Stamping module for intelligent stamp
A technology of intelligent seals and ink pads, applied in the field of seals, can solve the problems of easy theft of seal information, etc., and achieve the effect of prolonging the service life and facilitating replacement
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Embodiment 1
[0042] The following is attached Figure 1-13 The application is described in further detail.
[0043] The embodiment of the present application discloses a smart seal.
[0044] refer to figure 1 and figure 2 , a smart seal, including:
[0045] housing 12;
[0046] The seal module 1 installed at one end of the housing 12;
[0047] The ink pad module 2 installed in the housing 12 is used to provide ink pad for the stamp module 1;
[0048]The counting module 3 installed on the housing 12 away from the end of the stamping module 1 is used to count the stamping times of the stamping module 1;
[0049] The locking module 4 installed in the housing 12 is used to lock the stamping module 1 to a state where it cannot be stamped;
[0050] The control module 5 installed in the casing 12 is used to control the locking module 4 to switch between the two states of locking and unlocking the seal module 1 .
[0051] When the seal needs to be used, the unlocking signal is first sent ...
Embodiment 2
[0081] The difference between the second embodiment and the first embodiment is that the force changing components are different. refer to Figure 9 and Figure 11 , the force changing assembly includes a guide groove 18 opened on the side wall of the guide sleeve 14 along the axial direction of the guide sleeve 14 . refer to Figure 10 and Figure 11 There are two guide grooves 18, and one rotating shaft 19 corresponds to one guiding groove 18, and the rotating shaft 19 passes through the guiding groove 18 and is slidably connected to the guiding groove 18. The guide groove 18 includes a guide portion 46 and a reversing portion 47 , the reversing portion 47 is arranged in an arc, and the guide portion 46 is arranged axially along the guide sleeve 14 . Two guide portions 46 are provided and are respectively connected to two ends of the reversing portion 47 .
[0082] In the initial state, the return spring 15 is in a natural state, the abutment plate 27 is located outside...
Embodiment 3
[0085] The difference between the third embodiment and the first embodiment is that the locking module 4 is different. refer to Figure 12 and Figure 13 , the locking module 4 includes a first guide rod 38 arranged axially along the housing 12 and fixedly connected to the closed end of the guide sleeve 14, a limit rod 48 slidingly connected to the upper end of the second mounting plate 37, and a limit rod 48 for driving the limit rod. 48 is a first driving member that slides relative to the second mounting plate 37 . The first driving member includes a power transmission rack 49 arranged on the limit rod 48, a power transmission gear 50 engaged on the power transmission rack 49, and a drive motor 40 for driving the power transmission gear 50 to rotate. The drive motor 40 is installed on the second mounting board 37 . The first guide rod 38 passes through the second mounting plate 37 and is slidably connected to the second mounting plate 37 along the axial direction of the ...
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