CN213365280U - Central control panel - Google Patents
Central control panel Download PDFInfo
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- CN213365280U CN213365280U CN202022481324.5U CN202022481324U CN213365280U CN 213365280 U CN213365280 U CN 213365280U CN 202022481324 U CN202022481324 U CN 202022481324U CN 213365280 U CN213365280 U CN 213365280U
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02P—CLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
- Y02P90/00—Enabling technologies with a potential contribution to greenhouse gas [GHG] emissions mitigation
- Y02P90/02—Total factory control, e.g. smart factories, flexible manufacturing systems [FMS] or integrated manufacturing systems [IMS]
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Abstract
The utility model provides a central control panel, which comprises a main control module, a display module, a distance detection module, a light sensation detection module and a power supply module; the power supply module is respectively connected with the main control module and the display module; the distance detection module and the light sensation detection module are respectively connected with the main control module; the main control module sends a working control signal to the display module according to the detection signal of the distance detection module; the main control module sends a brightness adjusting signal to the display module according to the detection signal of the light sensation detection module, so that energy waste can be reduced, and the use experience of a user is improved.
Description
Technical Field
The utility model relates to a show technical field, especially relate to a central control panel.
Background
The intelligent home is embodied in an internet of things manner under the influence of the internet. The intelligent home connects various devices (such as audio and video devices, lighting systems, curtain control, air conditioner control, security systems, digital cinema systems, audio and video servers, video cabinet systems, network home appliances and the like) in the home together through the Internet of things technology, and provides multiple functions and means such as home appliance control, lighting control, telephone remote control, indoor and outdoor remote control, anti-theft alarm, environment monitoring, heating and ventilation control, infrared forwarding, programmable timing control and the like. Compared with the common home, the intelligent home has the traditional living function, integrates the functions of building, network communication, information household appliance and equipment automation, provides an all-around information interaction function, and even saves funds for various energy expenses.
The central control panel is an important component of an intelligent home control system, takes intelligent household appliances as a main control object, and highly integrates facilities related to home life by utilizing a comprehensive wiring technology, a network communication technology, a safety precaution technology, an automatic control technology and an audio and video technology. When the current center control panel is awakened by a user, the brightness value generally displayed on the display screen is the default factory-set brightness or preset by the user. If the brightness value of the display screen keeps a high brightness state when the brightness of the use environment around the central control panel is high, energy waste can be caused, and meanwhile, the display screen is easy to heat; if the using environment around the center control panel is dark, the brightness value of the display screen is insufficient, so that the user cannot see the display screen clearly, and the user experience is poor.
SUMMERY OF THE UTILITY MODEL
In order to solve the technical problem, the utility model provides a central control panel, which comprises a main control module, a display module, a distance detection module, a light sensation detection module and a power supply module; the power supply module is respectively connected with the main control module and the display module; the distance detection module and the light sensation detection module are respectively connected with the main control module; the main control module sends a working control signal to the display module according to the detection signal of the distance detection module; the main control module also sends a brightness adjusting signal to the display module according to the detection signal of the light sensation detection module.
The temperature detection module is respectively connected with the main control module and the display module, the fan is respectively connected with the power supply module and the main control module, and the main control module sends a working control signal to the fan according to a detection signal of the temperature detection module.
The temperature detection device further comprises a timing module, wherein the timing module and the main control module send a detection control signal to the temperature detection module according to a detection signal of the timing module.
Furthermore, the main control module is used for receiving and judging the detection signals of the distance detection module, the light sensation detection module, the temperature detection module and the timing module; the main control module is used for outputting awakening control signals to the display module according to detection signals of the distance detection module for detecting that the user enters a preset distance value; the main control module is also used for outputting a brightness adjusting signal to the display module according to a detection signal of the light sensation detection module for detecting the brightness of the current environment; the main control module is also used for outputting a control signal for detecting the temperature of the display module to the temperature detection module according to a detection signal of the timing module when the preset time period is reached; the main control module is further used for outputting an operation control signal to the fan according to a detection signal that the temperature detection module detects that the display module exceeds a preset temperature value.
Furthermore, the output end of the main control module is connected with the input end of the display module through an MIPI bus.
Furthermore, the output end of the main control module is connected with the input end of the display module through an LVDS bus.
Further, the output ends of the distance detection module and the light sensation detection module are respectively connected with the output end of the main control module through an I2C bus.
Further, the chip model of the main control module is RK 3326.
Further, the chip model of the distance detection module is VL53L1CXV0 FY/1.
Furthermore, the model of the chip of the light sensation detection module is LTR-308 ALS-WA.
Compared with the prior art, the central control panel provided by the utility model is in a dormant state when not working, and is only awakened to work when a user enters a preset distance range through the detection of the set distance detection module; when the display module of the central control panel is awakened to display, the current ambient light brightness is obtained through the set light sensation detection module, the backlight brightness value of the display module is adjusted, the waste of energy can be reduced, and the use experience of a user is improved.
Drawings
Fig. 1 is a schematic view of a center control panel according to an embodiment of the present invention.
Detailed Description
In order to make the technical problem, technical solution and advantageous effects to be solved by the present invention clearer and more obvious, the following description of the present invention with reference to the accompanying drawings and embodiments is provided for further details. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
As shown in fig. 1, a schematic structural diagram of a center control panel 100 is provided for an embodiment of the present invention. The central control panel 100 includes a main control module 110, a display module 120, a distance detection module 130, a light sensation detection module 140 and a power module 150; the power module 150 is respectively connected with the main control module 110 and the display module 120; the distance detection module 130 and the light sensation detection module 140 are respectively connected with the main control module 110; the main control module 110 sends a working control signal to the display module 120 according to the detection signal of the distance detection module 130; the main control module 110 also sends a brightness adjusting signal to the display module 120 according to the detection signal of the light sensing module 140.
Further, the central control panel 100 device further includes a temperature detection module 160 and a fan 170, the temperature detection module 160 is respectively connected to the main control module 110 and the display module 120, the fan 170 is connected to the power module 150 and the main control module 110, and the main control module 110 sends a working control signal to the fan 170 according to a detection signal of the temperature detection module 160. Further, the central control panel 100 further includes a timing module 180, the timing module 180 and the main control module 110, and the main control module 110 sends a detection control signal to the temperature detection module 160 according to a detection signal of the timing module 180. Specifically, the main control module 110 calculates each preset time period through the timing module 180, and detects the current temperature value of the display module 120 through the temperature detection module 160, and if the display module 120 detects that the temperature of the display module 120 exceeds the preset temperature threshold, the fan 170 is triggered to operate, so as to dissipate heat from the display module 120, and improve the user experience.
Further, the main control module 110 is configured to receive and determine detection signals of the distance detection module 130, the light-sensing detection module 140, the temperature detection module 160, and the timing module 180; the main control module 110 is configured to output a wake-up control signal to the display module 120 according to a detection signal that the distance detection module 130 detects that the user enters a preset distance value; the main control module 110 is further configured to output a brightness adjusting signal to the display module 120 according to the detection signal of the light sensation detection module 140 detecting the current ambient light brightness; the main control module 110 is further configured to output a control signal for performing temperature detection on the display module 120 to the temperature detection module 160 according to a detection signal that the timing module 180 detects that a preset time period is reached; the main control module 110 is further configured to output an operation control signal to the fan 170 according to a detection signal that the temperature detection module 160 detects that the display module 120 exceeds a preset temperature value.
Further, in the preferred embodiment of the present invention, the output terminal of the main control module 110 is connected to the input terminal of the display module 120 through the MIPI bus. The output terminal of the main control module 110 is connected to the input terminal of the display module 120 via the LVDS bus. The output terminals of the distance detecting module 130 and the light sensing detecting module 140 are respectively connected to the output terminal of the main control module 110 through an I2C bus. The chip model of the main control module 110 is RK 3326. The chip model of the distance detection module 130 is VL53L1CXV0 FY/1. The light sensation detection module has a chip model LTR-308 ALS-WA.
The operation of one embodiment of the center control panel 100 is as follows:
when the center control panel 100 does not work, it is in a sleep state, i.e., the display module 120 keeps a screen-off state. When the user approaches the center control panel 100, the distance detection module 130 detects the user, detects whether the user enters a preset distance range, and sends a notification signal to the main control module 110 through the I2C bus if the user enters the preset distance range. The main control module 110 obtains a current ambient light brightness value from the light sensing detection module 140 through the I2C bus, and retrieves a corresponding backlight brightness value from a corresponding relationship table between the ambient light brightness value and a preset backlight brightness value, then the main control module 110 transmits data to the display module 120 through the MIPI or LVDS bus, and the display module 120 displays an image according to the determined backlight brightness value. In addition, the main control module 110 calculates each preset time period through the timing module 180, and detects the current temperature value of the display module 120 through the temperature detection module 160, and if the display module 120 detects that the temperature of the display module 120 exceeds the preset temperature threshold, the fan 170 is triggered to operate.
Compared with the prior art, the central control panel 100 provided by the utility model is in a dormant state when not in operation, and the set distance detection module 130 detects that the user is only wakened up to work when entering a preset distance range; when the display module 120 of the central control panel 100 is awakened to display, the set light sensation detection module 140 obtains the current ambient light brightness, and the backlight brightness value of the display module 120 is adjusted, so that energy waste can be realized, and the use experience of a user is improved.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.
Claims (10)
1. A central control panel is characterized by comprising a main control module, a display module, a distance detection module, a light sensation detection module and a power supply module; the power supply module is respectively connected with the main control module and the display module; the distance detection module and the light sensation detection module are respectively connected with the main control module; the main control module sends a working control signal to the display module according to the detection signal of the distance detection module; the main control module also sends a brightness adjusting signal to the display module according to the detection signal of the light sensation detection module.
2. The center control panel according to claim 1, further comprising a temperature detection module and a fan, wherein the temperature detection module is respectively connected to the main control module and the display module, the fan is respectively connected to the power supply module and the main control module, and the main control module sends a working control signal to the fan according to a detection signal of the temperature detection module.
3. The center control panel according to claim 2, further comprising a timing module, wherein the timing module and the main control module, the main control module sends a detected control signal to the temperature detection module according to a detection signal of the timing module.
4. The center control panel according to claim 3, wherein the main control module is configured to receive and determine the detection signals of the distance detection module, the light sensation detection module, the temperature detection module, and the timing module; the main control module is used for outputting awakening control signals to the display module according to detection signals of the distance detection module for detecting that the user enters a preset distance value; the main control module is also used for outputting a brightness adjusting signal to the display module according to a detection signal of the light sensation detection module for detecting the brightness of the current environment; the main control module is also used for outputting a control signal for detecting the temperature of the display module to the temperature detection module according to a detection signal of the timing module when the preset time period is reached; the main control module is further used for outputting an operation control signal to the fan according to a detection signal that the temperature detection module detects that the display module exceeds a preset temperature value.
5. The center control panel according to claim 4, wherein the output terminal of the main control module is connected to the input terminal of the display module through an MIPI bus.
6. The center control panel according to claim 4, wherein the output terminal of the main control module is connected to the input terminal of the display module via an LVDS bus.
7. The center control panel according to any one of claims 5 or 6, wherein the output terminals of the distance detection module and the light sensing detection module are respectively connected to the output terminal of the main control module through an I2C bus.
8. The center control panel of claim 7, wherein the chip model of the master control module is RK 3326.
9. The center control panel according to claim 8, wherein the distance detection module has a chip model number VL53L1CXV0 FY/1.
10. The center control panel as claimed in claim 9, wherein the light sensing module has a chip model LTR-308 ALS-WA.
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CN202022481324.5U CN213365280U (en) | 2020-10-30 | 2020-10-30 | Central control panel |
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CN202022481324.5U CN213365280U (en) | 2020-10-30 | 2020-10-30 | Central control panel |
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CN202022481324.5U Active CN213365280U (en) | 2020-10-30 | 2020-10-30 | Central control panel |
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Effective date of registration: 20231007 Address after: No. 15, Jiannan Road, Nanyou Community, Yuehai Street, Nanshan District, Shenzhen, Guangdong 518000 Hengda Tianjing B2801 Patentee after: Xingluo home yunwulian Technology Co.,Ltd. Address before: 31a01, block a, aerospace science and Technology Plaza, no.1698, Haizhu community, Yuehai street, Nanshan District, Shenzhen, Guangdong 518000 Patentee before: Star Network Intelligent Technology Co.,Ltd. |