IPC분류정보
국가/구분 |
United States(US) Patent
등록
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국제특허분류(IPC7판) |
|
출원번호 |
US-0370751
(1999-08-09)
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발명자
/ 주소 |
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대리인 / 주소 |
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인용정보 |
피인용 횟수 :
3 인용 특허 :
49 |
초록
▼
The invention provides systems, methods and apparatus for processing delicate parts within a process tank such as an ultrasonic tank. Typically, one or more transducers connect to the tank and respond to drive signals from a generator to produce ultrasound within process liquid within the tank. Spec
The invention provides systems, methods and apparatus for processing delicate parts within a process tank such as an ultrasonic tank. Typically, one or more transducers connect to the tank and respond to drive signals from a generator to produce ultrasound within process liquid within the tank. Specific features of the invention include: (1) a power up-sweep ultrasonic system for moving contaminants upwards within the tank by sweeping transducer drive signals from an upper frequency to a lower frequency without sweeping from the lower frequency to the upper frequency; (2) a multi-generator system for producing ultrasound at selected different frequencies within the tank by switching a common transducer bank to one of the generators in response to remote relays initiated by the user; (3) a probe sensing system for sensing process conditions within the tank including an enclosure for housing a sample liquid and one or more sensing transducers within the sample liquid, the transducers generating signals indicative of characteristics of the sample liquid, a subsystem analyzing the signals in feedback with the generator to modify process conditions; (4) variable voltage ultrasonic generator systems to accommodate varying world-wide voltage supplies; (5) a laminar process tank for efficiently pushing contaminants upwards in a tank; (6) a quick dump rinse tank including a pressure cavity to accelerate dumping processes; (7) an ultrasonic generating unit formed of a printed circuit board (PCB) and multiple transducers within the PCB; (8) an AC power system to produce an AC voltage at frequency f that is impressed across a capacitive element; and (9) various configurations of transducers, including acid-safe transducers, double-compression transducers, and transducers with increased reliability.
대표청구항
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[ What is claimed is:] [1.] An AC power system, comprising:a capacitive element, the capacitive element being characterized by a predetermined capacitance C, the capacitive element having a first terminal and a second terminal, the second terminal being coupled to earth ground;an inductive element,
[ What is claimed is:] [1.] An AC power system, comprising:a capacitive element, the capacitive element being characterized by a predetermined capacitance C, the capacitive element having a first terminal and a second terminal, the second terminal being coupled to earth ground;an inductive element, the inductive element being characterized by a predetermined inductance L and having a first terminal and a second terminal;a direct electrical connection between the second terminal of the inductive element and the first terminal of the capacitive element, whereby the inductive element is electrically resonant with the capacitive element substantially at a resonant frequency f.sub.r =1/T.sub.r ;a first drive network coupled by a transformer between a reference potential +V and the first terminal of the inductive element, the transformer having first and second primary windings and a secondary winding;a second drive network coupled by a transformer between the reference potential +V and the first terminal of the inductive element;wherein the first drive network includes a first multistate switch network and a first blocking network in series between circuit ground and the first primary winding, the first drive network providing a unidirectional current flow path characterized by a first impedance from the potential +V through the first primary winding when the first switch network is in a first state, and providing an oppositely directed and unidirectional current flow characterized by a second impedance through the first primary winding to the potential +V when the first switch network is in a second state, wherein the first impedance is lower than the second impedance;wherein the second drive network includes a second switch network and a second blocking network in series between circuit ground and the second primary winding, the second drive network providing a unidirectional current flow path characterized by a third impedance from the potential +V through the second primary winding when the second switch network is in a first state, and providing an oppositely directed and unidirectional current flow characterized by a fourth impedance through the second primary winding to the potential +V when the second switch network is in a second state, wherein the third impedance is lower than the fourth impedance;further comprising control means for cyclically switching the first network between its first and second states at a frequency f=1/T, where f is lower than f.sub.r, whereby the first switch network is in its first state for a period greater than or equal to T.sub.r /2, but less than or equal to T/2, at the beginning of each cycle and is in its second state for the remainder of each cycle, andcyclically switching the second network between its first and second states at the frequency f, whereby the second switch network is in its first state for a period greater than or equal to T.sub.r /2, but less than or equal to T/2, at the beginning of each cycle and is in its second state for the remainder of each cycle, wherein the start time for each cycle of the second switch network is offset by at least T.sub.r /2 and less than or equal to T.sub.r /2+D from the start time for each cycle of the first switch network, where D is substantially equal to T-T.sub.r,whereby an AC voltage at frequency f is impressed across the capacitive element.
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