Simulated racing car sequence gear
By using a split-structure design and a multi-functional adapter, the simulated racing sequencer solves the problems of simple structure and high cost of existing simulated racing sequencers. It enables the installation of RGB light strip modules and multi-position adjustment, reduces processing and logistics costs, and improves ease of operation and safety.
Patent Information
- Application Number
- CN202423062918.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-12
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2034-12-12
AI Technical Summary
Existing racing simulators suffer from a simplistic design, lack multi-angle adjustment, and cannot accommodate RGB light strip modules. Their control handles are also limited in design, resulting in high manufacturing and logistics costs, as well as a large number of parts.
It adopts a split structure design, including a clamping plate, side plate, operation adjustment component, trigger detection component and multi-point triggering mechanism, supports RGB light strip module installation, the operation handle adopts a multi-functional adapter, the sequence stop body adopts an integrated bent hollow structure, and adds a multi-point triggering device.
It enables the installation of RGB light strip modules, with multi-hole positioning for fixing and adjustment, reducing processing and logistics costs, improving ease of operation and safety, and supporting multi-functional quick switching.
Smart Images

Figure CN223586546U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to sequence stop technical field, concretely is a kind of simulation racing sequence stop. BACKGROUND
[0002] Simulation racing sequence stop is a gearshift device specially designed for racing simulator enthusiasts pursuing extreme driving experience, which perfectly reproduces the sequence type gearbox operation feeling in real racing. The device is usually made of high-quality aluminum alloy and high-strength steel materials to ensure its solid and durable characteristics. At the same time, its structure design is ingenious, the gearshift feels solid, the push and pull are smooth, and the rebound is quick, providing players with an extreme experience comparable to real racing operation. Simulation racing sequence stop not only has the traditional gearshift function, but also integrates innovative multifunctional handle design, allowing drivers to quickly enter neutral or reverse gear with one key during driving, greatly improving the convenience and safety of operation.
[0003] The existing simulation racing sequence stop has a single sequence stop operation arm structure design, lacks diversity in multi-angle adjustment, and cannot support RGB light bar modules. In addition, the sequence stop handle design is single, the replacement type is limited, and there are many parts and many processing procedures without weight reduction measures, resulting in high processing and logistics costs. Therefore, in view of the above status, it is urgent to develop a simulation racing sequence stop to overcome the shortcomings in current practical applications. UTILITY MODEL CONTENTS
[0004] The utility model aims to provide a kind of simulation racing sequence stop to solve the problems raised in the above background technology.
[0005] To achieve the above purpose, the utility model provides the following technical scheme:
[0006] A kind of simulation racing sequence stop, including sequence stop body, the sequence stop body is fixed on the car body by fastening bolt five, still include:
[0007] Clamp plate, the clamp plate is fixedly installed on the sequence stop body by fastening bolt six, and the sequence stop body and clamp plate form a whole by clearance fit;
[0008] Side plate one and side plate two, the side plate one and side plate two are fixedly installed on the sequence stop body by fastening bolt seven, and operation adjusting assembly is further provided on the side plate one and side plate two;
[0009] Trigger detection component, the trigger detection component is connected with the sequence stop body and clamp plate respectively, the trigger detection component is used to detect the torsional force action of operation adjusting assembly through side plate one and side plate two, and the force action sensed is converted into data output;
[0010] And a multi-point trigger mechanism connected with the sequence stop body, the clamping plate, the side plate one and the side plate two respectively and connected with the trigger detection assembly, wherein the multi-point trigger mechanism comprises a first auxiliary trigger assembly and a second auxiliary trigger assembly;
[0011] The first auxiliary trigger assembly is connected with the sequence stop body and the clamping plate respectively, the second auxiliary trigger assembly is connected with the side plate one and the side plate two respectively, and the first auxiliary trigger assembly and the second auxiliary trigger assembly are both connected with the trigger detection assembly.
[0012] As a further scheme of the utility model, the operation adjusting assembly comprises:
[0013] The side plate three and the side plate four are fixedly installed on the side plate one and the side plate two through the fastening bolt nine and the fastening bolt ten, wherein the fastening bolt nine and the fastening bolt ten are respectively sleeved with the internal thread sleeve seven and the internal thread sleeve six;
[0014] And an operation handle, the operation handle is self-locked on the square adapter, the square adapter is connected with the side plate three and the side plate four through the fastening bolt four, and a connecting plate one is further arranged between the square adapter and the side plate three and the side plate four.
[0015] The operation handle comprises a handle body, an adapter and a conversion screw rod, the conversion screw rod is connected with the square adapter, and the handle body is connected with the conversion screw rod through the adapter.
[0016] As a further scheme of the utility model, further comprising: a lamp strip lamp group, the lamp strip lamp group is fixedly installed on the sequence stop body through the fastening bolt one.
[0017] The lamp strip lamp group comprises a PCB lamp strip plate and a convex light source cover, the PCB lamp strip plate is connected with the sequence stop body, and the PCB lamp strip plate is further provided with the convex light source cover.
[0018] As a further scheme of the utility model, the trigger detection assembly comprises:
[0019] A PCB plate one is fixedly installed on the sequence stop body through a cushion block and a fastening bolt two.
[0020] An internal thread sleeve two is sleeved on the fastening bolt seven, and the internal thread sleeve two is further connected with the side plate one and the side plate two through an isolation sleeve and a plane ball bearing two.
[0021] The side plate one and the side plate two are connected with the sequence stop body through the isolating sleeve, the second plane ball bearing, the second inner threaded sleeve and the seventh fastening bolt, and realize self rotation through the rotating shaft.
[0022] The two magnets are connected with the sequence stop body through the fourth inner threaded sleeve and the eleventh fastening bolt and the fifth inner threaded sleeve and the twelfth fastening bolt, wherein the fourth inner threaded sleeve is sleeved on the eleventh fastening bolt.
[0023] The limiting transmission unit is connected with the sequence stop body and the second inner threaded sleeve.
[0024] As a further scheme of the utility model, the limiting transmission unit comprises:
[0025] The eighth fastening bolt is connected with the sequence stop body, and the third inner threaded sleeve is sleeved on the eighth fastening bolt, and the third inner threaded sleeve is connected with the sequence stop body through the third plane ball bearing.
[0026] The torsion spring is sleeved on the second inner threaded sleeve, wherein the side plate one and the side plate two realize the limiting of the rotary motion and the self returning action through the torsion spring and the third inner threaded sleeve.
[0027] As a further scheme of the utility model, further comprising: the knock block module is connected with the sequence stop body, wherein the knock block module comprises the second hexagon nut, the inner and outer threaded sleeve, the ball, the second cylindrical spring and the screw plug;
[0028] The knock block module is self-locked on the sequence stop body through the second hexagon nut and the inner and outer threaded sleeve;
[0029] The second cylindrical spring is sleeved on the inner and outer threaded sleeve, the screw plug is located between the second hexagon nut and the inner and outer threaded sleeve, and the ball is located at the top of the inner and outer threaded sleeve.
[0030] By adjusting the screw plug forward and backward, the tightness state of the second cylindrical spring is changed, and the second cylindrical spring is extruded on the ball, so that the contact force between the ball and the side plate one and the side plate two is adjusted.
[0031] As a further scheme of the utility model, the first auxiliary trigger assembly comprises:
[0032] The reset switch is located on the clamping plate.
[0033] The second PCB is fixedly installed on the clamping plate through the threaded nut of the reset switch, and the second PCB is further electrically connected with the trigger detection assembly.
[0034] As a further scheme of the utility model: the second auxiliary trigger assembly includes:
[0035] The trigger dial is fixedly installed on the side plate one and the side plate two through the internal thread sleeve one, the plane ball bearing one and the fastening bolt fifteen;
[0036] The connecting plate three is located on the side plate one and the side plate two, and the connecting plate two is arranged between the side plate one and the side plate two, and the cylindrical spring one is arranged on the connecting plate three;
[0037] The trigger switch is fixedly installed on the connecting plate three through the fastening bolt thirteen and the fastening bolt fourteen; the trigger dial triggers the trigger switch at the bottom, and the trigger switch transmits the triggered information to the PCB board one through the wire group;
[0038] The wire group fixator is fixedly installed on the side plate one and the side plate two through the fastening bolt three and the hexagon nut one;
[0039] The trigger dial rotates around the rotation axis formed by the internal thread sleeve one, the plane ball bearing one and the fastening bolt fifteen, and the rotation movement is limited and the self-return action is realized through the connecting plate three and the cylindrical spring one.
[0040] As a further scheme of the utility model: the sequence stop body is further provided with the locking nut one and the locking nut two, and the sequence stop body and the clamping plate are fixedly connected.
[0041] Compared with the prior art, the utility model has the beneficial effects that:
[0042] 1. Without interfering with the movement of the sequence stop in the narrow space, the RGB light bar module can be installed, the light bar module adopts the super-thin concave structure design, solves the overall space, and the lampshade adopts the translucent material, which can realize the light effect and protect the light bar from being damaged;
[0043] 2. The sequence stop operating arm adopts the split structure multi-hole design, so that the height multi-stage adjustment can be realized through the multi-hole fixation, and the user's use demand is enriched;
[0044] 3. The sequence stop operating handle adopts the split structure, and the multifunctional adapter is designed, so that the multiple types can be replaced;
[0045] 4. The sequence stop structure body adopts the integrated bending hollow structure design, the processing is more convenient, the weight is lighter, the processing cost and the logistics cost are greatly reduced, and the cost is saved;
[0046] 5. The multi-point trigger device is increased, so that the user can set multiple functions, and the use function can be quickly switched during use. Attached Figure Description
[0047] Figure 1 This is a three-dimensional structural diagram of the sequence holder of this utility model.
[0048] Figure 2 This is a cross-sectional view of the front side of the clamping plate in this utility model.
[0049] Figure 3 This is a cross-sectional view of the rear side of the clamping plate in this utility model.
[0050] Figure 4 This is a cross-sectional view of the operating handle in this utility model.
[0051] Figure 5 This is an enlarged structural schematic diagram of the light strip assembly in this utility model.
[0052] Figure 6 This is an enlarged cross-sectional view of the striking block module in this utility model.
[0053] In the diagram: 1-Sequence stop body, 2-Clamping plate, 3-Side plate one, 4-Side plate two, 5-Side plate three, 6-Side plate four, 7-Connecting plate one, 8-Connecting plate two, 9-Connecting plate three, 10-Operating handle, 10a-Handle body, 10b-Adapter, 10c-Conversion screw, 11-Light strip assembly, 11a-PCB light strip board, 11b-Convex light source cover, 12-Fasting bolt one, 13-PCB board one, 14-Pan block, 15-Fasting bolt two, 16-PCB board two, 17-Reset switch, 18-Torsion spring, 19-Cylindrical spring one, 20-Trigger lever, 21-Internal threaded sleeve one, 22-Flat ball bearing one, 23-Trigger switch, 24-Wire assembly retainer, 25-Fasting bolt three, 26-Wire assembly, 27-Hexagonal nut one, 28-Square adapter, 29-Fasting fastener Bolt 4, 30-Actuating block module, 30a-Hexagonal nut 2, 30b-Internal and external threaded sleeve, 30c-Ball spring, 30d-Cylindrical spring 2, 30e-Plug, 31-Isolation sleeve, 32-Flat ball bearing 2, 33-Internal threaded sleeve 2, 34-Internal threaded sleeve 3, 35-Flat ball bearing 3, 36-Magnet, 37-Internal threaded sleeve 4, 38-Lock-lock nut 1, 39-Lock-lock nut 2, 40-Internal threaded sleeve 5, 41-Internal threaded sleeve 6, 42-Internal threaded sleeve 7, 43-Fasting bolt 5, 44-Fasting bolt 6, 45-Fasting bolt 7, 46-Fasting bolt 8, 47-Fasting bolt 9, 48-Fasting bolt 10, 49-Fasting bolt 11, 50-Fasting bolt 12, 51-Fasting bolt 13, 52-Fasting bolt 14, 53-Fasting bolt 15. Detailed Implementation
[0054] With reference to the drawings of the embodiments of the present application, the technical solutions in the embodiments of the present application will be clearly and completely described. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the present application.
[0055] The specific implementation of the present application will be described in detail below in combination with specific embodiments.
[0056] Please refer to Figure 1 The utility model provides a kind of simulation racing sequence gear, including sequence gear body 1, the sequence gear body 1 is fixed on vehicle body by fastening bolt five 43, further include:
[0057] Clamp plate 2, the clamp plate 2 is fixedly installed on the sequence gear body 1 by fastening bolt six 44, and the sequence gear body 1 and clamp plate 2 are integrally formed by clearance fit;
[0058] Side plate one 3 and side plate two 4, the side plate one 3 and side plate two 4 are fixedly installed on the sequence gear body 1 by fastening bolt seven 45, and operating adjustment assembly is further provided on the side plate one 3 and side plate two 4;
[0059] Trigger detection component, the trigger detection component is connected with the sequence gear body 1 and clamp plate 2 respectively, and the trigger detection component is used to detect the torsional force effect of operating adjustment assembly through side plate one 3 and side plate two 4, and the force effect sensed is converted into data output;
[0060] And multi-point trigger mechanism, the multi-point trigger mechanism is connected with the sequence gear body 1, clamp plate 2, side plate one 3 and side plate two 4 respectively, and is connected with the trigger detection component, wherein, multi-point trigger mechanism includes first auxiliary trigger component and second auxiliary trigger component;
[0061] The first auxiliary trigger component is connected with the sequence gear body 1 and clamp plate 2 respectively, the second auxiliary trigger component is connected with the side plate one 3 and side plate two 4 respectively, and the first auxiliary trigger component and second auxiliary trigger component are connected with the trigger detection component.
[0062] In the use process of simulation racing sequence gear, the following functions can be realized through the mutual cooperation of operating adjustment assembly, operating handle 10, lamp strip lamp group 11, multi-point trigger mechanism and trigger detection component:
[0063] The RGB light bar module can be installed without interfering with the movement of the sequence block in a narrow space, the light bar module adopts an ultrathin recessed structure design to solve the overall space; the lampshade adopts a translucent material, which can realize light effect and protect the light bar from being damaged;
[0064] The sequence block operating arm adopts a split structure multi-hole design, which can be fixed at multiple holes to realize height multi-level adjustment and enrich user use requirements; the sequence block operating handle adopts a split structure, a multifunctional adapter is designed to realize multiple type replacement;
[0065] The sequence block structure body adopts an integrated bending hollow structure design, which is more convenient to process and lighter in weight, so that the processing cost and logistics cost are greatly reduced, and the cost is saved;
[0066] The multi-point triggering device is added, so that the user can set multiple functions and quickly switch the use function in the use process.
[0067] In an embodiment of the utility model, please refer to Figures 1-6 , the operation adjusting assembly includes:
[0068] Side plate three 5 and side plate four 6, side plate three 5 and side plate four 6 are fixedly installed on side plate one 3 and side plate two 4 by fastening bolt nine 47 and fastening bolt ten 48, wherein the fastening bolt nine 47 and fastening bolt ten 48 are respectively provided with internal thread sleeve seven 42 and internal thread sleeve six 41;
[0069] And operating handle 10, operating handle 10 is self-locked on four square adapter 28, four square adapter 28 is connected with side plate three 5 and side plate four 6 by fastening bolt four 29, and connecting plate one 7 is further arranged between four square adapter 28 and side plate three 5 and side plate four 6.
[0070] Wherein, the operating handle 10 includes handle body 10a, adapter 10b and conversion screw rod 10c, the conversion screw rod 10c is connected with the four square adapter 28, the handle body 10a is connected with the conversion screw rod 10c through the adapter 10b.
[0071] Further include: light bar light group 11, light bar light group 11 is fixedly installed on sequence block body 1 by fastening bolt one 12;
[0072] Wherein, the light bar light group 11 includes PCB light bar plate 11a and convex light source cover 11b, the PCB light bar plate 11a is connected with the sequence block body 1, and the convex light source cover 11b is further arranged on the PCB light bar plate 11a.
[0073] In an embodiment of the utility model, please refer toFigures 1-6 The trigger detection assembly comprises:
[0074] A PCB board one 13 is fixedly installed on the sequence stop body 1 through a cushion block 14 and a fastening bolt two 15;
[0075] An internally threaded sleeve two 33 is sleeved on the fastening bolt seven 45, and the internally threaded sleeve two 33 is further connected with the side plate one 3 and the side plate two 4 through the isolation sleeve 31 and the planar ball bearing two 32;
[0076] The side plate one 3 and the side plate two 4 realize self-rotation through the isolation sleeve 31, the planar ball bearing two 32, the internally threaded sleeve two 33 and the fastening bolt seven 45 as a rotating shaft;
[0077] Two magnets 36 are connected with the sequence stop body 1 through an internally threaded sleeve four 37 and a fastening bolt ten 48 one and an internally threaded sleeve five 40 and a fastening bolt ten 48 two respectively, wherein the internally threaded sleeve four 37 is sleeved on the fastening bolt ten 48 one;
[0078] And a limiting transmission unit is connected with the sequence stop body 1 and the internally threaded sleeve two 33.
[0079] The limiting transmission unit comprises:
[0080] A fastening bolt eight 46 is connected with the sequence stop body 1, and an internally threaded sleeve three 34 is sleeved on the fastening bolt eight 46, and the internally threaded sleeve three 34 is connected with the sequence stop body 1 through a planar ball bearing three 35;
[0081] And a torsion spring 18 is sleeved on the internally threaded sleeve two 33, wherein the side plate one 3 and the side plate two 4 further realize the limiting of the rotary motion and the self-return action through the torsion spring 18 and the internally threaded sleeve three 34.
[0082] In an embodiment of the utility model, still include: knock block module 30, knock block module 30 with sequence stop body 1 is connected, wherein, knock block module 30 includes hexagon nut two 30a, internal and external threaded sleeve 30b, marble 30c, cylindrical spring two 30d and screw plug 30e;
[0083] Knock block module 30 is self-locked on sequence stop body 1 through hexagon nut two 30a and internal and external threaded sleeve 30b.
[0084] The cylindrical spring two 30d is sleeved on the inner and outer threaded sleeve 30b, the plug 30e is located between the hexagonal nut two 30a and the inner and outer threaded sleeve 30b, and the elastic ball 30c is located at the top end of the inner and outer threaded sleeve 30b.
[0085] By adjusting the plug 30e forwards and backwards, the tightness of the cylindrical spring two 30d is changed, and the elastic ball 30c is extruded, so that the contact force between the elastic ball 30c and the side plate one 3 and the side plate two 4 is adjusted.
[0086] In an embodiment of the utility model, please refer to Figures 1-6 , the first auxiliary trigger assembly comprises:
[0087] The reset switch 17 is located on the clamping plate 2.
[0088] The PCB board two 16 is fixedly installed on the clamping plate 2 through the threaded nut of the reset switch 17 itself, and the PCB board two 16 is also electrically connected with the trigger detection assembly.
[0089] The second auxiliary trigger assembly comprises:
[0090] The trigger paddle 20 is fixedly installed on the side plate one 3 and the side plate two 4 through the inner threaded sleeve one 21, the plane ball bearing one 22 and the fastening bolt fifteen 53.
[0091] The connecting plate three 9 is located on the side plate one 3 and the side plate two 4, and the connecting plate two 8 is arranged between the side plate one 3 and the side plate two 4, and the cylindrical spring one 19 is arranged on the connecting plate three 9.
[0092] The trigger switch 23 is fixedly installed on the connecting plate three 9 through the fastening bolt thirteen 51 and the fastening bolt fourteen 52; the trigger paddle 20 triggers the trigger switch 23 at the bottom, and the trigger switch 23 transmits the triggered information to the PCB board one 13 through the wire group 26.
[0093] The wire group fixator 24 is fixedly installed on the side plate one 3 and the side plate two 4 through the fastening bolt three 25 and the hexagonal nut one 27.
[0094] The trigger paddle 20 rotates around the rotating shaft formed by the inner threaded sleeve one 21, the plane ball bearing one 22 and the fastening bolt fifteen 53, and the rotating movement of the trigger paddle 20 is limited and the trigger paddle 20 returns to the original position through the connecting plate three 9 and the cylindrical spring one 19.
[0095] Please refer to Figures 1-6The sequence stop body 1 is further provided with a pair of lock nuts 38 and 39 for fixing and connecting the sequence stop body 1 and the clamping plate 2.
[0096] In use, the sequence stop is fixed by the fastening bolt 5, the clamping plate 2 is fixed to the sequence stop body 1 by the fastening bolt 6, the side plate 1 and the side plate 2 are fixed to the sequence stop body 1 by the fastening bolt 7, the side plate 3 and the side plate 4 are fixed to the side plate 1 and the side plate 2 by the fastening bolt 9 and the fastening bolt 10, the operating handle 10 is locked to the square adapter 28, the light bar lamp group 11 is fixed to the sequence stop body 1 by the fastening bolt 1, the PCB 1 is fixed to the sequence stop body 1 by the cushion block 14 and the fastening bolt 2, the PCB 2 is fixed to the clamping plate 2 by the reset switch 17 and the self-threaded nut, the trigger tab 20 is fixed to the side plate 1 and the side plate 2 by the inner threaded sleeve 1, the flat ball bearing 1, and the fastening bolt 15, and is reset by the cylindrical spring 1, the trigger switch 23 is fixed to the connecting plate 3 by the fastening bolt 14, the wire group fixer 24 is fixed to the side plate 1 and the side plate 2 by the fastening bolt 3 and the hexagonal nut 1, the square adapter 28 is fixed to the side plate 3 and the side plate 4 by the fastening bolt 4, the knock block module 30 is locked to the sequence stop body 1 by the internal structure hexagonal nut 2a and the inner and outer threaded sleeve 30b, the sequence stop body 1 and the clamping plate 2 form a whole by gap fitting, the side plate 1 and the side plate 2 control the distance by the isolation sleeve 31, the inner threaded sleeve 2, and the inner threaded sleeve 3, the side plate 3 and the side plate 4 control the distance by the connecting plate 1, the inner threaded sleeve 6, and the inner threaded sleeve 7, the knock block module 30 adjusts the front and back of the plug 30e, changes the tightness of the cylindrical spring 2, and extrudes the ball 30c, so that the contact force of the ball 30c and the side plate 1 and the side plate 2 can be adjusted, the side plate 1 and the side plate 2 form a rotating axis by the isolation sleeve 31, the flat ball bearing 2, the inner threaded sleeve 2, and the fastening bolt 7, and realize self-rotation by the torsion spring 18 and the inner threaded sleeve 3, and realize rotation limit and self-return action, the trigger tab 20 forms a rotating axis by the inner threaded sleeve 1, the flat ball bearing 1, and the fastening bolt 15, and realizes rotation limit and self-return action by the connecting plate 3 and the cylindrical spring 1.
[0097] Please refer to Figures 1-6 The working principle of the sequence stop mainly includes:
[0098] By adjusting the fastening bolt 9 and the fastening bolt 10, the side plate 3 and the side plate 4 can change the up and down position and realize position adjustment.
[0099] By adjusting the screw plug 30e, the force of the cylindrical spring 30d changes, thereby changing the position of the ball 30c, and the contact force of the ball 30c with the side plate one 3 and the side plate two 4 changes, so that the sequence shift feeling and the gear shifting sound change;
[0100] By adjusting the handle body 10a, the adapter 10b and the conversion screw 10c, unscrewing the handle body 10a from the adapter 10b, replacing the handle body 10a, and realizing multi-type replacement;
[0101] In the process of human-computer interaction between the user and the hand brake, the light bar light group 11 emits light and can change the light color and gradient mode under the program driving.
[0102] In summary, the sequence shift overall structure is fixed to the user operation platform by the fastening bolt five 43, and remains stable and immovable; when the user acts on the operation handle 10, the external force applies pressure to the torsion spring 18 through the overall structure composed of the side plate one 3, the side plate two 4, the side plate three 5 and the side plate four 6, at the same time, the ball 30c in the hammer block module 30 hits the contact point of the side plate one 3 and the side plate two 4 to emit sound, realizing the simulation of the gear shifting sound of the car driving, at the same time, the magnet 36 forms induction with the PCB board one 13 through its own magnetic force, and the PCB board one 13 converts the sensed magnetic force into 16-bit resolution data output. When the user releases the operation handle 10, the torsion spring 18 starts to release force from the original twisted state, at the same time, the overall structure composed of the side plate one 3, the side plate two 4, the side plate three 5 and the side plate four 6 returns to normal; the side plate one 3 and the side plate two 4 are designed with notches and inner threaded sleeves three 34 to cooperate, so that the limit position of the operation handle 10 in the movement process can be ensured within the torsion travel of the torsion spring 18, protecting the torsion spring 18 from being damaged by being too twisted; the light bar light group 11 is connected with the external main control through the transmission line to realize the lighting and extinguishing of the PCB light bar plate 11a and the convex light source cover 11b. When the user's finger moves the trigger tab 20, the trigger tab 20 rotates around the center axis of the inner threaded sleeve one 21, the trigger tab 20 triggers the trigger switch 23 at the bottom, and the trigger switch 23 transmits the triggered information to the PCB board one 13 through the wire group 26; when the user's finger presses the reset switch 17, the reset switch 17 transmits the signal to the PCB board two 16 through the internal trigger device, the PCB board two 16 transmits the signal to the PCB board one 13 through the wire group 26, and the PCB board one 13 converts the sensed magnetic force into 16-bit resolution data output.
[0103] It should be noted that in the utility model, unless another explicit provision and limitation, the terms "sliding", "rotating", "fixed", "provided with" and other terms should be understood in a broad sense, for example, can be welded connection, can also be bolted connection, or integrated; can be mechanical connection, can also be electrical connection; can be directly connected, can also be indirectly connected through an intermediate medium, can be the communication between two elements or the interaction relationship between two elements, unless otherwise explicitly limited. For those skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.
[0104] In addition, it should be understood that although the present specification is described in terms of embodiments, not every embodiment contains only one independent technical solution, and the description of the specification is only for the sake of clarity, and those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that those skilled in the art can understand.
Claims
1. A sequential gear for a racing car, comprising a sequential gear body which is fixed to a car body by a fastening bolt, characterized in that, Also includes: The clamping plate is fixedly installed on the sequence stop body by fastening bolt six, and the sequence stop body and the clamping plate are integrally formed by gap fit; Side plate one and side plate two, said side plate one and side plate two are fixedly installed on the sequence stop body by fastening bolt seven, and the side plate one and side plate two are also provided with operation adjusting assembly; Trigger detection assembly, said trigger detection assembly is connected with the sequence stop body and the clamping plate respectively, the trigger detection assembly is used for detecting the torsion effect of operation adjusting assembly through side plate one and side plate two, and converting the sensed force into data output; And multi-point trigger mechanism, said multi-point trigger mechanism is connected with the sequence stop body, the clamping plate, side plate one and side plate two respectively, and is connected with the trigger detection assembly, wherein the multi-point trigger mechanism comprises first auxiliary trigger assembly and second auxiliary trigger assembly; The first auxiliary trigger assembly is connected with the sequence stop body and the clamping plate respectively, the second auxiliary trigger assembly is connected with the side plate one and the side plate two respectively, and the first auxiliary trigger assembly and the second auxiliary trigger assembly are connected with the trigger detection assembly.
2. The simulated racing sequential gearbox according to claim 1, wherein, The operation adjusting assembly comprises: Side plate three and side plate four, said side plate three and side plate four are fixedly installed on the side plate one and side plate two by fastening bolt nine and fastening bolt ten, wherein the fastening bolt nine and the fastening bolt ten are respectively sleeved with inner thread sleeve seven and inner thread sleeve six; And operation handle, said operation handle is self-locked on four square adapter, said four square adapter is connected with the side plate three and the side plate four through fastening bolt four, and the four square adapter is further provided with connecting plate one between the side plate three and the side plate four; Wherein, the operation handle comprises handle body, adapter and conversion screw rod, the conversion screw rod is connected with the four square adapter, and the handle body is connected with the conversion screw rod through the adapter.
3. A simulated racing sequential gearbox according to claim 1 or 2, wherein, Also includes: Lamp strip lamp group, said lamp strip lamp group is fixedly installed on the sequence stop body by fastening bolt one; Wherein, the lamp strip lamp group comprises PCB lamp strip plate and convex light source cover, the PCB lamp strip plate is connected with the sequence stop body, and the PCB lamp strip plate is further provided with convex light source cover.
4. The simulated racing sequential gearbox according to claim 3, wherein, The trigger detection assembly comprises: PCB board one, said PCB board one is fixedly installed on the sequence stop body by pad and fastening bolt two; Inner thread sleeve two, said inner thread sleeve two is sleeved on the fastening bolt seven, and the inner thread sleeve two is further connected with the side plate one and the side plate two through isolation sleeve and plane ball bearing two; Wherein, the side plate one and the side plate two form a rotating shaft by isolation sleeve, plane ball bearing two, inner thread sleeve two and fastening bolt seven to realize self-rotation; Magnet, two said magnets are connected with the sequence stop body through inner thread sleeve four and fastening bolt eleven and inner thread sleeve five and fastening bolt twelve respectively, wherein the inner thread sleeve four is sleeved on the fastening bolt eleven; And limit transmission unit, said limit transmission unit is connected with the sequence stop body and the inner thread sleeve two respectively.
5. The simulated racing sequential gearbox according to claim 4, wherein, The limiting transmission unit comprises: A fastening bolt eight is connected with the sequence stop body, and an internally threaded sleeve three is sleeved on the fastening bolt eight, and the internally threaded sleeve three is connected with the sequence stop body through a planar ball bearing three; And a torsion spring is sleeved on the internally threaded sleeve two, wherein the side plate one and the side plate two also realize the limiting of the rotary motion and the self-return action through the torsion spring and the internally threaded sleeve three.
6. The simulated racing sequential gearbox according to claim 5, wherein, It also comprises: A knock module is connected with the sequence stop body, wherein the knock module comprises a hexagon nut two, an internal and external threaded sleeve, a ball, a cylindrical spring two and a plug; The knock module is self-locked on the sequence stop body through the hexagon nut two and the internal and external threaded sleeve; The cylindrical spring two is sleeved on the internal and external threaded sleeve, the plug is located between the hexagon nut two and the internal and external threaded sleeve, and the ball is located at the top end of the internal and external threaded sleeve; By adjusting the plug forward and backward, the tightness of the cylindrical spring two is changed, and the ball is extruded, so as to adjust the contact force between the ball and the side plate one and the side plate two.
7. The simulated racing sequential gearbox according to claim 1, wherein, The first auxiliary trigger assembly comprises: A reset switch is located on the clamping plate; And a PCB board two is fixedly installed on the clamping plate through the threaded nut of the reset switch itself, and the PCB board two is also electrically connected with the trigger detection assembly.
8. The simulated racing sequential gearbox according to claim 7, wherein, The second auxiliary trigger assembly comprises: A trigger tab is fixedly installed on the side plate one and the side plate two through an internally threaded sleeve one, a planar ball bearing one and a fastening bolt fifteen; A connecting plate three is located on the side plate one and the side plate two, and a connecting plate two is arranged between the side plate one and the side plate two, and a cylindrical spring one is arranged on the connecting plate three; Wherein, the trigger switch is fixedly installed on the connecting plate three through the fastening bolt thirteen and the fastening bolt fourteen; the trigger tab triggers the trigger switch at the bottom, and the trigger switch transmits the triggered information to the PCB board one through the wire group; A wire group fixator is fixedly installed on the side plate one and the side plate two through the fastening bolt three and the hexagon nut one; Wherein, the trigger tab realizes self-rotation through the internally threaded sleeve one, the planar ball bearing one and the fastening bolt fifteen to form a rotary axis, and realizes the limiting of the rotary motion and the self-return action through the connecting plate three and the cylindrical spring one.
9. The simulated racing sequential gearbox according to claim 1, wherein, The sequence stop body is also provided with a locking nut one and a locking nut two for fixedly connecting the sequence stop body and the clamping plate.