IP Library Granted Patent US 10,396,659
Granted Patent B2
US 10,396,659 · App. 16/127,571 · Granted Aug 27, 2019

Load driving device, and lighting apparatus and liquid crystal display device using the same

Inventor: Sadakazu Murakami (Kyoto, JP)
Assignee: Rohm Co., Ltd.
H02M3/156G05F1/46H02J1/00H02M1/32H02M3/155H05B33/0815H05B33/0818H05B33/0827H05B37/02Y10T307/406
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Quick Facts
Patent No.
US 10,396,659
App. No.
16/127,571
Granted
Aug 27, 2019
Kind
B2
Abstract

A light emitting load driving device includes a plurality of constant current sources structured to be serially connected to a plurality of light emitting loads connected in parallel respectively, and structured to control a current flowing through the plurality of light emitting loads connected in parallel respective; a plurality of load connection terminals structured to connect the plurality of light emitting loads connected in parallel and the plurality of constant current sources respectively; a signal processing circuit structured to select and compare a lowest terminal voltage applied to the plurality of load connection terminals with a reference voltage, and output a comparison result; and a pulse width modulation control circuit structured to output a drive signal according to the comparison result, and structured to control a voltage output portion generating an output voltage provided to the plurality of light emitting loads connected in parallel respectively.

Claims (27)

1. A light emitting load driving device comprising:

a plurality of constant current sources structured to be serially connected to a plurality of light emitting loads connected in parallel respectively, and structured to control a current flowing through the plurality of light emitting loads connected in parallel;

a plurality of load connection terminals structured to be connected to the plurality of light emitting loads connected in parallel and the plurality of constant current sources respectively;

a control circuit structured to be controlled based on a plurality of terminal voltage applied to the plurality of load connection terminals and a reference voltage, and structured to control a voltage output portion generating an output voltage provided to the plurality of light emitting loads connected in parallel so that both of a lowest terminal voltage applied to the plurality of load connection terminals and the reference voltage are equalized with respect to each other.

2. The light emitting load driving device according to claim 1 , wherein the control circuit is structured to output a drive signal to the voltage output portion.

3. The light emitting load driving device according to claim 2 , wherein ends of the plurality of constant current sources are structured to be connected to ground respectively.

4. The light emitting load driving device according to claim 3 , wherein the drive signal is a pulse width modulation signal.

5. The light emitting load driving device according to claim 4 , wherein the plurality of constant current sources are structured to control the currents flowing through the plurality of light emitting loads connected in parallel respectively, and structured to control light emission volume of the plurality of light emitting loads connected in parallel.

6. The light emitting load driving device according to claim 5 , wherein the plurality of constant current sources are structured to have a plurality of light emitting adjust elements serially connected to the plurality of light emitting loads connected in parallel through the plurality of load connection terminals respectively, and structured to have a plurality of resistors serially connected to the plurality of light emitting adjust elements respectively.

7. The light emitting load driving device according to claim 6 , wherein the plurality of constant current sources have a plurality of amplifiers structured to be connected to a plurality of control terminals of the plurality of light emitting adjust elements respectively.

8. The light emitting load driving device according to claim 7 , wherein ends of the plurality of resistors are structured to be connected to ground respectively.

9. The light emitting load driving device according to claim 8 , wherein the voltage output portion is structured to have a constitution in which a coil, a rectifier element, and a smoothing capacitor are connected in series, and structured to generate the output voltage from a source voltage according to the drive signal.

10. The light emitting load driving device according to claim 9 , wherein the rectifier element is a diode.

11. The light emitting load driving device according to claim 9 , wherein the output voltage is structured to be generated at a connection point of the rectifier element and the smoothing capacitor.

12. The light emitting load driving device according to claim 11 , wherein at least one of the plurality of light emitting loads connected in parallel is an LED (Light Emitting Diode) that emits white light.

13. The light emitting load driving device according to claim 7 , wherein at least one of the plurality of light emitting adjust elements is an n-MOS transistor.

14. The light emitting load driving device according to claim 13 , wherein the control circuit is structured to select a lowest terminal voltage applied to the plurality of load connection terminals and compare the lowest terminal voltage to the reference voltage.

15. The light emitting load driving device according to claim 5 , wherein the control circuit is structured to control the voltage output portion to generate the output voltage greater than or equal to 12 V.

16. A portable device having the light emitting load driving device according to claim 5 .

17. An LCD (Liquid Crystal Display) having the light emitting load driving device according to claim 5 .

18. The light emitting load driving device according to claim 5 , wherein the reference voltage is structured to be set greater than or equal to 0.3V.

19. The light emitting load driving device according to claim 5 , wherein the plurality of constant current sources are structured to set the current flowing through the plurality of light emitting loads connected in parallel more than or equal to 1.5 mA respectively.

20. The light emitting load driving device according to claim 5 , wherein the output voltage is structured to be set to a voltage level that enables the plurality of light emitting loads connected in parallel which contain a row comprised of at least three light emitting elements in series to light.

21. The light emitting load driving device according to claim 5 , further comprising a current mirror circuit structured by at least two switching elements, and structured to generate the current flowing through the plurality of light emitting loads connected in parallel.

22. The light emitting load driving device according to claim 21 , wherein a voltage level of the output voltage is structured to be obtained by adding a highest drop voltage of the plurality of light emitting loads connected in parallel to a drop voltage of the plurality of constant current sources.

23. The light emitting load driving device according to claim 22 , wherein the voltage output portion is structured to have a constitution in which a coil, a rectifier element, and a smoothing capacitor are connected in series, and a constitution in which the coil and a switch are connected in series, and structured to generate the output voltage from a source voltage according to the drive signal.

24. The light emitting load driving device according to claim 23 , wherein the switch is an n-MOS transistor.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 11, 2018
From: MURAKAMI, SADAKAZU
To: ROHM CO., LTD.
Reel/Frame 046838/0399 →
Priority Claims (2)
JP 2003-192784 · Jul 7, 2003 · national
JP 2003-337344 · Sep 29, 2003 · national
Continuity (9)
Continuation 15924701 · Mar 19, 2018
Continuation 15348257 · Nov 10, 2016
Continuation 14454528 · Aug 7, 2014
Continuation 13952333 · Jul 26, 2013
Continuation 12731006 · Mar 24, 2010
Continuation In Part 12428338 · Apr 22, 2009
Continuation 11750894 · May 18, 2007
Continuation 10879315 · Jun 29, 2004
Related Publication 20190013730A1 · Jan 10, 2019