1. Field of the Invention
The present invention relates to a portable electronic device, especially to a portable electronic device that uses light sources with light detectors to execute multi-functions.
2. Description of the Prior Arts
With the progress of the technology, portable electronic devices are easily carried so that many different portable electronic devices with different functions are developed to allow the user to utilize those functions anytime anywhere. Besides the portable phones with communicating functions, other portable electronic devices such as blood sugar detecting devices, heart rate detecting devices, blood oxygen saturation detecting devices, breath ethanol concentration analyzing devices, remote controller and so on are also developed. Those portable electronic devices use light sources and light detectors to achieve their own functions. However, the user needs to have multiple different portable electronic devices for different functions so that the user has to cost much to buy those different portable electronic devices with different functions.
To overcome the shortcomings, the present invention provides a portable electronic device to mitigate or obviate the aforementioned problems.
The main objective of the present invention is to integrate the functions so that the portable electronic device executes different functions with the same elements.
To achieve the aforementioned objective, the present invention provides a portable electronic device comprising:
a first switching unit to switch the portable electronic device to a blood detection mode;
a first light source to provide a first beam, wherein under the blood detection mode, the first beam is emitted to a first object to be reflected as a reflected light, and the first object is a part of an user's body;
a light detector having at least one light detecting unit, wherein under the blood detection mode, the light detector detects the reflected light to generate a blood detecting signal; and
a control unit connecting to the light detector, wherein under the blood detection mode, the control unit calculates the user's blood pressure based on the blood detecting signal.
Further, the portable electronic device further comprises a second switching unit to switch the portable electronic device to an ultraviolet detection mode. Under the ultraviolet detection mode, the light detector detects an ultraviolet in an ambient light around a periphery environment of the portable electronic device to generate an ultraviolet detecting signal, and the control unit calculates the intensity of the ultraviolet in the ambient light based on the ultraviolet detecting signal.
Moreover, the portable electronic device further comprises a display having a backlight module and a second switching unit to switch the portable electronic device to a color detection mode. The light detector has three light detecting units to respectively detect red light, green light and blue light. Under the color detection mode, the light detecting units respectively detect red light, green light and blue light in an ambient light around a periphery environment of the portable electronic device to generate a color detecting signal, and the control unit adjusts the illumination color contrast of the backlight module of the display based on the color detecting signal.
The present invention has following advantages. Using the same element to achieve different functions allows the portable electronic device to provide different functions as required separately or simultaneously. Then the user only needs to buy a single portable electronic device and can also have various functions. Therefore, the portable electronic device not only can save cost but is more convenient.
Other objectives, advantages and novel features of the invention will become more apparent from the following detailed description when taken in conjunction with the accompanying drawings.
With reference to
The switching unit 10 may be an icon shown on a display 101. The display 101 may have a backlight module 102. Different switching units 10 such as a first switching unit 10A and a second switching unit 10B correspond to different function modes. When each switching unit 10 is actuated such as the user's finger touches the icon, the portable electronic device as described enters corresponding function mode. Besides displayed as an icon, the switching unit 10 may also be a real button mounted on the portable electronic device as described to be pressed by user to switch different function modes.
With reference to
The portable electronic device as described has different performing processes based on the selected modes of the user.
With reference to
In specific, the blood are sent to the whole body when the heart is systole and the blood flows back to the heart when the heart is diastole. Therefore, observing the blood flow can have the related biological parameter of the heart. When a blood pressure detection mode, a heart rate detection mode, a sclerosis vascularis detection mode or a vessel occlusion detection mode is selected, the light detecting unit 21 of the light detector 20 receives a reflected light of the first light beam to generate a blood detecting signal. When the blood pressure mode is proceeded, the control unit 40 calculates the blood pressure through a corresponding algorithm based on the blood detecting signal. When the heart rate mode is proceeded, the control unit 40 uses Fourier transformation to have a spectrum based on the blood detecting signal. Then the spectrum is used to calculate the heart rate. When the sclerosis vascularis detection mode or vessel occlusion detection mode is selected, the control unit 40 uses the know way to process the blood detecting signal to have the arterial stiffness index and the vessel obstruction index. Therefore, the light detecting signal generated by the light detector 20 is calculated through different algorithms to have different biological indexes. The processes can be achieved through different ways and are known in the art so that the details are not described here. In a preferred embodiment, the light source 30 may emits beam having wavelength between 400 to 1000 nm, especially 550 nm. The first switching unit 10A can simultaneously actuate blood detection mode, the heart rate detection mode, the sclerosis vascularis detection mode and the vessel occlusion detection mode can be executed. In other preferred embodiment, different switching units 10 can be used to actuate the aforementioned detection mode.
Further, the portable electronic device as described may provide the blood oxygen saturation detection mode and may comprise a first light source 30A and a second light source 30B as shown in
Moreover, when an breath ethanol concentration analyzing mode is selected via the second switching unit 10B, the light source 30 emits a first beam. The first beam is emitted to the user's breath to have a reflected light. The light detecting unit 21 of the light detector 20 receives the reflected light to generate an ethanol concentration signal. The control unit 40 analyzes the ethanol concentration signal to compare with the pre-stored data to calculate the ethanol concentration. The pre-stored data may be light detecting signal generated by the normal breath without ethanol. In a preferred embodiment, the light source 30 may emit infrared ray with 850 nm. Since the ethanol absorbs the infrared ray, the infrared ray is absorbed when the breath passed by the infrared ray emitted by the light source 30 contains ethanol. Then the value output by the light detector 20 is lower than the value that resulted from the normal breath without ethanol. Therefore, using said analyzing way, the ethanol concentration is calculated.
With reference to
In specific, the second switching unit 10B is actuated to select a proximity sensing mode, or the portable electronic device as described directly executes the proximity sensing mode while specific application programs are executed such as voice communication. The proximity sensing mode is used to detect whether any objects are approaching the surface of the portable electronic device. The light source 30 provides a first beam. When objects is approaching, the first beam emitted to the object to have a reflected light. The light detecting unit 21 of the light detector 20 receives the reflected light of the first beam to generate a proximity sensing signal. When the object is closer, the intensity of the reflected light is larger so that the control unit 40 can determine whether any objects are approaching based on the proximity sensing signal. In a preferred embodiment, the portable electronic device automatically enters the proximity sensing mode during voice communication. Then when large object such as human face approaches, the touch detection is closed due to the execution of the proximity sensing mode.
Further, the portable electronic device may provide gesture detection mode with one light source 30 and one light detecting unit 21. Through the second switching unit 10B to select the gesture detection mode, the light source 30 emits beam. whether the light detecting unit 21 receives the reflected light determines whether gesture is occurred. The gesture mode may be used as a switch to switch on or off specific function of the portable electronic device.
Moreover, the portable electronic device as described may provide the gesture detection mode and may comprise a first light source 30A and a second light source 30B as shown in
With reference to
In specific, the second switching unit 10B is actuated to select an ultraviolet detection mode. the light detecting unit 21 of the light detector 20 receives the ultraviolet in the ambient light to generate an ultraviolet detecting signal. the control unit 40 calculates the intensity of the ultraviolet in the ambient light and outputs the calculating result. The user may determines what to wear or whether go outdoor or not based on the calculated result. The processes to detect the ultraviolet can be achieved through different ways and are known in the art so that the details are not described here.
Further, the portable electronic device as described may provide a color detection mode and may comprise at least three light detecting units 21 to respectively detect red light, green light and blue light. When the color detection mode is selected through the second switching unit 10B or when the color detection mode is automatically actuated while the display 101 is awaked, the light detecting units 21 receives light to generate color detecting signal. The control unit 40 calculates the ratio of the red light, the green light and the blue light in the ambient light based on the generated color detecting signal and then adjusts the illumination color contrast of the backlight module 102 of the display 101. Therefore, the illumination color contrast of the backlight module 102 of the display 101 is adjusted based on the tone of the ambient light to provide best visual effect. The processes to detect the tone of the ambient light and to adjust the illumination color contrast of the backlight module 102 of the display 101 can be achieved through different ways and are known in the art so that the details are not described here.
Moreover, the portable electronic device as describe may provide an ambient light detection mode. When the second switching unit 10B is actuated to select the ambient light detection mode or when the ambient light detection mode is automatically actuated while the display 101 is awaked, the light detector 20 detects the intensity of the ambient light. The light detecting unit 21 receives light to generate an ambient light detecting signal. The control unit 40 calculates the intensity of the ambient light based on the ambient light detecting signal and then adjusts the illumination intensity of the backlight module 102 of the display 10. Therefore, the illumination intensity of the backlight module 102 of the display 101 is adjusted based on the intensity of the ambient light to provide best visual effect. The processes to detect the intensity of the ambient light and to adjust the illumination intensity of the backlight module 102 of the display 101 can be achieved through different ways and are known in the art so that the details are not described here.
The portable electronic device as described as following advantages. Using the same light sources and the same light detecting units to provide different functions allows the portable electronic device as described provides different modes respectively or simultaneously. With the switching units, the user can switch different modes in one single portable electronic device as described to achieve different functions. Therefore, the portable electronic device as described is more convenient and costs less for providing multiple functions.
Even though numerous characteristics and advantages of the present invention have been set forth in the foregoing description, together with details of the structure and features of the invention, the disclosure is illustrative only. Changes may be made in the details, 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 in which the appended claims are expressed.
Number | Date | Country | Kind |
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103137741 | Oct 2014 | TW | national |
This application claims the benefit of United States provisional application filed on Jan. 3, 2014 and having application Ser. No. 61/923,239, the entire contents of which are hereby incorporated herein by reference This application is also based upon and claims priority under 35 U.S.C. 119 from Taiwan Patent Application No. 103137741 filed on Oct. 31, 2014, which is hereby specifically incorporated herein by this reference thereto.
Number | Date | Country | |
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61923239 | Jan 2014 | US |