Connection module and electronic equipment
A technology of modules and gear sets, applied in the direction of pivot connection, mechanical equipment, electrical components, etc., can solve the problem of not being able to provide enough space to accommodate, and achieve the effect of meeting the light and thin
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
example 1
[0191] like Figure 9As shown, for the forward tilt of one body of an electronic device relative to the other body when it is closed, the LCD rotation angle is required to be 180°-α when the rotation process reaches 360 degrees; the BASE rotation angle is 180+α; the transmission ratio It is (180+α) / (180-α), that is, the rotation angle of the LCD is required to be smaller than the rotation angle of the BASE end, and it is also required to meet the ratio of the number of gear teeth on the upper shaft to the number of gear teeth on the lower shaft in the design to satisfy (180+α ) / (180-α); the number of teeth on the upper shaft gear is greater than the number of teeth on the lower shaft gear, because the modulus is the same, and the upper shaft gear itself is smaller due to the thinner LCD, so the diameter of the pitch circle of the lower shaft gear is required to be smaller than that of the upper shaft gear Shaft gear pitch circle diameter.
[0192] like Image 6 As shown, thi...
example 2
[0207] This example provides a connection mod such as Figure 8 and Figure 9 As shown, assuming that the connection module is tilted forward by α degrees (the same is true for the backward tilt design), the axis center distance is C, which remains unchanged during the rotation process. The design gap value of LCD and BASE is G in the closed state; the transmission ratio is (180-α) / (180+α);
[0208] Rotation process: LCD rotation angle is 180°-α; BASE rotation angle is 180+α;
[0209] Then there are: under 0 degree closure, the vertical axis center distance is C*cosα;
[0210] Under 360 degrees, the vertical axis center distance is C;
[0211] The increased value of the axial center distance is C-C*cosα=C*(1-cosα);
[0212] Therefore, compared with the 1:1 synchronous design, this solution can increase the accommodation space of the 360-degree foot pad by C* (1-cosα);
[0213] For example: if C=8mm, α=25°, the increased space of this scheme is 0.75mm;
[0214] If the ori...
PUM
Login to View More Abstract
Description
Claims
Application Information
Login to View More 


