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CY7C1529KV18-200BZXI Cypress Semiconductor IC 8M X 9 DDR SRAM, 0.45 ns, PBGA165, 15 X 13 MM, 1.40 MM HEIGHT, LEAD FREE, MO-216, FBGA-165, Static RAM ri Buy
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CY7B995AIT Cypress Semiconductor IC 7B SERIES, PLL BASED CLOCK DRIVER, 8 TRUE OUTPUT(S), 0 INVERTED OUTPUT(S), PQFP44, 10 X 10 MM, 1 MM HEIGHT, PLASTIC, TQFP-44, Clock Driver ri Buy

transistor working principle

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Abstract: RF Power Innovations (310) 320-6160 AN3025 AN3025 Transistor Mounting and Soldering Brett Kelley , and solder RF power transistors into a circuit. 1. Solder pre-tin the transistor leads. 2. Mount the transistor. 3. Solder the transistor leads to the circuit trace. Solder Pre-Tinning , gold from the lead of the transistor prior to soldering the device onto the circuit board. Thus , , apply solder to the transistor lead with the soldering iron, and then remove the solder with the wick. ... Original
datasheet

3 pages,
33.92 Kb

SN63 SN62 rf transistor 320 METCAL MX-500 circuit gold embrittlement Cold solder joint tinning weller transistor working principle AN3025 AN3025 abstract
datasheet frame
Abstract: Application Note AN3025 AN3025 Transistor Mounting and Soldering Rev. 3 Introduction There are , the transistor leads Mount the transistor Solder the transistor leads to the circuit trace Solder , remove the gold from the lead of the transistor prior to soldering the device onto the circuit board. , First, apply solder to the transistor lead with the soldering iron, and then remove the solder with the , process. The machines generally work on the same principle of removing the gold-laden solder and replacing ... Original
datasheet

2 pages,
25.42 Kb

SN63 SN62 metcal GC Electronics 108109 free transistor tinning METCAL MX-500 circuit transistor working principle AN3025 AN3025 abstract
datasheet frame
Abstract: a transistor's working voltage. When considering the application, the selection should be made to , transistor, temperature, diode current, and device geometry. If all these factors remain constant, the principle cause of CTR degradation is the degradation of the input LED. As mentioned earlier, Vishay has , to fit most applications, including versions without access to the base of the transistor to reduce noise transmission. Darlington transistor outputs offer high gain with reduced input current ... Original
datasheet

3 pages,
43.41 Kb

SCR firing circuit SMD OPTOCOUPLER for SCR Dual optocoupler hi speed smd AG SMD TRANSISTOR transistor working principle Optocoupler with triac antiparallel scr datasheet abstract
datasheet frame
Abstract: most applications, including versions without access to the base of the transistor to reduce noise transmission. Darlington transistor outputs offer high gain with reduced input current requirements, but typically trade off speed. Logic optocouplers provide speed but trade off working voltage range. Logic , optocouplers, especially the transistor, the slow change over several days in the electrical parameters when , this way, a similar effect as takes place in a MOS transistor (inversion at the surface) is caused by ... Original
datasheet

3 pages,
35.06 Kb

Optocoupler 16 Pin quad optocoupler triac led monitor internal working Optocouplers double channel optocoupler DIP single scr firing board double channel optocoupler optocoupler drive relay LATEST working circuit using triac opto-coupler scr vishay transistor Optocoupler with triac datasheet abstract
datasheet frame
Abstract: transistor. The principle of the calculation is the same as the calculation of turn-off losses in the diode. , TURBOSWITCH"B" is a suitable family for PFC boost converters working in discontinuous mode, and why the TURBOSWITCH"A" should be used for PFC's working in continuous mode. In this kind of application, the main , program has been developed in order to calculate the losses in the diode and in the transistor in a PFC working in continuous mode at a constant frequency. This application note describes how the calculations ... Original
datasheet

13 pages,
124.5 Kb

transistor working principle transistor Ip transistor 600v 500a STTA2006P diode 400v 2A ultrafast AN603 600V 20A 50KHz MOSFET STTA806D AN603 abstract
datasheet frame
Abstract: transistor for AIC1638 AIC1638, or push-pull driver output for AIC1639 AIC1639. Features of AIC1638/1639 AIC1638/1639 : it provides low , one can guarantee the output voltage up to the required working level even the input voltage is , elements and minimum space (see Figure 1). Figure 1 AIC1638/1639 AIC1638/1639 Typical application Principle The following simple diagram is used to illustrate the operating principle of AIC1638/1639 AIC1638/1639. March 2000 1 , operation principle (assume that VF and VCE are ignored): 1. As Q is turned on, a current i1 passes ... Original
datasheet

6 pages,
163.89 Kb

transistor working principle inductor 33mH AIC1638 inductor 100mH AIC1639 100mh inductor design AN00-002 AIC1638/1639 AN00-002 abstract
datasheet frame
Abstract: voltage, singleswitching transistor for AIC1638 AIC1638, or push-pull driver output for AIC1639 AIC1639. Features of , gate threshold voltage. The latter one can guarantee the output voltage up to the required working , Typical application Principle The following simple diagram is used to illustrate the operating principle of AIC1638/1639 AIC1638/1639. ANALOG INTEGRATIONS CORPORATION www.analog.com.tw 4F, 9 Industry E. 9th , principle (assume that VF and VCE are ignored): 1. As Q is turned on, a current i1 passes through ... Original
datasheet

6 pages,
110.42 Kb

transistor 4F CD54 AIC1639 AIC1638 2SD1803 AN00-SR01EN AN00-SR01EN abstract
datasheet frame
Abstract: transistor for AIC1638 AIC1638, or push-pull driver output for AIC1639 AIC1639. Features of AIC1638/1639 AIC1638/1639 : it provides low , one can guarantee the output voltage up to the required working level even the input voltage is , elements and minimum space (see Figure 1). Figure 1 AIC1638/1639 AIC1638/1639 Typical Application Principle The following simple diagram is used to illustrate the operating principle of AIC1638/1639 AIC1638/1639. March 2000 1 , operation principle (assume that VF and VCE are ignored): 1. As Q is turned on, a current i1 passes ... Original
datasheet

6 pages,
94.67 Kb

walkman amplifier CD54 AN009 AIC1639 AIC1638 2SD1803 1mh inductor data sheet AIC1638/1639 AN009 abstract
datasheet frame
Abstract: converters working in d is c o nt in u o u s mo de , an d wh y t h e TURBOSWITCH"A" should be used for PFC's working in continuous mode. In this kind of application, the main concern for the designer is , been developed in order to calculate the losses in the diode and in the transistor in a PFC wo rk in , voltage VM : current in the coil IL : current in the diode ID IT : current in the transistor IP , TURBOSWITCH IN A PFC BOOST CONVERTER WORKING IN DISCONTINUOUS MODE The discontinuous mode is used for power ... Original
datasheet

7 pages,
76.55 Kb

transistor 600v 500a transistor 2N2 STTA2006P transistor working principle STTA806D AN-603 diode 500A transistor 415 datasheet abstract
datasheet frame
Abstract: Collector to emitter breakdown voltage (BVCE0) can be thought of as a transistor's working voltage. When , to reduce noise transmission. Darlington transistor out puts offer high gain with reduced input , working voltage range. Logic couplers are normally only used in data transmission applications. Sili con , types of products. In optocouplers, especially the transistor, the slow change over several days in the , similar effect as takes place in a MOS transistor (inversion at the surface) is caused by the strong ... OCR Scan
datasheet

3 pages,
235.75 Kb

transistor working principle infineon mtbf mtbf infineon optocoupler RC snubber optocoupler triac infineon antiparallel scr phototransistor MTBF double channel optocoupler optocoupler MTBF dual channel opto triac Infineon moisture sensitive package datasheet abstract
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developed in order to calculate the losses in the diode and in the transistor in a PFC working in continuous in the transistor The principle of the calculation is the same as the calculation of turn-off losses family for PFC boost converters working in discontinuous mode, and why the TURBOSWITCH"A" should be used for PFC's working in continuous mode. In this kind of application, the main concern for the designer transistor I P : peak current in the coil d D : duty cycle of the diode Fc : switching frequency Vo : output
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/3606-v1.htm
STMicroelectronics 02/04/1999 13.91 Kb HTM 3606-v1.htm
developed in order to calculate the losses in the diode and in the transistor in a PFC working in continuous in the transistor The principle of the calculation is the same as the calculation of turn-off losses family for PFC boost converters working in discontinuous mode, and why the TURBOSWITCH"A" should be used for PFC's working in continuous mode. In this kind of application, the main concern for the designer transistor I P : peak current in the coil d D : duty cycle of the diode Fc : switching frequency Vo : output
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/3606-v2.htm
STMicroelectronics 14/06/1999 13.87 Kb HTM 3606-v2.htm
in the diode and in the transistor in a PFC working in continuous mode at a constant frequency. : rds ON of the transistor 4.2.2.Total turn-on losses in the transistor The principle of the This paper explains why TURBOSWITCH"B" is a suitable family for PFC boost converters working in discontinuous mode, and why the TURBOSWITCH"A" should be used for PFC's working in continuous mode. In : current in the transistor I P : peak current in the coil d D : duty cycle of the diode Fc
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/3606-v3.htm
STMicroelectronics 25/05/2000 15.74 Kb HTM 3606-v3.htm
4.2.2.Total turn-on losses in the transistor The principle of the calculation is the same as the calculation family for PFC boost converters working in discontinuous mode, and why the TURBOSWITCH"A" should be used for PFC's working in continuous mode. In this kind of application, the main concern for the has been developed in order to calculate the losses in the diode and in the transistor in a PFC working in continuous mode at a constant frequency. This application note describes how the calculations
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/3606.htm
STMicroelectronics 20/10/2000 17.01 Kb HTM 3606.htm
No abstract text available
www.datasheetarchive.com/download/5356735-17829ZD/apptk_2_0.zip (App_Note_13.pdf)
Epcos 21/10/2002 6520.76 Kb ZIP apptk_2_0.zip
and takes the transistor as an example, because it uses the MOS technology. Actually, this technology PhotoMasking This step shapes the different components. The principle is quite simple (see drawing on next after dep- osition of the layer that has to be etched. For instance, the poly gates of a transistor are with the non- working die is closely examined by failure analysis engineers to determine where the destination. 11/14 BASIC IC ELEMENT: THE TRANSISTOR 2 BASIC IC ELEMENT: THE TRANSISTOR 2.1 MOS TECHNOLOGY We
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/5038-v5.htm
STMicroelectronics 11/01/2000 21.52 Kb HTM 5038-v5.htm
and takes the transistor as an example, because it uses the MOS technology. Actually, this technology different components. The principle is quite simple (see drawing on next page). Resin is put down on the instance, the poly gates of a transistor are obtained by etching the poly layer. A second example are the record of what went wrong with the non- working die is closely examined by failure analysis engineers to will be packed and shipped to their final destination. 11/14 BASIC IC ELEMENT: THE TRANSISTOR 2
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/5038-v1.htm
STMicroelectronics 20/10/2000 21.95 Kb HTM 5038-v1.htm
and takes the transistor as an example, because it uses the MOS technology. Actually, this technology PhotoMasking This step shapes the different components. The principle is quite simple (see drawing on next after dep- osition of the layer that has to be etched. For instance, the poly gates of a transistor are with the non- working die is closely examined by failure analysis engineers to determine where the destination. 11/14 BASIC IC ELEMENT: THE TRANSISTOR 2 BASIC IC ELEMENT: THE TRANSISTOR 2.1 MOS TECHNOLOGY We
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/an/5038.htm
STMicroelectronics 17/09/1999 21.52 Kb HTM 5038.htm
describes the various "front-end" and "back-end" manufacturing processes and takes the transistor as an The principle is quite simple (see drawing on next page). Resin is put down on the wafer which is instance, the poly gates of a transistor are obtained by etching the poly layer. A second example are the wafer is cut. A record of what went wrong with the non- working die is closely examined by failure packed and shipped to their final destination. 11/14 BASIC IC ELEMENT: THE TRANSISTOR 2 BASIC IC ELEMENT
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/5038.htm
STMicroelectronics 02/04/1999 19.67 Kb HTM 5038.htm
describes the various "front-end" and "back-end" manufacturing processes and takes the transistor as an The principle is quite simple (see drawing on next page). Resin is put down on the wafer which is instance, the poly gates of a transistor are obtained by etching the poly layer. A second example are the wafer is cut. A record of what went wrong with the non- working die is closely examined by failure packed and shipped to their final destination. 11/14 BASIC IC ELEMENT: THE TRANSISTOR 2 BASIC IC ELEMENT
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/5038-v2.htm
STMicroelectronics 14/06/1999 19.63 Kb HTM 5038-v2.htm