Quick dismounting structure of microwave resonator
Patent Information
- Application Number
- CN202310837965.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-07-10
- Publication Date
- 2026-09-25
- Estimated Expiration
- 2043-07-10
AI Technical Summary
[0004]有鉴于此,本发明提供一种微波谐振器快速拆卸结构,以解决带有快速拆卸的结构,无法长时间保证谐振器的稳定,谐振器外部的连接线,无法实现快速的连接,导致谐振器更换繁琐的问题
[0013]一、本发明首先将安装组件预先固定在指定位置,安装组件上设置有卡接组件和安装板,安装组件上通过安装板和卡接组件滑动卡接谐振模块,谐振模块左侧位置的接触外板与接触组件卡接且相互固定,接触组件安装在安装组件的左侧位置,此时接触组件在将谐振模块的接触外板卡接固定后,将安装组件处的限位组件卡入接触组件,让限位组件起到对接触组件的固定,实现谐振模块的整体固定作用,谐振模块右侧位置的外接组件具有便于快捷外接导线的作用。
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Figure CN116995396B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of microwave equipment technology, and in particular to a quick-disassembly structure for a microwave resonator. Background Technology
[0002] Microwave resonators are widely used in various microwave circuits, such as filters and oscillators. The function of microwave resonators is similar to that of lumped element resonant circuits in circuit theory. In microwave circuits, they also play the roles of energy storage and frequency selection. There are many structural forms of microwave resonators, which can be constructed from transmission lines, rectangular and circular waveguides, etc. Some microwave resonators are designed as modules, which are directly fixed by bolts, and then external receiving and transmitting lines and necessary power supplies are connected to facilitate subsequent maintenance and replacement of microwave resonators.
[0003] Currently available microwave resonators are mostly bolt-fixed, making disassembly cumbersome. Even with quick-disassembly structures, the resonator's stability cannot be guaranteed for extended periods. Furthermore, the external connecting wires of the resonator cannot be quickly connected, leading to cumbersome resonator replacement issues. Summary of the Invention
[0004] In view of this, the present invention provides a quick-disassembly structure for microwave resonators to solve the problems that structures with quick disassembly cannot guarantee the stability of the resonator for a long time, and that the external connecting wires of the resonator cannot be quickly connected, resulting in cumbersome resonator replacement.
[0005] This invention provides a quick-disassembly structure for a microwave resonator, specifically comprising: a mounting assembly; a mounting plate is provided on the mounting assembly, and snap-fit components are provided at the front and rear edges of the upper end face; a resonator module is mounted on the mounting assembly by sliding snap-fit between the mounting plate and the snap-fit components; a contact outer plate is provided on the left side of the resonator module, and the contact outer plate is in contact with the contact component; the contact component is mounted on the left side of the mounting assembly; a limit component is hingedly mounted on the left side of the contact component; and an external component is connected to the right end of the resonator module.
[0006] Furthermore, the mounting plate of the mounting assembly has a rectangular plate structure, with protruding plates at both ends and the front and rear positions of the mounting plate. The protruding plates of the mounting plate have external slots, which are designed to be slotted outwards. In order to allow the mounting assembly to be better installed in the designated position, without welding, four sets of guide grooves are provided on the bottom surface of the resonant module, and four sets of guide strips are provided on the upper surface of the mounting plate. The positions of the guide strips correspond to the guide grooves of the resonant module.
[0007] Furthermore, the resonant module has a slot at the corner of the module shell, the lower end of the slot is set as a module mounting hole, and the front and rear outer walls of the module shell have outer groove surfaces, which are positioned at the upper part.
[0008] Furthermore, the snap-fit block of the snap-fit assembly is located at the front and rear edges of the mounting assembly. A gap space is provided in the middle of the snap-fit block. An external protrusion is snap-fitted into the snap-fit block. The external protrusion is located at the bottom edge of the resonant module. A groove is provided at the outer end of the external protrusion. A top hole is provided at the upper end of the snap-fit block. A positioning pin is inserted into the top hole of the snap-fit block. A fixing rod connects the two sets of positioning pins together.
[0009] Furthermore, the swing block of the contact component has a rectangular block structure. The swing block is rotatably installed on the left side of the mounting component. A contact groove is provided on the right side of the swing block facing the middle. The contact groove corresponds to the concave and convex grooves of the contact outer plate. A positioning piece is provided at the top of the contact groove on the swing block. An outer locking groove is provided on the left side of the swing block facing the middle. The outer locking groove corresponds to the limiting component. An inclined plate is provided at the right end of the swing block near the outer position. A leaf spring is installed between the inclined plate and the swing block. A blocking block is provided at the left end of the swing block near the outer position.
[0010] Furthermore, the limiting plate of the limiting component has a rectangular plate structure. The limiting plate is hinged to the left edge of the mounting component. A fastening rod is rotatably installed at the middle position of the end of the limiting plate. The fastening rod is screwed onto the mounting component. Contact heads are provided on the front and rear end faces of the limiting plate, and the contact heads correspond to the outer slots of the contact component.
[0011] Furthermore, the external connector of the external component is located on the right side of the resonant module. A snap-fit connector is provided on the outer wall of the external connector near the root. An external wire is also sleeved and installed at the outer end of the external connector. A snap-fit groove is provided at the head of the external connector. The snap-fit groove has an inclined structure. The snap-fit connector snaps into the snap-fit groove. A limit frame is snapped and installed at the outer side of the external wire. A support block is provided at the bottom of the limit frame.
[0012] The beneficial effects are:
[0013] First, the installation component is pre-fixed in a designated position. The installation component is equipped with a snap-fit component and a mounting plate. The resonant module is slidably snapped onto the installation component through the mounting plate and the snap-fit component. The contact outer plate on the left side of the resonant module is snapped onto and fixed to the contact component. The contact component is installed on the left side of the installation component. After the contact component snaps onto and fixes the contact outer plate of the resonant module, the limiting component at the installation component snaps into the contact component, so that the limiting component fixes the contact component and realizes the overall fixation of the resonant module. The external component on the right side of the resonant module has the function of facilitating quick and easy connection of external wires.
[0014] Second, the present invention provides protruding plates at the front and rear edges of the mounting plate and provides external grooves at the protruding plates, so as to facilitate the use of bolts and other components to fix the mounting components. Four sets of guide strips are provided on the upper surface of the mounting plate, and the positions of the four sets of guide strips correspond to the guide grooves, so that the resonant module can achieve better correspondence with the guide strips and guide grooves during installation, and at the same time, it is more convenient to slide the resonant module on the mounting components.
[0015] Third, after the resonant module of the present invention is slidably installed, each set of external protrusions and snap-fit blocks will be snapped into each other, and the slots of the external protrusions will also correspond to the positions of the top holes. At this time, the positioning pins are inserted into the positions of the top holes, which can fix the positions of the snap-fit blocks and external protrusions. This also achieves the function of better fixing the resonant module to the mounting assembly. The two sets of positioning pins are connected by a fixing rod, which makes it convenient to directly insert and remove the positioning pins through the fixing rod.
[0016] Fourth, the contact groove on the swing block of the present invention is set to correspond to the concave and convex grooves of the contact outer plate, so that when the resonant module slides into place, the concave and convex grooves of the contact outer plate can directly engage with the swing block, and the contact groove can fix the contact outer plate, so as to achieve the position fixation of the resonant module by the contact assembly. The inclined plate is set at the outer end of the swing block, which helps to install a leaf spring between the inclined plate and the swing block, so that the swing block is always pressed towards the middle position by the leaf spring. The blocking block set at the outer end of the swing block has the function of limiting the swing position of the swing block.
[0017] Fifth, since the limiting plate needs to be fixed at the position of the contact component during use, the fastening rod is rotated and installed at the middle of the end of the limiting plate. When it is necessary to fix the limiting plate, the fastening rod can be directly screwed onto the mounting component to achieve the fixing function of the limiting component. Contact heads are set at the front and rear ends of the limiting plate, and the contact heads correspond to the outer slots. When the limiting plate is snapped and pressed at the position of the contact component, the limiting component fixes the contact component.
[0018] VI. In this invention, the external wiring is designed to be sleeved and installed on the external connector, and the snap-fit groove is designed to be inclined, so that the snap-fit connector can slide in the snap-fit groove, thereby achieving a stable connection and fixation between the snap-fit groove and the snap-fit connector. Thus, when the external wiring is sleeved and installed on the external connector, the snap-fit groove is aligned with the snap-fit connector, and the external wiring is rotated to achieve a stable fixation of the external wiring.
[0019] VII. The limiting frame that is snapped onto the outer end of the external wiring of the present invention can achieve circumferential fixation between the limiting frame and the external wiring. By setting a support block at the bottom of the limiting frame, the limiting frame can be circumferentially fixed through the support block, thereby achieving the circumferential fixation effect of the limiting frame on the external wiring and realizing a stable connection between the external wiring and the external connector. Attached Figure Description
[0020] To more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings of the embodiments will be briefly described below.
[0021] The accompanying drawings described below are only related to some embodiments of the invention and are not intended to limit the invention.
[0022] In the attached diagram:
[0023] Figure 1 This is a schematic diagram of the overall structure of an embodiment of the present invention.
[0024] Figure 2 This is a schematic diagram of the snap-fit component structure according to an embodiment of the present invention.
[0025] Figure 3 This is a schematic diagram of the external component structure of an embodiment of the present invention.
[0026] Figure 4 This is a schematic diagram of the contact component structure according to an embodiment of the present invention.
[0027] Figure 5 This is a schematic diagram of the resonant module structure according to an embodiment of the present invention.
[0028] Figure 6 This is an embodiment of the present invention. Figure 1 A magnified schematic diagram of the structure at point A in the middle.
[0029] Figure 7 This is an embodiment of the present invention. Figure 1 A magnified schematic diagram of the structure at point B in the middle.
[0030] Figure 8 This is an embodiment of the present invention. Figure 4 A magnified schematic diagram of the structure at point C.
[0031] List of reference numerals
[0032] 1. Mounting Components; 101. Mounting Plate; 102. Outer Groove; 103. Guide Strip; 2. Resonant Module; 201. Module Housing; 202. Mounting Hole; 203. Outer Groove Surface; 3. Snap-fit Components; 301. Snap-fit Block; 302. Outer Protrusion; 303. Fixing Rod; 304. Top Hole; 305. Positioning Pin; 4. Contact Components; 401. Swing Block; 402. Contact Groove; 403. Positioning Plate; 404. Outer Slot; 405. Inclined Plate; 5. Limiting Components; 501. Limiting Plate; 502. Contact Head; 503. Fastening Rod; 6. External Components; 601. External Connector; 602. Snap Connector; 603. External Wiring; 604. Snap-fit Groove; 605. Limiting Frame; 7. Contact Outer Plate; 8. Guide Groove. Detailed Implementation
[0033] To make the objectives, solutions, and advantages of the technical solutions of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings of specific embodiments of the present invention.
[0034] It should be understood that the structures, proportions, sizes, etc., illustrated in the accompanying drawings of this specification are merely for illustrative purposes to aid those skilled in the art and are not intended to limit the scope of the invention. Therefore, they have no substantial technical significance. Any modifications to the structure, changes in proportions, or adjustments to size, without affecting the effectiveness and purpose of the invention, should still fall within the scope of the technical content disclosed in this invention. Furthermore, the terms such as "upper," "lower," "left," "right," "middle," "top," "side," and "one" used in this specification are merely for clarity and are not intended to limit the scope of the invention. Changes or adjustments to their relative relationships, without substantially altering the technical content, are also considered within the scope of the invention.
[0035] Example: Please refer to Figures 1 to 8 As shown:
[0036] This invention provides a quick-disassembly structure for a microwave resonator, including a mounting assembly 1; a mounting plate 101 is provided on the mounting assembly 1, and a snap-fit assembly 3 is provided at the front and rear edges of the upper end face; a resonant module 2 is mounted on the mounting assembly 1 by sliding snap-fitting the mounting plate 101 and the snap-fit assembly 3; a contact outer plate 7 is provided on the left side of the resonant module 2, and the contact outer plate 7 is in contact with a contact assembly 4; the contact assembly 4 is installed on the left side of the mounting assembly 1; a limit assembly 5 is hingedly installed on the left side of the contact assembly 4; and an external assembly 6 is connected to the right end of the resonant module 2.
[0037] The mounting plate 101 of the mounting assembly 1 has a rectangular plate structure. Protruding plates are provided at both ends and the front and rear positions of the mounting plate 101. External grooves 102 are provided on the protruding plates of the mounting plate 101, and the external grooves 102 are designed to face outwards. To facilitate the installation of the mounting assembly 1 in the designated position, and excluding welding, protruding plates are provided at the front and rear edges of the mounting plate 101, and external grooves 102 are provided at these protruding plates. This allows for the use of bolts and other components to fix the mounting assembly 1. The external grooves 102 are designed to face outwards. The structure further enhances the installation method by adding an outer slot 102. The bottom surface of the resonant module 2 is provided with four sets of guide slots 8, and the upper end plate of the mounting plate 101 is provided with four sets of guide strips 103. The positions of the guide strips 103 correspond to the guide slots 8 of the resonant module 2. By providing four sets of guide strips 103 on the upper end plate of the mounting plate 101 and making the four sets of guide strips 103 correspond to the positions of the guide slots 8, the resonant module 2 can achieve better correspondence with the guide slots 8 through the guide strips 103 during installation, and at the same time, it is more convenient to slide the resonant module 2 on the mounting assembly 1.
[0038] The resonant module 2 has a slot at the corner of its outer casing 201. The lower end of the slot is set as a mounting hole 202. The front and rear outer walls of the outer casing 201 have outer groove surfaces 203, which are positioned at the upper part. The slot at the corner of the outer casing 201 is mainly designed to facilitate the installation of bolts at the mounting hole 202, so that the outer casing 201 can be fixed by the bolts at the mounting hole 202. The outer groove surfaces 203 at the front and rear ends of the outer casing 201 facilitate the subsequent disassembly and assembly of the components at the snap-fit component 3, and also facilitate the manual sliding disassembly and assembly of the resonant module 2.
[0039] The snap-fit component 3 has snap-fit blocks 301 positioned at the front and rear edges of the mounting component 1. A gap is provided in the middle of the snap-fit block 301. An outer protrusion 302 is snap-fitted into the snap-fit block 301 and positioned at the bottom edge of the resonant module 2. The outer protrusion 302 is fixed to the bottom edge of the resonant module 2. Since the outer protrusion 302 corresponds to the snap-fit block 301, and the snap-fit block 301 is divided into two groups by a middle gap, the outer protrusion 302 is also set into two groups. The two groups of snap-fit blocks 301 and outer protrusions 302 on the same side allow the resonant module 2 to slide on the mounting component 1 without having to slide a long distance. A groove is provided at the outer end of the outer protrusion 302, and a groove is provided at the upper end of the snap-fit block 301. A top hole 304 is provided, and a positioning pin 305 is inserted and installed at the position of the top hole 304 of the snap-fit block 301. After the resonant module 2 is slidably installed, each set of outer protrusions 302 will be snapped into the snap-fit block 301, and the groove of the outer protrusion 302 will be aligned with the position of the top hole 304. At this time, the positioning pin 305 is inserted into the position of the top hole 304, which can fix the position of the snap-fit block 301 and the outer protrusion 302, and also achieve the function of better fixing the resonant module 2 to the mounting component 1. The two sets of positioning pins 305 are connected by a fixing rod 303. Connecting the two sets of positioning pins 305 through the fixing rod 303 makes it convenient to directly realize the insertion and removal of the positioning pins 305 through the fixing rod 303.
[0040] The swing block 401 of the contact assembly 4 has a rectangular structure. The swing block 401 is rotatably mounted on the left side of the mounting assembly 1. A contact groove 402 is provided on the right side of the swing block 401 facing the center. The contact groove 402 corresponds to the groove on the outer contact plate 7. By aligning the contact groove 402 on the swing block 401 with the groove on the outer contact plate 7, the resonant module 2 is able to slide into place, allowing the groove on the outer contact plate 7 to directly engage with the swing block 401. This allows the contact groove 402 to fix the outer contact plate 7, thus fixing the position of the resonant module 2 by the contact assembly 4. A positioning piece 403 is provided at the top of the contact groove 402 on the swing block 401. Since the contact groove 402 is designed to engage with the groove on the outer contact plate 7, the positioning piece 403 at the top of the contact groove 402 on the swing block 401 assists in engaging the contact groove 402 with the outer contact plate 7. The swing block 401 has an outer slot 404 on its left side facing the center, which corresponds to the limiting component 5. The outer slot 404 and the limiting component 5 are positioned to facilitate manual pressing of the limiting component 5, allowing the limiting component 5 to limit the contact component 4. A ramp 405 is located on the right side of the swing block 401, with a leaf spring between it and the swing block 401. A blocking block is located on the left side of the swing block 401. The ramp 405 facilitates the installation of the leaf spring between the ramp 405 and the swing block 401, ensuring the swing block 401 is always pressed towards the center. The blocking block at the outer end of the swing block 401 limits its swing position.
[0041] The limiting plate 501 of the limiting component 5 is a rectangular plate structure. The limiting plate 501 is hinged to the left edge of the mounting component 1. A fastening rod 503 is rotatably installed at the middle position of the end of the limiting plate 501. The fastening rod 503 is screwed onto the mounting component 1. Since the limiting plate 501 needs to be fixed at the position of the contact component 4 during use, the fastening rod 503 is rotatably installed at the middle position of the end of the limiting plate 501. When it is necessary to fix the limiting plate 501, the fastening rod 503 can be directly screwed onto the mounting component 1 to achieve the fixing function of the limiting component 5. The front and rear end faces of the limiting plate 501 are provided with contact heads 502. The contact heads 502 correspond to the outer slots 404 of the contact component 4. By setting the contact heads 502 at the front and rear end positions of the limiting plate 501 and making the contact heads 502 correspond to the outer slots 404, the limiting component 5 can fix the contact component 4 when the limiting plate 501 is snapped and pressed at the position of the contact component 4.
[0042] The external connector 601 of the external component 6 is located on the right side of the resonant module 2. A snap-fit connector 602 is provided on the outer wall of the external connector 601 near its root. An external wiring 603 is sleeved onto the outer end of the external connector 601. The head of the external connector 601 has a snap-fit groove 604, which is inclined. The snap-fit connector 602 snaps into the snap-fit groove 604. The external wiring 603 is sleeved onto the external connector 601. The inclined snap-fit groove 604 allows the snap-fit connector 602 to slide within the groove, achieving a stable connection and fixation between the groove 604 and the snap-fit connector 602. This allows the external wiring 603 to be sleeved onto the external connector 601. At 03, align the snap-fit slot 604 with the snap-fit connector 602, and then rotate the external wiring 603 to achieve a stable fixation of the external wiring 603. A limit bracket 605 is snapped onto the outer side of the external wiring 603, and a support block is provided at the bottom of the limit bracket 605. First, the limit bracket 605 snapped onto the outer end of the external wiring 603 can achieve a circumferential fixation between the limit bracket 605 and the external wiring 603. Then, the support block at the bottom of the limit bracket 605 achieves a circumferential fixation through the support block, thus achieving the circumferential fixation effect of the limit bracket 605 on the external wiring 603, and realizing a stable connection between the external wiring 603 and the external connector 601.
[0043] The specific usage and function of this embodiment: In this invention, four sets of guide strips 103 are provided on the upper surface of the mounting plate 101, and the positions of the four sets of guide strips 103 correspond to the guide grooves 8. This allows the resonant module 2 to achieve better correspondence with the guide strips 103 and guide grooves 8 during installation, and also makes it easier to slide the resonant module 2 on the mounting assembly 1. After the resonant module 2 is slidably installed, each set of outer protrusions 302 will be correspondingly engaged with the snap-fit blocks 301, and the slots of the outer protrusions 302 will correspond to the positions of the top holes 304. At this time, the positioning pins 305 are inserted into the positions of the top holes 304, which can fix the positions of the snap-fit blocks 301 and the outer protrusions 302, and also realize the function of... The resonant module 2 is better fixed to the mounting component 1. The two sets of positioning pins 305 are connected by the fixing rod 303, which allows for easy insertion and removal of the positioning pins 305 directly through the fixing rod 303. The contact groove 402 on the swing block 401 is set to correspond to the concave and convex grooves of the contact outer plate 7. This allows the concave and convex grooves of the contact outer plate 7 to directly engage with the swing block 401 when the resonant module 2 is slidably inserted into place. The contact groove 402 fixes the contact outer plate 7, thus achieving the positional fixation of the resonant module 2 by the contact component 4. An outer slot 404 is provided on the left side of the swing block 401 facing the middle, and the outer slot 404 corresponds to the position of the limiting component 5, making it easy to manually press the limiting component 5 into place. The function of the limiting component 5 is to limit the contact component 4. Since the limiting plate 501 needs to be fixed at the position of the contact component 4, the middle of the end of the limiting plate 501 is rotated to install the fastening rod 503. When the limiting plate 501 needs to be fixed, the fastening rod 503 is simply screwed onto the mounting component 1 to achieve the fixing function of the limiting component 5. Contact heads 502 are set at the front and rear ends of the limiting plate 501, aligning with the outer slot 404. This allows the limiting component 5 to fix the contact component 4 when the limiting plate 501 is snapped into place. The external wiring 603 is configured to be sleeved onto the external connector 601, and the snap-fit groove 604 is angled, allowing the snap-fit connector 601 to... 2. The connector can slide within the snap-fit groove 604, achieving a stable connection and fixation between the snap-fit groove 604 and the snap-fit connector 602. Thus, when the external wiring 603 is installed on the external connector 601, the snap-fit groove 604 aligns with the snap-fit connector 602, and the external wiring 603 is rotated to achieve a stable fixation. First, the limiting frame 605 snapped onto the outer end of the external wiring 603 can achieve a circumferential fixation between the limiting frame 605 and the external wiring 603. A support block is set at the bottom of the limiting frame 605, achieving circumferential fixation of the limiting frame 605 through the support block, thus achieving the circumferential fixation effect of the limiting frame 605 on the external wiring 603, and realizing a stable connection between the external wiring 603 and the external connector 601.
Claims
1. A quick-disassembly structure for a microwave resonator, characterized in that, include: Mounting component (1); Mounting plate (101) is provided on mounting component (1), and snap-fit component (3) is provided at the front and rear edges of the upper end face. Resonant module (2) is mounted on mounting component (1) through mounting plate (101) and snap-fit component (3). Contact outer plate (7) is provided on the left side of resonant module (2). Contact outer plate (7) is in contact with contact component (4). Contact component (4) is installed on the left side of mounting component (1). Limiting component (5) is hinged on the left side of contact component (4). External component (6) is connected at the right end of resonant module (2).
2. The microwave resonator quick-disassembly structure as described in claim 1, characterized in that: The mounting plate (101) of the mounting assembly (1) has a rectangular plate structure. The mounting plate (101) has protruding plates at both ends and the front and rear positions. The protruding plates of the mounting plate (101) have external slots (102). The external slots (102) are designed to be slotted outward. In order to allow the mounting assembly (1) to be installed in the designated position, the bottom surface of the resonant module (2) is provided with four sets of guide grooves (8), and the upper surface of the mounting plate (101) is provided with four sets of guide strips (103). The positions of the guide strips (103) correspond to the guide grooves (8) of the resonant module (2).
3. The microwave resonator quick-disassembly structure as described in claim 1, characterized in that: The resonant module (2) has a slot at the corner of the module shell (201), the lower end of the slot of the module shell (201) is set as a module mounting hole (202), and the front and rear outer walls of the module shell (201) are provided with an outer groove surface (203), which is set at the upper position.
4. The microwave resonator quick-disassembly structure as described in claim 1, characterized in that: The snap-fit block (301) of the snap-fit assembly (3) is located at the front and rear edges of the mounting assembly (1). A gap space is provided in the middle of the snap-fit block (301). An external protrusion (302) is snap-fitted into the snap-fit block (301). The external protrusion (302) is located at the bottom edge of the resonant module (2).
5. The microwave resonator quick-disassembly structure as described in claim 4, characterized in that: The outer end of the outer protrusion (302) is provided with a groove, and the upper end of the snap-fit block (301) is provided with a top hole (304). A positioning pin (305) is inserted and installed at the top hole (304) of the snap-fit block (301), and a fixing rod (303) connects the two sets of positioning pins (305).
6. The microwave resonator quick-disassembly structure as described in claim 1, characterized in that: The swing block (401) of the contact component (4) has a rectangular block structure. The swing block (401) is rotatably installed on the left side of the mounting component (1). A contact groove (402) is provided on the right side of the swing block (401) facing the middle. The contact groove (402) corresponds to the groove of the outer plate (7). A positioning piece (403) is provided at the top of the contact groove (402) of the swing block (401).
7. The microwave resonator quick-disassembly structure as described in claim 6, characterized in that: An outer slot (404) is provided on the left side of the swing block (401) facing the middle. The outer slot (404) corresponds to the limiting component (5). An inclined plate (405) is provided at the right end of the swing block (401) near the outer position. A leaf spring is installed between the inclined plate (405) and the swing block (401). A blocking block is provided at the left end of the swing block (401) near the outer position.
8. The microwave resonator quick-disassembly structure as described in claim 1, characterized in that: The limiting plate (501) of the limiting component (5) has a rectangular plate structure. The limiting plate (501) is hinged to the left edge of the mounting component (1). A fastening rod (503) is rotatably installed at the middle position of the end of the limiting plate (501). The fastening rod (503) is screwed onto the mounting component (1). The front and rear end faces of the limiting plate (501) are provided with contact heads (502). The contact heads (502) correspond to the outer slot (404) of the contact component (4).
9. The microwave resonator quick-disassembly structure as described in claim 1, characterized in that: The external connector (601) of the external component (6) is located on the right side of the resonant module (2). A snap connector (602) is provided on the outer wall of the external connector (601) near the root. An external wire (603) is also installed at the outer end of the external connector (601). A snap groove (604) is provided at the head of the external connector (601). The snap groove (604) has an inclined structure. The snap connector (602) is snapped into the snap groove (604). A limit frame (605) is snapped into the outer side of the external wire (603). A support block is provided at the bottom of the limit frame (605).
Citation Information
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