Simulation bomb assembly for GBP-128 type rocket blaster

By utilizing Zigbee wireless communication technology and the application of an MCU, the problem of data acquisition accuracy in the simulation terminal of the GBP-128 rocket detonator was solved, improving launch accuracy and strike accuracy, and enabling real-time monitoring of projectile quantity information and display of launch status.

CN224051183UActive Publication Date: 2026-03-27SHAANXI ORION LASERTECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-30
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

The traditional GBP-128 rocket detonator simulation terminal has insufficient data acquisition accuracy, resulting in low accuracy of indirect fire.

Method used

The system uses Zigbee wireless communication technology to connect individual soldier equipment. It receives ammunition quantity information through the MCU of the parameter display and control host, realizes the locking and unlocking of the firing function, and collects firing information and displays the firing status through the MCU, and controls the start of the simulator.

Benefits of technology

It improved the launching accuracy and strike precision of the simulated missile assembly, and enabled real-time monitoring of missile quantity information and display of launching status.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224051183U_ABST
Patent Text Reader

Abstract

The utility model relates to a simulated bomb assembly for a GBP-128 type rocket blaster, which comprises a data display control host and a main cylinder, a simulated bomb head is mounted on the left side of the main cylinder, an acousto-optic bomb is mounted on the simulated bomb head, a display screen fixing plate is arranged on the upper surface of the middle of the main cylinder, a liquid crystal screen is mounted on the display screen fixing plate, and a liquid crystal display screen is mounted on the liquid crystal screen. An adapter fixing seat is arranged on one side of the upper portion of the display screen fixing plate, a self-locking switch is arranged between the bottom of one end of the adapter fixing seat and the display screen fixing plate, the right side of the main cylinder is connected with a caudal vertebra, a battery pack is arranged on one side of the caudal vertebra, and a simulation bullet supporting block is arranged at the bottom of the main cylinder. The simulation bullet assembly is connected with the single-soldier harness through the Zigbee wireless communication technology and receives bullet quantity information of the single-soldier harness, locking and unlocking of the launching function can be achieved, and the multi-element display and control host can collect shooting information, display the launching state and control starting of a simulator through the MCU.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to military simulation training weapon technical field, concretely relates to a kind of simulation bullet assembly for GBP-128 type rocket exploder. BACKGROUND

[0002] The collection accuracy of the GBP-128 type rocket exploder simulation terminal used in traditional military simulation training to actual equipment is not enough, resulting in low curve shooting accuracy. CONTENT OF UTILITY MODEL

[0003] The utility model aims at solving above-mentioned problem, and the application proposes a kind of simulation bullet assembly for GBP-128 type rocket exploder, connects individual soldier's equipment by Zigbee wireless communication technology, receives the bullet information of individual soldier's equipment, can realize the locking and unlocking of launch function, and MCU is selected for the main host of display and control, can collect shooting information, display launch state, and also can control the opening of simulator.

[0004] To achieve the above object, the utility model provides the following technical scheme: a kind of simulation bullet assembly for GBP-128 type rocket exploder, including main host of display and control, main cylinder, the left side of the main cylinder is equipped with simulation bullet bullet head, sound-light bullet is installed on the simulation bullet bullet head, the port of the simulation bullet bullet head is equipped with bullet pressure platform at sound-light bullet connection, the lateral wall of the simulation bullet bullet head is equipped with switch cover plate, the inside of the simulation bullet bullet head is equipped with probe circuit board, microswitch is equipped on the probe circuit board, switch trigger rod is equipped on the one side of microswitch, trigger spring is equipped on the switch trigger rod, spring probe is equipped on the probe circuit board at sound-light bullet connection;

[0005] The upper surface of the middle of the main cylinder is equipped with display screen fixing plate, liquid crystal screen is installed on the display screen fixing plate, the upper side of the display screen fixing plate is equipped with adapter fixed seat, self-locking switch is equipped between the bottom of the one end of the adapter fixed seat and the display screen fixing plate, circuit adapter plate is equipped in the main cylinder, the left side of the circuit adapter plate is equipped with loudspeaker, loudspeaker waterproof film and loudspeaker cover plate, short-distance infrared and flash lamp are equipped between the circuit adapter plate and loudspeaker cover plate, waterproof adhesive film is equipped above the circuit adapter plate and short-distance infrared, flash lamp.

[0006] The right side of the main cylinder is connected with tail vertebra, battery pack is equipped on the one side of the tail vertebra, simulation bullet support block is equipped in the bottom of the main cylinder.

[0007] Further: waterproof adhesive film is equipped above the circuit adapter plate and short-distance infrared, flash lamp.

[0008] Further: rubber pad is equipped between the main cylinder and simulation bullet bullet head.

[0009] Further, the multi-element display control host uses MCU, the MCU is connected with short-range infrared, LCD, flash lamp and loudspeaker respectively, and transmits signals to the MCU.

[0010] Preferably, the battery is provided with a plurality of batteries connected in series to provide power support for the simulation bullet assembly.

[0011] Preferably, the simulation bullet assembly is connected with the individual equipment through Zigbee wireless communication mode, and the indicator lamp and the individual equipment also have the connection information.

[0012] Preferably, the switch cover plate is fixed on the side wall of the simulation bullet head through M3*10 cross groove disc head screw.

[0013] Preferably, the circuit adapter plate is fixed on the main cylinder through M5*6 cross groove disc head screw.

[0014] Compared with the prior art, the simulation bullet assembly has the beneficial effects that:

[0015] The simulation bullet assembly is connected with the individual equipment through Zigbee wireless communication technology, receives the bullet quantity information of the individual equipment, and can realize the locking and unlocking of the launching function: when the bullet quantity is 0, the launching function is locked; when the bullet quantity is not 0, the launching function is unlocked.

[0016] The host of the multi-element display control selects MCU, which can collect shooting information, display the launching state, and also can control the opening of the simulator. DRAWINGS

[0017] In order to more clearly illustrate the technical scheme of the embodiment of the utility model, the drawings needed in the embodiment description will be briefly introduced, and obviously, the drawings in the following description are only for more clearly illustrating the technical scheme of the embodiment of the utility model or the prior art, and for the ordinary skilled in the art, other drawings can also be obtained without creative labor.

[0018] Fig. 1 It is the whole structure schematic diagram of the simulation bullet assembly of the utility model;

[0019] Fig. 2 It is the sectional view of the whole structure schematic diagram A-A of the simulation bullet assembly of the utility model;

[0020] Fig. 3 It is the sectional view of the whole structure schematic diagram B-B of the simulation bullet assembly of the utility model;

[0021] In the figure: 1-analog bullet support block, 2-tail vertebra, 3-main cylinder, 4-rubber pad, 5-switch cover plate, 6-bullet pressing platform, 7-acoustic light bullet, 8-analog bullet warhead, 9-M3x10 cross groove disc head screw, 10-display screen fixing plate, 11-adapter fixed seat, 12-self-locking switch, 13-battery, 14-LCD screen, 15-circuit adapter plate, 16-waterproof film, 18-probe circuit board, 19-micro switch, 20-horn waterproof film, 21-spring probe, 22-horn cover plate, 23-switch trigger rod, 26-M5x6 cross groove disc head screw, 27-flashlight, 30-short distance infrared, 31-trigger spring. DETAILED DESCRIPTION

[0022] In order to make the technical personnel of the prior art better understand the technical scheme of the utility model can be implemented, the utility model is further described below in combination with specific embodiments, but the embodiment is only as a description of the utility model, not as a limitation of the utility model.

[0023] As Figs. 1-3 The analog bullet assembly for GBP-128 type rocket exploder shown in the figure, including the main host computer, the main cylinder 3, characterized by: the left side of the main cylinder 3 is provided with an analog bullet warhead 8, the acoustic light bullet 7 is installed on the analog bullet warhead 8, the bullet pressing platform 6 is arranged at the port of the analog bullet warhead 8 and the connection of the acoustic light bullet 7, the switch cover plate 5 is arranged on the lateral wall of the analog bullet warhead 8, the switch cover plate is fixed on the lateral wall of the analog bullet warhead through M3x10 cross groove disc head screw, the probe circuit board 18 is arranged in the analog bullet warhead 8, the micro switch 19 is arranged on the probe circuit board 18, the switch trigger rod 23 is arranged on one side of the micro switch 19, the trigger spring 31 is arranged on the switch trigger rod 23, the spring probe 21 is arranged on the probe circuit board 18 and connected with the acoustic light bullet 7.

[0024] The display screen fixing plate 10 is arranged on the middle upper surface of the main cylinder 3, the LCD screen 14 is installed on the display screen fixing plate 10, the adapter fixed seat 11 is arranged on one side above the display screen fixing plate 10, the self-locking switch 12 is arranged between the bottom of one end of the adapter fixed seat 11 and the display screen fixing plate 10, the circuit adapter plate 15 is arranged in the main cylinder 3, the circuit adapter plate 15 is fixed on the main cylinder 3 through M5x6 cross groove disc head screw 26, the horn, the horn waterproof film 20 and the horn cover plate 22 are arranged on the left side of the circuit adapter plate 15, the short distance infrared 30 and the flash light 27 are arranged between the circuit adapter plate 15 and the horn cover plate 22.

[0025] The right side of the main cylinder 3 is connected with the tail vertebra 2, the battery 13 is arranged on one side of the tail vertebra 2, the analog bullet support block 1 is arranged at the bottom of the main cylinder 3.

[0026] A waterproof film 16 is provided above the circuit adapter board 15, the short-range infrared 30, and the strobe light 27.

[0027] A rubber pad 4 is provided between the main tube 3 and the simulated projectile head 8.

[0028] The host computer for displaying and controlling the parameters is an MCU. The MCU is connected to the short-range infrared 30, the LCD screen 14, the strobe light 27, and the speaker, and transmits signals to the MCU.

[0029] The batteries 13 are provided in multiple units and connected in series to provide power support for the simulated missile assembly.

[0030] This utility model's simulated ammunition assembly connects to individual soldier equipment via Zigbee wireless communication technology. The MCU receives ammunition quantity information sent by the individual soldier equipment, enabling the locking and unlocking of the firing function: when the ammunition quantity is 0, the firing function is locked; when the ammunition quantity is not 0, the firing function is unlocked.

[0031] The strobe light displays battery level and individual soldier equipment connection information.

[0032] The short-range infrared sensor is used to receive simulated ejection factory configuration ID information.

[0033] The parameter display and control host also has a firing display for ammunition selection set.

[0034] Working principle

[0035] The simulated projectile assembly of this GBP-128 rocket detonator employs a data-interactive strike method, and the main strike process is as follows:

[0036] The strike data mainly includes the following information: a. launch time (T1); b. latitude, longitude, and elevation coordinates at launch (X1, Y1, Z1); c. launch direction and angle (α1, β1, γ1) at launch. This information is transmitted to the individual soldier's equipment via Zigbee, and then transmitted to the data display and control host via 4G. The data display and control host performs calculations based on the uploaded information, mainly calculating the following information: the relative coordinates between the attacker and the attacked at the launch time, and the launch direction and angle (T1, Δα1, Δβ1, Δγ1) relative to the coordinate system.

[0037] The host computer for data display and control calculates the final impact point information of the GBP-128 rocket detonator simulated projectile component based on the uploaded attack information to determine whether it effectively attacked the pre-strike target or related facilities, and directs the relevant equipment that was effectively attacked.

[0038] All content not described in detail in this utility model is prior art.

[0039] The above merely describes preferred embodiments of the present application, and is not limited to the description and embodiments. Therefore, equivalent changes or modifications made in accordance with the scope of the present application should be included in the scope of the present application.

Claims

1. A simulation bomb assembly for GBP-128 type rocket exploder, comprising a data display control host computer, a main cylinder (3), characterized in that: The left side of the main cylinder (3) is provided with a simulation bullet head (8), the simulation bullet head (8) is provided with a sound and light bullet (7), the port of the simulation bullet head (8) is provided with a bullet pressing table (6) connected with the sound and light bullet (7), the side wall of the simulation bullet head (8) is provided with a switch cover plate (5), the inside of the simulation bullet head (8) is provided with a probe circuit board (18), the probe circuit board (18) is provided with a micro switch (19), one side of the micro switch (19) is provided with a switch trigger rod (23), the switch trigger rod (23) is provided with a trigger spring (31), the probe circuit board (18) is provided with a spring probe (21) connected with the sound and light bullet (7); The middle upper surface of the main cylinder (3) is provided with a display screen fixing plate (10), the display screen fixing plate (10) is provided with a liquid crystal screen (14), one side above the display screen fixing plate (10) is provided with an adapter fixed seat (11), the bottom of one end of the adapter fixed seat (11) and the display screen fixing plate (10) are provided with a self-locking switch (12), the inside of the main cylinder (3) is provided with a circuit adapter plate (15), the left side of the circuit adapter plate (15) is provided with a loudspeaker, a loudspeaker waterproof film (20) and a loudspeaker cover plate (22), the circuit adapter plate (15) and the loudspeaker cover plate (22) are provided with a short-distance infrared (30) and a flash lamp (27); The right side of the main cylinder (3) is connected with a tail vertebra (2), one side of the tail vertebra (2) is provided with a battery (13), the bottom of the main cylinder (3) is provided with a simulation bullet supporting block (1).

2. A dummy round assembly for a GBP-128 type rocket projectile according to claim 1, characterized in that: The waterproof adhesive film (16) is arranged above the circuit adapter plate (15), the short-distance infrared (30) and the flash lamp (27).

3. A dummy round assembly for a GBP-128 type rocket projectile according to claim 1, characterized in that: The rubber pad (4) is arranged between the main cylinder (3) and the simulation bullet head (8).

4. A simulation round assembly for a GBP-128 type rocket projectile according to claim 1, characterized in that: The MCU is connected with the short-distance infrared (30), the liquid crystal screen (14), the flash lamp (27) and the loudspeaker, and transmits signals to the MCU.

5. A simulation projectile assembly for a GBP-128 type rocket exploder as defined in claim 1, characterized in that: The battery (13) is provided with a plurality of batteries connected in series, and provides power support for the simulation bullet assembly.

6. A simulation round assembly for a GBP-128 type rocket projectile according to claim 1, characterized in that: The simulation bullet assembly is connected with the individual equipment through the Zigbee wireless communication mode, and the flash lamp (27) and the individual equipment also have the connection information.

7. A simulation round assembly for a GBP-128 type rocket projectile according to claim 1, characterized in that: The switch cover plate (5) is fixed on the side wall of the simulation bullet head through the M3*10 cross groove disc head screw (9).

8. A simulation round assembly for a GBP-128 type rocket projectile according to claim 1, characterized in that: The circuit adapter plate (15) is fixed on the main cylinder (3) through the M5*6 cross groove disc head screw (26).