrier between the pressure sealed main compartment and the outside environment.

8. A control system for controlling a subsea module of a subsea oil/gas installation, the control system comprising:

a connection interface provided on the subsea module;

a topside control module;

an umbilical connected between the topside control module and the connection interface; and

a first subsea electric power and communication module according to claim 1 which is releasably connected to the connection interface.

9. The control system according to claim 8 , further comprising:

a further subsea module having a further connection interface; and

a further subsea electric power and communication module connected to the further connection interface;

where the subsea electric power and communication module is connected to the further subsea electric power and communication module for providing communication between the topside control module and the further subsea electric power and communication module via the subsea electric power and communication module.

Assignments (2)
CHANGE OF NAME Recorded Jun 17, 2025
From: FMC KONGSBERG SUBSEA AS
To: TECHNIPFMC NORGE AS
Reel/Frame 071648/0304 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 26, 2019
From: MATHISEN, STIG; MAGNUS, HEYN HALFDAN; NICOLAYSEN, VIDAR; SKRIVERVIK, EGIL MULSTAD
To: FMC KONGSBERG SUBSEA AS
Reel/Frame 051139/0405 →
Priority Claims (1)
NO 20170965 · Jun 14, 2017 · national
Continuity (1)
Related Publication 20200182003A1 · Jun 11, 2020