Dynamic gas-distributing gas-supplying device
A gas supply device and dynamic gas distribution technology, applied in the direction of gas and gas/steam mixing, transportation and packaging, mixer accessories, etc., can solve the problems of inability to achieve independent control, long calibration period, frequent constant temperature, etc., to reduce re-use The time to enter a stable microenvironment, shorten the cycle of recalibration, and improve the effect of gas distribution accuracy
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Embodiment 1
[0038] figure 1 It is a schematic diagram of the principle of a dynamic air distribution and air supply device according to an embodiment of the present invention, such as figure 1 As shown, the carrier gas 100 forms a continuous standard gas 300 under the action of the dynamic gas distribution and gas supply device 200, wherein the dynamic gas distribution and gas supply device 200 forms a parallel arrangement inside and can alternately switch the gas distribution aisle. Specifically, the gas distribution channel includes:
[0039] The flow control module 10 splits the carrier gas 100 into at least two groups of gas channels that are independent and parallel to each other, and whose flow rate can be individually controlled;
[0040] The first channel control module 20 is used to regulate and control the connected air channels, and realize exchange-type communication control between the air channels;
[0041] The permeation module 30 is assembled from at least two permeatio...
Embodiment 2
[0052] The difference between this embodiment and Embodiment 1 lies in the way and principle of entering into the osmosis module 30 to provide stable microenvironmental balance of the permeability inside the osmosis cavity. like image 3 As shown, in this embodiment, the dynamic gas distribution and gas supply device 200 also includes a balance unit arranged at the inlet end of the first channel control module 20 and the outlet end of the second channel control module 40 to dynamically balance the permeation cavity , the balance unit includes an exhaust device 60 switchably communicated with the second channel control module 40, and a ventilation branch arranged between the first channel control module 20 and the air communication end; wherein, the air flows through the first channel control After the module 20, under the allocation of the first channel control module 20, it enters the permeation cavity 31 of the permeation module 30 in parallel, and under the action of the ex...
Embodiment 3
[0058] The difference between this embodiment and Embodiment 2 is that it can realize the gas distribution for the permeation module 30 (internal gas source), and it can also be compatible with the diluted gas distribution of the external standard gas (external gas source), and each permeation chamber can be independently The settings do not interfere with each other, the gas distribution and the balanced preheating do not conflict with each other, and the switching between multiple channels is realized without any connection; and the gas distribution of the internal source and the external source can achieve complementarity without interference. At the same time, using The external source gas distribution does not affect the balanced preheating of the internal source, and realizes free switching between internal and external sources, and zero connection between gas distribution switching; it greatly improves the adaptability, flexibility and compatibility of dynamic gas distrib...
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