Disposable angle-adjustable wireless hard endoscope
An angle-adjusting, one-time technology, applied in the fields of endoscopy, medical science, diagnosis, etc., can solve the problems of high cost and manpower consumption, and achieve the effect of reducing support, realizing adjustment and locking, convenient operation and rotation adjustment
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Embodiment 1
[0066] refer to figure 1 , 3 , 4, 5, and 9; a disposable angle-adjustable wireless rigid endoscope, which includes a hard inner tube 1 and a hard outer tube 2; the front end of the hard inner tube 1 is provided with an angle-adjustable wireless Endoscope 3; the first end of the hard inner tube 1 is provided with a connecting plate 4 for accommodating the rear end connector 31 of the wireless endoscope 3, and the connecting plate 4 is provided with a receiving connector 31 and realizes the rotation of the connector 31 to drive the entire wireless endoscope 3 rotating accommodation chamber 41; the first end of the connector 31 is connected to the wireless endoscope 3, and the second end of the connector 31 is connected to the first end of the operating rod 32; Pull wire 57, the pull wire 57 extends to the second end of the hard inner tube 1 through the side of the hard inner tube 1, and the pull wire 57 is connected with the pulling adjustment structure 5 at the second end of t...
Embodiment 2
[0070] On the basis of embodiment 1, the connection mode of the specific angle adjustment of the hard outer tube 2, the hard inner tube 1 and the wireless endoscope 3 is limited; refer to Figure 6-8 As shown; specifically: the connecting plate 4 is the connecting plate 4 arranged at the first end of the hard inner tube 1, and is integrally connected with the hard inner tube 1; the connecting head 31 is a spherical connecting head 31; the accommodating cavity 41 is Both ends of the spherical connector 31 can fit into the notched spherical cavity with openings; the two ends of the connector 31 protrude from the openings at both ends of the notched spherical cavity, and the connector 31 will not escape from any opening.
[0071] The symmetrical plane in the middle of the notched spherical cavity is the largest circular surface; and the symmetrical plane of the notched spherical cavity is consistent with the vertical symmetrical plane of the connector 31 in the vertical state. Thi...
Embodiment 3
[0076] On the basis of Example 2, the implementation of the specific pull adjustment structure 5 is limited, refer to Figure 14-17 Shown; Be specifically: the pull adjustment structure 5 comprises the rotation adjustment rod 51 that rotates and adjusts the length of the pull wire 57 and accommodates the pull wire 57, and the locking structure that effectively rotates the adjustment rod 51 to rotate; The adjustment structures 5 are all in a non-locked state, which is convenient for adjustment; in the non-adjustment stage, all the pulling adjustment structures 5 are in a locked state, which is convenient for mutual restraint, and the angle of the wireless endoscope 3 at the front end is stable.
[0077] The pull adjusting structure 5 includes a setting plate 52 on which a rotation adjusting rod 51 is arranged, and a rotating cavity 53 for accommodating the rotating adjusting rod 51 is arranged on the setting plate 52 ; a rotating cap 54 is arranged at the outer end of the rotati...
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