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90000866_C.pdf
On-demand Distance Vector routing) protocol. Figure 3‐07. Sample Transmission Through a Mesh Network R E R E R R R C E R R © 2008 Digi International, Inc. 23 XBee ZNet 2.5/XBee‐PRO ZNet 2.5 ZigBee OEM RF Modules v1.x4x AODV (Ad-hoc On-demand Distance Vector) Routing Algorithm Routing under the AODV protocol
in „XBee pro Funkmodul mit ATMega8515“ · HF, Funk und Felder ·
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Trask_TLT_Tutorial.pdf
Figure 12 - Order-4 Transmission Line Guanella[1]. TLTrealizationsusingmagnetic Transformer Having a 3:5 Voltage materials to extend the low and high band- (1:2.78 Impedance) Ratio width limits can have frequency bandwidths of four decades or more, The technology and synthesis procedures are readily available
in „Mischer selber bauen“ · Analoge Elektronik und Schaltungstechnik ·
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dokserv.pdf
NS(k) enthält nur noch das hochpaßgefilterte Quantisierungsgeräusch e(k) und es ergibt sich damit folgender Amplitudenfrequenzgang R NS): * R NSΩ ) = H e(z)z eΩ⋅E (Ω )= H e(jΩ ⋅H e(jΩ )⋅E(Ω ) 2 = 1 −os Ω + sin2Ω ⋅E Ω ) (5.78) = 2 1−cos Ω ⋅E Ω) Für ( ) gilt: 2 2 1 P = E e (k)}= ∑ ei⋅ P{ e = i}= i 12 1 π 2 P = ∫ E Ω ) dΩ = E 2(Ω ) (5.79) 2π −π ⇒ E Ω =) 1 12 Mit Gl. (5.78) und Gl. (5.79) kann die Hüllkurve des Spektrums des modifizierten Phasenfehler- signals rNS(k) berechnet
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STM103.pdf
decimal digits. 78/92 Doc ID 13587 Rev 11 STM32F103x8, STM32F103xB Package characteristics Figure 43. TFBGA64 - 8 x 8 active ball array, 5 x 5 mm, 0.5 mm pitch, package outline B D A D1 A A1 e F H F G F E D E1 E C B A e 1 2 3 4 5 6 7 8 A1 ball pad corner Øb (64 balls) A3 A4 A2 SeatingC Bottom view plane ME_R8 1. Drawing is not to scale. Table 54. TFBGA64 - 8 x 8 active ball array, 5 x 5 mm, 0.5 mm pitch, package mechanical
in „STM32 2 Versorgungsspannungen?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Main.vhd
-- USER1WIN when 3 => LCD_OUT(0) <= x"55"; -- U LCD_OUT(1) <= x"73"; -- s LCD_OUT(2) <= x"65"; -- e LCD_OUT(3) <= x"72"; -- r LCD_OUT(4) <= x"20"; -- - LCD_OUT(5) <= x"31"; -- 1 LCD_OUT(6) <= x"20"; -- - LCD_OUT(7) <= x"3A"; -- : LCD_OUT(8) <= x"20"; -- - LCD_OUT(9) <= POS4; -- LCD_OUT(10) <= POS3;
in „[VHDL] Komponenten Einbinden und wegoptimieren von Signalen verhindern“ · FPGA, VHDL & Co. ·
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SSD1327_1.2.pdf
Rev 1.2 SSD1327 4 BLOCK DIAGRAM Figure 4-1: SSD1327 Block Diagram V CI BGGND V DD V DD Regulator . r . COM63 RES# i . COM62 r . CS# e D . | D/C# o o . E(RD#) e m . | R/W# (WR#) M D o . A l C . COM1 BS0 c D c . COM0 BS1 C r D y . BS2 M t G r I G D7 D6 . D5 e . D4 i . SEG0 D3 D . SEG1 D2 t D1 e . D0 m
in „OLED Display mit SSD1327 Controller ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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Data_sheet_XBee_XBee-Pro_Series_2.pdf
any new data). See Parent Operation section in chapter 6 for details. Broadcast Data Transmission E E E R R R C R R E Legend C=Coordinator E R E R=Router E=End Device Each node that transmits the broadcast will also create an entry in a local broadcast transmission table. This entry is used to keep
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SEMIKRON_DataSheet_SKKH_57_07897942.pdf
*A▯ SKKT 57B /+ + ,▯$# 9&8 2+3 $77 * ▯▯▯▯ 5▯!# / /+(+B) + ,▯5$# 9& ▯▯▯▯ 7▯4 / + 3 5$# 9& ▯▯▯▯ "▯# ▯C + ,▯ %% 80% + ,▯5$# 9&8 /0% 3 /001 8 %% 3 /%01 ▯▯▯▯ 5# ▯* Features ▯▯ + ,▯$# 9&8 2D3 5 *8 ▯D <▯▯ 3 5 *<E▯ 5 E▯ ▯ / 3 7▯!; F / $ E▯ ▯ ▯▯▯▯ ▯ ▯ ▯▯▯ ▯ ▯▯▯ ▯▯▯▯▯ ▯▯▯ ▯ % %01 ▯▯▯▯▯ ▯▯ ▯▯▯▯ ▯▯▯▯▯▯▯▯ ▯▯▯▯▯ (▯▯<▯▯ + ,▯5$# 9& ▯▯▯▯ 5#7 *<E▯ (▯,<▯▯) + 3 5$# 9& ▯▯▯▯ 5777 /<E▯ ▯▯▯▯▯▯▯▯▯ ▯ ,▯ ▯▯ ▯ ▯▯▯▯▯ ▯▯ ▯▯▯ ▯▯ ▯▯ ▯▯ G + ,▯5$# 9& ▯ 67 E▯ ▯ ▯ + ,▯$# 9&8 ▯▯▯▯ < ▯▯▯▯ 5#7 < $#7 ▯* ▯▯▯▯▯▯▯▯▯▯ ▯▯ ▯▯▯▯ ▯▯▯▯▯ ▯▯▯▯ ▯▯ !" #"$ ▯ +
in „[V] 6 Stück SKKT 57 B14 E - Thyristor-/Diodenmodul“ · Markt ·
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PDF
NCO8703.pdf
The number of turns can be calculated with: n = SQR(L.1/( × × A)) o r 1 2 n = SQR(1.25E − 6 × 50E − 3/(4πE − 7 × 20 × 4π(10E − 3) ) = 5.6 turns. In practice 6 twisted turns of the primary and secondary windings have been wound around the rod. Figure 8 shows the tapped
in „Stackpole Ferrit Kerne für RF Verstärker“ · HF, Funk und Felder ·
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top222y.pdf
Typical Performance Characteristics BREAKDOWN vs. TEMPERATURE FREQUENCY vs. TEMPERATURE 1.1 9 1.2 9 5 6 6 A ) I 1.0 1 ( ) P C P e ° c ° a 2 e 20.8 l o u o o t e t V e1.0 r e0.6 w l t l o a u a k m t r0.4 a o u o r ( O ( B 0.2 0.9 0 -50 -25 0 25 50 75 100 125 150 -50 -25 0 25 50 75 100 125 150 Junction
in „Suche Ersatz für TOP222Y“ · Mikrocontroller und Digitale Elektronik ·
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PDF
psm712.pdf
FIGURE2 10,000 PULSEWAVEFORM 120 s P TEST a f tf Peak ValuePP WAVEFORM W o 100 PARAMETERS r 1,000 600W 8/20µs Waveform - t = 8µs w n 80 -t tf= 20µs P e e d e u u e 60 P l a 100 P P k 40 -P e t = t PP - 20 d PP/2 IP 10 0.1 1 10 100 1,000 10,000 0 0 5 10 15 20 25 30 d- Pulse Duration - µs t -
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Datei
TestCJS.asm
= 0b00111100 ;8 bits,2 Zeilen,5x7dots .equ LCD_on = 0b00111111 ;schalte LCD ein .equ entry_mode = 0b00000110 ;setze Cursor .equ E = PD6 ;E an Pin PD6 .equ RW = PD4 ;RW an Pin PD4 .equ RS = PD3 ;RS an Pin PD3 .equ CS1 = PC2 ;Linke Seite
in „Pollin Display TG12864B-03“ · Mikrocontroller und Digitale Elektronik ·
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FL5150-D.pdf
73.4 3600 3600 4700 4700 D 1200 m 74 3625 3625 4675 4675 m 1210 74.6 3650 3650 4650 4650 e r 1220 75.2 3675 3675 4625 4625 C 1230 75.8 3700 3700 4600 4600 o t 1240 76.4 3725 3725 4575 4575 o l 1250 77 3750 3750 4550 4550 e 1260 77.5 3775 3775 4525 4525 r 1270 78 3800 3800 4500 4500 1280 78.5
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SSD1306B_1.1.pdf
Rev 1.1 P 7/61 May 2014 Solomon Systech 4 BLOCK DIAGRAM Figure 4-1 SSD1306B Block Diagram RES# CS# E (RD#) R/W#(WR#) t a ) BS2 y A e n COM62 BS1 c l R r o e COM60 BS0 C f i D n m vr | M t D G C o D COM2 D7 I i ( y C COM0 D5 p M l D4 r R i D3 G D SEG0 D2 n r SEG1 D0 m iv | e D | S SEG127 VDD V n COM1
in „OLED zeigt nur wirre Pixel am I2C“ · Mikrocontroller und Digitale Elektronik ·
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YAMAICHI_TS-Katalog-2017_01_2.pdf
/ 5mm) available. The 5mm type can be used as a piggy-back socket OUTLINE SOCKET DIMENSIONS RECOMMENDED PCB LAYOUT A J ±0. 1 B 20 30 R 3.5 1.778 D ± 0 .1 J K C G F E D . . 1.2 ∅ 3.3 Hole 0 0 H 4.0 ± ± H
in „TSOP-66 Sockel zum testen“ · Mikrocontroller und Digitale Elektronik ·
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ttester.pdf
-1 5 m168a-4 4 m168-2 4 m168a-5 3 m168-3 3 m168a-6 m168-2 m168a-5 t 2 m168-3 t 2 m168a-6 c 1 c 1 e e / 0 / 0 o -1 o -1 r r E -2 E -2 -3 -3 -4 -4 -5 -5 1 10 100 1k 10k 100k 1M 10M 100M 1 10 100 1k 10k 100k
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ttester.pdf
-1 5 m168a-4 4 m168-2 4 m168a-5 3 m168-3 3 m168a-6 m168-2 m168a-5 t 2 m168-3 t 2 m168a-6 c 1 c 1 e e / 0 / 0 o -1 o -1 r r E -2 E -2 -3 -3 -4 -4 -5 -5 1 10 100 1k 10k 100k 1M 10M 100M 1 10 100 1k 10k 100k
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ttester.pdf
-1 5 m168a-4 4 m168-2 4 m168a-5 3 m168-3 3 m168a-6 m168-2 m168a-5 t 2 m168-3 t 2 m168a-6 c 1 c 1 e e / 0 / 0 o -1 o -1 r r E -2 E -2 -3 -3 -4 -4 -5 -5 1 10 100 1k 10k 100k 1M 10M 100M 1 10 100 1k 10k 100k
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BD249.pdf
- n t100 i i D 80 e o P 60 u m a M 40 -t t P 20 0 0 25 50 75 100 125 150 TC- Case Temperature - °C Figure 5. P R O D U C T I N F O R M A T I O N 4 BD249, BD249A, BD249B, BD249C NPN SILICON POWER TRANSISTORS JUNE 1973 -
in „Kühlkörperberechnung“ · Analoge Elektronik und Schaltungstechnik ·
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2013821185244121.pdf
ate-S ource V oltage VG S 8 V C ontinuous D rain C urrent ID 5 A P ulsed D rain C urrent ID M 20 A M axim um P ow er D issipation T A = 25 P D 2.0 W 1.6 W TA = 70 Therm al R esistance,Junction-to-A m bient R JA 78 /W Therm al R esistance,Junction-to-C ase R JC 40
in „Laderegler Li-Ion 3s“ · Analoge Elektronik und Schaltungstechnik ·
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ADC_ApplicNotes.pdf
and a maximum attenuation of –6 dB for differential mode interference. –150 AIN(+) AIN(+) –200 77.5kHz 78.5kHz b. Gain = 2 AIN(–) AIN(–) 0 AD771x AD771x –50 a. b. –100 Figure 8. External Passive Filter Schemes When using external filtering, it is important to remember the restrictions on the sizes
in „ADC-Überspannungschutz mit Z-Diode; Einfluss auf die Messgenauigkeit“ · Mikrocontroller und Digitale Elektronik ·
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ERM4004-1_Series_Datasheet.pdf
e e l ) s S x B o i l P H e a P a l g l r r e e r t z g A S D e u e i v 1.20 O o B w c 0 M 0 i A . B 6 0 5 ± P 1 . 0 C 0 0 4 4 3 7 i 0 . 1 1 3 2 t 9 8 e 1 1 r e c r a 4.89 h C 6.09 T a P P . .5 ? ?4 4
in „LCD Display Pin belegung“ · Mikrocontroller und Digitale Elektronik ·
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AIC1563CS.pdf
Switch Saturation Voltage vs Emmiter Current Saturation Voltage vs Collector Current 1.8 0.8 VCC = 5V V VCC = 5V ) PIN 7 = VCC (1.7 PIN 1, 7, 8 = VCC ( PIN 2, 3, 5 = GND g PIN 3, 5 = GND e 0.6 l t V1.6 o n V t o r1.5 a 0.4 t u S a ,1.4 S T ,T Forced Beta = 20 S S 0.2 E E VC.3 VC 1.2 0 0 0.5 1 1.5 0
in „MC34063 = AIC1563 Konstantatromquelle“ · Analoge Elektronik und Schaltungstechnik ·
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ina125.pdf
REFERENCE VOLTAGE DEVIATION REFERENCE TURN-ON SETTLING TIME vs TEMPERATURE 15 50 ) 12 p VREF= VBG, 2.5V, 5V, or 10V ( ) 9 n 0 % 6 t r i r 4 e –50 E D c 0 g n l e –3 V –100 e VREF = 10V e R –6 n –9 VREF= 5V r –150 f –12 R V REF= 2.5V –15 –200 0 10 20 30 40 50 –75 –50 –25 0 25 50 75 100 125 Time From Power
in „Kraftsensor PSD-S1 in Verbindung mit INA125“ · Analoge Elektronik und Schaltungstechnik ·
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ina125.pdf
REFERENCE VOLTAGE DEVIATION REFERENCE TURN-ON SETTLING TIME vs TEMPERATURE 15 50 ) 12 p VREF= VBG, 2.5V, 5V, or 10V ( ) 9 n 0 % 6 t r i r 4 e –50 E D c 0 g n l e –3 V –100 e VREF = 10V e R –6 n –9 VREF= 5V r –150 f –12 R V REF= 2.5V –15 –200 0 10 20 30 40 50 –75 –50 –25 0 25 50 75 100 125 Time From Power
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MMBV432LT1-D_1_.pdf
150 f = 100 MHz 10 50 1 2 3 5 7 10 0 2 4 6 8 10 VR, REVERSE VOLTAGE (VOLTS) VR, REVERSE VOLTAGE (VOLTS) Figure 1. Diode Capacitance Figure 2. Figure of Merit versus Voltage 2000 ) 1.06 E I 1000 V = 2.0 Vdc A T R R 1.04 R TA= 25°C
in „Bauteil identifizieren“ · Mikrocontroller und Digitale Elektronik ·
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AND8399-D.PDF
SLA Voltage Figure 20 gives a typical application schematic. D1 V 100 nF 100 nF 100 nF DD + VBAT C5 100 nF R R C4 C2 C3 C 6 C 1 100 mF 2 3 VDD VBB VBB 220 nF 32 14 27 VCP 11 CPN DIR 9 C 7 5 NXT 220 nF 4 10 CPP DO 31 25,26 MOTXP DI 2 mC CLK ANCV705211/ MOTXN 3 21,22 CS 13 MOTYP M CLR 15,16 ERR 12 6
in „Puls aus Sinuswelle herausrechnen“ · Mikrocontroller und Digitale Elektronik ·
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LCD_Display_1602.pdf
CG 4 RAM OFF time ) (5) a CG i 5 R(6) e a RAM Figure 13 e 6 (7) ( CG d 7 RAM o (8) V 4.5V r CG CC c 8 R(1) r 0.2V h RAM 0.2V 0.2V C 9 (2) Vss o CG 3 A RAM trcc toff D (3) t CG 0.1mS ≤ trcc≤ 10mS toff ≥1mS D B R(4) i - RAM
in „AT89S8252 in C programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
max774-max776.pdf
EFFICIENCY vs. INPUT VOLTAGE V OUT = -24V (NONBOOTSTRAPPED) VOUT = -24V OUTPUT (ZENER CONNECTION) V = -5V AT 100mA f OUT 90 6 90 - 88 / VIN 6V 4 VIN 5V 4 4 A VIN 6V A 86 A V = 5V M M BOOTSTRAPPED M 80 IN 80 ) ) ) 84 ( V = 4V ( VIN 4V ( Y IN Y Y 82 N N E C 70 C 70 I F F F 80 E E E NONBOOTSTRAPPED 60 60 78
in „[V] kleines Konvolut ältere DIL / DIP ICs (8€)“ · Markt ·
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Orion_Rev_3.0__1_.pdf
/DQ5R IO_B5_T23/DIFFIO_R34P/DQ1R T23 INA12 E27 IO_B6_E27/DIFFIO_R3P/DQ4R IO_B6_M22/DIFFIO_R14N M22 AA27 IO_B5_AA27/DIFFIO_R56P/DQ5R IO_B5_T24/DIFFIO_R34N/DQ1R T24 INA13 E28 IO_B6_E28/DIFFIO_R3N/DQ4R IO_B6_M25/DIFFIO_R22N M25 OVERFLOW_2 AA28 T25 E30 M26 AA29 IO_B5_AA28/DIFFIO_R45P IO_B5_T25/DIFFIO_R40N T26 INA14 F26 IO_B6_E30/DIFFIO_R13N/DQ2R IO_B6_M26/DIFFIO_R24N M27 RAND_2 AA30 IO_B5_AA29/DIFFIO_R44N/DM1R IO_B5_T26
in „Suche Firma die für Privat BGA FPGA reballing macht“ · Markt ·
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AD9235.pdf
P Y B F A 2 µ I C 2 I + D D D D D D D F N 2 Ω G 0 Ω G 1 Ω G 4 Ω G V 4 . G C 1 3 k 3 2 k 5 2 k 4 2 k D C 0 N 5 R 1 5 R 1 3 R 1 4 R 1 E E E E E µ 4 0 5 5 3 4 1 . E E E E C 0 8 K L L L L F S R 2 C V V V V 3 1 T E R C 0 N E S E S M U U µ S S D E 0 P U O D 3 k 3 k 3 . Y D N O L R 1 R 1 D C 0 B A E N V N G G D E G 5 µ L I E T 8 7 C 1 A I E EC 2 0 2 0 A T F I R R F K U D 4 µ C B A C 0 D D L A R X C V µ N C R F C N D A C 1 G F E E 2 Ω D + N R 5 D A F S N 4 0 S G D + C 1 D P E V N Y D D D 0 µ G B
in „Einstellen eines ADCs“ · Mikrocontroller und Digitale Elektronik ·
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MAX152.pdf
TIME EFFECTIVE BITS vs. 1 SIGNAL-TO-NOISE RATIO vs. AMBIENT TEMPERATURE INPUT FREQUENCY, WR-RD MODE 5 ) 1.6 8.0 ° 2 2 0 fIN 30.27 kHz 7.5 T 1.4 fSAMPLE= 400ksps A SNR = 48.2dB 7.0 U -20 A 1.2 ) I O V DD= 3.6V ( -40 B 6.5 T 1.0 I I E V DD= 3.3V A C 6.0 L R-60 E A 0.8 E 5.5 R -80 O V DD= 3.0V 5.0 VDD=
in „Ansteuerung A/D-Wandler MX152 (+/-Vref) Wechselspannungsmessung“ · Analoge Elektronik und Schaltungstechnik ·
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ON_NCP2820-D.pdf
8 , f = 1 kHz V = 3.6 V, R = 8 , f = 1 kHz @ T = +25°C p L p L A 90 160 NCP2820 CSP 80 NCP2820 DFN )140 Class AB 70 C (120 % 60 E Y U C 50 A100 E R Vp= 5 V C 40 Class AB E R L 4 F M 80 F 30 E E T 60 20 I Vp= 5 V D 10 R = 4 40
in „Signalterminierung bei class-d Verstärkern?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
souce_code_esrM.txt
lcd_out) . Include "tn2313def.inc"; fitting the description file . List; Turning Listing . Def sotye = R0; number of hundredths (1) . Def desyatye = R1; number of tenths (2) . Def edinicy = R2; number of units (3) . Def desyatki = R3; number ten (4) . Def sotni = R4; number hundreds of thousands of (5) . Def tyshi = R5; Number of thousands (6) . Def des_tysh = R6; Number of thousands (7) . Def a1 = R7; 1-byte variable a (low byte) . Def a2 = R8; 2nd byte variable a . Def a3 = R9; third byte of a variable . Def b1
in „Lcd zweite zeile wird nicht angesprochen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
esr_messgeraet.asm
Display . Include "tn2313def.inc"; fitting the description file . List; Turning Listing . Def sotye = R0; number of hundredths (1) . Def desyatye = R1; number of tenths (2) . Def edinicy = R2; number of units (3) . Def desyatki = R3; number ten (4) . Def sotni = R4; number hundreds of thousands of (5) . Def tyshi = R5; Number of thousands (6) . Def des_tysh = R6; Number of thousands (7) . Def a1 = R7; 1-byte variable a (low byte) . Def a2 = R8; 2nd byte variable a . Def a3 = R9; third byte of a variable . Def b1
in „Lcd zweite zeile wird nicht angesprochen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uz-8.lst
12920 Cf=0: Cr=0: Ch=0: Qf=2: Qh=0: GOSUB 13690 12925 PRINT : PRINT : PRINT 12930 PRINT " NEXT PAGE E FURTHER REPORTS R" 12940 INKEY Y$ 12950 IF Y$="R" OR Y$="r" THEN 12050 12960 IF Y$="E" OR Y$="e" THEN 12970 12965 GOTO 12940 12970 Cf=3: Cr=0: Ch=0: Qf=2: Qh=1: GOSUB 13690 12985 PRINT : PRINT : PRINT 12990 PRINT " NEXT PAGE E FURTHER REPORTS R" 12992 INKEY Y$ 12994 IF Y$="R" OR Y$="r" THEN 12050 12996 IF Y$="E" OR Y$="e" THEN 13000 12998 GOTO 12992 13000 Cf=3: Cr=0: Ch=1: Qf=3: Qh=1: GOSUB 13690 13001 FOR I=1 TO 3: PRINT
in „Rohde & Schwarz URY mit Fehlermeldung "FLT" im Display“ · HF, Funk und Felder ·
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AiMS2000.pdf
1 2 3 4 5 6 7 8 3 3 +3V3 - + - 1 1 2 3 4 5 6 7 8 C9 - J C22 C21 C1 C2 C7 C10 V 0 10uF 100nF10nF 100nF10nF 100nF10nF 3 RX3 - 1 3 5 7 9 + H D 2 4 6 T W +3V3 A F S I R21 GPIO2 C A 2 4 6 8 1 V 10k 1 2 . C R 3 4 1
in „Schaltplan Prüfung/Kritik LPC1769 + IMU + Bluetooth“ · Mikrocontroller und Digitale Elektronik ·
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LD03-23BxxR2.pdf
Nominal Output Voltage and Current Efficiency at 230VAC Capacitive Load (%) Typ. (µF) Max. LD03-23B03R2 3.3V/900mA 72 4000 LD03-23B05R2 5V/600mA 76 3000 LD03-23B09R2 9V/333mA 78 1200 UL/CE/CB 3W LD03-23B12R2 12V/250mA 78 1200 LD03-23B15R2 15V/200mA 79 680 LD03-23B24R2 24V/125mA 79 220 Note: * Use suffix
in „230 Volt PCB-Netzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TDA9983.pdf
0000 s 8 o s AVI_IF_BYTE24 5Bh R/W AVI_IF_RB24[7:0] 0000 0000 m 3 1 s t 9 e AVI_IF_BYTE25 5Ch R/W AVI_IF_RB25[7:0] 0000 0000 e B . r xxxxxxxxxxxxxxxxxxxxx xxxxxxxxxxxxxxxxxxxxxxxxxx xxxxxxx x x x xxxxxxxxxxxxxxxxxxxxxxxxxxxxxx xxxxxxxxxxxxxxxxxxx
in „Pollin - Receiver-Mainboard mit Twin DVB-[T,C] Tuner, NXP PNX8950EH“ · Mikrocontroller und Digitale Elektronik ·
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PDF
364-57379-TDA9983B.pdf
0000 s 8 o s AVI_IF_BYTE24 5Bh R/W AVI_IF_RB24[7:0] 0000 0000 m 3 1 s t 9 e AVI_IF_BYTE25 5Ch R/W AVI_IF_RB25[7:0] 0000 0000 e B . r xxxxxxxxxxxxxxxxxxxxx xxxxxxxxxxxxxxxxxxxxxxxxxx xxxxxxx x x x xxxxxxxxxxxxxxxxxxxxxxxxxxxxxx xxxxxxxxxxxxxxxxxxx
in „Pollin - Receiver-Mainboard mit Twin DVB-[T,C] Tuner, NXP PNX8950EH“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Neue_eMMC_extcsd_1.txt
0x00748000] Device is block-addressed Minimum Write Performance for 8bit: [MIN_PERF_W_8_52: 0x08] [MIN_PERF_R_8_52: 0x08] [MIN_PERF_W_8_26_4_52: 0x08] [MIN_PERF_R_8_26_4_52: 0x08] Minimum Write Performance for 4bit: [MIN_PERF_W_4_26: 0x08] [MIN_PERF_R_4_26: 0x08] Power classes registers: [PWR_CL_26_360: 0x00
in „Reparatur Panasonic TX50-AXW804, eMMC Karte, Alzheimer“ · Mikrocontroller und Digitale Elektronik ·
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IRF4905.pdf
Figure 12) IRF4905PbF 1000 1000 TOP - 15V TOP - 15V - 10V - 10V ) - 7.0V ) - 7.0V ( - 6.0V ( - 6.0V t - 5.0V t - 5.0V e BOTTOM - 4.5V e BOTTOM - 4.5V u 100 u 100 C C e e r r o o - - t t i i -4.5V r 10 -4.5V r 10 D D , , -D -D 20µs PULSE WIDTH 20µs PULSE WIDTH T c 25°C TC= 175°C 1 A 1 A 0.1 1 10 100 0.1 1
in „Frage zu Push Pull Abwärtswandler“ · Analoge Elektronik und Schaltungstechnik ·
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RequiresAcrobat6-5.pdf
temperature. ( See fig. 11 ) TJ≤ 175°C Starting J = 25°C, L = 1.9mH Pulse width ≤ 300µs; duty cycle ≤ 2% R G 25 , IAS = 18A. (See Figure 12) . IRL540N 1000 VGS 1000 VGS TOP 15V TOP 15V 12V 12V 8.0V 8.0V 6.0V 6.0V 4.0V 4.0V 3.0V 3.0V A BOTTOM 2.5V A BOTTOM 2.5V t 100 t 100 e e r r C C e e r r o o - - - 10
in „Power Mosfet Hexfet wie ansteuern ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
v1-oben.pdf
V + S E 470 - 0 IC2 3 R 1 30 RESET/PG5 PA7 71 3 R-RES-ISP C-RES PA6 72 + PA5 73 3 4,5nf PA4 74 3 PA3 75 + GND PA2 77 GND L-AVCC 100 PA1 78 C-VCC1 C-VCC2 C-VCC3 100µF E AVCC PA0 470 10µH R 99 26 4 3 4 3 4 3 4
in „first Projekt - div Steuerungen per Atmel im Auto“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main_O1.asm
0208 orr.w r2, r2, #8 c: 631a str r2, [r3, #48] ; 0x30 e: f04f 42aa mov.w r2, #1426063360 ; 0x55000000 12: f5a3 5330 sub.w r3, r3, #11264 ; 0x2c00 16: 601a str r2, [r3, #0] 18: 2306 movs r3, #6 1a: 9301 str r3, [sp, #4] 1c: 9801 ldr r0, [sp, #4] 1e: f7ff fffe bl 0 <main> 22: 2878 cmp r0, #120 ; 0x78 24: bfcc ite gt 26: f44f 5200 movgt.w r2, #8192 ; 0x2000 2a: f44f 4200 movle.w r2, #32768 ; 0x8000 2e: 4b04 ldr r3, [pc, #16] ; (40 <
in „C++ Exceptions mit gcc-arm-none-eabi“ · Mikrocontroller und Digitale Elektronik ·
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mega128-can128.pdf
Compare A Register (see page 9) B B B B B B ASSR 0 0 0 0 L 2 2 2 2 0x30-(0x50) (see page 9) - - - - A N R R (0xB6) Idem - - - X A N R R T C T E T C T O O COM1A COM1B COM1C WGM1 0x2F-(0x4F) TCCR1A [1,0] [1,0] [1,0] [1,0] (0x80) Idem Idem 1 1 WGM1 0x2E-(0x4E) TCCR1B N E - CS1[2..0] (0x81) Idem Idem I I [3,2
in „AtMega128 - At90Can128“ · Mikrocontroller und Digitale Elektronik ·
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irl1404.pdf
Drain-to-Source Voltage (V) Fig 1. Typical Output Characteristics Fig 2. Typical Output Characteristics 1000 2.5 e ID= 160A ) c ( t t i 2.0 e TJ= 25 C e u R C n ) e TJ= 175 C O e 1.5 u r li o u a - S r - o o 1.0 i n ( r a D D D , 0.5 I n ( V DS= 15V D 100 20µs PULSE WIDTH R V GS =10V 4.0 5.0 6.0 7.0 8.0 0.-60 -
in „Geiger Counter Sparkfun“ · Mikrocontroller und Digitale Elektronik ·
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fn8271_1_.pdf
EN R 2 2.2nF FSYNC_IN ISL8200AM PGOOD PGOOD 6 CLKOUT PH_CNTRL ISHARE_BUS VCC1 ISFETDRV1 VCC ISFETDRVE T 1 R T E S D D C H E C H G G V I I O P P P P ISHARE k 5 T 1 S 0 0 µ R R 1 C 1 S A S L R 8 2 0 VOUT 0
in „Spannungsregler 5V 10A“ · Analoge Elektronik und Schaltungstechnik ·
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GLCD.h
R70 0x46 #define R71 0x47 #define R72 0x48 #define R73 0x49 #define R74 0x4A #define R75 0x4B #define R76 0x4C #define R77 0x4D #define R78 0x4E #define R79 0x4F #define R80 0x50 #define R81 0x51 #define
in „STM32 24Bit Bmp nach 565RGB Format“ · Mikrocontroller und Digitale Elektronik ·
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GLCD.h
R70 0x46 #define R71 0x47 #define R72 0x48 #define R73 0x49 #define R74 0x4A #define R75 0x4B #define R76 0x4C #define R77 0x4D #define R78 0x4E #define R79 0x4F #define R80 0x50 #define R81 0x51 #define
in „STM32 24Bit Bmp nach 565RGB Format“ · Mikrocontroller und Digitale Elektronik ·