Solid state lamp using light emitting strips
In one embodiment, an LED lamp has a generally bulb shape. The LEDs are low power types and axe encapsulated in thin, narrow, flexible strips. The LEDs are connected in series in the strips to drop a desired voltage. The strips are affixed to the outer surface of a bulb form to provide structure to the lamp. The strips are connected in parallel to a power supply, which may be housed in the lamp. Since many low power LEDs are used and are spread out over a large surface area, there is no need for a large metal heat sink. Further, the light emission is similar to that of an incandescent bulb. In other embodiment, there is no bulb form and the strips are bendable to have a variety of shapes. In another embodiment, a light sheet is bent to provide 360 degrees of light emission. Many other embodiments are described.
1. A solid state lamp comprising:
one or more strips, each of the strips comprising first and second electrical contacts at opposing ends of the strip and one or more light emitting diodes (LEDs) operatively interconnected with the first and second electrical contacts and configured to emit light during operation;
a base structure having first and second electrical connection locations operatively connected, respectively, with the first and second electrical contacts of the strips and configured to provide electrical power to the one or more strips; and
a connector affixed to the base structure and configured to operatively connect the base structure to an external power source,
wherein the first electrical connection location is disposed proximate the connector and the second electrical connection location is disposed distal of the connector.
2. The solid state lamp of claim 1 , wherein the one or more strips are shaped to mimic the appearance of filaments in an incandescent light bulb during operation.
3. The solid state lamp of claim 1 , further comprising a bulb extending from the connector and surrounding the one or more strips and the base structure.
4. The solid state lamp of claim 3 , wherein the bulb is substantially transparent.
5. The solid state lamp of claim 1 , wherein each strip is configured to emit light around an axis of the strip.
6. The solid state lamp of claim 1 , wherein the first and second electrical contacts of each strip are located at opposite ends of the strip.
7. The solid state lamp of claim 1 , wherein each of the one or more strips further comprises a phosphor coating covering the one or more LEDs and the one or more LEDs are configured, during operation, to emit light towards the phosphor and the phosphor is configured to convert light received from the one or more LEDs into converted light.
8. The solid state lamp of claim 1 , wherein the one or more LED strips are electrically connected in parallel.
9. The solid state lamp of claim 1 , wherein the base structure comprises a transparent material.
10. The solid state lamp of claim 1 , wherein the one or more strips are electrically connected in series.
11. The solid state lamp of claim 1 , wherein the one or more strips extend along a straight line from the first electrical contact to the second electrical contact.
12. The solid state lamp of claim 1 , wherein the base structure comprises a wire frame that includes the first and second electrical connection locations.
13. The solid state lamp of claim 1 , wherein the connector comprises a screw socket connector or bayonet socket connector.
14. The solid state lamp of claim 1 , wherein the connector is an Edison-type connector.
15. The solid state lamp of claim 1 , wherein the connector is configured for connection to a socket by rotation about a connector axis, and the first and second electrical connection locations are at different positions along the connector axis.