NEW DATABASE - 350 MILLION DATASHEETS FROM 8500 MANUFACTURERS
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| Abstract: CIRCUIT IDEAS FOR DESIGNERS Category: FET Schematic no. fet_11115.0 Ultra Low Voltage Nanopower Inverter Circuit Description This is an ultra low-voltage nanopower inverter circuit using , VOL= 9 mV and VOH = 183 mV. Another configuration example of this inverter circuit uses an ALD110904 ALD110904 , inverter circuit consumes an average power dissipation P = 0.05 x 0.4 = 0.02nW. For multiple stage applications, a 200mV supply is recommended. A 4-stage 200mV powered inverter circuit has been demonstrated to ... | Original |
1 pages, |
ALD110802 mosfet power inverter mosfet INVERTER applications ALD110904 ALD110804 inverter circuit schematics ALD110800 power MOSFET INVERTER Ultra Low voltage mosfet INVERTER CIRCUIT voltage inverter schematic inverter schematic Power INVERTER schematic circuit datasheet abstract |
| Abstract: CIRCUIT IDEAS FOR DESIGNERS Category: Special Circuits Schematic no. SPCKT_10002.0 0.2V Supply Voltage Nanopower Inverter Circuit Description This is an ultra low-voltage basic inverter circuit using zero threshold (ALD110800 ALD110800) or nanopower (ALD110802 ALD110802 or ALD110804 ALD110804) EPAD MOSFETs. The basic , voltage VOL= 9 mV and the output high voltage VOH = 183 mV. Another example of this inverter circuit uses , circuit has been demonstrated with sufficient noise margins. Switching time of the inverter is a function ... | Original |
1 pages, |
ALD110800 ALD110802 power supply and mosfet ALD110804 mosfet power inverter ALD110904 inverter circuit inverter circuit schematics power MOSFET INVERTER voltage inverter schematic schematic power inverter mosfet INVERTER applications inverter schematic datasheet abstract |
| Abstract: Capacitors > Monolithic Ceramic Medium Voltage Data Sheet Chip Monolithic Ceramic Capacitors Only for LCD Backlight Inverter Circuit GRM42A5C3F270JW01L GRM42A5C3F270JW01L (1808, C0G, 27pF, DC3150V DC3150V) RoHS regulation conformity parts g e T e L W (in mm) I Dimensions I Packaging Length L , Specifications Please refer to 'Only for LCD Backlight Inverter Circuit Specifications and Test Methods' PDF , CFL inverter circuit (frequency band: 15k-100kHz) for your design. o Solderability of Tin ... | Original |
1 pages, |
cfl inverter circuit GRM42A5C3F270JW01L DC3150V GRM42A5C3F270JW01L abstract |
| Abstract: Capacitors > Monolithic Ceramic Medium Voltage Data Sheet Chip Monolithic Ceramic Capacitors Only for LCD Backlight Inverter Circuit GRM42A5C3F220JW01L GRM42A5C3F220JW01L (1808, C0G, 22pF, DC3150V DC3150V) RoHS regulation conformity parts g e T e L W (in mm) I Dimensions I Packaging Length L , Specifications Please refer to 'Only for LCD Backlight Inverter Circuit Specifications and Test Methods' PDF , CFL inverter circuit (frequency band: 15k-100kHz) for your design. o Solderability of Tin ... | Original |
1 pages, |
GRM42A5C3F220JW01L cfl inverter circuit DC3150V GRM42A5C3F220JW01L abstract |
| Abstract: Capacitors > Monolithic Ceramic Medium Voltage Data Sheet Chip Monolithic Ceramic Capacitors Only for LCD Backlight Inverter Circuit GRM42A5C3F150JW01L GRM42A5C3F150JW01L (1808, C0G, 15pF, DC3150V DC3150V) RoHS regulation conformity parts g e T e L W (in mm) I Dimensions I Packaging Length L , Specifications Please refer to 'Only for LCD Backlight Inverter Circuit Specifications and Test Methods' PDF , CFL inverter circuit (frequency band: 15k-100kHz) for your design. o Solderability of Tin ... | Original |
1 pages, |
GRM42A5C3F150JW01L DC3150V GRM42A5C3F150JW01L abstract |
| Abstract: Capacitors > Monolithic Ceramic Medium Voltage Data Sheet Chip Monolithic Ceramic Capacitors Only for LCD Backlight Inverter Circuit GRM42A5C3F100JW01L GRM42A5C3F100JW01L (1808, C0G, 10pF, DC3150V DC3150V) RoHS regulation conformity parts g e T e L W (in mm) I Dimensions I Packaging Length L , Specifications Please refer to 'Only for LCD Backlight Inverter Circuit Specifications and Test Methods' PDF , CFL inverter circuit (frequency band: 15k-100kHz) for your design. o Solderability of Tin ... | Original |
1 pages, |
Inverter soldering GRM42A5C3F100JW01L DC3150V GRM42A5C3F100JW01L abstract |
| Abstract: Capacitors > Monolithic Ceramic Medium Voltage Data Sheet Chip Monolithic Ceramic Capacitors Only for LCD Backlight Inverter Circuit GRM42A5C3F470JW01L GRM42A5C3F470JW01L (1808, C0G, 47pF, DC3150V DC3150V) RoHS regulation conformity parts g e T e L W (in mm) I Dimensions I Packaging Length L , Specifications Please refer to 'Only for LCD Backlight Inverter Circuit Specifications and Test Methods' PDF , CFL inverter circuit (frequency band: 15k-100kHz) for your design. o Solderability of Tin ... | Original |
1 pages, |
GRM42A5C3F470JW01L DC3150V GRM42A5C3F470JW01L abstract |
| Abstract: Capacitors > Monolithic Ceramic Medium Voltage Data Sheet Chip Monolithic Ceramic Capacitors Only for LCD Backlight Inverter Circuit GRM42A5C3F180JW01L GRM42A5C3F180JW01L (1808, C0G, 18pF, DC3150V DC3150V) RoHS regulation , the CFL inverter circuit (frequency band: 15k-100kHz) for your design. o Solderability of Tin , Embossed Tape Minimum Quantity 3000 I Specifications Please refer to 'Only for LCD Backlight Inverter Circuit Specifications and Test Methods' PDF file. I Rated Value Murata PN Code Temperature Char. ... | Original |
1 pages, |
GRM42A5C3F180JW01L DC3150V GRM42A5C3F180JW01L abstract |
| Abstract: Capacitors > Monolithic Ceramic Medium Voltage Data Sheet Chip Monolithic Ceramic Capacitors Only for LCD Backlight Inverter Circuit GRM42A5C3F050DW01L GRM42A5C3F050DW01L (1808, C0G, 5.0pF, DC3150V DC3150V) RoHS regulation conformity parts e g e L W (in mm) I Dimensions Length L Width W Thickness T Electrode , Backlight Inverter Circuit Specifications and Test Methods' PDF file. I Rated Value Murata PN Code , resonance usage in the CFL inverter circuit (frequency band: 15k-100kHz) for your design. o ... | Original |
1 pages, |
GRM42A5C3F050DW01L DC3150V GRM42A5C3F050DW01L abstract |
| Abstract: Capacitors > Monolithic Ceramic Medium Voltage Data Sheet Chip Monolithic Ceramic Capacitors Only for LCD Backlight Inverter Circuit GRM42A5C3F390JW01L GRM42A5C3F390JW01L (1808, C0G, 39pF, DC3150V DC3150V) RoHS regulation , the CFL inverter circuit (frequency band: 15k-100kHz) for your design. o Solderability of Tin , Embossed Tape Minimum Quantity 3000 I Specifications Please refer to 'Only for LCD Backlight Inverter Circuit Specifications and Test Methods' PDF file. I Rated Value Murata PN Code Temperature Char. ... | Original |
1 pages, |
cfl ballast GRM42A5C3F390JW01L DC3150V GRM42A5C3F390JW01L abstract |
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| generates a constant 12V/250mA (max load) output with a 10V~16V variable input. The inverter circuit is de will return the circuit to normal operation. INVERTER CIRCUIT (RIGHT SIDE OF BOARD) 1. Before turning the out- put. The DC397 DC397 DC397 DC397 inverter circuit is programmed to generate -12V from a +12V input. The /DC Converter INVERTER CIRCUIT: 12V to -12V/300mA Figure 3. Proper Measurement Equipment Setup for Inverter QUICK START GUIDE FOR DEMONSTRATION CIRCUIT 397 2.2MHZ, SOT-23 DC/DC CONVERTER LT1930A LT1930A LT1930A LT1930A and LT1931 LT1931 LT1931 LT1931 www.datasheetarchive.com/download/16835046-365124ZC/397a.zip (dc397aqs01.pdf) |
Linear | 22/09/2009 | 1988.68 Kb | ZIP | 397a.zip |
| transistors Simplification of circuit design Reduces number of components and board space. Especially suitable for space reduction in interface and driver circuits Inverter circuit configurations www.datasheetarchive.com/files/philips/pip/pumb11_1-v1.html |
Philips | 14/02/2002 | 5.94 Kb | HTML | pumb11_1-v1.html |
| complicated inverter circuit can easily generate the 5V or ±5V rails. Moreover, the inverter's single inverter circuit substitutes a transformer with two matched windings for the usual inductor (Figure 1a discharged. For 5V regulators, this above-and-below variation complicates the circuit design. Flyback-transformer circuits can convert 6V-to-4V inputs to a regulated 5V, as can a step-up (boost) converter followed by a linear regulator. (For ±5V requirements, you can choose either circuit plus a charge www.datasheetarchive.com/files/maxim/0004/appno026.htm |
Maxim | 04/04/2001 | 7.88 Kb | HTM | appno026.htm |
| a constant 12V/250mA (max load) output with a 10V~16V variable input. The inverter circuit is . Inverter Circuit (Right Side of Board) Before turning on the power, connect a 12V, 1A bench supply to the input power supply and observe the output. The DC397 DC397 DC397 DC397 inverter circuit is programmed to generate -12V \* MERGEFORMAT \* MERGEFORMAT #20;#1; Proper Measurement Equipment Setup for Inverter Circuit #19;INCLUDEPICTURE Quick start Guide for Demonstration Circuit 397#21; 2.2MHz, SOT-23 DC/DC Converter#21; LT1930A LT1930A LT1930A LT1930A and LT1931 LT1931 LT1931 LT1931 www.datasheetarchive.com/download/16835046-365124ZC/397a.zip (dc397aqs01.doc) |
Linear | 22/09/2009 | 1988.68 Kb | ZIP | 397a.zip |
| DC/DC converters for different application needs. The Boost Circuit is designed to convert 5V input to 12V output at 300mA maximum load. The SEPIC Circuit generates constant 12V/300mA output with 10V~16V variable input. The Inverter Circuit is designed for applications requiring negative 12V/350mA from a positive 12V input. All three circuits are designed to demonstrate the advantages of the 1.2MHz Technology product. No circuit patent licenses are implied. Linear Technology reserves the right to change www.datasheetarchive.com/files/linear/c1003/c1263/p24132/p24132-printfriendly.html |
Linear | 09/02/2007 | 4.07 Kb | HTML | p24132-printfriendly.html |
| and driver circuits Inverter circuit configurations without use of external resistor PDTA114TK PDTA114TK PDTA114TK PDTA114TK_3 PDTA114TK PDTA114TK PDTA114TK PDTA114TK PNP resistor-equipped transistor PNP resistor-equipped transistor in a SC-59 SC-59 SC-59 SC-59 plastic package. NPN complement: PDTC114TK PDTC114TK PDTC114TK PDTC114TK. Built-in bias resistor R1 (typ. 10 k W ) Simplification of circuit design Reduces number of www.datasheetarchive.com/files/philips/pip/pdta114tk_3-v1.html |
Philips | 14/02/2002 | 7.77 Kb | HTML | pdta114tk_3-v1.html |
| PDTC143TT PDTC143TT PDTC143TT PDTC143TT_2 Product information page PDTC143TT PDTC143TT PDTC143TT PDTC143TT; NPN resistor-equipped transistor General info NPN resistor-equipped transistor in a SOT23 plastic package. Features Built-in bias resistor R1 (typ. 4.7 k W ) Simplification of circuit design Reduces number of components and board space. Applications Especially suitable for space reduction in interface and driver circuits Inverter circuit configurations www.datasheetarchive.com/files/philips/pip/pdtc143tt_2.html |
Philips | 23/04/2003 | 3.54 Kb | HTML | pdtc143tt_2.html |
| reduction in interface and driver circuits Inverter circuit configuration without use of external PDTA124EEF PDTA124EEF PDTA124EEF PDTA124EEF_1 PDTA124EEF PDTA124EEF PDTA124EEF PDTA124EEF PNP resistor-equipped transistor PNP resistor equipped transistor in an SC-89 SC-89 SC-89 SC-89 (SOT490) plastic package. Built-in bias resistors R1 and R2 (typical 22 kOhm each) Simplification of circuit design Reduces www.datasheetarchive.com/files/philips/pip/pdta124eef_1-v1.html |
Philips | 14/02/2002 | 7.55 Kb | HTML | pdta124eef_1-v1.html |
| reduction in interface and driver circuits Inverter circuit configurations without use of external Built-in bias resistors R1 and R2 (typ. 10 k W each) Simplification of circuit design Reduces www.datasheetarchive.com/files/philips/pip/pdta114eef_2-v1.html |
Philips | 14/02/2002 | 7.94 Kb | HTML | pdta114eef_2-v1.html |
| each) Simplification of circuit design Reduces number of components and board space. Applications Especially suitable for space reduction in interface and driver circuits Inverter circuit configurations without use of external resistors. Datasheet Typenumber www.datasheetarchive.com/files/philips/pip/pdtc143ek_2.html |
Philips | 23/04/2003 | 3.51 Kb | HTML | pdtc143ek_2.html |