CN2127926Y - Rudder angle display device - Google Patents
Rudder angle display device Download PDFInfo
- Publication number
- CN2127926Y CN2127926Y CN 92211420 CN92211420U CN2127926Y CN 2127926 Y CN2127926 Y CN 2127926Y CN 92211420 CN92211420 CN 92211420 CN 92211420 U CN92211420 U CN 92211420U CN 2127926 Y CN2127926 Y CN 2127926Y
- Authority
- CN
- China
- Prior art keywords
- pin
- data
- reading control
- shift register
- latch
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Expired - Fee Related
Links
Images
Landscapes
- Optical Transform (AREA)
Abstract
The utility model relates to a rudder angle display device which is characterized in that an encode disc is arranged in a casing of a message sending device. The graduation line of the casing is provided with an encode hole and a digit reading control hole, the center of the casing is provided with a drive shaft and a pulley, one side of the casing is provided with a luminous source transmitting component, and the other side of the casing is provided with an optoelectronic receiver. A generated encode data electrical level and a digit reading control electrical level are amplified and reshaped in an inverted mode. The data electrical level is stored in a latch unit under the control of the digit reading control electrical level. Then, the data electrical level is transmitted to a series input/parallel output shift register through a parallel input/series output shift register, is input into the latch unit, is sent to a decoding driver all the way for driving to display an angle and is sent to a zero position and direction recognizing circuit all the way for driving to display a direction. The utility model is suitable for various ships.
Description
The present invention relates to nautical device, more particularly is a kind of shipping rudder blade corner indicating instruments.
As everyone knows, inductance type helm indicator, direct supply helm indicator are arranged in the existing ship helm indicator.The inductance type helm indicator is by power supply box, signalling generator and indicating device are formed, signalling generator is by housing, stator and rotor are formed, be wound with two inductance coils on the stator, two inductance coils and resistance, potential device and diode are formed bridge circuit, be four brachium pontis, rotor is connected with rudder stock, the a certain angle of rudder blade deflection drives rotor rotation, the inductance value of two inductance coils on the stator changes, and electric bridge lack of equilibrium, the pointer of indicating device be a certain angle of deflection also, this helm indicator utilizes the variation of inductance value, the variation of reaction rudder blade angle, the indication error is big, and sensitivity is low, adjust numerous and diverse, and be subjected to the influence of voltage fluctuation, also can strengthen indication error, poor-performing.The direct supply helm indicator also is by power supply box, signalling generator and indicating device are formed, signalling generator is to be provided with some contacts to connect with resistance in housing, the contact is provided with slider, the fastening transmission shaft of slider, connect rudder stock, a certain angle of rudder blade deflection drives slider and slides on the contact, the contact of contact diverse location, convert the rudder angle variation to change of voltage, dividing potential drop is switched different voltage by slider, pointer through indicating device indicates a certain angle of rudder blade deflection, this helm indicator is attacked because of the gas cut that makes moist, and resistance often changes, and slider is also because of corrosion, wear and tear and bad contact, voltage fluctuation etc., make the indication error big, sensitivity is low, poor performance, simultaneously, adjustment is also numerous and diverse.The indicating device of above-mentioned helm indicator, what adopt all is milliampere meter, this instrument is to utilize hot-wire coil stressed and move in magnetic field, overcome hairspring elastic force diverse location of living in and represent the angle that rudder blade rotates, this indicating device, in use often because of dust particle, modification, voltage fluctuation etc. cause indication inaccurate, sensitivity is low, poor-performing.
Purpose of the present invention, it is accurate to provide a kind of indication, highly sensitive, adjust easy, the helm indicator of dependable performance.
For achieving the above object, feature of the present invention is: be provided with coding disk in the signalling generator housing, the graduation line of coding disk is provided with notch and reading control punch, the coding disk center is provided with transmission shaft, transmission shaft is provided with belt pulley, coding disk one side is provided with light source launching assembly, the opposite side correspondence is provided with photelectric receiver, the light that light source launching assembly sends passes notch and reading control punch, make cooresponding photelectric receiver produce coded data level signal (data pulse signal) and reading control level signal (reading control wave), after paraphase amplification and paraphase shaping, the data level signal is under the control of reading control level signal, deposit the latch of signalling generator in, the parallel data pulse of latching, the shift register of incorporating into/go here and there out by signalling generator converts serial data pulse to, the sealing in of input display/and go out shift register, convert parallel data to, deposit the latch of telltale in, the parallel data of its output divides two the tunnel, one the road delivers to decoder driver, drive the read-out angles of display, zero-bit and direction identification circuit are delivered in another road, the direction of passage display driver, drive display direction, whole data transmission and conversion are under the control of the control wave of leading shake clock generator and frequency division generation and clock pulse, carry out synchronously.
Indication of the present invention is accurate, and is sensitive reliable, not influenced by voltage fluctuation, adjusts easyly, is applicable to various naval vessels.
Description of drawings
Accompanying drawing is a kind of scheme drawing of the present invention, also is the scheme drawing of a kind of embodiment.
Fig. 1 is a signalling generator front view of the present invention.
Fig. 2 is a logic block-diagram of the present invention.
Fig. 3 is the coding disk front view.
Fig. 4 is a signalling generator circuit diagram of the present invention.
Fig. 5 is indicator circuit figure of the present invention.
Below in conjunction with accompanying drawing,, be described further solution of the present invention.
Be provided with coding disk 3 in the signalling generator housing 2, the graduation line of coding disk 3 is provided with notch 9, notch 9 adopts eight codings to form one group, and to cylindrical, big-endian is evenly distributed from the center of coding disk 3, also mind-set cylindrical therefrom, the little-endian layout, the most significant bit of notch 9 is used for representing direction, low seven are adopted two~decimal coded (BCD coding), be used for representing angle, also can adopt lowest order to represent direction." hole " expression " 1 " on each graduation line, there is not " hole " expression " 0 ", the left rudder direction has " hole " usefulness " 1 " expression, and the right standard rudder direction does not have " hole " usefulness " 0 " expression, if be the left rudder direction always, telltale will show the left rudder direction always, so the notch 9 of expression direction can be continuous arcuate socket, and is same, during " hole " expression " 1 " that notch 9 faces mutually, also can be intercommunicating pore, be a plane during expression " 0 ".9 outsides, a group coding hole on coding disk 3 every graduation line, promptly the lowest order outside is provided with a reading control punch 10, and to control latching of data on this graduation line, reading control punch 10 also can be located at the inboard in every group coding hole 9, perhaps most significant bit one side.Coding disk 3 centers are provided with transmission shaft 5, and transmission shaft 5 is provided with belt pulley 7, and the belt pulley with rudder stock is provided with is connected through belt, and for preventing slipping of the belt, belt pulley 7 upper surfaces have a translot, belt through translot around going into belt pulley 7.Coding disk 3 is provided with steady nail hole 11, coding disk 3 can be stabilized on the transmission shaft 5, make the angle of coding disk 3 transmission rudder blade deflections more reliable, transmission shaft 5 is provided with adjusting hand wheel 6, adjusting hand wheel 6 is provided with zero mark, can be corresponding with the zero mark that signalling generator housing 2 is provided with, make adjustment more convenient.Coding disk 3 also can be fan-shaped, annular, square a, band shape etc., adopts connecting rod to be connected with rudder stock.Coding disk 3 one sides are provided with light source launching assembly, light source launching assembly adopts nine luminotron LED1-LED9 to form, be connected in series nine current-limiting resistance R1-R9 respectively, for preventing moisture invasion and attack, light source launching assembly adopts resin glue to be encapsulated in the light source assembly housing 1 that coding disk 3 belows are provided with.Coding disk 3 opposite sides are provided with photelectric receiver, photelectric receiver adopts nine infrared ray photoelectricity reception diode U1-U9, corresponding with nine infrared light-emitting diode LED1-LED9 of light source launching assembly respectively, the Infrared that light source launching assembly sends, pass notch 9 and reading control punch 10 on the coding disk 3, received by photelectric receiver, convert the data level signal to, input amplifier.No. nine amplifiers that amplifier adopts nine aerotron BG1-BG9 to form, the data level signal inserts the aerotron BG1-BG9 base stage of No. nine amplifiers respectively, eight bit data level signal after amplifying, collecting electrode output by eight road amplifying triode BG1-BG8 in the amplifier, since when amplifying by paraphase, be connected to input end 1,3,5,9,11,13 pin and joint denial gate IC2 input end 2,3 and 11, the 12 pin paraphase output of phase inverter IC1 again, phase inverter IC1 adopts CD40106 type integrated circuit, and joint denial gate IC2 adopts four group of two input end joint denial gate of 74LS02.By of mouth 1, the 13 pin output of the eight bit data level signal of paraphase through phase inverter IC1 mouth 2,4,6,8,10,12 pin and joint denial gate IC2, insert data input pin 3,4,7,8,13,14,17,18 pin of latch IC3 respectively, latch IC3 adopts 74LS273 type integrated circuit.Reading control wave after amplifying, collecting electrode output by the amplifying triode BG9 in the amplifier, be connected to that 5 pin of joint denial gate IC2 input end and 6 pin are connect, the shift clock pulse of transmitting by 4 pin of the phase inverter IC5 of telltale, after carrying out NOR operation, control wave is latched in formation, adds to latch IC3 and latchs control end 11 pin.The data level signal that the wait of latch IC3 stored transmits, by mouth 2,5,6,9,12,15,16, the output of 19 pin, add to the parallel input end 2 of incorporating/go here and there out shift register IC4 into, 3,4,5,10,11,12,14 pin, added at 6 pin, under the shift clock control by pulses that transmits by 4 pin of the phase inverter IC5 of telltale, convert parallel data to serial data synchronously, export by 13 pin, because the level underswing of 13 pin output, be connected to joint denial gate IC2 input end 8, after the 9 pin paraphase, by the output of mouth 10 pin, QH reaches telltale through serial data line.The model of incorporating/go here and there out shift register IC4 into is 74HC166.Latch IC3 and incorporate/go here and there shift register IC4 into and also can adopt a shift register of incorporating into/go here and there out that has latch to realize, as: 74HC597,74LS597 etc.That incorporates/go here and there out shift register IC4 into incorporates/goes here and there out the added control wave of control end 15 pin into, is provided by 12 pin of the phase inverter IC5 of telltale.Signalling generator is connected with telltale by five leads; Wherein, two power lead+5V, GND, a serial data line QH, shift clock taps CP and one incorporate/go here and there out control line P/S into.The foregoing circuit structure adopts resin glue to be encapsulated in the sender assembly housing 4 that coding disk 3 tops are provided with.
Telltale is made up of system's impulse deviser, data processing circuit and decoding display driver circuit, is encapsulated in the display housing, is connected with above-mentioned five leads 8.System's impulse deviser is made up of circuit such as clock generator, frequency-dividing counter and phase inverters.Clock generator is realized through following connection by time-base integrated circuit IC7: 4,8 pin of time-base integrated circuit IC7 insert the positive pole of 5 volts of power supplys, 1 pin ground connection, 2,6 foot meridian capacitor device C1 ground connection, power supply inserts 2,6 pin through resistance R 10, R11, is cond C1 charging, and 7 pin are connected on the point of connection of resistance R 10 and R11, form discharge loop, make it produce clock pulse about 3000 hertz (3KHZ),, become the main clock pulse of shaking from the output of 3 pin.The model of time-base integrated circuit IC7 is CC7555.Divide three the tunnel by the clock pulse that 3 pin of time-base integrated circuit IC7 are exported, one the tunnel is added in phase inverter IC5 input end 3 pin, and paraphase is after signalling generator is sent in the output of 4 pin, as the shift clock pulse, divide two-way 6 pin that insert joint denial gate IC2 and 6 pin of incorporating/go here and there out shift register IC4 into again.The second the tunnel connects 14 pin of frequency-dividing counter IC6, carries out frequency division.Third Road inserts on input end 11 pin of joint denial gate IC13, after NOR operation, add to seal in/and go out input end of clock 8 pin of shift register IC8, the synchronous displacement of Transmitting and Receiving End shift register IC4 and IC8 is latched synchronously.Frequency-dividing counter IC6 adopts da frequency-dividing counter MC14017, its 11 pin is connected with 15 pin, become novenary frequency-dividing counter, on 14 pin behind the added clock pulse frequency division, one the tunnel through the output of 3 pin, delivers to phase inverter IC5, is exported by 6 pin after the paraphase, become receiving end and latch control wave, deliver to latch IC9 and latch control end 11 pin.The output of 2 pin of another route frequency divider IC6 is divided into two-way again, and one the tunnel adds to phase inverter IC5 input end 13 pin, by the output of 12 pin, inserts 15 pin of incorporating/go here and there out shift register IC4 into of signalling generator after the paraphase, become make a start incorporate/go here and there out control wave into; Another road adds to joint denial gate IC13 input end 12 pin, and by NOR operation, control seals in/and the shift clock pulse that goes out shift register IC8, during latching, stop displacement.Phase inverter IC5 adopts the CD4069 phase inverter, also can adopt CD40106,74HC14 etc.Data processing circuit is to add to phase inverter IC5 input end 1 pin by the data level signal that 10 pin of the joint denial gate IC2 of signalling generator are exported, export by 2 pin after the paraphase, deliver to seal in/and serial data input end 1,2 pin that go out shift register IC8 convert parallel data to, export by mouth 3,4,5,6,10,11,12,13 pin, data input pin 3,4,7,8,13,14,17,18 pin that add to latch IC9 latch, latched data is finished data handling procedure by the output of mouth 2,5,6,9,12,15,16,19 pin.Latch IC9 adopts 74LS273 type integrated circuit, seal in/and go out shift register IC8 employing 74HC164 type integrated circuit, these two integrated circuit mainly are that serial data is converted to parallel data, latch, also can adopt the sealing in an of storage with lock/and go out shift register and finish.As integrated circuit such as HC595.The decoding display driver is to be divided into three the tunnel by the parallel data that latch IC9 exports, one the road delivers to decoder driver IC10 input end 7,1,2,6 pin and decoder driver IC11 input end 7,1,2 pin is translated into decimal system number, angles of display on read-out 12 to low seven two~decimal codeds (BCD coding).Read-out 12 adopts LED display, the corresponding employing of decoder driver IC10, IC11 MC14513 type integrated circuit; Read-out 12 also can adopt LCD display, the also corresponding employing of decoder driver IC10, IC11 HC4543 type integrated circuit.The second the tunnel low seven bit digital level signals, add to joint denial gate IC12 input end 2,3,4,5,9,10,11 pin, and its 12 pin ground connection is exported by 13 pin through the zero rudder signal that NOR operation obtains, and what joint denial gate IC12 adopted is CD4078 type integrated circuit.Third Road is by bus plug, can provide data-interface for telltale expansion and computer steering.The most significant bit of the data of latch IC9 output is delivered to input end 6,8,9 pin of joint denial gate IC13, obtains the right standard rudder direction signal at mouth 4 pin, adds to the base stage of the aerotron BG11 of display driver circuit, and the driving LED luminotron shows right standard rudder on read-out 12; Obtain the signal of negating of most significant bit at 10 pin, add to 2 pin, by mouth 1 pin output left rudder signal, add to the base stage of the aerotron BG10 of driving circuit, the driving LED luminotron shows left rudder on read-out 12.Joint denial gate IC12 mouth 13 pin are connected to joint denial gate IC13 input end 3,5 pin, by NOR operation, make left rudder signal and right standard rudder signal when zero rudder position, and read-out 12 is display direction not.Joint denial gate IC13 adopts the 74HC02 integrated circuit.
Above-mentioned data transmission is transmitted by serial data interface, also can transmit by parallel data grabbing card, the parallel data transmission is the parallel data with latch IC3 mouth 2,5,6,9,12,15,16, the 19 pin output of signalling generator, reach latch IC9 mouth 2,5,6,9,12,15,16, the 19 pin places of telltale respectively with eight leads, substitute the data of latch IC9 output, 6 pin of the joint denial gate IC2 of signalling generator change 5 pin or ground connection, can realize parallel transfer.Parallel transmission signalling generator supply line is identical with above-mentioned serial transmission signalling generator supply line, removes a serial data line QH and two pulse transmission line CP, P/S, increases by eight parallel data transfer wires, and cost increases to some extent.
Telltale of the present invention is installed in the operator's compartment, through transfer wire 8, is connected with signalling generator in being installed in steering engine room.Belt around going into belt pulley 7, connects the belt pulley on the rudder stock through the translot of belt pulley 7 upper ends.Rudder blade is changed into amidship, rotate adjusting hand wheel 6 and make its zero mark corresponding, then tightening skin belt wheel 7 and adjusting hand wheel 6 with the zero mark that signalling generator housing 2 is provided with.Energized, light source launching assembly are promptly sent infrared ray, and during amidship, infrared ray passes zero rudder place reading control punch 10, is " 0 " because notch 9 does not have " hole ", and the rudder angle reading of read-out 12 reflections is 0, and directionless demonstration.Rudder angle is left or during a certain angle of deflection to the right, the Infrared of light source launching assembly emission, pass reading control punch 10 and notch 9 on a certain graduation line of coding disk 3, received by photelectric receiver, convert BCD coded data level signal to, by paraphase, again through two joint denial gates of six not gates of phase inverter IC1 and joint denial gate IC2 again after the paraphase, the input end that adds to latch IC3 latchs after amplifier amplifies.Reading control level signal by amplifier output, when amplifying, amplifier also produced paraphase, the clock pulse that transmits through joint denial gate IC2 and telltale, carry out NOR operation, control wave is latched in formation, and the appearance of this pulse shows, reading control punch 10 and notch 9 on the graduation line of coding disk 3, align with light source launching assembly and photelectric receiver, the existing stable data of the input end of latch IC3 latchs.Latch IC3 latched data, when coding disk 3 did not turn over a graduation line, data remained unchanged, and when only forwarding another graduation line to, were just substituted by new data.The parallel data of latch IC3 output, convert serial data to by incorporating/go here and there out shift register IC4 into, because it is little to incorporate/go here and there out the serial output terminal power-handling capability of shift register IC4 into, utilize the joint denial gate of joint denial gate IC2 to be connected into not gate, the serial data pulse paraphase is amplified, reach telltale.Incorporate/go here and there out the parallel serial shift control end of packing into of shift register IC4 into, when added pulse is in low level, with the parallel shift register of packing into of parallel data; When being in high level, under the control of clock pulse, synchronously data are moved into the sealing in of telltale/and go out shift register IC8, whenever move clock period an of bit stealing, whenever move a byte and dress once, finish a transmission cycle.By signalling generator pass to telltale by the serial data pulse of paraphase, in transmission course, be subjected to the influence of inductance and distributed capacitance, its waveform and amplitude be variation to some extent, after phase inverter IC5 paraphase, recover original waveform, add to seal in/and go out the serial data input end of shift register IC8, be converted to parallel data, add to latch IC9 and latch.The added control wave that latchs of latch IC9, be through frequency-dividing counter by clock pulse, form after the frequency division paraphase, do not transmit data for during guaranteeing when latching, have stable data to latch, make to latch, utilize latch pulse, NOR operation by joint denial gate IC13, blocked and sealed in/and the shift clock pulse that goes out shift register IC8, when latch pulse occurs, seal in/and go out shift register IC8 and stop displacement.The data level signal of latch IC9 output, the one tunnel makes read-out 12 demonstrate the rudder blade deflection angle through decoder driver IC10, IC11; Zero-bit identification and direction identification circuit that another road is formed through joint denial gate IC12, IC13 demonstrate rudder blade or the direction of deflection to the right left through the direction driving circuit on read-out 12.
Claims (1)
1, a kind of helm indicator is by power supply box, signalling generator and telltale are formed, it is characterized in that: be provided with coding disk in the signalling generator housing, the graduation line of coding disk is provided with notch and reading control punch, the coding disk center is provided with transmission shaft, transmission shaft is provided with belt pulley, coding disk one side is provided with light source launching assembly, the opposite side correspondence is provided with photelectric receiver, the light that light source launching assembly sends passes notch and reading control punch, make cooresponding photelectric receiver produce coded data level signal (data pulse signal) and reading control level signal (reading control wave), after paraphase amplification and paraphase shaping, the data level signal is under the control of reading control level signal, deposit the latch of signalling generator in, the parallel data pulse of latching, the shift register of incorporating into/go here and there out by signalling generator converts serial data pulse to, the sealing in of input display/and go out shift register, convert parallel data to, deposit the latch of telltale in, the parallel data of its output divides two the tunnel, one the road delivers to decoder driver, drive the read-out angles of display, zero-bit and direction identification circuit are delivered in another road, the direction of passage display driver, drive the read-out display direction, whole data transmission and conversion are under the control of the control wave of leading shake clock generator and frequency division generation and clock pulse, carry out synchronously.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN 92211420 CN2127926Y (en) | 1992-03-18 | 1992-03-18 | Rudder angle display device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN 92211420 CN2127926Y (en) | 1992-03-18 | 1992-03-18 | Rudder angle display device |
Publications (1)
Publication Number | Publication Date |
---|---|
CN2127926Y true CN2127926Y (en) | 1993-03-10 |
Family
ID=33763155
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN 92211420 Expired - Fee Related CN2127926Y (en) | 1992-03-18 | 1992-03-18 | Rudder angle display device |
Country Status (1)
Country | Link |
---|---|
CN (1) | CN2127926Y (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111322979A (en) * | 2019-12-27 | 2020-06-23 | 北京海兰信数据科技股份有限公司 | Unmanned boat rudder angle measuring device |
-
1992
- 1992-03-18 CN CN 92211420 patent/CN2127926Y/en not_active Expired - Fee Related
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111322979A (en) * | 2019-12-27 | 2020-06-23 | 北京海兰信数据科技股份有限公司 | Unmanned boat rudder angle measuring device |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
CN1026478C (en) | Rudder angle indicator | |
US4939675A (en) | Digital system for controlling mechanical instrument gauges | |
CN2127926Y (en) | Rudder angle display device | |
US5063344A (en) | Mode selectable interface circuit for an air core gage controller | |
CN201069445Y (en) | A novel electronic rotation speed meter | |
CN1586991A (en) | Intelligent digital rudder angle display | |
CN219327613U (en) | Hydraulic pump detection device and hydraulic system based on singlechip | |
CN216348893U (en) | NFC twisted-pair magnetic transmission valve accuse water gauge | |
CN2436353Y (en) | Instrument and meter for vehicle | |
CN2286863Y (en) | Electronic vehicle-speed odometer | |
CN118168584B (en) | A multi-turn encoder device for servo motor | |
CN212323219U (en) | Shipborne television satellite antenna tracking system circuit | |
CN2283833Y (en) | Magnetoelectric sensor for vehicle instrument with encoding and encrypting function | |
CN201327497Y (en) | Multifunctional revolution speed signal processor | |
CN2113468U (en) | Speedometer with trip mileage recorder for vehicle driving | |
CN2859461Y (en) | Diesel engine meter employing digital bus transmission and finger display | |
CN2249951Y (en) | Stepping electronic meters | |
CN2824062Y (en) | Pulse signal control GPS signal and digital signal composite circuit | |
CN2408438Y (en) | Pointer type indicator for micro stepping motor drive | |
JP2618632B2 (en) | AMI coding circuit | |
JP2538360Y2 (en) | Cross-coil instrument | |
JP3084305B2 (en) | Water meter separate meter reading system | |
JPS6083973U (en) | Simple integrated electricity meter | |
CN2253466Y (en) | Moving-magnetic electronic vehicle speedometer | |
CN111624930A (en) | Vehicle-mounted multi-channel data acquisition system |
Legal Events
Date | Code | Title | Description |
---|---|---|---|
C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
C19 | Lapse of patent right due to non-payment of the annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |