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PDF
AMSRB-78-NZ.pdf
10uF/50V 10uF/25V AMSRB-7815-NZ 10uF/50V 10uF/25V Ripple and Noise Reduction +V input 1 3 +V output L AMSRB-78Z C1 C2 22uF 2 Ground Ground Recommended value of inductor L is between 10uH to 47uH www.aimtec.com Tel: +1 514 620 2722 Toll free: + 1 888 9 AIMTEC (924 6832) F 051e R12.C 2 of 3 North America
in „neuer Festspannungsregler LMS78“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AM3N-S-Z.PDF
Output No pin 22 N.C. No pin 23 N.C. -V Input 24 +V Input -V Input www.aimtec.com Tel: +1 514 620 2722 Toll free: + 1 888 9 AIMTEC (924 6832) F 051e R8.D 3 of 4 North America only Series AM3N-S-Z 3 Watt | DC-DC Converter Test Circuits Conducted Emissions: C1 L1 220µF/100V 12µH NOTE: 1. Datasheets are
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PDF
AM1S-Z-1.pdf
convection Humidity 95 % Case material Non-conductive black plastic UL94-VO Weight 1.8 g Dimensions (L x W x H) 0.46 x 0.24 x 0.38 inches11.68 x 6.00 x 9.65 mm MTBF >1 191 000 hrs (MIL-HDBK -217F, Ground Benign, t=+25 C) NOTE: All specifications are measured at an ambient temperature of 25°C, humidity
in „DC/DC Wandler, Kondensatoren und "Spulen"?!, Application Note“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Verpackungen von Coilcraft SMD Speicherdrosseln
ELEKTRONIK Art.Nr. D033/6-103 Stück/Menge 5 COILCRAFT • SMD SPEICHERDROSSELN Art. Nr. 744 7701334F Ind. L/µH 1.03 Stück/Meter/Satz 30 Referenz: D033/6-103 Ihre Sach.-Nr.: MSA Electronic Systeme GmbH Tel. +49 (0) 2722 2610 Fax +49 (0) 2722 3761
in „[V] Konvolut (83) SMD Leistungsinduktivitäten, Würth, Fastron, Coilcraft (35€)“ · Markt · · Fotos
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PDF
iPhone_4_schem.pdf
Y1_PMU ALTERNATE T A B L E _ 5 _ I T E M T A B L E _ A L T _ H E A D607-6809 1 POWER INDUCTORS L1_L3_L16_L18_PMU Y ? PART NUMBER ALTERNATE FOR BOM OPTION REF DES COMMENTS: BOM 639-0437(32GB,USI) PART NUMBER T A B L E _ A L T
in „iphone 4 smd abgebrochen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
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
philips_chassis_qfu2.1e_la.pdf
T TP3 4 C TP71 T B Q150 R311 R317 KTN 2222A 0 F E 1KF 4 P R161 C152 T T 24 1KF 100nF U306 ! VA101 L101 T L102 750V 14A 5mm AZ431AN / SMD R330 C320 5mm 1 2 20K 1nF T T GND1 F101 ! T5AH 250V 6 PT Neutral Live 1 2 1 2012-02-06 2722 171 90604 ! CN1_1308 Power Supply Unit with AC-inlet Integrated Led Driver
in „Netzteil Philips LED TV reparieren??“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
lg_oem_lgit_pldc-p109b_sch.pdf
Power Supply Unit with Integrated Led Driver VREF R412 L401 100KF D401 L404 L403 LED_A R481A 5.1K R481B 5.1K R481C R410 R468 VLED 1 4 R1 R2 R3 5.1k 560 KTN2907A R470B R485C 1K VREF 55uH B3100-13-F BFS3550R Jumper C481A R485A C481B R485B C481C CMP3 BL-DIM(VSYNC
in „Netzteil Philips LED TV reparieren??“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
2012_02-RIAA.pdf
à bobine mobile. fixée par R3 et R4. Celle de l’ampli op IC1A C1, de 0 à 10 nF. 66 05-2012 elektor Audio & hAute-fidÉlitÉ Graphiquedeperformances avec la platine MC/MM EPS110650-2seule; +0.4 +0.2 instrument du test : AudioPrecisionTwoCascadePlus2722
in „Empfehlung für Phono-Vorverstärker-Schaltplan?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PK566-NB.pdf
Selection D3 D2 D1 D0 Step Angle D3 D2 D1 D0 Step Angle (Divisions/Step) (Divisions/Step) H H H H 0.72˃ L H H H 0.0288˃ (1) (25) H H H L 0.36˃ L H H L 0.018˃ (2) (40) H H L H 0.288˃ L H L H 0.0144˃ (2.5) (50) H H L L 0.18˃ L H L L 0.009˃ (4) (80) H L H H 0.144˃ L L H H 0.0072˃ (5) (100) H L H L L L H L 0.09˃ 0.00576˃ (8) (125) H L L H 0.072˃ L L L H 0.0036˃ (10) (200) H L L L 0.036˃ L L L L 0.00288˃ (20) (250) Switching while in pulse input mode may cause the motor to slip position. Figure 10 illustrates switching the step angle
in „Hitzeprobleme beim L298 !?“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Foto eines Bauteils auf einer Leiterplatte
2-6400-L10-A3-SI -1894-110V 17414 D-90518 ALTDORF Made in Tunisia 733701 03 5 EI 30-X6/7039/012 230 V 1 VA 17.8 V 70/B 732544 2722 CE
in „Heizung Valliant VKS41E kein Strom“ · Haus & Smart Home · · Platinenfotos
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PDF
NM93C46.PDF
V CC = 2.7V to 5.5V unless otherwise specified h r o a Symbol Parameter Conditions Min Max Units n l o C CCA Operating Current CS = V IHSK=1.0 MHz 1 mA u M s O CCS Standby Current CS = V IL B S L 10 µA u LZ (2.7V to 4.5V) 1 µA s E ) E IL Input Leakage V IN0V to V CC ±1 µA P IOL Output Leakage (Note
in „EEPROM durch anders tauschen, was beachten?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
COMPARISON_AVR_C51.PDF
On-chip Debug Through JTAG Interface EMI Up to 256 KB Addressing Capability E F F I C I E N T & F L E X I B L E C A N C O N T R O L L E R Independent message objects can be dedicated Also supported: dynamically, either in0.A or in2.0B mode , to Autobaud and Listening Modes one of the following: Readable
in „ata6660 und 89c51cc01“ · Mikrocontroller und Digitale Elektronik ·
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PDF
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_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 TDS 220“ · 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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PDF
DOC1473.pdf
detected brge fault ;within 130ms then exit sbic PIND,INPUT ;Wait for start bit rjmp start1 clr timerL ;Measure length of start bit start2: cpi timerL,17 ;If startbit longer than 1.1ms, brge fault ;exit sbis PIND,INPUT rjmp start2 ;Positive edge of 1st start bit mov temp,timerL ;timer is 1/2 bit time clr timerL mov ref1,temp lsr ref1 mov ref2,ref1 add ref1,temp ;ref1 = 3/4 bit time lsl temp add ref2,temp ;ref2 = 5/4 bit time start3: cp timerL,ref1 ;If high period St2 > 3/4 bit time brge fault ;exit sbic PIND
in „IR-Empfänger“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR410_RC5_IR_Remote_Control_Reciver.PDF
detected brge fault ;within 130ms then exit sbic PIND,INPUT ;Wait for start bit rjmp start1 clr timerL ;Measure length of start bit start2: cpi timerL,17 ;If startbit longer than 1.1ms, brge fault ;exit sbis PIND,INPUT rjmp start2 ;Positive edge of 1st start bit mov temp,timerL ;timer is 1/2 bit time clr timerL mov ref1,temp lsr ref1 mov ref2,ref1 add ref1,temp ;ref1 = 3/4 bit time lsl temp add ref2,temp ;ref2 = 5/4 bit time start3: cp timerL,ref1 ;If high period St2 > 3/4 bit time brge fault ;exit sbic PIND
in „Universeller RC5-Fernbedienungsempfänger“ · Mikrocontroller und Digitale Elektronik ·
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PDF
K-RAS.pdf
resistance 260 °C/5s • cULus • TÜV • RoHS compliance Standards • EN 50205 • IEC 61810-1 • UL 508 Dimensions L x W x H (in mm) 36 x 12,5 x 29 Technical Data mechanical Shock resistance NO-contact/NC-contact 10/10 g, 16 ms half sinus Vibration resistance NO-contact/NC-contact 5/5 g, 10 – 55 Hz Operating time NC-contact
in „(V) Relais, 3*NO, 1*NC, 12V DC, zwangsgeführte Kontakte“ · Markt ·
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ATAVRSBIN2.pdf
detection, and activity monitoring algorithms. 3.3 Three-axis electronic compass from Honeywell (HMC5883L) The Honeywell HMC5883L is a three-axis magnetic sensor that includes Honeywell’s state-of-the-art, high-resolution, magneto-resistive sensors with automatic degaussing (demagnetizing) strap drivers,
in „Arduino Gyroscope und Accelometer Werte schwanken“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR_ISP_USER_GUIDE.PDF
LS2323 AT90S/LS2343 AT90S/LS2333 AT90S4414 AT90S/LS4433 AT90S/LS4434 AT90S8515 AT90S/LS8535 ATmega161(L) ATmega16(L) ATmega163(L) ATmega32(L) ATmega323(L) ATmega103(L) ATmega128(L) Information about supported devices in latest versions of the firmware can be found in the AVR Studio Online Help System.
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PDF
U2100B_Data_sheet.pdf
trol unit is gained from the remaining phase angle (α minoperation). Figure 3-1. Two-wire Circuit L Control N Figure 3-2. Three-wire Circuit L Control N For three-wire switch systems, two operational modes are possible: – Zero voltage switch operation for triac control – Static operation for relay
in „Fehlersuche Steinel Bewegungsmelder“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
T2117_zero_switch.pdf
. 4768B–INDCO–10/05 Figure 1-1. Block Diagram with Typical Circuit, Period Group Control 0 to 100% L D 1 220 kΩ R2 R 18 kΩ/ Load 1 2 W 1000 W (250 V~) (sync -VS C R 2 4 2 8 5 C1 100 kΩ 100 µF/ 2.2 µF/ 1 Ramp 7 16 V VM= 230 V~ 10 V Synchronization Supply generator GND R5 MT2 12 kΩ 3 + 6 100 Ω MT1 max
in „Suche Steuerung für 2kW Heizwendel (230V)“ · Analoge Elektronik und Schaltungstechnik ·
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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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PDF
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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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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PDF
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 ·
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Datei
a30-7.txt
L215 715 1381 w LIN 2 1636 1351 C216 780 1244 s 1800p? 2 2531 1198 C221 877 1331 w 100µF 2 2148 884 R237 1233 1174 s 619 2 1627 1662 R239 1240 1341 s 39 3 1041 838 C238 1313 1334 w 100µF 2 2847 1712 L240
in „Tektronix TDS744A Netzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
datasheet.pdf
V O 1.0 V V S 9V (pin 3) Relay output reverse current Pin 3 O 0.1 mA Relay coil resistance R 60 Ω L Start delay First bright phase t 10 ms on Frequency determining resistor R 1 6.8 510 kΩ Frequency determining capacitor C 1 47 µF Normal flashing, basic frequency f not 1 Frequency tolerance including
in „EMV - Blinkerrelais gestört“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
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
DOC0942.pdf
the R/C network must be tuned so that the following equation is satisfied: 512 ▯ 2▯ 1002 -------RC l▯1 – -▯ ▯ RC = ------------ f 5 f Component values for some typical Oscillator frequencies are shown in Table 1. If the time constant varies from this, it will cause errors in the result. This makes it
in „ADC: Messung einer analogen Spannung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
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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PDF
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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PDF
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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PDF
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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PDF
WinCupl_Properties_doc0916.pdf
option) – (defaults to Disabled). Please refer to a Technical Bulletin “Choosing ATMEL ATF150XASV(L) POR options” for additional description. This bulletin is available on our website. -GCLK1_ ITD Disables ITD (Input Transition Detection circuitry) fuse on GCLK1 – (defaults to enabled). -GCLK2_ ITD
in „CPLD ATF1504 sporadisch seltsames Verhalten nach Einschalten“ · FPGA, VHDL & Co. ·
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PDF
doc1982.pdf
Figure 2 shows the PWM output signal. Figure 2. Generation of a Constant Voltage Level V V H V AV V L x y t 2 AVR314 1982B–AVR–05/02 AVR314 While equation 3 shows how to calculate the voltage level: V = ----------------(3)--- AV x + y A sine wave can be generated if the average voltage generated by the
in „seriell verkabelte und auslesbare Schalter bzw. Sensoren?“ · Offtopic ·
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PDF
AVR506.pdf
USBS0 UCSZ1 UCSZ01 UCSZ0 UCSZ00 UCPOL UCPOL0 UBRRH UBRR[11:8] UBRR0H UBRR0[11:8] UBRRL UBRR[7:0] UBRR0L UBRR0[7:0] 4 Memory The EEPROM write times are different, and can be seen Table 4-1 Table 4-1. Wait times when programming EEPROM Device Typical programming time ATmega169 8.5 ms ATmega169P 3.3 ms 5
in „Bascom atmega169P“ · 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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PDF
Flash_API.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 „Flash Byte lesen / schreiben auf AT89C51RB2“ · 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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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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PDF
doc2521.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 „Quarz will nicht anschwingen Atmega8“ · 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 „Mein erstes Projekt“ · 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 „Programier leitungen doppelt nutzen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR042-doc2521.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 „Anfänger: Atmel 8 beschaltung ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AT89C2051.pdf
the 10.Power-off sequence: entire array can be erased by using the appropriate combi- set XTAL1 to “L” nation of control signals. The write operation cycle is self- set RST to “L” timed and once initiated, will automatically time itself to Turn V CC power off completion. Data Polling: The AT89C2051 features
in „Hilfe AT89C2051 will nicht !!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR_8-bit_AppNote_HardwareDesignConsiderations_AVR042.pdf
pins of the AVR can be determined empirically or it can be estimated by Equation 5-1. Equation 5-1. C L1 ⋅C L2 C L = +C S C L + C L 2 Where C L1 and C L2 referrers to the external capacitors seen in Figure 5-1 and C is S the combined capacitive load of the XTAL pins of the AVR and stray capacitances of
in „RFM01 Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
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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PDF
Handbuch_SE4942_Eprom_Programmer_pdfa-2b_150dpi.pdf
TI TMS-2516, TMS-2522, TMS-2564, TMS-2764, TMS-2732 Motorola MCM68764, MCM68766, MCM2532 MBM2716, 2722A, 2764, 27128 Fujitsu MK2716, Mostek MK2764, TC57256D NEChiba TMM223, 2732, 27627128 PD2716, 2732, 2764, 27128 Mitsubishi M5L2716, 2732, 2764, OKI MSM2716, 2764 AMD AM2716, 2732, 2764 HITACHI HN462716