WO2017177520A1 - 一种拍摄终端 - Google Patents

一种拍摄终端 Download PDF

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Publication number
WO2017177520A1
WO2017177520A1 PCT/CN2016/084285 CN2016084285W WO2017177520A1 WO 2017177520 A1 WO2017177520 A1 WO 2017177520A1 CN 2016084285 W CN2016084285 W CN 2016084285W WO 2017177520 A1 WO2017177520 A1 WO 2017177520A1
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WO
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Prior art keywords
groove
movable rod
rod
photographing terminal
lens module
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PCT/CN2016/084285
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English (en)
French (fr)
Inventor
林德好
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中兴通讯股份有限公司
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Publication of WO2017177520A1 publication Critical patent/WO2017177520A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/02Constructional features of telephone sets

Definitions

  • the utility model relates to a photographing technology, in particular to a photographing terminal.
  • the zoom function in the terminal camera is mainly divided into two types, including: digital zoom and optical zoom.
  • the digital zoom mode is generally used due to the limitation of controlling the thickness of the terminal body and the space saving layout. Pictures taken with the digital zoom function can seriously degrade the image quality, so many people do not use this feature frequently.
  • the benefits of using optical zoom can be achieved with lossless zoom telephoto, while optical zoom incorporates an optical lens module.
  • the application of the mobile phone will increase the thickness of the mobile phone body and take up space.
  • optics on the market.
  • the related products of the zoom module on the mobile phone camera are often inconvenient to carry and easy to lose.
  • embodiments of the present invention are desirably provided with a photographing terminal capable of reducing the thickness of a photographing terminal body while photographing using an optical zoom.
  • an embodiment of the present invention provides a photographing terminal 10, including:
  • the first groove 103 of the retractable lens module is fastened, and the first groove 103 is disposed on a casing where the camera 104 is located;
  • the camera 104 is optically zoomed by the retractable lens module 101 in the first groove 103 or fixed above the camera 104.
  • the photographing terminal 10 further includes:
  • the bottom surface is provided with a second groove 106 of the first groove 103, and the second groove 106 is further provided with the camera 104; wherein the fixing rod 105 is fixed on the side of the second groove 106 a second groove 106 is divided into two portions on the wall, a bottom surface of the first portion of the second groove 106 is provided with the first groove 103; and a second concave portion of the second groove 106
  • the camera 104 is disposed on the bottom surface of the second portion of the slot 106.
  • the fixing rod 105 includes:
  • a deformable member 1052 disposed on the fixed rod body 1051, when the first portion of the second groove 106 is fastened to the movable rod 102, the deformable member 1052 is in a deformed state; when the second When the second portion of the recess 106 is fastened to the movable rod 102, the variability member 1052 is in an extended state;
  • the photographing terminal 10 further includes:
  • the telescoping member 107 is disposed at a position where the outer casing meets the edge of the first portion of the second recess 106 ;
  • the The telescoping member 107 allows the movable lever 102 to be disengaged from the first portion of the second recess 106, and the deformable member 1052 in the deformed state resumes releasing the elastic force, forcing the movable lever 102 to rotate, causing the movable lever 102 to be The second portion of the second groove 106 is fastened.
  • the telescopic component 107 includes:
  • a telescopic rod 1072 connected to the other end of the elastic block 1071; the telescopic rod 1072 receives an elastic force of the elastic block 1071 near the first groove 103, so that the telescopic rod 1072 has a first concave shape a tendency of the slot 103 to move to prevent the movable lever 102 from disengaging from the first portion of the second recess 106;
  • the extension rod 1073 is fixed on the telescopic rod 1072.
  • the telescopic rod 1072 is away from the first groove 103 along with the buckle block 1073. Movement, squeezing the spring block 1071.
  • the deformable member 1052 is a spring
  • the spring block 1071 is a spring
  • the length of the retractable lens module 101 after contraction is 3/4 times the thickness of the body of the photographing terminal 10; the length of the telescopic lens module 101 after being fully extended is the photographing terminal. 2.5 times as large as 10, the depth of the first groove 103 is 3/4 times the thickness of the body of the photographing terminal 10.
  • the thickness of the movable rod 102 is the depth of the second groove 106.
  • the retractable lens module 101 comprises three sets of zoom lenses.
  • the embodiment of the present invention provides a photographing terminal 10, comprising: a movable rod 102 having a retractable lens module 101, a first groove 103, a camera 104 and a fixing rod 105, wherein the first groove 103 is used for buckle
  • the fixed lens module 101 is disposed on the outer casing of the camera 104; the fixed rod 105 of the movable rod 102 is fixed, and the fixed rod 105 is disposed on the outer casing, and the fixed rod 105 drives the movable rod 102.
  • the camera 104 can be extended
  • the condensing lens module 101 performs optical zooming.
  • the retractable lens module 101 when the retractable lens module 101 is not used, it can be hidden in the first recess 103.
  • the retractable lens module 101 When the retractable lens module 101 is zoomed, the retractable lens module 101 is rotated by the movable rod 102. On the camera 104, optical zooming is achieved, so that the retractable lens module 101 does not increase the thickness of the photographing terminal 10 when not in use, thereby reducing the thickness of the photographing terminal 10 in the case of ensuring optical zoom.
  • FIG. 1 is a schematic structural diagram of a photographing terminal provided by the prior art
  • Figure 2 is a schematic structural view 1 of a photographing terminal provided by the present invention.
  • Figure 3 is a schematic structural view 2 of a photographing terminal provided by the present invention.
  • Figure 4 is a schematic structural view 3 of a photographing terminal provided by the present invention.
  • Figure 5 is a schematic structural view of a movable rod and a fixed rod provided by the present invention.
  • Figure 6 is a schematic structural view 4 of a photographing terminal provided by the present invention.
  • 7-a is a schematic structural view of a movable rod, a retractable lens module and a fixing rod provided by the utility model;
  • Figure 7-b is a schematic structural view of a fixing rod provided by the present invention.
  • Figure 8 is a schematic structural view of a telescopic component provided by the present invention.
  • FIG. 9 is a schematic structural view 5 of a photographing terminal provided by the present invention.
  • the present invention provides a photographing terminal 10, as shown in FIG. 2, comprising: a movable rod 102 having a retractable lens module 101, a first groove 103, a camera 104 and a fixing rod 105, wherein
  • the first groove 103 is used to fasten the retractable lens module 101, and the first groove 103 is disposed on the outer casing of the camera 104; in general, the outer casing refers to the rear casing of the photographing terminal 10.
  • the retractable lens module 101 when the retractable lens module 101 is not used, it can be hidden in the first recess 103.
  • the retractable lens module 101 When the retractable lens module 101 is zoomed, the retractable lens module 101 is rotated by the movable rod 102. On the camera 104, optical zooming is achieved, so that the retractable lens module 101 does not increase the thickness of the photographing terminal 10 when not in use, thereby reducing the thickness of the photographing terminal 10 in the case of ensuring optical zoom.
  • the photographing terminal 10 further includes:
  • the bottom surface is provided with a second groove 106 of the first groove 103, and the second groove 106 is further provided with a camera 104; wherein the fixing rod 105 is fixed on the side wall of the second groove 103, so that the second groove
  • the 106 is divided into two parts.
  • the bottom surface of the first portion of the second groove 106 is provided with a first groove 103; the bottom surface of the second portion of the second groove 106 of the second groove 106 is provided with a camera 104.
  • the retractable lens module 101 is placed in the first recess 103; here, as shown in FIG. 5, the first side of the movable rod 102 is the side on which the retractable lens module is disposed, and the second side of the movable rod 102. The face is the back of the first side.
  • the fixing rod 105 is disposed on the movable rod 102 and connected to the movable rod 102.
  • the fixing rod 105 specifically includes:
  • the deformable member 1052 is disposed on the fixed rod body 1051. When the first portion of the second recess 106 is fastened to the movable rod 102, the deformable member 1052 is in a deformed state; when the second portion of the second recess 106 is buckled When the movable rod 102 is connected, the variability member 1052 is in an extended state;
  • the photographing terminal 10 further includes:
  • a telescoping member 107 that blocks or allows the movable rod 102 to disengage from the first portion of the second recess 106, the telescoping member 107 being disposed at a position where the outer casing meets the edge of the first portion of the second recess 106;
  • the telescopic member 107 allows the movable rod 102 to be disengaged from the first portion of the second recess 106, and the deformable member 1052 in the deformed state (not shown)
  • the medium is recovered to restore the release force, forcing the movable rod 102 to rotate, and the movable rod 102 is engaged with the second portion of the second groove 106.
  • the telescopic component 107 includes:
  • a telescopic rod 1072 connected to the other end of the spring block 1071; the telescopic rod 1072 is subjected to the elastic force of the elastic block 1071 near the first groove 103, so that the telescopic rod 1072 has a tendency to move toward the first groove 103, preventing the movable rod 102 from coming off the first a first portion of the second groove 106;
  • a latching block 1073 is fixed on the telescopic rod 1072.
  • the telescopic rod 1071 moves away from the first recess 103 as the latching block 1073 moves, and the elastic block 1071 is pressed.
  • the deformable member 1052 is a spring that is sleeved on the fixed rod body.
  • the spring block 1071 is a spring. One end of the spring is connected to the outer casing, and the other end is connected to the telescopic rod 1072.
  • the length of the retractable lens module 101 after contraction is the photographing terminal 10
  • the thickness of the body is 3/4 times
  • the length of the telescopic lens module 101 after full stretching is 2.5 times that of the photographing terminal 10
  • the depth of the first groove 103 is 3/4 times the thickness of the body of the photographing terminal 10.
  • the thickness of the movable rod 102 is the depth of the second groove 106.
  • the retractable lens module 101 comprises three sets of zoom lenses.
  • the photographing terminal 10 provided in this embodiment can prevent the normal bump and protect the retractable lens module 101, thereby prolonging the service life.
  • the elastic block 1071 When the telescopic lens module 101 is fixed in the first groove 103, the elastic block 1071 is kept in an extended state, forcing the telescopic rod 1072 to block the rotation of the movable rod 102, and the deformable member 1052 of the fixed rod 105 remains deformed when the user pulls the button.
  • the spring block 1071 is deformed, the telescopic rod 1072 is retracted, the movable rod 102 is allowed to rotate, the deformable member 1052 resumes stretching, and the force is released, forcing the movable rod 102 to rotate, and the second groove 106 of the second groove 106
  • the two-part fastening, in order for the deformable member to remain stretched, the deformable member 1052 produces a counteracting force such that the movable rod 102 is secured within the second recess 106.
  • the user pulls the movable rod 102 to force the movable rod 102 to rotate toward the first portion of the second groove 106.
  • the deformable member 1052 of the fixed rod 105 is deformed to generate a resisting deformation force, and the user pulls the latching block 1073.
  • the elastic block 1071 is deformed, the telescopic rod 1072 is retracted, the movable rod 102 is placed in the first portion of the second recess 106, the user releases the latching block 1073, the elastic block 1071 resumes stretching, and the telescopic rod is forced to push the telescopic rod. Movement, thereby preventing the movable rod 102 from disengaging from the first portion of the second groove 106, the force and the deforming force of the deformable member 1052 are mutually constrained.
  • a photographing terminal 10 includes: a movable rod 102 having a retractable lens module 101, a first groove 103, a camera 104 and a fixing rod 105, wherein the first groove 103 is used for fastening
  • the first lens groove 101 is disposed on the outer casing of the camera 104; the fixing rod 105 of the movable rod 102 is fixed, and the fixing rod 105 is disposed on the outer casing, and the fixing rod 105 drives the movable rod 102 to rotate.
  • the retractable lens module 101 is fixed in the first groove 103 or fixed above the camera 104, and the camera 104 is optically zoomed by the retractable lens module 101.
  • the retractable lens module 101 when the retractable lens module 101 is not used, it can be hidden in the first recess 103.
  • the retractable lens module 101 When the retractable lens module 101 is zoomed, the retractable lens module 101 is rotated by the movable rod 102. On the camera 104, optical zooming is achieved, so that the retractable lens module 101 does not increase the thickness of the photographing terminal 10 when not in use, thereby reducing the thickness of the photographing terminal 10 in the case of ensuring optical zoom.

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  • Engineering & Computer Science (AREA)
  • Signal Processing (AREA)
  • Studio Devices (AREA)
  • Lens Barrels (AREA)

Abstract

一种拍摄终端,包括:具有可伸缩镜片模组(101)的活动杆(102);扣接所述可伸缩镜片的第一凹槽(103),所述第一凹槽(103)设置在摄像头(104)所在的外壳上;固定所述活动杆(102)的固定杆(105),所述固定杆(105)设置在所述外壳上,所述固定杆(105带动所述活动杆(102)转动,使所述可伸缩镜片模组(101)固定在所述第一凹槽(103)内,或固定在所述摄像头(104)的上方,所述摄像头(104)通过所述可伸缩镜片模组(101)进行光学变焦。

Description

一种拍摄终端 技术领域
本实用新型涉及拍摄技术,尤其涉及一种拍摄终端。
背景技术
目前终端拍照中的变焦功能主要分为两种,包括:数字变焦和光学变焦,虽然光学变焦成像更好,但是由于控制终端机身厚度和节省空间布局的限制,一般都使用数字变焦模式,然而使用数字变焦功能拍照出来的画面会严重损失画质,因此很多人都不常使用此项功能。然而,使用光学变焦的好处可以很好实现无损变焦远景拍摄,而光学变焦加入了光学镜片模组,如图1应用在手机上会增加手机机身厚度而且占用空间,目前市场上有相应的光学变焦模组外装在手机摄像头上的相关产品,使用时需要经常携带很不方便,也容易丢失。
发明内容
为解决上述技术问题,本实用新型实施例期望提供一种拍摄终端,能够在使用光学变焦拍摄的同时,减小拍摄终端机身厚度。
为达到上述目的,本实用新型实施例的技术方案是这样实现的:
第一方面,本实用新型实施例提供一种拍摄终端10,包括:
具有可伸缩镜片模组101的活动杆102;
扣接所述可伸缩镜片模组的第一凹槽103,所述第一凹槽103设置在摄像头104所在的外壳上;
固定所述活动杆102的固定杆105,所述固定杆105设置在所述外壳上,所述固定杆105带动所述活动杆102转动,使所述可伸缩镜片模组101固 定在所述第一凹槽103内,或固定在所述摄像头104的上方,所述摄像头104通过所述可伸缩镜片模组101进行光学变焦。
上述方案中,所述拍摄终端10还包括:
底面设置有所述第一凹槽103的第二凹槽106,所述第二凹槽106还设置有所述摄像头104;其中,所述固定杆105固定在所述第二凹槽106的侧壁上,使所述第二凹槽106分为两个部分,所述第二凹槽106的第一部分的底面设置有所述第一凹槽103;所述第二凹槽106的第二凹槽106的第二部分的底面设置有所述摄像头104。
上述方案中,所述第二凹槽106的第一部分扣接所述活动杆102时,所述第二凹槽106的第一部分的底面与所述可伸缩镜片模组101所在的所述活动杆102的第一面接触,所述可伸缩镜片模组101放置在所述第一凹槽103内;
所述第二凹槽106的第二部分扣接所述活动杆102时,所述第二凹槽106的第二部分的底面与所述活动杆102的第二面相接触。
上述方案中,所述固定杆105包括:
固定杆本体1051;
设置在所述固定杆本体1051上的可形变部件1052,当所述第二凹槽106的第一部分扣接所述活动杆102时,所述可形变部件1052处于形变状态;当所述第二凹槽106的第二部分扣接所述活动杆102时,所述可变性部件1052处于伸展状态;
所述拍摄终端10还包括:
阻止或允许所述活动杆102脱离所述第二凹槽106的第一部分的伸缩部件107,所述伸缩部件107设置在所述外壳与所述第二凹槽106的第一部分边缘相接的位置;
其中,在所述第二凹槽106的第一部分扣接所述活动杆102时,所述 伸缩部件107允许所述活动杆102脱离所述第二凹槽106的第一部分,处于形变状态的可形变部件1052恢复释放弹力,迫使所述活动杆102转动,使所述活动杆102与所述第二凹槽106的第二部分扣接。
上述方案中,所述伸缩部件107包括:
一端固定在所述壳体的弹块1071;
与所述弹块1071的另一端连接的伸缩杆1072;所述伸缩杆1072受到所述弹块1071靠近所述第一凹槽103的弹力,使所述伸缩杆1072具有朝向所述第一凹槽103运动的趋势,阻止所述活动杆102脱离所述第二凹槽106的第一部分;
所述伸缩杆1072上固定扣动块1073,当所述扣动块1073远离所述第一凹槽103时,所述伸缩杆1072随着所述扣动块1073远离所述第一凹槽103运动,挤压所述弹块1071。
上述方案中,所述可形变部件1052是弹簧,所述弹块1071是弹簧。
上述方案中,所述可伸缩镜片模组101收缩后的长度是所述拍摄终端10的机身厚度的3/4倍;所述可伸缩镜片模组101完全伸展后的长度是所述拍摄终端10的2.5倍,所述第一凹槽103的深度是所述拍摄终端10的机身厚度的3/4倍。
上述方案中,所述活动杆102的厚度是所述第二凹槽106的深度。
上述方案中,所述可伸缩镜片模组101包括三组变焦镜片组成。
本实用新型实施例提供了一种拍摄终端10,包括:具有可伸缩镜片模组101的活动杆102、第一凹槽103、摄像头104和固定杆105,其中,第一凹槽103用于扣接可伸缩镜片模组101,第一凹槽103设置在摄像头104所在的外壳上;固定活动杆102的固定杆105,所述固定杆105设置在外壳上,所述固定杆105带动活动杆102转动,使可伸缩镜片模组101固定在所述第一凹槽103内,或固定在摄像头104的上方,摄像头104通过可伸 缩镜片模组101进行光学变焦。这样一来,当不使用可伸缩镜片模组101时,就可以隐藏在第一凹槽103内,当使用可伸缩镜片模组101变焦时,可伸缩镜片模组101通过活动杆102旋转,扣在摄像头104上,实现光学变焦,这样,在不使用时,可伸缩镜片模组101不会增加拍摄终端10的厚度,从而在保证光学变焦的情况下,还减小拍摄终端10机身厚度。
附图说明
图1为现有技术提供的一种拍摄终端的结构示意图;
图2为本实用新型提供的一种拍摄终端的结构示意图1;
图3为本实用新型提供的一种拍摄终端的结构示意图2;
图4为本实用新型提供的一种拍摄终端的结构示意图3;
图5为本实用新型提供的活动杆和固定杆的结构示意图;
图6为本实用新型提供的一种拍摄终端的结构示意图4;
图7-a为本实用新型提供的一种活动杆、可伸缩镜片模组和固定杆的结构示意图;
图7-b为本实用新型提供的一种固定杆的结构示意图;
图8为本实用新型提供的一种伸缩部件的结构示意图;
图9为本实用新型提供的一种拍摄终端的结构示意图5。
具体实施方式
下面将结合本实用新型实施例中的附图,对本实用新型实施例中的技术方案进行清楚、完整地描述。
本实用新型提供一种拍摄终端10,如图2所示,包括:具有可伸缩镜片模组101的活动杆102、第一凹槽103、摄像头104和固定杆105,其中,
这里,可伸缩镜片模组101包括多个可伸缩的变焦镜片组成,本实施例提供的可伸缩镜片模组101最大变焦倍数可达到2.5倍。
第一凹槽103用于扣接可伸缩镜片模组101,第一凹槽103设置在摄像头104所在的外壳上;一般情况下,外壳是指拍摄终端10的后壳。
固定杆105用于固定活动杆102,固定杆105设置在外壳上,固定杆105带动活动杆102转动,使可伸缩镜片模组101固定在第一凹槽103内,或固定在摄像头104的上方,摄像头104通过可伸缩镜片模组101进行光学变焦。
这样一来,当不使用可伸缩镜片模组101时,就可以隐藏在第一凹槽103内,当使用可伸缩镜片模组101变焦时,可伸缩镜片模组101通过活动杆102旋转,扣在摄像头104上,实现光学变焦,这样,在不使用时,可伸缩镜片模组101不会增加拍摄终端10的厚度,从而在保证光学变焦的情况下,还减小拍摄终端10机身厚度。
在一实施例中,如图3所示,所述拍摄终端10还包括:
底面设置有第一凹槽103的第二凹槽106,所述第二凹槽106还设置有摄像头104;其中,固定杆105固定在第二凹槽103的侧壁上,使第二凹槽106分为两个部分,第二凹槽106的第一部分的底面设置有第一凹槽103;第二凹槽106的第二凹槽106的第二部分的底面设置有摄像头104。
在一实施例中,如图4所示,第二凹槽106的第一部分扣接活动杆102时,第二凹槽106的第一部分的底面与可伸缩镜片模组101所在活动杆102的第一面接触,可伸缩镜片模组101放置在第一凹槽103内;这里,如图5所示,活动杆102的第一面是设置可伸缩镜片模组的一面,活动杆102的第二面是第一面的背面。
如图6所示,第二凹槽106的第二部分扣接活动杆102时,第二凹槽106的第二部分的底面与活动杆102的第二面相接触。
在一实施例中,如7-a所示,固定杆105设置在活动杆102上,与活动杆102连接,如图7-b所示,所述固定杆105具体包括:
固定杆本体1051;
设置在固定杆本体1051上的可形变部件1052,当第二凹槽106的第一部分扣接活动杆102时,所述可形变部件1052处于形变状态;当第二凹槽106的第二部分扣接活动杆102时,可变性部件1052处于伸展状态;
如图6所示,所述拍摄终端10还包括:
阻止或允许活动杆102脱离所述第二凹槽106的第一部分的伸缩部件107,伸缩部件107设置在外壳与第二凹槽106的第一部分边缘相接的位置;
其中,在第二凹槽106的第一部分扣接活动杆102时,所述伸缩部件107允许活动杆102脱离第二凹槽106的第一部分,处于形变状态的可形变部件1052(并未在图中标识出来)恢复释放弹力,迫使活动杆102转动,使活动杆102与第二凹槽106的第二部分扣接。
值得说明的是,本实施例还可以设置两个伸缩部件107,分别安装在第二凹槽106的第一部分的边缘和第二凹槽106的第二部分的边缘,不在再设置可形变部件1052,同样可以达到卡接的目的。
在一实施例中,如图8所示,所述伸缩部件107包括:
一端固定在所述壳体的弹块1071;
与弹块1071的另一端连接的伸缩杆1072;伸缩杆1072受到弹块1071靠近第一凹槽103的弹力,使伸缩杆1072具有朝向第一凹槽103运动的趋势,阻止活动杆102脱离第二凹槽106的第一部分;
伸缩杆1072上固定有扣动块1073,当扣动块10远离第一凹槽103时,伸缩杆1071随着扣动块1073远离第一凹槽103运动,挤压弹块1071。
作为一种实施方式,可形变部件1052是弹簧,该弹簧套在固定杆本体上,弹块1071是弹簧,该弹簧一端与外壳连接,另一端与伸缩杆1072连接。
作为一种实施方式,可伸缩镜片模组101收缩后的长度是拍摄终端10 的机身厚度的3/4倍;可伸缩镜片模组101完全伸展后的长度是拍摄终端10的2.5倍,第一凹槽103的深度是拍摄终端10的机身厚度的3/4倍。
作为一种实施方式,活动杆102的厚度是第二凹槽106的深度。
作为一种实施方式,可伸缩镜片模组101包括三组变焦镜片组成。
相较于现有技术,在不使用光学变焦是,将可伸缩镜片模组101收起来,对变焦镜片也起到了一定的保护作用,由于现有技术的可伸缩镜片模组101突出机身,因此难免会有一些磕碰,大大限制了可伸缩镜片模组101的使用寿命,因此,本实施例提供的拍摄终端10可以防止平时的磕碰,保护可伸缩镜片模组101,从而延长使用寿命。
如图9所示,本实施例的具体的操作过程为:
当可伸缩镜片模组101固定在第一凹槽103中,弹块1071保持伸展状态,迫使伸缩杆1072阻拦活动杆102转动,固定杆105的可形变部件1052保持形变,当用户扣动扣动块1073,弹块1071发生形变,伸缩杆1072收回,允许活动杆102转动,可形变部件1052恢复伸展,释放力,迫使活动杆102旋转,与第二凹槽106的第二凹槽106的第二部分扣接,为了可形变部件保持伸展,可形变部件1052会产生一个对抗的力量,使得活动杆102固定在第二凹槽106内。
之后,用户拉动活动杆102,迫使活动杆102朝第二凹槽106的第一部分转动,此时,固定杆105的可形变部件1052发生形变,产生对抗的形变力,用户扣动扣动块1073,弹块1071发生形变,伸缩杆1072收回,活动杆102放置在第二凹槽106的第一部分内,用户松开扣动块1073,弹块1071恢复伸展,给伸缩杆一个力,推动伸缩杆运动,从而阻碍活动杆102脱离第二凹槽106的第一部分,该力与可形变部件1052的形变力相互制约。
以上所述,仅为本实用新型的较佳实施例而已,并非用于限定本实用新型的保护范围。
工业实用性
本发明实施例中,一种拍摄终端10,包括:具有可伸缩镜片模组101的活动杆102、第一凹槽103、摄像头104和固定杆105,其中,第一凹槽103用于扣接可伸缩镜片模组101,第一凹槽103设置在摄像头104所在的外壳上;固定活动杆102的固定杆105,所述固定杆105设置在外壳上,所述固定杆105带动活动杆102转动,使可伸缩镜片模组101固定在所述第一凹槽103内,或固定在摄像头104的上方,摄像头104通过可伸缩镜片模组101进行光学变焦。这样一来,当不使用可伸缩镜片模组101时,就可以隐藏在第一凹槽103内,当使用可伸缩镜片模组101变焦时,可伸缩镜片模组101通过活动杆102旋转,扣在摄像头104上,实现光学变焦,这样,在不使用时,可伸缩镜片模组101不会增加拍摄终端10的厚度,从而在保证光学变焦的情况下,还减小拍摄终端10机身厚度。

Claims (9)

  1. 一种拍摄终端(10),其中,包括:
    具有可伸缩镜片模组(101)的活动杆(102);
    扣接所述可伸缩镜片模组(101)的第一凹槽(103),所述第一凹槽(103)设置在摄像头(104)所在的外壳上;
    固定所述活动杆(102)的固定杆(105),所述固定杆(105)设置在所述外壳上,所述固定杆(105)带动所述活动杆(102)转动,使所述可伸缩镜片模组(101)固定在所述第一凹槽103内,或固定在所述摄像头(104)的上方,所述摄像头(104)通过所述可伸缩镜片模组(101)进行光学变焦。
  2. 根据权利要求1所述的拍摄终端(10),其中,所述拍摄终端(10)还包括:
    底面设置有所述第一凹槽(103)的第二凹槽(106),所述第二凹槽(106)还设置有所述摄像头(104);其中,所述固定杆(105)固定在所述第二凹槽(106)的侧壁上,使所述第二凹槽(106)分为两个部分,所述第二凹槽(106)的第一部分的底面设置有所述第一凹槽(103);所述第二凹槽(106)的第二部分的底面设置有所述摄像头(104)。
  3. 根据权利要求2所述的拍摄终端(10),其中,所述第二凹槽(106)的第一部分扣接所述活动杆(102)时,所述第二凹槽(106)的第一部分的底面与所述可伸缩镜片模组(101)所在的所述活动杆(102)的第一面接触,所述可伸缩镜片模组(101)放置在所述第一凹槽(103)内;
    所述第二凹槽(106)的第二部分扣接所述活动杆(102)时,所述第二凹槽(106)的第二部分的底面与所述活动杆(102)的第二面接触。
  4. 根据权利要求3所述的拍摄终端(10),其中,所述固定杆(105)包括:
    固定杆本体(1051);
    设置在所述固定杆本体(1051)上的可形变部件(1052),当所述第二凹槽(106)的第一部分扣接所述活动杆(102)时,所述可形变部件(1052)处于形变状态;当所述第二凹槽(106)的第二部分扣接所述活动杆(102)时,所述可变性部件(1052)处于伸展状态;
    所述拍摄终端(10)还包括:
    阻止或允许所述活动杆(102)脱离所述第二凹槽(106)的第一部分的伸缩部件(107),所述伸缩部件(107)设置在所述外壳与所述第二凹槽(106)的第一部分边缘相接的位置;
    其中,在所述第二凹槽(106)的第一部分扣接所述活动杆(102)时,所述伸缩部件(107)允许所述活动杆(102)脱离所述第二凹槽(106)的第一部分,处于形变状态的可形变部件(1052)恢复释放弹力,迫使所述活动杆(102)转动,使所述活动杆(102)与所述第二凹槽(106)的第二部分扣接。
  5. 根据权利要求4所述的拍摄终端(10),其中,所述伸缩部件(107)包括:
    一端固定在所述壳体的弹块(1071);
    与所述弹块(1071)的另一端连接的伸缩杆(1072);所述伸缩杆(1072)受到所述弹块(1071)靠近所述第一凹槽(103)的弹力,使所述伸缩杆(1072)具有朝向所述第一凹槽(103)运动的趋势,阻止所述活动杆(102)脱离所述第二凹槽(106)的第一部分;
    所述伸缩杆(1072)上固定有扣动块(1073),当所述扣动块(1073)远离所述第一凹槽(103)时,所述伸缩杆(1072)随着所述扣动块(1073)远离所述第一凹槽(103)运动,挤压所述弹块(1071)。
  6. 根据权利要求5所述的拍摄终端(10),其中,所述可形变部件(1052) 是弹簧,所述弹块(1071)是弹簧。
  7. 根据权利要求1至6任一项所述的拍摄终端(10),其中,所述可伸缩镜片模组(101)收缩后的长度是所述拍摄终端(10)的机身厚度的3/4倍;所述可伸缩镜片模组(101)完全伸展后的长度是所述拍摄终端(10)的2.5倍,所述第一凹槽(103)的深度是所述拍摄终端(10)的机身厚度的3/4倍。
  8. 根据权利要求2至6任一项所述的拍摄终端(10),其中,所述活动杆(102)的厚度是所述第二凹槽(106)的深度。
  9. 根据权利要求1至6任一项所述的拍摄终端(10),其中,所述可伸缩镜片模组(101)包括三组变焦镜片组成。
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