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CN100504111C - Electronic multifunctional stepless speed-transformation device - Google Patents

Electronic multifunctional stepless speed-transformation device Download PDF

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Publication number
CN100504111C
CN100504111C CNB2004100108313A CN200410010831A CN100504111C CN 100504111 C CN100504111 C CN 100504111C CN B2004100108313 A CNB2004100108313 A CN B2004100108313A CN 200410010831 A CN200410010831 A CN 200410010831A CN 100504111 C CN100504111 C CN 100504111C
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diode
resistance
negative pole
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pin
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CN1570419A (en
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颜广博
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Abstract

The electron multi-purpose stepless speed-change device, belongs to the transmission gearbox area of technology, specifically involves one kind of multi-purpose variator (an infinitely variable, is uses the permanent magnetism direct current synchronous machine and the planet gear coordination work, take the engine drive primarily, driving force as assists by the direct current machine, then uses in the engine drive, also may use the direct-current level actuation, but also may mechanical and electrical gather moves, in movement process, electrification motive function; This invention has (1) does not change the original vehicle other part positions, does not interfere with the original vehicle each system work and the performance; (2) To drives the operation not specially to request; (3) Because has substituted for the engine, the electric motor, and the flywheel, the coupling, the brake and the night pair vary jointly turning, relative increase engine compartment space; (4) Realized the engine alone to actuate, the storage battery alone actuated or the two gathers moves, energy transfer efficiency high, energy conservation environmental protection, structure simple, the cost was low, volume small positive achievement.

Description

The multifunction electronic stepless speed changes devices
Technical field:
The invention belongs to the speed changer technical field, be specifically related to a kind of multifunctional stepless change gear device.
Background technique:
At present, have some low and middle-grade cars still to use manual speed changer on the market, some have adopted automatic transmission than luxury car; And stepless speed variator has appearred using in some minority developed countries, although these speed changers are used on automobile, part still comes with some shortcomings: manual speed changer need the driver start, cut off continually in the running, in conjunction with clutch, promptly require the driver that skilled driving technology is arranged, and labor intensity is big; Though the automatic transmission speed changer is than manual advanced person, labor intensity is low, in automatic conversion gear process, be still with manual effect the same, discontinuous, jump type, and in realizing the automatic speed changing process, owing to adopt the fluid coupling torque converter, increased the loss of energy, needed independent radiator, so transmission efficiency is not high, in addition to hydraulic system precision prescribed height, complex process, and clutch and break must be arranged, therefore restricted the paces of automatic transmission production domesticization; Though have a few countries to have stepless speed variator on automobile, to use abroad, but still need fluid coupling torque converter, hydraulic control system, in speed-change process, rely on the radius size of fluid power control driven wheel, rely on the high strength steel, wear-resisting, durable, the metal bracelet transferring power mode that the measure of precision height is made, realize infinite variable speedly, thereby cost height generally uses to be restricted.
Summary of the invention:
Goal of the invention of the present invention provide a kind of simple in structure, cost is low, speed change is steady, joint is soft, integrate generator, Starter, flywheel, clutch, speed changer, promptly can realize the storage battery single driving, again can the motor single driving, or storage battery and the common multifunction electronic stepless speed changes devices that drives of motor.
Technological scheme of the present invention is to adopt DC synchronous machine and planetary pinion cooperating, based on the motor transmission, for auxiliary, promptly can use engine-driving with the direct current generator transmission, can drive with dc battery jar again, can also close by electromechanics.Synchronous machine can be treated as DC generator in running, again can be in start-up course, and motivation electrifies;
Have with the form that motor and planet row cooperatively interact from the line shaft of engine crankshaft output: the line shaft that bent axle is exported passes through from the rotor axis of electric of hollow, be connected with II rows of planetary frame by spline, the rotor shaft of motor links to each other by the sun gear of spline with I row, and power is from II row's gear ring output.Another kind of situation is: shared one of the rotor of engine crankshaft output shaft and motor (or stator), act on planet row's two gears with another stator (or rotor) of motor, power is exported from another gear of this planet row, and the present invention is the example explanation with first kind of situation:
The present invention is made up of motor and planetary transmission, and the rotor output shaft has external splines, and this external splines matches with the internal spline of I row sun gear A front end, effect mono-directional overrun clutch F when being with operation on I row sun gear A 0Effect mono-directional overrun clutch F during with startup 1Effect mono-directional overrun clutch F during operation 0External tooth match effect mono-directional overrun clutch F during startup with the internal spline of element B (side arm trailing wheel) front end 1External tooth cooperate with the planet wheel of the side of the front end of element B, the internal tooth of this planet wheel and I row's external toothing C matches, external toothing C fixes by external splines and housing;
Side, rear end at element B has helical teeth, this place also is II rows of planetary row's a sun gear, and helical teeth cooperates the planet wheel on the II rows of planetary frame with planet wheel on being installed in II rows of planetary frame, also the internal tooth with the exclusive gear ring of II matches, and the outside of the exclusive gear ring of II is fixed by bearing and housing; Rear outside at the exclusive gear ring of II has external splines, this external splines matches with the internal spline of power clutch collar F front end, there is a convex edge in the front end outside of power clutch collar, on the convex edge, be with bearing, the outer ring of this bearing is embedded in the inboard of fixed cover H front end, and power clutch collar F can rotate in fixed cover H, and the rear portion of power clutch collar F has interior external tooth, internal tooth slips mutually with the external tooth of the interior axle of III rows of planetary frame Q, and the internal tooth of external tooth and III row sun gear front end slips;
III row sun gear M front end has inside and outside tooth, external tooth slips mutually with the internal tooth that fixed cover H rear end has, the outside, rear end of III row sun gear M has helical teeth, this helical teeth matches with planet wheel on the III rows of planetary frame Q, this planet wheel also matches with the internal tooth of the exclusive gear ring L of III front end, the front end of the exclusive gear ring L of III is fixed by bearing and housing, has internal spline in the inboard, rear end of the exclusive gear ring L of III, and this internal spline is a main reducing gear power junction point;
III rows of planetary frame Q fixes by bearing and housing, its outer ring front end has internal spline, the external splines that has with fixed cover H rear end slips mutually, the outer ring of fixed cover H has external splines and slips mutually with the internal spline of housing, the front end of fixed cover H outer ring has 4 groups of identical inclined-planes, and this inclined-plane matches with the inclined-plane of rear end by the driving circle of bearing fixing on its preceding side body; At the rear portion of fixed cover H 15-20 spring-leaf retainers are installed, spring-leaf retainer withstands on the snap ring that is fixed on inner walls;
The front end of the axle outside has external splines in the II rows of planetary frame D, this external splines be connected the engine power output terminal and match with the internal spline of the power input shaft N rear end of passing hollow rotor shaft Y, this power input shaft N by bearing fixing in rotor; Snap ring Z is set on the housing the exclusive gear ring C of I, and driving casing G plays position-limiting action; Insulation sliding contact dish O with the rotor one 0In top, rotor termination the contact slip ring is arranged;
Can add a fan at motor one end according to capacity motor;
Circuit of the present invention is that power charging circuit four partial circuits are formed by the manipulation control circuit of machine operation circuit, storage battery charge-discharge protection circuit, control motor, storage battery work with the civil power;
The emitter of all triodes of this circuit and the negative pole of all electrochemical capacitors all are connected with the storage battery negative pole, afterwards in the narration with not repeat specification;
First portion, the three-phase winding L 1, the three-phase winding L 2, the three-phase winding L 3One end is connected with each other the composition common port;
The three-phase winding L 1The other end and diode D 3Anodal, diode D 4Negative pole links to each other with carbon brush A ';
The three-phase winding L 2The other end and diode D 1Anodal, diode D 2Negative pole links to each other with carbon brush B ';
The three-phase winding L 3The other end and diode D 6Anodal, diode D 5Negative pole links to each other with carbon brush C ';
Diode D 3Negative pole, diode D 1Negative pole, diode D 6Common and the IC of negative pole 4K ' point, the diode D of 1 pin, relay J Kx exported in rectification 19Anodal continuous, diode D 19Negative pole and relay J K CIn T ' link to each other.Diode D 4Anodal, diode D 2Positive pole, diode D 5Positive pole connects the storage battery negative pole;
Carbon brush E ', carbon brush D 0' respectively with relay J K QIn F ' point, M ' links to each other, relay J K QIn L ' point, Y ' link to each other position limitation protection device S with the storage battery negative pole jointly 0' one end and relay J K QIn N ', Z ' link to each other the other end and relay J K DIn X ' some C 1Anodal, inductance L 4One end links to each other, L 4The other end and relay J Kx W ' link to each other.Relay J K DIn H ' and JK CIn G ' by ignition switch K 0Safety fuse cutout S 0Link to each other with positive source;
Second portion, chip IC 1In 1 pin pass through resistance R 7With triode Q 8Base links to each other, triode Q 8Collector electrode is by relay J K CCoil links to each other with positive source, triode Q 8Collector electrode and diode D 24Anodal continuous, diode D 24Negative pole connects positive source; Chip IC 12 pin and resistance R 21, capacitor C 7Anodal, diode D 13Anodal, resistance R 18, resistance R 22One end links to each other, resistance R 21The other end leads to diode D 16Negative pole links to each other with the skidding signal, diode D 13Negative pole connects storage battery negative pole, resistance R 18Another termination positive source, resistance R 22Another terminating diode D 20Positive pole, diode D 20Negative pole links to each other with throttle signal IDL;
Chip IC 13 pin, 6 pin and resistance R 10One end links to each other, resistance R 10The other end and capacitor C 6Anodal, resistance R 19, resistance R 17One end links to each other, resistance R 19Another termination storage battery negative pole, resistance R 17Another termination positive source;
Chip IC 14 pin connect the storage battery negative pole.Chip IC 15 pin and capacitor C 5Anodal, diode D 12Anodal, resistance R 16One end links to each other, resistance R 16Another termination positive source, resistance D 12Negative pole connects the storage battery negative pole.Chip IC 1In 7 pin pass through resistance R 6With triode Q 7Base stage links to each other, triode Q 7Collector electrode, triode Q 6Collector electrode meets triode Q jointly 4On the base stage; Chip IC 1In 8 pin, capacitor C 3Anodal, chip IC 23 pin and chip IC 314 pin link to each other.Chip IC 27808 for supplying with chip IC 1, chip IC 3The mu balanced circuit of work, 1 pin and capacitor C 4Anodal, diode D 11Negative pole links to each other, diode D 11Positive pole links to each other with positive source.Chip IC 2In 2 pin link to each other with the storage battery negative pole;
Third part, chip IC 31 pin of LS7408, triode Q 1Collector electrode, resistance R 11One end links to each other, resistance R 11Another termination positive source; Triode Q 1Base stage and capacitor C 2Anodal, diode D 7Negative pole links to each other, diode D 7Positive pole and resistance R 12One end links to each other, resistance R 12The signal that another termination vehicle speed sensor is sent here;
Chip IC 3K on 2 pin and the Joystick 3One end links to each other, K 3The other end and resistance R 13Link to each other resistance R 13Another termination positive source;
Chip IC 33 pin pass through resistance R 1Meet triode Q 2Base stage, triode Q 2Collector electrode and diode D 21Anodal, B 0, B 1One end links to each other; Diode D 21Negative pole, B 0, B 1Another termination positive source;
Chip IC 34 pin pass through resistance R 8With from diode D 15The closure IDL signal that positive pole enters negative pole output links to each other;
Chip IC 35 pin and K 1D ' point, R ' link to each other K 1P ' with diode D 17Anodal linking to each other.I 1' pass through resistance R 14Be connected on the positive source;
Chip IC 36 pin, resistance R 2One end, diode D 9Anodal linking to each other.Resistance R 2Another termination triode Q 3Base stage, triode Q 3Collector electrode is by diode D 22Anodal, relay J Kx coil links to each other D with positive source 9Negative pole and IC 3In 10 pin link to each other;
Chip IC 37 pin connect the storage battery negative pole;
Chip IC 38 pin pass through resistance R 3With triode Q 4Base stage, triode Q 6, triode Q 7Collector electrode links to each other; Triode Q 4Collector electrode and diode D 10Anodal, relay J K DCoil one end links to each other, JK DAnother termination positive source of coil;
Chip IC 39 pin meet K 2In I ' point, II ', III ' and chip IC 3In 12 pin link to each other T 1Point passes through resistance R 15Connect positive source;
Chip IC 311 pin pass through resistance R 4With triode Q 5Base stage links to each other, triode Q 5Collector electrode and diode D 10Negative pole, diode D 23Anodal, relay J K QCoil one end links to each other, relay J K QThe coil the other end, diode D 23Negative pole connects positive source;
Chip IC 313 pin pass through resistance R 9With diode D 8Negative pole links to each other, diode D 8Positive pole links to each other with fire signal;
Triode Q 6Base stage is passed through resistance R 5With diode D 17, diode D 18Negative pole links to each other, diode D 18Positive pole links to each other diode D with the skidding signal 17Positive pole meets K 1In P ' point;
The 4th part: transformer L 5Primary coil is by relay J K WW 0With safety fuse cutout S 1Join with civil power.Secondary and the chip IC of coil 43,4 pin link to each other, 2 pin connect the storage battery negative pole; 1 pin links to each other with positive source;
Relay J K CIn S ' and R 20, R 21One end links to each other, R 21The other end and D 14Anodal continuous, D 14Negative pole links to each other R with the storage battery negative pole 20The other end and triode Q 9Base stage links to each other, triode Q 9Collector electrode passes through JK WCoil links to each other with positive source; Triode Q 9Collector electrode meets diode D 25Positive pole, diode D 25Negative pole connects on the positive source;
The component explanation:
O among the figure 0For being fixed on the insulation sliding plate that rotor one end rotates synchronously with rotor.The circular copper sliding contact of three circles road is arranged on it, and the outer ring is made up of the semi-ring slideway that neither joins, and the gap is greater than the carbon brush width.The ring slideways are connected with outer ring two half rings slideway respectively in two, A ', B ', C ' three carbon brush be mutually 120 ° with the outer ring slideway cunning of joining.E ', D 0' two carbon brush connect cunning, D with two inner ring slideways respectively 1~D 6Be three tapping commutation diodes, the slip ring circuit electromagnetic torque of Zu Chenging is big, constant like this, do not strike sparks, since one the circle in have only two gaps, so little to the carbon brush abrasion.
Chip IC 1Being LM358, is two groups of operational amplification circuits, can with of the same type, function, other has two groups of operational amplifiers and exchanges mutually.
Chip IC 2Be the three-terminal voltage-stabilizing circuit, no specific (special) requirements, can with mutual replacement of the same type.
Chip IC 3For LS7408 is four groups of AND circuits of two input ends, one output.
Chip IC 4Be rectification circuit, its capacity is decided on the automobile storage battery capacity;
L 5Be transformer, decide on the storage battery capacity;
All triodes are switching mode low-frequency high-power pipe, require all can greater than all triodes of 5A by electric current.
Diode D 1~D 6, D 19Be the power rectifier diode, its capacity is decided on storage battery and vehicle, JK QBe the double linking relay, the anti-stream of all relay contacts is decided on vehicle, and the relay contact of being indicated among the figure is off position.
Use the present invention to have following good effect: 1. not change other parts position of former car, do not influence each system works of former car and performance; 2. driving operation there is not specific (special) requirements; 3. because of having replaced generator, motor, having reached flywheel, clutch, break and fluid coupling torque converter, relatively increased the space of engine bin; 4. realized that motor single driving, storage battery single driving or the two close, the energy transfer efficiency height, energy-conserving and environment-protective, simple in structure, cost is low, and volume is little.
Description of drawings:
Fig. 1 is a structure D shelves schematic representation of the present invention;
Fig. 2 is a P shelves schematic representation of the present invention;
Fig. 3 is a R shelves schematic representation of the present invention;
Fig. 4 is an electrical schematic diagram of the present invention;
Fig. 5 is the structural representation of I row sun gear A of the present invention;
Fig. 6 is mono-directional overrun clutch F of the present invention 0Structural representation;
Fig. 7 is mono-directional overrun clutch F of the present invention 1Structural representation;
Fig. 8 is the structural representation of I rows of planetary frame II row sun gear member B of the present invention;
Fig. 9 is the structural representation of the exclusive gear ring C of I of the present invention;
Figure 10 is the structural representation of II rows of planetary frame of the present invention;
Figure 11 is the exclusive gear ring E of II of the present invention outside clamping strap B 0Structural representation;
Figure 12 is the structural representation of the exclusive gear ring E of II of the present invention;
Figure 13 is for II of the present invention arranges, the structural representation of III planet row power combined cover F;
Figure 14 is the structural representation of driving casing G of the present invention;
Figure 15 is the structural representation of fixed cover H of the present invention;
Figure 16 is the structural representation of spring socket sleeve P of the present invention;
Figure 17 is the structural representation of III row sun gear M of the present invention;
Figure 18 is the structural representation of III planet rows of planetary frame Q of the present invention;
Figure 19 is the structural representation of the exclusive gear ring L of III planet of the present invention;
Figure 20 rotates insulation sliding plate O for the present invention is fixed on rotor one end synchronously with rotor 0
Figure 21 is a form structure schematic representation of the present invention;
Figure 22 is a variable speed planetary gear of the present invention position principle schematic.
Embodiment:
Embodiment:
Technological scheme of the present invention is to adopt direct current synchronous motor and planetary pinion cooperating, based on the motor transmission, for auxiliary, promptly can use engine-driving with the direct current generator transmission, can drive with dc battery jar again, can also close by electromechanics.Synchronous machine can be treated as DC generator in running, again can be in start-up course, and motivation electrifies;
The present invention is made up of motor 3 and planetary transmission 4, and motor 3 rotors 1 output shaft Y has external splines, and this external splines matches with the internal spline of I row sun gear A front end, and cover is useful on igniting process mono-directional overrun clutch F on I row sun gear A 0Be used for cycling start process mono-directional overrun clutch F 1Be used for igniting process mono-directional overrun clutch F 0External tooth match with the internal spline of element B (side arm trailing wheel) front end, be used for cycling start process mono-directional overrun clutch F 1External tooth cooperate with the planet wheel of the side of the front end of element B, the internal tooth of this planet wheel and I row's external toothing C matches, external toothing C fixes by external splines and housing; 2 is motor windings among the figure, and 5 is wire board;
Side, rear end at element B has helical teeth, this place also is II rows of planetary row's a sun gear, and helical teeth cooperates the planet wheel on the II rows of planetary frame with planet wheel on being installed in II rows of planetary frame, also the internal tooth with the exclusive gear ring of II matches, and the outside of the exclusive gear ring of II is fixed by bearing and housing; Rear outside at the exclusive gear ring of II has external splines, this external splines matches with the internal spline of power clutch collar F front end, there is a convex edge in the front end outside of power clutch collar, on the convex edge, be with bearing, the outer ring of this bearing is embedded in the inboard of fixed cover H front end, and power clutch collar F can rotate in fixed cover H, and the rear portion of power clutch collar F has interior external tooth, internal tooth slips mutually with the external tooth of the interior axle of III rows of planetary frame Q, and the internal tooth of external tooth and III row sun gear front end slips;
III row sun gear M front end has inside and outside tooth, external tooth slips mutually with the internal tooth that fixed cover H rear end has, the outside, rear end of III row sun gear M has helical teeth, this helical teeth matches with planet wheel on the III rows of planetary frame Q, this planet wheel also matches with the internal tooth of the exclusive gear ring L of III front end, the front end of the exclusive gear ring L of III is fixed by bearing and housing, has internal spline in the inboard, rear end of the exclusive gear ring L of III, and this internal spline is a main reducing gear power junction point;
III rows of planetary frame Q fixes by bearing and housing, its outer ring front end has internal spline, the external splines that has with fixed cover H rear end slips mutually, the outer ring of fixed cover H has external splines and slips mutually with the internal spline of housing, the front end of fixed cover H outer ring has 4 groups of identical inclined-planes, and this inclined-plane matches with the inclined-plane of rear end by the driving circle of bearing fixing on its preceding side body; At the rear portion of fixed cover H 15 spring-leaf retainers are installed, spring-leaf retainer withstands on the snap ring that is fixed on inner walls;
The front end of the axle outside has external splines in the II rows of planetary frame D, this external splines be connected the engine power output terminal and match with the internal spline of the power input shaft N rear end of passing hollow rotor shaft Y, this power input shaft N by bearing fixing in rotor; Snap ring Z is set on the housing the exclusive gear ring C of I, and driving casing G plays position-limiting action; Insulation sliding contact dish O with the rotor one 0In top, rotor termination the contact slip ring is arranged;
If shared one of the rotor of engine crankshaft output shaft and motor (or stator), act on planet row's two gears with another stator (or rotor) of motor, power is exported from another gear of this planet row, and motor can adopt asynchronous motor or other motor.
Circuit of the present invention is that power charging circuit four partial circuits are formed by the manipulation control circuit of machine operation circuit, storage battery charge-discharge protection circuit, control motor, storage battery work with the civil power;
The emitter of all triodes of this circuit and the negative pole of all electrochemical capacitors all are connected with the storage battery negative pole, afterwards in the narration with not repeat specification;
First portion, the three-phase winding L 1, the three-phase winding L 2, the three-phase winding L 3One end is connected with each other the composition common port;
The three-phase winding L 1The other end and diode D 3Anodal, diode D 4Negative pole links to each other with carbon brush A ';
The three-phase winding L 2The other end and diode D 1Anodal, diode D 2Negative pole links to each other with carbon brush B ';
The three-phase winding L 3The other end and diode D 6Anodal, diode D 5Negative pole links to each other with carbon brush C ';
Diode D 3Negative pole, diode D 1Negative pole, diode D 6Common and the IC of negative pole 4K ' point, the diode D of 1 pin, relay J Kx exported in rectification 19Anodal continuous, diode D 19Negative pole and relay J K CIn T ' link to each other.Diode D 4Anodal, diode D 2Positive pole, diode D 5Positive pole connects the storage battery negative pole;
Carbon brush E ', carbon brush D 0' respectively with relay J K QIn F ' point, M ' links to each other, relay J K QIn L ' point, Y ' link to each other position limitation protection device S with the storage battery negative pole jointly 0' one end and relay J K QIn N ', Z ' link to each other the other end and relay J K DIn X ' some C 1Anodal, inductance L 4One end links to each other, L 4The other end and relay J Kx W ' link to each other.Relay J K DIn H ' and JK CIn G ' by ignition switch K 0Safety fuse cutout S 0Link to each other with positive source;
Second portion, chip IC 1In 1 pin pass through resistance R 7With triode Q 8Base links to each other, triode Q 8Collector electrode is by relay J K CCoil links to each other with positive source, triode Q 8Collector electrode and diode D 24Anodal continuous, diode D 24Negative pole connects positive source; Chip IC 12 pin and resistance R 21, capacitor C 7Anodal, diode D 13Anodal, resistance R 18, resistance R 22One end links to each other, resistance R 21The other end leads to diode D 16Negative pole links to each other with the skidding signal, diode D 13Negative pole connects storage battery negative pole, resistance R 18Another termination positive source, resistance R 22Another terminating diode D 20Positive pole, diode D 20Negative pole links to each other with throttle signal IDL;
Chip IC 13 pin, 6 pin and resistance R 10One end links to each other, resistance R 10The other end and capacitor C 6Anodal, resistance R 19, resistance R 17One end links to each other, resistance R 19Another termination storage battery negative pole, resistance R 17Another termination positive source;
Chip IC 14 pin connect the storage battery negative pole.Chip IC 15 pin and capacitor C 5Anodal, diode D 12Anodal, resistance R 16One end links to each other, resistance R 16Another termination positive source, resistance D 12Negative pole connects the storage battery negative pole.Chip IC 1In 7 pin pass through resistance R 6With triode Q 7Base stage links to each other, triode Q 7Collector electrode, triode Q 6Collector electrode connects on the triode Q4 base stage jointly; Chip IC 1In 8 pin, capacitor C 3Anodal, chip IC 23 pin and chip IC 314 pin link to each other.Chip IC 27808 for supplying with chip IC 1, chip IC 3The mu balanced circuit of work, 1 pin and capacitor C 4Anodal, diode D 11Negative pole links to each other, diode D 11Positive pole links to each other with positive source.Chip IC 2In 2 pin link to each other with the storage battery negative pole;
Third part, chip IC 31 pin of LS7408, triode Q 1Collector electrode, resistance R 11One end links to each other, resistance R 11Another termination positive source; Triode Q 1Base stage and capacitor C 2Anodal, diode D 7Negative pole links to each other, diode D 7Positive pole and resistance R 12One end links to each other, resistance R 12The signal that another termination vehicle speed sensor is sent here;
Chip IC 3K on 2 pin and the Joystick 3One end links to each other, K 3The other end and resistance R 13Link to each other resistance R 13Another termination positive source;
Chip IC 33 pin pass through resistance R 1Meet triode Q 2Base stage, triode Q 2Collector electrode and diode D 21Anodal, B 0, B 1One end links to each other; Diode D 21Negative pole, B 0, B 1Another termination positive source;
Chip IC 34 pin pass through resistance R 8With from diode D 15The closure IDL signal that positive pole enters negative pole output links to each other;
Chip IC 35 pin and K 1D ' point, R ' link to each other K 1P ' with diode D 17Anodal linking to each other.I 1' pass through resistance R 14Be connected on the positive source;
Chip IC 36 pin, resistance R 2One end, diode D 9Anodal linking to each other.Resistance R 2Another termination triode Q 3Base stage, triode Q 3Collector electrode is by diode D 22Anodal, relay J Kx coil links to each other D with positive source 9Negative pole and IC 3In 10 pin link to each other;
Chip IC 37 pin connect the storage battery negative pole;
Chip IC 38 pin pass through resistance R 3With triode Q 4Base stage, triode Q 6, triode Q 7Collector electrode links to each other; Triode Q 4Collector electrode and diode D 10Anodal, relay J K DCoil one end links to each other, JK DAnother termination positive source of coil;
Chip IC 39 pin meet K 2In I ' point, II ', III ' and chip IC 3In 12 pin link to each other T 1Point passes through resistance R 15Connect positive source;
Chip IC 311 pin pass through resistance R 4With triode Q 5Base stage links to each other, triode Q 5Collector electrode and diode D 10Negative pole, diode D 23Anodal, relay J K QCoil one end links to each other, relay J K QThe coil the other end, diode D 23Negative pole connects positive source;
Chip IC 313 pin pass through resistance R 9With diode D 8Negative pole links to each other, diode D 8Positive pole links to each other with fire signal;
Triode Q 6Base stage is passed through resistance R 5With diode D 17, diode D 18Negative pole links to each other, diode D 18Positive pole links to each other diode D with the skidding signal 17Positive pole meets K 1In P ' point;
The 4th part: transformer L 5Primary coil is by relay J K WW 0With safety fuse cutout S 1Join with civil power.Secondary and the chip IC of coil 43,4 pin link to each other, 2 pin connect the storage battery negative pole; 1 pin links to each other with positive source;
Relay J K CIn S ' and R 20, R 21One end links to each other, R 21The other end and D 14Anodal continuous, D 14Negative pole links to each other R with the storage battery negative pole 20The other end and triode Q 9Base stage links to each other, triode Q 9Collector electrode passes through JK WCoil links to each other with positive source; Diode Q 9Collector electrode meets diode D 25Positive pole, diode D 25Negative pole connects on the positive source;
K in the circuit diagram 1The position be arranged on Joystick bearing place, link with operating handle;
K in the circuit diagram 2The position can be arranged on dynamic mode switch transition place;
K in the circuit diagram 3The position can be arranged on the Joystick.
The explanation of circuit working of the present invention:
IC 1For the storage battery charge-discharge protection circuit, by IC 11, the peripheral circuit of 2,3 pin composition is to Q 8Conducting by the conducting of control JKc with close, make among the JKc G ' with T ' separate and combine, realize cut-out and connection to storage battery and charging circuit.
Under the normal condition by R 17, R 19Be added to 3,6 pin voltages after the dividing potential drop less than through R 18, D 13Being added to 2 pin voltages after the voltage stabilizing and making output 1 pin is that low potential makes Q 8End, JKc is failure to actuate, and T ', a G ' conducting makes by three phase windings through D 1~D 6After the rectification storage battery is charged.1. when raising, charging voltage make pin 3 voltages, pin 1 output HIGH voltage and make Q greater than 2 pin voltages 8Conducting, the JKc conducting makes T ' some G ' some separation, prevents that storage battery from overcharging.2. when car is idling, IDL switch on and to make IDL be 0 current potential makes T ', a G ' separation and 2 pin voltages are reduced, thereby makes motor not have charging load because of charging circuit disconnects when idling, and do not influence engine idle.3. work as car in the process of moving, brake signal is arranged through D 16Give 2 pin.Thereby 2 pin voltages are raise ends JKc.T ', G ' combined charge circuit charge to storage battery, produce electromagnetic torque, stop vehicle to move ahead, and realize vehicle energy is transformed into electric energy, realize the power savings.
In like manner through R 16, D 12, C 5Voltage stabilizing, to be higher than 5 pin voltages and to make 7 pin be 0 output to 6 pin voltages under the normal condition, and makes Q 7End, when voltage is reduced to a certain degree, IC 15 pin voltages be higher than 6 pin voltages, 7 pin output HIGH voltages make Q 7Conducting; Q 7Make Q after the conducting again 4End, make JK DEnd, H ' is separated with X ', has cut off storage battery and has given motor power supply line, has played the brownout protective action.
IC 2: be the three-terminal voltage-stabilizing circuit, the input of first pin, crus secunda ground connection, the tripod output terminal is given IC 1, IC 3Work provides stable operating voltage.
IC 3Be control circuit: (see figure 1) B 0Be positioned at shell rim, B 0Action external toothing E (II planet row) is fixing, cut off power and transmit downwards, when moving vehicle stops, need conversion car traffic direction, or when being transformed into the P shelves, do not have vehicle speed signal to pass through D by running state 7Affact Q 1Q during base stage 1By pin 1 is Gao Ping (D 7Rectification, C 2Filtering) K 3Be the switch button on the hand behaviour bar, press K 3Power supply passes through R 13Affacting 2 pin is high level, and then 3 pin are high level, Q 2Conducting, B 0, B 1Work, B 0, B 1Be energising action solenoid valve, B 0Action makes gear shift smooth and easy, and B 1Solenoid valve is positioned at operating handle rotating shaft place, and its effect will be determined good stick position locking, prevents car operating handle swing and damage parts when operation.Vehicle speed signal is that automobile only the time just has in operation, and the action operating handle could be controlled it and move, though push-and-pull operating handle when car moves in other words, at B 1Can not move its position under the effect, purpose is to prevent that driver misoperation when car moves from damaging vehicle.
K 1Be the operating handle throw over switch, when car need move ahead D ',
Figure C200410010831D0014132142QIETU
In conjunction with, P ' during Parking,
Figure C200410010831D0014132142QIETU
In conjunction with, reversing R ',
Figure C200410010831D0014132142QIETU
In conjunction with.Will when car need move ahead or move backward
Figure C200410010831D0014132142QIETU
With ' or R ' connection, 5 pin are high level, step on foot throttle, and throttle switch disconnects, and the IDL signal is that high level passes through D 15, R 8Be added to 4 pin, then exporting 6 pin is high level, makes Q 3Conducting JKx closure, W ', K ' combination, and make star around passing through D 1~D 6Electric current behind the rectifying and wave-filtering joins on input utmost point carbon brush D ' 0, the E '; that is to say to make stator coil form the closed-loop path, rotor rotation cutting magnetic line has electric current to produce on the one hand when engine-driving, and the generating electromagnetic resistance is arranged; producing electric current simultaneously, pass through limiting protector on the other hand
Figure C200410010831D0014132220QIETU
,, JK QBe added to carbon brush
Figure C200410010831D0014132237QIETU
Give the power supply of three phase windings, produce reverse electromagnetic resistance moment, two moment directions are identical, all make rotor produce anticlockwise moment, so just hindered rotor and clockwise rotated, this torque is added on the sun gear A by axle Y, makes B produce anticlockwise moment, exercising result makes external toothing E produce the clockwise moment opposite with this moment, and this is by the decision of planet row character; And motor clockwise rotates to affact by the N axle and also makes external toothing E produce clockwise moment on the II rows of planetary frame D; Drive to move.(see figure 1)
At IC 34,5 pin import 6 pin and export in this AND circuit, have only the pedal of stepping on the throttle when hanging D shelves or R shelves, car could move, even otherwise when the Parking of P shelves, the car of stepping on the gas does not move this yet and acts on and do not influence winter starting and step on the gas and heat up to car.K 2Effect is that the selection automobile is that electricity drives or engine-driving, or the dynamo-electric selector switch that closes.The front is circuit control action repeated description not just here when narrating engine-driving.When with K 2Get to II ' shelves, when promptly electromechanics closes 6 pin high level are passed through D 9Be added to 10 pin, the power supply high level passes through R 15Be added to 9 pin, then output pin 8 is a high level, and makes Q 4Conducting, JK DConducting makes H ', X ' closure that the storage battery direct current is affacted and realizes on the motor that electromechanics closes the state of driving.With K 2Get to III ' shelves, engine-driving JK DMiddle H ', X ' disconnection have been cut off storage battery motor have been powered the road through realizing engine-driving.When with K 2When getting to I ' shelves, 9 pin, 10 pin are high level, and then 8 pin are high level, JK DClosure, motor are that electric motor state is that electricity drives.
Ignition trigger is under P shelves state, with K 2Get under the III ' shelves, 12 pin are high level, the starting ignition switch, and fire signal passes through D 8, R 9Be added to 13 pin, make 11 pin high level pass through R 4Be added to Q 5Base stage, Q 5Conducting, and make JK Q, JK DConducting makes Q even have under brake signal or the P shelves state this moment 6Conducting, Q 4By also not influencing ignition trigger, JK QConducting makes F ', N ' connection M ', Y ' connection, JK DWith H ', X ' connection, to motor power supply, JK QAction rotor is clockwise rotated, by I, II two planets row, drive bent axle and clockwise rotate, and make engine ignition.
When car under the P shelves state or in when brake, signal passes through D 17, D 18, R 5Be added to Q 6Base stage and make Q 6Conducting is with Q 4End JK QDo not work H ', X ' disconnection, action is in order to cut the supply motor power, protection motor and storage battery when the brake like this.Charging when automobile needs civil power to charge to storage battery, is passed through L 5, IC 4Rectification JKc charges to storage battery, at this moment K 0Closure, D is connected in G ', S ' of JKc action when the storage battery charging reaches reference value 14Tutorial light is lighted, Q 9Conducting, JKw moves E 0, W 0Disconnect, realize charge protection, IDL is the throttle switch signal among the figure.
More than be the explanation of circuit working principle.
Specify the planetary working procedure of the present invention below:
Cut open schematic representation and Figure 22 sees from complete machine, power is exported by bent axle, passes through from the rotor Y-axis of hollow, and the planet carrier D with II row is connected in the spline mode.DC synchronous electric motor rotor (also can be other form motors) is connected with the sun gear A of spline mode with I planet row equally, and the opposite two cover mono-directional overrun clutch F of direction are arranged on sun gear 0, F 1, F 1Effect when group is startup, another organizes F 0Effect when operation.External toothing C and shell are fixed; The push-and-pull Joystick is controlled the left-right rotation of the element G that trackslips, the element G that trackslips cooperates with the H inclined-plane, thereby ramp effect is controlled and is made G promotion H move left and right promote can move forward and backward at sliding element H before and after the housing in the spline mode, controls the fixing planet carrier Q or sun gear M to III planet row.Power combined cover F slides before and after the spline mode is under fixed cover H drives at the exclusive gear ring output terminal of II planet, and can freely rotate in fixed cover H front end inboard, realize that power is to III planet row's the sun gear and the transmission of power of planet carrier, according to concrete vehicle, can before being input to planet carrier Q, bent axle add one-level reduction planetary row, match with synchronous machine, capacity motor matches with engine capacity.
One igniting starts; Under the P shelves, open ignition starting switch, K 2Get to the III shelves, (circuit theory schematic representation) JK under circuit control Q, JK DClosure feed direct current to motor, JK DAllow motor clockwise rotate, by overrunning clutch F 1The effect (this moment F 0Do not act on), will be by rotor Y through A to F 1The power that transmits is passed to planet carrier B, passes to planet carrier D (owing to be the P shelves, external toothing E is by locking) through II planet row again, and D passes to the N axle, and N passes to engine crankshaft, and engine start is caught fire.As can be seen from the figure rotor slows down to increase and turns round back drive motor through two groups of planet rows of I, II, can reach the startup requirement fully.
Two, the D shelves working condition that moves ahead pushes the D shelves with hand lever
Automobilism divides motor driving, storage battery driving, electromechanics to close three kinds of situations.Engine-driving is seen circuit diagram, behind engine start, with K 2Get to III ' shelves K 1Get to the D shelves, the pedal of stepping on the throttle makes the JKx action, W ', K ' combination, and rotor motor under engine action becomes electromagnetic torque of generator generation on the one hand.The obstruction rotor clockwise rotates.The electric current of Chan Shenging is through L on the other hand 4(L 4Play the soft effect of automobile starting that makes), C 1Be added to again on three phase windings by carbon brush after the filtering, made motor become motor, at JK QEffect produces counterclockwise electromagnetic torque down, two torques lump together and stop rotor to clockwise rotate, this counterclockwise torque affacts on the exclusive gear ring E of II planet by II planet row's sun gear, make E produce clockwise torque, and motor is passed to the clockwise torque of planet carrier D and is also made external toothing E produce clockwise torque, regularly overcome extraneous resistance when torque reaches one, pass to wheel by III row, and car is moved forward.When the D shelves, III planet row, (see figure 1) is passed to III rows of planetary frame Q with the power of the exclusive gear ring E of II under fixed cover H effect, this moment, the III row sun gear M cover H that is fixed fixed, planet carrier Q passes to external toothing L with power, L passes to power main reducing gear and car is moved ahead, be that planet carrier Q driving external toothing L has realized overdirve gear in III planet row, arrive on II rows of planetary frame D and the B (side arm trailing wheel) owing to the external world strengthens torque reaction when strengthening as if going up a slope or loading under steam, have to this moment pass through F so and engine moment is irresistible 0Affact and make rotor clockwise rotate quickening on the rotor, the result that rotor rotation is accelerated is and produces bigger electric current that this electric current passes through JK QAfter affact on the winding, produce bigger moment again and set up new equalising torque and balancing rotor n 1+ α n 2=(1+ α) n 3, n 1→ rotor B rotation speed n 2→ E rotation speed n 3→ planet carrier D rotating speed, the ratio of α → external toothing number of teeth and the sun gear number of teeth, new balance is all arranged so all the time, that is to say the travelling speed (fixing) of having adjusted car by the variation of rotor speed automatically at throttle opening one, certainly the cart travelling speed is fast more more for throttle opening, has really like this realized stepless change.
Under storage battery driving situation, see that circuit diagram is with K 2Get to I ' shelves, K 1Get to ' shelves, the riding boogie board of stepping on the gas, H ', X ' connection make the motor inhour rotate F to the motor power supply 0Effect is passed to planet carrier D and external toothing E with the torque of rotor inhour by B, D also will be rotated counterclockwise, because of motor can not rotate counterclockwise, and make D by locking, this effect torque can only make external toothing E clockwise rotate (this is by the decision of planet carrier character) and this clockwise torque is passed to Q by F so, Q passes to L, and L passes to main reducing gear moves ahead car, and its speed also feeds size of current and the control automatically of time length by load with to motor.
Drive jointly about engine-driving and storage battery, be not difficult to find out its working principle, increased the power of motor widely, realized high load with small power, also just realized the effect of energy-conserving and environment-protective by storage battery and the common driving of motor.Here repeat no more.
The realization of the 3rd reverse gear R
With operating handle K 1Place R shelves place, planet carrier Q among the (see figure 3) III planet row cover H that is fixed fixes, power is passed to sun gear M through power combined cover F, sun gear M clockwise rotates and drives external toothing L and rotate counterclockwise like this, pass to the main reducing gear backward of driving, here pointing out in III row it is that sun gear M drives external toothing L, is to slow down to increase to turn round transmittance process, can reach the reverse gear requirement fully.
The 4th P shelves Parking shelves are realized
The power supply road warp of storage battery to motor, (seeing circuit diagram 4) JK are cut off in operating braking automobile braking DAction makes H ', X ' separations, and stator is in charged state, and motor drives rotor, is similar under the traditional form motor and drives flywheel or the fluid coupling situation that dallies, and is in when static at car, when at this moment needing Parking, presses K switch above the hand lever 3, B 0, B 1Action (be that vehicle speed signal is 0, K 3Closed), at clamping strap B 0Make external toothing E locking under the effect, operating handle is in free state, and the rotation that drives operating handle, driving casing G promotes fixed cover H all combines by locking Q, M, H, F, realizes the P shelves.Should be emphasized that owing to there is not electromagnetic torque,, need only very less friction, E can be kept state of rest at the operating handle moving process, so solenoid valve B 0Drive clamping strap B 0Can finish this action request fully.
The 5th neutral gear N realizes
Automobile is in run mode, and only otherwise step on the gas, automobile just is in neutral state.See circuit diagram because step on the gas not, the 1DL signal is zero.IC then 36 pin be low potential, 8 pin also are low potential.JKx, JK DEnd, rotor is under the non-electromagnetic-force square state, has promptly realized neutral gear N state, and the power of motor can not have been passed to main reducing gear.State was far better when the neutral gear of this state was than the orthodox car neutral gear during driving.
The 6th realizes the effect of power bank
See circuit diagram, during the operational vehicle brake, closed throttle 1DL is 0 IC 36,8 pin low levels, JKx, JK DEnd H ', X ' separation, W ', K ' separation.The skidding signal arrives and passes through D 16Be added to IC 12 pin, then 1 pin is a low level, Q 8End JK CBe failure to actuate, i.e. T ', G ' combination, rotor this moment high speed rotating and produce electric current and charge to storage battery under the passive drive of external toothing E is about to kinetic energy and changes into power storage, and electromagnetic torque hinders the car operation during charging; Planet carrier D also under external toothing E drives, clockwise rotates at a high speed on the other hand, realizes engine braking.This cover system degree of depth when bringing to a halt is stepped on braking pedal, and to the ABS system not influence again of brake, so this cover system can store the part energy of brake, plays power bank memory action.This brake signal preferably is located at independent signal on the braking pedal separately, before the effect of ABS signal this signal is affacted D in the circuit 16On, when working, automobile ABS closes this signal, and purpose is not influence idling (in fact at this moment rotating speed is lower, and the charging electromagnetic torque is very little, and is little to the idling influence) after the brake because of the charging electromagnetic torque.

Claims (3)

1, multifunction electronic stepless speed changes devices is characterized in that:
A) adopt direct current synchronous motor and planetary pinion cooperating, based on the motor transmission, with the direct current generator transmission is auxiliary, promptly can use engine-driving, can drive with dc battery jar again, can also close by electromechanics, synchronous machine can be treated as DC generator in running, again can be in start-up course, motivation electrifies;
B) line shaft from engine crankshaft output with the form that motor and planet row cooperatively interact is: the input shaft (N) that bent axle is exported passes through from the rotor axis of electric (Y) of hollow, be connected with II rows of planetary frame (D) by spline, the rotor shaft of motor (Y) links to each other by the sun gear (A) of spline with I row, and power is from II row's gear ring (E) output.
2, multifunction electronic stepless speed changes devices is made up of motor (3) and planetary transmission (4) and control circuit, it is characterized in that:
Have external splines at motor (3) rotor (1) output shaft (Y), this external splines matches with the internal spline that I arranges sun gear (A) front end, goes up at I row's sun gear (A) and acts on mono-directional overrun clutch (F when cover is useful on operation 0) and effect mono-directional overrun clutch (F when starting 1); Effect mono-directional overrun clutch (F when being used to move 0) external tooth match with the internal spline of side arm trailing wheel element (B) front end, the external tooth of effect mono-directional overrun clutch (F1) cooperates with the planet wheel of the side of the front end of element (B) when being used to start, this planet wheel matches with the internal tooth of I row's external toothing (C), and external toothing (C) is fixed by external splines and housing;
Side, rear end at element (B) has helical teeth, this place also is II rows of planetary row's a sun gear, and helical teeth cooperates the planet wheel on the II rows of planetary frame with planet wheel on being installed in II rows of planetary frame, also the internal tooth with the exclusive gear ring of II matches, and the outside of the exclusive gear ring of II is fixed by bearing and housing; Rear outside at the exclusive gear ring of II has external splines, this external splines matches with the internal spline of power clutch collar (F) front end, there is a convex edge in the front end outside of power clutch collar, on the convex edge, be with bearing, the outer ring of this bearing is embedded in the inboard of fixed cover (H) front end, power clutch collar (F) can rotate in fixed cover (H), the rear portion of power clutch collar (F) has interior external tooth, internal tooth slips mutually with the external tooth of the interior axle of III rows of planetary frame (Q), and the internal tooth of external tooth and III row sun gear front end slips;
III row sun gear (M) front end has inside and outside tooth, external tooth slips mutually with the internal tooth that fixed cover (H) rear end has, the outside, rear end of III row's sun gear (M) has helical teeth, this helical teeth matches with planet wheel on the III rows of planetary frame (Q), this planet wheel also matches with the internal tooth of the exclusive gear ring of III (L) front end, the front end of the exclusive gear ring of III (L) is fixed by bearing and housing, has internal spline in the inboard, rear end of the exclusive gear ring of III (L), and this internal spline is a main reducing gear power junction point;
III rows of planetary frame (Q) is fixed by bearing and housing, its outer ring front end has internal spline, the external splines that has with fixed cover (H) rear end slips mutually, the outer ring of fixed cover (H) has external splines and slips mutually with the internal spline of housing, the front end of fixed cover (H) outer ring has 4 groups of identical inclined-planes, and this inclined-plane matches with the inclined-plane of rear end by the driving circle of bearing fixing on its preceding side body; Rear portion at fixed cover (H) is equipped with 15-20 spring-leaf retainers, and spring-leaf retainer withstands on the snap ring that is fixed on inner walls;
The front end of the axle outside has external splines in the II rows of planetary frame (D), this external splines be connected the engine power output terminal and match with the internal spline of the power input shaft that passes hollow rotor shaft (Y) (N) rear end, this power input shaft (N) by bearing fixing in rotor; Snap ring (Z) is set on the housing the exclusive gear ring of I (C), and driving casing (G) plays position-limiting action; Insulation sliding contact dish (O with the rotor one 0) in top, rotor termination the contact slip ring is arranged;
Described control circuit is as follows:
Circuit is that power charging circuit four partial circuits are formed by the manipulation control circuit of machine operation circuit, storage battery charge-discharge protection circuit, control motor, storage battery work with the civil power;
The emitter of all triodes of this circuit and the negative pole of all electrochemical capacitors all are connected with the storage battery negative pole;
First portion, the three-phase winding L 1, the three-phase winding L 2, the three-phase winding L 3One end is connected with each other the composition common port;
The three-phase winding L 1The other end and diode D 3Anodal, diode D 4Negative pole and carbon brush A ' link to each other;
The three-phase winding L 2The other end and diode D 1Anodal, diode D 2Negative pole and carbon brush B ' link to each other;
The three-phase winding L 3The other end and diode D 6Anodal, diode D 5Negative pole and carbon brush C ' link to each other;
Diode D 3Negative pole diode D 1Negative pole diode D 6Negative pole and chip IC 4K ' point, the diode D of 1 pin, relay J Kx exported in rectification 19Anodal continuous, diode D 19Negative pole and relay J K CIn T ' link to each other diode D 4Anodal, diode D 2Anodal, diode D 5Positive pole connects the storage battery negative pole;
Carbon brush E ', carbon brush D 0' respectively with relay J K QIn F ' point, M ' links to each other, relay J K QIn L ' some Y ' link to each other position limitation protection device S with the storage battery negative pole jointly 0' one end and relay J K QIn N ', Z ' link to each other the other end and relay J K DIn X ' point, capacitor C 1Anodal, inductance L 4One end links to each other, L 4The other end and relay J Kx W ' link to each other relay J K DIn H ' point relay JK CIn G ' by ignition switch K 0Safety fuse cutout S 0Link to each other with positive source;
Second portion, chip IC 1In 1 pin pass through resistance R 7With triode Q 8Base links to each other, triode Q 8Collector electrode is by relay J K CCoil links to each other with positive source, triode Q 8Collector electrode and diode D 24Anodal continuous, diode D 24Negative pole connects positive source; Chip IC 12 pin and resistance R 21, capacitor C 7Anodal, diode D 13Anodal, resistance R 18, resistance R 22One end links to each other, resistance R 21The other end leads to diode D 16Negative pole links to each other with the skidding signal, diode D 13Negative pole connects storage battery negative pole, resistance R 18Another termination positive source, resistance R 22Another terminating diode D 20Positive pole, diode D 20Negative pole links to each other with throttle signal IDL;
Chip IC 13 pin, 6 pin and resistance R 10One end links to each other, resistance R 10The other end and capacitor C 6Anodal, resistance R 19, resistance R 17One end links to each other, resistance R 19Another termination storage battery negative pole, resistance R 17Another termination positive source;
Chip IC 14 pin connect storage battery negative pole, chip IC 15 pin and capacitor C 5Anodal, diode D 12Anodal, resistance R 16One end links to each other, resistance R 16Another termination positive source, diode D 12Negative pole connects storage battery negative pole, chip IC 1In 7 pin pass through resistance R 6With diode Q 7Base stage links to each other, triode Q 7Collector electrode, triode Q 6Collector electrode meets triode Q jointly 4On the base stage; Chip IC 1In 8 pin, capacitor C 3Anodal, chip IC 23 pin and chip IC 314 pin link to each other chip IC 27808 for supplying with chip IC 1, chip IC 3The mu balanced circuit of work, 1 pin and capacitor C 4Anodal, diode D 11Negative pole links to each other, diode D 11Positive pole links to each other chip IC with positive source 2In 2 pin link to each other with the storage battery negative pole;
Third part, chip IC 31 pin of LS7408, triode Q 1Collector electrode, resistance R 11One end links to each other, resistance R 11Another termination positive source; Triode Q 1Base stage and capacitor C 2Anodal, diode D 7Negative pole links to each other, diode D 7Positive pole and resistance R 12One end links to each other, resistance R 12The signal that another termination vehicle speed sensor is sent here;
Chip IC 32 pin and the K on the Joystick 3One end links to each other, K 3The other end and resistance R 13Link to each other resistance R 13Another termination positive source;
Chip IC 33 pin energising resistance R 1Meet triode Q 2Base stage, triode Q 2Collector electrode and diode D 21Anodal, B 0, B 1One end links to each other; Diode D 21Negative pole, B 0, B 1Another termination positive source;
Chip IC 34 pin pass through resistance R 8With from diode D 15The closure IDL signal that positive pole enters negative pole output links to each other;
Chip IC 35 pin and K 1D ' point, R ' link to each other K 1P ' with diode D 17Anodal continuous, I 1' pass through resistance R 14Be connected on the positive source;
Chip IC 36 pin, resistance R 2One end, diode D 9Anodal continuous, resistance R 2Another termination triode Q 3Base stage, triode Q 3Collector electrode is by diode D 22Anodal relay J Kx coil links to each other diode D with positive source 9Negative pole and chip IC 3In 10 pin link to each other;
Chip IC 37 pin connect the storage battery negative pole;
Chip IC 38 pin pass through resistance R 3With triode Q 4Base stage, triode Q 6, triode Q 7Collector electrode links to each other; Triode Q 4Collector electrode and diode D 10Anodal, relay J K DCoil one end links to each other, relay J K DAnother termination positive source of coil;
Chip IC 39 pin meet K 2In I ' point, II ', III ' and chip IC 3In 12 pin link to each other T 1Point passes through resistance R 15Connect positive source;
Chip IC 311 pin pass through resistance R 4With triode Q 5Base stage links to each other, triode Q 5Collector electrode and diode D 10Negative pole, diode D 23Anodal, relay J K QCoil one end links to each other, relay J K QThe coil the other end, diode D 23Negative pole connects positive source;
Chip IC 313 pin pass through resistance R 9With diode D 8Negative pole links to each other, diode D 8Positive pole links to each other with fire signal;
Triode Q 6Base stage is passed through resistance R 5With diode D 17, diode D 18Negative pole links to each other, diode D 18Positive pole links to each other diode D with the skidding signal 17Positive pole meets K 1In P ' point;
The 4th part: inductance L 5Primary coil is by relay J K WW 0With safety fuse cutout S 1Join the secondary and chip IC of coil with civil power 43,4 pin, 2 pin that link to each other connect the storage battery negative pole; 1 pin links to each other with positive source;
Relay J K CIn S ' and resistance R 20, resistance R 21One end links to each other, resistance R 21The other end and diode D 14Anodal continuous, diode D 14Negative pole links to each other resistance R with the storage battery negative pole 20The other end and triode Q 9Base stage links to each other, triode Q 9Collector electrode is by relay J K WCoil links to each other with positive source, triode Q 9Collector electrode meets diode D 25Positive pole, diode D 25Negative pole connects on the positive source.
3, multifunction electronic stepless speed changes devices according to claim 2 is characterized in that: at the rear portion of fixed cover (H) 15 spring-leaf retainers are installed.
CNB2004100108313A 2004-05-08 2004-05-08 Electronic multifunctional stepless speed-transformation device Expired - Fee Related CN100504111C (en)

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CN103899718B (en) * 2014-04-22 2016-03-30 瞿庆涛 The speed change gear of Motor Vehicle
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