POSITION DETECTION SYSTEM AND DIGITAL STYLUS USING SAME
20210349597 · 2021-11-11
Inventors
- Yong Luo (Shenzhen, CN)
- Peng Cheng Zhang (Shenzhen, CN)
- Shi Hua Wu (Shenzhen, CN)
- Zhou Hong Wang (Shenzhen, CN)
Cpc classification
G06F3/0441
PHYSICS
G06F2203/0384
PHYSICS
G06F2203/04105
PHYSICS
H03K2217/9651
ELECTRICITY
G06F3/0346
PHYSICS
G06F3/04162
PHYSICS
H03K2217/960715
ELECTRICITY
H03K2217/96072
ELECTRICITY
International classification
G06F3/041
PHYSICS
G06F3/0346
PHYSICS
G06F3/0354
PHYSICS
Abstract
The present disclosure discloses a position detection system, which comprising a power module, a detection module, a control module, and a pulse module. The power module is configured to supply power. The detection module comprises a key detection circuit and a force detection circuit. The control module is electrically connected to the power module and the detection module, and configured to process the key detection data detected by the key detection circuit and the force detection data detected by the force detection circuit and output a key signal and a force signal. The pulse module is connected to the control module, and configured to acquire start references of the key signal and the force signal output by the control module, and convert the key signal and the force signal to digital signals by form coding and send the digital signals to a tablet. The present discloses further provides a digital stylus using the same.
Claims
1. A position detection system, comprising a power module, a detection module, a control module, and a pulse module; wherein the power module is configured to supply power to ensure that various components in the position detection system are capable of normally operating; the detection module comprises a key detection circuit and a force detection circuit, wherein the key detection circuit is configured to supply key detection data and output processed data in response to the key detection data being processed by the control module, and the force detection circuit is configured to supply force detection data and output data in response to the force detection data being processed by the control module; the control module is electrically connected to the power module and the detection module, and configured to process the key detection data detected by the key detection circuit and the force detection data detected by the force detection circuit and output a key signal and a force signal; and the pulse module is connected to the control module, and configured to acquire start references of the key signal and the force signal output by the control module, and convert the key signal and the force signal to digital signals by form coding and send the digital signals to a tablet.
2. The position detection system according to claim 1, wherein the power module comprises a resonance circuit and a power extraction circuit, wherein the resonance circuit comprises a coil and a first capacitor, and the power extraction circuit is configured to extract a power source from an induction voltage induced from the coil.
3. The position detection system according to claim 2, wherein the power extraction circuit at least comprises a diode and a second capacitor, wherein when a voltage generated by the resonance circuit is higher than a voltage on the second capacitor, the resonance circuit charges the second capacitor.
4. The position detection system according to claim 2, wherein the power module further comprises a power voltage regulation circuit, wherein the power source extracted by the power extraction circuit is formed to a stable power source by the power voltage regulation circuit and output to the various components in the position detection system.
5. The position detection system according to claim 1, wherein the force detection circuit comprises a force sensor, wherein the force sensor is configured to convert a detected force into an electrical signal.
6. The position detection system according to claim 1, wherein the key detection circuit comprises a key, wherein the key is a switch-type key or a touch-type key.
7. The position detection system according to claim 1, wherein the detection module further comprises an angle detection circuit electrically connected to the control module, wherein the angle detection circuit is configured to supply inclination angle detection data and output processed data in response to the inclination angle detection data being processed by the control module.
8. The position detection system according to claim 3, wherein the pulse module comprises a data transmission reference detection circuit and a pulse modulation circuit, wherein the data transmission reference detection circuit is configured to detect a falling edge upon completion of charging by the power module as the start references of the key signal and the force signal that are sent by the detection module to the tablet.
9. The position detection system according to claim 8, wherein the pulse modulation circuit is a circuit obtained by parameter adjustment of the data transmission reference detection circuit, and the pulse modulation circuit is configured to quantize the key signal and the force signal detected by the detection module, and convert the key signal and the force signal to digital signals by form coding and send the digital signals to the tablet.
10. A digital stylus, comprising the position detection system as defined in claim 1.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0007] Many aspects of the exemplary embodiments can be better understood with reference to the following drawings. The components in the drawing are not necessarily drawn to scale, the emphasis instead being placed upon clearly illustrating the principles of the present disclosure.
[0008]
[0009]
[0010]
[0011]
[0012]
[0013]
DETAILED DESCRIPTION OF THE EXEMPLARY EMBODIMENTS
[0014] The present disclosure will hereinafter be described in detail with reference to several exemplary embodiments. To make the technical problems to be solved, technical solutions and beneficial effects of the present disclosure more apparent, the present disclosure is described in further detail together with the figure and the embodiments. It should be understood the specific embodiments described hereby is only to explain the disclosure, not intended to limit the disclosure.
[0015] Referring to
[0016] The power module 10 is configured to supply power to ensure that various components in the position detection system 100 are capable of normally operating.
[0017] The control module 30 is connected to the power module 10, the detection module 50, and the pulse module 70, and configured to detect data for the detection module 50, and output processed data in response to the detected data being processed by the pulse module 70.
[0018] The detection module 50 is electrically connected to the control module 30, and includes a key detection circuit 51, a force detection circuit 53, and an angle detection module 55. The key detection circuit 51 is configured to supply key detection data and output processed data in response to the key detection data being processed by the control module 30, and the force detection circuit 53 is configured to supply force detection data and output data in response to the force detection data being processed by the control module 30; and the angle detection module 55 is configured to supply inclination angle detection data and output data in response to the inclination angle detection data being processed by the control module 30.
[0019] The pulse detection module 70 includes a data transmission reference detection circuit 71 and a pulse modulation circuit 73. The data transmission reference detection circuit 71 is configured to acquire start references of a key signal, a force signal, and an inclination angle signal output by the control module 30. The pulse modulation circuit 73 is configured to quantize the key signal, the force signal, and the inclination angle signal detected by the detection module, and convert the key signal and, the force signal and the inclination angle signal to digital signals by form coding and send the digital signals to a tablet.
[0020] Specifically, the power module 10 includes a resonance circuit 11, a power extraction circuit 13, and a power voltage regulation circuit 15. The resonance circuit 11 includes a coil 111 and a first capacitor 113. The coil 111 and the first capacitor 113 collaboratively constitute the resonance circuit 11 with a predetermined frequency. The power extraction circuit 13 is configured to extract a power source from the resonance circuit 11. Specifically, the power extraction circuit 13 extracts the power source from an induction voltage induced from the coil 111, and is constituted by a diode 131 and a second capacitor 133. When a voltage generated on the resonance circuit 11 is higher than a voltage corresponding to a holding voltage on the second capacitor 133, the resonance circuit 11 charges the second capacitor 133. After forming a stable power source desired by the position detection system 100 from the power source extracted by the power extraction circuit 13, the power voltage regulation circuit 15 outputs the stable power source to the various components in the position detection system 100 to maintain an output voltage substantially unchanged, such that it is ensured that various components in the position detection system 100 are capable of normally operating.
[0021] In this embodiment, the power module 10 acquires electric power from the resonance circuit 11 and the power extraction circuit 13. Nevertheless, in other embodiments, the power module may acquire the electric power in other fashions, as long as the power module 10 is capable of supplying power to the various components in the position detection system 100, and ensuring that the various components in the position detection system 100 are capable of normally operating.
[0022] In this embodiment, preferably, the power module 10 acquires the power from the resonance circuit 11, and the power extraction circuit 13. In this case, a digital stylus using the position detection system 100 does not need to be equipped with a battery, such that a weight of the digital stylus is effectively reduced, and use of the stylus becomes easier and more convenient for a user.
[0023] Referring to
[0024] Referring to
[0025] Detection of an inclination angle of the angle detection module 55 is performed by an independent angle sensor, and a value of the inclination angle is detected and read by the control module 30 such that the value is transmitted to the tablet via communication. The angle sensor may be any sensor in the related art that converts the inclination angle into an electric signal.
[0026] Referring to
[0027] Referring to
[0028] An operating principle of the position detection system 100 is as follows: the control module 30 is in a standby state upon completion of communication, and in response to receiving a rising edge of the charging signal generated by the power module 10 as illustrated in
[0029] In the meantime, the present disclosure further provides a digital stylus (not illustrated). The digital stylus includes the position detection system 100. It may be understood that the key signal, the force signal, and the inclination angle signal is transmitted between the digital stylus and the tablet in a digital fashion, such that instability caused by other factors to the key, the stylus force, and the inclination angle is reduced, and detection and identification of the key, the stylus force, and the inclination angle, between the digital stylus and the tablet becomes more accurate.
[0030] Compared with the related art, in the position detection system according to the present disclosure, the key detection circuit 51, and the detection circuit 53 are added, and the key signal and force signal are both transmitted in the digital fashion. This reduces impacts caused by other factors to the stylus force and the key, and thus stability of the position detection system is improved. In addition, the inclination angle is detected by the angle detection module 55, and the inclination angle detection data is transmitted in the digital fashion, thereby reduces influence of other factors to the inclination angle. Correspondingly, the digital stylus uses the position detection system, and thus stability of the digital stylus is improved.
[0031] It is to be understood, however, that even though numerous characteristics and advantages of the present exemplary embodiments have been set forth in the foregoing description, together with details of the structures and functions of the embodiments, the disclosure is illustrative only, and changes may be made in detail, especially in matters of shape, size, and arrangement of parts within the principles of the invention to the full extent indicated by the broad general meaning of the terms where the appended claims are expressed.