CN216388338U - Telescopic rod adjusting and modifying system for wireless remote control electric tripod - Google Patents

Telescopic rod adjusting and modifying system for wireless remote control electric tripod Download PDF

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Publication number
CN216388338U
CN216388338U CN202122631682.4U CN202122631682U CN216388338U CN 216388338 U CN216388338 U CN 216388338U CN 202122631682 U CN202122631682 U CN 202122631682U CN 216388338 U CN216388338 U CN 216388338U
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module
wireless
receiving
transmitting
chip
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彭建华
邹新军
吴杨健
罗伟强
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Zhongshan Yangguo Electronic Technology Co ltd
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Zhongshan Yangguo Electronic Technology Co ltd
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Abstract

The utility model relates to the technical field of tripods, and particularly discloses a telescopic rod adjusting and modifying system for a wireless remote control electric tripod, which comprises a wireless remote control unit and an electric tripod unit, wherein the wireless remote control unit comprises a transmitting MCU module, a wireless transmitting module, a first power supply battery and a wireless connecting module; the electric tripod unit comprises a receiving MCU module, a direct current motor driving module, a wireless receiving module and a second power supply battery, the receiving MCU module is electrically connected with the direct current motor driving module and the wireless receiving module, the direct current motor driving module is electrically connected with a direct current motor, the lifting speed of the telescopic rod can be adjusted and modified by updating programs of the wireless remote control unit and the electric tripod unit, manpower and material resources consumed by adjusting and modifying the lifting speed of the telescopic rod are reduced, the adjusting and modifying cost is reduced, and the convenience of adjusting and modifying is improved.

Description

Telescopic rod adjusting and modifying system for wireless remote control electric tripod
Technical Field
The utility model relates to the technical field of tripods, in particular to a telescopic rod adjusting and modifying system for a wireless remote control electric tripod.
Background
The electric tripod of wireless remote control can use wireless remote control or the tripod on switch button control telescopic link go up and down, and wireless remote control can be effectively controlled in 10 meters, and the operation is convenient, and wireless remote control can also be connected through the bluetooth with the former camera of cell-phone and take a picture/record a video recording, has filled the blank area that traditional tripod used hand lift telescopic link.
However, after the existing wireless remote control electric tripod is formed, the lifting speed of the telescopic rod needs to be adjusted and modified, and the common direct current motor needs to be replaced by a brushless motor for adjustment and modification, so that a large amount of manpower and material resources are consumed, the adjustment and modification cost is high, and inconvenience is brought to users.
SUMMERY OF THE UTILITY MODEL
The utility model mainly aims to provide a telescopic rod adjusting and modifying system for a wireless remote control electric tripod, and solves the problems that a large amount of manpower and material resources are consumed and the adjusting and modifying cost is high in the process of adjusting and modifying the lifting speed of a telescopic rod by an electric tripod in the prior art.
In order to achieve the above object, the present invention provides a telescopic rod adjusting and modifying system for a wireless remote control electric tripod, comprising:
the wireless remote control unit comprises a transmitting MCU module, a wireless transmitting module, a first power supply battery and a wireless connection module, wherein the transmitting MCU module is electrically connected with the wireless transmitting module;
the electric tripod unit comprises a receiving MCU module, a direct current motor driving module, a wireless receiving module and a second power supply battery, wherein the receiving MCU module is electrically connected with the direct current motor driving module and the wireless receiving module, the direct current motor driving module is electrically connected with a direct current motor, the second power supply battery is used for receiving power supplied by the MCU module, the direct current motor driving module and the wireless receiving module, and the receiving MCU module is electrically connected with a switch button.
Preferably, the transmitting MCU module includes a transmitting MCU chip U1, a filter capacitor C9, an indicator light D1 and a KEY group KEY, a 1 st pin of the transmitting MCU chip U1 is electrically connected to the filter capacitor C9 and grounded, a 6 th pin of the transmitting MCU chip U1 is electrically connected to the indicator light D1 and grounded, 2 nd, 3 th, and 5 th pins of the transmitting MCU chip U1 are electrically connected to the KEY group KEY, and an 8 th pin of the transmitting MCU chip U1 is grounded.
Preferably, the receiving MCU module includes a receiving MCU chip U2 and an RC filter circuit, the RC filter circuit is electrically connected to the receiving MCU chip U2, and the RC filter circuit is configured to provide a stable dc power supply to the receiving MCU chip U2.
Preferably, the wireless transmitting module comprises a wireless transmitting chip U3, a transmitting sensitivity setting component and an alarm X2, wherein the No. 3 pin of the wireless transmitting chip U3 is electrically connected with the transmitting sensitivity setting component, and the alarm X2 is arranged between the No. 1 pin and the No. 6 pin of the wireless transmitting chip U3.
Preferably, the wireless receiving module comprises a wireless receiving chip U4, a receiving sensitivity setting component and an external crystal oscillator X1, the 1 st pin of the wireless receiving chip U4 is grounded, the receiving sensitivity setting component is arranged between the 2 nd pin and the 3 rd pin of the wireless receiving chip U4, the 7 th pin of the wireless receiving chip U4 is electrically connected with a resistor R10 and grounded, and the external crystal oscillator X1 is electrically connected with the 8 th pin of the wireless receiving chip U4 and grounded.
Preferably, the wireless connection module is a bluetooth module.
Preferably, a hall effect switch and a reflection-type photoelectric switch are arranged between the receiving MCU module and the second power supply battery.
Preferably, the second power supply battery is a polymer lithium ion battery, and the second power supply battery is electrically connected with a charging module.
Preferably, the charging module is a linear lithium ion battery charging module.
Has the advantages that: the utility model provides a telescopic rod adjusting and modifying system for a wireless remote control electric tripod, which can adjust and modify the lifting speed of a telescopic rod by updating programs of a wireless remote control unit and an electric tripod unit, meets the requirements of users, greatly reduces manpower and material resources consumed by adjusting and modifying the lifting speed of the telescopic rod, reduces adjusting and modifying cost, and greatly improves the convenience of adjusting and modifying.
Drawings
FIG. 1 is a schematic block diagram of an embodiment of the present invention;
FIG. 2 is a circuit diagram of a transmitting MCU module in an embodiment of the present invention;
FIG. 3 is a circuit diagram of a receiving MCU module according to an embodiment of the present invention;
FIG. 4 is a circuit diagram of a wireless transmitter module according to an embodiment of the utility model;
fig. 5 is a circuit diagram of a wireless receiving module according to an embodiment of the utility model.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
It should be noted that if the description of "first", "second", etc. is provided in the embodiment of the present invention, the description of "first", "second", etc. is only for descriptive purposes and is not to be construed as indicating or implying relative importance or implicitly indicating the number of indicated technical features. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one such feature.
Example (b):
please refer to fig. 1 to 5, this embodiment provides a telescopic link adjusting and modifying system for a wireless remote control electric tripod, which includes a wireless remote control unit and an electric tripod unit, the wireless remote control unit includes a transmitting MCU module, a wireless transmitting module, a first power supply battery and a wireless connection module, the transmitting MCU module is electrically connected to the wireless transmitting module, the first power supply battery is a button battery, the first power supply battery is used for supplying power to the transmitting MCU module, the wireless transmitting module and the wireless connection module, the wireless transmitting module is connected to the wireless receiving module through a network, the wireless connection module is used for connecting a mobile phone terminal, and in an actual use process, the wireless remote control unit is connected to the mobile phone terminal through the wireless connection module to perform photographing/video recording.
The electric tripod unit comprises a receiving MCU module, a direct current motor driving module, a wireless receiving module and a second power supply battery, the receiving MCU module is electrically connected with the direct current motor driving module and the wireless receiving module, the direct current motor driving module is electrically connected with a direct current motor, the second power supply battery is used for receiving the MCU module, the direct current motor driving module and the wireless receiving module supply power, the receiving MCU module is electrically connected with a switch key, the switch key is used for starting or closing the electric tripod unit, the lifting speed of the telescopic rod can be adjusted and modified by updating programs of the wireless remote control unit and the electric tripod unit, the user requirements are met, manpower and material resources consumed by adjusting and modifying the lifting speed of the telescopic rod are greatly reduced, the adjusting and modifying cost is reduced, and the convenience of adjusting and modifying is greatly improved.
Specifically, the transmitting MCU module includes a transmitting MCU chip U1, a filter capacitor C9, an indicator light D1 and a KEY set KEY, wherein pin 1 of the transmitting MCU chip U1 is electrically connected to the filter capacitor C9 and grounded, pin 6 of the transmitting MCU chip U1 is electrically connected to the indicator light D1 and grounded, pin 2, pin 3, and pin 5 of the transmitting MCU chip U1 are electrically connected to the KEY set KEY, and pin 8 of the transmitting MCU chip U1 is grounded, as shown in fig. 2, the KEY set KEY includes KEY2, KEY3 and KEY4, KEY2 is electrically connected to pin 2 of the transmitting MCU chip U1, KEY3 is electrically connected to pin 3 of the transmitting MCU chip U1, KEY4 is electrically connected to pin 5 of the transmitting MCU chip U1, and the wireless transmitting module is programmed and controlled by the transmitting MCU chip U1, thereby implementing the functions of raising, lowering and suspending of the mobile phone end control.
As shown in fig. 3, the receiving MCU module includes a receiving MCU chip U2 and an RC filter circuit, the RC filter circuit is electrically connected to the receiving MCU chip U2, the RC filter circuit is used to provide stable dc power for the receiving MCU chip U2, the receiving MCU chip U2 is a core device, all functions of the electric tripod unit are implemented by the chip program setting, a user can provide signals to the receiving MCU chip U2 in the form of N seconds by turning on and off a switch key, the receiving MCU chip U2 controls the wireless remote control electric tripod to make corresponding actions according to the obtained signals, the RC filter circuit includes a resistor R12, a resistor R2, a resistor R5 and a capacitor C3, the 1 st pin of the receiving MCU chip U2 is connected in series with the resistor R12 in parallel connection, the resistor R2 is connected in series between the 1 st pin and the 4 th pin of the receiving MCU chip U2, the resistor R5 is connected in series between the 1 st pin and the 5 th pin of the receiving MCU chip U2, the capacitor C3 is connected in series between the 1 st pin and the 14 th pin of the receiving MCU chip U2.
As shown in fig. 4, the wireless transmitting module includes a wireless transmitting chip U3, a transmitting sensitivity setting assembly and an alarm X2, the 3 rd pin of the wireless transmitting chip U3 is electrically connected with the transmitting sensitivity setting assembly, the alarm X2 is arranged between the 1 st pin and the 6 th pin of the wireless transmitting chip U3, the transmitting sensitivity setting assembly includes an inductor L2, an inductor L3, a capacitor 12 and an antenna ANT 2, the 3 rd pin of the wireless transmitting chip U3 is connected in series and electrically with the inductor L2, and the capacitor 12, the inductor L3 and the antenna ANT 2 are connected in series and electrically connected with the 3 rd pin of the wireless transmitting chip U3.
As shown in fig. 5, the wireless receiving module includes a wireless receiving chip U4, a receiving sensitivity setting module and an external crystal oscillator X1, the 1 st pin of the wireless receiving chip U4 is grounded, the receiving sensitivity setting module is disposed between the 2 nd pin and the 3 rd pin of the wireless receiving chip U4, the 7 th pin of the wireless receiving chip U4 is electrically connected with a resistor R10 and grounded, the external crystal oscillator X1 is electrically connected with the 8 th pin of the wireless receiving chip U4 and grounded, the receiving sensitivity setting module includes an inductor L4, an inductor L5, a capacitor C5 and a capacitor C7, the capacitor C7, the inductor L4 and the inductor L42 are sequentially connected in parallel, the capacitor C5 is connected in series between the inductor L9 and the inductor L5, one end of the inductor L5 close to the capacitor C5 is electrically connected with the 2 nd pin of the wireless receiving chip U4, and one end of the inductor L866 5 close to the capacitor C5 is electrically connected with the 3 rd pin of the wireless receiving chip U4 through the capacitor C5958.
It should be noted that the wireless connection module is a bluetooth module, and the bluetooth module has the characteristics of low power consumption, easy adoption and low application cost, and realizes low-cost wireless interconnection communication.
It should be further noted that a hall effect switch and a reflective photoelectric switch are arranged between the receiving MCU module and the second power supply battery, both the hall effect switch and the reflective photoelectric switch are proximity switches, and signals of the proximity switches are transmitted to the receiving MCU module, so that the receiving MCU module provides control instructions for the dc motor driving module, and then controls the dc motor through the dc motor driving module.
Furthermore, the second power supply battery is a polymer lithium ion battery which has the advantages of good safety performance and small thickness, the second power supply battery is electrically connected with a charging module, the charging module is a linear lithium ion battery charging module, and the linear lithium ion battery charging module has the advantages of small size, light weight, long working time and long service life.
The above description is only a preferred embodiment of the present invention, and is not intended to limit the scope of the present invention, and all modifications and equivalents of the present invention, which are made by the contents of the present specification and the accompanying drawings, or directly/indirectly applied to other related technical fields, are included in the scope of the present invention.

Claims (9)

1. A telescopic rod adjusting and modifying system for a wireless remote control electric tripod, comprising:
the wireless remote control unit comprises a transmitting MCU module, a wireless transmitting module, a first power supply battery and a wireless connection module, wherein the transmitting MCU module is electrically connected with the wireless transmitting module;
the electric tripod unit comprises a receiving MCU module, a direct current motor driving module, a wireless receiving module and a second power supply battery, wherein the receiving MCU module is electrically connected with the direct current motor driving module and the wireless receiving module, the direct current motor driving module is electrically connected with a direct current motor, the second power supply battery is used for receiving power supplied by the MCU module, the direct current motor driving module and the wireless receiving module, and the receiving MCU module is electrically connected with a switch button.
2. The system of claim 1, wherein said system comprises: the transmitting MCU module comprises a transmitting MCU chip U1, a filter capacitor C9, an indicator lamp D1 and a KEY group KEY, a 1 st pin of the transmitting MCU chip U1 is electrically connected with the filter capacitor C9 and grounded, a 6 th pin of the transmitting MCU chip U1 is electrically connected with the indicator lamp D1 and grounded, 2 nd, 3 th and 5 th pins of the transmitting MCU chip U1 are electrically connected with the KEY group KEY, and an 8 th pin of the transmitting MCU chip U1 is grounded.
3. The system of claim 1, wherein said system comprises: the receiving MCU module comprises a receiving MCU chip U2 and an RC filter circuit, the RC filter circuit is electrically connected with the receiving MCU chip U2, and the RC filter circuit is used for providing stable direct current power supply for the receiving MCU chip U2.
4. The system of claim 1, wherein said system comprises: the wireless transmitting module comprises a wireless transmitting chip U3, a transmitting sensitivity setting component and an alarm X2, wherein the No. 3 pin of the wireless transmitting chip U3 is electrically connected with the transmitting sensitivity setting component, and the alarm X2 is arranged between the No. 1 pin and the No. 6 pin of the wireless transmitting chip U3.
5. The system of claim 1, wherein said system comprises: the wireless receiving module comprises a wireless receiving chip U4, a receiving sensitivity setting component and an external crystal oscillator X1, the 1 st pin of the wireless receiving chip U4 is grounded, the receiving sensitivity setting component is arranged between the 2 nd pin and the 3 rd pin of the wireless receiving chip U4, the 7 th pin of the wireless receiving chip U4 is electrically connected with a resistor R10 and grounded, and the 8 th pin of the external crystal oscillator X1 and the wireless receiving chip U4 is electrically connected and grounded.
6. The system of claim 1, wherein said system comprises: the wireless connection module is a Bluetooth module.
7. The system of claim 1, wherein said system comprises: and a Hall effect switch and a reflection type photoelectric switch are arranged between the receiving MCU module and the second power supply battery.
8. The system of claim 7, wherein said system comprises: the second power supply battery is a polymer lithium ion battery and is electrically connected with a charging module.
9. The system of claim 8, wherein said system comprises: the charging module is a linear lithium ion battery charging module.
CN202122631682.4U 2021-10-30 2021-10-30 Telescopic rod adjusting and modifying system for wireless remote control electric tripod Active CN216388338U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122631682.4U CN216388338U (en) 2021-10-30 2021-10-30 Telescopic rod adjusting and modifying system for wireless remote control electric tripod

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122631682.4U CN216388338U (en) 2021-10-30 2021-10-30 Telescopic rod adjusting and modifying system for wireless remote control electric tripod

Publications (1)

Publication Number Publication Date
CN216388338U true CN216388338U (en) 2022-04-26

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122631682.4U Active CN216388338U (en) 2021-10-30 2021-10-30 Telescopic rod adjusting and modifying system for wireless remote control electric tripod

Country Status (1)

Country Link
CN (1) CN216388338U (en)

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