A light-sensitive cell trigger type waterproof GPS positioning device for ocean measurement
By introducing floating beds, shock-absorbing components, adjustment mechanisms, and waterproof shells into marine measurement devices, the problems of damage caused by wave vibration and low power generation efficiency of marine measurement devices have been solved, achieving stability and high-efficiency power generation of the devices.
Patent Information
- Application Number
- CN202210352332.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-04-05
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2042-04-05
AI Technical Summary
Existing GPS positioning devices for marine surveying are easily damaged by wave vibrations, the angle of solar panels cannot be adjusted, resulting in low power generation efficiency, and they lack effective waterproof protection.
A photosensitive battery-triggered waterproof GPS positioning device was designed, comprising a floating bed, shock absorption components, adjustment mechanism, battery, and waterproof casing. The angle of the photosensitive battery is adjusted to improve power generation efficiency, and the GPS locator is protected by the waterproof casing and clamping components.
It effectively reduced the vibration of the device caused by sea surface fluctuations, improved the power generation efficiency of the photosensitive solar panel, ensured the normal operation of the GPS locator in a humid environment, protected the components, and improved power generation efficiency.
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Figure CN114721013B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of ocean measurement, in particular to a photosensitive cell trigger type waterproof GPS positioning device for ocean measurement. BACKGROUND
[0002] Ocean measurement is a kind of measurement and monitoring of ocean depth and water quality environment, and GPS needs to be used for position determination in ocean measurement. GPS is a kind of high-precision radio navigation positioning system based on artificial satellites, which can provide accurate geographical position, vehicle speed and accurate time information anywhere in the world and near space. Since GPS was introduced, it has attracted numerous users with its high precision, all-weather, global coverage, convenience and flexibility. GPS is not only the guardian of the car, but also the wise star of the logistics industry management. The existing GPS positioning device for ocean measurement is easy to be damaged by excessive vibration caused by waves during measurement, and the existing GPS positioning device for ocean measurement generally generates electricity through solar panels. However, the angle of the existing solar panel cannot be adjusted, so that sunlight cannot be well irradiated on it, and the power generation efficiency is low.
[0003] At present, no effective solution has been proposed for the problems in the related art. SUMMARY
[0004] In view of the problems in the related art, the present application proposes a photosensitive cell trigger type waterproof GPS positioning device for ocean measurement to overcome the above technical problems existing in the prior art.
[0005] To this end, the specific technical solutions adopted by the present application are as follows:
[0006] The utility model provides a light -sensitive cell trigger type waterproof GPS positioning device for ocean measurement, including the floating bed, the floating bed top is equipped with the installation platform, the installation platform is connected with the floating bed through the damping component, one side of installation platform top is equipped with the light -sensitive cell board, the light -sensitive cell board is connected with the installation platform through the support, light -sensitive cell board is connected with the support through pivot no.
[0007] Further, two groups of the swing rod one are inclined and symmetrically arranged.
[0008] Further, two groups of the sliding block are provided with a guide hole matched with the guide rod.
[0009] Further, the adjusting mechanism comprises a lead screw one provided in the protective shell two, the outer wall of the lead screw one is provided with symmetrically arranged moving blocks, two groups of the moving blocks are respectively provided with Z-shaped frames, and the Z-shaped frames are extended to the outside of the protective shell two and are respectively connected with the light -sensitive cell board through swing rods two.
[0010] Further, two groups of the moving blocks are provided with a threaded hole one matched with the screw rod, and the threaded directions of the two groups of the threaded hole one are opposite.
[0011] Further, the clamping assembly comprises the symmetrically arranged screw rod two arranged in the placing groove two, the extrusion pieces are arranged on the outer walls of the two groups of the screw rod two, the symmetrically arranged limiting columns are respectively arranged on the opposite sides of the two groups of the extrusion pieces, the limiting plates are symmetrically arranged on the waterproof shell, the limiting holes matched with the limiting columns are formed in the limiting plates, and the ends, away from each other, of the two groups of the screw rod two extend to the outside of the mounting table and are connected with the rotating wheels.
[0012] Further, the extrusion pieces are provided with the symmetrically arranged limiting frames, and the limiting grooves matched with the limiting frames are formed in the mounting table.
[0013] Further, the ends, close to each other, of the two groups of the screw rod two are provided with the anti-dropping pieces.
[0014] The beneficial effects of the present application are as follows: the floating bed is added to facilitate the device to float on the sea surface, the damping assembly is added to reduce the amplitude of excessive vibration of the device caused by sea surface fluctuation, the mounting table is more stable, the components on the device are further protected, the adjusting mechanism is added to change the angle of the photovoltaic panel, so that the sunlight can always irradiate on the light surface of the photovoltaic panel, the working efficiency of the photovoltaic panel is improved, the storage battery is added to store the electric quantity, prevent the photovoltaic panel from working on cloudy days, and prevent the GPS locator in the device from running, the clamping assembly is added to facilitate the installation and fixation of the GPS locator, and the waterproof shell is added to further protect the GPS locator from water. BRIEF DESCRIPTION OF DRAWINGS
[0015] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the drawings needed in the embodiments will be briefly introduced as follows. Obviously, the drawings in the following description only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.
[0016] Figure 1 It is a whole structure schematic view of a photovoltaic cell triggered waterproof GPS positioning device for ocean measurement according to an embodiment of the present application.
[0017] Figure 2 It is a front view of a photovoltaic cell triggered waterproof GPS positioning device for ocean measurement according to an embodiment of the present application.
[0018] Figure 3It is a top view of a light-sensitive cell triggered waterproof GPS positioning device for marine measurement according to an embodiment of the present application;
[0019] Figure 4 It is a shock absorption assembly structure diagram in a light-sensitive cell triggered waterproof GPS positioning device for marine measurement according to an embodiment of the present application;
[0020] Figure 5 It is an adjusting mechanism structure diagram in a light-sensitive cell triggered waterproof GPS positioning device for marine measurement according to an embodiment of the present application;
[0021] Figure 6 It is a front view of an adjusting mechanism in a light-sensitive cell triggered waterproof GPS positioning device for marine measurement according to an embodiment of the present application;
[0022] Figure 7 It is a clamping assembly structure diagram in a light-sensitive cell triggered waterproof GPS positioning device for marine measurement according to an embodiment of the present application;
[0023] Figure 8 It is a clamping assembly top view in a light-sensitive cell triggered waterproof GPS positioning device for marine measurement according to an embodiment of the present application.
[0024] In the figure:
[0025] 1, floating bed; 2, mounting table; 3, light-sensitive cell panel; 4, support; 5, protective shell one; 6, forward and reverse motor; 7, protective shell two; 8, storage battery; 9, placement groove one; 10, remote controller; 11, information collector; 12, placement groove two; 13, waterproof shell; 14, GPS locator; 15, connecting seat one; 16, water quality monitor; 17, connecting seat two; 18, sonar detector; 19, guide rod; 20, connecting frame; 21, sliding block; 22, shock absorbing spring; 23, swing rod one; 24, guide hole; 25, lead screw one; 26, moving block; 27, Z-shaped frame; 28, swing rod two; 29, speed reduction gear; 30, drive gear; 31, threaded hole one; 32, lead screw two; 33, extrusion piece; 34, limiting column; 35, limiting plate; 36, limiting hole; 37, runner; 38, threaded hole two; 39, limiting frame; 40, limiting groove. DETAILED DESCRIPTION
[0026] To further illustrate the embodiments, the present application provides drawings which are part of the disclosure of the present application, mainly used to illustrate the embodiments, and can be used to explain the operating principle of the embodiments in conjunction with the related description of the specification. Those of ordinary skill in the art should be able to understand other possible implementations and advantages of the present application in conjunction with these contents. The components in the figures are not drawn to scale, and similar component symbols are generally used to represent similar components.
[0027] According to an embodiment of the present invention, a photosensitive battery-triggered waterproof GPS positioning device for marine surveying is provided.
[0028] Example 1:
[0029] like Figures 1-8 As shown, a photosensitive battery-triggered waterproof GPS positioning device for marine measurement according to an embodiment of the present invention includes a floating bed 1, a mounting platform 2 at the top of the floating bed 1, the mounting platform 2 being connected to the floating bed 1 via a shock-absorbing component, a photosensitive battery plate 3 on one side of the top of the mounting platform 2, the photosensitive battery plate 3 being connected to the mounting platform 2 via a bracket 4, the photosensitive battery plate 3 being connected to the bracket 4 via a rotating shaft, a protective shell 5 on one side of the top of the mounting platform 2, a second protective shell 7 at the top of the first protective shell 5, and a forward / reverse motor 6 inside the first protective shell 5. The protective shell 2 7 has an adjustment mechanism inside, and the photosensitive solar panel 3 is connected to the forward and reverse motor 6 through the adjustment mechanism. A battery 8 is located at the top of the mounting platform 2, on one side of the protective shell 1 5. The battery 8 is connected to the photosensitive solar panel 3 via wires. Symmetrically arranged placement slots 1 9 are opened at the top of the mounting platform 2. One set of placement slots 1 9 contains a remote controller 10, and the other set contains an information collector 11. Both sets of placement slots 1 9 are equipped with a protective cover. A cover is opened on the top of the mounting platform 2, on the side away from the protective shell 1 5. The system includes a second placement slot 12, within which a waterproof protective shell 13 is installed. A GPS locator 14 is housed within the waterproof protective shell 13. A second cover plate is mounted on the second placement slot 12. The waterproof protective shell 13 is fixedly connected to the mounting platform 2 via a clamping assembly. A first connecting seat 15 is located on one side of the mounting platform 2. A water quality monitor 16 is located at the bottom of the first connecting seat 15 and is connected to the first connecting seat 15 via a connecting rope. A second connecting seat 17 is located on the side of the mounting platform 2 away from the first connecting seat 15, and a sonar detector is located at the bottom of the second connecting seat 17. The sonar detector 18 is connected to the connecting seat 17 via a connecting rope 2. The shock absorption assembly includes symmetrically arranged guide rods 19 at the top of the floating bed 1. Both sets of guide rods 19 are connected to the floating bed 1 via connecting frame 20. Symmetrically arranged sliding blocks 21 are sleeved on the outer wall of the guide rods 19. Both sets of sliding blocks 21 are connected to the connecting frame 20 via shock absorption springs 22. Each set of sliding blocks 21 has a swing rod 23 at its top. Both sets of sliding blocks 21 are connected to the mounting platform 2 via the swing rod 23.
[0030] Example 2:
[0031] like Figures 1-8As shown, including floating bed 1, the floating bed 1 top end is provided with installation platform 2, the installation platform 2 is connected with the floating bed 1 through damping assembly, the installation platform 2 top end one side is equipped with light-sensitive cell panel 3, the light-sensitive cell panel 3 is connected with the installation platform 2 through support 4, light-sensitive cell panel 3 is connected with the support 4 through pivot one, the installation platform 2 top end one side is equipped with protective shell one 5, the protective shell one 5 top end is equipped with protective shell two 7, the protective shell one 5 is equipped with positive and negative motor 6, the protective shell two 7 is equipped with adjusting mechanism, the light-sensitive cell panel 3 is connected with the positive and negative motor 6 through the adjusting mechanism, the installation platform 2 top end and located at the protective shell one 5 one side is equipped with battery 8, the battery 8 is connected with the light-sensitive cell panel 3 through wire, the installation platform 2 top end is equipped with symmetrically arranged placing groove one 9, a group of placing groove one 9 is equipped with remote controller 10, another group of placing groove one 9 is equipped with information collector 11, the two groups of placing groove one 9 are equipped with protective cover one, the installation platform 2 top end and away from the protective shell one 5 one side is equipped with placing groove two 12, the placing groove two 12 is equipped with waterproof protective shell 13, the waterproof protective shell 13 is equipped with GPS locator 14, the placing groove two 12 is equipped with cover plate two, the waterproof protective shell 13 is fixedly connected with the installation platform 2 through clamping assembly, the installation platform 2 one side is equipped with connecting seat one 15, the connecting seat one 15 bottom end is equipped with water quality monitor 16, the water quality monitor 16 is connected with the connecting seat one 15 through connecting rope one, the installation platform 2 away from the connecting seat one 15 one side is equipped with connecting seat two 17, the connecting seat two 17 bottom end is equipped with sonar detector 18, the sonar detector 18 is connected with the connecting seat two 17 through connecting rope two, the damping assembly includes the symmetrically arranged guide rod 19 provided at the top end of the floating bed 1, two groups of guide rods 19 are connected with the floating bed 1 through connecting frame 20 respectively, symmetrically arranged sliding blocks 21 are sleeved on the outer wall of the guide rod 19, two groups of sliding blocks 21 are connected with the connecting frame 20 through damping spring 22 respectively, two groups of sliding blocks 21 top end are respectively equipped with swing rod one 23, two groups of sliding blocks 21 are connected with the installation platform 2 through the swing rod one 23 respectively. Two groups of swing rod one 23 are symmetrically arranged. Two groups of sliding blocks 21 are equipped with guide hole 24 matched with the guide rod 19.When in use, the device is placed in the sea area to be measured, the device can be easily found by personnel through the GPS locator 14, the waterproof shell 13 on the GPS locator 14 can prevent water from entering the GPS locator 14, and the light-sensitive battery panel 3 charges the battery 8, and the GPS locator 14 is continuously powered and normally operated, wherein the sonar detector 18 is used to detect the depth of the sea, and the water quality monitor 16 is used to monitor the water quality of the sea area. When the sea surface fluctuates, the sea surface extrudes the floating bed 1, the floating bed 1 is extruded upward, at this time the sliding block 21 starts to extrude the damping spring 22, the damping spring 22 generates elastic force to offset part of the external force, so that the installation table 2 is in a stable state, and the components on the installation table 2 are further protected.
[0032] Example three:
[0033] As shown in Figures 1-8 , the adjusting mechanism comprises a lead screw 25 provided in the protective shell 7, the outer wall of the lead screw 25 is provided with symmetrical moving blocks 26, two groups of Z-shaped frames 27 are respectively provided on the two groups of moving blocks 26, the two groups of Z-shaped frames 27 are respectively connected with the light-sensitive battery panel 3 through the swing rods 28 outside the protective shell 7, the bottom end of the lead screw 25 extends into the protective shell 7 and is connected with a reduction gear 29, one side of the reduction gear 29 is provided with a driving gear 30 matched therewith, and the bottom end shaft of the driving gear 30 is connected with the driving shaft of the reversible motor 6. Threaded holes 31 matched with the lead screw 25 are formed in the two groups of moving blocks 26, and the threaded directions of the two groups of threaded holes 31 are opposite. In order to adjust the angle of the light-sensitive battery panel 3, personnel control the remote controller 10 through the remote terminal, the remote controller 10 starts the reversible motor 6, the reversible motor 6 drives the driving gear 30, the driving gear 30 drives the reduction gear 29 to rotate, the reduction gear 29 drives the lead screw 25 to rotate, and the lead screw 25 drives the two groups of moving blocks 26 to move away from each other or relatively move, the moving blocks 26 drive the light-sensitive battery panel 3 to adjust the angle through the swing rods 28, so that the sunlight can be normally incident on the light-sensitive battery panel 3 to improve the conversion efficiency.
[0034] Example four:
[0035] As shown in Figures 1-8As shown, the clamping assembly comprises the symmetrically arranged screw rods 32 provided in the placing groove two 12, the outer walls of the two groups of screw rods 32 are sleeved with the extrusion plates 33, the opposite sides of the two groups of extrusion plates 33 are respectively provided with the symmetrically arranged limiting columns 34, the waterproof shell 13 is provided with the symmetrically arranged limiting plates 35, the limiting plates 35 are provided with the limiting holes 36 matched with the limiting columns 34, and the far ends of the two groups of screw rods 32 are extended to the outside of the mounting table 2 and connected with the rotating wheels 37. The extrusion plates 33 are provided with the threaded holes two 38 matched with the screw rods 32, the extrusion plates 33 are provided with the symmetrically arranged limiting frames 39, and the mounting table 2 is provided with the limiting grooves 40 matched with the limiting frames 39. The near ends of the two groups of screw rods 32 are provided with the anti-dropping plates. When the GPS locator 14 is fixed, the GPS locator 14 is first placed in the waterproof shell 13, then the waterproof shell 13 is placed in the placing groove two 12, and the two groups of rotating wheels 37 are rotated, the two groups of rotating wheels 37 drive the two groups of screw rods 32 to rotate, the screw rods 32 drive the extrusion plates 33 to move close to the waterproof shell 13, the waterproof shell 13 drives the limiting columns 34 to enter the limiting holes 36, and the GPS locator 14 is limited and fixed.
[0036] In actual application, the device is placed in the sea area to be measured, the device can facilitate personnel to find its position through the GPS locator 14, the waterproof shell 13 on the GPS locator 14 can prevent the GPS locator 14 from entering water, the light-sensitive battery panel 3 charges the battery 8, and the GPS locator 14 operates normally under continuous power supply, the sonar detector 18 is used for detecting the depth of the sea, the water quality monitor 16 is used for monitoring the water quality of the sea area, when the sea surface is squeezed by the floating bed 1, the floating bed 1 is squeezed upward, at this time, the sliding block 21 starts to squeeze the damping spring 22, the damping spring 22 generates elastic force to offset part of external force, so that the mounting table 2 is in a stable state, and the components on the mounting table 2 are further protected; the angle of the light-sensitive battery panel 3 needs to be adjusted, personnel control the remote controller 10 through the remote terminal, the remote controller 10 starts the reversible motor 6, the reversible motor 6 drives the driving gear 30, the driving gear 30 drives the speed reducer 29 to rotate, the speed reducer 29 drives the screw rod one 25 to rotate, the screw rod one 25 drives the two groups of moving blocks 26 to move away from each other or relatively move, the moving blocks 26 drive the light-sensitive battery panel 3 to adjust the angle through the swing rod two 28, so that the sunlight can be normally incident on the light-sensitive battery panel 3 to improve the conversion efficiency; when the GPS locator 14 is fixed, the GPS locator 14 is first placed in the waterproof shell 13, then the waterproof shell 13 is placed in the placing groove two 12, and the two groups of rotating wheels 37 are rotated, the two groups of rotating wheels 37 drive the two groups of screw rods two 32 to rotate, the screw rods two 32 drive the extrusion plates 33 to move close to the waterproof shell 13, the waterproof shell 13 drives the limiting columns 34 to enter the limiting holes 36, and the GPS locator 14 is limited and fixed.
[0037] In summary, by means of the above technical scheme of the present application, the device is floated on the sea surface by adding the floating bed, the amplitude of excessive vibration of the device caused by sea surface fluctuation is reduced by adding the damping assembly, the installation table is more stable, further protecting the components on the device, the angle of the photosensitive cell panel can be changed by adding the adjusting mechanism, so that sunlight can always shine on the light surface of the photosensitive cell panel, improving the working efficiency of the photosensitive cell panel, the storage of electricity is facilitated by adding the storage battery, preventing the GPS locator in the device from not working due to the photosensitive cell panel not working on cloudy days, the GPS locator is conveniently installed and fixed by adding the clamping assembly, and the GPS locator is further waterproofed by adding the waterproof shell. The above is only a preferred embodiment of the present application and is not intended to limit the present application. Any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application shall be included in the protection scope of the present application.
Claims
1. A photosensitive cell triggered waterproof GPS positioning device for marine surveying, characterized in that, The utility model provides a floating bed (1), the floating bed (1) top end is equipped with installation platform (2), installation platform (2) is connected with the floating bed (1) through damping component, installation platform (2) top end one side is equipped with photosensitive cell panel (3), photosensitive cell panel (3) is connected with installation platform (2) through support (4), photosensitive cell panel (3) is connected with support (4) through pivot one, installation platform (2) top end one side is equipped with protective shell one (5), protective shell one (5) top end is equipped with protective shell two (7), protective shell one (5) is equipped with positive and negative motor (6) in, protective shell two (7) is equipped with adjusting mechanism in, photosensitive cell panel (3) is connected with positive and negative motor (6) through adjusting mechanism, installation platform (2) top end and located protective shell one (5) one side is equipped with battery (8), battery (8) is connected with photosensitive cell panel (3) through wire, installation platform (2) top end is equipped with the symmetrically arranged placement groove one (9), a group of placement groove one (9) is equipped with remote controller (10) in, another group of placement groove one (9) is equipped with information collector (11) in, the two groups placement groove one (9) all are equipped with protective cover one, installation platform (2) top end and the side away from protective shell one (5) is equipped with placement groove two (12), placement groove two (12) is equipped with waterproof sheath (13) in, waterproof sheath (13) is equipped with GPS locator (14) in, placement groove two (12) is equipped with cover plate two, waterproof sheath (13) is fixedly connected with installation platform (2) through clamping component, installation platform (2) one side is equipped with connecting seat one (15), connecting seat one (15) bottom is equipped with water quality monitor (16), water quality monitor (16) is connected with connecting seat one (15) through connecting rope one, installation platform (2) is equipped with connecting seat two (17) away from connecting seat one (15) one side, connecting seat two (17) bottom is equipped with sonar detector (18), sonar detector (18) is connected with connecting seat two (17) through connecting rope two, the damping component includes the symmetrically arranged guide rod (19) of installation platform (2) top end, two groups of connecting frame (20) are connected with the floating bed (1) respectively, the outer wall of guide rod (19) is equipped with the symmetrically arranged sliding block (21), two groups of connecting frame (20) are connected with the floating bed (1) respectively through damping spring (22), two groups of sliding block (21) top end are equipped with swing rod one (23) respectively, two groups of sliding block (21) are connected with installation platform (2) through swing rod one (23) respectively.
2. A photovoltaic cell triggered waterproof GPS positioning device for marine surveying according to claim 1, characterized in that, Two groups of swing rod one (23) are symmetrically arranged.
3. A photovoltaic cell triggered waterproof GPS positioning device for marine surveying according to claim 1, characterized in that, Two groups of sliding block (21) are equipped with the guide hole (24) that matches with guide rod (19) on.
4. A photovoltaic cell triggered waterproof GPS positioning device for marine surveying according to claim 1, characterized in that, The adjusting mechanism includes the lead screw one (25) provided in the protective shell two (7), the outer wall of the lead screw one (25) is sleeved with the moving block (26) which is symmetrically arranged, the Z-shaped frame (27) is respectively arranged on the two groups of moving blocks (26), the two groups of Z-shaped frames (27) are extended to the outside of the protective shell two (7) and are connected with the photosensitive cell panel (3) through the swing rod two (28), respectively, the bottom end of the lead screw one (25) is extended to the inside of the protective shell two (7) and is connected with the speed reducing gear (29), the speed reducing gear (29) is provided with the driving gear (30) matched therewith on one side, and the bottom end of the driving gear (30) is connected with the driving shaft of the reversible motor (6).
5. A photovoltaic cell triggered waterproof GPS positioning device for marine surveying according to claim 4, characterized in that, The two groups of moving blocks (26) are provided with the threaded holes one (31) matched with the lead screw one (25), and the threaded directions of the two groups of threaded holes one (31) are opposite.
6. A photovoltaic cell triggered waterproof GPS positioning device for marine surveying according to claim 1, characterized in that, The clamping assembly includes the lead screw two (32) provided in the placing groove two (12) and symmetrically arranged, the outer wall of the two groups of lead screw two (32) is sleeved with the extrusion piece (33), the opposite side of the two groups of extrusion pieces (33) is respectively provided with the limiting column (34) which is symmetrically arranged, the waterproof shell (13) is provided with the limiting plate (35) which is symmetrically arranged, the limiting plate (35) is provided with the limiting hole (36) matched with the limiting column (34), and the far ends of the two groups of lead screw two (32) are extended to the outside of the mounting table (2) and are connected with the rotating wheel (37).
7. A photovoltaic cell triggered waterproof GPS positioning device for marine surveying according to claim 6, characterized in that, The extrusion piece (33) is provided with the threaded hole two (38) matched with the lead screw two (32), the extrusion piece (33) is provided with the limiting frame (39) which is symmetrically arranged, and the mounting table (2) is provided with the limiting groove (40) matched with the limiting frame (39).
8. A photovoltaic cell triggered waterproof GPS positioning device for marine surveying according to claim 6, characterized in that, The two groups of lead screw two (32) are respectively provided with the anti-drop piece.
Citation Information
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