Extension Photoflash Light and Camera System Using the Same
20170289419 · 2017-10-05
Inventors
Cpc classification
H04N23/66
ELECTRICITY
G03B15/041
PHYSICS
Y02B20/40
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
G03B15/05
PHYSICS
F21S9/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H05B47/11
ELECTRICITY
H04N23/74
ELECTRICITY
G03B17/566
PHYSICS
H04N23/65
ELECTRICITY
International classification
G03B15/04
PHYSICS
G03B15/05
PHYSICS
Abstract
An extension photoflash light and a camera system using the same are provided in the present invention. The extension photoflash light is for assisting a mobile device with camera function. The extension photoflash light includes a HID, a mounting mechanism, a touch simulation device and a control circuit. The mounting mechanism is for mounting the extension photoflash light on the mobile device. The touch simulation device is disposed on the mounting mechanism. The control circuit is coupled to the HID and the touch simulation device. When the mounting device of the extension photoflash light contacts the surface of the flat panel display of the mobile device, the mobile device acquire the position information of the extension photoflash light according to the touch simulation device.
Claims
1. An extension photoflash light to be externally mounted on a mobile device with a photographing function, wherein the mobile device with the photographing function has a flat panel display and a camera lens, wherein the extension photoflash light comprises: a high-intensity discharge (HID) lamp; a mounting mechanism for mounting the extension photoflash light; a touch simulation device disposed on the mounting mechanism; and a control circuit coupled to the HID lamp, wherein, when the mounting mechanism mounts the mobile device and the mounting mechanism is contact with a surface of the flat panel display of the mobile device, the mobile device obtains a mounting position of the extension photoflash light by sensing the touch simulation device.
2. The extension photoflash light according to claim 1, further comprising: a light sensing circuit disposed on the mounting mechanism; and wherein the control circuit is coupled to the light sensing circuit, wherein the mobile device emits a light signal on a specific block of the flat panel display, wherein the control circuit controls the light sensing circuit to detect the light signal of the specific block, decodes luminance of the detected light signal into a decoding message, and controls the HID lamp to perform flashing at a specific timing according to the decoding message.
3. The extension photoflash light according to claim 1, wherein when the mounting mechanism of the extension photoflash light touches a surface of the flat panel display of the mobile device with the photographing function, the mobile device with the photographing function obtains the mounting position of the extension photoflash light according to a distance between touch points and theirs touch time.
4. The extension photoflash light according to claim 1, wherein the touch simulation device is further used for outputting a touch signal, wherein the mobile device with the photographing function decodes the touch signal output from the touch simulation device to obtain a received message according to whether touch is detected by the mobile device or not such that a state of the extension photoflash light is determined.
5. The extension photoflash light according to claim 4, wherein the state of the extension photoflash light comprises residual capacity information of a battery.
6. The extension photoflash light according to claim 4, wherein the state of the extension photoflash light comprises information regarding whether the HID lamp is completely charged.
7. The extension photoflash light according to claim 4, wherein the state of the extension photoflash light comprises a brand information.
8. The extension photoflash light according to claim 1, wherein the touch simulation device comprises: a first touch simulation electrode, disposed on a surface at which the mounting device is to be contact with the mobile device; a second touch simulation electrode, disposed on a surface at which the mounting device is to be contact with the mobile device, wherein there is a preset distance between the first touch simulation electrode and the second touch simulation electrode; a switch element, comprising a control terminal, a first terminal and a second terminal, wherein the control terminal of the switch element is coupled to the control circuit, the first terminal of the switch element is coupled to the second touch simulation electrode and the first touch simulation electrode, wherein whether the first terminal and the second terminal of the switch element are conducted or not is determined according to a signal received by the control terminal of the switch element; and a grounded conductor, coupled to the second terminal of the switch element, wherein an area of the grounded conductor is at least greater than a preset area, wherein the mobile device with the photographing function performs a specific application program to determine whether the mounted device is the extension photoflash light or not and the position of the extension photoflash light according to a touch point by the first touch simulation electrode and a touch point by the second touch simulation electrode, wherein the control circuit control a conduction time of the switch element to transmit a specific information to the mobile device with the photographing function.
9. The extension photoflash light according to claim 8, wherein the specific information is encoded by a time encoding, wherein the time encoding comprises:
TP=(1+(N/5))×P×10;
TR=(1+(N%5))×P×10; wherein TP represents a time of touch, TR represents a time without touch, wherein N is a natural number between 0 to 15, P is a adjustable time constant, wherein the adjustable time constant is adjustable according to a response time of a touch device of the mobile device.
10. The extension photoflash light according to claim 1, wherein, when the extension photoflash light is mounted on the mobile device with the photographing function, the touch simulation device is contact with the surface of the flat panel display of the mobile device with the photographing function.
11. A camera system, comprising: a mobile device having a flat panel display and a camera lens; and an extension photoflash light, comprising: a high-intensity discharge (HID) lamp; a mounting mechanism for mounting the extension photoflash light; a touch simulation device disposed on the mounting mechanism; and a control circuit coupled to the HID lamp, wherein, when the mounting mechanism mounts the mobile device and the mounting mechanism is contact with a surface of the flat panel display, the mobile device obtains a mounting position of the extension photoflash light by sensing the touch simulation device.
12. The camera system according to claim 11, wherein the extension photoflash light further comprises: a light sensing circuit disposed on the mounting mechanism; and wherein the control circuit is coupled to the light sensing circuit, wherein the mobile device emits a light signal on a specific block of the flat panel display, wherein the control circuit controls the light sensing circuit to detect the light signal of the specific block, decodes luminance of the detected light signal into a decoding message, and controls the HID lamp to perform flashing at a specific timing according to the decoding message.
13. The camera system according to claim 11, wherein when the mounting mechanism of the extension photoflash light touches a surface of the flat panel display of the mobile device with the photographing function, the mobile device with the photographing function obtains the mounting position of the extension photoflash light according to a distance between touch points and theirs touch time.
14. The camera system according to claim 11, wherein the touch simulation device is further used for outputting a touch signal, wherein the mobile device with the photographing function decodes the touch signal output from the touch simulation device to obtain a received message according to whether touch is detected by the mobile device or not such that a state of the extension photoflash light is determined.
15. The camera system according to claim 14, wherein the state of the extension photoflash light comprises residual capacity information of a battery.
16. The camera system according to claim 14, wherein the state of the extension photoflash light comprises information regarding whether the HID lamp is completely charged.
17. The camera system according to claim 14, wherein the state of the extension photoflash light comprises a brand information.
18. The camera system according to claim 11, wherein the touch simulation device comprises: a first touch simulation electrode, disposed on a surface at which the mounting device is to be contact with the mobile device; a second touch simulation electrode, disposed on a surface at which the mounting device is to be contact with the mobile device, wherein there is a preset distance between the first touch simulation electrode and the second touch simulation electrode; a switch element, comprising a control terminal, a first terminal and a second terminal, wherein the control terminal of the switch element is coupled to the control circuit, the first terminal of the switch element is coupled to the second touch simulation electrode and the first touch simulation electrode, wherein whether the first terminal and the second terminal of the switch element are conducted or not is determined according to a signal received by the control terminal of the switch element; and a grounded conductor, coupled to the second terminal of the switch element, wherein an area of the grounded conductor is at least greater than a preset area, wherein the mobile device with the photographing function performs a specific application program to determine whether the mounted device is the extension photoflash light or not and the position of the extension photoflash light according to a touch point by the first touch simulation electrode and a touch point by the second touch simulation electrode, wherein the control circuit control a conduction time of the switch element to transmit a specific information to the mobile device with the photographing function.
19. The camera system according to claim 18, wherein the specific information is encoded by a time encoding, wherein the time encoding comprises:
TP=(1+(N/5))×P×10;
TR=(1+(N%5))×P×10; wherein TP represents a time of touch, TR represents a time without touch, wherein N is a natural number between 0 to 15, P is a adjustable time constant, wherein the adjustable time constant is adjustable according to a response time of a touch device of the mobile device.
20. The camera system according to claim 11, wherein, when the extension photoflash light is mounted on the mobile device with the photographing function, the touch simulation device is contact with the surface of the flat panel display of the mobile device with the photographing function.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
[0030]
[0031] The mounting mechanism 212 is for mounting or hanging the extension photoflash light 21, the detailed structure of which will be described later. The signal receiving device 213 in this embodiment is for example implemented by a light sensing circuit, and the signal receiving device 213 is disposed on the mounting mechanism 212 and for sensing a light signal outputted from the display device 201 of the mobile device 20. The photoflash light control circuit 214 is coupled to the HID lamp 211 and the light sensing circuit 213. The touch simulation device 215 is also disposed on the mounting mechanism 212. Different from the signal receiving device 213, the touch simulation device 215 is disposed on the surface which can be contact with the touch screen of the mobile device 20.
[0032] In order to make the essence of the invention be understood more easily, it is assumed that the mobile device 20 is a smart mobile phone having a specific photography APPlication program (photography APP). When the photography APP is being executed, the mobile device control circuit 203 of the mobile device 20 detects the touch simulation device 215 by the photography APP, such that the position of the extension photoflash light 21. Further, based on the position of the extension photoflash light 21, the mobile device control circuit 203 enables a specific block of the display device 201 to emit a light signal such that the signal receiving device 213 of the extension photoflash light 21 can receive the light signal.
[0033] When user executes the photography APP, the photography APP would start to detects the touch position to determine the position of the signal receiving device 213 of the extension photoflash light 21. When the position of the signal receiving device 213 of the extension photoflash light 21 is verified, the mobile device 20 disposes a specific block for outputting the light signal on the display device 201. In addition, the touch simulation device 215 simulates the finger touch to transmit specific information to the mobile device 20. The specific information may be a brand information, residual power information, charging information of the HID lamp 211.
[0034]
[0035] In step S301, the method starts.
[0036] In step S302, the photography APP is performed.
[0037] In step S303, a hint information is displayed. The hint information teaches how to attach or mount the extension photoflash light 21 to the mobile device 20.
[0038] In step S304, the position of the extension photoflash light 21 is detected. By the photography APP, the touch points and their distance are detected to determine the mounted position of the extension photoflash light 21.
[0039] In step S305, the brand information is decoded by touch sensing of the mobile device 20. In this time, the mobile device 20 sends a light signal to the signal receiving device 213 of the extension photoflash light 21 through the display device 201. And then, the touch simulation device 215 of the extension photoflash light 21 sends the touch simulation signal. By alternatively occurring of “touching” and “non-touching”, the brand information is transmitted to the mobile device 20. The mobile device 20 decodes the touch simulation signal to obtain the brand information.
[0040] In step S306, it is determined whether the extension photoflash light 21 is supported by this mobile device or this photography APP. If the determination is positive, the step S308 is performed. If the determination is negative, the step S307 is performed.
[0041] In step S307, a unsupported device message is output. It may display on the display device 201.
[0042] In step S308, a timing sequence request is sent. The mobile device 20 send the light signal from the display device 201 to the signal receiving device 213 of the extension photoflash light 21. Afterward, the extension photoflash light 21 transmits the timing sequence to the mobile device through the touch simulation signal. The timing sequence may be a time information from the time when the photographing is trigger to the time when the photoflash is performed.
[0043] In step S309, the correctness of the time sequence is confirmed. When the mobile device 20 receives and decodes the timing sequence, the mobile device 20 start to confirm whether the time information on the extension photoflash light 21 is matched with the time information of the mobile device 20. If the determination is positive, the step S311 is performed. If the determination is negative, the step S310 is performed.
[0044] In step S310, a timing setup is performed. The display device 201 of the mobile device 20 transmits the light signal to the signal receiving device 213 of the extension photoflash light 21 to perform the timing setup for the extension photoflash light 21. Thus, the timing information of the extension photoflash light 21 can be matched with the timing information of the mobile device 20. Afterward, the step S311 is performed.
[0045] Since the camera device 202 of the mobile device 20 adopts a rolling shutter. There is a uncertain time delay from when user trigger the photographing function to the image capture time. And the sustained time of the photoflash of the HID lamp is only several microseconds. Thus, a precise time information is necessary such that the flash in a correct time can be performed. In this embodiment, the signal receiving device (light sensing circuit) 213 would capture the light signal from the specific block and convert it to the electric signal to the photoflash light control circuit 214. The photoflash light control circuit 214 then starts to decode a decoding message, wherein the decoding message has a time information. The time information is highly correlated with the image capture time of the camera device 202 of the mobile device 20. Therefore, the photoflash light control circuit 214 controls that the HID lamp 211 perform photoflash in a correct time.
[0046] In step S311, the charging information request of the HID lamp 211 of the extension photoflash light 21 is transmitted. The mobile device 20 sends the light signal to the signal receiving device 213 of the extension photoflash light 21 through the display device 201 to request whether the HID lamp 211 is completely charged or not. If the charge is not complete, return to step S311. If the charge is complete, perform the step S312.
[0047] In step S312, it is determined whether the photographing is triggered. If user trigger the photographing, perform the step S313.
[0048] In step S313, perform a photographing with photoflash. The mobile device triggers the extension photoflash light 21 through the display device 201, and the mobile device 20 performs photographing. When the step finished, return to step S311.
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[0050]
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[0053] In the transmission encoding, the present embodiment adopts an encoding formula as follow:
TP=(1+(N/5))×P×10;
TR=(1+(N%5))×P×10;
wherein TP represents a time of touch, TR represents a time without touch, wherein N is a natural number between 0 to 15, P is a adjustable time constant,
[0054] In a multi-layered architecture system, such as smart mobile phone, when the touch and no touch respectively serve as “0” and “1”, it may only transmit 1 or 2 bits per second. In this embodiment, the time encoding as above is adopted. The abovementioned P is a parameter to be adjusted according to the response time of the touch panel of the different mobile device. If P is equal to 10, the table 1 can be obtained as follow:
TABLE-US-00001 TABLE 1 0x0: (100, 100) 0x1: (100, 200) 0x2: (100, 300) 0x3: (100, 400) 0x4: (100, 500) 0x5: (200, 100) 0x6: (200, 200) 0x7: (200, 300) 0x8: (200, 400) 0x9: (200, 500) 0xA: (300, 100) 0xB: (300, 200) 0xC: (300, 200) 0xD: (300, 400) 0xE: (300, 500) 0xF: (400, 100)
[0055] Referring to table 1, it is assumed that the data to be transmitted is 0x6, substituting it into the formula, it can obtain TP=(1+6/5)×10×10=200, TR=(1+(6%5))×10×10=200. Thus, if the extension photoflash light 21 transmits 0x6 to the mobile device 20, the touch simulation device 215 simulates “touch” for 200 milliseconds, and then simulates “no-touch” for 200 milliseconds. Similarly, if the extension photoflash light 21 transmits 0xA to the mobile device 20, the touch simulation device 215 simulates “touch” for 300 milliseconds, and then simulates “no-touch” for 100 milliseconds. Based on the time encoding, the transmission data rate can be increased to 8 to 16 bits per second.
[0056] The above-mentioned embodiment is implemented using the rear lens 501 to shoot. However, the more popular selfie uses the front lens to shoot. The following embodiment provides a camera system using the front lens to shoot, and an extension photoflash light 21.
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[0064] In the abovementioned embodiment, the light sensing circuit is adopted to serve as the signal receiving device 213. However, people having ordinary skill in the art should know that the optical communication is one of the signal receiving method. People having ordinary skill in the art can also adopt serial transmission from USB or NFC to replace the optical communication from the display device 201. Thus, the present invention is not limited thereto. Moreover, the mounting mechanism 212 is not limited to the configuration of
[0065] In summary, the essence of the invention is to provide an extension photoflash light that can be mounted on the mobile device, wherein a touch simulation device is disposed on the mounting mechanism of the extension photoflash light. Through the touch simulation device, the mobile device can obtain the mounting position of the extension photoflash light. Moreover, in this embodiment, the extension photoflash light can also report brand information, residual capacity information of a battery, the charging state and/or the information of the extension photoflash light by the touch simulation device. Thus, the extension photoflash light can communicate with the mobile device.
[0066] While the present invention has been described by way of examples and in terms of preferred embodiments, it is to be understood that the present invention is not limited thereto. To the contrary, it is intended to cover various modifications. Therefore, the scope of the appended claims should be accorded the broadest interpretation so as to encompass all such modifications.