POWER ADAPTER WITH SENSING CONTROL FUNCTION FOR LAMP LOAD
20230231345 · 2023-07-20
Inventors
Cpc classification
International classification
Abstract
A power adapter with a sensing control function for a lamp load comprises a plug case, a pin set, and a circuit board. The plug case has an exterior surface having an operation area. The pin set is mounted on the plug case. The circuit module is mounted in the plug case, is electrically connected to the pin set, and has a sensor board comprising a sensing conductor and a controller electrically connected to the sensing conductor. A position of the sensing conductor corresponds to a position of the operation area of the exterior surface of the plug case.
Claims
1. A power adapter with a sensing control function for a lamp load, the power adapter comprising: a plug case having an exterior surface having an operation area; a pin set mounted on the plug case; and a circuit module mounted in the plug case, electrically connected to the pin set, and having a sensor board comprising: a sensing conductor; and a controller electrically connected to the sensing conductor; wherein a position of the sensing conductor corresponds to a position of the operation area of the exterior surface of the plug case.
2. The power adapter as claimed in claim 1, wherein the power adapter comprises an indicator formed on or around the operation area.
3. The power adapter as claimed in claim 1, wherein the pin set is mounted on a side wall of the plug case.
4. The power adapter as claimed in claim 1, wherein the pin set is mounted on an end wall of the plug case.
5. The power adapter as claimed in claim 1, wherein the sensing conductor is a metal foil.
6. The power adapter as claimed in claim 1, wherein a center of the sensing conductor is aligned with a center of the operation area.
7. The power adapter as claimed in claim 1, wherein the operation area is a concave portion in the exterior surface of the plug case.
8. The power adapter as claimed in claim 1, wherein the operation area is a flat plane in the exterior surface of the plug case.
9. The power adapter as claimed in claim 1, wherein the sensing conductor contacts an inner surface of the plug case.
10. The power adapter as claimed in claim 9, wherein the inner surface of the plug case has a protrusion having a bottom surface that contacts the sensing conductor.
11. The power adapter as claimed in claim 1, wherein the sensing conductor is separate from an inner surface of the plug case.
12. The power adapter as claimed in claim 1, wherein the plug case has a connector having a thread portion; the pin set is mounted on a side wall of the plug case; and the side wall is adjacent to the connector.
13. The power adapter as claimed in claim 1, wherein the plug case has a connector having a thread portion; the pin set is mounted on an end wall of the plug case; and the end wall is opposite to the connector.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0011]
[0012]
[0013]
[0014]
[0015]
[0016]
[0017]
[0018]
DETAILED DESCRIPTION OF PREFERRED EMBODIMENT(S)
[0019] The present invention is a power adapter with a sensing control function for a lamp load. In other words, the power adapter of the present invention is applied to the lamp load, such as an LED (light emitting diode) string light, an LED strip, an LED rope light, a lamp device, and so on. When receiving an input power, such as a DC (Direct Current) power or an AC (Alternating Current) power, the power adapter of the present invention will convert the input power to a suitable DC power and provide driving signals to the lamp load. As a result, the lamp load will be turned on according to the driving signals. The sensing control function is to switch lighting modes of the lamp load. For example, in general, the lighting modes may include a flashing mode, a brightness-gradual-changing mode, and a color-changing mode.
[0020] The power adapter of the present invention comprises a plug case, a pin set, and a circuit module.
[0021] With reference to
[0022] Besides, the present invention may comprise an indicator 120 formed on or around the operation area 12. For example, the indicator 120 may be a printed pattern or a sticker. The indicator 120 is used to indicate the position of the operation area 12. Seeing the indicator 120, the user may know the position of the operation area 12 and put the finger on or above it.
[0023] The pin set 20 is mounted on the plug case 10. For example, the pin set 20 may include multiple pins 21 to be inserted into a power socket on a wall. With reference to
[0024]
[0025] The physical structure of the circuit module 30 may comprise circuit board(s) and electrical components, such as resistors, capacitors, inductors, integrated-circuit chips (IC chips), and so on, mounted on the circuit board(s). The circuit module 30 is mounted in the mounting space 101 of the plug case 10. As mentioned above, the circuit module 30 is electrically connected to the pin set 20 and the lamp load 40. In an embodiment of the present invention, with reference to
[0026] For example, the controller 34 may be an IC chip. For example, the sensing conductor 33 may be a metal foil shaped as a filled circle, rectangle, triangle, or any other shapes. The metal foil may be a gold foil, a silver foil, a copper foil, an iron foil, an aluminum foil, and so on.
[0027] In the present invention, with reference to
[0028] Regarding the operation area 12 of the plug case 10, in an embodiment as shown in
[0029] The sensing conductor 33 may contact an inner surface of the plug case 10. Or, there would be a gap between the sensing conductor 33 and the inner surface of the plug case 10. With reference to the embodiment shown in
[0030] The working principle of the sensor board 36 is briefly introduced as follows. It is to be understood that the controller 34 may compute a resonant frequency according to a capacitance sensed from the sensing conductor 33. When the user does not put the finger on or above the operation area 12 of the plug case 10 yet, the controller 34 may determine that the resonant frequency is not varied. With reference to
[0031] In the present invention, because the position of the sensing conductor 33 corresponds to the position of the operation area 12 of the plug case 10, the distance between the user’s finger 50 and the sensing conductor 33 is minimized, and the electric charges on the finger 50 may affect the sensing conductor 33 directly, such that the sensing effect of the sensing conductor 33 will be maximized and optimized.
[0032] The power adapter has advantages including:
[0033] 1. The power adapter of the present invention has the single plug case 10 and the sensor board 36 for implementing the sensing control function. The sensor board 36 is included in the plug case 10 and not separated from it. In other words, the configuration of the plug case 10 and the circuit module 30 is much simplifier than that of the conventional power adapter 60 and the control box 61. Hence, the material and production cost for the power adapter of the present invention will be less than those of the conventional power adapter 60 and the control box 61.
[0034] 2. The conventional power adapter 60 and the control box 61 are separate devices, such that the staff have to manually assemble them to each other. In comparison, the circuit module 30 of the present invention is already included in the plug case 10. The present invention does not have more than two cases to be manually assembled. The above-mentioned conventional assembly issue should be resolved in the present invention.
[0035] 3. The power adapter of the present invention has the single plug case 10, so as to look more elegant than the conventional power adapter 60 and the control box 61.
[0036] 4. The power adapter of the present invention has a better waterproof capability than the conventional control box 61 because the plug case 10 of the present invention does not have an opening for a physical button.
[0037] 5. The sensor board 36 of the present invention can sense the user’s operation while the user’s finger approaches the operation area 12 of the plug case 10, even when the user’s finger does not contact the operation area 12 yet. The present invention does not adopt the physical button 610 as the conventional control box 61. Hence, the present invention may have much longer service life than the conventional control box 61.
[0038] 6. The plug case 10 is an electrical insulator. Hence, when the user operates the power adapter of the present invention, even when the user’s finger contacts the operation area 12 of the plug case 10, the hazard of electric shock should be avoided.