Multi-point feeding viewing fish tank

The multi-point feeding system and water circulation filtration system driven by servo motors solve the problem of uneven feeding of fish in aquariums, achieving uniform nutrition for fish and optimized water quality. It is suitable for aquariums in homes, offices and other public places.

CN223844698UActive Publication Date: 2026-01-30JIAN KESHAN TECH CO LTD
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Patent Information

Application Number
CN202520195911.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-07
Publication Date
2026-01-30
Estimated Expiration
2035-02-07

AI Technical Summary

Technical Problem

The fixed position of the feeder in existing aquariums prevents weaker or smaller fish from competing for food with more active or larger fish, leading to malnutrition or overfeeding, significant differences in individual growth, and even death of small fish.

Method used

Using components such as servo motors, gears, and feed bottles, the servo motor drives the gears to drive the rack, enabling multi-point feeding from the feed bottle. Combined with a water pump, filter layer, and heating device, it achieves multi-point feeding, water circulation filtration, and temperature control.

Benefits of technology

It ensures that fish in the aquarium can get food evenly, guaranteeing that every fish can eat, adapting to the needs of different fish species, purifying and oxygenating the water, and reducing individual growth differences.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of viewing fish tanks, in particular to a multi-point feeding viewing fish tank which comprises a base, a glass tank wall, a tank cover, an observation cover, a first protective shell and a rack, the glass tank wall is fixedly connected to the base, the tank cover covers the glass tank wall, the observation cover is rotatably arranged on the tank cover, the first protective shell is fixedly connected to the tank cover, and the rack is fixedly connected to the first protective shell. And a rack is slidably arranged in the first protective shell. A servo motor is started, an output shaft of the servo motor drives a gear to rotate, the gear is meshed with a rack, the rack drives a mounting block and a feed bottle to move rightwards, the feed bottle drives a push rod, a connecting block and a clamping rod to move rightwards, the clamping rod slides in a guide groove, and the clamping rod drives the push rod to move front and back; therefore, the feed can be spilled along a straight line for multiple times, the purpose of multi-point feeding is achieved, the fish can obtain food in a larger range, and it is guaranteed that each fish can eat fish food.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of viewing fish tank, especially to a multi-point feeding viewing fish tank. BACKGROUND

[0002] The viewing fish tank is a kind of aquarium specially designed for ornamental purposes, commonly used in family, office, hotel, shopping mall and other public places.

[0003] The patent with the authorized announcement number CN217308796U discloses a fish tank. It includes a cylinder body, a feeder is arranged at the opening of the cylinder body, a touch screen is arranged on the side of the cylinder body, the touch screen is signal connected with the feeder for controlling the feeder to drop fish food, when feeding fish using the patent, fish food is dropped by the feeder for feeding, when feeding, since the feeder of the above-mentioned existing patent is fixed, the feeding position is fixed, but weaker or smaller fish cannot compete with more active or larger fish for food, which easily leads to insufficient nutrition of part of fish, and large fish will overeat, which will lead to obvious growth difference of individuals in the same group in the long run, and even lead to death of small fish.

[0004] Therefore, it is necessary to provide a multi-point feeding viewing fish tank, which can be fed by multiple points through servo motor, gear and feed bottle and other parts, so as to ensure that fish in the fish tank can eat fish food. UTILITY MODEL CONTENTS

[0005] In order to overcome the shortcomings that since the feeder of the above-mentioned existing patent is fixed, the feeding position is fixed, but weaker or smaller fish cannot compete with more active or larger fish for food, which easily leads to insufficient nutrition of part of fish, and large fish will overeat, which will lead to obvious growth difference of individuals in the same group in the long run, and even lead to death of small fish, the utility model provides a multi-point feeding viewing fish tank, which can be fed by multiple points through servo motor, gear and feed bottle and other parts, so as to ensure that fish in the fish tank can eat fish food.

[0006] In order to achieve the above problems, the utility model discloses the following technical scheme: a kind of multi-point feeding's viewing fish tank, including base, glass jar wall, jar cover and observation cover, base is fixedly connected with glass jar wall, glass jar wall is covered with jar cover, observation cover is rotatably arranged on jar cover, further including first protective housing, second protective housing, servo motor, gear, rack, connecting block, mounting block, feed bottle, push rod, spring, electromagnet and clamping rod, first protective housing is fixedly connected on jar cover, rack is slidably arranged in first protective housing, second protective housing is fixedly connected on first protective housing, servo motor is installed in second protective housing, gear is installed on the output shaft of servo motor, gear is engaged with rack, mounting block is fixedly connected on rack, feed bottle is clamped on mounting block, push rod is slidably arranged in feed bottle, connecting block is fixedly connected on push rod, spring is sleeved on push rod, the both ends of spring are connected with push rod and connecting block respectively, clamping rod is slidably arranged in connecting block, guiding slot is formed in jar cover, clamping rod slides in guiding slot, electromagnet is installed on connecting block, and electromagnet is above clamping rod.

[0007] Further explanation, further including heating rod, suction cup and control screen, heating rod is installed in glass jar wall, two suction cups are arranged on heating rod, suction cup contacts glass jar wall, control screen is installed on jar cover, control screen is electrically connected with heating rod, and control screen is right to observation cover.

[0008] Further explanation, further including water pump, water pipe, shell, filter layer and filter frame, water pump is installed on base, water pump is in glass jar wall, shell is fixedly connected on jar cover, shell is left to observation cover, water pipe is connected between shell and water pump, water pipe penetrates glass jar wall, filter frame is placed in shell, filter layer is arranged on filter frame, water outlet is formed in jar cover, and water outlet is below filter frame.

[0009] Further explanation, further including anti-skid pad, anti-skid pad is embeddedly arranged on base.

[0010] Further explanation, further including rubber pad, rubber pad is arranged between jar cover and glass jar wall.

[0011] Further explanation, further including light bar, light bar is installed on jar cover, and light bar is between shell and jar cover.

[0012] Compared with prior art, the utility model has the following technical effects: 1, by starting servo motor, the output shaft of servo motor drives gear to rotate, gear is engaged with rack, so that rack drives mounting block and feed bottle to move right, so that feed bottle drives push rod, connecting block and clamping rod to move right, clamping rod slides in guiding slot, so that clamping rod drives push rod to move back and forth, and then feed can be scattered along straight line multiple times, so as to realize the purpose of multi-point feeding, so that fish can obtain food in larger range, and ensure that every fish can eat fish food.

[0013] 2. The heating rod is fixed to the glass tank wall by a suction cup, and then the heating rod is controlled by the control panel to heat the water, so that the water temperature can reach the temperature suitable for fish, thus meeting the needs of different fish species.

[0014] 3. Water is drawn from the glass tank wall by a water pump, and then enters the outer shell through the water pipe. The filter layer and filter frame filter the water, and the filtered water returns to the fish tank through the outlet. This water circulation system can purify and oxygenate the water. Attached Figure Description

[0015] Figure 1 This is a three-dimensional structural diagram of the present invention.

[0016] Figure 2 This is a three-dimensional structural diagram of the base, glass cylinder wall, and cylinder head of this utility model.

[0017] Figure 3 This is a partial sectional view of the second protective shell, the first protective shell, and gears and other components of this utility model.

[0018] Figure 4 This is a partial sectional view of the mounting block and feed bottle and other components of this utility model.

[0019] Figure 5 This is a partial cross-sectional view of the heating rod, suction cup, and control panel of this utility model.

[0020] The markings in the attached diagram are as follows: 1: Base, 2: Glass cylinder wall, 3: Cylinder cover, 4: Observation cover, 5: First protective shell, 6: Second protective shell, 7: Servo motor, 8: Gear, 10: Connecting block, 9: Rack, 11: Mounting block, 12: Feed bottle, 13: Push rod, 14: Spring, 15: Electromagnet, 16: Locking rod, 17: Guide groove, 18: Heating rod, 19: Suction cup, 20: Control panel, 22: Water pump, 23: Water pipe, 24: Outer shell, 25: Filter layer, 26: Filter frame, 28: Water outlet, 29: Anti-slip pad, 30: Rubber pad, 31: Light strip. Detailed Implementation

[0021] The present invention will now be described more fully below with reference to the accompanying drawings, in which presently preferred embodiments of the invention are shown. However, the present invention may be embodied in many different forms and should not be construed as limited to the embodiments set forth herein; rather, these embodiments are provided for thoroughness and completeness and to fully convey the scope of the invention to those skilled in the art.

[0022] Example 1: A viewing aquarium with multi-point feeding, see [reference] Figures 1-5As shown, including the base 1, glass cylinder wall 2, cylinder cover 3 and observation cover 4, the base 1 top fixedly connected with glass cylinder wall 2, glass cylinder wall 2 top cover with cylinder cover 3, cylinder cover 3 top rotatably provided with observation cover 4, also includes a first protective shell 5, second protective shell 6, servo motor 7, gear 8, rack 9, connecting block 10, mounting block 11, feed bottle 12, push rod 13, spring 14, electromagnet 15 and clamping rod 16, cylinder cover 3 top rear side fixedly connected with the first protective shell 5, the first protective shell 5 is slidably provided with a rack 9, the first protective shell 5 rear side is provided with a second protective shell 6 by welding, the second protective shell 6 is provided with a servo motor 7 by bolt connection, the output shaft of the servo motor 7 is provided with a gear 8, the gear 8 is engaged with the rack 9, the rear of the rack 9 is fixedly connected with the mounting block 11, the mounting block 11 is clamped with the feed bottle 12, the feed bottle 12 is slidably provided with a push rod 13 in the lower part, the push rod 13 rear end is fixedly connected with the connecting block 10, the push rod 13 is sleeved with a spring 14, the both ends of the spring 14 are connected with the push rod 13 and the connecting block 10 respectively, the connecting block 10 is slidably provided with a clamping rod 16, the top of the cylinder cover 3 is provided with a guide groove 17, the guide groove 17 is wavy, the clamping rod 16 slides in the guide groove 17, the connecting block 10 is provided with an electromagnet 15 by bolt connection, the electromagnet 15 is located above the clamping rod 16, the clamping rod 16 is made of metal.

[0023] Referring to Figure 5 As shown, it also includes a non-slip mat 29, the base 1 bottom is embedded with a non-slip mat 29.

[0024] Referring to Figure 5 As shown, it also includes a rubber pad 30, the cylinder cover 3 and the glass cylinder wall 2 are provided with a rubber pad 30.

[0025] Referring to Figure 1 、 Figure 2 And Figure 3 As shown, it also includes a light bar 31, the cylinder cover 3 is provided with a light bar 31 by bolt connection, the light bar 31 is located between the shell 24 and the cylinder cover 3.

[0026] When the fish in the fish tank needs to be fed, the servo motor 7 is started, the output shaft of the servo motor 7 drives the gear 8 to rotate, the gear 8 is engaged with the rack 9, the rack 9 drives the mounting block 11 and the feed bottle 12 to move to the right, the feed bottle 12 drives the push rod 13, the connecting block 10 and the clamping rod 16 to move to the right, the clamping rod 16 slides in the guide groove 17, the guide groove 17 is wave-shaped, so that the clamping rod 16 drives the push rod 13 to move back and forth, the spring 14 deforms accordingly, and then the feed can be scattered in a straight line multiple times, so as to achieve the purpose of multi-point feeding, so that the fish can obtain food in a larger range, and ensure that each fish can eat the fish food. After feeding is completed, the clamping rod 16 is attracted by the electromagnet 15, and then the feed bottle 12 is moved back to the original position, facilitating the next feeding. The observation cover 4 can facilitate observation and feeding of fish. The rubber pad 30 increases the friction between the cylinder cover 3 and the glass tank wall 2, thereby reinforcing the cylinder cover 3. The light bar 31 can facilitate seeing the position of the fish at night. The anti-skid pad 29 can increase the friction of the base 1, thereby avoiding the displacement of the fish tank.

[0027] Example 2: Based on example 1, referring to Figure 2 and 5 , further comprising a heating rod 18, a suction cup 19 and a control screen 20. The heating rod 18 is arranged in the right side of the glass tank wall 2. The suction cup 19 is arranged on the right side of the upper and lower parts of the heating rod 18. The suction cup 19 is in contact with the glass tank wall 2. The control screen 20 is installed on the top of the cylinder cover 3. The control screen 20 is electrically connected with the heating rod 18. The control screen 20 is located on the right side of the observation cover 4.

[0028] When the water temperature needs to be adjusted, the heating rod 18 is fixed on the glass tank wall 2 by the suction cup 19, and then the water is heated by the heating rod 18 controlled by the control screen 20, so that the water temperature reaches the suitable temperature for the fish, thereby meeting the needs of different fish species.

[0029] Referring to Figure 1 and Figure 5 , further comprising a water pump 22, a water pipe 23, a shell 24, a filter layer 25 and a filter frame 26. The water pump 22 is installed on the top of the base 1 and located in the glass tank wall 2. The shell 24 is fixedly connected to the top of the cylinder cover 3 and located on the left side of the observation cover 4. The water pipe 23 is connected between the water pump 22 and the shell 24. The water pipe 23 is a hard pipe and penetrates the glass tank wall 2. The filter frame 26 is placed in the shell 24 and the filter layer 25 is arranged on the upper part of the filter frame 26. The water outlet 28 is opened on the top of the cylinder cover 3 and located below the filter frame 26. The water outlet hole is opened on the bottom of the shell 24.

[0030] When fish is bred by using the fish tank, the water in the glass tank wall 2 is extracted by the water pump 22, so that the water enters the shell 24 from the water pipe 23, the filter layer 25 and the filter frame 26 filter the water, so that the water can be filtered, and the filtered water returns to the fish tank from the water outlet 28, so as to circulate the water, and the water can be purified and oxygenated.

[0031] While the present application has been described with reference to example embodiments, it will be understood that the application is not limited to the example embodiments disclosed. The scope of the following claims is to be given the broadest interpretation to encompass all variations and equivalents.

Claims

1. A multi-point feeding viewing aquarium, comprising a base (1), a glass tank wall (2), a tank cover (3), and an observation cover (4), wherein the glass tank wall (2) is fixedly connected to the base (1), the tank cover (3) is placed on the glass tank wall (2), and the observation cover (4) is rotatably mounted on the tank cover (3), characterized in that, The first protection shell (5) is fixed on the cylinder cover (3), the rack (9) is slidably arranged in the first protection shell (5), the second protection shell (6) is fixed on the first protection shell (5), the servo motor (7) is installed in the second protection shell (6), the gear (8) is installed on the output shaft of the servo motor (7), the gear (8) is engaged with the rack (9), the mounting block (11) is fixed on the rack (9), the feed bottle (12) is clamped on the mounting block (11), the push rod (13) is slidably arranged in the feed bottle (12), the connecting block (10) is fixedly connected to the push rod (13), the spring (14) is sleeved on the push rod (13), the two ends of the spring (14) are connected with the push rod (13) and the connecting block (10) respectively, the clamping rod (16) is slidably arranged in the connecting block (10), the guide groove (17) is formed in the cylinder cover (3), the clamping rod (16) slides in the guide groove (17), the electromagnet (15) is installed on the connecting block (10) and located above the clamping rod (16).

2. A multi-point feeding viewing aquarium as claimed in claim 1, wherein, The heating rod (18), the suction disc (19) and the control screen (20) are further included, the heating rod (18) is arranged in the glass cylinder wall (2), The two suction discs (19) are arranged on the heating rod (18) and in contact with the glass cylinder wall (2), the control screen (20) is installed on the cylinder cover (3) and electrically connected with the heating rod (18), and the control screen (20) is located to the right of the observation cover (4).

3. A multi-point feeding viewing aquarium as claimed in claim 2, wherein, The water pump (22), the water pipe (23), the shell (24), the filter layer (25) and the filter frame (26) are further included, the water pump (22) is installed on the base (1) and located in the glass cylinder wall (2), the shell (24) is fixedly connected to the cylinder cover (3) and located to the left of the observation cover (4), the water pipe (23) is connected between the water pump (22) and the shell (24) and penetrates the glass cylinder wall (2), the filter frame (26) is placed in the shell (24), the filter layer (25) is arranged on the filter frame (26), the water outlet (28) is formed in the cylinder cover (3) and located below the filter frame (26).

4. A multi-point feeding viewing aquarium as claimed in claim 3, wherein, The anti-skid pad (29) is further included and embeddedly arranged on the base (1).

5. A multi-point feeding viewing aquarium as claimed in claim 4, wherein, The rubber pad (30) is further included and arranged between the cylinder cover (3) and the glass cylinder wall (2).

6. A multi-point feeding viewing aquarium as claimed in claim 5, wherein, The light bar (31) is further included and installed on the cylinder cover (3) and located between the shell (24) and the cylinder cover (3).

Citation Information

Patent Citations

  • Fish tank

    CN217308796U