An adjustable low-noise amplifier
By designing a combined structure of a housing, an upper cover and mounting components in a low-noise amplifier, the problem of inconvenient disassembly is solved, the circuit board can be quickly disassembled, and the maintenance time is reduced.
Patent Information
- Application Number
- CN202411992305.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2025-09-09
- Estimated Expiration
- 2044-12-31
AI Technical Summary
The existing adjustable low noise amplifier is inconvenient to disassemble during maintenance, which results in prolonged maintenance time.
A structure including a shell, an upper cover, a circuit board, a positioning shaft, a buffer block and a mounting assembly is designed. The upper cover and the circuit board can be quickly disassembled and fixed by using a combination of locking parts, pressing parts, protective parts, locking parts and pushing parts.
By setting up the mounting components, the upper cover and circuit board can be quickly disassembled, reducing maintenance time.
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Figure CN119766159B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of amplifiers, in particular to an adjustable low-noise amplifier. Background Art
[0002] Low noise amplifier, an amplifier with very low noise figure, is generally used as a high-frequency or intermediate-frequency preamplifier of various radio receivers, and an amplifying circuit of high-sensitivity electronic detection equipment. When amplifying weak signals, the noise of the amplifier itself may seriously interfere with the signal. Therefore, it is hoped to reduce this noise to improve the output signal-to-noise ratio. The adjustable low noise amplifier can adjust certain parameters of itself according to different working conditions and needs. The adjustable low noise amplifier can adjust its own amplification factor according to the strength of the input signal and the requirements of the subsequent processing circuit to provide appropriate signal gain. For example, in a communication system, when the received signal is strong, the amplifier gain can be reduced to prevent signal saturation and distortion; when the received signal is weak, the gain is increased to enhance the signal strength and ensure that the signal can be effectively processed by the subsequent circuit. The upper cover and circuit board of the amplifier are mostly fixed by multiple bolts, which makes it inconvenient to disassemble the circuit board when it needs to be repaired, thereby extending the repair time. Summary of the Invention
[0003] In view of the above problems existing in the existing adjustable low noise amplifier, the present invention is proposed.
[0004] Therefore, the problem to be solved by the present invention is that the disassembly of the circuit board is not convenient enough when repairing the circuit board.
[0005] In order to solve the above technical problems, the present invention provides the following technical solutions: an adjustable low-noise amplifier, comprising an amplifier assembly, including a shell, an upper cover is provided on the top of the shell, a circuit board is provided inside the shell, an adjustment signal amplifier and a power supply module are provided on the top of the circuit board, a positioning shaft is fixed to the bottom wall of the shell, a buffer block is fixed to the outside of the positioning shaft, the circuit board is sleeved on the outside of the positioning shaft and is located on the top of the buffer block, and connection ports are provided at both ends of the shell.
[0006] As a preferred solution of the adjustable low-noise amplifier described in the present invention, it further includes a mounting assembly, which is arranged on the amplifier assembly and includes a locking member. The locking member includes an extrusion rod, which is located at the bottom of the upper cover. A positioning frame is fixed to the inner wall of the outer shell. The extrusion rod cooperates with the positioning frame. A positioning sleeve is fixed to the bottom of the upper cover. An extrusion block is arranged in the positioning sleeve. A threaded rod is rotatably connected to the positioning sleeve, and the threaded rod is threadedly connected to the inner thread of the extrusion block.
[0007] As a preferred solution of the adjustable low-noise amplifier described in the present invention, the mounting assembly further comprises a pressing member, the pressing member comprises an extrusion sleeve, the extrusion sleeve is located below the upper cover and is sleeved on the outside of the positioning shaft, a buffer sleeve is fixed to the bottom of the extrusion sleeve, the bottom of the upper cover is rotatably connected to a rotating column through a bearing, a spiral groove is provided on the rotating column, a fixed shaft is fixed in the extrusion sleeve, and the fixed shaft slides in the spiral groove.
[0008] As a preferred solution of the adjustable low-noise amplifier described in the present invention, a rotating rod is fixed to one side of the rotating column, a fixed rod is fixed to one side of the extrusion rod, a connecting shaft is fixed to the end of the fixed rod, a sliding groove is provided on the rotating rod, and the connecting shaft slides in the sliding groove.
[0009] As a preferred solution of the adjustable low-noise amplifier described in the present invention, wherein: the mounting assembly also includes a protective member, the protective member includes a protective plate, the protective plate is located on one side of the connection port, a positioning rod is fixed to the top of the protective plate, a stabilizing rod is fixed to one side of the outer shell, a positioning column is fixed to the top of the positioning rod, the positioning column is movably connected to the inside of the stabilizing rod, a torsion spring is sleeved on the outside of the positioning column, and the two ends of the torsion spring are respectively fixed to the positioning column and the stabilizing rod.
[0010] As a preferred solution of the adjustable low-noise amplifier described in the present invention, the mounting assembly further comprises a locking member, the locking member comprises a locking block, the locking block is plugged into one side of the positioning frame, a locking hole corresponding to the locking block is provided on the extrusion rod, a connecting block is fixed to one side of the locking block, a first spring is fixed to one side of the connecting block, and the other end of the first spring is fixed to the positioning frame.
[0011] As a preferred solution of the adjustable low-noise amplifier described in the present invention, the mounting assembly further comprises a pushing member, the pushing member comprises a push rod, the push rod is inserted into the housing, and the end portion is in contact with the locking block, a moving rod is fixed to one side of the push rod, a rotating block is fixed to the outside of the positioning column, a stabilizing column is fixed to one side of the housing, the stabilizing column is movably connected to the inside of the push rod, a second spring is sleeved on the outside of the stabilizing column, and both ends of the second spring are respectively fixed to the push rod and the housing.
[0012] As a preferred solution of the adjustable low noise amplifier of the present invention, a mounting block is fixed to the bottom of the extrusion rod, a third spring is fixed to one side of the mounting block, and the other end of the third spring is fixed to the inner wall of the positioning sleeve.
[0013] As a preferred solution of the adjustable low-noise amplifier of the present invention, a positioning block is fixed on one side of the extrusion sleeve, a fixing column is fixed on the bottom of the upper cover, and the fixing column is movably connected to the positioning block.
[0014] As a preferred solution of the adjustable low-noise amplifier of the present invention, a stabilizing frame is fixed to the bottom of the upper cover, and the extrusion rod is movably connected to the inside of the stabilizing frame.
[0015] The beneficial effects of the present invention are as follows: the upper cover and the circuit board are fixed by setting the mounting assembly, and when disassembling, the upper cover and the circuit board can be unlocked at the same time, so that the circuit board can be quickly disassembled, thereby reducing maintenance time. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following briefly introduces the drawings required for describing the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. Those skilled in the art can also derive other drawings based on these drawings without inventive effort. Among them:
[0017] Figure 1 This is the overall diagram of the adjustable low-noise amplifier.
[0018] Figure 2 This is a top view of the casing of the adjustable low-noise amplifier.
[0019] Figure 3 This is a structural diagram of the connection ports of an adjustable low-noise amplifier.
[0020] Figure 4 For adjustable low noise amplifier Figure 3 A partial enlarged structural diagram of point A in the middle.
[0021] Figure 5 For adjustable low noise amplifier Figure 3 A partial enlarged structural diagram of point B in the middle.
[0022] Figure 6 This is a partial cross-sectional structural diagram of the housing of the adjustable low-noise amplifier.
[0023] Figure 7 This is a structural diagram of the compression parts of the adjustable low-noise amplifier.
[0024] Figure 8 This is a cross-sectional diagram of the extruded sleeve of the adjustable low-noise amplifier.
[0025] Figure 9 This is a cross-sectional structural diagram of the positioning frame of the adjustable low-noise amplifier. DETAILED DESCRIPTION
[0026] In order to make the above-mentioned objects, features and advantages of the present invention more obvious and easy to understand, the specific embodiments of the present invention are described in detail below with reference to the accompanying drawings.
[0027] In the following description, many specific details are set forth to facilitate a full understanding of the present invention. However, the present invention may also be implemented in other ways different from those described herein. Those skilled in the art may make similar generalizations without violating the connotation of the present invention. Therefore, the present invention is not limited to the specific embodiments disclosed below.
[0028] Secondly, the term "one embodiment" or "embodiment" herein refers to a specific feature, structure, or characteristic that may be included in at least one implementation of the present invention. The phrase "in one embodiment" appearing in various places throughout this specification does not necessarily refer to the same embodiment, nor does it refer to a separate or selective embodiment that is mutually exclusive of other embodiments. Example
[0029] Reference Figure 1-Figure 3 and Figure 6 , which is the first embodiment of the present invention, provides an adjustable low-noise amplifier. The adjustable low-noise amplifier includes an amplifier assembly 100, including a housing 101, a top cover 102 is provided on the top of the housing 101, a circuit board 103 is provided inside the housing 101, an adjustment signal amplifier 104 and a power supply module 105 are provided on the top of the circuit board 103, a positioning shaft 106 is fixed to the bottom wall of the housing 101, a buffer block 107 is fixed to the outside of the positioning shaft 106, the circuit board 103 is sleeved on the outside of the positioning shaft 106 and is located on the top of the buffer block 107, and connection ports 108 are provided at both ends of the housing 101.
[0030] The housing 101 is used to install the circuit board 103, the upper cover 102 is used to close the housing 101, and the four corners of the top of the housing 101 are fixed with mounting shafts for positioning the upper cover 102. The adjustment signal amplifier 104 is responsible for amplifying the input signal. Taking BJT as an example, when there is a slight input current change between the base and the emitter, the collector current will produce a large change, thereby achieving signal amplitude amplification. Different types of adjustment signal amplifiers 104 have different performance characteristics, such as gain, noise figure, input and output impedance, etc. These characteristics will affect the performance of the entire amplifier. The power supply module 105 is used for power supply, and the connection port 108 is divided into an input port and an output port, which respectively connect the external signal and output the amplified signal. The above are all existing technologies, and this solution will not be elaborated in detail, and those skilled in the art can clearly understand the working principle.
[0031] There are four positioning shafts 106, which are located at the four corners inside the shell 101. The positioning shafts 106 are used to position the circuit board 103 to prevent the circuit board 103 from shifting during installation. The buffer block 107 supports the circuit board 103. At the same time, when the shell 101 is vibrated, the circuit board 103 can also be buffered to prevent the circuit board 103 from being damaged by impact force. Example
[0032] Refer to the figure Figure 3-Figure 9 , which is the second embodiment of the present invention, and is based on the previous embodiment.
[0033] Specifically, it also includes an installation component 200, which is arranged on the amplifier component 100, including a locking member 201, and the locking member 201 includes an extrusion rod 201a, the extrusion rod 201a is located at the bottom of the upper cover 102, and a positioning frame 201b is fixed to the inner wall of the outer shell 101. The extrusion rod 201a cooperates with the positioning frame 201b, and a positioning sleeve 201c is fixed to the bottom of the upper cover 102. An extrusion block 201d is arranged in the positioning sleeve 201c, and a threaded rod 201e is rotatably connected in the positioning sleeve 201c, and the threaded rod 201e is threadedly connected to the extrusion block 201d.
[0034] There are two extrusion rods 201a and two positioning frames 201b, which are located on both sides of the bottom of the upper cover 102 respectively. The inner wall of the positioning frame 201b is inclined, and the two sides of the bottom of the extrusion block 201d are inclined. A limiting column is fixed in the positioning sleeve 201c, and the limiting column is movably connected to the extrusion block 201d to prevent the extrusion block 201d from rotating when moving.
[0035] When the upper cover 102 is fitted with the top of the outer shell 101, the threaded rod 201e is rotated to drive the extrusion block 201d to move downward, so that the oblique surfaces on both sides of the bottom of the extrusion block 201d squeeze the extrusion rod 201a, thereby pushing the extrusion rod 201a to move, so that the other end of the extrusion rod 201a moves toward the inside of the positioning frame 201b and squeezes the oblique surface of the inner wall of the positioning frame 201b. Through the cooperation of the two, the upper cover 102 can be moved downward and the upper cover 102 can be tightly fitted with the outer shell 101, thereby completing the fixation of the upper cover 102.
[0036] When the upper cover 102 needs to be disassembled, the threaded rod 201e only needs to be rotated in the opposite direction to move the extrusion block 201d upward and separate from the extrusion rod 201a, and at the same time separate the extrusion rod 201a from the positioning frame 201b to release the lock on the upper cover 102, so that the upper cover 102 can be disassembled.
[0037] Specifically, the installation assembly 200 also includes a clamping member 202, which includes an extrusion sleeve 202a. The extrusion sleeve 202a is located below the upper cover 102 and is sleeved on the outside of the positioning shaft 106. A buffer sleeve 202b is fixed to the bottom of the extrusion sleeve 202a. The bottom of the upper cover 102 is rotatably connected to a rotating column 202c through a bearing. A spiral groove 202c-1 is provided on the rotating column 202c. A fixed shaft 202d is fixed in the extrusion sleeve 202a, and the fixed shaft 202d slides in the spiral groove 202c-1.
[0038] There are four groups of pressing parts 202, which are located at the four corners of the bottom of the upper cover 102. When the upper cover 102 is fitted with the outer shell 101, the extrusion sleeve 202a will be sleeved on the outside of the positioning shaft 106. When the rotating column 202c rotates, the fixed shaft 202d will slide in the spiral groove 202c-1. The cooperation between the two drives the extrusion sleeve 202a to move downward, so that the extrusion sleeve 202a can drive the buffer sleeve 202b to press the circuit board 103 downward, thereby completing the fixation of the circuit board 103. The buffer sleeve 202b cushions the circuit board 103, which can further prevent the circuit board 103 from being damaged when it is subjected to impact force.
[0039] Specifically, a rotating rod 202e is fixed to one side of the rotating column 202c, a fixed rod 202f is fixed to one side of the extrusion rod 201a, a connecting shaft 202g is fixed to the end of the fixed rod 202f, a sliding groove 202e-1 is opened on the rotating rod 202e, and the connecting shaft 202g slides in the sliding groove 202e-1.
[0040] When the extrusion rod 201a moves, it drives the fixed rod 202f to move. The fixed rod 202f drives the rotating rod 202e to rotate through the cooperation of the connecting shaft 202g and the sliding groove 202e-1, so that the rotating rod 202e drives the rotating column 202c to rotate.
[0041] Specifically, the installation assembly 200 also includes a protective part 203, which includes a protective plate 203a. The protective plate 203a is located on one side of the connection port 108. A positioning rod 203b is fixed to the top of the protective plate 203a, and a stabilizing rod 203c is fixed to one side of the outer shell 101. A positioning column 203e is fixed to the top of the positioning rod 203b. The positioning column 203e is movably connected to the inside of the stabilizing rod 203c. A torsion spring 203d is provided on the outside of the positioning column 203e, and the two ends of the torsion spring 203d are respectively fixed to the positioning column 203e and the stabilizing rod 203c.
[0042] There are two protective members 203 , corresponding to the two connection ports 108 respectively. When the connection port 108 is not connected to the outside world, the connection port 108 is protected by the protective plate 203 a to prevent dust from entering the connection port 108 during placement.
[0043] The positioning rod 203b is connected to the stabilizing rod 203c by the cooperation of the positioning column 203e, so that the positioning rod 203b can rotate at the end of the stabilizing rod 203c, so that the protective plate 203a can be rotated upward when the connection port 108 is used.
[0044] A groove is provided on the side of the positioning rod 203b close to the torsion spring 203d, one end of the torsion spring 203d extends into the groove and is fixed to the stabilizing rod 203c, and the end of the positioning column 203e away from the torsion spring 203d is fixed to the positioning rod 203b. The torsion spring 203d applies a downward torsional force to the positioning column 203e, and the positioning rod 203b and the protective plate 203a are driven downward by the positioning column 203e, so that the protective plate 203a can always fit with the connection port 108 and protect the connection port 108.
[0045] Specifically, the installation assembly 200 also includes a locking member 204, which includes a locking block 204a. The locking block 204a is inserted into one side of the positioning frame 201b, and a locking hole 201a-1 corresponding to the locking block 204a is opened on the extrusion rod 201a. A connecting block 204b is fixed to one side of the locking block 204a, and a first spring 204c is fixed to one side of the connecting block 204b. The other end of the first spring 204c is fixed to the positioning frame 201b.
[0046] The number of locking parts 204 corresponds to the two extrusion rods 201a. When the locking block 204a is engaged with the locking hole 201a-1, the extrusion rod 201a is locked by the cooperation of the two, so that the extrusion rod 201a cannot be separated from the positioning frame 201b, thereby avoiding the situation where the extrusion rod 201a is separated from the positioning frame 201b when it is shaken by external force during use, thereby causing the upper cover 102 to fall off.
[0047] The first spring 204c is used to apply a thrust to the connecting block 204b and drive the locking block 204a to move via the connecting block 204b, so that the locking block 204a will not engage with the locking hole 201a-1 when there is no thrust. Example
[0048] Reference Figures 1-9 , which is the third embodiment of the present invention, and is based on the first two embodiments.
[0049] Specifically, the installation assembly 200 also includes a pushing member 205, which includes a push rod 205a. The push rod 205a is inserted into the shell 101, and the end is in contact with the locking block 204a. A moving rod 205b is fixed to one side of the push rod 205a, and a rotating block 205c is fixed to the outside of the positioning column 203e. A stabilizing column 205d is fixed to one side of the shell 101. The stabilizing column 205d is movably connected to the inside of the push rod 205a, and a second spring 205e is sleeved on the outside of the stabilizing column 205d. The two ends of the second spring 205e are respectively fixed to the push rod 205a and the shell 101.
[0050] One side of the locking block 204a is inclined, and the end of the push rod 205a located outside the shell 101 is L-shaped. The moving rod 205b is movably connected to the top of the stabilizing rod 203c. A rotating groove is provided at the end of the stabilizing rod 203c, and the rotating block 205c is movably connected to the rotating groove.
[0051] When the protective plate 203a is opened upward, the positioning column 203e will drive the rotating block 205c to rotate, so that the rotating block 205c pushes the moving rod 205b to move, and the moving rod 205b drives the push rod 205a to squeeze the inclined surface of the locking block 204a, so that the locking block 204a can be engaged with the lock hole 201a-1. In this way, during use, the upper cover 102 cannot be separated from the outer shell 101, and the accidental opening of the two when subjected to external force vibration can be avoided. At the same time, it can avoid the erroneous operation of disassembling the circuit board 103 without disconnecting the external connection when repairing the circuit board 103.
[0052] Specifically, a mounting block 201a-3 is fixed to the bottom of the extrusion rod 201a, a third spring 201a-2 is fixed to one side of the mounting block 201a-3, and the other end of the third spring 201a-2 is fixed to the inner wall of the positioning sleeve 201c.
[0053] When the squeezing block 201d is separated from the squeezing rod 201a, the third spring 201a-2 applies a thrust to the mounting block 201a-3, thereby driving the squeezing rod 201a to separate from the positioning frame 201b through the mounting block 201a-3.
[0054] Specifically, a positioning block 202a-1 is fixed to one side of the extrusion sleeve 202a, and a fixing column 202a-2 is fixed to the bottom of the upper cover 102. The fixing column 202a-2 is movably connected to the positioning block 202a-1.
[0055] The cooperation between the positioning block 202a-1 and the fixing column 202a-2 prevents the extrusion sleeve 202a from rotating when moving.
[0056] Specifically, a stabilizing frame 201f is fixed to the bottom of the upper cover 102, and the extrusion rod 201a is movably connected to the inside of the stabilizing frame 201f.
[0057] The stabilizing frame 201f is used to position the extrusion rod 201a to prevent the extrusion rod 201a from deviating during movement.
[0058] During use, after the upper cover 102 is fitted with the top of the outer shell 101, the threaded rod 201e is rotated to drive the extrusion block 201d to move downward, so that the oblique surfaces on both sides of the bottom of the extrusion block 201d squeeze the extrusion rod 201a, thereby pushing the extrusion rod 201a to move, so that the other end of the extrusion rod 201a moves toward the inside of the positioning frame 201b and squeezes the oblique surface of the inner wall of the positioning frame 201b. Through the cooperation of the two, the upper cover 102 can be moved downward and the upper cover 102 can be tightly fitted with the outer shell 101, thereby completing the fixation of the upper cover 102.
[0059] When the extrusion rod 201a moves, it will drive the fixed rod 202f to move. The fixed rod 202f drives the rotating rod 202e to rotate through the cooperation of the connecting shaft 202g and the slide groove 202e-1, so that the rotating rod 202e can drive the rotating column 202c to rotate. When the rotating column 202c rotates, it will cause the fixed shaft 202d to slide in the spiral groove 202c-1. The cooperation between the two drives the extrusion sleeve 202a to move downward, so that the extrusion sleeve 202a can drive the buffer sleeve 202b to press the circuit board 103 downward, thereby completing the fixation of the circuit board 103, and the circuit board 103 is buffered by the buffer sleeve 202b, which can further prevent the circuit board 103 from being damaged when it is subjected to impact force.
[0060] When using the connection port 108, the protective plate 203a is rotated upward to open it, so that the connection port 108 can be exposed to the outside. At the same time, when the protective plate 203a is opened upward, the rotating block 205c will be driven to rotate through the positioning column 203e, so that the rotating block 205c pushes the moving rod 205b to move, and the moving rod 205b drives the push rod 205a to squeeze the inclined surface of the locking block 204a, so that the locking block 204a can be engaged with the lock hole 201a-1. In this way, the upper cover 102 cannot be separated from the outer shell 101 during use, and the accidental opening of the two when subjected to external force vibration can be avoided. At the same time, the erroneous operation of disassembling the circuit board 103 without disconnecting the external connection can be avoided when repairing the circuit board 103.
[0061] When the circuit board 103 needs to be repaired and the upper cover 102 needs to be disassembled, the connection port 108 needs to be disconnected from the external connection first. At this time, the protective plate 203a will be closed downward, and the rotating block 205c will be separated from the moving rod 205b. At this time, the second spring 205e applies a thrust to the push rod 205a to separate the push rod 205a from the locking block 204a, and the first spring 204c pushes the connecting block 204b and the locking block 204a to move, so that the locking block 204a is separated from the lock hole 201a-1. At this time, the threaded rod 201e can be rotated in the opposite direction to move the extrusion block 201d upward and separate from the extrusion rod 201a. At the same time, the extrusion rod 201a is separated from the positioning frame 201b to release the lock on the upper cover 102, so that the upper cover 102 can be disassembled.
[0062] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the present invention may be modified or replaced by equivalents without departing from the spirit and scope of the technical solutions of the present invention, which should all be included in the scope of the claims of the present invention.
Claims
1. An adjustable low-noise amplifier, characterized in that: include, An amplifier assembly (100) comprises a housing (101), wherein a top cover (102) is provided on the top of the housing (101), a circuit board (103) is provided inside the housing (101), a regulating signal amplifier (104) and a power supply module (105) are provided on the top of the circuit board (103), a positioning shaft (106) is fixed to the inner bottom wall of the housing (101), a buffer block (107) is fixed to the outside of the positioning shaft (106), the circuit board (103) is sleeved on the outside of the positioning shaft (106) and is located on the top of the buffer block (107), and connection ports (108) are provided at both ends of the housing (101); It also includes a mounting assembly (200), which is arranged on the amplifier assembly (100) and includes a locking member (201). The locking member (201) includes an extrusion rod (201a), the extrusion rod (201a) is located at the bottom of the upper cover (102), a positioning frame (201b) is fixed to the inner wall of the shell (101), the extrusion rod (201a) cooperates with the positioning frame (201b), a positioning sleeve (201c) is fixed to the bottom of the upper cover (102), an extrusion block (201d) is arranged in the positioning sleeve (201c), a threaded rod (201e) is rotatably connected in the positioning sleeve (201c), and the threaded rod (201e) is internally threadedly connected to the extrusion block (201d); The mounting assembly (200) further includes a pressing member (202), the pressing member (202) including an extrusion sleeve (202a), the extrusion sleeve (202a) being located below the upper cover (102) and sleeved on the outside of the positioning shaft (106), a buffer sleeve (202b) being fixed to the bottom of the extrusion sleeve (202a), a rotating column (202c) being rotatably connected to the bottom of the upper cover (102) via a bearing, a spiral groove (202c-1) being provided on the rotating column (202c), a fixed shaft (202d) being fixed in the extrusion sleeve (202a), and the fixed shaft (202d) sliding in the spiral groove (202c-1); A rotating rod (202e) is fixed to one side of the rotating column (202c), a fixed rod (202f) is fixed to one side of the extrusion rod (201a), a connecting shaft (202g) is fixed to the end of the fixed rod (202f), a sliding groove (202e-1) is provided on the rotating rod (202e), and the connecting shaft (202g) slides in the sliding groove (202e-1).
2. The adjustable low noise amplifier according to claim 1, wherein: The mounting assembly (200) further includes a protective member (203), the protective member (203) including a protective plate (203a), the protective plate (203a) being located on one side of the connection port (108), a positioning rod (203b) being fixed to the top of the protective plate (203a), a stabilizing rod (203c) being fixed to one side of the housing (101), a positioning column (203e) being fixed to the top of the positioning rod (203b), the positioning column (203e) being movably connected to the inside of the stabilizing rod (203c), a torsion spring (203d) being sleeved on the outside of the positioning column (203e), and two ends of the torsion spring (203d) being fixed to the positioning column (203e) and the stabilizing rod (203c), respectively.
3. The adjustable low noise amplifier according to claim 2, wherein: The mounting assembly (200) further includes a locking member (204), the locking member (204) including a locking block (204a), the locking block (204a) being plugged into one side of the positioning frame (201b), the extrusion rod (201a) being provided with a locking hole (201a-1) corresponding to the locking block (204a), a connecting block (204b) being fixed to one side of the locking block (204a), a first spring (204c) being fixed to one side of the connecting block (204b), and the other end of the first spring (204c) being fixed to the positioning frame (201b).
4. The adjustable low noise amplifier according to claim 3, wherein: The installation assembly (200) further includes a push member (205), the push member (205) including a push rod (205a), the push rod (205a) being inserted into the housing (101), and the end of the push rod (205a) being in contact with the locking block (204a), a moving rod (205b) being fixed on one side of the push rod (205a), a rotating block (205c) being fixed on the outside of the positioning column (203e), a stabilizing column (205d) being fixed on one side of the housing (101), the stabilizing column (205d) being movably connected to the inside of the push rod (205a), a second spring (205e) being sleeved on the outside of the stabilizing column (205d), and two ends of the second spring (205e) being fixed to the push rod (205a) and the housing (101), respectively.
5. The adjustable low noise amplifier according to claim 4, wherein: A mounting block (201a-3) is fixed to the bottom of the extrusion rod (201a), a third spring (201a-2) is fixed to one side of the mounting block (201a-3), and the other end of the third spring (201a-2) is fixed to the inner wall of the positioning sleeve (201c).
6. The adjustable low noise amplifier according to claim 5, wherein: A positioning block (202a-1) is fixed to one side of the extrusion sleeve (202a), a fixing column (202a-2) is fixed to the bottom of the upper cover (102), and the fixing column (202a-2) is movably connected to the positioning block (202a-1).
7. The adjustable low noise amplifier according to claim 6, wherein: A stabilizing frame (201f) is fixed to the bottom of the upper cover (102), and the extrusion rod (201a) is movably connected to the inside of the stabilizing frame (201f).
Citation Information
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