IP Library Granted Patent US 8,686,655
Granted Patent B2
US 8,686,655 · App. 13/392,050 · Granted Apr 1, 2014

Lighting circuit, lamp, and illumination apparatus

Inventors: Tatsumi Setomoto (Osaka, JP); Tamotsu Ando (Osaka, JP); Kazushige Sugita (Hyogo, JP)
Assignee: Panasonic Corporation
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Quick Facts
Patent No.
US 8,686,655
App. No.
13/392,050
Granted
Apr 1, 2014
Kind
B2
Abstract

A lighting circuit that is for a lamp including an LED as a light source and that includes a resonant circuit that can be designed with ease. A lighting circuit 11 is for a lamp including a light-emitter 39 composed of an LED as a light source. The lighting circuit comprises: a rectifier circuit 31 that rectifies power supplied from an alternating current power supply via a base 28 ; an inverter circuit 33 connected to an output side of the rectifier circuit 31 and outputting alternating power to the LED; and a resonant circuit 35 connected to an output side of the inverter circuit 33 , wherein the resonant circuit 35 includes an inductor L and a capacitor C 1 and is connected in series with the light-emitter 39 , the inductor L and the capacitor C 1 being connected in series.

Claims (28)

1. A lighting circuit that is for a lamp including a light-emitter, the light-emitter including a plurality of Light Emitting Diodes (LEDs) in connected state, the lighting circuit comprising:

a rectifier circuit that rectifies power supplied from an alternating current power supply;

an inverter circuit connected to an output side of the rectifier circuit; and

a resonant circuit connected to an output side of the inverter circuit, wherein

the resonant circuit includes an inductor and a capacitor and is connected in series with the LEDs, the inductor and the capacitor being connected in series,

the lighting circuit further comprises another capacitor, differing from the capacitor included in the resonant circuit, that is connected in parallel with the LEDs, and

at least one of electronic components composing the rectifier circuit, the inverter circuit, and the resonant circuit has a withstand voltage that is lower than a voltage stepped up by the resonant circuit when disconnection occurs within the light-emitter.

2. The lighting circuit of claim 1 , wherein

the inverter circuit is a half-bridge inverter including one pair of switching elements and one pair of coupling capacitors, and

the capacitor included in the resonant circuit is one coupling capacitor among the pair of coupling capacitors included in the inverter circuit.

3. An illumination apparatus comprising:

a light-emitter including a plurality of LEDs in connected state; and

a lighting circuit that causes the LED to light, wherein

the lighting circuit comprises the lighting circuit of claim 1 .

4. The lighting circuit of claim 1 , wherein

the inverter circuit is a half-bridge inverter including one pair of switching elements and one pair of coupling capacitors, and

the capacitor included in the resonant circuit is one coupling capacitor among the pair of coupling capacitors included in the inverter circuit.

5. An illumination apparatus comprising:

a lamp including a light-emitter, the light-emitter including a plurality of LEDs in connected state; and

a lighting circuit that causes the LEDs to light, wherein

the lighting circuit comprises the lighting circuit of claim 1 .

6. A lighting circuit for a lamp including a light-emitter having a plurality of Light Emitting Diodes (LEDs) in a connected state, the lighting circuit comprising:

a rectifier circuit that can rectify power supplied from an alternating current power supply;

an inverter circuit connected to an output side of the rectifier circuit; and

a resonant circuit connected to an output side of the inverter circuit, wherein

the resonant circuit includes an inductor and a capacitor connected in series with the LEDs, the inductor and the capacitor being also connected in series,

the lighting circuit further comprises another separate capacitor, differing from the capacitor included in the resonant circuit, that is connected in parallel with the LEDs and is primarily activated in the lighting circuit when a disconnection occurs, and

at least one of electronic components composing the rectifier circuit, the inverter circuit, and the resonant circuit has a withstand voltage that is lower than a voltage stepped up by the resonant circuit when disconnection occurs within the light-emitter.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 26, 2012
From: SETOMOTO, TATSUMI; ANDO, TAMOTSU; SUGITA, KAZUSHIGE
To: PANASONIC CORPORATION
Reel/Frame 028108/0144 →
Priority Claims (1)
JP 2010-164824 · Jul 22, 2010 · national
Continuity (1)
Related Publication 20120153854A1 · Jun 21, 2012