IP Library Granted Patent US 9,269,835
Granted Patent B2
US 9,269,835 · App. 14/245,282 · Granted Feb 23, 2016

Method and device for control of avalanche photo-diode characteristics for high speed and high gain applications

Inventor: Pavel Margulis (Ashdod, IL)
Assignee: Applied Materials Israel, Ltd.
H01L31/02027
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Quick Facts
Patent No.
US 9,269,835
App. No.
14/245,282
Granted
Feb 23, 2016
Kind
B2
Abstract

A device that may include A DC power supply coupled to a fixed current source; an avalanche photo-diode (APD); a DC voltage regulator that comprises a regulating transistor; wherein the DC voltage regulator is arranged to (a) maintain a regulated voltage at a fixed value, and (b) output the regulated voltage; and a temperature control module that is arranged to maintain a portion of the temperature control module at a fixed temperature; wherein the DC voltage regulator and the APD are electrically coupled in parallel to each other, so that a sum of currents that pass through the APD and the regulating transistor equals a fixed current supplied by the fixed current source; and wherein the portion of the temperature control module is thermally coupled to the DC voltage regulator and to the APD, and wherein APD and the regulating transistor are thermally coupled to each other.

Claims (24)

1. A device, comprising:

a DC power supply coupled to a fixed current source;

an avalanche photo-diode (APD);

a direct current (DC) voltage regulator that comprises a regulating transistor, arranged to maintain a regulated voltage at a fixed value over different APD currents; and

a temperature control module that is arranged to maintain a portion of the temperature control module at a fixed temperature;

wherein the DC voltage regulator and the APD are electrically coupled in parallel to each other, so that a sum of currents that pass through the APD and the regulating transistor equals a fixed current supplied by the fixed current source;

and wherein the portion of the temperature control module is thermally coupled to the DC voltage regulator and to the APD, and wherein the APD and the regulating transistor are thermally coupled to each other.

2. The device according to claim 1 wherein the APD and the regulating transistor are thermally coupled by being formed in a same die.

3. The device according to claim 2 wherein said same die is positioned above an electrical insulator that is electrically insulating and thermally conductive.

4. The device according to claim 1 wherein the APD is formed on an APD die, the regulating transistor is formed on a regulating transistor die and wherein the APD die and the regulating transistor die are positioned above an electrical insulator that is electrically insulating and thermally conductive.

5. The device according to claim 1 wherein the APD comprises an APD die, the regulating transistor comprises a transistor die; wherein the device further comprises a thermally coupling element; wherein the transistor die and the APD die are spaced apart from each other and are thermally coupled to each other by the thermally coupling element.

6. The device according to claim 1 wherein the portion of the temperature control module is a cooling plate of the temperature control module.

7. The device according to claim 1 further comprising: a filtering circuit that is coupled to a cathode of the APD; and a trans-impedance amplifier that is coupled between an anode of the APD and an output port of the device.

8. A method, comprising:

maintaining, by a direct current (DC) voltage regulator, a regulated voltage at a fixed value; wherein the DC voltage regulator comprises a regulating transistor;

outputting the regulated voltage to an avalanche photo-diode (APD) that is coupled in parallel to the regulating transistor;

providing, by a fixed current source, a fixed current to the APD and the regulating transistor so that a sum of currents that flow through the APD and the regulating transistor equals the fixed current; and

maintaining, by a temperature control module, a portion of the temperature control module at a fixed temperature; wherein the portion of the temperature control module is thermally coupled to the DC voltage regulator and to the APD, and wherein the APD and the regulating transistor belong to a thermally homogenous region of the device.

9. The method according to claim 8 wherein the APD and the regulating transistor are formed in a same die.

10. The method according to claim 8 wherein the APD and the regulating transistor are positioned above an electrical insulator that is electrically insulating and thermally conductive.

11. The method according to claim 8 wherein the APD comprises an APD die, the regulating transistor comprises a transistor die; wherein the transistor die and the APD die are spaced apart from each other and are thermally coupled to each other by a thermally coupling element.

12. The method according to claim 8 wherein the portion of the temperature control module is a cooling plate of the temperature control module.

13. The method according to claim 8 further comprising outputting, by the APD, an output current that is responsive to light impinged on the APD and to a gain of the APD.

14. The method according to claim 13 further comprising amplifying the output current generated by the APD by a trans-impedance amplifier that is coupled to an anode of the APD.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 5, 2014
From: MARGULIS, PAVEL
To: APPLIED MATERIALS ISRAEL, LTD., A CORPORATION OF THE STATE OF ISRAEL
Reel/Frame 032820/0006 →
Continuity (1)
Related Publication 20150287841A1 · Oct 8, 2015