Multi-membrane western blot hybridization instrument and its experimental operation method
A technology of western blotting and hybridization instrument, applied in the field of western blotting, can solve the problems of high price of instruments and consumables, increased price of instruments, unaffordable expenses, etc., and achieves the effects of being beneficial to installation and maintenance, low equipment cost, and simplified structure
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Embodiment 1
[0046] like Figure 1 to Figure 6 As shown, this embodiment provides a multi-membrane western blot hybridization instrument, including: a housing 1, a transport positioning device 2, a shaking table device 3, a hybridization tank set 4, a liquid inlet and discharge device 5 and a control device 6; see figure 2 , the shell 1 is mainly composed of a bottom shell 11 arranged horizontally and a vertical shell 12 integrally arranged at the rear of the bottom shell 11 and extending vertically upwards, and the rear of the vertical shell 12 is open, and the opening matches A detachable backboard 13 is provided. By removing the back plate 13, the shaking bed device 3 and the control device 5 are installed inside the bottom casing 11, and the upper part of the shaking bed device 3 protrudes from the bottom casing 11 through the preset opening on the upper surface of the bottom casing 11. On the upper surface, it is convenient to install and disassemble the hybridization tank group 4 a...
Embodiment 2
[0056] like Figure 1 to Figure 5 as well as Figure 7 As shown, the components included in this embodiment, the structure of each component and the relationship between each component are basically the same as in Embodiment 1, the difference is that the lateral movement of the transmission mechanism 21 is completed by the dovetail guide rail and the rack and pinion pair, Longitudinal movement is accomplished by a crank mechanism.
[0057] see Figure 7 The transmission mechanism 21 provided in this embodiment includes: a guide rail 2141 with a dovetail fixed horizontally on the front surface of the backplane 13, and a slider 2142 with a dovetail groove slidably installed on the guide rail 2141, and the guide rail 2141 is horizontally provided with The rack 2144; the first motor 211 is installed in the slider 2142, and drives a gear 2145 meshed with the rack 2144. When the first motor 211 works, the slider 2142 is driven to slide horizontally on the guide rail 2141 , to dri...
Embodiment 3
[0060] like Figure 1 to Figure 5 as well as Figure 8 As shown, the components included in this embodiment, the structure of each component and the relationship between each component are basically the same as in Embodiment 1, the difference is that the lateral movement of the transmission mechanism 21 is completed by the roller screw, and the longitudinal movement is achieved by The eccentric shaft mechanism is completed.
[0061] see Figure 8 The transmission mechanism 21 provided in this embodiment includes: a horizontally arranged lead screw 2151 and a traverse block 2152 screwed on the lead screw 2151, and both ends of the lead screw 2151 are rotatably connected to the front plate surface of the back plate 13 , the first motor 211 is drivingly connected to one end of the lead screw 2151, and drives the traverse block 2152 to slide horizontally on the lead screw 2151 during operation, driving the diaphragm to move laterally. The second motor 212 is installed in the tr...
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