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LP2950-D.PDF
−3.3R2 NCV2951ACDR2 NCV2951CDR2 TA= −40° to +125°C SOIC−8 LP2951CD−3.0 LP2951CD−3.3 LP2951CD LP2951CD TA= −40° to +125°C Suffix D LP2951ACD−3.0 LP2951ACD−3.3 LP2951ACD LP2951ACD Micro8 LP2951CDM−3.0 LP2951CDM−3.3 LP2951CDM LP2951CDM TA= −40° to +125°C Suffix DM LP2951ACDM−3.0 LP2951ACDM−3.3 LP2951ACDM LP2951ACDM DIP−8 LP2951CN−3.0 LP2951CN−3.3 LP2951CN LP2951CN TA= −40° to +125°C Suffix N LP2951ACN−3.0 LP2951ACN
in „Wie lange hält ein LM1117-5.0 ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LP2950_LP2951.pdf
−3.3R2 NCV2951ACDR2 NCV2951CDR2 TA= −40° to +125°C SOIC−8 LP2951CD−3.0 LP2951CD−3.3 LP2951CD LP2951CD TA= −40° to +125°C Suffix D LP2951ACD−3.0 LP2951ACD−3.3 LP2951ACD LP2951ACD Micro8 LP2951CDM−3.0 LP2951CDM−3.3 LP2951CDM LP2951CDM TA= −40° to +125°C Suffix DM LP2951ACDM−3.0 LP2951ACDM−3.3 LP2951ACDM LP2951ACDM DIP−8 LP2951CN−3.0 LP2951CN−3.3 LP2951CN LP2951CN TA= −40° to +125°C Suffix N LP2951ACN−3.0 LP2951ACN
in „Warum funktioniert mein Brückengleichrichter nicht?“ · Fahrzeugelektronik ·
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LP2950.pdf
5.0 75 Units/Rail LP2950CDTX-5.0 2.5k Units Tape and Reel N (N-08E) −40< T < 125 LP2951ACN-3.0 LP2951ACN-3.0 40 Units/Rail N08E J LP2951CN-3.0 LP2951CN-3.0 40 Units/Rail LP2951ACN-3.3 LP2951ACN-3.3 40 Units/Rail LP2951CN-3.3 LP2951CN-3.3 40 Units/Rail LP2951ACN LP2951ACN 40 Units/Rail LP2951CN LP2951CN 40 Units/Rail M (M08A) −40< T J< 125 LP2951ACM-3.0 2951ACM30DD 95 Units/Rail M08A LP2951ACMX-3.0 2.5k Units Tape and Reel LP2951CM
in „Suche stromsparenden Spannungsregler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
mic2950.pdf
quiescent • Extremely low quiescent current • Low-dropout voltage current.Liketheirpredecessors,theLP2950andLP2951,the • Extremely tight load and line regulation quiescent current of the MIC2950/MIC2951 increases only slightly in dropout, thus prolonging battery life.The MIC2950/• Very low temperature coefficient MIC2951arepinforpincompatiblewiththeLP2950/LP2951, • Use as regulator or reference but offer lower dropout, lower quiescent current, reverse • Needs only 1.5µF for stability • Current and thermal limiting battery
in „Spannungsstabilisieren“ · Analoge Elektronik und Schaltungstechnik ·
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MIC2951.pdf
100mA), and very low • Extremely low quiescent current quiescent current. Like their predecessors, the LP2950 and LP2951, the quiescent current of the MIC2950/MIC2951 • Low-dropout voltage increases only slightly in dropout, thus pro-longing battery • Extremely tight load and line regulation life. The MIC2950/MIC2951 are pin for pin compatible with • Very low temperature coefficient • Use as regulator or reference the LP2950/LP2951, but offer lower dropout, lower quiescent current, reverse battery, and automotive
in „Highside-Switch gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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Bild
Nahaufnahme eines elektronischen Bauteils in einer Kunststoffhülle
LP 2951CN LP 2951CN LP 2951CN LP 2951CN COMP Fan 10 1327
in „[V] Konvolut allerlei siehe Bilder und Liste (10€)“ · Markt · · Fotos
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TS2950.pdf
low-ESR output capacitors Ordering Information Current and thermal limiting Direct replacement for LP2950 & LP2951 sockets Part No. Operating Temp. Package TS2951 VERSIONS ONLY TS2950CT-xx -40 ~ +85 C TO-92 Error Flag warns of output dropout TS2951CS-xx SOP-8 Logic-Controlled electronic shutdown o TS2950ACT-xx
in „LF33 oder TS2950 CT33“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Bauteile.pdf
Kondensator 10nF 305VAC 25 871-B32921C3103M 0,52 € MIC29310-5.0WU LDO 5V / 3A 1 998-MIC29310-5.0WU 3,57 € LP2951D LDO TI Adj. 100mA 4 595-LP2951D 0,97 € LP2951ACD-3.3G LDO ONSEMI 3,3V 100mA 2 863-LP2951ACD-3.3G LM2936HVMA-5.0 LDO LDO 5V 50mA 4 926-LM2936HVMA50NOPB 2,81 € TPS7A0533PDBZR LDO 5,5V 3,3V 200mA 3
in „[V] diverse Bauteile“ · Markt ·
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PDF
LM2660_DC_Inverter.pdf
is possible to regulate the output of the LM2660/LM2661 by use of a low dropout regulator (such as LP2951). The whole 2 converter is depicted in Figure 8. This converter can give a regulated output from −1.5V to −5.5V by choosing the proper resistor M ratio: L where, Vref 1.235V The error flag on pin 5 of the LP2951 goes low when the regulated output at pin 4 drops by about 5%. The LP2951 can be shutdown by taking pin 3 high. DS012911-27 FIGURE 8. Combining LM2660/LM2661 with LP2951 to Make a Negative Adjustable
in „Negative Betriebsspannung erzeugen“ · Analoge Elektronik und Schaltungstechnik ·
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lmc7660.pdf
LMC7660 and still maintain μPower performance. This is done by enclosing the LMC7660 in a loop with a LP2951. The circuit of Figure 21 will regulate V to −5V for I = 10 mA, out L and V in6V. For V > in, the output stays in regulation up to I = L5 mA. The error flag on pin 5 of the LP2951 sets low when the regulated output at pin 4 drops by about 5%. The LP2951 can be shutdown by taking pin 3 high; the LMC7660 can be shutdown by shorting pin 7 and pin 8. The LP2951 can be reconfigured to an adjustable type regulator, which means the LMC7660 can give a regulated
in „LM7660 mit 4,7µF statt 10µF geht das auch?“ · Mikrocontroller und Digitale Elektronik ·
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LM2661.pdf
is possible to regulate the output of the LM2660/LM2661 by use of a low dropout regulator (such as LP2951). The whole 2 converter is depicted in Figure 8. This converter can give a regulated output from −1.5V to −5.5V by choosing the proper resistor M ratio: L where, Vref 1.235V The error flag on pin 5 of the LP2951 goes low when the regulated output at pin 4 drops by about 5%. The LP2951 can be shutdown by taking pin 3 high. DS012911-27 FIGURE 8. Combining LM2660/LM2661 with LP2951 to Make a Negative Adjustable
in „pegelanpassung analog“ · Analoge Elektronik und Schaltungstechnik ·
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Schaltplan.pdf
C26 1uF,X7R C29 1uF,X7R 1uF,X7R 1uF,X7R 1uF,X7R Spannungsregler Wannenstecker 34 polig TX X1-1 +12V LP2951CMX-3.0 DVDD D 5 ERROR GND 4 D RX X1-2 C3 6 VTAB SHDN 3 SCLK X1-3 E 1 7 2 0,1u 4 T 3 T _ 6 _ 8 8 T 6 T 3 _ 4 _ S R FEEDB SENSE GND X1-13 I U I U I I I I I U I U I I I I F 8 1 CS8 X1-5 A IO A IO I A I A A I A IO A I_ A I_ INPUT OUT 1 2 1 IC1 GND CS6 X1-6 X1-4 3 4 L LP2951CMX-3.0 5 6 5 ERROR GND 4 AVDD CS4 X1-7 9 10 V D2 SUB-D 15 polig GND X1-14 11 12 1 7 +C1 C5 C2 6 VTAB SHDN 3 C4 13 14 D 2 CS2 X1-8 15 16 220u 1u 1u 7 FEEDB SENSE 2 0,1u +12V X1-15 17 18 CS1 X1-9 19
in „Meinung zu Layout, 8x AD-Wandler 2 Lagen EMV“ · Platinen ·
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DOGL128_Schaltplan.pdf
1 CS16 INPUT OUT RST 7 2 Interface C12 FEEDB SENSE 1u 6 3 4u7 VTAB SHDN C10 5 4 GND ERROR GND GND LP2951ACM-3.3 GND IC1G$1 3 EA DOGM132-5 V 1 u LCD Display (ST7565) + D C 1 32 VOUT VDD 35 G 2 u C 1 25 V4 VDD2 34 C 1 100n 24 V3 C 1 IC1G$2 C 1 CAP3P 31 C11 5 R2 ARGB (AGR) IC3E 23 V2 + 1 A1 R C1R) 18 SI
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untitled.pdf
OUT 1 S D1 L 18 V 7 FEEDB SENSE 2 2 P C21 6 VTAB SHDN 3 L 1 k 5 4 C16 1 µ R 8 ERROR GND 10 µ D D D LP2951ACM D D N N N N N A A A A A 4 IC2P C9 100 n Microphone NF amplifier with 200 Hz high-pass and active low-pass 4 kHz (TI FilterPro) AM "modulator" :-) MC33204 B 1 B N N G G A A k k k 2 , 7 0 1 , IC2B
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Bauteile.pdf
55 ADWandler MAX1282 40 56 ROM DS2401 64BitROM 40 57 Buchsenleisten 32Polig 126 58 Spannungsregler LP2951ACM 42 59 Mos-Fet STP12NM50N 500V 12A 350mΩ NKanal 37 60 LeiterplattenSteckverbinder FTMH-120-03-F-DV-ES 24 61 Dioden STTH8 600V 8A 47 62 Spannungsregler LT1121CS8 5 63 74xxxx 74HCT573D 92 64 65 66
in „Elektronik Bauteile Neuwertig , meist Leistungselektronik“ · Markt ·
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Platinfuch_IIa_BOM_20210217.pdf
ADR3430ARJZ Digi-Key ADR3430ARJZ-R7TR-ND 1.072 1.072 93 1 U3 LDO regulator Texas Instruments SOT23-5 LP3985im5-3.0 Digi-Key LP3985IM5-3.0/NOPBTR-ND 0.162 0.162 94 1 U4 Schmitt trigger Texas Instruments SOIC14 74LVC14ADR Digi-Key 296-1699-2-ND 0.079 0.079 95 2 U5, U16 Buck converter Microchip SOT23-6 MCP16301T-I
in „Platinfuchs IIa: Isolierter, bidirektionaler 45W DC/DC Wandler zum Laden/Entladen eines Liion-Akkus“ · Projekte & Code ·
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Bauteile.pdf
UJD1210K2 10A 1200V Bedrahtet 4 63 Bauteil Shunt Widerstand R068 68mΩ 1% 82 64 Bauteil Spannungsregler LP2951ACM 42 65 Bauteil Spannungsregler LT1121CS8 SMD 5 66 Bauteil Spannungsüberwachung MAX1232 69 PhönixCotakt PhönixCotakt 67 Bauteil Steckverbinder 3001952055 2,00€ 3001945433 Steckeru.Buchse 68 Bauteil
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Datenlogger_V1.pdf
$3Out 0 P u ERROR GND P 1 P P P P P$5_PIO(0) P$34_SPI-MISO S P I/O 0 P$6_PIO(1) P$33_SPI-CLK P$3In 0 LP2951N 1 0,1uF I/O 0 P$3In 0 GND a s P$7_PIO(2) P$32_SPI-CSB GND P P I/O 0 P$8_PIO(3) P$31_SPI-MOSI P$3In 0 0 I/O 0 P$3In 0 K S Pwr 0 P$9_PIO(4) P$30_UART-CTS P$2Pwr 0 0 P$10_GND P$29_GND 2 0 I/O 0 P$11PIO
in „Datenlogger mit PIC18F“ · Mikrocontroller und Digitale Elektronik ·
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fjrx85Doc.pdf
Reichelt SMD HC 93> IC5 Prozessor ATMega168-20 TQFP32 <Reichelt ATMEGA 168-20 TQ> IC6 Spannungsregler LP2951 SO8 <Reichelt LP 2951 ACM> MP1 Lötnagel <Reichelt RTM 1-100> P1 Trimmpoti 100k <Bürklin 64E7598> P2,4 Trimmpoti 1k <Bürklin 64E7586> P3 Trimmpoti 10k <Bürklin 64E7592> Q1 Quarz 5,120MHz HC49U-V <
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Platinfuchs_IIa_Schematic-and-Layout.pdf
Feedb. p D 25V 25V 25V 25V 25V R30 R31 S 3 SD V Tap 6 NC 240K 240K l i n Projekt: 4 GND Error 5 t o LP2951-5 for 8,0V: 180K/33K => Uout = 7,9714V P Platinfuchs IIa (Push-Pull Converter) for 7,5V: 240K/47K => Uout = 7,5414V *GND* *GND* *GND* *GND* *GND* *GND* *GND* *GND* for 7,0V: 220K/47K => Uout = 7,0159V
in „Platinfuchs IIa: Isolierter, bidirektionaler 45W DC/DC Wandler zum Laden/Entladen eines Liion-Akkus“ · Projekte & Code ·
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PDF
AN3910.pdf
with the correct density. Appendix: Suggested Register Settings for Initial Test Config1: Test: A2951A7 This register: enables the chip (default) disables the idle (default) sets default current programming sets non-default LO current programming sets default mixer current programming selects 13 MHz
in „Nmea gps modul billig“ · Mikrocontroller und Digitale Elektronik ·
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Data_Schottky___HF_Dioden.pdf
39.02.99 48 92 76 10MHz - 10GHz Noise source diodes pag A 32 Part list D1 NS-303 noise diode NS-303 U1 LP2951CMX in case SMD SO8 LP2951CMX C1 10 nF 0805 C2 1 µF 25 V Tantalum C3 100 nF 0805 C4 1 nF 0805 COG CCB-1n C5 2 x 1 nF 0805 COG in parallel, see description CCB-1n ATT1 6 dB chip attenuator dc-12 GHz
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SC17_GENERAL_TEMP_1996_3.pdf
obtain the as Pt100-resistors or thermocouplers. handbook, full pagewidth 3 5 6.5 V 1 8 VS= 8 to 24 V LP2951CM R17 7 2 430 k C1 4 6 R2 R8 R3 1 F 120 8.2 k 360 OP1 R18 C2 NE532 100 k 100 nF R14 R9 R5 15 k BC558B 22 k 3.3 k TR1 R10 27 k R13 R6 100 k P2 P1 68 k 1 k 470 V = 1 to 6 V OP2 O o R7 NE532 1006 (for
in „Polynom für PTC KTY84-110“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TEMP1996.PDF
obtain the as Pt100-resistors or thermocouplers. handbook, full pagewidth 3 5 6.5 V 1 8 VS= 8 to 24 V LP2951CM R17 7 2 430 k C1 4 6 R2 R8 R3 1 F 120 8.2 k 360 OP1 R18 C2 NE532 100 k 100 nF R14 R9 R5 15 k BC558B 22 k 3.3 k TR1 R10 27 k R13 R6 100 k P2 P1 68 k 1 k 470 V = 1 to 6 V OP2 O o R7 NE532 1006 (for
in „Temperatur Sensor KTY“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SC17_GENERAL_TEMP_1996_3.pdf
obtain the as Pt100-resistors or thermocouplers. handbook, full pagewidth 3 5 6.5 V 1 8 VS= 8 to 24 V LP2951CM R17 7 2 430 k C1 4 6 R2 R8 R3 1 F 120 8.2 k 360 OP1 R18 C2 NE532 100 k 100 nF R14 R9 R5 15 k BC558B 22 k 3.3 k TR1 R10 27 k R13 R6 100 k P2 P1 68 k 1 k 470 V = 1 to 6 V OP2 O o R7 NE532 1006 (for
in „Spezifikation Temperatursensor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SC17_GENERAL_TEMP_1996_3.pdf
obtain the as Pt100-resistors or thermocouplers. handbook, full pagewidth 3 5 6.5 V 1 8 VS= 8 to 24 V LP2951CM R17 7 2 430 k C1 4 6 R2 R8 R3 1 F 120 8.2 k 360 OP1 R18 C2 NE532 100 k 100 nF R14 R9 R5 15 k BC558B 22 k 3.3 k TR1 R10 27 k R13 R6 100 k P2 P1 68 k 1 k 470 V = 1 to 6 V OP2 O o R7 NE532 1006 (for
in „KTY81-110 ADC WERT -> Temperatur“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KTY-Philips.pdf
as Pt100-resistors or thermocouplers. handbook, full pagewidth 3 5 6.5 V 1 8 V = 8 to 24 V S R17 7 LP2951CM 2 430 k C1 4 6 R2 R8 R3 1 F C2 120 8.2 k 360 OP1 R18 100 nF NE532 100 k R14 R5 15 k BC558B R9 3.3 k 22 k TR1 R10 R6 27 k R13 P1 68 k 100 k P2 470 1 k V O= 1 to 6 V OP2 R16 (for 50 to 300 C) R7
in „Zwischenwerte vom KTY82-210 berechnen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SC17_GENERAL_TEMP_1996_3.pdf
obtain the as Pt100-resistors or thermocouplers. handbook, full pagewidth 3 5 6.5 V 1 8 VS= 8 to 24 V LP2951CM R17 7 2 430 k C1 4 6 R2 R8 R3 1 F 120 8.2 k 360 OP1 R18 C2 NE532 100 k 100 nF R14 R9 R5 15 k BC558B 22 k 3.3 k TR1 R10 27 k R13 R6 100 k P2 P1 68 k 1 k 470 V = 1 to 6 V OP2 O o R7 NE532 1006 (for
in „Atmega168 ADC - Schwankungen/Beeinflussungen vom Nachbarpin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AoE3_chapter9.pdf
series, with comparable dropout at currents to 7.5A), and you can get micropower versions (e.g., the LP2951, When using this type of regulator, choose your resistive the adjustable variant of the fixed 5V LP2950; both have divider values small enough to allow for a 5 μA change in IQ =75μA); see Figure 9.11
in „Labornetzgerät - Fragen zum Schaltplan“ · Analoge Elektronik und Schaltungstechnik ·
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Master-thesis_Wenzel-Maier_final-version.pdf
3V3* 3.3V auxiliary supply *GND* reference potential (ground) *VCC* output of low drop-out regulator LP2951-5 *VZK* potential of intermediate circuit − Important potential labels on the secondary side: 2VZK double potential of VZK 3V0 switchable 3.0V auxiliary supply 3V3 3.3V auxiliary supply aVCC auxiliary
in „Platinfuchs IIa: Isolierter, bidirektionaler 45W DC/DC Wandler zum Laden/Entladen eines Liion-Akkus“ · Projekte & Code ·
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catalog.pdf
- Linear [Desc]: LDO Regulator Pos 3.3V 0.2A 5-Pin SOT-23 T/R / IC REG LDO 3.3V 0.2A SOT23-5 MPN: LP2950CDT-5.0G [ID]: 000201 [Price]: 0.37 USD [QTY]: 20 [Category]: Voltage Regulators - Linear [Desc]: Linear Voltage Regulator, LDO, Low Power, 100 mA, V out : 5.0 V; 1.0% MPN: NCP7812TG [ID]: 000205
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PDF
catalog.pdf
0.2A 5-Pin SOT-23 T/R / IC REG LDO Page 87/105 Bauteileliste vom 12.08.2022 3.3V 0.2A SOT23-5 MPN: LP2950CDT-5.0G [ID]: 000201 [Price]: 0.37 USD [QTY]: 20 [Category]: Voltage Regulators - Linear [Desc]: Linear Voltage Regulator, LDO, Low Power, 100 mA, V out : 5.0 V; 1.0% MPN: NCP7812TG [ID]: 000205
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catalog-3.pdf
0.2A 5-Pin SOT-23 T/R / IC REG LDO Page 87/105 Bauteileliste vom 12.08.2022 3.3V 0.2A SOT23-5 MPN: LP2950CDT-5.0G [ID]: 000201 [Price]: 0.5099 USD [QTY]: 20 [Category]: Voltage Regulators - Linear [Desc]: Linear Voltage Regulator, LDO, Low Power, 100 mA, V out : 5.0 V; 1.0% MPN: NCP7812TG [ID]: 000205
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Datei
LiIon_1s_Lader.lst
V_MAX0 0147 0242 00225 subwf Vakku0,w 0148 1903 00226 btfsc STATUS,Z ;test Vakku0 = V_MAX0? 0149 2951 00227 GOTO chrg_wiper_decr ;Z=1 -> Vakku1/0 = V_MAX01/0 00228 ; 014A 1C03 00229 btfss STATUS,C ;Test C-Flag 014B 294F 00230 GOTO chrg_wiper_incr ;C=0 Vakku0 < V_MAX0 014C 3054 00231 movlw V_MAX0 ;C=1 Vakku0>_MAX0 014D 00C2 00232 movwf Vakku0 014E 2951 00233 GOTO chrg_wiper_decr 00234 ; 014F 00235 chrg_wiper_incr: 014F 0AC7 00236 incf WiperValue,f 0150 2958 00237 GOTO chrg_wiper_ctrl 0151 00238 chrg_wiper_decr: 0151 03C7 00239 decf WiperValue,f ;WiperValue
in „PIC16F1827-MCP4151 TMR0-Interrupt wird immer wieder nicht ausgefuehrt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
panasonic_tx-p50u20b_e_tx-pr50u20_chassis_gpf13de_sm.pdf
IC8001 C21 LIN3_LP IC8001 A16 AXO IC8001 A21 LIN3_RP C8079 R8015 50V 1k C7_VREFH1 IC8001 C7 VREFH1 IC8001 C22 LIN4_LP 12p D7_VREFL1 IC8001 D7 VREFL1 IC8001 A22 LIN4_RP LIN5_LP IC8001 C23 LIN5_LP IIC I/F TO 1/19 C8_VREFH2
in „Panasonic TX-P50U20E“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
version_1p3_assembler.lst
ENCOUNTERED 454: N 36 ZSURP BIT 54 ;38.6-ZERO SUPRESS 455: N 37 HMODE BIT 55 ;38.7-HEX MODE PRINT 456: B 97 LP BIT P1.7 ;SOFTWARE LINE PRINTER 457: B 96 DACK BIT P1.6 ;DMA ACK 458: ;***************************************************************************** 459: ; 460: ;PROMV BIT P1.5 ;TURN ON PROM VOLTAGE
in „Basic für 80C31“ · Mikrocontroller und Digitale Elektronik ·
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Datei
BASIC.LST
E5 PUSH HL ; Save address of number 3191 166D 2E 08 LD L,8 ; 8 bits to multiply by 3192 166F 1F MUL8LP: RRA ; Shift LSB right 3193 1670 67 LD H,A ; Save LSB 3194 1671 79 LD A,C ; Get MSB 3195 1672 D2 80 16 JP NC,NOMADD ; Bit was zero - Don't add 3196 1675 E5 PUSH HL ; Save LSB and count 3197 1676 2A 5E
in „Suche verschiedene BASIC Eprom's für Z80 Rechner.“ · Markt ·
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apple_macbook_pro_a1286_mlb_d1_051-9216_13.3_retina_a1425_820-3462_sch.pdf
08/17/2011 TABLE_TABLEOFCONTENTS_97EM 09/21/2011 26 USB HUB & MUX J5_AMD 71 LCD Backlight Driver (LP8545) J5_MLB_KEPLER TABLE_TABLEOFCONTENTS_I28M 07/29/2011 TABLE_TABLEOFCONTENTS100EM 09/13/2011 27 CPU Memory S3 Support J5_MLB 72 CPU Constraints J5_MLB TABLE_TABLEOFCONTENTS_I29M 07/14/2011 TABLE_TABLEOFCONTENTS101EM
in „Macbook Schaltpläne“ · Mikrocontroller und Digitale Elektronik ·
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nkat20-21.pdf
1.5A D2Pak 1.306 -.768 -.569 TS 317CP SMD einst. Spannungsregler 1-37V / 0.5A DPak -.692 -.407 -.302 LP 2951 SMD low-Drop (0.45V) pos. 1 - 30V / 100mA SO8 -.472 -.278 -.205 ICL 7660 ACBA Spannungswandler 1.5-12V SO8 2.450 1.441 1.067 ICL 7660 SCBA Spannungswandler 1.5-12V f. Boost. SO8 2.615 1.538 1.139