CN218679042U - Frequency synthesizer receiver - Google Patents

Frequency synthesizer receiver Download PDF

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Publication number
CN218679042U
CN218679042U CN202222737340.5U CN202222737340U CN218679042U CN 218679042 U CN218679042 U CN 218679042U CN 202222737340 U CN202222737340 U CN 202222737340U CN 218679042 U CN218679042 U CN 218679042U
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China
Prior art keywords
module
frequency synthesizer
synthesizer receiver
fault
frequency
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CN202222737340.5U
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Chinese (zh)
Inventor
梁海兴
徐杰
朱承昆
吴永涛
郑梦远
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Nanjing Yubao Technology Co ltd
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Nanjing Yubao Technology Co ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y04INFORMATION OR COMMUNICATION TECHNOLOGIES HAVING AN IMPACT ON OTHER TECHNOLOGY AREAS
    • Y04SSYSTEMS INTEGRATING TECHNOLOGIES RELATED TO POWER NETWORK OPERATION, COMMUNICATION OR INFORMATION TECHNOLOGIES FOR IMPROVING THE ELECTRICAL POWER GENERATION, TRANSMISSION, DISTRIBUTION, MANAGEMENT OR USAGE, i.e. SMART GRIDS
    • Y04S10/00Systems supporting electrical power generation, transmission or distribution
    • Y04S10/50Systems or methods supporting the power network operation or management, involving a certain degree of interaction with the load-side end user applications
    • Y04S10/52Outage or fault management, e.g. fault detection or location

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Abstract

The utility model discloses a combine receiver frequently relates to communications facilities technical field. The utility model comprises that; the frequency synthesis receiver module is used for receiving and processing the comprehensive frequency in communication; the fault precise positioning module is arranged in a plurality of quantities and is connected to the upper end face of the frequency synthesizer receiver module; any fault accurate positioning module comprises a Hall element electrically connected in the frequency synthesizer receiver module, a ring block connected to the upper end face of the frequency synthesizer receiver module, a penetrating ring block and an alarm lamp extending into the frequency synthesizer receiver module; wherein, the middle part joint of ring piece one side is connected with the signboard. The utility model discloses a set up the accurate location module of trouble, solved current receiver of synthesizing frequently, generally built-in trouble processing module to and carry out real-time understanding to the emergence of self trouble in time, and show via the display, but the trouble that shows is the whole of equipment, to concrete fault point, need carry out investigation one by one, consuming time is hard, influences the problem of in-service use.

Description

Frequency synthesizer receiver
Technical Field
The utility model relates to a communication equipment technical field especially relates to a combine receiver frequently.
Background
The frequency synthesizer receiver is one kind of communication equipment and is used mainly in receiving various frequencies produced by electronic equipment.
However, the following disadvantages still exist in the practical use:
the existing frequency synthesis receiver is generally internally provided with a fault processing module, can timely know the occurrence of self faults in real time and can display the faults through a display, but the displayed faults are the whole equipment, and specific fault points need to be checked one by one, so that the time and the labor are consumed, and the actual use is influenced.
Therefore, the requirement of practical use cannot be satisfied, so that there is a strong need for improved technology to solve the above problems.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a combine receiver frequently through setting up the accurate location module of trouble, has solved the current receiver of combining frequently, generally embeds trouble processing module to and carry out real-time understanding to the emergence of self trouble in time, and show via the display, nevertheless the trouble that shows is the whole of equipment, to concrete fault point, needs to carry out one by one's investigation, consuming time and wasting power, influences the problem of in-service use.
In order to solve the technical problem, the utility model discloses a realize through following technical scheme:
the utility model relates to a frequency synthesis receiver, which comprises a frequency synthesis receiver;
the frequency synthesis receiver module is used for receiving and processing the comprehensive frequency in communication;
the fault precise positioning module is arranged in a plurality of quantities and is connected to the upper end face of the frequency synthesizer receiver module;
any one fault accurate positioning module comprises a Hall element electrically connected in the frequency synthesizer receiver module, a ring block connected to the upper end face of the frequency synthesizer receiver module, and an alarm lamp penetrating through the ring block and extending into the frequency synthesizer receiver module;
wherein, the middle part joint of ring piece one side is connected with the signboard.
Furthermore, the frequency synthesizer receiver module comprises a group of outer shells which are symmetrical up and down, an inner shell connected in the outer shell at the lower end and three interfaces connected on the outer shell at the upper end;
the number of the inner housings is seven, and the inner housings are arranged relative to the equal number of the alarm lamps;
one of the interfaces is arranged on one side of the upper outer shell, and one group of the interfaces is arranged on the end part of the other side of the upper outer shell;
specifically, the shell body accepts and protects outward the internal casing, and the interior casing then protects outward accepting of corresponding modular structure to form duplicate protection structure, reduce the damage probability of self, and to carrying out mutual isolation between each module, in order to avoid the mutual interference between the electromagnetism, easy to use, the interface then carries out the transport and the output of data and handles.
Furthermore, an initialization module, a data receiving module, a data returning module, an AGC control module, a ping-pong ring control module, a DDS shaping module and a fault processing module are respectively and oppositely connected inside the seven inner shells; an AGC control module for performing distribution control of electric power; a ping-pong ring control module;
wherein, the Hall element is contained in the fault processing module.
Specifically, the initialization module performs original state recovery of the device; the data receiving module is used for receiving and processing data; the data returning module is used for returning the data; namely, the conversion control between two states of the equipment is carried out; the DDS shaping module detects small intervals among frequencies; and the fault processing module is used for detecting and processing equipment faults.
Furthermore, the corresponding positions on the seven inner shells and the corners of one group of outer shells are threaded holes which are formed in a penetrating mode, and the outer shells of one group are in threaded connection through fastening screws of the corners;
specifically, the fastening screw fastens and installs a group of structures between the outer shells, and after the outer bolt is placed through the threaded hole, the equipment can be installed and fixed with the outer structures.
Furthermore, an auxiliary fastening module is connected in the threaded hole of the corner of the outer shell;
any one auxiliary fastening module comprises a group of vertically symmetrical threaded rings;
specifically, the threaded ring is arranged in the threaded hole, the threaded ring can be fastened with the outer bolt, and the threaded ring can be detached independently, so that the influence on subsequent use due to fracture is avoided.
Furthermore, one end of the threaded ring is provided with a horizontally arranged opening, and a force application rod is arranged in any one opening;
wherein, the outer end of the force application rod is connected with an extended hexagonal convex block;
specifically, the opening is used for receiving the force application rod, the hexagonal bump is used for controlling the structure of the force application rod, and the threaded ring can be easily disassembled and assembled in the threaded hole after the movable force is applied.
The utility model discloses following beneficial effect has:
the utility model discloses when can carry out self fault detection via equipment built-in trouble processing module, correspond to and be connected with the warning light on seven module's the hall element, the illumination of a warning light, the module that should correspond on the surface is in trouble state, simultaneously, the signboard that corresponds on the warning light can assist and carry out the knowledge of this trouble module, can carry out the location of trouble module accurately, easily subsequent maintenance operation, promote the operation effect;
meanwhile, the corresponding module structures are installed and received through the seven inner shells, on one hand, the seven inner shells can be matched with the shells to form double outer protection treatment on the modules, the damage probability of the modules is reduced, on the other hand, the modules are isolated from each other, the mutual interference among electromagnetism is avoided, and the usability of the modules is improved.
Of course, it is not necessary for any particular product to achieve all of the above-described advantages simultaneously.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings used in the description of the embodiments will be briefly introduced below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and it is obvious for those skilled in the art that other drawings can be obtained according to these drawings without creative efforts.
FIG. 1 is a view of the structure of the cover closing structure of the present invention;
fig. 2 is a structural diagram of the fault accurate positioning module of the present invention;
FIG. 3 is a cover opening structure diagram of the present invention;
fig. 4 is a structural view of the auxiliary fastening module of the present invention.
In the drawings, the reference numbers indicate the following list of parts:
100. a frequency synthesizer receiver module; 110. an outer housing; 120. an inner housing; 130. an interface; 200. an auxiliary fastening module; 210. a threaded ring; 220. a force application rod; 230. a hexagonal bump; 300. a fault accurate positioning module; 310. a Hall element; 320. a ring block; 330. an alarm light; 340. a signboard.
Detailed Description
The technical solution in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention.
Referring to fig. 2, the present embodiment is a frequency synthesizer receiver, including;
a plurality of fault accurate positioning modules 300, which are arranged and connected to the upper end face of the frequency synthesizer receiver module 100;
any fault accurate positioning module 300 comprises a hall element 310 electrically connected in the frequency synthesizer receiver module 100, a ring block 320 connected to the upper end surface of the frequency synthesizer receiver module 100, and an alarm lamp 330 penetrating through the ring block 320 and extending into the frequency synthesizer receiver module 100;
wherein, the middle part of one side of the ring block 320 is connected with a signboard 340 in a clamping way;
use of the fault accurate positioning module 300:
the fault of the equipment is detected, and because the magnetic field exists around the electrified lead and the magnitude of the magnetic field is in direct proportion to the current in the lead, the Hall element 310 can be used for measuring the magnetic field, so that the magnitude of the current of the lead can be determined, and the fault detection is completed;
the fault point of the detection is accurately positioned, the module of the fault is correspondingly connected with a Hall element 310, the corresponding Hall element 310 is connected with a corresponding alarm lamp 330, and the accurate positioning of the fault point is completed under the matching of the signboard 340.
Example 2
As shown in fig. 1 and 3, the frequency synthesizer module 100 receives and processes the synthesized frequency in the communication;
the frequency synthesizer receiver module 100 comprises a set of outer shells 110 which are symmetrical up and down, an inner shell 120 connected in the outer shell 110 at the lower end, and three interfaces 130 connected to the outer shell 110 at the upper end;
wherein, the number of the inner housing 120 is seven, and is arranged relative to the same number of the warning lamps 330;
one interface 130 is arranged at one side of the upper end outer shell 110, and a group of interfaces 130 is arranged at the end part of the other side of the upper end outer shell 110;
the inside of the seven inner shells 120 is respectively and oppositely connected with an initialization module, a data receiving module, a data returning module, an AGC control module, a ping-pong ring control module, a DDS shaping module and a fault processing module;
the hall element 310 is included in the fault processing module;
the frequency synthesizer module 100 is used:
the initialization module is used for recovering the original state of the equipment; the data receiving module is used for receiving and processing data; the data returning module is used for returning the data; namely, the conversion control between two states of the equipment is carried out; the DDS shaping module detects small intervals among frequencies; the fault processing module is used for detecting and processing equipment faults;
the outer protection and the emi shielding are performed between the modules, and after the outer shielding protection of the modules is performed through the outer housing 110, the inner housing 120 is installed on each module, so as to complete the protection and emi shielding of the modules.
In the description of the present invention, it should also be noted that, unless otherwise explicitly specified or limited, the terms "disposed," "mounted," "connected," and "connected" are to be construed broadly, e.g., as meaning either a fixed connection, a removable connection, or an integral connection; can be mechanically or electrically connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meaning of the above terms in the present invention can be understood according to specific situations by those skilled in the art.
Finally, it should be noted that: although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications may be made to the embodiments described in the foregoing embodiments, or equivalents may be substituted for elements thereof. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (6)

1. A frequency synthesizer receiver, characterized by:
the method comprises the following steps:
the frequency synthesis receiver module (100) is used for receiving and processing the comprehensive frequency in communication;
the fault precise positioning module (300) is arranged in a plurality of numbers and is connected to the upper end face of the frequency synthesizer receiver module (100);
any one fault accurate positioning module (300) comprises a Hall element (310) electrically connected in the frequency synthesizer receiver module (100), a ring block (320) connected to the upper end face of the frequency synthesizer receiver module (100), and an alarm lamp (330) penetrating through the ring block (320) and extending into the frequency synthesizer receiver module (100);
the middle part of one side of the ring block (320) is connected with a signboard (340) in a clamping manner.
2. The frequency synthesizer receiver of claim 1, wherein: the frequency synthesizer receiver module (100) comprises a group of outer shells (110) which are symmetrical up and down, an inner shell (120) connected in the outer shell (110) at the lower end and three interfaces (130) connected to the outer shell (110) at the upper end;
wherein the number of the inner housings (120) is seven and is arranged with respect to the same number of the warning lamps (330);
one interface (130) is arranged at one side of the upper end of the outer shell (110), and one group of interfaces (130) is arranged at the end part of the other side of the upper end of the outer shell (110).
3. A frequency synthesizer receiver according to claim 2, wherein: an initialization module, a data receiving module, a data returning module, an AGC control module, a table tennis ring control module, a DDS shaping module and a fault processing module are respectively and oppositely connected inside the seven inner shells (120);
wherein the Hall element (310) is contained in a fault processing module.
4. A frequency synthesizer receiver according to claim 2, wherein: the corresponding positions on the seven inner shells (120) and the corners of the group of outer shells (110) are threaded holes which are formed in a penetrating mode, and the group of outer shells (110) are in threaded connection through fastening screws at the corners.
5. A frequency synthesizer receiver according to claim 2, wherein: an auxiliary fastening module (200) is connected in the threaded hole of the corner of the outer shell (110);
any one of the auxiliary fastening modules (200) comprises a set of thread rings (210) which are symmetrical up and down.
6. The frequency synthesizer receiver of claim 5, wherein: one end of any one of the threaded rings (210) is provided with a horizontally arranged hole, and a force application rod (220) is arranged in any one hole;
wherein, the outer end of the force application rod (220) is connected with an extended hexagonal lug (230).
CN202222737340.5U 2022-10-18 2022-10-18 Frequency synthesizer receiver Active CN218679042U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222737340.5U CN218679042U (en) 2022-10-18 2022-10-18 Frequency synthesizer receiver

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222737340.5U CN218679042U (en) 2022-10-18 2022-10-18 Frequency synthesizer receiver

Publications (1)

Publication Number Publication Date
CN218679042U true CN218679042U (en) 2023-03-21

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ID=85564289

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222737340.5U Active CN218679042U (en) 2022-10-18 2022-10-18 Frequency synthesizer receiver

Country Status (1)

Country Link
CN (1) CN218679042U (en)

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