CN209485967U - Turbidity meter - Google Patents

Turbidity meter Download PDF

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Publication number
CN209485967U
CN209485967U CN201920093796.8U CN201920093796U CN209485967U CN 209485967 U CN209485967 U CN 209485967U CN 201920093796 U CN201920093796 U CN 201920093796U CN 209485967 U CN209485967 U CN 209485967U
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China
Prior art keywords
front cover
inclined hole
optical path
axis
fixing seat
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CN201920093796.8U
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Chinese (zh)
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包伟方
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Zhejiang Luheng Environmental Technology Co.,Ltd.
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HANGZHOU LOHAND BIOLOGICAL Co Ltd
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Abstract

The utility model discloses a kind of turbidity meter, comprising: front cover, shell, light-emitting component, detection optical path, two optical windows and cleaning device;Cleaning device includes motor and the cleaning component for cleaning the optical window;Motor includes transmission shaft and the motor body for driving transmission shaft to rotate;Front cover is equipped with first through hole and two inclined holes;Transmission shaft penetrates rotatably first through hole and is fixedly connected with cleaning component;The axis co-planar of two inclined holes and the direction out of inclined hole towards the outer surface of front cover, which extend, intersects;Outer surface of the axis of first through hole perpendicular to front cover;Optical window, which is set in corresponding inclined hole and seals with inclined hole, to be cooperated;The outer end face of optical window is located at the opening of corresponding inclined hole and coplanar with the outer surface of front cover;Front cover is fixedly connected with light-emitting component and detection optical path respectively;The center line of light-emitting component is overlapped with the axis of the first inclined hole;The center line of detection optical path is overlapped with the axis of the second inclined hole.The accuracy of measurement result can be improved in this programme.

Description

Turbidity meter
Technical field
The utility model relates to field of sensing technologies, more particularly to turbidity meter.
Background technique
Turbidity is one of important parameter of water quality monitoring, and turbidimetry is drinking water safety, water pollution monitoring aspect Important means.With the improvement of living standards, requirement of the people to turbidimetry is higher and higher, easy to operate, high sensitivity, threshold Being worth low, online monitoring is its developing direction.Throw-in type turbidity meter have without sampling, using it is simple the features such as, be Realize on-line monitoring ideal chose.However, optics is visited since throw-in type turbidity meter is placed in testing liquid for a long time Head surface inevitably occurs to pollute and reduce the accuracy of measurement result.
Utility model content
Based on this, it is necessary to provide a kind of turbidity meter, the accuracy of turbidity measurements can be improved.
The utility model provides a kind of turbidity meter comprising: front cover, light-emitting component, detection optical path, two optics Window and cleaning device;The cleaning device includes motor and the cleaning component for cleaning the optical window;The motor Motor body including transmission shaft and for driving the transmission shaft rotation;The front cover is equipped with first through hole and two inclined holes; The transmission shaft penetrates rotatably the first through hole and is fixedly connected with the cleaning component;The axis of the first through hole hangs down Directly in the outer surface of the front cover;The axis co-planar of described two inclined holes and out of described inclined hole towards the outer surface of the front cover Direction extends intersection;The inclined hole is correspondingly arranged with the optical window;The optical window is set in the corresponding inclined hole And it seals and cooperates with the inclined hole;The outer end face of the optical window be located at the opening of the corresponding inclined hole and with it is described before The outer surface of lid is coplanar;Described two inclined holes include the first inclined hole and the second inclined hole;The light-emitting component is fixed with the front cover Connection;The detection optical path is fixedly connected with the front cover;The axis of the center line of the light-emitting component and first inclined hole It is overlapped;The center line of the detection optical path is overlapped with the axis of second inclined hole.
In a kind of optional embodiment, the cleaning component includes cleaning sheet rubber, locking device and is used to support The cleaning sheet rubber is so that the cleaning sheet rubber keeps the sheet rubber fixing seat of predetermined shape;The sheet rubber fixing seat with The cleaning sheet rubber is fixedly connected;The sheet rubber fixing seat is fixedly connected by the locking device with the transmission shaft; The appearance face contact of the cleaning sheet rubber and the front cover.
In a kind of optional embodiment, the central axis of the center line of the light-emitting component and the detection optical path Intersection.
In a kind of optional embodiment, the turbidity meter further includes for fixing the light-emitting component and institute State the optical path fixing seat of detection optical path;The optical path fixing seat is fixedly connected with the front cover.
In a kind of optional embodiment, the optical path fixing seat is equipped with oblique for accommodating the third of the light-emitting component Hole, and the 4th inclined hole for accommodating the detection optical path;The optical path fixing seat respectively with the light-emitting component and the spy Optical path is surveyed to be fixedly connected;The axis of the third inclined hole is overlapped with the axis of first inclined hole;The axis of 4th inclined hole It is overlapped with the axis of second inclined hole.
In a kind of optional embodiment, the detection optical path includes in the 4th inclined hole along far from the front cover Lens, optical filter and the optical detection device that direction is set gradually.
In a kind of optional embodiment, the turbidity meter further includes the electricity for fixing the motor body Machine fixing seat;The motor fixing seat is fixedly connected with the front cover;The optical path fixing seat by the motor fixing seat with The front cover is fixedly connected.
In a kind of optional embodiment, the turbidity meter further includes shell;One end of the shell is equipped with For sealing matched opening with the front cover;The motor fixing seat is disposed in the housing;The optical path fixing seat is set to In the shell;Shell is equipped with for the opening with front cover sealing cooperation;The shell is cylindrical;The first through hole Axis be parallel to the central axis of the shell;The centerline axis parallel of the shell in by the third inclined hole axis with The plane that the axis of 4th inclined hole determines.
In a kind of optional embodiment, the turbidity meter further includes at least three studs;The stud is set In being located at the cleaning component on the outer surface of the front cover with the transmission shaft and rotate the position other than passed through region.
In a kind of optional embodiment, the turbidity meter further includes controller, driving circuit, photodetection Circuit, phase-shift circuit, multiplier and low-pass filter circuit;
The controller is connect with the input terminal of the input terminal of the driving circuit and the phase-shift circuit respectively.The control Device processed is for exporting trigger signal;The trigger signal is sinusoidal modulation signal or cosine-modulation signal;
The trigger signal that the driving circuit is used to be exported according to the controller provides drive to the light-emitting component Dynamic signal.
The light-emitting component is for responding the driving signal and shining;
The photodetection circuit is connect with the input terminal of the multiplier, for cooperating the detection optical path by optical signal Be converted to electric signal.
The trigger signal that the phase-shift circuit is used to export the controller carries out phase shift.
The multiplier is connect with the input terminal of the low-pass filter circuit.The multiplier is used for the photodetection The signal multiplication of the electric signal of circuit output and phase-shift circuit output;
The low-pass filter circuit is connect with the input terminal of the controller, the signal for exporting to the multiplier The controller is transmitted to after carrying out low-pass filtering.
Compared with the prior art, light-emitting component is isolated by optical window in turbidity meter provided by the utility model Optical path and testing liquid are detected with determinand, and isolation, and is fixedly connected with transmission shaft, it can be achieved that by passing by cleaning component Moving axis drives cleaning component, and the end face for being located at one end coplanar with the outer surface of front cover to optical window cleans, prevent because Pollutant is attached to optical window and impacts to measurement result, to improve the accuracy of measurement result.In addition, two light The outer end face for learning window is generally aligned in the same plane, and is conducive to motor and is cleaned the installation of component.
Detailed description of the invention
Fig. 1 is the cross-sectional view of the turbidity meter in one embodiment of the utility model;
Fig. 2 is the partial enlarged view of the part D in Fig. 1;
Fig. 3 is the outer surface figure of the front cover of the front cover in one embodiment of the utility model;
Fig. 4 is the schematic diagram of the optical path fixing seat in one embodiment of the utility model;
Fig. 5 is the schematic diagram of the hardware circuit in one embodiment of the utility model.
Specific embodiment
The following will be combined with the drawings in the embodiments of the present invention, carries out the technical scheme in the embodiment of the utility model Clearly and completely describe, it is clear that the described embodiments are only a part of the embodiments of the utility model, rather than whole Embodiment.Based on the embodiments of the present invention, those of ordinary skill in the art are without making creative work Every other embodiment obtained, fall within the protection scope of the utility model.
It should be noted that it can be directly fixed on and another yuan when element is referred to as " being fixed on " another element Part connects or there may also be elements placed in the middle;When element be referred to as with another element " connection " when, it can directly with Another element connects or there may also be elements placed in the middle.
Unless otherwise defined, all technical and scientific terms used herein are led with the technology for belonging to the utility model The normally understood meaning of the technical staff in domain is identical.Terminology used in the description of the utility model herein only be The purpose of description specific embodiment, it is not intended that in limitation the utility model.
Referring to Fig. 1, it is the cross-sectional view of the turbidity meter in one embodiment of the utility model.In conjunction with Fig. 2~ Shown in Fig. 4, in the present embodiment, turbidity meter includes front cover 1, shell 5, light-emitting component 21, detection 20, two light of optical path Learn window 10,11, optical path fixing seat 2, cleaning device, motor fixing seat 32, circuit board 4, rear cover 6, waterproof connector 7 and cable 8.
Cleaning device includes motor 3 and the cleaning component 30 for cleaning the optical window.Motor 3 includes transmission shaft 35 With the motor body 31 for driving transmission shaft 35 to rotate.Specifically, motor body 31 includes motor shaft.Transmission shaft 35 and motor The motor shaft of ontology is fixedly connected, so that driving transmission shaft 35 to rotate when motor shaft rotates.
Optical window, also known as optics protect window, optical window sheets.Optical window is mounted in two inclined holes of front cover 1.Before Lid 1 is circular lid.Front cover 1 is set there are two inclined hole.The axis co-planar of two inclined holes of front cover 1 and out of inclined hole towards front cover 1 The direction of outer surface extends intersection, and the axis of two inclined holes is orthogonal.Two inclined holes of front cover 1 include the first inclined hole 12 and the Two inclined holes 13.Two optical windows include the first optical window 10 and the second optical window 11.First optical window 10 is set to the It seals in one inclined hole 12 and with the first inclined hole 12 and cooperates.The outer end face of first optical window 10 is located at the opening of the first inclined hole 12 And it is coplanar with the outer surface S1 of front cover 1.Second optical window 11, which is set in the second inclined hole 13 and seals with the second inclined hole 13, to be cooperated. The outer end face of second optical window 11 is located at the opening of the second inclined hole 13 and coplanar with the outer surface S1 of front cover 1.Optical window It seals and cooperates with the inclined hole of front cover 1, can prevent liquid from entering inclined hole.First optical window 10 and the second optical window 11 are respectively The optical path that light-emitting component and detection optical path are passed through, since the axis of two inclined holes is orthogonal, light-emitting component and detection The optical path that optical path is passed through is also orthogonal, meets turbidimetry requirement.
Front cover 1 is additionally provided with first through hole 15, the outer surface S1 of the axis of first through hole 15 perpendicular to front cover 1.Transmission shaft 35 First through hole 15 is penetrated rotatably to be fixedly connected with cleaning component 30.In actual design, first through hole 15 is in the position of front cover 1 It sets and is comprehensively considered in combination with the size and position of cleaning component, should ensure that cleaning component 30 rotates Shi Suojing with transmission shaft 35 Two optical windows of the region overlay crossed.
Further, turbidity meter further includes at least three studs 14.Stud 14, which is set on the outer surface of front cover 1, to be located at Component 30 is cleaned with the position other than the passed through region of the rotation of transmission shaft 35.Stud 14 is used to protect the appearance positioned at front cover 1 The cleaning component 30 of two optical windows of face S1, optical window.
In the present embodiment, cleaning component 30 including cleaning sheet rubber 33, locking device 36 and is used to support cleaning rubber Piece 33 is so that cleaning sheet rubber 33 keeps the sheet rubber fixing seat 34 of predetermined shape.Sheet rubber fixing seat 34 and cleaning sheet rubber 33 It is fixedly connected.Sheet rubber fixing seat 34 is fixedly connected by locking device 36 with transmission shaft 35.Clean sheet rubber 33 and front cover 1 Appearance face contact.Transmission shaft 35 and sheet rubber fixing seat 34, the rotatory force that stepper motor 3 is generated are locked by locking device 36 Square is output to 1 outer surface of front cover, and sheet rubber fixing seat 34 is driven to rotate;When sheet rubber fixing seat 34 as transmission shaft 35 rotates When, cleaning sheet rubber 33 is rotated in the outer surface of front cover 1, and cleaning is mounted on the first optical window 10 and second above front cover 1 Optical window 11.Optical window is cleaned by cleaning sheet rubber 33, not only can guarantee cleaning effect, but also avoids damage optics Window is conducive to the service life for improving optical window.In other embodiments, cleaning sheet rubber can also be clear using sponge etc. Tool is washed to substitute, sheet rubber fixing seat can also be substituted using sponge fixing seat.
Optical path fixing seat 2 is fixedly connected with light-emitting component 21 and detection optical path 20 respectively.Optical path fixing seat 2 is equipped with for pacifying Fill the third inclined hole 26 of light-emitting component 21, and the 4th inclined hole 27 for installing detection optical path 20.Light-emitting component 21 is placed in Three inclined holes 26, detection optical path 20 are placed in the 4th inclined hole 27.The center line L2 of light-emitting component and the center line L1 of detection optical path hang down Straight intersection, meets the requirement in turbidity professional standard " DL/T809-2002 " to scattering-light turbidity measurement angle.Light-emitting component 21 Center line L2 be overlapped with the axis of third inclined hole 26, the axis of third inclined hole 26 is overlapped with the axis of the first inclined hole 12.Detection The center line L1 of optical path 20 is overlapped with the axis of the 4th inclined hole 27, the axis weight of the axis of the 4th inclined hole 27 and the second inclined hole 13 It closes.Optionally, the shape of optical path fixing seat 2 is V-shaped.The present embodiment is by being installed on optical path fixing seat for light-emitting component 21 Detection optical path 20 is installed on the 4th inclined hole by third inclined hole, conducive to light-emitting component and detection light is guaranteed by the design of inclined hole The center line on road is met the requirements, and reduces the installation complexity of optical path.
Detection optical path 20 is included in lens 22, the optical filter set gradually in the 4th inclined hole 27 along the direction far from front cover 1 23 and optical detection device 24, it is scattered the collection of light by lens 22, is selected by the frequency that optical filter 23 carries out optical signal, Be conducive to improve the accuracy of measurement result.Light-emitting component 21, optical detection device 24 pin be welded in above circuit board 4.Circuit Plate 4 is fixed on front cover 1.
Optical path fixing seat 2 is fixedly connected with motor fixing seat 32.Motor fixing seat 32 is fixedly connected with front cover 1.Optical path is solid Reservation 2 sets that there are two for the mounting hole 25 that is mounted on optical path fixing seat 2 in motor fixing seat 32.Optical path fixing seat 2 passes through Motor fixing seat 32 is fixedly connected with front cover 1.
Motor fixing seat 32 is for fixing motor body 31, by the way that motor body 31 is mounted in motor fixing seat 32, Guarantee being fixedly connected for motor body 31 and front cover 1, improves structural stability.
The control line of motor body 31 is welded in above circuit board 4.
Shell 5 is cylindrical, or, shell 5 is the hollow cylinder of two open ends.One end of shell 5 be equipped with for The opening of the sealing cooperation of front cover 1.The side of front cover 1 is additionally provided with two annular grooves 17.Annular groove 17 is for disposing water proof ring. The sealing fiting effect that front cover 1 and shell 5 are open can be improved by water proof ring.It can be ining succession when installing this turbidity meter Optical path fixing seat 2, cleaning device, circuit board 4 front cover 1 fill in shell 5.The opening of shell 5 and the sealing of front cover 1 cooperate, i.e., before Lid 1 seals the opening of shell 5, prevents testing liquid from entering in shell.
The other end of shell 5 is equipped with for the opening with the sealing cooperation of rear cover 6.Rear cover 6 is provided with annular groove 61, is used for Sealing ring is placed, rear cover 6 is cooperated by sealing ring and the sealing of shell 5, prevents testing liquid from entering inside shell 5.Shell 5 is not Rust steel metal;Rear cover 6 is provided with centre bore, and for installing cable 8 and waterproof connector 7, cable 8 passes through waterproof connector 7 and rear cover It is connect after 6 centre bore with circuit board 4, for powering and transmitting signal, while can prevent testing liquid from entering enclosure interior.
The central axis L3 of shell 5 is parallel to the axis of first through hole 15, i.e., in the axis Yu shell 5 of first through hole 15 Mandrel line is not overlapped, conducive to the installation vacating space for optical path fixing seat 2.The centerline axis parallel of shell 5 is in oblique by third The axis of the axis in hole 26 and the 4th inclined hole 27 determine plane, i.e. the central axis of shell 5 not in the plane of the determination, Conducive to the installation vacating space for motor fixing seat 32, to realize the equilibrium of structure.
The present embodiment the utility model has the advantages that light-emitting component and testing liquid, and isolation detection optical path is isolated by optical window With testing liquid, guarantee that transmitting optical path is vertical with detection optical path by the design of inclined hole, and by cleaning component and is driven Axis is fixedly connected, it can be achieved that cleaning component is driven by transmission shaft, to optical window positioned at outer with one end of the outer surface of front cover End face is cleaned, and prevents from impacting measurement result because pollutant is attached to optical window, to improve measurement result Accuracy.In addition, the outer end face of two optical windows is generally aligned in the same plane, be conducive to the installation for cleaning component.
Referring to Fig. 5, turbidity meter further includes hardware circuit, which includes controller 40, driving circuit 41, photodetection circuit 42, phase-shift circuit 43, multiplier 44, low-pass filter circuit 45 and analog to digital conversion circuit 46.
Controller 40 is connect with the input terminal of the input terminal of driving circuit 41 and phase-shift circuit 43 respectively, for exporting triggering Signal.Trigger signal is sinusoidal modulation signal or cosine-modulation signal.
The trigger signal that driving circuit 41 is used to be exported according to controller 40 provides driving signal to light-emitting component 21.
Light-emitting component 21 in response to driving signal for shining.
Photodetection circuit 42 is connect with the input terminal of multiplier 44, for cooperating detection optical path 20 to convert optical signal For electric signal.Photodetection circuit 42 is the peripheral circuit for detecting optical path 20, and detection optical path 20 and photodetection circuit 42 form The optical signal received is converted to electric signal by photoelectric sensor.
The trigger signal that phase-shift circuit 43 is used to export controller 40 carries out phase shift.
The output end of multiplier 44 is connect with the input terminal of low-pass filter circuit 45, for exporting photodetection circuit 42 Electric signal and phase-shift circuit 43 export signal multiplication.
The output end of low-pass filter circuit 45 is connect with the input terminal of analog to digital conversion circuit 46, for exporting to multiplier 44 Signal carry out low-pass filtering after be transmitted to analog to digital conversion circuit 46.
The output end of analog to digital conversion circuit 46 is connect with the input terminal of controller 40, for exporting to low-pass filter circuit 45 Signal carry out analog-to-digital conversion after be transmitted to controller 40.
The input terminal of controller 40 connects, after the signal for exporting to multiplier 44 carries out low-pass filtering and analog-to-digital conversion It is transmitted to controller 40.Measurement accuracy can be improved by the hardware circuit, realize low turbidity measurement.
Illustrate its principle by sinusoidal modulation signal of trigger signal below:
In the present embodiment, light-emitting component 21 is LED.Phase-shift circuit, multiplier, low-pass filter circuit (LPF) composition lock Phase amplification module, has the ability of detection small-signal, and controller is responsible for generating frequency being ω0Trigger signal:
R (t)=Vrcos(ω0t);
The trigger signal is after the driving of overdrive circuit by LED light source luminance modulation at same frequency optical signal, the same to frequency Optical signal is scattered by 90 ° of testing liquid, scattered signal S (t) after optical detection device, photodetection circuit are as follows:
S (t)=VScos(ω0t+θ1);
The frequency of scattered signal S (t) is identical as input signal, but produces θ1Phase shift is input to one of multiplier Input port;
Meanwhile driving signal R (t) passes through phase-shift circuit phase shift θ2, it is input to another input port of multiplier, i.e.,
R (t)=Vrcos(ω0t+θ2);
The signal of multiplier output are as follows:
After LPF filters out high-frequency signal, output signal are as follows:
The signal is direct current signal, as the phase-shift phase θ of phase-shift circuit21When, spiking output can be obtained, realize micro- Weak turbidity scattered signal measurement, such as realize the turbidimetry of tap water low turbidity water body.
Optionally, the infrared light supply for the wavelength 860nm that light-emitting component is selected, light-emitting component respond the drive of driving circuit output Dynamic signal issues infrared light, and infrared light is irradiated in water body after passing through optical window sheets, in infrared light and water body after particle effect Scattering light is generated, wherein the scattering light in 90 ° of directions is visited by reaching optical detection device after another optical window sheets by photoelectricity Slowdown monitoring circuit exports electric signal, is input to the signal input port of multiplier;Optical detection device 24 can be photodiode, snowslide Photodiode, photomultiplier tube etc.;
Controller, also known as microprocessor are central processing unit (Central Processing Unit, CPU).
ADC completes the acquisition of signal under the control of the controller, and is converted into digital signal and is input in controller, control Device completes turbidity value and calculates, demarcates and will export from digital output module or analog output module;
Digital output module is common digital interface, such as RS232, RS485, RJ45, USB;
Analog output module is common current output interface, such as 0-20mA, 4-20mA module.
Turbidity meter further includes motor-drive circuit 49.In the present embodiment, motor is stepper motor.Controller can Cleaning 1 end face of front cover is carried out to start stepper motor according to the time interval of setting, when starting stepper motor every time, stepper motor Cleaning sheet rubber is driven to rotate several times in 1 end face of front cover, for example, rotation 2 times.
Controller also can receive external command starting stepper motor and carry out cleaning 1 end face of front cover;
In the present embodiment, motor 3 is stepper motor.
Further, controller controls stepper motor, and when so that cleaning sheet rubber being cleaned, controller does not acquire data, Automatic data collection after the completion of cleaning.
Each technical characteristic of above embodiments can be combined arbitrarily, for simplicity of description, not to above-described embodiment In each technical characteristic it is all possible combination be all described, as long as however, the combination of these technical characteristics be not present lance Shield all should be considered as described in this specification.
Above embodiments only express the several embodiments of the utility model, and the description thereof is more specific and detailed, but simultaneously The limitation to utility model patent range therefore cannot be interpreted as.It should be pointed out that for the ordinary skill people of this field For member, without departing from the concept of the premise utility, various modifications and improvements can be made, these belong to this reality With novel protection scope.Therefore, the scope of protection shall be subject to the appended claims for the utility model patent.

Claims (10)

1. a kind of turbidity meter characterized by comprising front cover, light-emitting component, detection optical path, two optical windows and Cleaning device;The cleaning device includes motor and the cleaning component for cleaning the optical window;The motor includes passing Moving axis and motor body for driving transmission shaft rotation;The front cover is equipped with first through hole and two inclined holes;The biography Moving axis penetrates rotatably the first through hole and is fixedly connected with the cleaning component;The axis of the first through hole is perpendicular to institute State the outer surface of front cover;The axis co-planar of described two inclined holes and prolong out of described inclined hole towards the direction of the outer surface of the front cover Stretch intersection;The inclined hole is correspondingly arranged with the optical window;The optical window be set to the corresponding inclined hole in and with institute State inclined hole sealing cooperation;The outer end face of the optical window is located at the opening of the corresponding inclined hole and outer with the front cover Surface co-planar;Described two inclined holes include the first inclined hole and the second inclined hole;The light-emitting component is fixedly connected with the front cover;Institute Detection optical path is stated to be fixedly connected with the front cover;The center line of the light-emitting component is overlapped with the axis of first inclined hole;Institute The center line for stating detection optical path is overlapped with the axis of second inclined hole.
2. turbidity meter according to claim 1, which is characterized in that the cleaning component include cleaning sheet rubber, Locking device and be used to support it is described cleaning sheet rubber so that it is described cleaning sheet rubber keep predetermined shape sheet rubber fixing seat; The sheet rubber fixing seat is fixedly connected with the cleaning sheet rubber;The sheet rubber fixing seat passes through the locking device and institute Transmission shaft is stated to be fixedly connected;The appearance face contact of the cleaning sheet rubber and the front cover.
3. turbidity meter according to claim 1, which is characterized in that the center line of the light-emitting component and the spy Survey the vertical and intersectant centerline of optical path.
4. turbidity meter according to claim 1, which is characterized in that further include for fix the light-emitting component and The optical path fixing seat of the detection optical path;The optical path fixing seat is fixedly connected with the front cover.
5. turbidity meter according to claim 4, which is characterized in that the optical path fixing seat is equipped with for accommodating State the third inclined hole of light-emitting component, and the 4th inclined hole for accommodating the detection optical path;The optical path fixing seat respectively with institute It states light-emitting component and the detection optical path is fixedly connected;The axis of the third inclined hole is overlapped with the axis of first inclined hole; The axis of 4th inclined hole is overlapped with the axis of second inclined hole.
6. turbidity meter according to claim 5, which is characterized in that the detection optical path includes the 4th inclined hole Interior lens, optical filter and the optical detection device set gradually along the direction far from the front cover.
7. turbidity meter according to claim 5 or 6, which is characterized in that the turbidity meter further includes using In the motor fixing seat of the fixation motor body;The motor fixing seat is fixedly connected with the front cover;The optical path is fixed Seat is fixedly connected by the motor fixing seat with the front cover.
8. turbidity meter according to claim 7, which is characterized in that further include shell;One end of the shell is set Have for sealing matched opening with the front cover;The optical path fixing seat is disposed in the housing;The motor fixing seat is set In in the shell;The shell is equipped with for the opening with front cover sealing cooperation;The shell is cylindrical;Described The axis of one through-hole is parallel to the central axis of the shell;The centerline axis parallel of the shell is in by the third inclined hole The plane that the axis of axis and the 4th inclined hole determines.
9. turbidity meter according to claim 1 or 2, which is characterized in that further include at least three studs;The spiral shell Column, which is set on the outer surface of the front cover, is located at the cleaning component with the position other than the passed through region of transmission shaft rotation It sets.
10. turbidity meter according to claim 1, which is characterized in that further include controller, driving circuit, photoelectricity Detection circuit, phase-shift circuit, multiplier and low-pass filter circuit;
The controller is connect, for exporting respectively with the input terminal of the input terminal of the driving circuit and the phase-shift circuit Trigger signal;The trigger signal is sinusoidal modulation signal or cosine-modulation signal;
The driving circuit, the trigger signal for being exported according to the controller provide driving letter to the light-emitting component Number;
The light-emitting component shines for responding the driving signal;
The photodetection circuit, connect with the input terminal of the multiplier, for cooperating the detection optical path to turn optical signal It is changed to electric signal;
The phase-shift circuit, the trigger signal for exporting to the controller carry out phase shift;
The multiplier is connect with the input terminal of the low-pass filter circuit, for by the electricity of the photodetection circuit output The signal multiplication of signal and phase-shift circuit output;
The low-pass filter circuit is connect with the input terminal of the controller, and the signal for exporting to the multiplier carries out The controller is transmitted to after low-pass filtering.
CN201920093796.8U 2019-01-21 2019-01-21 Turbidity meter Active CN209485967U (en)

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Application Number Priority Date Filing Date Title
CN201920093796.8U CN209485967U (en) 2019-01-21 2019-01-21 Turbidity meter

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Application Number Priority Date Filing Date Title
CN201920093796.8U CN209485967U (en) 2019-01-21 2019-01-21 Turbidity meter

Publications (1)

Publication Number Publication Date
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Application Number Title Priority Date Filing Date
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109557032A (en) * 2019-01-21 2019-04-02 杭州陆恒生物科技有限公司 Turbidity meter

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109557032A (en) * 2019-01-21 2019-04-02 杭州陆恒生物科技有限公司 Turbidity meter
CN109557032B (en) * 2019-01-21 2023-11-17 浙江陆恒环境科技有限公司 Turbidity measuring device

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