WO2019104566A1 - 智能相框和智能相框显示方法 - Google Patents

智能相框和智能相框显示方法 Download PDF

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Publication number
WO2019104566A1
WO2019104566A1 PCT/CN2017/113667 CN2017113667W WO2019104566A1 WO 2019104566 A1 WO2019104566 A1 WO 2019104566A1 CN 2017113667 W CN2017113667 W CN 2017113667W WO 2019104566 A1 WO2019104566 A1 WO 2019104566A1
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WO
WIPO (PCT)
Prior art keywords
definition
sharpness
photo frame
variable
cover
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Application number
PCT/CN2017/113667
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English (en)
French (fr)
Inventor
李金鑫
Original Assignee
深圳市柔宇科技有限公司
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Filing date
Publication date
Application filed by 深圳市柔宇科技有限公司 filed Critical 深圳市柔宇科技有限公司
Priority to PCT/CN2017/113667 priority Critical patent/WO2019104566A1/zh
Priority to CN201780096921.4A priority patent/CN111356386B/zh
Publication of WO2019104566A1 publication Critical patent/WO2019104566A1/zh

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    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47GHOUSEHOLD OR TABLE EQUIPMENT
    • A47G1/00Mirrors; Picture frames or the like, e.g. provided with heating, lighting or ventilating means
    • A47G1/14Photograph stands

Definitions

  • the present application relates to the field of electronic frames, and in particular, to a smart photo frame and a smart photo frame display method.
  • the digital frame is equipped with an electronic display screen, and the photo is displayed by means of its own storage function, connection to an external memory or wireless transmission of a mobile phone.
  • the traditional frame is made of wood, metal or plastic for placing prints.
  • the accuracy of the digital frame is far less than that of the traditional print photo, and the traditional frame cannot provide interactive operation to the user compared to the digital frame, and can not bring a better experience to the user.
  • the embodiment of the present application discloses a smart photo frame and a smart photo frame display method to solve the above problems.
  • the embodiment of the present application discloses a smart photo frame, including a frame body, a control module, and a variable definition cover plate.
  • the frame body is provided with an opening portion and a receiving portion, and the definition variable cover plate is disposed in the receiving frame. And the inside of the portion is exposed through the opening portion, wherein the receiving portion is located on a side of the variable-resolution cover plate facing away from the opening portion for receiving a print photo, and the control module and the definition variable cover plate are electrically a connection, the control module controls a voltage applied to the definition variable cover to control the sharpness of the definition variable cover, and change the visual effect of viewing the print from the opening .
  • the embodiment of the present invention discloses a smart photo frame display method, which is applied to a smart photo frame, the smart photo frame includes a frame body and a variable definition cover plate, and the definition variable cover plate is disposed in the frame body.
  • the smart photo frame display method includes: controlling a voltage applied to the definition variable cover to control the definition of the definition variable cover, thereby changing the view through the definition variable cover The visual effect of the printed photo on the frame.
  • the present application controls, by the control module, to change a voltage applied to the definition variable cover plate to control the sharpness of the definition variable cover, and to change the view through the definition variable cover Print the visuals of your photos for a better user experience.
  • FIG. 1 is a schematic diagram of a module of a smart photo frame in a first embodiment of the present application.
  • FIG. 2 is a schematic structural diagram of a smart photo frame in the first embodiment of the present application.
  • FIG. 3 is a schematic diagram of disassembling the smart photo frame shown in FIG. 2 in a direction in the first embodiment of the present application.
  • FIG. 4 is a schematic diagram showing the display effect of the smart photo frame shown in FIG. 2 in an embodiment of the present application.
  • FIG. 5 is a schematic diagram of a module of a smart photo frame in a second embodiment of the present application.
  • FIG. 6 is a schematic diagram of a module of a smart photo frame in a third embodiment of the present application.
  • FIG. 7 is a schematic flowchart diagram of a method for displaying a smart photo frame in a fourth embodiment of the present application.
  • FIG. 8 is a schematic flowchart diagram of a method for displaying a smart photo frame in a fifth embodiment of the present application.
  • FIG. 9 is a schematic flowchart diagram of a method for displaying a smart photo frame in a sixth embodiment of the present application.
  • FIG. 1 is a schematic diagram of a smart photo frame 100 according to a first embodiment of the present application.
  • FIG. 2 is a schematic structural diagram of a smart photo frame 100 according to a first embodiment of the present application.
  • the schematic diagram of the smart photo frame 100 shown in FIG. 2 in the first embodiment of the present application is disassembled in one direction.
  • the smart photo frame 100 includes a frame 10, a power source 40, a control module 50, a memory 60, and a variable definition cover. Board 70.
  • the frame 10 is a frame of a conventional photo frame, which may be made of wood, a metal material or the like.
  • the housing 10 is provided with an opening portion 11 and a housing portion 13.
  • the opening portion 11 and the housing portion 13 are disposed in communication with each other.
  • the size of the opening portion 11 is smaller than the size of the housing portion 13.
  • the size of the accommodating portion 13 is substantially equal to the size of the print photograph 30 accommodated in the accommodating portion 13.
  • the size of the accommodating portion 13 is also substantially equal to the size of the definition variable cover plate 70.
  • the definition variable cover 70 is an electrochromic glass, a dimming glass or other cover plate having an electro-optical function.
  • the definition variable cover plate 70 is provided in the accommodating portion 13 and exposed through the opening portion 11.
  • the accommodating portion 13 is located on a side of the definition variable cover 70 that faces away from the mouth portion 11 and can accommodate a print photo 30.
  • the power source 40 supplies power to the smart photo frame 100.
  • the power source 40 is electrically connected to the control module 50.
  • the control module 50 can be a circuit board including a microcontroller circuit that can be placed at any feasible location of the frame 10.
  • the control module 50 is electrically connected to the memory 60 and the definition variable cover 70, respectively.
  • the control module 50 controls the voltage applied to the definition variable cover 70 to control the sharpness of the definition variable cover 70 and to change the visual effect of viewing the print 30 from the opening 11.
  • the print print 30 is also snap-fitted by a snap-fit structure disposed on the side of the frame 10 that faces away from the mouth portion 11.
  • control module 50 gradually reduces the voltage applied to the definition variable cover 70 over time to reduce the sharpness of the definition variable cover 70 when no operation is received.
  • the control module 50 gradually controls the voltage applied to the definition variable cover 70 to be reduced to a minimum. To gradually reduce the sharpness of the definition variable cover 70 until it is minimized, for example, as shown in FIG. 4, since the definition of the definition variable cover 70 has been lowered, the translucent variable cover is transmitted. 70, it is no longer possible to clearly see the characters on the photo 30.
  • step-down refers to lowering the resolution of one level every time a preset time elapses
  • pre-set time may be 1 minute, 10 minutes, 1 hour, etc., and is not limited herein.
  • step down refers to a linear reduction in sharpness over time.
  • the definition of the definition variable cover 70 when the definition of the definition variable cover 70 is lowered, when the display power button (not shown) of the smart photo frame 100 is pressed to wake up the smart photo frame 100, the clear variable cover 70 is cleared. The clarity will reach the highest.
  • control module 50 controls the change of the voltage applied to the definition variable cover 70 to control the sharpness of the definition variable cover 70, and changes the transmission definition variable cover 70. Print the visual effects of Photo 30 for a better user experience.
  • FIG. 5 is a schematic diagram of a module of the smart photo frame 100a according to the second embodiment of the present application.
  • the smart photo frame 100a is similar to the smart photo frame 100 in the first embodiment, except that the smart photo frame 100a further includes a touch panel 90.
  • the touch panel 70 may specifically be a flexible touch panel including a flexible sensor for detecting a touch operation signal input by a user. Other types of flexible or rigid touch sensors, such as an infrared touch sensor, an ultrasonic touch sensor, and the like.
  • the size of the touch panel 90 and the definition variable cover 70 are substantially equal or different, as long as the size of the touch panel 90 is larger than the size of the opening 11.
  • the touch panel 90 is electrically connected to the control module 50.
  • the touch panel 90 is disposed in the housing portion 13 adjacent to the opening portion 11.
  • the definition variable cover 70 is disposed in the accommodating portion 13 and is disposed on a side of the touch panel 90 that faces away from the mouth portion 11.
  • the print photograph 30 is disposed in the accommodating portion 13 and is disposed on a side of the definition variable cover 70 facing away from the touch panel 90.
  • the control module 50 also changes the sharpness of the definition variable cover 70 in response to a user's touch operation on the touch panel 90.
  • the control module 50 controls the stepwise reduction of the application in the definition.
  • the voltage on the cover plate 70 is varied to reduce the sharpness of the definition variable cover 70.
  • the control module 50 controls to gradually reduce the voltage applied to the definition variable cover 70 to reduce the definition.
  • the definition of the cover plate 70 is reduced, for example, to 80%.
  • the control module 50 controls the application to The voltage on the definition variable cover 70 is minimized to minimize the clarity of the definition variable cover 70.
  • the touch panel 90 reaches the preset if no touch operation is received.
  • the control module 50 stops applying voltage to the definition variable cover 70, and the sharpness of the definition variable cover 70 will be minimized, for example, to 20%.
  • the touch panel 90 receives an external touch operation, and the control module 50 responds to the touch operation to increase the application to the definition variable cover 70.
  • the voltage thereby increasing the clarity of the definition variable cover 70.
  • the touch operation 90 includes, but is not limited to, operations such as clicking, sliding, and wiping back and forth on the touch panel 90. "Sliding” refers to an action in which the touch sliding trajectory on the touch panel 90 is not repeated. “Swing back and forth” means that the trajectory of the touch slide on the touch panel 90 is repeated and has a folding back motion.
  • control module 50 responds to a touch operation in the preset time period T3 at a certain position of the touch panel 90 to improve the sharpness of the corresponding position of the definition variable cover 70.
  • the control module 50 adjusts the resolution of the entire definition variable cover 70 to the number of touch operations in response to at least two touch operations in the preset time period T3 at the same position of the touch panel 90.
  • the definition of the entire definition variable cover 70 is adjusted to two touch operations. Sharpness, such as 70%.
  • the control module 50 adjusts the resolution of the entire definition variable cover 70 to the resolution corresponding to the three-touch operation in response to three touch operations in the preset time period T3 at the same position of the touch panel 90, such as 100%.
  • the memory 60 stores the correspondence between the number of touch operations and the sharpness at the same position.
  • the touch panel 90 receives at least two touch operations at the same position within the preset time period T3, and the control module 50 is configured according to the control module 50.
  • the current resolution of the definition variable cover 70 calculates the number of touch operations required to adjust the current definition of the definition variable cover 70 to the highest definition, and actually receives it according to the preset time period T3.
  • the number of touch operations corresponds to the sharpness of the variable definition cover 70. For example, when the definition of the definition variable cover 70 is 40%, the number of touch operations required to adjust the current definition of the definition variable cover 70 to the highest definition is calculated to be three times.
  • the definition of the definition variable cover 70 is 60%
  • the number of touch operations required to adjust the current definition of the definition variable cover 70 to the highest definition is calculated twice.
  • the adjustment of the definition variable cover 70 in different definitions is achieved by dynamically calculating the number of touch operations required to adjust the sharpness of the definition variable cover 70 to the highest.
  • the control module 50 controls the touch. The greater the amplitude of the corresponding sharpness adjustment of the panel 90 in response to each touch operation.
  • the control module 50 controls the touch. The smaller the amplitude of the panel 90 corresponding to the sharpness adjustment corresponding to each touch operation.
  • the touch panel 90 senses a motion track of the touch operation applied thereto, and the control module 50 adjusts the sharpness at the position of the corresponding motion track of the definition variable cover 70 according to the motion track of the touch operation.
  • the control module 50 controls the definition variable cover plate 70 to gradually reduce its definition over time, and prints the display of the photo 30.
  • the effect will gradually become blurred.
  • the print photo 30 is a group photo.
  • the photo is blurred, rubbing it at a certain position makes a certain position clear. For example, if you touch the operation multiple times in any position of the photo, the whole photo will become clear and have a better user experience.
  • FIG. 6 is a schematic diagram of a module of the smart photo frame 100b according to the third embodiment of the present application.
  • the smart photo frame 100b is similar to the smart photo frame 100a in the second embodiment, except that the smart photo frame 100a further includes a pressure sensor 80.
  • the pressure sensor 80 is disposed between the touch panel 90 and the definition variable cover 70.
  • the pressure sensor 80 senses the pressure applied to the touch panel 90, and adjusts the definition variable cover 70 according to the sensed pressure value. Sharpness.
  • the pressure sensor 80 is not limited to being disposed between the touch panel 90 and the definition variable cover 70, and may be disposed at other positions capable of sensing the external pressure of the definition variable cover 70. Specifically, the greater the touch pressure, the greater the increase in the sharpness of the definition variable cover 70, and the smaller the touch pressure, the smaller the increase in the sharpness of the definition variable cover 70.
  • the pressure sensor 80 senses that the greater the pressure applied at a certain position of the touch panel 90, the more the control module 50 controls the sharpness of the sharpness corresponding to the position of the sharpness variable cover 70. Big.
  • control module 50 controls to increase the amplitude of the sharpness of the entire definition variable cover 70. Big.
  • the smart photo frame 100 senses the touch pressure on the touch panel 90 through the pressure sensor 80, and controls the amplitude of the definition of the variable definition cover 70 according to the touch pressure. Users have a better user experience.
  • FIG. 7 is a flowchart of a method for displaying a smart photo frame according to a fourth embodiment of the present application.
  • the smart photo frame display method is applied to the aforementioned smart photo frame 100, and the order of execution is not limited to the order shown in FIG.
  • the smart photo frame display method includes the following steps:
  • Step 710 a smart photo frame 100 is provided.
  • the smart photo frame 100 includes a frame body 10 and a definition variable cover plate 70.
  • the definition variable cover plate 70 is disposed in the frame body 10.
  • Step 720 controlling the voltage applied to the definition variable cover 70 to control the sharpness of the definition variable cover 70 to change the transparency of the transmissive variable cover 70 to view the print 30 mounted on the frame 10. Visual effects.
  • the voltage applied to the definition variable cover 70 is gradually lowered over time to reduce the sharpness of the definition variable cover 70 when no operation is received.
  • the control gradually reduces the voltage applied to the definition variable cover 70 until it is minimized.
  • the sharpness of the definition variable cover 70 is lowered until it is minimized.
  • the definition of the definition variable cover 70 when the definition of the definition variable cover 70 is lowered, when the display power button (not shown) of the smart photo frame 100 is pressed to wake up the smart photo frame 100, the definition of the definition variable cover 70 will be reached. highest.
  • the definition of the definition variable cover 70 will be the highest.
  • control applied to the sharpness variable cover 70 is controlled to change the sharpness of the definition variable cover 70, and the translucent variable cover 70 is changed to view the print 30. Visual effects for a better user experience.
  • FIG. 8 is a flowchart of a smart photo frame display method in a fifth embodiment of the present application.
  • the smart photo frame display method is applied to the aforementioned smart photo frame 100a, and the order of execution is not limited to the order shown in FIG.
  • the smart photo frame display method includes the following steps:
  • a smart photo frame 100 is provided.
  • the smart photo frame 100 includes a frame 10, a variable definition cover 70, and a touch panel 90.
  • the definition variable cover 70 and the touch panel 90 are stacked in the frame 10.
  • Step 820 controlling the voltage applied to the definition variable cover 70 to control the sharpness of the definition variable cover 70 to change the transparency of the transmissive variable cover 70 to view the print 30 mounted on the frame 10. Visual effects.
  • Step 830 changing the sharpness of the definition variable cover 70 in response to a user's touch operation on the touch panel 90.
  • the sharpness variable cover 70 gradually reduces the voltage applied to the definition variable cover 70 when no touch operation is received within the preset time period T1 displayed at the highest or higher definition. To reduce the overall clarity of the definition variable cover 70.
  • the control is applied to the definition variable cover 70 when no touch operation is received for a predetermined period of time T2.
  • the voltage is reduced to a minimum to minimize the clarity of the definition variable cover 70.
  • the touch operation on the touch panel 90 is responded to increase the definition of the definition variable cover 70.
  • the sharpness at the corresponding position of the definition variable cover 70 is increased.
  • the clarity of the entire definition variable cover 70 is adjusted to a clear number of touch operations. degree.
  • the touch panel 90 calculates the current resolution of the definition variable cover 70 when receiving at least two touch operations.
  • the definition of the definition variable cover 70 is low, for example, less than 30%
  • the control panel 90 receives the touch operation within the preset time period T3
  • the amplitude of the sharpness adjustment corresponding to each touch operation is larger.
  • variable definition cover 70 when the definition of the variable definition cover 70 is high, for example, higher than 70%, when the touch panel 90 receives the touch operation within the preset time period T3, each touch operation corresponds to The smaller the resolution of the sharpness adjustment.
  • the touch panel 90 senses the motion track of the touch operation applied thereto, and adjusts the sharpness of the position of the corresponding motion track of the definition variable cover 70 according to the motion track of the touch operation.
  • the control definition variable cover 70 gradually reduces its definition over time, and the display effect of the print photo 30 will gradually become blurred.
  • the user sees that the print photo 30 in the smart photo frame 100 in the home has been blurred pick up the smart photo frame 100, slide it by hand, wipe it, and the display effect of the print photo 30 will become clear, with better users.
  • the control definition variable cover 70 gradually reduces its definition over time, and the display effect of the print photo 30 will gradually become blurred.
  • FIG. 9 is a flowchart of a method for displaying a smart photo frame in a sixth embodiment of the present application.
  • the smart photo frame display method is applied to the aforementioned smart photo frame 100b, and the execution order is not limited to the order shown in FIG.
  • the smart photo frame display method includes the following steps:
  • a smart photo frame 100 is provided.
  • the smart photo frame 100 includes a frame 10, a variable definition cover 70, a pressure sensor 80, and a touch panel 90.
  • the variable definition cover 70 is disposed in the frame 10, and the touch panel 70 is disposed.
  • the panel 90 is disposed on the definition variable cover 70, and the pressure sensor 80 is disposed between the touch panel 90 and the definition variable cover 70.
  • Step 920 controlling the voltage applied to the definition variable cover 70 to control the sharpness of the definition variable cover 70 to change the transparency of the transmissive variable cover 70 to view the print 30 mounted on the frame 10. Visual effects.
  • the pressure sensor 80 senses the pressure applied to the touch panel 90 and adjusts the sharpness of the definition variable cover 70 based on the sensed pressure value. Specifically, the greater the touch pressure, the greater the increase in the sharpness of the definition variable cover 70, and the smaller the touch pressure, the smaller the increase in the sharpness of the definition variable cover 70.
  • the smart photo frame 100 senses the touch pressure on the touch panel 90 through the pressure sensor 80, and controls the amplitude of the definition of the variable definition cover 70 according to the touch pressure. Users have a better user experience.

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Abstract

本申请公开一种智能相框,包括框体、控制模块和清晰度可变盖板,所述框体上设置有开口部和收容部,所述清晰度可变盖板设置在所述收容部内并通过开口部显露在外,所述收容部位于所述清晰度可变盖板背离所述开口部的一侧用于收容一冲印照片,所述控制模块与所述清晰度可变盖板电性连接,所述控制模块控制施加在所述清晰度可变盖板的电压,以控制所述清晰度可变盖板的清晰度,以及改变从所述开口部观看所述冲印照片的视觉效果。本申请还公开一种智能相框显示方法。本申请通过所述控制模块控制改变施加在所述清晰度可变盖板的电压以控制所述清晰度可变盖板的清晰度,从而改变透过所述清晰度可变盖板观看所述冲印照片的视觉效果,用户体验更好。

Description

智能相框和智能相框显示方法 技术领域
本申请涉及电子框体领域,尤其涉及一种智能相框和智能相框显示方法。
背景技术
现有技术中,数码框体配备电子显示屏,通过自身存储功能、连接外部存储器或手机无线传输等方式来显示照片。传统框体为木质、金属或塑料制成,用以放置冲印照片。然而,数码框体的精度远没有传统冲印照片的高,而传统框体相比数码框体来说不能给用户带来交互式的操作,均不能带给用户更好的体验。
发明内容
本申请实施例公开一种智能相框和智能相框显示方法,以解决上述问题。
本申请实施例公开一种智能相框,包括框体、控制模块和清晰度可变盖板,所述框体上设置有开口部和收容部,所述清晰度可变盖板设置在所述收容部内并通过开口部显露在外,所述收容部位于所述清晰度可变盖板背离所述开口部的一侧用于收容一冲印照片,所述控制模块与所述清晰度可变盖板电性连接,所述控制模块控制施加在所述清晰度可变盖板的电压,以控制所述清晰度可变盖板的清晰度,以及改变从所述开口部观看所述冲印照片的视觉效果。
本申请实施例公开一种智能相框显示方法,应用于一智能相框上,所述智能相框包括框体和清晰度可变盖板,所述清晰度可变盖板设置在所述框体中,所述智能相框显示方法包括:控制施加在所述清晰度可变盖板的电压以控制所述清晰度可变盖板的清晰度,从而改变透过所述清晰度可变盖板观看装在所述框体上的冲印照片的视觉效果。
本申请通过所述控制模块控制改变施加在所述清晰度可变盖板的电压以控制所述清晰度可变盖板的清晰度,以及改变透过所述清晰度可变盖板观看所述冲印照片的视觉效果,具有更好的用户体验。
附图说明
为了更清楚地说明本申请实施例中的技术方案,下面将对实施例中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1为本申请第一实施例中的智能相框的模块示意图。
图2为本申请第一实施例中的智能相框的结构示意图。
图3为本申请第一实施例中图2所示的智能相框在一方向上的拆解示意图。
图4为本申请弟一实施例中图2所示的智能相框的显示效果示意图。
图5为本申请第二实施例中的智能相框的模块示意图。
图6为本申请第三实施例中的智能相框的模块示意图。
图7为本申请第四实施例中的智能相框显示方法的流程示意图。
图8为本申请第五实施例中的智能相框显示方法的流程示意图。
图9为本申请第六实施例中的智能相框显示方法的流程示意图。
具体实施方式
下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅是本申请一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
请参阅图1、图2和图3,图1为本申请第一实施例中的智能相框100的模块示意图,图2为本申请第一实施例中的智能相框100的结构示意图,图3为本申请第一实施例中图2所示的智能相框100在一方向上的拆解示意图。智能相框100包括框体10、电源40、控制模块50、存储器60和清晰度可变盖 板70。框体10为传统相框的框体,其可由木材、金属材料等制成。框体10中设置有开口部11和收容部13。开口部11和收容部13相通设置。开口部11的尺寸小于收容部13的尺寸。收容部13的尺寸与收容于收容部13的冲印照片30尺寸大致相等。收容部13的尺寸还与清晰度可变盖板70的尺寸大致相等。清晰度可变盖板70为电致变色玻璃、调光玻璃或者其它具有电致透明功能的盖板。清晰度可变盖板70设置在收容部13中并通过开口部11显露在外。收容部13位于清晰度可变盖板70背离开口部11的一侧可收容一冲印照片30。电源40为智能相框100供电。电源40与控制模块50电性连接。控制模块50可以为包括微控制器电路的电路板,可以设置在框体10的任何可行位置处。控制模块50分别与存储器60和清晰度可变盖板70电性连接。控制模块50控制施加在清晰度可变盖板70上的电压,以控制清晰度可变盖板70的清晰度,以及改变从开口部11观看冲印照片30的视觉效果。
可选择地,在一实施例中,冲印照片30还通过设置在框体10背离开口部11一侧上的卡扣结构卡扣固定。
可选择地,控制模块50在没有接收到任何操作时,随着时间的推移逐步降低施加在清晰度可变盖板70上的电压,以降低清晰度可变盖板70的清晰度。
进一步地,当清晰度可变盖板70以最高或较高的清晰度显示预设时间段T1后,控制模块50将控制施加在清晰度可变盖板70上的电压逐步降低直到降到最低,以将清晰度可变盖板70的清晰度逐步降低直到降到最低,例如,如图4所示,由于清晰度可变盖板70的清晰度已经降低,透过清晰度可变盖板70,已经不能清晰的看到冲印照片30上的人物。
可选择地,本实施例中,“逐步降低”是指每经过预设时间就降低一个等级的清晰度,“预设时间”可以是1分钟、10分钟、1小时等,在此不做限定。可理解,在另一实施例中,“逐步降低”是指随着时间的推移线性的降低清晰度。
在一实施例中,当清晰度可变盖板70的清晰度降低时,当按压智能相框100的显示电源键(图未示)唤醒智能相框100时,清晰度可变盖板70的清 晰度将达到最高。
可理解,在另一实施例中,当关闭智能相框100的电源40并再次开启智能相框100的电源40时,清晰度可变盖板70的清晰度将达到最高。
本申请第一实施例中,通过控制模块50控制改变施加在清晰度可变盖板70的电压以控制清晰度可变盖板70的清晰度,以及改变透过清晰度可变盖板70观看冲印照片30的视觉效果,具有更好的用户体验。
请参考图5,图5为本申请第二实施例中的智能相框100a的模块示意图。在第二实施例中,智能相框100a与第一实施例中的智能相框100相似,区别之处在于,智能相框100a还包括触控面板90。触控面板70具体可以为包括柔性传感器的柔性触摸面板,用于检测用户输入的触控操作信号;也可以为其它类型的柔性或刚性触摸传感器,比如红外触摸传感器、超声波触摸传感器等。触控面板90与清晰度可变盖板70的尺寸大致相等,也可以不相等,只要触控面板90的尺寸大于开口部11的尺寸即可。触控面板90与控制模块50电性连接。触控面板90设置在收容部13内并邻近开口部11。清晰度可变盖板70设置在收容部13中并设置在触控面板90背离开口部11的一侧上。冲印照片30设置在收容部13中并设置在清晰度可变盖板70背离触控面板90的一侧。控制模块50还响应用户在触控面板90上的触控操作改变清晰度可变盖板70的清晰度。
可选择地,清晰度可变盖板70以最高或较高的清晰度显示的预设时间段T1内触控面板90没有接收到任何触控操作时,控制模块50控制逐步降低施加在清晰度可变盖板70上的电压,以降低清晰度可变盖板70的清晰度。例如,触控面板90在预设时间段T1内,例如1分钟,没有接收到任何触摸操作时,控制模块50便控制逐步降低施加在清晰度可变盖板70上的电压进而降低清晰度可变盖板70的清晰度,例如,降低到80%。
可选择地,触控面板90在逐步降低施加在清晰度可变盖板70上的电压的过程中,如果在预设时间段T2内没有接收到任何触控操作时,控制模块50控制施加在清晰度可变盖板70上的电压降到最低,以将清晰度可变盖板70的清晰度降到最低。具体地,例如,触控面板90在逐步降低施加在清晰度可变盖板70上的电压的过程中,如果没有接收到任何触控操作的时长达到预设 时间段T2,例如,10分钟时,控制模块50停止向清晰度可变盖板70施加电压,清晰度可变盖板70的清晰度将降到最低,例如,降低到20%。
可选择地,清晰度可变盖板70的清晰度降低时,触控面板90接收到外界的触控操作,控制模块50响应该触控操作,以增加施加到清晰度可变盖板70上的电压,从而提高清晰度可变盖板70的清晰度。触控操作90包括但不限于在触控面板90的点击、滑动和来回擦拭等操作。“滑动”是指在触控面板90上的触摸滑动轨迹不重复的动作。“来回擦拭”是指在触控面板90上的触摸滑动的轨迹有重复且具有折返的动作。
可选择地,控制模块50响应在触控面板90的某一位置上预设时间段T3内的一次触控操作,以提高清晰度可变盖板70对应位置上的清晰度。
可选择地,控制模块50响应在触控面板90的同一位置上预设时间段T3内至少两次触控操作时,将整个清晰度可变盖板70的清晰度调整到触控操作的次数对应的清晰度。例如,控制模块50响应在触控面板90的同一位置上预设时间段T3内的两次触控操作时,将整个清晰度可变盖板70的清晰度调整到两次触控操作对应的清晰度,如70%。控制模块50响应在触控面板90的同一位置上预设时间段T3内的三次触控操作时,将整个清晰度可变盖板70的清晰度调整到三次触控操作对应的清晰度,如100%。可理解,存储器60存储在同一位置上的触控操作的次数与清晰度的对应关系。
可选择地,当清晰度可变盖板70的清晰度未降到最低时,触控面板90在预设时间段T3内其同一位置上接收到至少两次触控操作时,控制模块50根据清晰度可变盖板70的当前清晰度,计算将清晰度可变盖板70的当前清晰度调整到最高清晰度时所需要的触控操作次数,并根据预设时间段T3内实际接收到的触控操作次数对应调整清晰度可变盖板70的清晰度。例如,当清晰度可变盖板70的清晰度为40%时,计算将清晰度可变盖板70的当前清晰度调整到最高清晰度时所需要的触控操作次数为3次。当清晰度可变盖板70的清晰度为60%时,计算将清晰度可变盖板70的当前清晰度调整到最高清晰度时所需要的触控操作次数为2次。通过动态地计算将清晰度可变盖板70的清晰度调整到最高时所需要的触控操作次数,实现清晰度可变盖板70在不同清晰度情况下的调整。
可选择地,当清晰度可变盖板70的清晰度较低时,例如,低于30%,触控面板90在预设时间段T3内接收到触控操作时,控制模块50控制触控面板90响应每一次触控操作时对应的清晰度调整的幅度越大。
可选择地,当清晰度可变盖板70的清晰度较高时,例如,高于70%,触控面板90在预设时间段T3内接收到触控操作时,控制模块50控制触控面板90响应每一次触控操作对应的清晰度调整的幅度越小。
可选择地,触控面板90感应施加在其上的触控操作的运动轨迹,控制模块50根据触控操作的运动轨迹调整清晰度可变盖板70的对应运动轨迹的位置上的清晰度。
本申请第二实施例中,智能相框100被搁置一段时间不进行任何触控操作时,控制模块50控制清晰度可变盖板70随着时间的推移逐步降低其清晰度,冲印照片30的显示效果将逐渐变为模糊。当用户看到家里的智能相框100中的冲印照片30已经模糊时,拿起智能相框100,用手滑一滑、擦一擦,冲印照片30的显示效果将变为清晰。比如,冲印照片30为一张合影照片,当照片模糊的时候,在某位置上擦一擦,某位置就对应变得清晰。又如,在照片的任一位置连续触摸操作多次,对应整张照片都变清晰,具有更好的用户体验。
请参考图6,图6为本申请第三实施例中的智能相框100b的模块示意图。在第三实施例中,智能相框100b与第二实施例中的智能相框100a相似,区别之处在于,智能相框100a还包括压力传感器80。压力传感器80设置在触控面板90和清晰度可变盖板70之间,压力传感器80感应施加在触控面板90上的压力,并根据感应到的压力值调整清晰度可变盖板70的清晰度。可以理解的是,压力传感器80并不仅限于设置在触控面板90和清晰度可变盖板70之间,也可以设置在其他能感应到清晰度可变盖板70所受外界压力的位置。具体当触控压力越大,清晰度可变盖板70的清晰度的增加幅度越大,当触控压力越小,清晰度可变盖板70的清晰度的增加幅度越小。
可选择地,压力传感器80感应到在触控面板90的某一位置上施加的压力越大,控制模块50控制提高清晰度可变盖板70对应位置上的清晰度的幅度越 大。
可选择地,压力传感器80感应到在触控面板90的某一位置上施加的压力越大且大于预设阈值时,控制模块50控制提高整个清晰度可变盖板70的清晰度的幅度越大。
本申请第三实施例中,智能相框100通过压力传感器80感应触控面板90上的触控压力大小,并根据触控压力大小来控制调节清晰度可变盖板70的清晰度的幅度,给用户更好的用户体验。
请一并参阅图7,图7为本申请第四实施例中的智能相框显示方法的流程图。智能相框显示方法应用于前述的智能相框100中,执行顺序并不限于图7所示的顺序。智能相框显示方法包括步骤:
步骤710,提供一智能相框100,智能相框100包括框体10和清晰度可变盖板70,清晰度可变盖板70设置在框体10中。
步骤720,控制施加在清晰度可变盖板70的电压进而控制清晰度可变盖板70的清晰度,以改变透过清晰度可变盖板70观看装在框体10上的冲印照片30的视觉效果。
具体地,在没有接收到任何操作时,随着时间的推移逐步降低施加在清晰度可变盖板70上的电压,以降低清晰度可变盖板70的清晰度。
可选择地,清晰度可变盖板70以最高或较高的清晰度显示的预设时间段T1后,将控制逐渐降低施加在清晰度可变盖板70上的电压直到降到最低,以将清晰度可变盖板70的清晰度降低直到降到最低。
可选择地,当清晰度可变盖板70的清晰度降低时,当按压智能相框100的显示电源键(图未示)唤醒智能相框100时,清晰度可变盖板70的清晰度将达到最高。
可选择地,当关闭智能相框100的电源40并再次开启智能相框100的电源40时,清晰度可变盖板70的清晰度将达到最高。
本申请第四实施例中,通过控制改变施加在清晰度可变盖板70的电压以控制清晰度可变盖板70的清晰度,以及改变透过清晰度可变盖板70观看冲印照片30的视觉效果,具有更好的用户体验。
请一并参阅图8,图8为本申请第五实施例中的智能相框显示方法的流程 图。智能相框显示方法应用于前述的智能相框100a中,执行顺序并不限于图8所示的顺序。智能相框显示方法包括步骤:
步骤810,提供一智能相框100,智能相框100包括框体10、清晰度可变盖板70和触控面板90,清晰度可变盖板70和触控面板90层叠设置在框体10中。
步骤820,控制施加在清晰度可变盖板70的电压进而控制清晰度可变盖板70的清晰度,以改变透过清晰度可变盖板70观看装在框体10上的冲印照片30的视觉效果。
步骤830,响应用户在触控面板90上的触控操作改变清晰度可变盖板70的清晰度。
可选择地,清晰度可变盖板70以最高或较高的清晰度显示的预设时间段T1内没有接收到任何触控操作时,逐步降低施加在清晰度可变盖板70上的电压,以降低清晰度可变盖板70的整体清晰度。
可选择地,在逐步降低施加在清晰度可变盖板70上的电压的过程中,超过预定时间段T2没有接收到任何触控操作时,控制将施加在清晰度可变盖板70上的电压降到最低,以将清晰度可变盖板70的清晰度降到最低。
可选择地,清晰度可变盖板70的清晰度降低时,响应在触控面板90上的触控操作,以增加清晰度可变盖板70的清晰度。
可选择地,响应在触控面板90的某一位置上预设时间段T3内的一次触控操作,以增加清晰度可变盖板70对应位置上的清晰度。
可选择地,响应在触控面板90的同一位置上预设时间段T3内至少两次触控操作时,将整个清晰度可变盖板70的清晰度调整到触控操作的次数对应的清晰度。
可选择地,当清晰度可变盖板70的清晰度未降到最低时,触控面板90在接收到至少两次触控操作时,根据清晰度可变盖板70的当前清晰度,计算将清晰度可变盖板70的当前清晰度调整到最高清晰度时所需要的触控操作次数,并根据预设时间段T3内实际接收到的触控操作次数对应调整清晰度可变盖板70的清晰度。
可选择地,当清晰度可变盖板70的清晰度较低时,例如,低于30%,触 控面板90在预设时间段T3内接收到触控操作时,每一次触控操作对应的清晰度调整的幅度越大。
可选择地,当清晰度可变盖板70的清晰度较高时,例如,高于70%,触控面板90在预设时间段T3内接收到触控操作时,每一次触控操作对应的清晰度调整的幅度越小。
可选择地,触控面板90感应施加在其上的触控操作的运动轨迹,根据触控操作的运动轨迹调整清晰度可变盖板70的对应运动轨迹的位置上的清晰度。
本申请第五实施例中,智能相框100被搁置一段时间不进行任何触控操作时,控制清晰度可变盖板70随着时间的推移逐步降低其清晰度,冲印照片30的显示效果将逐渐变为模糊。当用户看到家里的智能相框100中的冲印照片30已经模糊时,拿起智能相框100,用手滑一滑、擦一擦,冲印照片30的显示效果将变为清晰,具有更好的用户体验。
请一并参阅图9,为本申请第六实施例中的智能相框显示方法的流程图。智能相框显示方法应用于前述的智能相框100b中,执行顺序并不限于图9所示的顺序。智能相框显示方法包括步骤:
步骤910,提供一智能相框100,智能相框100包括框体10、清晰度可变盖板70、压力传感器80和触控面板90,清晰度可变盖板70设置在框体10中,触控面板90设置在清晰度可变盖板70上,压力传感器80设置在触控面板90和清晰度可变盖板70之间。
步骤920,控制施加在清晰度可变盖板70的电压进而控制清晰度可变盖板70的清晰度,以改变透过清晰度可变盖板70观看装在框体10上的冲印照片30的视觉效果。
步骤930,压力传感器80感应施加在触控面板90上的压力,并根据感应到的压力值调整清晰度可变盖板70的清晰度。具体当触控压力越大,清晰度可变盖板70的清晰度的增加幅度越大,当触控压力越小,清晰度可变盖板70的清晰度的增加幅度越小。
可选择地,感应到在触控面板90的某一位置上施加的压力越大,控制提高清晰度可变盖板70对应位置上的清晰度的幅度越大。
可选择地,感应到在触控面板90的某一位置上施加的压力越大且大于预设阈值时,控制提高整个清晰度可变盖板70的清晰度的幅度越大。
本申请第六实施例中,智能相框100通过压力传感器80感应触控面板90上的触控压力大小,并根据触控压力大小来控制调节清晰度可变盖板70的清晰度的幅度,给用户更好的用户体验。
以上是本申请的优选实施例,应当指出,对于本技术领域的普通技术人员来说,在不脱离本申请原理的前提下,还可以做出若干改进和润饰,这些改进和润饰也视为本申请的保护范围。

Claims (20)

  1. 一种智能相框,包括框体,所述框体上设置有开口部和收容部,其特征在于,所述智能相框还包括控制模块和清晰度可变盖板,所述清晰度可变盖板设置在所述收容部内并通过开口部显露在外,所述收容部位于所述清晰度可变盖板背离所述开口部的一侧用于收容一冲印照片,所述控制模块与所述清晰度可变盖板电性连接,所述控制模块控制施加在所述清晰度可变盖板的电压,以控制所述清晰度可变盖板的清晰度,以及改变从所述开口部观看所述冲印照片的视觉效果。
  2. 如权利要求1所述的智能相框,其特征在于,所述控制模块在没有接收到任何操作时,逐步降低施加在所述清晰度可变盖板上的电压,以降低所述清晰度可变盖板的清晰度。
  3. 如权利要求1所述的智能相框,其特征在于,所述智能相框还包括触控面板,所述触控面板设置在所述收容部内,并位于所述清晰度可变盖板靠近所述开口部的一侧,所述控制模块响应在所述触控面板上的触控操作改变所述清晰度可变盖板的清晰度。
  4. 如权利要求3所述的智能相框,其特征在于,所述触控面板在第一预设时间段内没有接收到任何触控操作时,所述控制模块控制逐步降低施加在所述清晰度可变盖板上的电压,以降低所述清晰度可变盖板的清晰度;所述触控面板在逐步降低施加在所述清晰度可变盖板上的电压的过程中在第二预设时间段内没有接收到任何触控操作时,所述控制模块控制将施加在所述清晰度可变盖板上的电压降到最低,以将所述清晰度可变盖板的清晰度降到最低。
  5. 如权利要求3和4任一项所述的智能相框,其特征在于,所述清晰度可变盖板的清晰度降低时,所述控制模块响应在所述触控面板上的触控操作,以增加施加到所述清晰度可变盖板上的电压,从而提高所述清晰度可变盖板的清晰度。
  6. 如权利要求3所述的智能相框,其特征在于,所述控制模块响应在第三预设时间段内在所述触控面板的某一位置上的一次触控操作,以增加 所述清晰度可变盖板对应位置上的清晰度;所述触控面板在所述第三预设时间段内同一位置上接收到至少两次触控操作时,所述控制模块将所述清晰度可变盖板的清晰度调整到所述触控操作的次数对应的清晰度。
  7. 如权利要求6所述的智能相框,其特征在于,所述触控面板在接收到至少两次触控操作时,所述控制模块根据所述清晰度可变盖板的当前清晰度计算将所述清晰度可变盖板的清晰度调整到最高时所需要的触控操作次数,并根据所述第三预设时间段内实际接收到的触控操作次数对应调整所述清晰度可变盖板的清晰度。
  8. 如权利要求3所述的智能相框,其特征在于,所述触控面板感应施加在其上的触控操作的运动轨迹,所述控制模块根据所述触控操作的运动轨迹调整所述清晰度可变盖板的对应所述运动轨迹的位置的清晰度。
  9. 如权利要求3所述的智能相框,其特征在于,所述智能相框还包括压力传感器,所述压力传感器设置在所述触控面板和所述清晰度可变盖板之间,所述压力传感器感应施加在所述触控面板上的压力,并根据感应到的压力值调整所述清晰度可变盖板的清晰度。
  10. 如权利要求9所述的智能相框,其特征在于,所述压力传感器感应到在所述触控面板的某一位置上施加的压力越大,所述控制模块控制提高所述清晰度可变盖板对应位置上的清晰度的幅度越大;所述压力传感器感应到在所述触控面板的同一位置上施加的压力越大且大于预设阈值时,所述控制模块控制提高整个所述清晰度可变盖板的清晰度的幅度越大。
  11. 一种智能相框显示方法,应用于一智能相框上,所述智能相框包括框体和清晰度可变盖板,所述清晰度可变盖板设置在所述框体中,所述智能相框显示方法包括:
    控制施加在所述清晰度可变盖板的电压以控制所述清晰度可变盖板的清晰度,从而改变透过所述清晰度可变盖板观看装在所述框体上的冲印照片的视觉效果。
  12. 如权利要求11所述的智能相框显示方法,其特征在于,所述智能相框显示方法包括:
    在没有接收到任何操作时,逐步降低施加在所述清晰度可变盖板上的 电压,以降低所述清晰度可变盖板的清晰度。
  13. 如权利要求11所述的智能相框显示方法,其特征在于,所述智能相框包括触控面板,所述触控面板设置在所述框体上,所述智能相框显示方法还包括:
    响应用户在所述触控面板上的触控操作改变所述清晰度可变盖板的清晰度。
  14. 如权利要求13所述的智能相框显示方法,其特征在于,所述智能相框显示方法还包括:
    在第一预设时间段内没有接收到任何触控操作时,逐步降低施加在所述清晰度可变盖板上的电压,以降低所述清晰度可变盖板的清晰度;
    在逐步降低施加在所述清晰度可变盖板上的电压的过程中在第二预设时间段内没有接收到任何触控操作时,控制将施加在所述清晰度可变盖板上的电压降到最低,以将所述清晰度可变盖板的清晰度降到最低。
  15. 如权利要求13和14任一项所述的智能相框显示方法,其特征在于,所述智能相框显示方法还包括:所述清晰度可变盖板的清晰度降低时,响应在所述触控面板上的触控操作,以增加施加到所述清晰度可变盖板上的电压,从而提高所述清晰度可变盖板的清晰度。
  16. 如权利要求13所述的智能相框显示方法,其特征在于,所述智能相框显示方法还包括:
    响应在所述触控面板的某一位置上第三预设时间段内的一次触控操作,以增加所述清晰度可变盖板对应位置上的清晰度;
    响应在所述触控面板的同一位置上在第三预设时间段内的至少两次触控操作时,将所述清晰度可变盖板的清晰度调整到所述触控操作的次数对应的清晰度。
  17. 如权利要求16所述的智能相框显示方法,其特征在于,所述智能相框显示方法还包括:在接收到至少两次触控操作时,根据所述清晰度可变盖板的当前清晰度计算将所述清晰度可变盖板的清晰度调整到最高清晰度时所需要的触控操作次数,并根据预设时间段内实际接收到的触控操作次数对应调整所述清晰度可变盖板的清晰度。
  18. 如权利要求13所述的智能相框显示方法,其特征在于,所述智能相框显示方法还包括:感应施加在其上的触控操作的运动轨迹,并根据所述触控操作的运动轨迹调整所述清晰度可变盖板的对应所述运动轨迹的位置的清晰度。
  19. 如权利要求18所述的智能相框显示方法,其特征在于,所述智能相框包括压力传感器,所述智能相框显示方法还包括:所述压力传感器感应施加在所述触控面板上的压力,并根据感应到的压力值实时调整所述清晰度可变盖板的清晰度。
  20. 如权利要求19所述的智能相框显示方法,其特征在于,所述智能相框显示方法还包括:感应到在某一位置上施加的压力越大,控制提高所述清晰度可变盖板的对应位置上的清晰度的幅度越大;感应到在同一位置上施加的压力越大且大于预设阈值时,控制提高整个所述清晰度可变盖板的清晰度的幅度越大。
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Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5230172A (en) * 1992-05-28 1993-07-27 Hsu Junior Julian Picture frame
CN101449899A (zh) * 2007-12-07 2009-06-10 鸿富锦精密工业(深圳)有限公司 数字相框
CN101771778A (zh) * 2008-12-27 2010-07-07 鸿富锦精密工业(深圳)有限公司 数码相框及在其中显示照片的方法
CN102117576A (zh) * 2009-12-31 2011-07-06 鸿富锦精密工业(深圳)有限公司 电子相框
CN201996081U (zh) * 2011-01-30 2011-10-05 任超雄 相框
CN103617776A (zh) * 2013-11-27 2014-03-05 广东威创视讯科技股份有限公司 显示屏亮度均匀性调整方法和系统
CN206333670U (zh) * 2016-06-26 2017-07-18 长沙盘子教育咨询有限公司 一种具有裸眼3d效果的相框

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5230172A (en) * 1992-05-28 1993-07-27 Hsu Junior Julian Picture frame
CN101449899A (zh) * 2007-12-07 2009-06-10 鸿富锦精密工业(深圳)有限公司 数字相框
CN101771778A (zh) * 2008-12-27 2010-07-07 鸿富锦精密工业(深圳)有限公司 数码相框及在其中显示照片的方法
CN102117576A (zh) * 2009-12-31 2011-07-06 鸿富锦精密工业(深圳)有限公司 电子相框
CN201996081U (zh) * 2011-01-30 2011-10-05 任超雄 相框
CN103617776A (zh) * 2013-11-27 2014-03-05 广东威创视讯科技股份有限公司 显示屏亮度均匀性调整方法和系统
CN206333670U (zh) * 2016-06-26 2017-07-18 长沙盘子教育咨询有限公司 一种具有裸眼3d效果的相框

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