CN104067976A - Constant-temperature double-tank fish tank - Google Patents

Constant-temperature double-tank fish tank Download PDF

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Publication number
CN104067976A
CN104067976A CN201410333563.2A CN201410333563A CN104067976A CN 104067976 A CN104067976 A CN 104067976A CN 201410333563 A CN201410333563 A CN 201410333563A CN 104067976 A CN104067976 A CN 104067976A
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China
Prior art keywords
resistance
fish
thermostat
temperature sensing
sensing device
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Granted
Application number
CN201410333563.2A
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Chinese (zh)
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CN104067976B (en
Inventor
倪迪锋
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Guangdong Gaohang Intellectual Property Operation Co ltd
GUANGDONG XIONGKAI TECHNOLOGY INDUSTRIAL CO.,LTD.
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YUYAO YIQUN MACHINERY PLANT
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Priority to CN201410333563.2A priority Critical patent/CN104067976B/en
Publication of CN104067976A publication Critical patent/CN104067976A/en
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Abstract

The invention discloses a constant-temperature double-tank fish tank. The constant-temperature double-tank fish tank comprises a tropical fish breeding tank, a piece of vacuum thermal insulation glass, a temperate zone fish breeding tank and a base box. The tropical fish breeding tank and the temperate zone fish breeding tank are isolated through the vacuum heat insulation glass. A bottom plate is arranged between the base box and the combination of the tropical fish breeding tank and the temperate zone fish breeding tank. The tropical fish breeding tank and the temperate zone fish breeding tank are respectively and internally provided with a waterproof lamp, a filter screen, a heating device, a temperature sensing device and an oxygen outlet. Each oxygen outlet is connected with an oxygen generator through an oxygen conveying pipeline. The oxygen generator, a thermostat A and a thermostat B are arranged in the base box. The heating devices and the temperature sensing devices are all connected with the thermostats. The thermostat A and the thermostat B are respectively and internally provided with a power supply, a control circuit and a feedback circuit. Tropical fish and temperate zone fish can be simultaneously viewed through the fish tank, the corresponding thermostat and the corresponding filter screen are arranged in the tropical fish breeding tank, and therefore the living temperature of the tropical fish can be ensured, and the fish can be prevented from making contact with the corresponding heating device and being scalded.

Description

A kind of constant temperature twin-tub fish jar
Technical field
The present invention relates to a kind of fish jar, specifically a kind of constant temperature twin-tub fish jar.
Background technology
Along with the development of social city, technicalization, hommization, the raising of people's living standard, it is attractive in appearance that increasing consumer focuses on household, breeded fish into the main flow in epoch.Existing fish basin arrangement is single, different with temperate zone fish preference temperature scope due to tropical fish, can only view and admire a kind of of tropical fish or temperate zone fish; Existing fish jar temperature control poor effect, affects the existence of fish, and heater is directly exposed in fish jar, when fish touches heater, easily scalds.
Summary of the invention
The object of the present invention is to provide a kind of constant temperature twin-tub fish jar, to solve the problem proposing in above-mentioned background technology.
For achieving the above object, the invention provides following technical scheme:
A constant temperature twin-tub fish jar, comprises tropical fish culturing jar, vacuum heat-insulation glass, temperate zone fish culture cylinder and base member case; Described tropical fish culturing jar and temperate zone fish culture cylinder, centre is separated by vacuum heat-insulation glass; Between described base member case and tropical fish culturing jar and temperate zone fish culture cylinder, be provided with base plate; In described tropical fish culturing jar and temperate zone fish culture cylinder, be equipped with watertight light fitting, filter screen, heater, temperature sensing device and oxygen exhaust; Described heater, temperature sensing device and oxygen exhaust are located on base plate, and filter screen is located at their tops; Described watertight light fitting is located on filter screen; Described oxygen exhaust connects oxygenerator by oxygen therapy pipeline; In described base member case, be provided with oxygenerator, thermostat A and thermostat B; Described heater is all connected with thermostat with temperature sensing device; Described thermostat A and thermostat B, inside is equipped with power supply, control circuit and feedback circuit; Described control circuit comprises interrupteur SW 1, manages Q10, fuse F1 and inductance L with door D1, N-MOS pipe Q9, the second resistance R 2, the 3rd resistance R 3, the 4th resistance R 4, the 5th resistance R 5, the 6th resistance R 6, P-MOS; Described feedback circuit comprises the first resistance R 1, potentiometer RP, the 7th resistance R 7, NE555 integrated circuit; Described interrupteur SW 1 is contacted with power supply by the 5th resistance R 5, and with an interface and interrupteur SW 1 series winding of door D1 input, N-MOS manages Q9 grid and contacts with door D1 output, its source ground; Described the 3rd resistance R 3 be connected to and the grid of door D1 output and N-MOS pipe Q9 between, the second resistance R 2 is connected with another interface of input with door D1, the 3rd resistance R 3 is connected with power supply by the 6th resistance R 6 with the second resistance R 2; The drain electrode series winding of described P-MOS pipe Q10 grid and N-MOS pipe Q9, the 4th resistance R 4 is connected between the source electrode and grid of P-MOS pipe Q10, and the grid of P-MOS pipe Q10 is connected with power supply with inductance L 1 by fuse F1 with source electrode; Described potentiometer RP and the first resistance R 1, temperature sensing device series winding, the first resistance R 1, temperature sensing device, potentiometer RP one end are connected with power supply by the 7th resistance R 7, other end ground connection; Described NE555 integrated circuit trigger end is connected between the first resistance R 1 and temperature sensing device, NE555 integrated circuit and the first resistance R 1, temperature sensing device, potentiometer RP form a steady-state circuit, and its output is connected with another interface of input with door D1.
As the present invention's scheme further: described temperature sensing device is thermistor; Described supply voltage is 12~19V; Described filter screen is provided with goose soft rock and decorates pasture and water.
Compared with prior art, the invention has the beneficial effects as follows: 1. this fish jar comprises tropical fish culturing jar and temperate zone fish culture cylinder, can watch tropical fish and temperate zone fish simultaneously; 2. in tropical fish culturing jar and temperate zone fish culture cylinder, thermostat is set, makes two kinds of fishes always in suitable temperature range; 3. heater is provided with filter screen, can prevent fish because of touching heater scald; 4. in fish jar, be provided with watertight light fitting, filter screen is provided with decorates pasture and water and goose soft rock, makes fish jar more attractive in appearance.
Accompanying drawing explanation
Fig. 1 is the structural representation of constant temperature twin-tub fish jar.
Fig. 2 is the thermostat module schematic diagram of constant temperature twin-tub fish jar.
Fig. 3 is the constant-temperature circuit schematic diagram of constant temperature twin-tub fish jar.
1-tropical fish culturing jar, 2-vacuum heat-insulation glass, 3-temperate zone fish culture cylinder, 4-base member case, 5-watertight light fitting, 6-filter screen, 7-heater, 8-temperature sensing device, 9-oxygen exhaust, 10-oxygenerator, 11-thermostat A, 12-thermostat B, 13-power supply, 14-control circuit, 15-feedback circuit in figure.
Embodiment
Below in conjunction with the accompanying drawing in the embodiment of the present invention, the technical scheme in the embodiment of the present invention is clearly and completely described, obviously, described embodiment is only the present invention's part embodiment, rather than whole embodiment.Embodiment based in the present invention, those of ordinary skills, not making the every other embodiment obtaining under creative work prerequisite, belong to the scope of protection of the invention.
Refer to Fig. 1~3, in the embodiment of the present invention, a kind of constant temperature twin-tub fish jar, comprises tropical fish culturing jar 1, vacuum heat-insulation glass 2, temperate zone fish culture cylinder 3 and base member case 4; Described tropical fish culturing jar 1 and temperate zone fish culture cylinder 3, centre is separated by vacuum heat-insulation glass 2; Described tropical fish culturing jar 1 and temperate zone fish culture cylinder 3, in base member case 4 tops, are provided with base plate between base member case 4 and tropical fish culturing jar 1 and temperate zone fish culture cylinder 3; In described tropical fish culturing jar 1 and temperate zone fish culture cylinder 3, be equipped with watertight light fitting 5, filter screen 6, heater 7, temperature sensing device 8 and oxygen exhaust 9; Described heater 7, temperature sensing device 8 and oxygen exhaust 9 are located on base plate, and filter screen 6 is located at their tops; Described filter screen 6 is provided with goose soft rock and decorates pasture and water; Totally 8 of described watertight light fittings 5, are located at respectively tropical fish culturing jar 1 and temperate zone fish culture cylinder 3 four jiaos, and watertight light fitting 5 is located on filter screen 6; Described temperature sensing device 8 is thermistor; Described oxygen exhaust 9 connects oxygenerator 10 by oxygen therapy pipeline through base plate; In described base member case 4, be provided with oxygenerator 10, thermostat A11 and thermostat B12; Described heater 7 is all connected with thermostat with temperature sensing device 8; Described thermostat A11 and thermostat B12, inside is equipped with power supply 13, control circuit 14 and feedback circuit 15; Described power supply 13, its voltage is 12~19V; Described control circuit 14 comprises interrupteur SW 1, manages Q10 (P type FET), fuse F1 and inductance L 1 with door D1, N-MOS pipe Q9 (N-type FET), the second resistance R 2, the 3rd resistance R 3, the 4th resistance R 4, the 5th resistance R 5, the 6th resistance R 6, P-MOS; Described interrupteur SW 1 is by the 5th resistance R 5 and power supply 13 series windings, and with an interface and interrupteur SW 1 series winding of door D1 input, N-MOS manages Q9 (N-type FET) grid and contacts with door D1 output, its source ground; Described the 3rd resistance R 3 be connected to and the grid of door D1 output and N-MOS pipe Q9 between, the second resistance R 2 is connected with another interface of input with door D1, the 3rd resistance R 3 is connected with power supply 13 by the 6th resistance R 6 with the second resistance R 2, and its object is for providing an operating voltage with door D1 and N-MOS pipe Q9; The drain electrode series winding of described P-MOS pipe Q10 (P type FET) grid and N-MOS pipe Q9, the 4th resistance R 4 is connected between the source electrode and grid of P-MOS pipe Q10, and the grid of P-MOS pipe Q10 is connected with power supply 13 with inductance L 1 by fuse F1 with source electrode; Described feedback circuit 15 comprises the first resistance R 1, potentiometer RP, the 7th resistance R 7, NE555 integrated circuit; Described potentiometer RP and the first resistance R 1, temperature sensing device 8 series windings, and the first described resistance R 1, temperature sensing device 8, potentiometer RP one end be connected with power supply 13 by the 7th resistance R 7, other end ground connection; Described NE555 integrated circuit trigger end is connected between the first resistance R 1 and temperature sensing device 8, this NE555 integrated circuit and the first resistance R 1, temperature sensing device 8, potentiometer RP form a steady-state circuit, and its output is connected with another interface of input with door D1.
Operation principle of the present invention is: described constant temperature twin-tub fish jar, interrupteur SW 1 connects the rear circuit of power supply 13 and starts working, by potentiometer RP by circuit, start to control Temperature Setting at suitable temperature, water temperature in temperature sensing device 8 monitoring fish jars, when water temperature is during lower than suitable temperature, temperature sensing device 8 resistances reduce, by the first resistance R 1 and the dividing potential drop of temperature sensing device 8 with potentiometer RP, make the voltage of trigger end of NE555 integrated circuit lower than 5V/3, so steady-state circuit is triggered, the output output high level of NE555 integrated circuit, with two interfaces of the input of door D1 be all high level, also export high level with the output of door D1, because the grid of N-MOS pipe Q9 and the voltage VGS between source electrode are greater than the cut-in voltage of N-MOS pipe Q9, so source electrode and the drain electrode of N-MOS pipe Q9 are switched on, thereby make the grounded-grid of P-MOS pipe Q10, the grid of P-MOS pipe Q10 and the voltage VGS between source electrode are less than the cut-in voltage of P-MOS pipe Q10 for-19V~-12V, thereby make the source electrode and drain electrode conducting of P-MOS pipe Q10, heater 7 is started working, when water temperature is during higher than suitable temperature, temperature sensing device 8 resistances raise, by the first resistance R 1 and the dividing potential drop of temperature sensing device 8 with potentiometer RP, make the voltage of trigger end of NE555 integrated circuit higher than 5V/3, so above-mentioned steady-state circuit is in stable state, the output output low level of NE555 integrated circuit, be respectively low level of a high level with two interfaces of the input of door D1, output output low level with door D1, because the grid of N-MOS pipe Q0 and the voltage VGS between source electrode are less than the cut-in voltage of N-MOS pipe Q9, so source electrode and the drain electrode of N-MOS pipe Q9 are disconnected, thereby the source electrode of P-MOS pipe Q10 disconnects with drain electrode, heater 7 quits work, by above-mentioned operation principle, make in tropical fish culturing jar 1 and temperate zone fish culture cylinder 3 water temperature in optimum range, this fish jar is provided with tropical fish culturing jar 1 and temperate zone fish culture cylinder 3, can watch two kinds of fishes simultaneously, between tropical fish culturing jar 1 and temperate zone fish culture cylinder 3, vacuum heat-insulation glass 2 is set, the living environment of two kinds of fishes is independent of each other, also in tropical fish culturing jar 1 and temperate zone fish culture cylinder 3, thermostat is set, make two kinds of fishes always in suitable temperature range, filter screen 6 is located at heater 7, temperature sensing device 8 and oxygen exhaust 9 tops, not only can prevent fish because of touching heater 7 scald, and can cover device below by the decoration pasture and water that arrange on filter screen 6, thereby make fish jar more attractive in appearance, this fish jar is also provided with watertight light fitting 5, can strengthen the lighting effects of fish jar.
To those skilled in the art, obviously the invention is not restricted to the details of above-mentioned one exemplary embodiment, and in the situation that not deviating from spirit of the present invention or essential characteristic, can realize the present invention with other concrete form.Therefore, no matter from which point, all should regard embodiment as exemplary, and be nonrestrictive, scope of the present invention is limited by claims rather than above-mentioned explanation, is therefore intended to include in the present invention dropping on the implication that is equal to important document of claim and all changes in scope.Any Reference numeral in claim should be considered as limiting related claim.
In addition, be to be understood that, although this specification is described according to embodiment, but not each embodiment only comprises an independently technical scheme, this narrating mode of specification is only for clarity sake, those skilled in the art should make specification as a whole, and the technical scheme in each embodiment also can, through appropriately combined, form other embodiments that it will be appreciated by those skilled in the art that.

Claims (3)

1. a constant temperature twin-tub fish jar, comprises tropical fish culturing jar (1), vacuum heat-insulation glass (2), temperate zone fish culture cylinder (3) and base member case (4); It is characterized in that: described tropical fish culturing jar (1) and temperate zone fish culture cylinder (3), centre is separated by vacuum heat-insulation glass (2); Between described base member case (4) and tropical fish culturing jar (1) and temperate zone fish culture cylinder (3), be provided with base plate; In described tropical fish culturing jar (1) and temperate zone fish culture cylinder (3), be equipped with watertight light fitting (5), filter screen (6), heater (7), temperature sensing device (8) and oxygen exhaust (9); Described heater (7), temperature sensing device (8) and oxygen exhaust (9) are located on base plate, and filter screen (6) is located at their tops; Described watertight light fitting (5) is located on filter screen (6); Described oxygen exhaust (9) connects oxygenerator (10) by oxygen therapy pipeline; In described base member case (4), be provided with oxygenerator (10), thermostat A (11) and thermostat B (12); Described heater (7) is all connected with thermostat with temperature sensing device (8); Described thermostat A (11) and thermostat B (12), inside is equipped with power supply (13), control circuit (14) and feedback circuit (15); Described control circuit (14) comprises interrupteur SW 1, manages Q10, fuse F1 and inductance L 1 with door D1, N-MOS pipe Q9, the second resistance R 2, the 3rd resistance R 3, the 4th resistance R 4, the 5th resistance R 5, the 6th resistance R 6, P-MOS; Described feedback circuit (15) comprises the first resistance R 1, potentiometer RP, the 7th resistance R 7, NE555 integrated circuit; Described interrupteur SW 1 is by the 5th resistance R 5 and power supply (13) series winding, and with an interface and interrupteur SW 1 series winding of door D1 input, N-MOS manages Q9 grid and contacts with door D1 output, its source ground; Described the 3rd resistance R 3 be connected to and the grid of door D1 output and N-MOS pipe Q9 between, the second resistance R 2 is connected with another interface of input with door D1, the 3rd resistance R 3 is connected with power supply (13) by the 6th resistance R 6 with the second resistance R 2; The drain electrode series winding of described P-MOS pipe Q10 grid and N-MOS pipe Q9, the 4th resistance R 4 is connected between the source electrode and grid of P-MOS pipe Q10, and the grid of P-MOS pipe Q10 is connected with power supply (13) with inductance L 1 by fuse F1 with source electrode; Described potentiometer RP and the first resistance R 1, temperature sensing device (8) series winding, the first resistance R 1, temperature sensing device (8), potentiometer RP one end are connected with power supply (13) by the 7th resistance R 7, other end ground connection; Described NE555 integrated circuit trigger end is connected between the first resistance R 1 and temperature sensing device (8), NE555 integrated circuit and the first resistance R 1, temperature sensing device (8), potentiometer RP form a steady-state circuit, and its output is connected with another interface of input with door D1.
2. constant temperature twin-tub fish jar according to claim 1, is characterized in that: described temperature sensing device (8) is thermistor; Described power supply (13), its voltage is 12~19V.
3. constant temperature twin-tub fish jar according to claim 1, is characterized in that: described filter screen (6) is provided with goose soft rock and decorates pasture and water.
CN201410333563.2A 2014-07-11 2014-07-11 Constant-temperature double-tank fish tank Expired - Fee Related CN104067976B (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112544544A (en) * 2020-12-10 2021-03-26 棠香铁山(重庆)智慧农业科技有限公司 Anti-season crayfish breeding system and control method

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CN2181798Y (en) * 1993-03-18 1994-11-09 员玉怀 Multifunctional fish tank
CN2183663Y (en) * 1993-12-24 1994-11-30 李勇 Receptacle with semiconductor cooling apparatus for sea aquaria
JPH08263148A (en) * 1995-03-20 1996-10-11 Nissin Electric Co Ltd Water temperature regulating device for water tank
CN2247420Y (en) * 1996-06-06 1997-02-19 周路 Sealed thermostatic fish tank
JPH1175618A (en) * 1997-09-12 1999-03-23 Hitachi Tochigi Electron:Kk Water tank apparatus
CN2770344Y (en) * 2004-09-20 2006-04-12 靳广林 Wall-hanging ecological energy-saving aquarium
CN2862690Y (en) * 2005-12-10 2007-01-31 周挺 Water and electricity separating aquarium thermostat
CN201107979Y (en) * 2007-06-26 2008-09-03 万朝峰 External constant temperature, oxygenation and filtering three-in-one body device, and fish tank
CN201204868Y (en) * 2007-05-23 2009-03-11 王宇光 Full-automatic multifunctional aquariums
CN201270722Y (en) * 2008-05-26 2009-07-15 顾钰 Integral sea water and freshwater all-purpose aquarium
CN201345854Y (en) * 2008-12-30 2009-11-18 上海市宝山区青少年科学技术指导站 Automatic water-changing and heat-insulating system for fishbowl

Patent Citations (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2181798Y (en) * 1993-03-18 1994-11-09 员玉怀 Multifunctional fish tank
CN2183663Y (en) * 1993-12-24 1994-11-30 李勇 Receptacle with semiconductor cooling apparatus for sea aquaria
JPH08263148A (en) * 1995-03-20 1996-10-11 Nissin Electric Co Ltd Water temperature regulating device for water tank
CN2247420Y (en) * 1996-06-06 1997-02-19 周路 Sealed thermostatic fish tank
JPH1175618A (en) * 1997-09-12 1999-03-23 Hitachi Tochigi Electron:Kk Water tank apparatus
CN2770344Y (en) * 2004-09-20 2006-04-12 靳广林 Wall-hanging ecological energy-saving aquarium
CN2862690Y (en) * 2005-12-10 2007-01-31 周挺 Water and electricity separating aquarium thermostat
CN201204868Y (en) * 2007-05-23 2009-03-11 王宇光 Full-automatic multifunctional aquariums
CN201107979Y (en) * 2007-06-26 2008-09-03 万朝峰 External constant temperature, oxygenation and filtering three-in-one body device, and fish tank
CN201270722Y (en) * 2008-05-26 2009-07-15 顾钰 Integral sea water and freshwater all-purpose aquarium
CN201345854Y (en) * 2008-12-30 2009-11-18 上海市宝山区青少年科学技术指导站 Automatic water-changing and heat-insulating system for fishbowl

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112544544A (en) * 2020-12-10 2021-03-26 棠香铁山(重庆)智慧农业科技有限公司 Anti-season crayfish breeding system and control method

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