Published:2013/2/25 20:17:00 Author:muriel | Keyword: TEC Control Loop Model
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Published:2013/2/25 20:15:00 Author:muriel | Keyword: TEC Temperature Controller
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Published:2013/2/25 20:12:00 Author:muriel | Keyword: Based Boost Regulator
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Published:2013/2/25 19:54:00 Author:muriel | Keyword: Switching Regulator
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Published:2013/2/25 19:48:00 Author:muriel | Keyword: Simplified , TEC Control , Loop Model, Thermal Terms
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Published:2013/2/25 19:45:00 Author:muriel | Keyword: TEC Temperature Controller
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Published:2013/2/24 21:20:00 Author:muriel | Keyword: TESLA COIL , DRIVER
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Published:2013/2/24 21:01:00 Author:muriel | Keyword: Proximity Switch
Proximity Switch. This design takes advantage of the ultra-high input impedance and power-handling capabilities of the IRF511 to make a simple, but sensitive, proximity sensor and alarm driver circuit.A 3x3-inch piece of circuit board (or similar size metal object), which functions as the pick-up sensor, is connected to the gate of Q1. A 100 MegaOhm resistor, R2, isolates Q1's gate from R1, allowing the input impedance to remain very high. If a 100-MegaOhm resistor cannot be located, just tie 5 22-MegaOhm resistors in series and use that combination for R2. In fact, R2 can be made even higher in value for added sensitivity.Potentiometer R1 is adjusted to a point where the piezo buzzer just begins to sound off and then carefully backed off to the point where the sound ceases. Experimenting with the setting of R1 will help in obtainin the best sensitivity adjustment for the circuit. Potentiometer R1 may be set to a point where the pick-up must be contacted to set of the alarm sounder. A relay or other current-hungry component can take the place of the piezo sounder to control almost any external circuit
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Published:2013/2/24 21:00:00 Author:muriel | Keyword: Relay-Controller
Relay-Controller. With zero-gate bias applied, Q1 acts lilke an open switch, but when a DC voltage greater than 5 volts is applied to the input of the circuit, Q1 turns on, completing the relay circuits and therby activating the relay coil.The input bias current required to turn on Q1 and operate the relay is less than 10 uA (microAmps), which is about 1/1,000,000 of the current required to bias the popular 2N3055 power transistor to operate the same relay.R1 protects whatever's driving the MOSFET and filters against very short transients--together with (mainly) the gatet capacitance. The MOSFET doesn't need protection (as long as it never sees more than 12V), as its gate is insulated. For faster switching, use 100 ohm rather than 100K.R2 is only needed if the circuit driving it doesn't return to ground - to make sure it turns off. For fast OFF times, use as low an impedance as the driving circuit can safely handle.If driven from a (weak) CMOS gate from the 4K series (e.g. a 4093) as a Vdd of 12V, you could use 1K (or even lower) for R1 - and leave out R2 as the gates output goes to ground anyway. (View)
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Published:2013/2/24 20:53:00 Author:muriel | Keyword: Latest Version , Direct Coupled, Power Follower
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Published:2013/2/24 20:53:00 Author:muriel | Keyword: Direct Coupled, Power Follower, MOSFET, Current Source
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Published:2013/2/24 20:52:00 Author:muriel | Keyword: Power Follower , Direct Coupling
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Published:2013/2/24 20:51:00 Author:muriel | Keyword: MOSFET POWER FOLLOWER
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Published:2013/2/24 20:44:00 Author:muriel | Keyword: Dual , High Side , 3.3V , Switch
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Published:2013/2/24 20:43:00 Author:muriel | Keyword: Quad , High Side, Switch , Laptop Computer, Power Load Management
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Published:2013/2/24 20:37:00 Author:muriel | Keyword: Surface Mount , MOSFET Switch
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Published:2013/2/24 20:35:00 Author:muriel | Keyword: Bidirectional Switch, “Back-to-Back” MOSFETs
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Published:2013/2/24 20:33:00 Author:muriel | Keyword: 12V VGS Clamps , VS > 9V
9V src= /uploadfile/ic-circuit/2013224203119446.jpg border=0> (View)
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Published:2013/2/24 20:30:00 Author:muriel | Keyword: High Efficiency , Dual High Side, Switch
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Published:2013/2/24 20:29:00 Author:muriel | Keyword: Matching MOSFET Drivers, MOSFETs
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