Portable support for fuel pump control computer
By designing a foldable portable fuel pump control computer bracket, using lightweight materials and magnets to maintain stability, and combining a drive component and a rotating threaded rod to achieve precise positioning of the fuel pump control computer, the problem of large size and heavy weight of existing brackets is solved, improving portability and stability of use.
Patent Information
- Application Number
- CN202520502515.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-21
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2035-03-21
AI Technical Summary
The existing fuel pump control computer bracket is large and heavy, making it inconvenient for maintenance personnel to carry.
A foldable portable stand was designed, using lightweight materials and magnets to maintain stability in the folded state, and combined with a drive unit and a rotating threaded rod to achieve precise positioning of the fuel pump control computer.
It significantly reduces the space occupied, is easy to carry, alleviates the burden on maintenance personnel, and ensures the stability and safety of the equipment during use.
Smart Images

Figure CN223768624U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of fuel pump control computers, and in particular to a stand for a portable fuel pump control computer. Background Technology
[0002] The fuel pump control computer (FPCM) is a crucial component of a vehicle's electronic control system. It is responsible for adjusting the fuel pump's power supply voltage or operating frequency according to engine demands, thereby precisely controlling the pressure and flow rate of fuel delivery. The fuel pump control computer bracket is a specialized mechanical structure used to secure and protect the FPCM. In essence, the fuel pump control computer bracket is the fundamental support structure that ensures the device can be reliably installed and function properly within the vehicle.
[0003] In the prior art, the brackets used for fuel pump control computers are large and heavy, making them inconvenient to carry. This is especially problematic for maintenance personnel who frequently need to work outdoors. In their daily work, maintenance personnel often need to carry various tools and equipment to different work locations, and the excessive size and weight of the fuel pump control computer bracket undoubtedly increases their burden. Therefore, this application provides a portable fuel pump control computer bracket to meet this need. Utility Model Content
[0004] The technical problem to be solved by this utility model is to provide a portable fuel pump control computer bracket to solve the problem that the existing fuel pump control computer brackets are large in size and heavy in weight, making them inconvenient for maintenance personnel to carry out operations.
[0005] To solve the problems mentioned above, this utility model is implemented through the following technical solution.
[0006] A portable fuel pump control computer bracket includes: two semi-circular bases, which are symmetrically arranged and rotatably connected by a hinge; a first slot on one of the semi-circular bases; and a second slot on the other semi-circular base. The first slot and the second slot are used together to allow the two semi-circular bases to be folded.
[0007] When not in use, the two semi-circular bases can be folded for easy carrying. The two semi-circular bases are made of lightweight materials.
[0008] Two magnets are mounted on the two semicircular bases, with opposite poles of the magnets on the two semicircular bases facing each other, causing the two semicircular bases to attract each other.
[0009] The magnets allow the two semi-circular bases to fit together when folded.
[0010] Two drive components are respectively mounted on the two semi-circular bases; two rotating threaded rods are respectively mounted on the two drive components, and the rotating threaded rods rotate under the drive of the drive components.
[0011] The drive unit is electrically connected to the peripheral controller, and the controller controls the movement of the drive unit.
[0012] Two sliding blocks are slidably mounted on the two rotating threaded rods respectively, and the sliding blocks move under the rotation of the rotating threaded rods; two limiting clamps are mounted on the two sliding blocks respectively, and the limiting clamps move under the drive of the sliding blocks, and the limiting clamps are in the shape of a "V".
[0013] The driving component drives the rotating threaded rod to rotate, which in turn drives the sliding block to move. The sliding block then drives the limit clamp to move, thereby limiting the control of fuel pumps of different sizes.
[0014] Two slots are respectively opened below the two semi-circular bases; two connecting plates are respectively installed on the two slots, and the connecting plates are provided with mounting holes; fasteners are set on the connecting plates for connecting the two connecting plates, and the mounting holes are used to cooperate with the fasteners.
[0015] Fasteners and connecting plates are used to keep the two semi-circular bases stable when they are in the unfolded state, preventing them from folding under external forces. The three slots ensure that the bottom of the connecting plate is level with the bottom of the semi-circular base, preventing unevenness at the bottom of the semi-circular base.
[0016] Two slots are respectively opened on the two semi-circular bases, and the slots are used to cooperate with the driving component; two handles are respectively installed on the two semi-circular bases.
[0017] Two slots, number five, are respectively opened on the two semi-circular bases. The rotating threaded rod and the sliding block are located in the slots, with the rotating threaded rod in rotational contact with the slots and the sliding block in sliding contact with the slots. Two slots, number six, are respectively opened on the two semi-circular bases and are used to cooperate with the hinge.
[0018] The sixth notch is designed to keep the bottom of the hinge and the inner cavity of the semi-circular base level.
[0019] This invention provides a portable fuel pump control computer stand. Compared with the prior art, it has the following advantages:
[0020] In the above solution, by setting two semi-circular bases, hinges, slot one and slot two, the design of the two semi-circular bases allows the bracket to be folded when not in use, thereby significantly reducing the space occupied. This design allows maintenance personnel to easily carry the bracket when working outdoors, reducing the burden. Because the semi-circular bases are made of lightweight materials and magnets are used to maintain stability when folded, the entire bracket is both lightweight and sturdy, and can withstand a certain degree of external impact, making it suitable for the needs of frequent daily use. Attached Figure Description
[0021] Figure 1 This is a schematic diagram of the structure of this utility model.
[0022] Figure 2 This is a schematic diagram of the four-slot structure of this utility model.
[0023] Figure 3 This is a schematic diagram of the semi-circular base structure of this utility model.
[0024] Figure 4 This utility model Figure 3 Enlarged view of the A-structure.
[0025] Figure 5 This is a schematic diagram of the rotating threaded rod structure of this utility model.
[0026] The attached figures are labeled as follows:
[0027] 1. Semicircular base; 2. Slot 2; 3. Magnet; 4. Slot 1; 5. Limiting clamp; 6. Handle; 7. Hinge; 8. Slot 6; 9. Slot 5; 10. Slot 4; 11. Slot 3; 12. Connecting plate; 13. Fastener; 14. Sliding block; 15. Rotating threaded rod; 16. Drive component. Detailed Implementation
[0028] The present invention will be further described below with reference to specific embodiments. It should be understood that these embodiments are only used to illustrate the present invention and are not intended to limit the scope of protection of the present invention.
[0029] The following specific examples illustrate the implementation of this utility model. Those skilled in the art can easily understand other advantages and effects of this utility model from the content disclosed in this specification. This utility model can also be implemented or applied through other different specific embodiments, and various details in this specification can also be modified or changed based on different viewpoints and applications without departing from the spirit of this utility model.
[0030] Reference Figure 1 - Figure 5A portable fuel pump control computer bracket includes: two semi-circular bases 1, which are symmetrically arranged and rotatably connected by a hinge 7; a slot 4, which is formed on one of the semi-circular bases 1; and a slot 2, which is formed on the other semi-circular base 1. The slots 4 and 2 are used together to allow the two semi-circular bases 1 to be folded.
[0031] The two semi-circular bases 1 serve as the main support for the entire bracket, providing a stable platform for the fuel pump control computer. Together with the hinges 7, they enable the bracket to be folded. When not in use, the bracket can be folded up for easy carrying and storage, saving space and making it convenient for maintenance personnel to carry when working outdoors. Made of lightweight materials, the bracket effectively reduces its overall weight while maintaining sufficient strength and stability. This is crucial for maintenance personnel who frequently need to carry the bracket between different work locations, reducing their burden and improving work convenience.
[0032] The hinge 7 allows the two semi-circular bases 1 to rotate relative to each other around the hinge 7, thereby enabling the folding and unfolding of the bracket.
[0033] When a folding bracket is needed, the two semi-circular bases 1 can be aligned and fitted together through slot 1 4 and slot 2 to achieve a neat folding, making the folded bracket structure compact, taking up little space, and convenient to carry and store.
[0034] Two magnets 3 are mounted on two semi-circular bases 1. The magnets 3 on the two semi-circular bases 1 have opposite poles facing each other, so that the two semi-circular bases 1 attract each other.
[0035] The magnets 3 on the two semicircular bases 1 have opposite poles facing each other. According to the principle that like poles of magnets repel and unlike poles attract, the opposite poles of magnets 3 can generate a magnetic force that attracts each other between the two semicircular bases 1. When the bracket is folded, the attraction force generated by magnets 3 can help the two semicircular bases 1 fit together more tightly, further enhancing the stability of the bracket in the folded state. Even when subjected to certain external forces or bumps, the bracket is not easy to loosen or unfold, ensuring the reliability of the bracket during carrying.
[0036] Two drive components 16 are respectively mounted on two semi-circular bases 1; two rotating threaded rods 15 are respectively mounted on the two drive components 16, and the rotating threaded rods 15 rotate under the drive of the drive components 16.
[0037] The driving member 16 is used to provide a power source, which can be a stepper motor. The driving member 16 can receive the electrical signals transmitted from the peripheral controller and generate corresponding actions according to the instructions, providing power support for the subsequent rotation of the rotating threaded rod 15. By being electrically connected to the peripheral controller, its motion state can be precisely controlled, including the rotation direction, rotation speed, and rotation angle, etc. This enables the driving member 16 to accurately drive the rotating threaded rod 15 to rotate according to the actual needs, thereby achieving accurate control of the sliding block 14 and the limiting clamp 5, and ensuring effective limiting of fuel pump control computers of different sizes.
[0038] The rotating threaded rod 15 transmits the rotational power output by the driving member 16 to the sliding block 14. The threaded structure of the rotating threaded rod 15 enables it to convert the rotational motion into a linear motion during rotation. As the rotating threaded rod 15 rotates, the threads cooperate with the threaded structure on the sliding block 14, thereby pushing the sliding block 14 to move along the axial direction of the rotating threaded rod 15. By controlling the rotation direction and number of turns of the rotating threaded rod 15, the moving position of the sliding block 14 can be precisely controlled, and further the position of the limiting clamp 5 can be adjusted to adapt to fuel pump control computers of different sizes.
[0039] Two sliding blocks 14 are respectively slidably mounted on two rotating threaded rods 15, and the sliding blocks 14 move under the rotation of the rotating threaded rods 15; two limiting clamps 5 are respectively mounted on the two sliding blocks 14, and the limiting clamps 5 move under the drive of the sliding blocks 14. The limiting clamps 5 are in a "person" shape.
[0040] As the rotating threaded rod 15 rotates, the sliding block 14 can perform linear sliding on the rotating threaded rod 15. It converts the rotational motion of the rotating threaded rod 15 into its own linear motion and transmits this linear motion to the limiting clamp 5. Under the drive of the rotating threaded rod 15, the sliding block 14 moves along the rotating threaded rod 15. Since the limiting clamp 5 is mounted on the sliding block 14, the movement of the sliding block 14 will带动 the limiting clamp 5 to move together, thereby achieving position limitation of the fuel pump control computer in different directions and enabling it to be stably fixed on the bracket.
[0041] Two notch threes 11 are respectively opened below the two semi-circular bases 1; two connecting plates 12 are respectively mounted on the two notch threes 11, and mounting holes are opened on the connecting plates 12; a fastener 13 is provided on the connecting plates 12 for connecting the two connecting plates 12, and the mounting holes are used in cooperation with the fastener 13.
[0042] When the sliding block 14 moves under the drive of the rotating threaded rod 15, the limiting clamp 5 moves along with the sliding block 14, limiting the fuel pump control computer from different directions. By adjusting the position of the limiting clamp 5, the fuel pump control computer can be firmly fixed to prevent it from shifting or shaking on the bracket, thus ensuring the stability and safety of the equipment during use.
[0043] Two slots 10 are respectively opened on two semi-circular bases 1, and the slots 10 are used to cooperate with the drive component 16; two handles 6 are respectively installed on two semi-circular bases 1.
[0044] The slots 11 are respectively opened below the two semi-circular bases 1 for mounting the connecting plate 12. The connecting plate 12 is fixed to the slots 11 by fasteners 13. When the two semi-circular bases 1 are in the unfolded state, the connecting plate 12 can play a connecting and supporting role between the two semi-circular bases 1, enhancing the overall structural stability of the bracket and preventing the bracket from easily folding under external force.
[0045] Handle 6 provides maintenance personnel with a convenient grip and carrying area for the bracket. The design of handle 6 is ergonomic, allowing maintenance personnel to feel comfortable and effortless when carrying the bracket, and also facilitating the transport of the bracket between different work locations.
[0046] Two slots 5 9 are respectively opened on two semi-circular bases 1. The rotating threaded rod 15 and the sliding block 14 are located in the slots 5 9. The rotating threaded rod 15 is in rotational contact with the slots 5 9, and the sliding block 14 is in sliding contact with the slots 5 9. Two slots 6 8 are respectively opened on two semi-circular bases 1. The slots 6 8 are used to cooperate with the hinge 7.
[0047] The slot 59 provides a suitable installation space and movement track for the rotating threaded rod 15 and the sliding block 14, which are located in the slot 59. This allows the rotating threaded rod 15 to rotate smoothly and the sliding block 14 to slide smoothly. The rotating threaded rod 15 is in rotational contact with the slot 59, and the sliding block 14 is in sliding contact with the slot 59. This kind of cooperation can ensure the movement accuracy of the driving components. Under the drive of the driving component 16, the rotating threaded rod 15 and the sliding block 14 can move according to the predetermined trajectory and method, thereby realizing precise control of the limit clamp 5 and ensuring accurate limiting of the fuel pump control computer.
[0048] The slot 6.8 is used in conjunction with the hinge 7. The design of the slot 6.8 ensures that the bottom of the inner cavity of the hinge 7 and the semi-circular base 1 are in a horizontal state, guaranteeing that the hinge 7 can maintain a good working condition when connecting the two semi-circular bases 1. This makes the bracket smoother and more stable during unfolding and folding, and also helps to improve the overall structural strength and stability of the bracket.
[0049] During use, the maintenance personnel hold both handles 6 with both hands and take the folded bracket out of its storage location. One semi-circular base 1 is rotated relative to the other semi-circular base 1 around the hinge 7. At this time, the two semi-circular bases 1 are unfolded. The two connecting plates 12 are connected by fasteners 13, forming a stable support structure to prepare for the subsequent placement of the fuel pump control computer. The fuel pump control computer is then placed. Based on the dimensions of the fuel pump control computer, the drive unit 16 is activated. The drive unit 16 receives electrical signals from the peripheral controller and generates corresponding actions, precisely driving the rotating threaded rod 15 to rotate. The rotating threaded rod 15 rotates under the drive, and its threaded structure converts the rotational motion into linear motion, pushing the sliding block 14 to move along the axial direction of the rotating threaded rod 15. Since the limit clamp 5 is installed on the sliding block 14, the movement of the sliding block 14 will cause the limit clamp 5 to move as well. The maintenance personnel then place the fuel pump control computer on both... On each semi-circular base 1, the movement position of the sliding block 14 is precisely controlled by adjusting the rotation direction and number of turns of the rotating threaded rod 15, thereby adjusting the position of the limiting clamp 5. This limits the fuel pump control computer from different directions, ensuring it is stably fixed on the bracket and preventing displacement or shaking during use, thus guaranteeing stability and safety. When the bracket needs to be stored, the fuel pump control computer is first removed from the bracket. The steps of unfolding the bracket are reversed: by cooperating the rotating threaded rod 15 and the sliding block 14, the limiting clamp 5 is adjusted to the appropriate position. Then, the fastener 13 is removed, and the handle 6 is held to rotate the two semi-circular bases 1 relative to each other around the hinge 7, so that the slot 1 4 and slot 2 are aligned and fitted again, and the bracket returns to its folded state. At this time, the attraction generated by the magnet 3 helps the two semi-circular bases 1 fit together more tightly, enhancing the stability of the bracket in the folded state, making it easy to store and carry to the next work location.
[0050] Therefore, although the present invention has been described herein with reference to specific embodiments thereof, freedom of modification, various changes and substitutions are also within the scope of the above disclosure, and it should be understood that in some cases, certain features of the present invention may be adopted without departing from the scope and spirit of the invention and without corresponding use of other features. Thus, many modifications can be made to adapt a particular environment or material to the essential scope and spirit of the present invention. The present invention is not intended to be limited to the specific terms used in the following claims and / or the specific embodiments disclosed as the best mode of carrying out the present invention, but the present invention will include any and all embodiments and equivalents falling within the scope of the appended claims. Therefore, the scope of the present invention will be determined only by the appended claims.
Claims
1. A support for a portable fuel pump control computer, characterized in that The utility model relates to a folding table, comprising: Two half-round bases (1) arranged symmetrically, which are connected by a hinge (7); A slot (4) is provided in either of the half-round bases (1); A second slot (2) is provided in the other half-round base (1), and the first slot (4) and the second slot (2) are used in combination to fold the two half-round bases (1).
2. The portable fuel pump control computer support of claim 1, wherein, Further comprising: Two magnets (3) are installed on the two half-round bases (1), and the magnets on the two half-round bases (1) are opposite in polarity, so that the two half-round bases (1) attract each other.
3. The portable fuel pump control computer support of claim 1, wherein, Further comprising: Two driving members (16) are respectively installed on the two half-round bases (1); Two rotating threaded rods (15) are respectively installed on the two driving members (16), and the rotating threaded rods (15) rotate under the drive of the driving members (16).
4. The portable fuel pump control computer support of claim 3, wherein, Further comprising: Two sliding blocks (14) are respectively slidably installed on the two rotating threaded rods (15), and the sliding blocks (14) move under the rotation of the rotating threaded rods (15); Two limiting clamps (5) are respectively installed on the two sliding blocks (14), and the limiting clamps (5) move under the drive of the sliding blocks (14), and the limiting clamps (5) are in the shape of a "person".
5. The portable fuel pump control computer support of claim 1, wherein, Further comprising: Two third slots (11) are respectively provided below the two half-round bases (1); Two connecting plates (12) are respectively installed on the two third slots (11), and mounting holes are provided on the connecting plates (12); Fasteners (13) are provided on the connecting plates (12) to connect the two connecting plates (12), and the mounting holes are used in combination with the fasteners (13).
6. The portable fuel pump control computer support of claim 3, wherein, Further comprising: Two fourth slots (10) are respectively provided on the two half-round bases (1), and the fourth slots (10) are used in combination with the driving members (16); Two handles (6) are respectively installed on the two half-round bases (1).
7. The portable fuel pump control computer support of claim 4, wherein, Further comprising: Two fifth slots (9) are respectively provided on the two half-round bases (1), and the rotating threaded rods (15) and the sliding blocks (14) are located in the fifth slots (9), the rotating threaded rods (15) are in rotational contact with the fifth slots (9), and the sliding blocks (14) are in sliding contact with the fifth slots (9); Two sixth slots (8) are respectively provided on the two half-round bases (1), and the sixth slots (8) are used in combination with the hinges (7).