IP Library Granted Patent US 9,091,777
Granted Patent B2
US 9,091,777 · App. 14/295,374 · Granted Jul 28, 2015

Input voltage modulator for radiation generator

Inventor: Matthieu Simon (Houston, TX)
Assignee: Schlumberger Technology Corporation
G01V5/12G01V13/00H01J35/14
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Quick Facts
Patent No.
US 9,091,777
App. No.
14/295,374
Granted
Jul 28, 2015
Kind
B2
Abstract

A well-logging tool may include a sonde housing and a radiation generator carried by the sonde housing. The radiation generator may include a target carried by the generator housing, a charged particle source carried by the generator housing to direct charged particles at the target, and at least one voltage source coupled to the charged particle source. The at least one voltage source may include a voltage ladder comprising a plurality of voltage multiplication stages coupled to the charged particle source, and an input voltage modulator coupled to the voltage ladder and supplying an amplitude modulated signal thereto. The well-logging tool may further include at least one radiation detector carried by the sonde housing.

Claims (43)

1. A well-logging tool comprising:

a sonde housing;

a radiation generator carried by said sonde housing and comprising

a generator housing,

a target carried by said generator housing,

a charged particle source carried by said generator housing to direct charged particles at said target, and

at least one voltage source coupled to said charged particle source, said at least one voltage source comprising

a voltage ladder comprising a plurality of voltage multiplication stages coupled to the charged particle source, and

an input voltage modulator coupled to said voltage ladder and supplying an amplitude modulated signal thereto; and

at least one radiation detector carried by said sonde housing.

2. The well-logging tool of claim 1 wherein said voltage ladder generates a variable control voltage to selectively change an emission characteristic of the charged particle source based upon the amplitude modulated signal.

3. The well-logging tool of claim 1 wherein said at least one voltage source further comprises a rectifier coupled downstream from said voltage ladder.

4. The well-logging tool of claim 3 wherein said at least on voltage source further comprises an envelope detector coupled between said voltage ladder and said rectifier.

5. The well-logging tool of claim 1 further comprising:

at least voltage sensor coupled to said voltage ladder; and

a processor to control said input voltage modulator based upon said at least one voltage sensor.

6. The well-logging tool of claim 1 wherein said charged particle source comprises an electron stream generator.

7. The well-logging tool of claim 1 wherein said charged particle source comprises an ion stream generator.

8. The well-logging tool of claim 1 wherein said voltage ladder comprises a Cockcroft-Walton voltage ladder.

9. A radiation generator comprising:

a generator housing;

a target carried by said generator housing;

a charged particle source carried by said generator housing to direct charged particles at said target; and

at least one voltage source coupled to said charged particle source, said at least one voltage source comprising

a voltage ladder comprising a plurality of voltage multiplication stages coupled to the charged particle source, and

an input voltage modulator coupled to said voltage ladder and supplying an amplitude modulated signal thereto.

10. The radiation generator of claim 9 wherein said voltage ladder generates a variable control voltage to selectively change an emission characteristic of the charged particle source based upon the amplitude modulated signal.

11. The radiation generator of claim 9 wherein said at least one voltage source further comprises a rectifier coupled downstream from said voltage ladder.

12. The radiation generator of claim 11 wherein said at least on voltage source further comprises an envelope detector coupled between said voltage ladder and said rectifier.

13. The radiation generator of claim 9 further comprising:

at least voltage sensor coupled to said voltage ladder; and

a processor to control said input voltage modulator based upon said at least one voltage sensor.

14. The radiation generator of claim 9 wherein said charged particle source comprises an electron stream generator.

15. The radiation generator of claim 9 wherein said charged particle source comprises an ion stream generator.

16. The radiation generator of claim 9 wherein said voltage ladder comprises a Cockcroft-Walton voltage ladder.

17. A method for making a radiation generator comprising:

positioning a target and a charged particle source in a generator housing so that the charged particle source directs charged particles at the target; and

coupling at least one voltage source to the charged particle source, the at least one voltage source comprising

a voltage ladder comprising a plurality of voltage multiplication stages coupled to the charged particle source, and

an input voltage modulator coupled to the voltage ladder and supplying an amplitude modulated signal thereto.

18. The method of claim 17 wherein the voltage ladder generates a variable control voltage to selectively change an emission characteristic of the charged particle source based upon the amplitude modulated signal.

19. The method of claim 17 wherein the at least one voltage source further comprises a rectifier coupled downstream from the voltage ladder.

20. The method of claim 19 wherein the at least on voltage source further comprises an envelope detector coupled between the voltage ladder and the rectifier.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 20, 2014
From: SIMON, MATTHIEU
To: SCHLUMBERGER TECHNOLOGY CORPORATION
Reel/Frame 033347/0811 →
Continuity (2)
Provisional Application 61917512 · Dec 18, 2013
Related Publication 20150168593A1 · Jun 18, 2015