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DC-DC.pdf
www.aimtec.caa Canada MODELS Single output Models Output current max. Input voltage Output voltage L L +Vo Vin AM1P-0505S-N 5VDC 200mA C DC DC C AM1P-0509S-N 9VDC 110mA GND 0V 5V±10% <Figure 1> AM1P-0512S-N 12VDC 83mA +Vout AM1P-0515S-N 15VDC 67mA Vin REG DC DC AM1P-1205S-N 5VDC 200mA GND 0V AM1P-1209S-N
in „AVR Eingangspin galvanisch trennen von externen Geräten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR042.pdf
determined empirically or it can be estimated by Equation 5-1. Equation 5-1. C ⋅C ' C ' = C +C C = L1 L2 , L1 L1 L1S L C +C ' ' L1 L2 C L2 = C L2 +C L2S Where C L1and C L2 refer to the external capacitors seen in Figure 5-1 and C L1S and C L2Sare stray capacitances at the XTAL pins of the AVR. Assuming symmetric layout, so that C L1 = C L2 = C and C L1S = C L2S = C ,Sthen the external capacitors can be determined by Equation 5-2 (C cSn be estimated to be 5-10pF): Equation 5-2. C = 2⋅C −C L S 8 AVR042 2521F-AVR-04/08 AVR042 5.3
in „Widerstände an MISO und MOSI?“ · Mikrocontroller und Digitale Elektronik ·
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avr446.pdf
starts is shown. Figure 3-4. Speed ramp limited by desired speed value ω decel_val speed el cc de a e i l _ l x e t a c step m a • max_s_lim is the number of steps needed to accelerate to the desired speed. speed 2 max_s_lim = n = 2α ⋅accel⋅100 • accel_lim is the number of steps before deceleration starts
in „Schrittmotor Softstart“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR042.pdf
determined empirically or it can be estimated by Equation 5-1. Equation 5-1. C ⋅C ' C ' = C +C C = L1 L2 , L1 L1 L1S L C +C ' ' L1 L2 C L2 = C L2 +C L2S Where C L1and C L2 refer to the external capacitors seen in Figure 5-1 and C L1S and C L2Sare stray capacitances at the XTAL pins of the AVR. Assuming symmetric layout, so that C L1 = C L2 = C and C L1S = C L2S = C ,Sthen the external capacitors can be determined by Equation 5-2 (C cSn be estimated to be 5-10pF): Equation 5-2. C = 2⋅C −C L S 8 AVR042 2521F-AVR-04/08 AVR042 5.3
in „Beschaltung MEGA128 mit ISP und UARD0“ · Mikrocontroller und Digitale Elektronik ·
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Thread
Audioverstärker wie TDA7240, nur mit 5-6V?
Ladungspumpe.. fuer 5-10W... so. so. Nein. Ein einfacher Kandidat, wenn es einfach toenen muss mit 5v, der L2722. Macht 1 Watt.
Mikrocontroller und Digitale Elektronik ·krach · ·5 Antworten
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PDF
122855-da-01-de-OSZILLOSKOP_TDS2004B.pdf
Kanal, 2 GS/s, Farb-DSO. Benutzerhandbuch-Versionen P6022 – 6 A, 120 MHz-Wechselstromtastkopf. Option L0 – englisches Benutzerhandbuch. TDS2024B:200 MHz, 4-Kanal, 2 GS/s, Farb-DSO. A621 – 2000 A, 5 bis 50 kHz- Option L1 – französisches Benutzerhandbuch. Wechselstromtastkopf. Standardzubehör Option L2 –
in „Digitalspeicher-Oszilloskop“ · Mikrocontroller und Digitale Elektronik ·
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Tiny15L.pdf
Peripheral Timer/Counter1. The nominal frequency of this peripheral clock, PCK, is 25.6 MHz. 4 ATtiny15L 1187DS–12/01 ATtiny15L ATtiny15L Register Summary Address Name Bit 7 Bit 6 Bit 5 Bit 4 Bit 3 Bit 2 Bit 1 Bit 0 Page $3F SREG I T H S V N Z C page 11 $3E Reserved $3C Reserved $3B GIMSK - INT0 PCIE -
in „Frequenzschalter“ · Mikrocontroller und Digitale Elektronik ·
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u2010b.pdf
4766B–INDCO–10/05 Figure 1-2. Block Diagram with External Circuit F e A B C C1 µ o 2 M S 0 D 9 1 G B µ 1 l e A a B o t C a 0 c e C7 1 1 p a αm u t Im 1 e g 8 S u o A s 2 f l D V S v U e v 3 E % l R F D L 7 a d o µ m o c g 2 . a a e t g r t r 7 C 4 l % g o r l i o t 1 g 0 r p o o S s d l H 1 P V m o h e e
in „U2010B Softstart Funktion“ · Mikrocontroller und Digitale Elektronik ·
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at89c51ed2.pdf
PCA Compare Capture Module 4 H CCAP4H7 CCAP4H6 CCAP4H5 CCAP4H4 CCAP4H3 CCAP4H2 CCAP4H1 CCAP4H0 CCAP0L EAh PCA Compare Capture Module 0 L CCAPCCAP0L6 CCAP0L5 CCAP0L4 CCAP0L3 CCAP0L2 CCAP0L1 CCAP0L0 CCAP1L EBh PCA Compare Capture Module 1 L CCAPCCAP1L6 CCAP1L5 CCAP1L4 CCAP1L3 CCAP1L2 CCAP1L1 CCAP1L0 CCAP2L ECh PCA Compare Capture Module 2 L CCAPCCAP2L6 CCAP2L5 CCAP2L4 CCAP2L3 CCAP2L2 CCAP2L1 CCAP2L0 CCAP3L EDh PCA Compare Capture Module 3 L CCAPCCAP3L6 CCAP3L5 CCAP3L4 CCAP3L3 CCAP3L2 CCAP3L1 CCAP3L0 CCAP4L EEh PCA Compare Capture Module
in „SCL Takt generieren“ · Mikrocontroller und Digitale Elektronik ·
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at89c51ed2.pdf
PCA Compare Capture Module 4 H CCAP4H7 CCAP4H6 CCAP4H5 CCAP4H4 CCAP4H3 CCAP4H2 CCAP4H1 CCAP4H0 CCAP0L EAh PCA Compare Capture Module 0 L CCAPCCAP0L6 CCAP0L5 CCAP0L4 CCAP0L3 CCAP0L2 CCAP0L1 CCAP0L0 CCAP1L EBh PCA Compare Capture Module 1 L CCAPCCAP1L6 CCAP1L5 CCAP1L4 CCAP1L3 CCAP1L2 CCAP1L1 CCAP1L0 CCAP2L ECh PCA Compare Capture Module 2 L CCAPCCAP2L6 CCAP2L5 CCAP2L4 CCAP2L3 CCAP2L2 CCAP2L1 CCAP2L0 CCAP3L EDh PCA Compare Capture Module 3 L CCAPCCAP3L6 CCAP3L5 CCAP3L4 CCAP3L3 CCAP3L2 CCAP3L1 CCAP3L0 CCAP4L EEh PCA Compare Capture Module
in „SCL Takt generieren“ · Mikrocontroller und Digitale Elektronik ·
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at24c1024.pdf
REF Bottom View L 0.62 0.67 0.72 1 L1 0.92 0.97 1.02 1 Note: 1. Metal Pad Dimensions. 11/14/01 TITLE DRAWING NO. REV. 2325 Orchard Parkway 8CN3, 8-lead, (6 x 5 x 1.04 mm Body), Lead Pitch 1.27 mm, 8CN3 A R San Jose, CA
in „i2c at24c1024 page P0“ · Mikrocontroller und Digitale Elektronik ·
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AVR051.pdf
Heilbronn, Germany FAX 1(408) 436-4314 TEL (49) 71-31-67-0 Europe FAX (49) 71-31-67-2340 Atmel SarL Microcontrollers Route des Arsenaux 41 Atmel Corporate Casa Postale 80 2325 Orchard Parkway Atmel Colorado Springs 1150 East Cheyenne Mtn. Blvd. CH-1705 Fribourg San Jose, CA 95131 Colorado Springs,
in „AtMega32 mit Quarz betreiben. [siehe Bild]“ · Mikrocontroller und Digitale Elektronik ·
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tds220-specs_ger.pdf
. L4 – Spanisch (071-0399-00) Opt. L5 – Japanisch (071-0405-00) P5100 – Passiver Hochspannungstastkopf, 100X Opt. L6 – Portugiesisch (071-0403-00) P5200 – Hochspannungs-Differential- Opt. L7 – Vereinfachtes
in „[V] Tektronix TDS220 Digital Oszilloskop 100 Mhz; 1 GS/s“ · Markt ·
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PDF
tds220-specs.pdf
Series Oscilloscopes) Probes P6015A – 1000X High Voltage Probe. Standard – English (071-0398-00). Opt. L1 – French (071-0400-00). P6021 – 60 MHz AC Current Probe. P6022 – 120 MHz AC Current Probe. Opt. L2 – Italian (071-0401-00). A621 – 2000 A AC Current Probe/BNC. Opt. L3 – German (071-0402-00). Opt. L4
in „[V] Tektronix TDS220 Digital Oszilloskop 100 Mhz; 1 GS/s“ · Markt ·
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Transistor_Database.pdf
80W 10MHz 2SB828 SI-P 60V 12A 80W 10MHz 2SB829 SI-P 60V 15A 90W 20MHz 2SB857 SI-P 50V 4A 40W NF/S-L 2SB861 SI-P 200V 2A 30W 2SB863 SI-P 140V 10A 100W 15MHz 2SB865 P-DARL 80V 1.5A 0.9W 2SB873 SI-P 30V 5A 1W 120MHz 2SB882 P-DARL+D 70V 10A 40W B>5K 2SB883 P-DARL+D 70V 15A 70W B=5K 2SB884 P-DARL 110V 3A
in „Transistor-Datenbank“ · Analoge Elektronik und Schaltungstechnik ·
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ATmega8_L__Summary.pdf
descr. for Sleep functiNone 1 WDR Watchdog Reset (see specific descr. for WDR/timer) None 1 12 ATmega8(L) 2486QS–AVR–10/06 ATmega8(L) Ordering Information (1) Speed (MHz) Power Supply Ordering Code Package Operation Range ATmega8L-8AC 32A Commercial ATmega8L-8PC 28P3 ATmega8L-8MC 32M1-A (0°C to 7C) ATmega8L-8AI 32A 8 2.7 - 5.5 (2) 32A ATmega8L-8AU ATmega8L-8PI 28P3 Industrial ATmega8L-8PU (2) 28P3 (-40C to 85C) ATmega8L-8MI 32M1-A ATmega8L-8MU (2) 32M1-A ATmega8-16AC 32A Commercial ATmega8-16PC 28P3 (0°C to 7C) ATmega8-16MC 32M1-A ATmega8-
in „Daten im EEProm aufzeichnen und später über RS232 senden“ · Mikrocontroller und Digitale Elektronik ·
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AT89C5131A_Starter_Kit_Hardware_Guide.pdf
_ _ _ _ _ 3 D 4 D 5 D 6 D o P P P P P P P P P P P P P P P P A _ _ P P P P P P D L D L D L D L 1 1 2 5 4 2 0 8 7 6 0 1 4 5 7 6 8 9 5 3 2 1 0 0 1 2 3 5 4 4 4 4 3 3 3 1 2 3 9 1 1 1 1 2 2 2 3 3 3 3 3 3 D D D D 3 L L L L 0 1 2 3 4 5 6 7 8 9 1 1 1 1 1 1 E A N 3 2 1 0 0 0 0 1 2 3 4 5 6 7
in „Programmierung über USB“ · Mikrocontroller und Digitale Elektronik ·
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Tiny12.pdf
Packages – 8-pin PDIP and SOIC Operating Voltages – 1.8 - 5.5V for ATtiny12V-1 – 2.7 - 5.5V for ATtiny11L-2 and ATtiny12L-4 – 4.0 - 5.5V for ATtiny11-6 and ATtiny12-8 Speed Grades – 0 - 1.2 MHz (ATtiny12V-1) – 0 - 2 MHz (ATtiny11L-2) – 0 - 4 MHz (ATtiny12L-4) – 0 - 6 MHz (ATtiny11-6) – 0 - 8 MHz (ATtiny12
in „ATTiny12 uns SPI?“ · Mikrocontroller und Digitale Elektronik ·
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AVR191.pdf
from the window-lift. Carried out tests lead us to obtain: R: Equivalent resistor of the armature L: Equivalent self-inductance of the armature f: Viscous frictions J: inertia K: Torque constant (Kt) and speed constant (Ke), et K = Ke = Kt. To determine R, the motor is supplied so that it doesn’t start
in „Lastabschaltung für 12V DC Motor“ · Mikrocontroller und Digitale Elektronik ·
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doc4834.pdf
5 Bit 4 Bit 3 Bit 2 Bit 1 Bit 0 (OCS) (HS3) (LS3) (HS2) (LS2) (HS1) (LS1) (SRR) x x H x x x x x x L L L L L L L The following patterns are used to enable internal test modes of the IC. It is not recommended to use these patterns during normal operation. Bit 15 Bit 14 Bit 13 Bit 12 Bit 11 Bit 10 Bit
in „DCC Decoder“ · Projekte & Code ·
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PDF
TDS1000_Datasheet.pdf
. L2 – Italian (071-1066-00). documentation, and control from your PC. Provides Accessory Cables enhanced oscilloscope data measurement, GPIB,1 m (3.3 ft.) – Order 012-0991-01. Opt. L3 – German (071-1067
in „[V] Digital-Speicher-Oszilloskop Tektronix TDS1002“ · Markt ·
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AVR040_EMC_Design_Considerations.pdf
decoupling capacitor. Figure 6. Decoupling with Series Inductor Vcc Power Plane Microcontroller I= L I= Vcc V= C High Current Out Loop GND Ground Plane 10 AVR040 1619C–AVR–01/04 AVR040 PCB Layout and Grounding Current Loops and Signal Current can only flow in loops. This is true for signals as well
in „Anfängerfrage: Wofür Kondensatoren“ · Mikrocontroller und Digitale Elektronik ·
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at91rm9200-ek.pdf
C B D B A A B B D E C B E F F G G G G J J G G F F F C B A C B A F E D C C F B A D E C B A E D C B L M M N N L K K K L L M M D[0..31] PD[0..27] 33 2 2 2 2 2 2 2 2 2 21 1 1 1 1 1 1 1 1 19 8 7 6 5 4 3 2 1 0 2 2 2 2 2 22 2 2 2 1 1 1 1 1 11 1 1 1 9 8 7 6 5 43 2 1 0 1 11 1 1 1 6 5 4 3 2 1 0 D0 R9 D0 D AA
in „SD-RAM aus PC für AT91RM9200 (ARM9)“ · Mikrocontroller und Digitale Elektronik ·
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Transistor_Database.pdf
80W 10MHz 2SB828 SI-P 60V 12A 80W 10MHz 2SB829 SI-P 60V 15A 90W 20MHz 2SB857 SI-P 50V 4A 40W NF/S-L 2SB861 SI-P 200V 2A 30W 2SB863 SI-P 140V 10A 100W 15MHz 2SB865 P-DARL 80V 1.5A 0.9W 2SB873 SI-P 30V 5A 1W 120MHz 2SB882 P-DARL+D 70V 10A 40W B>5K 2SB883 P-DARL+D 70V 15A 70W B=5K 2SB884 P-DARL 110V 3A
in „Bauteilebeschaffung !!“ · Mikrocontroller und Digitale Elektronik ·
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AVR_ISP.pdf
408) 441-0311 TEL (719) 576-3300 FAX (408) 487-2600 FAX (719) 540-1759 Europe Atmel Rousset Atmel SarL Zone Industrielle Route des Arsenaux 41 13106 Rousset Cedex Casa Postale 80 France CH-1705 Fribourg TEL (33) 4-4253-6000 Switzerland FAX (33) 4-4253-6001 TEL (41) 26-426-5555 FAX (41) 26-426-5500 Atmel
in „ATMEGA 2560“ · Mikrocontroller und Digitale Elektronik ·
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Amperemeter 100A bidirektional?
Hallo, hab ein wenig recherchiert und verwende als OPV den L2722, der soll wohl relativ stabil sein und einen Ausgangsstrom von 200mA (!) liefern können. |\ Signal In --| \ | \____ Signal
Guten Abend! Habe das jetzt mit besagtem OPV L2722 an 8V umgesetzt und es funktioniert tadellos... Vielen Dank für die reichhaltigen Tips und daß Ihr Euch die Zeit genommen habt! Bis später, der Marc
Mikrocontroller und Digitale Elektronik ·Marc H. · ·19 Antworten
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Thread
[S] Attiny15 und L272M im DIL Gehäuse
den üblichen "Verdächtigen" gibt es sie nur als SMD-Variante. Weiterhin brauche ich noch 2 Stk. L272 oder L2722 auch als DIL8. Hat jemand so etwas für mich? Alles Weitere per MEHL. :-) MfG Paul
Tiny 15 gibts als DIP sehr wohl bei Reichelt Bestellnummer: ATTINY 15L DIP
Markt ·Paul Baumann · ·4 Antworten
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AT45DB161B.pdf
4,224 bytes (4K + 128) BLOCK 1 0 PAGE 1 SECTOR 1 = 248 Pages 1 K 130,944 bytes (124K + 3,968) R O T L SECTOR 2 = 256 Pages E BLOCK 30 B PAGE 6 135,168 bytes (128K + 4K) S BLOCK 31 PAGE 7 BLOCK 32 PAGE 8 BLOCK 33 PAGE 9 SECTOR 3 = 256 Pages 1 135,168 bytes (128K + 4K) 2 C R L T B C BLOCK 62 PAGE 14 S
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doc0401.pdf
EA/VPP P2.6 P2.7 P3.6 P3.7 P0.7:0 P2.5:0 P1.7:0 Serial Prog. Modes H h(1) h(1) x (2) Chip Erase H L 12V H L L L X X Write (10K bytes) Memory H L 12V L H H H DIN ADDR Read (10K bytes) Memory H L H 12V L L H H DOUT ADDR Write Lock Bits: H L 12V H L H L DIN X Bit - 1 P0.7 = 0 X Bit - 2 P0.6 = 0 X Bit - 3 P0.5 = 0 X Read Lock Bits: H L H 12V H H L L DOUT X Bit - 1 @P0.2 X Bit - 2 @P0.1 X Bit - 3 @P0.0 X Read Atmel Code H L H 12V L L L L DOUT 30H Read Device Code H L H 12V L L L L DOUT 31H (2) Serial Prog. Enable H L 12V L H L H P0.0
in „IDE für 8051“ · Mikrocontroller und Digitale Elektronik ·
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AT91SAM9261-EK_Evaluation_Board.pdf
3V3 ETM YELLOW POWER LED N 5V O T U S O PIO T TOUCHSCREEN N CONTROLLER C S X P P S D NRST T H H I L R - - - 1 D M M C O R D D D D S T D D D H H 1V2 3 2 C REG 1V2 VDDCORE S 1 E T S C 1V2 R A I U I S P P E N . E G E H C _ I _ LCD CONTROLLER 1 D B B S I S P N N VDDPLL VDDOSC P S U S S O U 9 N T A U P
in „ARM91SAM9261 Entwickler gesucht -Dringend“ · Mikrocontroller und Digitale Elektronik ·
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doc1232.pdf
x 4 keypad connections – 2 I/O pins Flashing LEDs for example – only 9 1232D-AVR-06/06 ;**** A P P L I C A T I O N N O T E A V R 2 4 0 ********************** ;* ;* Title: 4x4 keypad, wake-up on keypress ;* Version: 1.2 ;* Last Updated: 2004.11.11 ;* Target: All AVR Devices ;* ;* Support E-mail: avr@
in „zu viele Taster“ · Mikrocontroller und Digitale Elektronik ·
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Thread
passenden Opamp gesucht
einem nachgeschalteten bipolaren Transistor helfen. Aber auch da wirst du sicher 300mV verlieren. Der L2722 fällt mir da noch ein, ein OP von ST, in bipolartechnik aufgebaut, kann 1A. Aber auch da werden die Verluste in der Größenordnung liegen. Gerhard
Analoge Elektronik und Schaltungstechnik ·EnLa · ·10 Antworten
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AVRISPmkII_UG.pdf
outfile] [-oe outfile] [-s] [-O address] [-Sf addr] [-Seaddr] [-e] [-p f|e|b] [-r f|e|b] [-v f|e|b] [-l value] [-L value] [-y] [-f value] [-E value] [-F value] [-G value] [-q] [-Y] [-Z address] [-c port] [-ut value] [-Wt value] [-ua value] [-wt] [-wa] [-b h|s] [-! freq] [-t] [-I freq] [-J] [-h] [-?] Examples
in „AVRISP mkII - 10-polig?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
C51_API_Program_Examples.pdf
adr, unsigned char value); unsigned char __api_rd_eeprom_byte(unsigned int adr); #endif /*_____ G L O B A L S ___________________________________________________*/ sfr16 DPTR = 0x82; /*_____ L O C A L S _____________________________________________________*/ #define MSK_AUXR1_ENBOOT0x20 #define MSK_AUXR_M00x20
in „Schreiben in EEPROM eines AT89C51ED2“ · Mikrocontroller und Digitale Elektronik ·
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24C32.pdf
mm) Side View SYMBOL MIN NOM MAX NOTE A – – 1.75 A2 B – – 0.51 C C – – 0.25 D – – 5.00 E – – 4.00 L e 1.27 BSC E H – – 6.20 L – – 1.27 End View Note: This drawing is for general information only. Refer to JEDEC Drawing MS-012 for proper dimensions, tolerances, datums, etc. 10/10/01 TITLE DRAWING NO
in „EEproms 24C32 zu verschenken“ · Mikrocontroller und Digitale Elektronik ·
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doc0842.pdf
AT45DB041B (Three-byte Address) Opcode Address Byte Address Byte Address Byte d d d d Additiona e e e e l Don’t r r r r Care s s s s 1 9 8 7 6 5 4 3 2 1 0 8 7 6 5 4 3 2 1 0 Bytes e e e e A A A A A A A A A A A A A A A A A A A A Opcode R R R R P P P P P P P P P P P B B B B B B B B B Required 50H 0 1 0 1 0
in „Komme hier nicht weiter Bitschiften“ · Mikrocontroller und Digitale Elektronik ·
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PDF
doc0842.pdf
AT45DB041B (Three-byte Address) Opcode Address Byte Address Byte Address Byte d d d d Additiona e e e e l Don’t r r r r Care s s s s 1 9 8 7 6 5 4 3 2 1 0 8 7 6 5 4 3 2 1 0 Bytes e e e e A A A A A A A A A A A A A A A A A A A A Opcode R R R R P P P P P P P P P P P B B B B B B B B B Required 50H 0 1 0 1 0
in „Kann mir einer mal diesen Code erklären??“ · Mikrocontroller und Digitale Elektronik ·
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PDF
doc0842.pdf
AT45DB041B (Three-byte Address) Opcode Address Byte Address Byte Address Byte d d d d Additiona e e e e l Don’t r r r r Care s s s s 1 9 8 7 6 5 4 3 2 1 0 8 7 6 5 4 3 2 1 0 Bytes e e e e A A A A A A A A A A A A A A A A A A A A Opcode R R R R P P P P P P P P P P P B B B B B B B B B Required 50H 0 1 0 1 0
in „Erfahrungen mit ATMEL Flash Bausteinen SPI“ · Mikrocontroller und Digitale Elektronik ·
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U2008b.pdf
4712B–AUTO–10/05 Figure 1-2. Block Diagram with Typical Circuit: Soft Start 230 V ~ 22 kΩ/2W BYT51K L R1 D 1 R 2 R 8 αmax 680 kΩ 470 kΩ Load 7 6 Limiting Voltage Mains voltage detector detector compensation Automatic retriggering U2008B Phase 5 -VS Current control unit TIC 226 detector ϕ = f(V3) C1 100
in „Phase Control IC u2008b“ · Mikrocontroller und Digitale Elektronik ·
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doc4298.pdf
start-up 5 SUT1 1 0 e time y B 4 SUT0 Select start-up0 1 s time u F 3 CKSEL3 Select Clock 0 1 o source L Select Clock 2 CKSEL2 source 0 1 Select Clock 1 CKSEL1 source 1 0 Select Clock 0 CKSEL0 0 0 source Notes: 1. 0 = programmed, 1 = unprogrammed 2. Sets the clock setting for Crystal Oscillator 3-8 MHz,
in „tiny2313-90S2313“ · Mikrocontroller und Digitale Elektronik ·
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TEKTDS1000B_2000B.PDF
. L2 – Italian manual. P2220 – 200 MHz 10x to 1x Switchable Passive TCP303/TCPA300 – 15 A, 15 MHz AC/DC current Probes (one per channel). Opt. L3 – German manual. probe/amplifier. Opt. L4 – Spanish manual
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AT89S8253-24PU.pdf
H L H 12V L L L H H DO ADDR Bit - 1 D0 = 0 X (2)(4) Write Lock Bits Bit - 2 H L 1.0 µs 12V H L H H L D1 = 0 X Bit - 3 D2 = 0 X Bit - 1 D0 X Read Lock Bits Bit - 2 H L H 12V H H H L L D1 X Bit - 3 D2 X Page Write(3)(4)(5) User Row H L 1.0 µs 12V H L H H H DI 0 - 3FH Read User Row H L H 12V L L H L H DO 0 - 3FH Read Sig. Row H L H 12V L L H L L DO 0 - 3FH SerialPrgEn D0 = 0 X Fuse1 } SerialPrgDis D0 = 1 X x2 ClockEn D1 = 0 X Fuse2
in „AT89S8253-24PU ersetzen“ · Mikrocontroller und Digitale Elektronik ·
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doc4688.pdf
range of 100 kHz to 150 kHz. The correct LC combination can be calculated with the following formula: L A = --------------------------------------------- C × (2 × π ×f )2 A 0 Figure 5-1. Antenna Circuit Connection Coil 1 L C A A Coil 2 Example: Antenna frequency: f = 105 kHz, capacitor: C = 2.A nF L =
in „Die I2C Schnittstelle eines PIC16F876A initialisieren“ · Mikrocontroller und Digitale Elektronik ·
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AT89S8252_Datasheet_doc0401.pdf
EA/VPP P2.6 P2.7 P3.6 P3.7 P0.7:0 P2.5:0 P1.7:0 Serial Prog. Modes H h(1) h(1) x (2) Chip Erase H L 12V H L L L X X Write (10K bytes) Memory H L 12V L H H H DIN ADDR Read (10K bytes) Memory H L H 12V L L H H DOUT ADDR Write Lock Bits: H L 12V H L H L DIN X Bit - 1 P0.7 = 0 X Bit - 2 P0.6 = 0 X Bit - 3 P0.5 = 0 X Read Lock Bits: H L H 12V H H L L DOUT X Bit - 1 @P0.2 X Bit - 2 @P0.1 X Bit - 3 @P0.0 X Read Atmel Code H L H 12V L L L L DOUT 30H Read Device Code H L H 12V L L L L DOUT 31H (2) Serial Prog. Enable H L 12V L H L H P0.0
in „lichtschranke mit zählfunktion einer umdrehung“ · Mikrocontroller und Digitale Elektronik ·
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doc1921.pdf
X 2 V Write Lock Bit 6.5 (2) 3 V H L 12V H L H H L X X X X P0.2, Read Lock Bits 1, 2, 3 5V H L H H H H L H L P0.3, X X X P0.4 6.5 (3) Chip Erase V H L 12V H L H L L X X X X Read Atmel ID 5V H L H H L L L L L 1EH X XX 0000 00H Read Device 5V H L H H L L L L L 55H X XX 0001 00H ID Read Device 5V H L H H L L L L L 06H X XX 0010 00H ID Notes: 1. Write Code Data requires a 200 ns PROG pulse. 2. Write Lock Bits requires a 100 µs PROG pulse. 3. Chip
in „ne frage zu AT89C55WD“ · Mikrocontroller und Digitale Elektronik ·
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ATMEL-Motor_Entwicklungsboard.pdf
e 1 P _ P _ P _ n ) R J s J s J s - r r 1 2 3 r 1 2 3 r 1 2 3 r n C e 4 s s s h r e e e _ _ _ _ v l f _ _ _ _ _ _ L L L V O o o B F o A F o C F o r 1 a E n a E n a E n t 1 H B e H B e H B e n n 1 l l l e B B S A A S C C S t u o a F a F a _ u _ C t H M H M H M A B C S e e B B E L L L V O r h B S i T
in „Stromregeler Testboard ATAVRMC100“ · Mikrocontroller und Digitale Elektronik ·
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AVR450_BattCharger.pdf
R 3 R 3 R 3 R 1 R 1 R 1 R 1 1 n s C47 D c N E V 1 0 G L 0 1 2 3 4 5 R 1 D D D D D D L L L L L L 1 1 1 2 3 4 P T T T T T T 0 1 2 3 4 5 0 1 2 3 E E E E D D H H H H E L L L L L L I I I I S W W W W R S S S S , g d s n 1 i c o u o P r l i ) t , a p e d D 1 o r
in „Pb-Akku Ladegerät mit µP Selbstgemacht“ · Mikrocontroller und Digitale Elektronik ·
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at98c51ed2.pdf
PCA Compare Capture Module 4 H CCAP4H7 CCAP4H6 CCAP4H5 CCAP4H4 CCAP4H3 CCAP4H2 CCAP4H1 CCAP4H0 CCAP0L EAh PCA Compare Capture Module 0 L CCAP0L7 CCAP0L6 CCAP0L5 CCAP0L4 CCAP0L3 CCAP0L2 CCAP0L1 CCAP0L0 CCAP1L EBh PCA Compare Capture Module 1 L CCAP1L7 CCAP1L6 CCAP1L5 CCAP1L4 CCAP1L3 CCAP1L2 CCAP1L1 CCAP1L0 CCAP2L ECh PCA Compare Capture Module 2 L CCAP2L7 CCAP2L6 CCAP2L5 CCAP2L4 CCAP2L3 CCAP2L2 CCAP2L1 CCAP2L0 CCAP3L EDh PCA Compare Capture Module 3 L CCAP3L7 CCAP3L6 CCAP3L5 CCAP3L4 CCAP3L3 CCAP3L2 CCAP3L1 CCAP3L0
in „8051: An Port 1 nur 3.5V anstatt 5V ?“ · Mikrocontroller und Digitale Elektronik ·
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at98c51ed2.pdf
PCA Compare Capture Module 4 H CCAP4H7 CCAP4H6 CCAP4H5 CCAP4H4 CCAP4H3 CCAP4H2 CCAP4H1 CCAP4H0 CCAP0L EAh PCA Compare Capture Module 0 L CCAP0L7 CCAP0L6 CCAP0L5 CCAP0L4 CCAP0L3 CCAP0L2 CCAP0L1 CCAP0L0 CCAP1L EBh PCA Compare Capture Module 1 L CCAP1L7 CCAP1L6 CCAP1L5 CCAP1L4 CCAP1L3 CCAP1L2 CCAP1L1 CCAP1L0 CCAP2L ECh PCA Compare Capture Module 2 L CCAP2L7 CCAP2L6 CCAP2L5 CCAP2L4 CCAP2L3 CCAP2L2 CCAP2L1 CCAP2L0 CCAP3L EDh PCA Compare Capture Module 3 L CCAP3L7 CCAP3L6 CCAP3L5 CCAP3L4 CCAP3L3 CCAP3L2 CCAP3L1 CCAP3L0
in „8051: An Port 0 kann nichts ausgegeben werden“ · Mikrocontroller und Digitale Elektronik ·
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doc4368.pdf
e 0 0 V0 0 0 6 6 / / / / / / / / / G S P M r o o A A i M I M 9 C T 5 5 5 5 5 1 1 1 1 1 1 1 1 1 1 1 L L L S . . V S S . P P D S P . . . . S 0 . H E E G N E A R U E E C P P E s s I S A 4 6 e I I E l l B O O R 9 a a e r D D T B t h h e e i r V E E E S 2 r r H m i I s e / C 6 T P M N R r T T T O F N H 8
in „Entwicklungsboard für AT89C51 Controllers“ · Mikrocontroller und Digitale Elektronik ·