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L6207_AN.pdf
Overcurrent protection 50/53 AN1762 APPLICATION NOTE Figure 53. EVAL6207N Electrical schematic. CN3 CN4 1 2 1 2 B A C CN1 CN2 GND T T R 2 1 1 2 M M A 1 4 3 2 B L L E I I I I E 2 0 1 7 6 2 2 2 2 2 2 0 P P P P P R2 N N A A B B A D3 I I U N N U U T T T T T 2 4 6 8 1 1 1 1 1 2 2 2 2 2 3 3 3 VCCREF 0 2 4 6 8 0 4 6 8 0 2 4 CN5 C5 3 1 1 1 1 1 2 2 2 2 2 3 3 . JP1 1 3 5 7 9 3 5 7 9 1 3 5 7 9 1 t i 2 . . . . P P P P PullUp E 6 6 0 1 t _ I I P P x D A A C . . C e 1 A / P P / A 0 A B +5V M M M M VC CREF O O O O _ _
in „Schrittmotor mit L6207“ · Mikrocontroller und Digitale Elektronik ·
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PDF
en.CD00004482.pdf
Overcurrent protection 50/53 AN1762 APPLICATION NOTE Figure 53. EVAL6207N Electrical schematic. CN3 CN4 1 2 1 2 B A C CN1 CN2 GND T T R 2 1 1 2 M M A 1 4 3 2 B L L E I I I I E 2 0 1 7 6 2 2 2 2 2 2 0 P P P P P R2 N N A A B B A D3 I I U N N U U T T T T T 2 4 6 8 1 1 1 1 1 2 2 2 2 2 3 3 3 VCCREF 0 2 4 6 8 0 4 6 8 0 2 4 CN5 C5 3 1 1 1 1 1 2 2 2 2 2 3 3 . JP1 1 3 5 7 9 3 5 7 9 1 3 5 7 9 1 t i 2 . . . . P P P P PullUp E 6 6 0 1 t _ I I P P x D A A C . . C e 1 A / P P / A 0 A B +5V M M M M VC CREF O O O O _ _
in „Treiberstufe fuer Faulhaber Schrittmotor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
S29GL512N.pdf
0 1 1 128/64 3A60000–3A7FFFF 1D30000–1D3FFFF SA468 1 1 1 0 1 0 1 0 0 128/64 3A80000–3A9FFFF 1D40000–1D4FFFF May13,200427631A4 S29GLxxxN MirrorBitTM Flash Family 31 A d v a n c e I n f o r m a t i o n Table
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
_Dokumentation_V1.0_Stand_22.03.2012.pdf
(offset , Tabelle_animationen) ' 3. Byte-Muster ausgeben La0 = 0 : La1 = 1 : La2 = 0 : La3 = 0 : La4 = 0 : La4 = 1 'Latch 3 Offset = Offset + 1 Porta = Lookup(offset , Tabelle_animationen) ' 4. Byte-Muster ausgeben La0 = 1 : La1 = 1 : La2 = 0 : La3 = 0 : La4 = 0 : La4 =
in „Tutorial 10x10x10 LED-Cube“ · Mikrocontroller und Digitale Elektronik ·
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Datei
NOKIA_TEST.asm
Serial Data Line Low NOP BSF SCL ;High an Clock NOP BCF SCL ;Low an Clock BTFSC DISPBUFF,5 ;ist Bit5 1? BSF SDA ;Serial Data Line High BTFSS DISPBUFF,5 ;ist Bit5 0? BCF SDA ;Serial Data Line Low NOP BSF SCL ;High an Clock NOP BCF SCL ;Low an Clock BTFSC DISPBUFF,4 ;ist Bit4 1? BSF SDA ;Serial Data Line High BTFSS DISPBUFF,4 ;ist Bit4 0? BCF SDA ;Serial Data Line Low NOP BSF SCL ;High an Clock NOP BCF SCL ;Low an Clock BTFSC DISPBUFF,3 ;ist Bit3 1? BSF SDA ;Serial Data Line High BTFSS DISPBUFF,3 ;ist Bit3 0? BCF SDA ;Serial
in „Ausgabe auf Nokia 3310 Display“ · Mikrocontroller und Digitale Elektronik ·
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AN735.pdf
ca p s R E oe v D 7 u e i , Cu l t i e e 3 Ra S D 6 i c a e < o I r l c N f 3 5 P o C r O t D S d r s P D 4 4 t e w a S g D S a f e S i 5 3 s u i e D i f m e 6 2 d o m R D a c r 7 1 l t r D C a p v M b l C S 1 A o = 9 f W K R 8 eA 1 e v A 7 h l 2 e u S A 6 a c t t o s A 5 o 1 F r s = B d 4A 4 i N P I t r S S M m A5 3 a > o t t n l < i t t r A 2 C 2 n 0 r S T O C = W 7 C T N A 1 P R S S T 1 P t S L S > t i S C S < r e S U t A W B 0 P d T V N I = C o P O K D C S A i s F S S
in „I2C example code“ · Mikrocontroller und Digitale Elektronik ·
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SLC1602A1.pdf
N 5 5 31.0±0.2 M,H S D H Ú E 6 6 Z A 3 3 6.50 24.0 Bezel N î D 2 2 11.25 14.5 VA H Û Z É m g N î S m e E I J i S U l É . : : : ± B B B d : D E r C c n N K O a t s e S E P h D U T D C A C S 6 l 1 B , z V A 0 P M B . 4
in „1602 LCD mit ATmega8535 und Bascom läuft nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74HC4060.pdf
output; RS = MR = GND output I = −20 A; V = 2.0 V 1.9 2.0 - 1.9 - 1.9 - V voltage O CC O = −20 A; V CC = 4.5 V 4.4 4.5 - 4.4 - 4.4 - V O = −20 A; V CC = 6.0 V 5.9 6.0 - 5.9 - 5.9 - V O = −2.6 mA; V CC = 4.5 V 3.98 - - 3.84 - 3.7 - V I = −3.3 mA; V = 6.0
in „Randsportart“ · Offtopic ·
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PDF
sbfa002.pdf
t A a i i 6 e F d 1 k n . 3 4 4 ,P P 4 A A C R A U f o 5 4 n c a a r d M k i e 4 2 p f 1 1 a t g e 1 i o F m p 0 s a 0 3 e r , A o g C p i 4 1 h v 1 1 t m s : d u b F 7 a i d R . c b t 1 e s e 7 q ra c f - ( p e o t 0 0 o p i , 1 2 p t F R1 1 A h o s C t e . a 8 a a Z - o m 3 /P w l r R R L F M e ew i b v R . a s w e e 1 h g .P l p s b a R r l b 3 t c t p m e 1 4 k e n e i Z h k R 5 T w n d R e 5 1 : l h d n r ,2 A T f c3 a a1
in „Rechteck Sinus“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
74HC_HCT573.pdf
; V CC = 4.5 V - 0 0.1 - 0.1 - 0.1 V O = 20 A; V CC = 6.0 V - 0 0.1 - 0.1 - 0.1 V O = 6.0 mA; V CC = 4.5 V - 0.15 0.26 - 0.33 - 0.4 V O = 7.8 mA; V CC = 6.0 V - 0.16 0.26 - 0.33 - 0.4 V II input leakage V I V
in „Hilfe bei der Programmierung von LCD mit einem ATmega16“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LCD_ERM24064-1_Series_Datasheet.pdf
ERM24064-1 Series EastRising buydisplay.co m 3. OUTLINE DRAWING 1 7 1 2 2 A A T 0 - D : : : D a u C Z 1 V M A S F E B 1 R T E M E V Y : H O Y L I S R D W J N s P M U i A r 2 L S I E . x . 司 1 O S 0 0 M o 4 : M E . 8 y 公 6 Y O I E 1 g 限 4 B I E E l 有 2 E I T T n M K C 1 I c 技 R C E O e 科 E E D M P2.54X10=25.4 T 方 : H n 东 R C . 7.5 0.3 1 3.5 i E E 0 1 5.5±0.3 5 4 R 日 B R A A 2 s 旭 M 1 2 a U : E N Y 2 2 nc T B ia R N ti A W su P A
in „Platine von Aisler“ · Platinen ·
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PDF
9809037.pdf
By Wes Hayward, W7ZOI, and Terry White, K7TAU AS p e c t r u mA n a l y z e rf o r t h eR a d i oA m a t e u r — P a r t2 design and construction of a In analyzer. This installment pre- Hereare sents some applications and methods that some extend the underlying
in „Oszilloskop als Spectrum analyzer“ · Mikrocontroller und Digitale Elektronik ·
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311_Schaltungen.pdf
Herstellerangaben abfallende Spannung, so dass über T3 an 150 W bei 14,5 V. In der Praxis liegt der Eingang RA2 eine zum Ladestrom pro- StromnachAbzugallerVerlustebeimaxi- portionale Spannung liegt (350 mV/A). mal 7,5 A. Die Verstärkung beträgt (R4+P1)/R2, die DasSystemistfürschnellesLadenmitho- Spannung an R4
in „[S] Sammlung von elektr. Schaltungen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
S29JL064H_00_A7_e.pdf
J7 K7 L7 M7 NC* NC* A13 A12 A14 A15 A16 BYTE# DQ15/A-1 VSS NC* NC* C6 D6 E6 F6 G6 H6 J6 K6 A9 A8 A10 A11 DQ7 DQ14 DQ13 DQ6 C5 D5 E5 F5 G5 H5 J5 K5 V WE# RESET# A21 A19 DQ5 DQ12 CC DQ4 C4 D4 E4 F4 G4 H4 J4 K4 RY/BY# WP#/ACC A18 A20 DQ2 DQ10 DQ11 DQ3 C3 D3 E3 F3 G3 H3 J3 K3 A7 A17 A6 A5 DQ0 DQ8 DQ9 DQ1 C2 D2 E2 F2 G2 H2 J2 K2 L2 M2 A2 NC* A3 A4 A2 A1 A0 CE# OE# VSS NC* NC* A1 B1 L1 M1 NC* NC* * Balls are shorted together via the substrate but noNC*onnecNC* to the die. September 19, 2007 S29JL064H_00
in „[Verkaufe] 5xSDRAM (4Meg x 16 x 4 Banks) und 5xFLASH (64Meg 8 o. 16 Bit)“ · Markt ·
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PDF
GM47_Integrators_Manual_R1C.pdf
Idle Mode Transmit/Operation Voice/CSD <5mA <250mA (<2A peak) GSM850 and GSM900 Data (GPRS 4+1) <5mA <350mA (<2A peak) Voice/CSD <5mA <250mA (<1.75A peak) GSM1800 and GSM1900 Data (GPRS 4+1) <5mA <350mA (<1.75A peak) Note! The power consumption
in „GM47 GSM Spannungsversorgung aus LiIo-Akku“ · Mikrocontroller und Digitale Elektronik ·
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Peavey_Semiconductors_Cross_Ref_2009.pdf
T&R SZG-40102 1N4744 70440102 15V, 1W 5% ZENER 1N4003 70464003 200V, 1A DIODE 1N4004 70464003 400V, 1A DIODE 1N4007 70464007 1000V, 1A SIL. 1N4148 1N914, 1N4 70464148 75V, 10MA SIL. 1N4742 70464742 12V, 1W, 5% ZENER
in „Transistor Ersatztypen“ · Analoge Elektronik und Schaltungstechnik ·
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Peavey_Semiconductors_CrossRef_2010.pdf
T&R SZG-40102 1N4744 70440102 15V, 1W 5% ZENER 1N4003 70464003 200V, 1A DIODE 1N4004 70464003 400V, 1A DIODE 1N4007 70464007 1000V, 1A SIL. 1N4148 1N914, 1N4 70464148 75V, 10MA SIL. 1N4742 70464742 12V, 1W, 5% ZENER
in „Transistor Ersatztypen“ · Analoge Elektronik und Schaltungstechnik ·
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tcrt5000_application_note.pdf
input of the 74HCT74 flip-flop and, at the same output as the pulse rises. a) b) +10 V +10 V R F = 20 mA Reflex sensor F = 20 mA Reflex sensor F 220 k 7 7 2 TLC271 2 TLC271 6 6 3 3 Output Output RS RE 4 4 RF RS RE RI 390 1 k 390 1 k 1 k 220 k R I 1 k GND GND Figure 18. Circuits with operational amplifier
in „Alten Stromzähler elektronisch auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Gooligum.pdf
implement this circuit by: placing shunts (six of them) across every position in jumper block JP4, connecting segments A-D, F and G to pins RB0-1 and RC1-4 placing a single shunt in position 1 (“RA/RB4”) of JP5, connecting segment E to pin RB4 placing a shunt across pins 1 and 2 (“GND”) of JP6
in „PIC10F202/etc: Programmierung unter Linux(Ubuntu)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2030238.pdf
; V CC = 4.5 V - 0 0.1 - 0.1 - 0.1 V O = 20 A; V CC = 6.0 V - 0 0.1 - 0.1 - 0.1 V O = 6.0 mA; V CC = 4.5 V - 0.15 0.26 - 0.33 - 0.4 V O = 7.8 mA; V CC = 6.0 V - 0.16 0.26 - 0.33 - 0.4 V II input leakage V I V
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Datei
Configuration.h
115200, 250000, 500000, 1000000] */ #define BAUDRATE 115200 //#define BAUD_RATE_GCODE // Enable G-code M575 to set the baud rate /** * Select a secondary serial port on the board to use for communication with the host. * Currently Ethernet (-2) is only supported on Teensy 4.1 boards. * :[-2, -1, 0, 1, 2
in „Custom 3D-Drucker zu ausgebuchtete Ecken“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
eGC.pdf
s s s s R2R R R R R R R R R R R R R m m m m m m m m m m m m m R1R1R17181910P0P0P0P0P0P0 h . . . . . . . . . . . . . SDRC_A0 VTT 4 4 4 4 4 4 4 4 4 4 4 4 4 SDRC_A1 SDRC_A2 SDRC_A3 7 8 9 SDRC_A4 RR R R SDRC_A5 SDRC_A6 t t t SDRC_A7 s s s SDRC_A8
in „[Suche] Interessierte(n) an Projekt (ARM/FPGA)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Handbuch_hager_DE_Internet.pdf
30 mA 7.02 Schwimmbecken und Springbrunnen Stromquelle für SELV 30 mA 7.03.4.1.5.1 Räume mit elektrischen Sauna-Heizgeräten 30 mA Alle Stromkreise 7.04.4.1.0.10 Baustellen 30 mA Steckdosen ≤ 32 A 30 mA Handgeführte
in „20A nach 25A“ · Haus & Smart Home ·
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PDF
LT1170.pdf
* PULSE ENGINEERING 92114 COILTRONICS 50-2-52 L2 + VIN 4 H C3 V SW 2.2 F OPTIONAL C5 – OUTPUT 200 F + LT1170 D2 FILTER C5* R1 1N914 100 F 3.74k GND VC FB R3 R2 +C2 470 1.24k 1 F R4 C1 L1** 10 1 F 50 H r 5V, 4.5A + D1 C4 100mA 1000 F – MINIMUM 1170/1/2 TA13
in „Bei Schaltregler nur Minimum- und Maximum-PowerSwitchStrom angegeben“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
1287039752_f2c70451.pdf
of the individual w1 = AlepYcx + A2eYCx + A3eCYnZ + A4eYTx lines in a coupled pair, such that the differential voltage 212= AIR,e-YCx + A2RceYcx + A3Rae-Ynx + A4R,eeirrx is zero (Le. AV, = AV2 = 0). The ability of the mi
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Deutsche_Bundespost_Informiert.pdf
h t i n B u n d e s a n z e i g e ra l s N r . 2 3 4 v o m 1 6 . e n e T o n s F e r n s e h s i g n a l e ( n u r B M i n f o m a t i o n D e z e m b e r 1 9 7 0 ) w i r d u n t e r B e z u g a u f A b s c h n i t t I U d e r G e n e h
in „Mittelwelle: Reichweite und Leistung?“ · HF, Funk und Felder ·
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Datei
EPaper_1_54_Test.ino
dc=*/ 9, /* reset=*/ 8); // Uno, Enable U8g2 16 bit mode for this display //U8G2_ST75256_JLX256160M_1_4W_SW_SPI u8g2(U8G2_R0, /* clock=*/ 13, /* data=*/ 11, /* cs=*/ 10, /* dc=*/ 9, /* reset=*/ 8); // Uno, Enable U8g2 16 bit mode for this display //U8G2_ST75256_JLX256160M_1_4W_HW_SPI u8g2(U8G2_R0,
in „Fragen zu Waveshare e-paper 1.54"“ · Mikrocontroller und Digitale Elektronik ·
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Datei
NOKIA_TEST_1.asm
Serial Data Line Low NOP BSF SCL ;High an Clock NOP BCF SCL ;Low an Clock BTFSC DISPBUFF,5 ;ist Bit5 1? BSF SDA ;Serial Data Line High BTFSS DISPBUFF,5 ;ist Bit5 0? BCF SDA ;Serial Data Line Low NOP BSF SCL ;High an Clock NOP BCF SCL ;Low an Clock BTFSC DISPBUFF,4 ;ist Bit4 1? BSF SDA ;Serial Data Line High BTFSS DISPBUFF,4 ;ist Bit4 0? BCF SDA ;Serial Data Line Low NOP BSF SCL ;High an Clock NOP BCF SCL ;Low an Clock BTFSC DISPBUFF,3 ;ist Bit3 1? BSF SDA ;Serial Data Line High BTFSS DISPBUFF,3 ;ist Bit3 0? BCF SDA ;Serial
in „Nokia 3310 Display mit PIC steuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN-162.pdf
Q2 below that e R resistor connected to pin 3 provided by Q3 by an amount which is established by R1. It In equilibrium Qe Q1 can be shown that this requires a differential input to Q1 and Q4, of approximately 15mV. Since the circuit is symmetrical, i.e., CV e V3 # T (4) the threshold voltage to reverse
in „LM2907/17 Frequenz-Spannungswandler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Frequenznutzungsplan2011pdf.pdf
Übertragung von meteorologischen Daten bedingungen: Maximal zulässige äquivalente Strahlungsleistung: 100 mW bis max. 10 km Aufstiegshöhe 300 mW bis max. 30 km Aufstiegshöhe Kanalraster: 20 kHz / 200 kHz Frequenznutzungsteilplan: 219 Eintrag: 219001 Stand: AUGUST 2011 Frequenzbereich: 406 - 406,1 MHz Nutzungsbestimmung
in „Interessante Frequenzen zwischen 100KHz und 2GHz“ · HF, Funk und Felder ·
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PDF
Fundamentals-of-PCB-Technologies.pdf
8:1 10:1 14:1 16:1 Trace to edge of board 0.014 0.010 0.008 0.006 (in) HDI technology N/A N/A 4-8 layers 10 + layers Pad to drill allowance (in)0.012 0.010 0.008 0.006 Min. solder mask web (in) 0.003 0.0025
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DS-CY7C1471V33-133AXC.pdf
SS 26 55 VSS VDDQ 27 54 V DDQ DQ D 28 53 DQ A DQ D 29 52 DQ A DQP D 30 51 DQP A 3 3 3 3 3 3 3 3 3 4 4 4 4 4 4 4 4 4 4 5 1 0 E A A A A A A S D A A D 8 4 V V A A A A A A A M 2 1 C C N N Document Number: 38-05288 Rev. *O Page 4 of 22 CY7C1471V33 Pin Definitions Name I/O Description A0, A1, A Input- Address
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PDF
txs0104e.pdf
to 3.6 V 2.3 V to 5.5 V VCCA × 0.8 V V IB≥ VCCB – 0.4 V I = 1 mA, VOLA OL 1.65 V to 3.6 V 2.3 V to 5.5 V 0.4 V V IB≤ 0.15 V I = –20 A, VOHB OH 1.65 V to 3.6 V 2.3 V to 5.5 V VCCB × 0.8 V V IA≥ VCCA – 0.2 V I = 1 mA, VOLB OL 1.65 V to 3.6 V 2.3 V to 5.5
in „TXS0104E LevelShifter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bq2057w.pdf
RATING TABLE DERATING FACTOR TA≤ 25°C TA= 70°C PACKAGE ABOVE T A 25°C POWER RATING POWER RATING DGK 3.4 mW/°C 424 mW 271 mW recommended operating conditions MIN MAX UNIT Supply voltage,CC 4.5 15 V Operating free-air temperature raAge, T −20 70 °C electrical characteristics over recommended operating free-air
in „LiPo Lader BQ2057 schaltet nicht ab“ · Mikrocontroller und Digitale Elektronik ·
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PDF
_Dokumentation_V1.2_Stand_29.03.2012.pdf
(offset , Tabelle_animationen) ' 3. Byte-Muster ausgeben La0 = 0 : La1 = 1 : La2 = 0 : La3 = 0 : La4 = 0 : La4 = 1 'Latch 3 Offset = Offset + 1 Porta = Lookup(offset , Tabelle_animationen) ' 4. Byte-Muster ausgeben La0 = 1 : La1 = 1 : La2 = 0 : La3 = 0 : La4 = 0 : La4 =
in „Tutorial 10x10x10 LED-Cube“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ERM4004-1_Series_Datasheet.pdf
M 0 A 12.25 e t . g N 4 S 5.70 e e 5 0 i 东 E R N S D 0 0 5 7 s i O E D 3.50 . 2 1 4 e 日 M 3 1 2 2 c t : . . a s 旭 A 0 0 l a D 2 2 7 8 o E 1 1 A K : : e t N J i N g U l i . 3 R p ± B B B s yi e D E E be
in „LCD Display Pin belegung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Forum.PDF
2 1 PPd P2 PPJM P1 M M M M I 1 C C C s 2 I I GND GND GND GND C C s POC1S I D Title D Size Number Revision A4 Date: 6.13.2020 Sheet of File: C:\Aussortieren_Vor Win10\..\Display.SchDorcawn By: 1 2 3 4 1 2
in „Raspberry Pi Compute Module 3 (Carrier Board)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Micrel.pdf
— 0.2 1 % (Note 3, Note 4) Output Voltage (Note 4) ∆VO/∆T — 20 100 ppm/°C Temperature Coefficient — 80 200 MIC2915x OUT = 100 mA — 220 — MIC2915x OUT = 750 mA — 350 600 MIC2915x OUT = 1.5A — 80 175 MIC2930x
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ZigBit_OEM_Module_Product_Datasheet.pdf
C R R T A L L K I O L 7 6 T T T T D C _ D E 3 2 1 0 M M C P OP A A R R C C U N S S P P OP I I I G G U U U U I I C D R O G G G S P S S 18 17 16 15 14 13 12 11 10 98 7 6 5 4 3 2 1 GPIO3 1 0 8 GPIO4 2 4RF_GND GPIO5 1 7RFN_IO 2 4 DGND 2 4RF_GND DGND 2 4RFP_IO
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PDF
datasheet_AD8321_0.pdf
(commonly called a mini- mum loss pad) should be used to maintain a properly matched circuit. +9V C4 C5 C6 0.1mF 0.1mF 0.1mF 0.1mF 0.1mF 0.1mF0.1mF 10mF VCC VCC VCC VCC VCC BYP1 BYP2 0.1mF 0.1mF VIN+ AD8321 VOUT DIPLEXER RIN 75V C1 0.1mF VIN– ATTENUATOR INPUT CORE R1 POWER- 82.5V DOWN/ DATA LATCH SWITCH
in „Ansteuerung eines AD8321“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM4863.pdf
Conditions LM4863 Units Typical Limit (Limits) (Note 12) (Note 13) V Output Offset Voltage V = 0V 5 50 mV (max) OS IN PO Output Power (Note 15) THD+N = 1%, f = 1kHz (Note 16) LM4863MTE, R = 3Ω 2.5 W L LM4863LQ, R L= 3Ω 2.5 W LM4863MTE, R L = 4Ω 2.2 W LM4863LQ, R L= 4Ω 2.2 W LM4863, R L 8Ω 1.1 1.0 W (min
in „PAM8403 wo/wie am Raspberry Pi 3 anlöten?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN-1057.pdf
design can lead to a trouble-free application and can reduce RS-485 drivers are usually called “60 mA drivers.” The name time to market. relates to the allowable loading. Developing 1.5V across the RS-485 addresses a need beyond the scope of RS-422, 60 termination load (120 at each end of the bus) requires which covers buses with a single driver and multiple receiv- 25 mA. The worst-case input current of a UL is 1 mA (at ex- ers. RS-485 provides a low-cost, bidirectional, multipoint in- treme common mode, explained later). Figure 2 shows the terface that supports high
in „Störung bei RS485“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN-1057.pdf
design can lead to a trouble-free application and can reduce RS-485 drivers are usually called “60 mA drivers.” The name time to market. relates to the allowable loading. Developing 1.5V across the RS-485 addresses a need beyond the scope of RS-422, 60 termination load (120 at each end of the bus) requires which covers buses with a single driver and multiple receiv- 25 mA. The worst-case input current of a UL is 1 mA (at ex- ers. RS-485 provides a low-cost, bidirectional, multipoint in- treme common mode, explained later). Figure 2 shows the terface that supports high
in „RS485-Signale entstören“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN-1057.pdf
design can lead to a trouble-free application and can reduce RS-485 drivers are usually called “60 mA drivers.” The name time to market. relates to the allowable loading. Developing 1.5V across the RS-485 addresses a need beyond the scope of RS-422, 60 termination load (120 at each end of the bus) requires which covers buses with a single driver and multiple receiv- 25 mA. The worst-case input current of a UL is 1 mA (at ex- ers. RS-485 provides a low-cost, bidirectional, multipoint in- treme common mode, explained later). Figure 2 shows the terface that supports high
in „RS485 FailSafe Beschaltung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN-1057.pdf
design can lead to a trouble-free application and can reduce RS-485 drivers are usually called “60 mA drivers.” The name time to market. relates to the allowable loading. Developing 1.5V across the RS-485 addresses a need beyond the scope of RS-422, 60 termination load (120 at each end of the bus) requires which covers buses with a single driver and multiple receiv- 25 mA. The worst-case input current of a UL is 1 mA (at ex- ers. RS-485 provides a low-cost, bidirectional, multipoint in- treme common mode, explained later). Figure 2 shows the terface that supports high
in „Stoersicherheit“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN-1057.pdf
design can lead to a trouble-free application and can reduce RS-485 drivers are usually called “60 mA drivers.” The name time to market. relates to the allowable loading. Developing 1.5V across the RS-485 addresses a need beyond the scope of RS-422, 60 termination load (120 at each end of the bus) requires which covers buses with a single driver and multiple receiv- 25 mA. The worst-case input current of a UL is 1 mA (at ex- ers. RS-485 provides a low-cost, bidirectional, multipoint in- treme common mode, explained later). Figure 2 shows the terface that supports high
in „RS485 Abschlusswiderstände“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ERM2004-1_Series_Datasheet.pdf
5 e 1 8 c d O 1 r 0 e 1 2 h B 0 c 03. 0±06. 91 C i 0 e : 03. 0±04. 71 e t 3 s E E 03.0±00. 01 S e 4 S D D l t PYT 03. 0±05. 2 n L u N m . I m o 司 E . O ± C 公 P i y e 限 c g . n A a l I P i s e l o 有 e A e t
in „Neue LCD Platine“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ad7328.pdf
See Table 6; typical specifications fCCV < 4.75V V DRIVE 2.7 5.25 V Normal Mode (Static) 0.9 mA V DD =SS16.5V,V /VCC DRIVE 5.25V Normal Mode (Operational) fSAMPLE 1 MSPS DD 360 μA V DD= 16.5V SS 410 μA V SS−16.5V CCand IDRIVE 3.2 mA V CC DRIVE
in „was bringt ADC mit Sequencer (AD7328)?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main_14032021.c
= 0; //1 = Device clock is derived from Timer1 oscillator //0 = Device clock is derived from another source T1CONbits.T1CKPS1 = 1; //Prescale 1=8 1=4 0=1 T1CONbits.T1CKPS0 = 1; //Prescale 1=8 0=4 0=1 T1CONbits.T1OSCEN
in „LCD verliert Zeichen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
c64.pdf
belas˜en wurde. Werte f˜r Musiknoten Nr. Note-Oktave Frequenz High-Byte (Hex) Low-Byte (Hex) 0 C-0 16.4 $01 $16 1 C#0 17.3 $01 $27 2 D-0 18.4 $01 $39 3 D#0 19.4 $01 $4b 4 E-0 20.6 $01 $5f 5 F-0 21.8 $01 $74 6 F#0 23.1 $01 $8a 7 G-0 24.5 $01 $a1 8 G#0 26.0 $01 $ba 9 A-0 27.5 $01 $d4 10 A#0 29.1 $01 $f0 11 H-0 30.9 $02 $0e 12 C-1 32.7 $02 $2d 13 C#1 34.6 $02 $4e Abbildung 2: Ausschnitt aus einer Frequenztabelle 2.4 Wellenformen F˜r die Auswahl einer der m˜glichen Wellenformen (Dreieck, ˜agezahn, Rechteck und Rauschen) sind die
in „C64 SID mit Arduino Duemilanove ansteuern (korrigierte Version)“ · Mikrocontroller und Digitale Elektronik ·