Brushing platform
By designing tilting support components and limiting components in the writing platform, the problem of low installation efficiency of the writing platform is solved, enabling rapid positioning and installation of the controller to be written, and improving writing efficiency.
Patent Information
- Application Number
- CN202520051663.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-09
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2035-01-09
AI Technical Summary
Existing flashing platforms are inefficient when installing intelligent driving controllers, requiring repeated confirmation of whether the controller is in the preset position, which affects work efficiency.
A writing platform was designed. By tilting the support component onto the frame and setting a first limiting component at the lower end of the support component, the limiting component is used to achieve rapid positioning and installation of the controller to be written, thereby improving installation efficiency.
By using the tilting design of the support components and the coordination of the limiting components, the controller to be written can be quickly positioned and installed, improving installation efficiency and thus increasing writing efficiency.
Smart Images

Figure CN223677401U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of vehicle controller flashing, and particularly relates to a flashing platform. BACKGROUND
[0002] In the related art, a smart driving controller of a vehicle is pre-inputted with a set of control programs. If the control programs need to be updated when the vehicle is shipped, the smart driving controller needs to be flashed by using a flashing platform. Meanwhile, if the control programs of the smart driving controller need to be updated in the process of using the vehicle, the smart driving controller also needs to be flashed by using the flashing platform. The current flashing platform has low installation efficiency for the smart driving controller. In order to realize reliable positioning of the smart driving controller, it is necessary to repeatedly confirm whether the smart driving controller is in a preset position, which greatly affects the work efficiency. CONTENT OF THE UTILITY MODEL
[0003] Embodiments of the present application provide a flashing platform, which improves the installation efficiency of a to-be-flashed controller to at least partially solve the above technical problems.
[0004] In order to achieve the above purpose, a flashing platform is provided, which comprises:
[0005] a frame body;
[0006] a support connected to the frame body, the support being obliquely arranged, and a first limiting piece being connected to a lower end of the support.
[0007] Optionally, the support comprises:
[0008] a first support part connected to the frame body;
[0009] a second support part connected to the frame body;
[0010] wherein the first support part and the second support part are arranged at intervals along a first direction, and the first support part and the second support part have a height difference.
[0011] Optionally, the first support part and the second support part both extend along a second direction and are formed with at least two mounting positions arranged at intervals along the second direction, one of the mounting positions being configured to support one to-be-flashed controller, wherein the first direction and the second direction are arranged at an angle.
[0012] Optionally, the support is connected with at least two second limiting pieces, the at least two second limiting pieces being arranged at intervals along the second direction, and a region between every adjacent two second limiting pieces forming one mounting position.
[0013] Optionally, the second limiting piece comprises:
[0014] a first limiting rod connected with the support;
[0015] a second limiting rod connected with the support, and the second limiting rod is arranged in the second direction and spaced from the first limiting rod;
[0016] a connecting rod connected between the first limiting rod and the second limiting rod;
[0017] Wherein, in the direction close to the support surface of the support, the first limiting rod is inclined towards the direction close to the mounting position adjacent thereto, and the second limiting rod is inclined towards the direction close to the mounting position adjacent thereto.
[0018] Optionally, the first limiting rod is sleeved with a first protective layer; and / or, the second limiting rod is sleeved with a second protective layer.
[0019] Optionally, a fan is connected between the first support part and the second support part, and the fan is arranged in the second direction and staggered with the mounting position.
[0020] Optionally, the rack body has a first side close to an operator, and in the direction away from the first side, the fan is inclined towards the direction away from the support.
[0021] Optionally, the to-be-flashed controller is provided with a temperature sensor for acquiring its own temperature, and the flashing platform further comprises:
[0022] a control unit electrically connected with the temperature sensor and the fan, the to-be-flashed controller being provided with a first temperature setting value, a second temperature setting value and a third temperature setting value, the control unit being configured to drive the fan to start in response to the temperature feedback by the temperature sensor being greater than or equal to the first temperature setting value, drive the fan to stop in response to the temperature feedback by the temperature sensor being less than or equal to the second temperature setting value, and drive the flashing unit of the flashing platform to stop working and drive the fan to start or keep the fan in the starting state in response to the temperature feedback by the temperature sensor being greater than or equal to the third temperature setting value.
[0023] Wherein, the third temperature setting value is greater than the first temperature setting value, and the first temperature setting value is greater than the second temperature setting value.
[0024] Optionally, the first limiting part comprises:
[0025] a main body segment connected with the support;
[0026] a bending segment connected with one end of the main body segment away from the support;
[0027] The main body section is configured to support a controller to be programmed, and the bending section is configured to be clamped with a connecting piece of the controller to be programmed.
[0028] Optionally, a wire passing hole is formed on the main body section, and the wire passing hole is configured to pass a cable of the controller to be programmed.
[0029] Optionally, the programming platform further comprises:
[0030] A pressing mechanism is connected to an end of the frame body away from the first limiting member, and the pressing mechanism is configured to press the controller to be programmed against the supporting member.
[0031] Optionally, the pressing mechanism comprises:
[0032] A pressing rod is rotationally connected to the frame body, and the pressing rod is configured to press the controller to be programmed;
[0033] A connecting rod is rotationally connected with the pressing rod;
[0034] A crank is rotationally installed at one end with the frame body and rotationally connected at the other end with an end of the connecting rod away from the pressing rod;
[0035] A rocker is connected with the crank, and the rocker is used to drive the crank to rotate, so that the crank drives the pressing rod to act through the connecting rod.
[0036] Optionally, the pressing mechanism has a locked state and an unlocked state, in the locked state, the pressing rod abuts against the controller to be programmed, and in the unlocked state, the pressing rod is arranged away from the controller to be programmed, wherein the rocker is configured to switch the pressing mechanism between the locked state and the unlocked state under the action of an external force.
[0037] Optionally, the pressing mechanism has a first dead point position and a second dead point position, in the first dead point position and the second dead point position, an axis of the crank and an axis of the connecting rod are parallel to each other, wherein in the locked state, the pressing rod abuts against the controller to be programmed, and the pressing mechanism is at or passes through the first dead point position, and in the unlocked state, the pressing rod is arranged away from the controller to be programmed, and the pressing mechanism is at or passes through the second dead point position.
[0038] Optionally, the crank has oppositely arranged first and second ends, and the frame body is provided with a third limiting member, in the locked state, the first end of the crank abuts against the third limiting member, and in the unlocked state, the second end of the crank abuts against the third limiting member.
[0039] In the burn-in platform of the embodiment of the present application, the support member is arranged to be inclined on the frame body, and the first limiting member is arranged at the lower end of the support member. When the to-be-burn-in controller is placed on the support member, the to-be-burn-in controller can slide along the inclined direction of the support member, and the first limiting member is used to limit and position the to-be-burn-in controller, so that the to-be-burn-in controller can be quickly positioned and installed, and the installation efficiency of the to-be-burn-in controller is improved, thereby improving the burn-in efficiency.
[0040] Other features and advantages of the present application will be described in detail in the following detailed description. BRIEF DESCRIPTION OF DRAWINGS
[0041] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the drawings needed to be used in the embodiment description. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can also be obtained by those skilled in the art without creative labor on the basis of these drawings.
[0042] In order to more completely understand the present application and its beneficial effects, the following will be described in conjunction with the drawings, wherein the same reference numerals in the following description represent the same parts.
[0043] Figure 1 is a structural schematic view of the burn-in platform provided in the exemplary embodiment of the present application;
[0044] Figure 2 is a structural schematic view of the burn-in platform provided in the exemplary embodiment of the present application when the pressing mechanism is in the unlocked state;
[0045] Figure 3 is a structural schematic view of the burn-in platform provided in the exemplary embodiment of the present application when the pressing mechanism is in the locked state;
[0046] Figure 4 is a side view of the burn-in platform provided in the exemplary embodiment of the present application;
[0047] Figure 5 is a top view of the burn-in platform provided in the exemplary embodiment of the present application;
[0048] Figure 6 is a structural schematic view of the first limiting member provided in the exemplary embodiment of the present application;
[0049] Figure 7 is a side view of the pressing mechanism provided in the exemplary embodiment of the present application when the pressing mechanism is in the unlocked state;
[0050] Figure 8 is a side view of the pressing mechanism provided in the exemplary embodiment of the present application when the pressing mechanism is in the locked state;
[0051] Figure 9 is a structural schematic view of a crank and rocker provided in the exemplary embodiments of the present application;
[0052] Figure 10 is a three-dimensional structural schematic view of a pressing mechanism provided in the exemplary embodiments of the present application.
[0053] Explanation of reference signs:
[0054] 1, frame body; 11, first side; 12, universal wheel;
[0055] 2, support; 21, first support part; 22, second support part; 23, mounting position;
[0056] 3, first limiting part; 31, main body section; 32, bent section; 33, wire passing hole;
[0057] 4, second limiting part; 41, first limiting rod; 42, connecting rod;
[0058] 5, fan; 51, mounting frame;
[0059] 6, pressing mechanism; 61, pressing rod; 62, connecting rod; 63, crank; 631, first end; 632, second end; 64, rocker; 65, connecting shaft;
[0060] 7, third limiting part;
[0061] 8, to-be-flashed controller; 81, connecting part. DETAILED DESCRIPTION
[0062] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative effort belong to the protection scope of the present application.
[0063] Please refer to Figures 1 to 10 The present application provides a flashing platform. The flashing platform comprises a frame body 1 and a support 2. The support 2 is connected to the frame body 1. The support 2 is arranged obliquely. The lower end of the support 2 is connected with a first limiting part 3.
[0064] In the embodiment of the present application, the support 2 is arranged to be inclined on the frame 1, and the first limiting piece 3 is arranged at the lower end of the support 2. When the to-be-flashed controller 8 is placed on the support 2, the to-be-flashed controller 8 can slide along the inclined direction of the support 2, and the first limiting piece 3 can limit and position the to-be-flashed controller 8, so that the to-be-flashed controller 8 can be quickly positioned and installed, and the installation efficiency of the to-be-flashed controller 8 is improved, thereby improving the flashing efficiency.
[0065] It can be understood that, since the first limiting piece 3 is located at the lower end of the support 2, when the to-be-flashed controller 8 is placed on the support 2, based on the sliding of the to-be-flashed controller 8 on the support 2, the lower side of the to-be-flashed controller 8 will inevitably contact the first limiting piece 3. When the to-be-flashed controller 8 abuts against the first limiting piece 3, the positioning and fixing of the to-be-flashed controller 8 can be achieved. Therefore, when the to-be-flashed controller 8 abuts against the first limiting piece 3, it is determined that the to-be-flashed controller 8 has been positioned and fixed at the preset position, and it is not necessary to verify whether the to-be-flashed controller 8 is positioned at the preset position, so that the installation efficiency of the to-be-flashed controller 8 is improved, thereby improving the flashing efficiency.
[0066] It should be noted that the inclination angle of the support 2 is γ, which satisfies 2°≤γ≤5°. Based on the angle design of the support 2, the to-be-flashed controller 8 can slide along the support 2, and the pressing mechanism 6 can press the support 2. It can be understood that, if the inclination angle of the support 2 is less than 2°, the to-be-flashed controller 8 may not be able to slide along the support 2, and the operator needs to manually push the to-be-flashed controller 8. If the inclination angle of the support 2 is greater than 5°, the to-be-flashed controller 8 will be raised to a large extent, so that the pressing mechanism 6 cannot be pressed on the upper surface of the other end of the to-be-flashed controller 8.
[0067] For example, the inclination angle of the support 2 is set to 2°, 3°, 4°, 5°, or any value between any two of them.
[0068] In some embodiments, the frame 1 is a square frame. The bottom of the frame 1 is connected with a plurality of universal wheels 12. The universal wheels 12 can adopt universal wheels with self-locking mechanisms.
[0069] In some embodiments, the flashing platform further comprises a flashing unit. The flashing unit is used to flash the to-be-flashed controller 8, so as to update and upgrade the control program in the to-be-flashed controller 8.
[0070] As shown in FIG. 1, Figure 4 In some embodiments, the support 2 comprises a first support part 21 and a second support part 22. The first support part 21 is connected to the frame 1. The second support part 22 is connected to the frame 1. The first support part 21 and the second support part 22 are arranged to be spaced apart along a first direction, and the first support part 21 and the second support part 22 have a height difference.
[0071] It can be understood that the first support part 21 and the second support part 22 arranged at intervals form the support 2, so that the contact area of the to-be-flashed controller 8 with the support 2 can be reduced, and the sliding of the to-be-flashed controller 8 on the support 2 is facilitated. Meanwhile, the support 2 has a hollow region, which facilitates heat dissipation of the bottom of the to-be-flashed controller 8.
[0072] For example, the height of the first support part 21 is higher than the height of the second support part 22. The first limiting part 3 is connected to the second support part 22. When the to-be-flashed controller 8 is placed on the first support part 21 and the second support part 22, the to-be-flashed controller 8 will slide towards the second support part 22 and abut against the first limiting part 3, so as to realize positioning and installation of the to-be-flashed controller 8.
[0073] For example, the height of the first support part 21 is lower than the height of the second support part 22. The first limiting part 3 is connected to the first support part 21. When the to-be-flashed controller 8 is placed on the first support part 21 and the second support part 22, the to-be-flashed controller 8 will slide towards the first support part 21 and abut against the first limiting part 3, so as to realize positioning and installation of the to-be-flashed controller 8.
[0074] In some embodiments, the first support part 21 and the second support part 22 are arranged in a circular shape. For example, the first support part 21 and the second support part 22 are both round steel. In this way, the first support part 21 and the second support part 22 not only have good support strength, but also further reduce the contact area of the to-be-flashed controller 8 with the support 2, facilitating the sliding of the to-be-flashed controller 8.
[0075] In some embodiments, the first support part 21 and the second support part 22 are welded to the frame 1. Alternatively, the first support part 21 and the second support part 22 are fixed to the frame 1 by fasteners. For example, the first support part 21 and the second support part 22 are both fixed to the frame 1 by screws, rivets, etc.
[0076] As shown in FIG. 1, Figure 4 In some embodiments, the first support part 21 and the second support part 22 both extend along a second direction and are formed with at least two mounting positions 23 arranged at intervals along the second direction, one mounting position 23 being configured to support one to-be-flashed controller 8, wherein the first direction and the second direction are arranged at an angle.
[0077] It can be understood that, based on the fact that the first support part 21 and the second support part 22 both extend along the second direction and are formed with multiple mounting positions 23, multiple to-be-flashed controllers 8 can be positioned and installed on the support 2 at the same time. In this way, the installation of multiple to-be-flashed controllers 8 can be realized by one positioning part, without the need to arrange a positioning structure for each to-be-flashed controller 8 to be positioned and fixed one by one, so that the cost of positioning and fixing can be reduced and the efficiency of positioning and fixing can be improved.
[0078] It should be noted that the first support portion 21 and the second support portion 22 have the same extension length. For example, both the first support portion 21 and the second support portion 22 penetrate through the frame 1 along the second direction.
[0079] In some embodiments, the first direction forms an acute angle with the second direction. Alternatively, the first direction forms an obtuse angle with the second direction. Or, the first direction is perpendicular to the second direction. For example, the first direction is the width direction of the frame 1, and the second direction is the length direction of the frame 1.
[0080] like Figure 1 As shown, in some embodiments, the support member 2 is connected to at least two second limiting members 4, the at least two second limiting members 4 are spaced apart along the second direction, and the area between each pair of adjacent second limiting members 4 forms a mounting position 23.
[0081] It is understood that by connecting at least two spaced second limiting members 4 to the support member 2, a mounting position 23 is formed between each pair of adjacent second limiting members 4, thereby enabling the installation of the controller 8 to be written. The second limiting members 4 can limit the controller 8 to be written on opposite sides, ensuring reliable installation of the controller 8.
[0082] For example, if the width of the controller 8 to be written is set to 42 mm, the spacing between each pair of adjacent second limiters 4 can also be set to 42 mm so that the controller 8 to be written can be placed exactly in the mounting position 23.
[0083] In some embodiments, at least two second limiting members 4 are connected to the upper surface of the first support portion 21. Alternatively, at least two second limiting members 4 are connected to the upper surface of the second support portion 22. Alternatively, at least two second limiting members 4 are connected to the upper surface of the first support portion 21, and at least two second limiting members 4 are also connected to the upper surface of the second support portion 22, and the second limiting members 4 on the first support portion 21 correspond one-to-one with the second limiting members 4 on the second support portion 22.
[0084] It should be noted that the second limiting member 4 extends along the height direction of the frame 1. The height of the second limiting member 4 is less than or equal to the height of the controller 8 to be written, so as to facilitate the installation of the controller 8. The height of the second limiting member 4 can be greater than half the height of the controller 8 to be written, so that the second limiting member 4 can reliably limit and support the opposite sides of the controller 8 to be written.
[0085] In some embodiments, the second limiting member 4 may be welded to the upper surface of the first support portion 21 and / or the upper surface of the second support portion 22. Alternatively, the second limiting member 4 may be fixed to the upper surface of the first support portion 21 and / or the upper surface of the second support portion 22 by fasteners.
[0086] As shown in FIGS. 1 and 2, in some embodiments, the second limiting member 4 comprises a first limiting rod 41, a second limiting rod and a connecting rod 42. The first limiting rod 41 is connected with the support member 2. The second limiting rod is connected with the support member 2, and the second limiting rod is spaced apart from the first limiting rod 41 along the second direction. The connecting rod 42 is connected between the first limiting rod 41 and the second limiting rod. Wherein, along the direction close to the support surface of the support member 2, the first limiting rod 41 is inclined towards the direction close to the mounting position 23 adjacent thereto, and the second limiting rod is inclined towards the direction close to the mounting position 23 adjacent thereto. Figure 1 Figure 4 It can be understood that for one mounting position 23, it is limited by two second limiting members 4. One side of the mounting position 23 is limited by the first limiting rod 41 of one second limiting member 4, and the other side of the mounting position 23 is limited by the second limiting rod of the other second limiting member 4. Since the first limiting rod 41 and the second limiting rod are both inclined towards the direction close to the mounting position 23 adjacent thereto, the mounting position 23 limited by the first limiting rod 41 and the second limiting rod will be tapered. That is, the mounting position 23 is in the shape of wide at the top and narrow at the bottom. Thus, it is convenient to place the to-be-flashed controller 8 in the mounting position 23.
[0087] It should be noted that the support surface of the support member 2 is the upper surface of the support member 2.
[0088] In some embodiments, the first limiting rod 41, the second limiting rod and the connecting rod 42 are integrally formed. For example, the first limiting rod 41, the second limiting rod and the connecting rod 42 are all metal rod members, and the three are integrally stamped and formed.
[0089] It can be understood that the first limiting rod 41 and the second limiting rod both extend along the height direction of the rack body 1. The connecting rod 42 extends along the second direction, so that the two adjacent mounting positions 23 are spaced apart along the second direction. Thus, when the to-be-flashed controller 8 is installed in the mounting position 23, the two adjacent to-be-flashed controllers 8 are spaced apart, so as to facilitate the heat dissipation of the to-be-flashed controller 8.
[0090] In some embodiments, the inclination angle of the first limiting rod 41 is α, which satisfies: 3°≤α≤5°. And / or, the inclination angle of the second limiting rod is β, which satisfies: 3°≤β≤5°.
[0091] For example, the inclination angle of the first limiting rod 41 is set to 3°, 4°, 5°, or any value between any two of them. The inclination angle of the second limiting rod is set to 3°, 4°, 5°, or any value between any two of them.
[0092] For example, the inclination angle of the first limiting rod 41 is set to 3°, 4°, 5°, or any value between any two of them. The inclination angle of the second limiting rod is set to 3°, 4°, 5°, or any value between any two of them.
[0093] In some embodiments, the first limiting rod 41 is sleeved with a first protective layer. And / or, the second limiting rod is sleeved with a second protective layer.
[0094] It is understandable that, since both the first limiting rod 41 and the second limiting rod are metal rods, direct hard contact between the controller 8 to be written and the first limiting rod 41 and the second limiting rod may damage the controller 8. This embodiment of the application is based on the first limiting rod 41 being fitted with a first protective layer and / or the second limiting rod being fitted with a second protective layer, thereby allowing the first protective layer and / or the second protective layer to contact the controller 8, forming a soft contact and preventing damage to the controller 8.
[0095] In some embodiments, both the first protective layer and the second protective layer may include a corrugated pipe, a rubber sheath, a foam sheath, etc.
[0096] In some embodiments, the first limiting rod 41 is sleeved with a first protective layer, and the second limiting rod is sleeved with a second protective layer.
[0097] like Figure 4 and Figure 5 As shown, in some embodiments, a fan 5 is connected between the first support portion 21 and the second support portion 22. At least two fans 5 are provided. Along the second direction, the fans 5 are staggered with the mounting positions 23.
[0098] It is understandable that, based on the fan 5 being provided between the first support 21 and the second support 22, when the controller to be written is installed in the mounting position 23, the fan 5 can cool the side of the controller to be written so that the controller to be written can be maintained at a suitable temperature for writing.
[0099] In some embodiments, a mounting bracket 51 is connected between the first support portion 21 and the second support portion 22. The mounting bracket 51 has a plurality of mounting holes, which are offset from the mounting position 23. The fan 5 is installed in the mounting holes.
[0100] Please continue reading. Figure 4 In some embodiments, the frame 1 has a first side 11 closer to the operator. Along a direction away from the first side 11, the fan 5 is tilted away from the support 2.
[0101] Understandably, the tilting of the fan 5 serves two purposes: firstly, it prevents the air blown by the fan 5 from hitting the operator's face and affecting the operator's wiring and / or unplugging operations; secondly, it increases the area of airflow on the controller 8 to be written, thereby improving the heat dissipation effect of the fan 5 on the controller 8.
[0102] It should be noted that the inclination angle of the fan 5 is δ, which satisfies: 6°≤δ≤10°. Based on the angle design of the fan 5, it is ensured that the wind blown by the fan 5 does not blow to the face of the operator, preventing the fan 5 from affecting the operation of the operator to connect and / or disconnect the line, while also ensuring that the fan 5 can act on a larger area of the to-be-flashed controller 8, improving the heat dissipation effect on the to-be-flashed controller 8.
[0103] It can be understood that since the operator will lean forward when performing the connection and / or disconnection operation, the face of the operator can pass a certain distance from the first side 11. When the inclination angle of the fan 5 is less than 6°, the wind blown by the fan 5 can still blow to the face of the operator, making the operator feel uncomfortable and affecting the operation. When the inclination angle of the fan 5 is greater than 10°, a part of the wind blown by the fan 5 can not blow from the upper side of the to-be-flashed controller 8, but directly blow from the rear side of the to-be-flashed controller 8, which will result in that the acting area of the fan 5 on the to-be-flashed controller 8 is reduced, affecting the heat dissipation effect of the to-be-flashed controller 8.
[0104] For example, the inclination angle of the fan 5 is set to 6°, 8°, 10°, or any value between any two of them.
[0105] In some embodiments, the to-be-flashed controller 8 is provided with a temperature sensor for acquiring the temperature of itself. The flashing platform further comprises a control unit. The control unit is electrically connected with the temperature sensor and the fan 5, and the to-be-flashed controller 8 is provided with a first temperature setting value, a second temperature setting value and a third temperature setting value. The control unit is configured to drive the fan 5 to start in response to the temperature fed back by the temperature sensor being greater than or equal to the first temperature setting value. Also in response to the temperature fed back by the temperature sensor being less than or equal to the second temperature setting value, the fan 5 is driven to be turned off. And in response to the temperature fed back by the temperature sensor being greater than or equal to the third temperature setting value, the flashing unit of the flashing platform is driven to stop working, and the fan 5 is driven to start or keep starting. Wherein, the third temperature setting value is greater than the first temperature setting value, and the first temperature setting value is greater than the second temperature setting value.
[0106] Understandably, the controller 8 to be flashed will experience a temperature rise during the flashing process. The temperature sensor, after acquiring the temperature of the controller 8, can feed the temperature parameter back to the control unit of the flashing platform. The control unit may include a comparator and a memory. The first, second, and third temperature setpoints are all stored in the memory. The comparator compares the temperature parameter with the first, second, and third temperature setpoints stored in the controller 8. When the comparator determines that the temperature parameter is greater than or equal to the first temperature setpoint, the control unit will drive the fan 5 to turn on, thereby cooling the controller 8. When the comparator determines that the temperature parameter is less than or equal to the second temperature setpoint, it indicates that the controller 8 has been successfully cooled, and the control unit will drive the fan 5 to turn off. However, when the comparator determines that the temperature parameter is greater than or equal to the third temperature setpoint, it indicates that the fan 5 is not effectively cooling the controller 8. In this case, the control unit controls the flashing unit to stop working and drives the fan 5 to turn on or keeps the fan 5 on.
[0107] In some embodiments, the first temperature setting can be set to 60 degrees Celsius, the second temperature setting can be set to 50 degrees Celsius, and the third temperature setting can be set to 80 degrees Celsius.
[0108] like Figure 6 As shown, in some embodiments, the first limiting member 3 includes a main body segment 31 and a bent segment 32. The main body segment 31 is connected to the support member 2. The bent segment 32 is connected to the end of the main body segment 31 away from the support member 2. The main body segment 31 is configured to support the controller 8 to be written. The bent segment 32 is configured to engage with the connector 81 of the controller 8 to be written.
[0109] Understandably, the main body segment 31 is horizontally positioned at the lower end of the support member 2, allowing it to contact a portion of the lower surface of the controller 8 to be written, thus providing some support. The bent segment 32 connects to the end of the main body segment 31 furthest from the support member 2. When the controller 8 slides along the inclined support member 2, its lower side abuts against the bent segment 32. When the connector 81 of the controller 8 is engaged with the bent segment 32, the controller 8 is positioned. This enables rapid positioning of the controller 8 and improves its writing efficiency.
[0110] It should be noted that the first limiting piece 3 extends along the second direction. The main body section 31 and the bending section 32 both extend along the second direction. When the plurality of to-be-flashed controllers 8 are notified of the installation on the flashing platform, the main body section 31 and the bending section 32 with a certain extension length can be used to simultaneously support and limit and fix the plurality of to-be-flashed controllers 8, so as to ensure the positioning and installation of the plurality of to-be-flashed controllers 8. In this way, a single positioning structure is not needed to position and fix the to-be-flashed controllers 8 one by one, so as to reduce the cost of positioning and fixing and improve the efficiency of positioning and fixing.
[0111] In some embodiments, the main body section 31 and the bending section 32 are integrally formed. For example, the main body section 31 and the bending section 32 are both metal pieces, and the main body section 31 and the bending section 32 are integrally stamped and formed.
[0112] As shown in Figure 6 , the bending section 32 is substantially U-shaped, so that the bending section 32 can form a groove structure after being connected with the main body section 31. The groove structure can be used to clasp the connecting piece 81 of the to-be-flashed controller 8, so as to achieve the limiting and positioning and fixing of the to-be-flashed controller 8. The shape of the bending section 32 can be matched with the shape of the connecting piece 81 of the to-be-flashed controller 8, and the bending shape of the bending section 32 can be reasonably set based on the shape of the connecting piece 81.
[0113] Please continue to refer to Figure 6 In some embodiments, the main body section 31 is provided with a wire passing hole 33, and the wire passing hole 33 is configured to pass the cable of the to-be-flashed controller 8.
[0114] It can be understood that when the to-be-flashed controller 8 is flashed by the flashing platform, the to-be-flashed controller 8 needs to be electrically connected with the flashing platform. Therefore, the to-be-flashed controller 8 needs to be connected to the flashing platform through a cable. In this embodiment, the wire passing hole 33 is formed on the main body section 31 to pass the cable of the to-be-flashed controller 8, so as to achieve the electrical connection between the to-be-flashed controller 8 and the flashing platform and facilitate the wiring of the to-be-flashed controller 8.
[0115] It should be noted that the main body section 31 is provided with at least two wire passing holes 33 at intervals. One to-be-flashed controller 8 corresponds to one wire passing hole 33. The shape of the wire passing hole 33 can be set as a semicircle, a square or any other shape, so as to ensure that the cable of the to-be-flashed controller 8 can pass through the wire passing hole 33.
[0116] As shown in Figures 7 to 10 , in some embodiments, the flashing platform further includes a pressing mechanism 6. The pressing mechanism 6 is connected to the end of the frame body 1 away from the first limiting piece 3. The pressing mechanism 6 is configured to press the to-be-flashed controller 8 against the supporting piece 2.
[0117] It can be understood that the lower end of one side of the to-be-flashed controller 8 is in abutment with the first limiting piece 3, forming positioning and position locking. The upper end of the other side of the to-be-flashed controller 8 is pressed by the pressing mechanism 6, so that the to-be-flashed controller 8 can be reliably fixed on the support piece 2.
[0118] As shown in Figure 7 some embodiments, the pressing mechanism 6 includes a pressing rod 61, a connecting rod 62, a crank 63, and a rocker 64. The pressing rod 61 is rotationally connected to the frame 1, and is configured to press the to-be-flashed controller 8. The connecting rod 62 is rotationally connected to the pressing rod 61. One end of the crank 63 is rotationally mounted to the frame 1, and the other end is rotationally connected to the connecting rod 62 away from the pressing rod 61. The rocker 64 is connected to the crank 63. The rocker 64 is used to drive the crank 63 to rotate, so that the crank 63 drives the pressing rod 61 to act through the connecting rod 62.
[0119] It can be understood that the pressing mechanism 6 is a four-bar linkage 62 mechanism. The rocker 64 is connected to the crank 63, and the operator drives the rocker 64 to act, which can make the crank 63 rotate. When the crank 63 rotates, the crank 63 can drive the connecting rod 62 to act, so that the connecting rod 62 drives the pressing rod 61 to rotate. Since the pressing rod 61 is used to press the to-be-flashed controller 8, the rocker 64 can switch the pressing rod 61 from the unlocked state to the locked state, so that the pressing rod 61 can abut against the upper surface of the to-be-flashed controller 8, to reliably fix the to-be-flashed controller 8 on the support piece 2.
[0120] As shown in Figure 9 and Figure 10 , the rocker 64 and the crank 63 are connected through a connecting shaft 65, so that the rocker 64 and the crank 63 are located on the outside and the inside of the frame 1, respectively.
[0121] It should be noted that the pressing rod 61 is arranged in a U shape, having a pressing section extending in the second direction and connecting sections at both ends of the pressing section. The connecting sections are rotationally connected to the frame 1, and the pressing section is used to press the to-be-flashed controller 8.
[0122] To ensure that the connecting rod 62 can drive the pressing rod 61 to act, the end of the connecting rod 62 away from the crank 63 is rotationally connected to the position of the connecting section away from the frame 1.
[0123] As shown in Figure 2 and Figure 3 , in some embodiments, the pressing mechanism 6 has a locked state and an unlocked state. In the locked state, the pressing rod 61 is in abutment with the to-be-flashed controller 8. In the unlocked state, the pressing rod 61 is arranged away from the to-be-flashed controller 8. The pressing mechanism 6 is configured to switch between the locked state and the unlocked state after an external force acts on the rocker 64.
[0124] It can be understood that when the pressing mechanism 6 is in the unlocking state, the to-be-flashed controller 8 can be installed in the installation position 23 or taken out from the installation position 23. When the pressing mechanism 6 is in the locking state, the to-be-flashed controller 8 is located in the installation position 23, and the pressing rod 61 abuts against the to-be-flashed controller 8, so that the to-be-flashed controller 8 can be reliably fixed on the flashing platform.
[0125] It should be noted that the external force can be an action force applied by an operator to the rocker 64. When the operator drives the rocker 64 to rotate, the pressing rod 61 can be driven to rotate through the transmission of the crank 63 and the connecting rod 62, so that the pressing mechanism 6 is switched from the unlocking state to the locking state or from the locking state to the unlocking state. The external force can also be mechanical. For example, the rocker 64 is connected to a mechanical arm, and the rocker 64 is driven to rotate by the mechanical arm, so that the pressing rod 61 is driven to rotate through the transmission of the crank 63 and the connecting rod 62, so that the pressing mechanism 6 is switched from the unlocking state to the locking state or from the locking state to the unlocking state.
[0126] As shown in Figure 7 and Figure 8 , when the external force drives the rocker 64 to rotate counterclockwise, the pressing mechanism 6 can be switched from the unlocking state to the locking state. When the external force drives the rocker 64 to rotate clockwise, the pressing mechanism 6 can be switched from the locking state to the unlocking state.
[0127] Please continue to refer to Figure 7 and Figure 8 , in some embodiments, the pressing mechanism 6 has a first dead center position and a second dead center position. In the first dead center position and the second dead center position, the axis of the crank 63 and the axis of the connecting rod 62 are parallel to each other. Among them, in the locking state, the pressing rod 61 abuts against the to-be-flashed controller 8, and the pressing mechanism 6 is in the first dead center position or passes through the first dead center position. In the unlocking state, the pressing rod 61 is arranged away from the to-be-flashed controller 8, and the pressing mechanism 6 is in the second dead center position or passes through the second dead center position.
[0128] It can be understood that when the pressing mechanism 6 is in the locking state, the pressing mechanism 6 is in the first dead center position or passes through the first dead center position, so that the pressing rod 61 cannot act or can only act in a small range, thereby ensuring the reliable abutment of the pressing rod 61 to the to-be-flashed controller 8. When the pressing mechanism 6 is in the unlocking state, the pressing mechanism 6 is in the second dead center position or passes through the second dead center position, so that the pressing rod 61 cannot act or can only act in a small range, thereby ensuring the reliability of the position of the pressing rod 61.
[0129] In this embodiment, based on the application of the first dead center position and the second dead center position, the pressing mechanism 6 can be mechanically self-locked when it is in the locking state and the unlocking state, thereby ensuring the stability of the pressing mechanism 6.
[0130] It should be noted that, at the first dead point position, the axis of the crank 63 is parallel to the axis of the connecting rod 62, and the angle between the crank 63 and the connecting rod 62 and the frame body 1 is A1. At the second dead point position, the axis of the crank 63 is parallel to the axis of the connecting rod 62, and the angle between the crank 63 and the connecting rod 62 and the frame body 1 is A2. It is satisfied that A1≠A2.
[0131] In some embodiments, the compression mechanism 6 is at the first dead point position when the compression mechanism 6 is in the locked state, and the compression mechanism 6 is at the second dead point position when the compression mechanism 6 is in the unlocked state.
[0132] In some embodiments, due to the manufacturing tolerances of the compression mechanism 6 and the third limiting piece 7, the compression mechanism 6 is at the first dead point position when the compression mechanism 6 is in the locked state, and the compression mechanism 6 is at the second dead point position when the compression mechanism 6 is in the unlocked state, so as to prevent the compression mechanism 6 from being unable to achieve self-locking due to the manufacturing tolerances and the compression mechanism 6 not reaching the first dead point position or the second dead point position.
[0133] The first dead point position in the embodiment of the application refers to that, after the axis of the crank 63 is parallel to the axis of the connecting rod 62, the rocker 64 is continuously rotated to set the axis of the crank 63 and the axis of the connecting rod 62 at a certain angle. For example, the axis of the crank 63 and the axis of the connecting rod 62 are set at an angle of 3° to 5°. The second dead point position in the embodiment of the application refers to that, after the axis of the crank 63 is parallel to the axis of the connecting rod 62, the rocker 64 is continuously rotated to set the axis of the crank 63 and the axis of the connecting rod 62 at a certain angle. For example, the axis of the crank 63 and the axis of the connecting rod 62 are set at an angle of 3° to 5°.
[0134] Please continue to refer to Figure 7 and Figure 8 In some embodiments, the crank 63 has a first end 631 and a second end 632 arranged oppositely. The frame body 1 is provided with a third limiting piece 7. In the locked state, the first end 631 of the crank 63 abuts against the third limiting piece 7. In the unlocked state, the second end 632 of the crank 63 abuts against the third limiting piece 7.
[0135] It can be understood that when the pressing mechanism 6 is in the locked state, the first end 631 of the crank 63 abuts against the third limiting piece 7, and the crank 63 will not continue to rotate counterclockwise. Since the pressing mechanism 6 is in the first dead center position at this time, the pressing rod 61 will cause the crank 63 to have a counterclockwise rotation tendency whether it rotates clockwise or counterclockwise. Based on the fact that the crank 63 cannot rotate counterclockwise due to being locked by the third limiting piece 7, it can be ensured that the position of the pressing rod 61 is locked, so that the pressing rod 61 reliably presses the to-be-brushed write controller 8 and does not loosen. When the pressing mechanism 6 is in the unlocked state, the second end 632 of the crank 63 abuts against the third limiting piece 7, and the crank 63 will not continue to rotate clockwise. Since the pressing mechanism 6 is in the second dead center position at this time, the pressing rod 61 will cause the crank 63 to have a clockwise rotation tendency whether it rotates clockwise or counterclockwise. Based on the fact that the crank 63 cannot rotate clockwise due to being locked by the third limiting piece 7, it can be ensured that the position of the pressing rod 61 is locked.
[0136] It should be noted that when the first end 631 of the crank 63 abuts against the third limiting piece 7, if the pressing mechanism 6 is in a position past the first dead center position, the pressing rod 61 can only perform a small amplitude action and basically will not affect the position locking of the to-be-brushed write controller 8 by the pressing rod 61. When the second end 632 of the crank 63 abuts against the third limiting piece 7, if the pressing mechanism 6 is in a position past the second dead center position, the pressing rod 61 can also only perform a small amplitude action. At the same time, based on the design of the positions past the first dead center position and the second dead center position, it can be prevented that the pressing mechanism 6 cannot be self-locked due to the manufacturing tolerances of the pressing mechanism 6 and the third limiting piece 7.
[0137] In the description of the present application, the terms "first", "second" are only for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first", "second" can explicitly or implicitly include one or more features. In the description of the present application, the meaning of "multiple" is two or more, unless otherwise specifically limited.
[0138] In the above embodiments, the description of each embodiment has its own emphasis, and the parts not described in detail in a certain embodiment can be referred to the related description of other embodiments.
[0139] The embodiments, implementation manners and related technical features of the present application can be combined or replaced with each other without conflict.
[0140] The above merely describes the preferred embodiments of the present application, and is not intended to limit the present application in any form, but any simple modification, equivalent change and modification made to the above embodiments without departing from the technical solution content of the present application and in accordance with the technical essence of the present application, are still within the scope of the technical solution of the present application.
Claims
1. A flashing platform, characterized in that, The utility model relates to a kind of brush writing platform, including: Frame (1); Support (2) is connected to the frame (1), the support (2) is arranged obliquely, and the lower end of the support (2) is connected with first limiting part (3).
2. The flash platform of claim 1, wherein, The support (2) includes: First support part (21) is connected to the frame (1); Second support part (22) is connected to the frame (1); Wherein, the first support part (21) and the second support part (22) are spaced apart along the first direction, and the first support part (21) and the second support part (22) have height difference.
3. The flash platform of claim 2, wherein, The first support part (21) and the second support part (22) extend along the second direction, and at least two mounting positions (23) are formed spaced apart along the second direction, one of the mounting positions (23) is configured to support a to-be-brushed controller (8), wherein the first direction is arranged at an angle to the second direction.
4. The flash platform of claim 3, wherein, The support (2) is connected with at least two second limiting parts (4), the at least two second limiting parts (4) are spaced apart along the second direction, and the area between each adjacent two second limiting parts (4) forms a mounting position (23).
5. The flash platform of claim 4, wherein, The second limiting part (4) includes: First limiting rod (41) is connected with the support (2); Second limiting rod is connected with the support (2), and the second limiting rod is spaced apart from the first limiting rod (41) along the second direction; Connecting rod (42) is connected between the first limiting rod (41) and the second limiting rod; Wherein, in the direction close to the support surface of the support (2), the first limiting rod (41) is inclined towards the direction close to the adjacent mounting position (23), and the second limiting rod is inclined towards the direction close to the adjacent mounting position (23).
6. The flash platform of claim 5, wherein, The first limiting rod (41) is sleeved with a first protective layer;And / or, the second limiting rod is sleeved with a second protective layer.
7. The flash platform of claim 3, wherein, The first support part (21) and the second support part (22) are connected with fan (5), the fan (5) is provided as at least two, along the second direction, the fan (5) is staggered with the mounting position (23).
8. The flash platform of claim 7, wherein, The frame (1) has a first side (11) close to operator, in the direction away from the first side (11), the fan (5) is inclined towards the direction away from the support (2).
9. The flash platform of claim 8, wherein, The to-be-brushed controller (8) is provided with a temperature sensor for acquiring its own temperature, and the brush writing platform further includes: A control unit is electrically connected with the temperature sensor and the fan (5), the to-be-flashed controller (8) is provided with a first temperature setting value, a second temperature setting value and a third temperature setting value, the control unit is configured to drive the fan (5) to start in response to the temperature feedback by the temperature sensor being greater than or equal to the first temperature setting value, drive the fan (5) to stop in response to the temperature feedback by the temperature sensor being less than or equal to the second temperature setting value, and drive the flashing unit of the flashing platform to stop working and drive the fan (5) to start or keep the fan (5) in the starting state in response to the temperature feedback by the temperature sensor being greater than or equal to the third temperature setting value. The third temperature setting value is greater than the first temperature setting value, and the first temperature setting value is greater than the second temperature setting value.
10. The flashing platform according to any one of claims 1 to 9, wherein, The first limiting piece (3) comprises: a main body segment (31) connected with the support piece (2); a bent segment (32) connected with one end of the main body segment (31) away from the support piece (2); The main body segment (31) is configured to support the to-be-flashed controller (8), and the bent segment (32) is configured to be clamped with the connecting piece (81) of the to-be-flashed controller (8).
11. The flash platform of claim 10, wherein, A wire hole (33) is formed in the main body segment (31), and the wire hole (33) is configured to pass the cable of the to-be-flashed controller (8).
12. The flashing platform according to any one of claims 1 to 9, wherein, The flashing platform further comprises: a pressing mechanism (6) connected to one end of the frame body (1) away from the first limiting piece (3), the pressing mechanism (6) being configured to press the to-be-flashed controller (8) against the support piece (2).
13. The flash platform of claim 12, wherein, The pressing mechanism (6) comprises: a pressing rod (61) rotationally connected to the frame body (1), the pressing rod (61) being configured to press the to-be-flashed controller (8); a connecting rod (62) rotationally connected with the pressing rod (61); a crank (63) having one end rotationally mounted with the frame body (1) and the other end rotationally connected with one end of the connecting rod (62) away from the pressing rod (61); a rocker (64) connected with the crank (63), the rocker (64) being used to drive the crank (63) to rotate, so that the crank (63) drives the pressing rod (61) to act through the connecting rod (62).
14. The flash platform of claim 13, wherein, The pressing mechanism (6) has a locked state and an unlocked state, in the locked state, the pressing rod (61) abuts against the to-be-flashed controller (8), in the unlocked state, the pressing rod (61) is arranged away from the to-be-flashed controller (8), wherein the rocker (64) is configured to switch the pressing mechanism (6) between the locked state and the unlocked state under the action of an external force.
15. The flash platform of claim 14, wherein, The pressing mechanism (6) has a first dead point position and a second dead point position, at the first dead point position and the second dead point position, the axis of the crank (63) and the axis of the connecting rod (62) are parallel to each other, wherein, in the locked state, the pressing rod (61) abuts against the to-be-flashed controller (8), and the pressing mechanism (6) is at or passes through the first dead point position, in the unlocked state, the pressing rod (61) is arranged away from the to-be-flashed controller (8), and the pressing mechanism (6) is at or passes through the second dead point position.
16. The flash platform of claim 15, wherein, The crank (63) has oppositely arranged first and second ends (631) and (632), and the frame body (1) is provided with a third limiting piece (7), in the locked state, the first end (631) of the crank (63) abuts against the third limiting piece (7), and in the unlocked state, the second end (632) of the crank (63) abuts against the third limiting piece (7).