Lifting balcony window

By installing sensors and drive devices on balcony windows, the opening and closing of windows and curtains can be automated, solving the problem that existing balcony windows require manual operation and improving convenience and safety.

CN224214016UActive Publication Date: 2026-05-08GUANGDONG KINLONGGTI MECHATRONIC WINDOW CONTRONL SYST CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGDONG KINLONGGTI MECHATRONIC WINDOW CONTRONL SYST CO LTD
Filing Date
2025-05-13
Publication Date
2026-05-08

AI Technical Summary

Technical Problem

The existing balcony windows cannot automatically adjust according to the external or indoor environment, requiring manual operation, which is inconvenient.

Method used

The balcony window is equipped with an automated lifting mechanism, a window frame drive unit, a curtain drive unit, and various sensors. The sensors detect changes in the external environment and automatically control the opening, closing, and degree of shading of the window and curtains.

Benefits of technology

It enables automatic adjustment of the opening and closing of windows and curtains and the degree of shading according to changes in the external environment, improving ease of use and safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a lifting balcony window. The lifting balcony window comprises an outer window frame, an inner window frame and a curtain driving device. The outer window frame is provided with a window frame driving device; the inner window frame is provided with window glass and movably connected into the outer window frame, and the window frame driving device is in transmission connection with the inner window frame. The curtain driving device comprises a first sliding rail, a second sliding rail and a sliding rail driving mechanism, the first sliding rail is movably connected with a first sliding block, the second sliding rail is movably connected with a second sliding block, the sliding rail driving mechanism drives the second sliding rail to be close to or away from the first sliding rail, the first sliding block is connected with one side edge of the curtain, and the second sliding block is connected with the other side edge of the curtain; the window frame driving device drives the inner window frame to move to achieve automatic window opening and closing, the curtain driving device drives the curtain to move to achieve automatic curtain opening and closing, and automation is achieved.
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Description

Technical Field

[0001] This application relates to the field of balcony windows, and more particularly to a liftable balcony window. Background Technology

[0002] Balcony windows are windows installed on balconies. Currently, balcony windows generally require manual operation to open and close, as do the curtains, and are largely unadjustable based on external or internal environmental conditions. For example, when strong sunlight causes excessively high indoor temperatures, the curtains need to be closed manually to prevent further sunlight from entering the room. Utility Model Content

[0003] The following is an overview of the subject matter described in detail herein. This overview is not intended to limit the scope of the claims.

[0004] The purpose of this application is to at least partially solve one of the technical problems existing in the related technologies. The embodiments of this application provide a liftable balcony window with the advantage of automation.

[0005] An embodiment of this application provides a retractable balcony window, comprising:

[0006] An external window frame, wherein the external window frame is equipped with a window frame driving device;

[0007] An inner window frame, on which window glass is installed, is movably connected to the outer window frame, and a window frame drive device is connected to the inner window frame in a transmission manner;

[0008] A curtain driving device includes a first slide rail, a second slide rail, and a slide rail driving mechanism. The first slide rail is movably connected to a plurality of first sliders, and the second slide rail is movably connected to a plurality of second sliders. The slide rail driving mechanism is driven to the second slide rail and drives the second slide rail to move towards the first slide rail and away from the first slide rail. The first sliders are connected to one edge of the curtain, and the second sliders are connected to the other edge of the curtain.

[0009] According to certain embodiments of this application, one of the first sliders is connected to one corner of one side edge of the curtain, another first slider is connected to the other corner of one side edge of the curtain, one of the second sliders is connected to one corner of the other side edge of the curtain, and another second slider is connected to the other corner of the other side edge of the curtain.

[0010] According to certain embodiments of this application, the outer window frame is equipped with a rain sensor, the rain sensor is connected to a controller, and the controller controls the window frame drive device to drive the inner window frame to move based on the sensing result of the rain sensor.

[0011] According to certain embodiments of this application, the outer window frame is equipped with a wind speed sensor, the wind speed sensor is connected to a controller, and the controller controls the window frame drive device to drive the inner window frame to move based on the sensing result of the wind speed sensor.

[0012] According to certain embodiments of this application, the outer window frame is provided with a smoke sensor, the smoke sensor is connected to a controller, and the controller controls the window frame drive device to drive the inner window frame to move according to the sensing result of the smoke sensor.

[0013] According to certain embodiments of this application, the outer window frame is provided with a temperature sensor, the temperature sensor is connected to a controller, and the controller controls the window frame drive device to drive the inner window frame to move based on the sensing result of the temperature sensor.

[0014] According to some embodiments of this application, the inner window frame is provided with an anti-pinch sensor, the anti-pinch sensor is connected to a controller, and the controller controls the window frame driving device to drive the inner window frame to move according to the sensing result of the anti-pinch sensor.

[0015] According to certain embodiments of this application, the inner window frame is provided with a lock hole, and the outer window frame is provided with a lock tongue; when the lock tongue is inserted into the lock hole, the lift-up balcony window is in a closed state.

[0016] According to certain embodiments of this application, a third slide rail is provided on the inner side of the outer window frame, and the inner window frame is movably connected to the third slide rail.

[0017] According to certain embodiments of this application, the window frame driving device is a screw drive mechanism, which drives the inner window frame to slide along the third slide rail.

[0018] The above solution has at least the following beneficial effects: When the window needs to be closed, the window frame drive device moves the inner window frame to close the window; when the window needs to be opened, the window frame drive device moves the inner window frame to open the window, realizing automated window opening and closing operations. When the curtains need to be closed, the slide rail drive mechanism drives the second slide rail to move away from the first slide rail, opening the curtains to cover the window; when the curtains need to be opened, the slide rail drive mechanism drives the second slide rail to move closer to the first slide rail, retracting the curtains. When the degree of curtain coverage needs to be adjusted, the degree of curtain coverage is adjusted by sliding the first slider of the first slide rail and the second slider of the second slide rail. This lifting balcony window has the advantage of automation. Attached Figure Description

[0019] The accompanying drawings are used to provide a further understanding of the technical solutions of this application and constitute a part of the specification. They are used together with the embodiments of this application to explain the technical solutions of this application and do not constitute a limitation on the technical solutions of this application.

[0020] Figure 1 This is a front view of a retractable balcony window;

[0021] Figure 2 This is a rear view of a lift-up balcony window;

[0022] Figure 3 This is a side view of a lift-up balcony window. Detailed Implementation

[0023] To make the objectives, technical solutions, and advantages of this application clearer, the following detailed description is provided in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the scope of this application.

[0024] It should be noted that although functional modules are divided in the device schematic diagram and a logical order is shown in the flowchart, in some cases, the steps shown or described may be performed in a different order than the module division in the device or the order in the flowchart. The terms "first," "second," etc., in the specification, claims, or the aforementioned drawings are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence.

[0025] The embodiments of this application will be further described below with reference to the accompanying drawings.

[0026] An embodiment of this application provides a liftable balcony window.

[0027] Reference Figure 1 , Figure 2 and Figure 3 The lifting balcony window includes: an outer window frame 100, an inner window frame 200, a curtain drive device, window glass, and curtains.

[0028] The outer window frame 100 is equipped with a window frame driving device; the inner window frame 200 is fitted with window glass and is movably connected to the outer window frame 100. The window frame driving device is driven by the inner window frame 200. The curtain driving device includes a first slide rail 310, a second slide rail 320 and a slide rail driving mechanism. The first slide rail 310 is movably connected to a plurality of first sliders 311, and the second slide rail 320 is movably connected to a plurality of second sliders 321. The slide rail driving mechanism is driven by the second slide rail 320, which drives the second slide rail 320 to move towards the first slide rail 310 and away from the first slide rail 310. The first sliders 311 are connected to one side edge of the curtain, and the second sliders 321 are connected to the other side edge of the curtain.

[0029] In this embodiment, when it is necessary to close the window, the window frame driving device drives the inner window frame 200 to move to close the window; when it is necessary to open the window, the window frame driving device drives the inner window frame 200 to move to open the window, thereby realizing automated window opening and closing operations.

[0030] When the curtains need to be closed, the sliding track drive mechanism drives the second sliding track 320 to move away from the first sliding track 310, and the curtains open to cover the window; when the curtains need to be opened, the sliding track drive mechanism drives the second sliding track 320 to move closer to the first sliding track 310, and the curtains close.

[0031] When it is necessary to adjust the degree of coverage of the curtains, the degree of coverage of the curtains can be adjusted by sliding the first slider 311 of the first slide rail 310 and the second slider 321 of the second slide rail 320.

[0032] One of the first sliders 311 is connected to one corner of one side edge of the curtain, and the other first slider 311 is connected to the other corner of one side edge of the curtain. One of the second sliders 321 is connected to one corner of the other side edge of the curtain, and the other second slider 321 is connected to the other corner of the other side edge of the curtain.

[0033] Specifically, the first slide rail 310 is provided with two first sliders 311, and the second slide rail 320 is provided with two second sliders 321. The first slider 311 on the left is connected to the upper left corner of the curtain, the first slider 311 on the right is connected to the upper right corner of the curtain, the second slider 321 on the left is connected to the lower left corner of the curtain, and the second slider 321 on the right is connected to the lower right corner of the curtain.

[0034] Of course, in other embodiments, the number of the first slider 311 and the second slider 321 can also be set to two or more, such as three.

[0035] The window frame drive mechanism is a screw drive mechanism. The window frame drive mechanism drives the inner window frame 200 to move in the vertical direction to open or close the window.

[0036] The slide rail drive mechanism is a screw drive mechanism. The slide rail drive mechanism drives the second slide rail 320 to move in the vertical direction to open or fold the curtains.

[0037] The outer window frame 100 is equipped with a rain sensor 410, which is connected to a controller. The controller controls the window frame drive device to drive the inner window frame 200 to move based on the sensing result of the rain sensor 410.

[0038] Rainfall is detected by a rain sensor 410, and the sensing result reflects the amount of rainfall. The rain sensor 410 feeds its sensing result back to the controller, which receives the feedback. The controller makes decisions based on the sensing result of the rain sensor 410. When the rainfall exceeds a preset threshold, the controller controls the window frame drive device to move the inner window frame 200 and close the window.

[0039] The outer window frame 100 is equipped with a wind speed sensor 420, which is connected to a controller. The controller controls the window frame drive device to drive the inner window frame 200 to move based on the sensing result of the wind speed sensor 420.

[0040] Wind speed is detected by a wind speed sensor 420, and the wind speed is reflected by the sensing result of the wind speed sensor 420. The wind speed sensor 420 feeds back the sensing result to the controller, which receives the sensing result from the wind speed sensor 420. The controller makes decisions based on the sensing result of the wind speed sensor 420. When the wind speed exceeds a preset threshold, the controller controls the window frame drive device to move the inner window frame 200 to close the window.

[0041] The outer window frame 100 is equipped with a smoke sensor, which is connected to a controller. The controller controls the window frame drive device to move the inner window frame 200 based on the smoke sensor's detection result. Generally, the smoke sensor is installed on the indoor side.

[0042] Indoor smoke concentration is detected by a smoke sensor, and the sensor's readings reflect the indoor smoke concentration. The smoke sensor feeds its results back to the controller, which receives the feedback and makes decisions based on the smoke sensor's readings. When the smoke level exceeds a preset threshold, the controller activates the window frame drive mechanism to move the inner window frame 200, opening the window for ventilation.

[0043] The outer window frame 100 is equipped with a temperature sensor, which is connected to a controller. The controller controls the window frame drive device to move the inner window frame 200 based on the temperature sensor's readings. Generally, the temperature sensor is installed on the indoor side.

[0044] The indoor temperature is detected by a temperature sensor, and the sensor's readings reflect the indoor temperature. The temperature sensor feeds its results back to the controller, which receives the feedback and makes decisions based on the sensor's readings. When the temperature exceeds a preset high-temperature threshold, the controller activates the window frame drive mechanism to move the inner window frame 200, opening the window. When the temperature falls below a preset low-temperature threshold, the controller activates the window frame drive mechanism to move the inner window frame 200, closing the window.

[0045] The outer window frame 100 is equipped with an object sensing sensor 430, which is an infrared sensor. The object sensing sensor 430 detects the distance between the lifting balcony window and objects.

[0046] An emergency stop button 120 is installed on the outer window frame 100. If the emergency stop button 120 is pressed during the closing or opening of the inner window frame 200, the power to the lift-up balcony window will be cut off, and the inner window frame 200 will stop abruptly. At this time, the lift-up balcony window can be manually closed or opened.

[0047] The exterior window frame 100 is equipped with a control panel 130. The control panel 130 has multiple control buttons, which are used to set and control the parameters of the lifting balcony window; for example, turning the power on and off.

[0048] Furthermore, based on the indoor temperature value reflected by the temperature sensor, the controller controls the movement of the slide rail drive mechanism, the first slider 311, and the second slider 321 to control the degree of shading of the curtains.

[0049] The inner window frame 200 is equipped with an anti-pinch sensor, which is connected to the controller. The controller controls the window frame drive device to drive the inner window frame 200 to move based on the sensing result of the anti-pinch sensor.

[0050] The anti-pinch sensor is a pressure sensor. It is located on the lower edge of the inner window frame 200, near the outer window frame. During the movement of the inner window frame 200 driven by the window frame drive device, the anti-pinch sensor feeds back the pressure value to the controller, which then makes a decision based on the sensor's reading. When the pressure value exceeds a preset threshold, the controller stops the window frame drive device from moving the inner window frame 200, thus achieving the anti-pinch effect.

[0051] The lift-up balcony is equipped with a communication module, and the controller is connected to the communication module to communicate with the network. Operators can send control signals to the lift-up balcony controller via the network using mobile devices to control the window frame drive device to move the inner window frame 200, and to control the curtain drive device to move the curtains.

[0052] The inner window frame 200 is equipped with a lock hole, and the outer window frame 100 is equipped with a latch 110. When the latch 110 is inserted into the lock hole, the lift-up balcony window is in the closed state. When it is necessary to move the inner window frame 200, the latch 110 needs to be pulled out of the lock hole to act as a child lock.

[0053] The inner sides of both sides of the outer window frame 100 are equipped with third slide rails, and the inner window frame 200 is movably connected to the third slide rails. The third slide rails make the movement of the inner window frame smoother.

[0054] The window frame drive device is a screw drive mechanism, which drives the inner window frame 200 to slide along the third slide rail.

[0055] The above is a detailed description of the preferred embodiments of this application, but this application is not limited to the embodiments. Those skilled in the art can make various equivalent modifications or substitutions without departing from the spirit of this application, and these equivalent modifications or substitutions are all included within the scope defined by the claims of this application.

Claims

1. A retractable balcony window, characterized in that, include: An external window frame, wherein the external window frame is equipped with a window frame driving device; An inner window frame, on which window glass is installed, is movably connected to the outer window frame, and a window frame drive device is connected to the inner window frame in a transmission manner; A curtain driving device includes a first slide rail, a second slide rail, and a slide rail driving mechanism. The first slide rail is movably connected to a plurality of first sliders, and the second slide rail is movably connected to a plurality of second sliders. The slide rail driving mechanism is driven to the second slide rail and drives the second slide rail to move towards the first slide rail and away from the first slide rail. The first sliders are connected to one edge of the curtain, and the second sliders are connected to the other edge of the curtain.

2. The liftable balcony window according to claim 1, characterized in that, One of the first sliders is connected to one corner of one side edge of the curtain, and the other first slider is connected to the other corner of one side edge of the curtain. One of the second sliders is connected to one corner of the other side edge of the curtain, and the other second slider is connected to the other corner of the other side edge of the curtain.

3. The liftable balcony window according to claim 1, characterized in that, The outer window frame is equipped with a rain sensor, which is connected to a controller. The controller controls the window frame drive device to drive the inner window frame to move based on the sensing result of the rain sensor.

4. The liftable balcony window according to claim 1, characterized in that, The outer window frame is equipped with a wind speed sensor, which is connected to a controller. The controller controls the window frame drive device to drive the inner window frame to move based on the sensing result of the wind speed sensor.

5. The liftable balcony window according to claim 1, characterized in that, The outer window frame is equipped with a smoke sensor, which is connected to a controller. The controller controls the window frame drive device to drive the inner window frame to move based on the sensing result of the smoke sensor.

6. The liftable balcony window according to claim 1, characterized in that, The outer window frame is equipped with a temperature sensor, which is connected to a controller. The controller controls the window frame drive device to drive the inner window frame to move based on the sensing result of the temperature sensor.

7. The liftable balcony window according to claim 1, characterized in that, The inner window frame is equipped with an anti-pinch sensor, which is connected to a controller. The controller controls the window frame drive device to move the inner window frame based on the sensing result of the anti-pinch sensor.

8. The liftable balcony window according to claim 1, characterized in that, The inner window frame is provided with a lock hole, and the outer window frame is provided with a lock tongue; when the lock tongue is inserted into the lock hole, the lift-up balcony window is in the closed state.

9. The liftable balcony window according to claim 1, characterized in that, The inner side of the outer window frame is provided with a third slide rail, and the inner window frame is movably connected to the third slide rail.

10. The liftable balcony window according to claim 9, characterized in that, The window frame driving device is a screw transmission mechanism, which drives the inner window frame to slide along the third slide rail.