TIME OF FLIGHT RANGING MODULE, OPERATING METHOD THEREOF, AND MULTIMEDIA SYSTEM
20200348415 ยท 2020-11-05
Assignee
Inventors
Cpc classification
G01S7/4865
PHYSICS
International classification
G01S7/4865
PHYSICS
Abstract
A ToF ranging module, its operating method, and a multimedia system are provided. The ToF ranging module has an optical communication function and is adapted to be disposed on an electronic device communicating with another electronic device through a wireless communication module to synchronize ToF ranging periods and optical communication periods of the two electronic devices and determine a communication order of the two electronic devices. The ToF ranging module includes a processing unit, a light sensing unit, and a light emitting unit. During the ToF ranging period, the processing unit drives the light emitting unit and the light sensing unit to perform ToF ranging to obtain distance data between the two electronic devices. During the optical communication period, the processing unit outputs the distance data and drives the light sensing unit or the light emitting unit to optically communicate with another ToF ranging module of the another electronic device.
Claims
1. A time of flight ranging module having an optical communication function and adapted to be disposed on an electronic device, the electronic device comprising a wireless communication module configured to communicate with another electronic device to synchronize a time of flight ranging period and an optical communication period of the electronic device and a time of flight ranging period and an optical communication period of the another electronic device and determine a communication order of the two electronic devices, the time of flight ranging module comprising: a processing unit coupled to the wireless communication module; a light sensing unit coupled to the processing unit; and a light emitting unit coupled to the processing unit, wherein during the time of flight ranging period, the processing unit drives the light emitting unit and the light sensing unit to perform time of flight ranging to obtain distance data between the electronic device and the another electronic device, and during the optical communication period, the processing unit outputs the distance data and drives the light sensing unit or the light emitting unit to optically communicate with another time of flight ranging module of the another electronic device.
2. The time of flight ranging module according to claim 1, wherein during the time of flight ranging period, the light emitting unit emits sensing light to the another electronic device, and the light sensing unit receives reflected light reflected from the another electronic device.
3. The time of flight ranging module according to claim 2, wherein the processing unit calculates a distance between the electronic device and the another electronic device according to a difference between a time of emitting the sensing light by the light emitting unit and a time of receiving the reflected light by the light sensing unit.
4. The time of flight ranging module according to claim 1, wherein the time of flight ranging period and the optical communication period are not overlapped and are interleaved.
5. The time of flight ranging module according to claim 1, wherein the light sensing unit is a photodiode, and the light emitting unit is a light emitting diode or a laser diode.
6. The time of flight ranging module according to claim 1, wherein the electronic device and the another electronic device are operated in a virtual reality system or an augmented reality system.
7. A multimedia system comprising: a first electronic device; and a second electronic device, wherein the first electronic device communicates with the second electronic device through a wireless communication module to synchronize a time of flight ranging period and an optical communication period of the first electronic device and a time of flight ranging period and an optical communication period of the second electronic device and determine a communication order of the first and second electronic devices, the first electronic device performs time of flight ranging through a light emitting unit and a light sensing unit of a time of flight ranging module during the time of flight ranging period to obtain distance data between the first electronic device and the second electronic device, and the first electronic device outputs the distance data through the time of flight ranging module during the optical communication period and optically communicates with another time of flight ranging module of the second electronic device through the light sensing unit or the light emitting unit.
8. The multimedia system according to claim 7, wherein during the time of flight ranging period, the light emitting unit of the first electronic device emits sensing light to the second electronic device, and the light sensing unit of the first electronic device receives reflected light reflected from the second electronic device.
9. The multimedia system according to claim 8, wherein a processing unit of the first electronic device calculates a distance between the first electronic device and the second electronic device according to a difference between a time of emitting the sensing light by the light emitting unit and a time of receiving the reflected light by the light sensing unit.
10. The multimedia system according to claim 7, wherein the time of flight ranging period and the optical communication period are not overlapped and are interleaved.
11. The multimedia system according to claim 7, wherein the light sensing unit is a photodiode, and the light emitting unit is a light emitting diode or a laser diode.
12. The multimedia system according to claim 7, wherein the multimedia system is a virtual reality system or an augmented reality system.
13. An operating method of a time of flight ranging module, the time of flight ranging module being disposed on an electronic device, the electronic device further comprising a wireless communication module, wherein the operating method comprises: communicating with another electronic device through the wireless communication module of the electronic device, synchronizing a time of flight ranging period and an optical communication period of the electronic device and a time of flight ranging period and an optical communication period of the another electronic device, and determining a communication order of the electronic device and the another electronic device; during the time of flight ranging period, driving a light emitting unit and a light sensing unit of the time of flight ranging module to perform time of flight ranging to obtain distance data between the electronic device and the another electronic device; and during the optical communication period, outputting the distance data through the time of flight ranging module, driving the light sensing unit or the light emitting unit of the time of flight ranging module to optically communicate with another time of flight ranging module of the another electronic device.
14. The operating method according to claim 13, wherein during the time of flight ranging period, the step of driving the light emitting unit and the light sensing unit of the time of flight ranging module to perform the time of flight ranging comprises: emitting sensing light to the another electronic device by the light emitting unit; and receiving reflected light reflected from the another electronic device by the light sensing unit.
15. The operating method according to claim 14, wherein the step of obtaining the distance data between the electronic device and the another electronic device comprises: calculating a distance between the electronic device and the another electronic device according to a difference between a time of emitting the sensing light by the light emitting unit and a time of receiving the reflected light by the light sensing unit.
16. The operating method according to claim 13, wherein the time of flight ranging period and the optical communication period are not overlapped and are interleaved.
17. The operating method according to claim 13, wherein the light sensing unit is a photodiode, and the light emitting unit is a light emitting diode or a laser diode.
18. The operating method according to claim 13, wherein the electronic device and the another electronic device are operated in a virtual reality system or an augmented reality system.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Reference will now be made in detail to the present preferred embodiments of the disclosure, examples of which are illustrated in the accompanying drawings. Wherever possible, the same reference numbers are used in the drawings and the description to refer to the same or like parts.
[0016]
[0017]
[0018]
[0019]
DESCRIPTION OF THE EMBODIMENTS
[0020] In order to make the content of the disclosure easier to understand, the following specific embodiments are provided as to how the disclosure can be implemented. In addition, wherever possible, the same reference numbers of components/elements/steps are used in the drawings and embodiments to represent the same or similar components/elements/steps.
[0021]
[0022] In the embodiment, the processing unit 110 may include a read-out circuit, an analog-to-digital converter (ADC) circuit, a digital signal processor (DSP) circuit, and other related driving circuits, and the disclosure is not limited thereto. In the embodiment, the light sensing unit 120 may be a photodiode (PD), and the light emitting unit 130 may be an LED or a laser diode (LD). In the embodiment, the ToF ranging module 100 may achieve a ranging function through applying a direct ToF (D-ToF) method or an indirect ToF (I-ToF) method.
[0023] Specifically, during the ToF ranging period, the processing unit 110 drives the light sensing unit 120 and the light emitting unit 130 to perform ToF ranging. The light emitting unit 130 may emit sensing light to another electronic device, and the sensing light is reflected on a surface of the another electronic device, so that the light sensing unit 120 may receive reflected light reflected from the another electronic device. Therefore, the processing unit 110 may calculate a distance between the electronic device and the another electronic device according to a difference between a time of emitting the sensing light by the light emitting unit 130 and a time of receiving the reflected light by the light sensing unit 120. However, since the sensing result of the light sensing unit 120 is read out via a read-out circuit (not shown), another data read-out period is required for the read-out circuit to output distance data to a DSP circuit (not shown), and the light sensing unit 120 and the light emitting unit 130 at this time are in an idle state. The ToF ranging module 100 provided in the embodiment employs the data read-out period for optical communication. The optical communication in the embodiment refers to an information transmission technology over the Internet with use of visible or invisible light, and said technology is also referred to as light fidelity (Li-Fi).
[0024] Therefore, further, when the read-out circuit of the ToF ranging module 100 outputs the distance data, the processing unit 110 may drive the light sensing unit 120 to receive an optical communication signal emitted by another ToF ranging module of the another electronic device. Alternatively, the processing unit 110 may drive the light emitting unit 130 or another light emitting unit (at a different frequency band) to emit an optical communication signal to another ToF ranging module of the another electronic device. In other words, the ToF ranging module 100 provided in an embodiment of the disclosure may perform ToF ranging and optical communication in a time division manner with use of at least one of the light sensing unit and the light emitting unit of the ToF ranging module to, which will be exemplified below with reference to the time sequence relationship illustrated in
[0025]
[0026]
[0027]
[0028] In addition, other module features, implementations, or technical details of the ToF ranging module provided in the embodiment may be referred to as those taught, disclosed, and suggested in the previous embodiments as depicted in
[0029] To sum up, the ToF ranging module, the operating method thereof, and the multimedia system provided in one or more embodiments of the disclosure may perform ToF ranging and optical communication in a time division manner with use of the light sensing unit and the light emitting unit of the ToF ranging module, so that the electronic device equipped with the ToF ranging module provided in one or more embodiments of the disclosure may perform effective and fast ToF ranging and optical communication functions.
[0030] It will be apparent to those skilled in the art that various modifications and variations can be made to the disclosed embodiments without departing from the scope or spirit of the disclosure. In view of the foregoing, it is intended that the disclosure covers modifications and variations provided they fall within the scope of the following claims and their equivalents.