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00954A.pdf
PEAK is the peak voltage of the wall power, 2 πfC1+ R1 VRMS is the rated voltage of wall power (i.e., United States: 115 VAC, Europe: 220 VAC) and V Z is the voltage drop across D1. DS00954A-page 2 2004 Microchip Technology Inc. AN954 The minimum value of IINshould be calculated for the V OUT is
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PDF
00954A.pdf
PEAK is the peak voltage of the wall power, 2 πfC1+ R1 VRMS is the rated voltage of wall power (i.e., United States: 115 VAC, Europe: 220 VAC) and V Z is the voltage drop across D1. DS00954A-page 2 2004 Microchip Technology Inc. AN954 The minimum value of IINshould be calculated for the V OUT is
in „Kondensatornetzteil: Frage.“ · Mikrocontroller und Digitale Elektronik ·
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transformerless_AC_DC.pdf
PEAK is the peak voltage of the wall power, 2 πfC1+ R1 VRMS is the rated voltage of wall power (i.e., United States: 115 VAC, Europe: 220 VAC) and V Z is the voltage drop across D1. DS00954A-page 2 2004 Microchip Technology Inc. AN954 The minimum value of IINshould be calculated for the V OUT is
in „230V AC auf 5V DC Bauteile“ · Mikrocontroller und Digitale Elektronik ·
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M27C1001.PDF
32 A7 A14 A7 5 28 A13 A6 6 27 A8 A6 A13 A5 A8 A5 7 26 A9 A4 A9 A4 8 25 A11 A3 9 M27C1001 24 G A3 9 M27C1001 25 A11 A2 G A2 10 23 A10 A1 11 22 E A1 A10 A0 E A0 12 21 Q7 Q0 13 20 Q6 Q0 Q7 17 Q1 14 19 Q5 1 2 S 3 4 5 6 Q2
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pcm1716.pdf
Control PRODUCT PACKAGE NUMBER (1) 26 MD/DM0 IN Mode Control, DATA/De-emphasis Selection 1 PCM1716E 28-Pin SSOP 324 27 MC/DM1 IN Mode Control, BCK/De-emphasis Selection 2 28 ML/I S IN Mode Control, WDCK/Input Format Selection NOTE: (1) For detailed drawing and dimension table, please see end of data
in „DAC über SPI configurieren??, Codevision“ · Mikrocontroller und Digitale Elektronik ·
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LDS517_Displaycontroller.pdf
Controller & Driver Version 1.2 BLOCKDIAGRAM 3 RPRE 4 GPRE C BPRE o m n C0-383 1 D M 8 i RSTB U n r 1 e A0 I s U m 8 r RDB/E e u X 1 e f t 8 WRB/RW c c o CSB d e R 1 r n e 8 C80 r i R PS c e o o i r C t w R0-127 n o a r D[17:0] t r v o x r e i r i VSYNC R g B HSYNC I DCK t r ENABLE c M VD[17:0] e e C o
in „Verkaufe OLED Displays FullColor 128*128 bzw. 96*64“ · Markt ·
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PDF
mcp3424.pdf
Timing Diagram For Reading From The MCP3422/3/4 With 18-Bit Mode. © 2009 Microchip Technology Inc. DS22088C-page 23 MCP3422/3/4 t r a t 9 M a b M G 0 K b t A A G 1 y e N S 0 t n a i d y t o n e S 1 t u p c T 4 f ( T / o O C C 0 Y y C 1 R i e B s 1 y r t M b t S 9 C a 9 y r A M b t D 0 G 0 A a 1 N M D
in „Sensorplatine MPX4115 DS1621 HIH5030 - Schaltungskontrolle“ · Mikrocontroller und Digitale Elektronik ·
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Infineon-IPA50R190CE-DS-v02_04-EN.pdf
breakdown voltage V (BR)DSS 500 - - V V GSV, I =DmA Gate threshold voltage V (GS)th 2.50 3 3.50 V V DS , GS=0D51mA - - 1 V DS00V, V =0GS T=25°Cj Zero gate voltage drain current IDSS - 10 - A V =500V, V =0V, T=150°C DS GS j Gate-source leakage curent IGSS - - 100 nA V GS0V, V =0DS - 0.17 0.19 V GS3V, I
in „Mosfet 5R190CE“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
datasheet_FLEX003__v1_03.07.2008_.pdf
(yellow) dsPIC® DSC (e.g. for debugging) DL5 (yellow) Internal PIC18 DL6 (red) USB cable connection monitor Document Type: Technical data she[page 2 of 3] Previous version & Author: v1 (03.07.2008) - Shiva Product
in „LED blinken lassen“ · Mikrocontroller und Digitale Elektronik ·
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DDS-Funktionsgenerator.pdf
DGND 100nF 7 PD4(XCK/T0) 11 2,2µH 3.3µH 2,2µH + C5GNDGND VCC PD5(T1) 12 10µF DGND C21 PD6(AIN0) 13 E L3 L4 L5 0.1µF +15V PD7(AIN1) C1 C10 C17 C23 5 -15V 14 SV3 4 +5V VCC PB0(ICP) 15 9 10 330pF 1nF 1nF 330pF AGND AGND 2 -5V PB2(SS/OC1B) 16 7 8 1 AGND PB3(MOSI/OC2) 17 5 6 V PB4(MISO) 18 3 4 V AGND AGND
in „DDS-Singalgenerator mit ATmega88 und DDS AD5932“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
DDS-Funktionsgenerator.pdf
DGND 100nF 7 PD4(XCK/T0) 11 2,2µH 3.3µH 2,2µH + C5GNDGND VCC PD5(T1) 12 10µF DGND C21 PD6(AIN0) 13 E L3 L4 L5 0.1µF +15V PD7(AIN1) C1 C10 C17 C23 5 -15V 14 SV3 4 +5V VCC PB0(ICP) 15 9 10 330pF 1nF 1nF 330pF AGND AGND 2 -5V PB2(SS/OC1B) 16 7 8 1 AGND PB3(MOSI/OC2) 17 5 6 V PB4(MISO) 18 3 4 V AGND AGND
in „Projekt: DDS basierter Funktionsgenerator mit AD5930“ · Mikrocontroller und Digitale Elektronik ·
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Datei
IS51Basic.ASM
19H)INTEGER OPERATOR DW ASGN ;(26, 1AH)SIGN OPERATOR DW ANOT ;(27, 1BH)ONE'S COMPLEMENT DW ACOS ;(28, 1CH)COSINE DW ATAN ;(29, 1DH)TANGENT DW ASIN ;(30, 1EH)SINE DW ASQR ;(31, 1FH)SQUARE ROOT DW ACBYTE ;(32, 20H)READ CODE DW AETOX ;(33, 21H)E TO THE X DW AATAN ;(34, 22H)ARC TANGENT DW ALN ;(35, 23H)
in „Layout für MCS51 Experimentierboard“ · Projekte & Code ·
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LM2661.pdf
device and reduce the quiescent current g to 0.5 µA. The oscillator frequency for the LM2661 is 80 kHz. e C Basic Application Circuits o n e Voltage Inverter Positive Voltage Doubler r e r DS012911-3 DS012911-4 SplittingINin Half DS012911-26 © 2001 National Semiconductor CorDS012911 www.national.com 1 6
in „pegelanpassung analog“ · Analoge Elektronik und Schaltungstechnik ·
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mXyzrssr.pdf
DQ1 14 19 DQ5 16K BYTES 3C000 A0 3BFFF DQ2 15 18 DQ4 PARAMETER GND 16 17 DQ3 . BLOCK1 DECODER 8K BYTES 3A000 . 39FFF PARAMETER / A17 BLOCK2 R 8K BYTES 38000 A A A S V / A 1 1 1 E D W 1 MAIN MEMORY 37FFF 2 5 6 T D E 7 BLOCK1 4 3 2 1 32 31 30 96K BYTES 20000 MAIN MEMORY 1FFFF
in „Eprom Auslesen mit AVR“ · Mikrocontroller und Digitale Elektronik ·
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lm3421.pdf
µF–3.3 µF ceramic capacitor to PGND. Connect to the drain of the main N-channel MosFET switch for R DS- 17 13 IS Main Switch Current Sense sensing or to a sense resistor installed in the source of the same device. Connect the low side of all external resistor dividerINUVLO, OVP) 18 14 RPD Resistor Pull
in „Spule Dimensonierung Schaltnetzteil“ · Analoge Elektronik und Schaltungstechnik ·
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MCP4151.pdf
85C INL 125C INL 88 -40C DNL 25C DNL 85C DNL 125C DNL 0.5 W 3500 -40C DNL 25C DNL 85C DNL 125C DNL e 3500 0.4 R 78 n )3000 e 3000 INL 68 t s INL 0.3 b c ) b i m2500 0.2 L t s2500 58 L e ( r i m 48 r R )W000 DNL 0.1 o e (2000 o e R1500 r R 1500 38 r i ( 0 E e 28 E W 1000 -0.1 i 1000 W 18 500 RW -0.2
in „Frage zum MCP4151 SPI Digital Poti?“ · Mikrocontroller und Digitale Elektronik ·
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plasti_bruch.pdf
Tangentenmodul folgt. dε p Die Be-/Entlastungsbedingung lautet schließlich ⎪>0 Belastung εij≠ 0 σ ijij⎨ p . (17) ⎩< 0 Entlastung εij= 0 Zusammen mit den Gln. (5) und (7) erhält man die Gleichungen von P RANDTL [1924] und R EUß [1930] für die totalen Dehnraten ▯ ▯e ▯p ▯′e 1 ▯e ▯′p 1 ▯′ 1 ▯ 3 σ ▯ ′ ε ij εij+ εij
in „Glasbruchkante glatt schleifen“ · Mechanik, Gehäuse, Werkzeug ·
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recommended.pdf
VOLTAGE INPUT VOLTAGE 1000 50 V = 12 V O 45 990 IO= 100 mA o 85 C z 980 40 H - 970 o m y 25 C - 35 n n e 960 e 30 o q -40 C u 85 C 25 C r 950 C F n 25 g e h 940 s 20 t i i 930 u -40 C S Q 15 920 10 910 5 900 0 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 VI- Input Voltage
in „Kurz vorm Verzweifeln“ · Analoge Elektronik und Schaltungstechnik ·
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TPS6211.pdf
VOLTAGE INPUT VOLTAGE 1000 50 V = 12 V O 45 990 IO= 100 mA o 85 C z 980 40 H - 970 o m y 25 C - 35 n n e 960 e 30 o q -40 C u 85 C 25 C r 950 C F n 25 g e h 940 s 20 t i i 930 u -40 C S Q 15 920 10 910 5 900 0 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 VI- Input Voltage
in „DC DC Wandler Pins“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TPS6211.pdf
VOLTAGE INPUT VOLTAGE 1000 50 V = 12 V O 45 990 IO= 100 mA o 85 C z 980 40 H - 970 o m y 25 C - 35 n n e 960 e 30 o q -40 C u 85 C 25 C r 950 C F n 25 g e h 940 s 20 t i i 930 u -40 C S Q 15 920 10 910 5 900 0 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 VI- Input Voltage
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TPS6211.pdf
VOLTAGE INPUT VOLTAGE 1000 50 V = 12 V O 45 990 IO= 100 mA o 85 C z 980 40 H - 970 o m y 25 C - 35 n n e 960 e 30 o q -40 C u 85 C 25 C r 950 C F n 25 g e h 940 s 20 t i i 930 u -40 C S Q 15 920 10 910 5 900 0 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 VI- Input Voltage
in „QFN Gehäuse.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TPS6211.pdf
VOLTAGE INPUT VOLTAGE 1000 50 V = 12 V O 45 990 IO= 100 mA o 85 C z 980 40 H - 970 o m y 25 C - 35 n n e 960 e 30 o q -40 C u 85 C 25 C r 950 C F n 25 g e h 940 s 20 t i i 930 u -40 C S Q 15 920 10 910 5 900 0 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 VI- Input Voltage
in „Trennung von analoger und digitaler Spannung“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
thermometer.asm
fehlerroutinen in ein einzelnes unterprogramm auslagern .include "m8def.inc" .def temp0 = r16 .def temp1 = r17 .def temp2 = r18 .def temp3 = r19 .def lcd_1 = r20 .def lcd_2 = r21 .def temp4 = r22 .def stat = r23 .def error= r24 .def runtime = r25 reset: .org 0x0000 rjmp main reti ;rjmp EXT_INT0 ; IRQ0 Handler
in „Falsche Werte von DS1621 ?“ · Mikrocontroller und Digitale Elektronik ·
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BT-WiFi-52rf5541.pdf
supported by BK2461. 12.3.2 List of I2CM register Mnemonic Name Addre MCON I2CM Control register S:0E1 MRXBUF I2CM Reception buffer S:0E2 MTXBUF I2CM Transmission Buffer S:0E3 MPRESC I2CM Pre-scalar clock register S:0E4 MSTAT0 I2CM Status register 0 S:0E5 MSTAT1 I2CM Status register 1 S:0E6 MIEN0 I2CM
in „JDY-40 ein neuer Geniestreich aus China?“ · Mikrocontroller und Digitale Elektronik ·
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Osterreich.pdf
Germany Czech Republic Hungary Italy UK Averages in % Consulting 31.500 33.000 36.500 7.500 7.500 17.000 29.000 23.143 100% IT 28.500 31.500 34.000 8.000 8.000 19.000 26.000 22.143 96% Marketing 26.000 30.500 30.500 6.500 7.000 14.000 24.500 19.857 86% Medical / Pharma 24.500 28.000 28.000 6.500 5.500 12.000 25.500 18.571 80% Law 25.000 27.500 29.000 6.500 7.000 14.000 24.000 19.000 82% Finance 28.500 30.500 34.000 6.500 7.500 18.500 25.000 21.500 93% Technical Professions 29.500 30.000 34.000 7.000 7.500 18.000 24.000 21.429 93% Sales 28.000 28.000 33.500 7.000 8.000 17.000 25.000 20.929 90%
in „Können Sie mir helfen, bitte? Ghalt asl Ingeneur“ · Ausbildung, Studium & Beruf ·
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dscls.pdf
I I INPUT CLK1 1 24 VCC I/O 3 22 I/O 2 23 4 3 2 1 28 27 26 INPUT INPUT I/O 4 21 I/O I/O 5 25 I/O I/O 3 22 I/O I/O 5 20 I/O I/O 4 21 I/O I/O 6 24 I/O 5 20 I/O I/O 6 19 I/O I/O I/O 7 E 18 I/O I/O 7 23 I/O I/O 6 E 19 I/O 6 8 22 I/O 7 P 18 I/O I/O 8 1 17 I
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AN-9010b_MOSFET_Basics__FAI.pdf
GS – V =V , as I increases, the inversion layer at x=L doesn’t disappear due to the high electric DS GS(th) D field (J= E) formed by the reduction of thickness, and maintains the minimum thickness. The high electric field not only maintains the minimum thickness of the inversion layer, it saturates
in „mit 2,7V schalten“ · Mikrocontroller und Digitale Elektronik ·
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1151463626.pdf
50084 in 0.750 1.125 0.250 0.671 1.204 0.329 7.480 2.273 0.151 0.227 0.257 0.272 N/A 0.582 mm 19.0 28.6 6.4 17.0 30.6 8.4 50029 in 1.000 1.375 0.250 0.901 1.474 0.354 9.470 4.438 0.151 0.227 0.257 0.272 N/A 1.089 mm 25.4 34.9 6.4 22.9 37.4 9.0 M A G N E T I C S • T A P E W O U N D C O R E S • P A G E
in „Stromwandler MBS ASK31.3 50/5A Nachbau?“ · Analoge Elektronik und Schaltungstechnik ·
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HM-10_DataSheet_V550_2017-07.pdf
CONNF” will received after about 10 Seconds. e.g. Try to connect an device which MAC address is 00:17:EA:09:09:09 Send: AT+CON0017EA090909 May receive a reply: OK+CONNA ========= Accept request, connecting OK+CONNE ========= Connect error OK+CONN
in „Hilfe bei BTLE iBeacon bzw. CENTRAL-Mode“ · Mikrocontroller und Digitale Elektronik ·
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doc7627.pdf
1 J8 Connector MTA 2 cts right angle 15 1 M1 FDV304P/FAI SOT23 16 1 Q1 BC847B IC peak=200mA SOT23 17 2 R2,R3 22 1/16W-5% SMD CASE 0603 18 1 R5 68k 1/16W-5% SMD CASE 0603 19 2 R6,R7 47k 1/16W-5% SMD CASE 0603 20 7 R1,R4,R5,R8,R16,R20, R26 0 CASE 0603 21 0 R21 0 (Not Mounted) CASE 0603 22 1 R28 220k 1/16W-5% SMD CASE 0603 23 7 R9,R10,R11,R12,R25,R27,R3 100k 1/16W-5% SMD CASE 0603 0 24 5 R13,R14,R17,R22,R23 1k 1/16W-5% SMD CASE 0603 25 2 R24,R28 10k 1/16W-5% SMD CASE 0603 26 1 R29 NCP18WF104J03RB 100K - ß=4250 CASE 0603 27 2 R15,R18 100k 1% 1/16W-1% SMD CASE 0603 28 1 R19 120k 1% 1/16W-1% SMD CASE
in „Problem mit dem TC4469“ · Mikrocontroller und Digitale Elektronik ·
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PDF
class_E_amplifier_design_-_N_Sokal_QEX_Jan_2001.pdf
f 5 2 0 % 9 6 9 9 3 9 2 5 2 7 1 4 4 about 17% of the RF period. In a Class- C E 9 9 9 ? 8 9 8 8 8 7 6 7 7 7 8 6 7 B amplifier, the turn-off transition J time is 25% of the period. Therefore a B T T T E T 3 low-order Class-E circuit will work 4 1 3 F F E E T F E 3 well with a particular transistor at fre- F F T 8 S S S F F E S c quencies up to about 17%/25% = 70% I I F R E E E E S M E e of the frequency at which that transis- r r S M sM s M M E 4 M f
in „Class-E mit 1. oder 2. Oberwelle“ · HF, Funk und Felder ·
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PDF
QPD1025_Data_Sheet.pdf
0.55i 80 23 80 22 Zl(2fo) = 0.791.32i 70 Zl(3fo) = 2.180.34i 22 70 ]21 60 ] ]21 60 ] [ [ d [ i20 50 E n20 50 E a A a A G19 40 P G19 Zs(1fo) = 1.62.11i 40 P Zs(2fo) = 0.441.11i 18 30 18 Zs(3fo) = 0.520.18i 30 17 20 Zl(1fo) = 1.810.99i 17 Zl(2fo) = 0.771.34i 20 16 10 16 Zl(3fo) = 2.170.33i 10 15
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multimec-5-series-switches.pdf
7,62 7,62 7,62 1 13,8 5,5 22,3 13,9 6,5 13,8 13,8 7,62 5,5 7,62 8 7,4 6 8,0 to 22,5 4:1 5E RAS 1 13,8 1 7,4 5,58,0 to 22,5 , 7 6,5 5,5 5,5 2 5 22,3 7,62 8 2 , 8 , 3 1 0 2 1 1 , 1 17 1 1 5 3 7 Ø1,0(3x) 1 1 1 1 2 5 1 0 1 0 , 1 1 0 3 1 1 0 Ø1,0(3x) 1 1 0 1 2 4:1 5G RAS + 1SS 5 3 7 1 1 Ø1,0(
in „[S] Beleuchtete Navimec Navigationskreistaster für Prototypenherstellung“ · Markt ·
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PDF
Vergleichsliste.pdf
JE9016 JE9018 ECG109 1N60 1S188FM ECG110M 1N542 1S188F 1N34M ECG112 1S750 1S1922 1SS16 1SS99 ECG113A DS-17 DS-131 ECG114 DS-19 DS-133 ECG115 DS-18 DS-132 ECG116 1N4007 1N3549 1N2070 ECG117 1S1694 1N5412 1N5399 ECG118 HVT-30S US144HFP ECG119 HVT-185 US17HFP ECG121 2SB471 2SB375 2N457B ECG123 2N1420 2N1711
in „ECG45 was ist das?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Designing_a_digital_compass.pdf
WinZip download from the Microchip web site at: www.microchip.com © 2005 Microchip Technology Inc. DS00996A-page 13 AN996 APPENDIX B: SCHEMATICS FIGURE B-1: SHEET 1 OF 3 F μ μ . 1 F 0 R V F 4 μ 1 . S 0 4 0 6 D S C V V 0 M 3 F 8 μ 2 2 I . S F _ 1 2 0 E 2 P F V 1 R I C S P M V F F μ μ . . 3 3 0 2 E C S 1 V V V I T V E V E V F μ . 3 DS00996A-page 14 © 2005 Microchip Technology Inc. AN996 FIGURE B-2: SHEET 2 OF 3 μ . 0 1 O - 2 6 P C F M 0 1 E V n 0 4 1 1 O O - - 2 2 F 6 6 μ P P . C C 0 M M 1 O 4 2 4 6 1 C S M 4 n 0
in „Kompassmodul HDMM01 von Pollin“ · Mikrocontroller und Digitale Elektronik ·
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stp16cpc26.pdf
Recommended values of Rext for some output current value Output current [mA] R [Ω] Closer standard value (E24 series) [Ω] ext 5 4129 4300 10 2005 200 20 999 1000 40 471 470 60 322 330 90 217 220 DocID18469 Rev 5 17/31 31 Current generators characteristics STP16CPC26 9.2 Current accuracy A typical current accuracy
in „[S] 12fach LED IC gesucht (ähnlich 74HC595)“ · Analoge Elektronik und Schaltungstechnik ·
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Wirbelstromverluste_J_Biela_2011.pdf
diesen näherungsweise aus Iˆ dem Durchmesser d uns der Anzahl N der Esnzeladern [5]. P S,L= N s DC,E R,E N 2 (1.59) s ✓ ◆ ✓ ◆ Ns 0.45 ds 0.85 mit da= 135e 6 · (1.61) 3 40e 6 4 R DC,E = ⇡d 2. Somit ergibt sich die Amplitude des mittleren inneren Magnetfeldes H i s zu Beim Litzendraht gibt es zwei Magnetfeldkomponenten
in „Skineffekt 20A bei 5kHz“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
uPD6126A.PDF
0.170 MAX. J 5.08 MAX. 0.200 MAX. K 7.62 (T.P.) 0.300 (T.P.) L 6.5 0.256 M 0.25–0.05 0.010–0.003 N 0.17 0.007 R 0~15° 0~15° S24C-70-300B-1 28 PD6125A, 6126A 24 PIN PLASTIC SOP (300 mil) 24 13 detail of lead end P 1 12 A H I G J F K E L B C N D M M NOTE ITEM MILLIMETERS INCHES Each lead centerline is located
in „Chinesische IC und ihre Verwandschaft“ · Mikrocontroller und Digitale Elektronik ·
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PDF
grundig_chassis_t5_19_22vle2000t_22-2010t_22-2940t_22-2942t_19hd_br_wp_cba_16-2941tc_19-2940t.pdf
89 59 TP25 B 86 63 TP106 B 58 86 T TP107 B 139 57 1 TP26 B 119 37 2 TP27 B 84 64 TP108 B 108 17 TP109 B 113 17 tp28 B 40 93 TP110 B 28 88 tp29 B 35 90 TP30 B 44 89 TP111 B 124 57 TP112 B 115 17 TP31 B 18 93 TP113 B 103 117 TP32 B 151 108 TP114 B 118 17 TP33 B 17 88 TP34 B 151 110 TP115 B 120 17
in „Grundig Fernseher defekt“ · Analoge Elektronik und Schaltungstechnik ·
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datasheet.pdf
Typ. Max. Unit Drain-source V (BR)DSS ID= 250µA, VGS =0 30 V breakdown voltage Zero gate voltage V DS= max ratings 1 µA IDSS V DS= max ratings, drain currentGSV= 0) 10 µA TC = 125°C I Gate-body leakage V = ± 20V ±100 nA GSS current DS = 0) GS V GS(th) Gate threshold voltage V DS= VGS, D = 250µA 1 V Static
in „Unbekannter Spannungsregler von ST“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
qcamber-qt6.patch
FontDataStore* FontParser::parse(void) } continue; } - + if (line.startsWith("XSIZE")) { // xsize ds->putXSize(param[1].toDouble()); } else if (line.startsWith("YSIZE")) { // ysize diff --git a/src/parser/padrecord.cpp b/src/parser/padrecord.cpp index be7f924..bb85e9d 100644 --- a/src/parser/padrecord.cpp
in „Qt4 -> Qt5/6: scrollbar signal handling“ · Softwareentwicklung ·
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PDF
ISL9301_fn6435.pdf
1.245 V IREF BAT MOSFET ON-RESISTANCE Regulator MOSFET r r V = 4.4V, Total current = 0.3A - 0.8 1.2 Ω DS(ON) DS(ON) OUT Charger MOSFET r r V = 3.8V, charge current = 0.2A - 0.1 0.15 Ω DS(ON) DS(ON) BAT RECHARGE THRESHOLD Recharge Voltage Threshold V Relative to V -200 -150 -100 mV RECHG BAT CURRENT REGULATION
in „Handyakku (3.6V) laden per LadeIC (4,2V)“ · Mikrocontroller und Digitale Elektronik ·
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HAP-CU-TechDok-20080319.pdf
Eingängen.....................................53 Abb. 4.4: Werteformat beim digitalen Thermometer (DS18B20)...............................55 Abb. 4.5: Werteformat beim digitalen Thermometer (DS18S20)...............................56 Abb. 4.6: Steuerelement Menü........................................
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KS0713.pdf
Modified voltage regulator block of “Functional Description” VLCD absolute maximum rating: 15.0V → 17.0V 3.1 Power consumption: 100 μA → 80μA Oscillator frequency (1): 19 ( Min.) →17 (Min.), 25 ( Max.) →27 (Max.) 3.2 Oscillator frequency (2): 22 ( Min.) →20 (Min.), 28 ( Max.) →30 (Max.) 3.3 Modified
in „Dbox LCD HT12538“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IRF840STM.pdf
VDS= Max Rating, T = 125 ±C P ro 1 s µ) IGSS Gate-body Leakage VGS= ² 20V C te ²100 t( nAA Current DS = 0) le d u s o ro ON Symbol Parameter Test CondiOions eMin. Typ. Max. Unit V GS(th) Gate Threshold Voltage VDS= VGS,)D = 250µA l e t 2 3 4 V R DS(on) Resistancein-source On VGS=t(0s,DI = 3.s Ao 0.75
in „Suche günstiges Labornetzteil 400V“ · Analoge Elektronik und Schaltungstechnik ·
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Wohnraumuhr1_Rev1.1.pdf
5 8 3 5 8 3 p A A p A A p A A p A A +5V 1 C T D d D2 C C dD3 C C DA d D4 C C d D5 C C F V D G 1 2 E0 2 2 D 3 - L 2 - - A e A e 2 2A e 2 e 2 A +5V C T D S A E0 A A V O N S L 2 S , S G a b c d e f g , 6 a b c d e fg a b c d e f g 4 b c d e f g + GND 7 6 4 2 1 9 0 4 D7 6 4 2 1 9 0 D10 7 6 4 2 1 9 0 9
in „wohnraumuhr 2 - leiterplatte nach projekt scott huehn“ · Mikrocontroller und Digitale Elektronik ·
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Datei
digilent-starter-xc3s500e_blinky.ucf
NET "DAC_CS" LOC = "N8" | IOSTANDARD = LVCMOS33 | SLEW = SLOW | DRIVE = 8 ; # 1-Wire Secure EEPROM (DS) #NET "DS_WIRE" LOC = "U4" | IOSTANDARD = LVTTL | SLEW = SLOW | DRIVE = 8 ; ## Ethernet PHY (E) #NET "E_COL" LOC = "U6" | IOSTANDARD = LVCMOS33 ; #NET "E_CRS" LOC = "U13" | IOSTANDARD = LVCMOS33 ; #NET
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R1610C.PDF
Communication Fast Ethernet RISC Processor 3. Pin Description 3.1 PIN Placement 0 P 0 1 2 Q 4 5 M D D D E 1 1 3 J I I I E I I I G L D D D F / / / H / 3 2 1 0 3 2 1 0 _ _ _ I Y n C 1 1 _ _ _ O _1 K 1 _ 1 _ VR 1 S S S D D DT Y L E D D D S DC C D D D D DE C 1 2 C C C D R DS H O X X X X S XX X X X X X XX D X
in „Hilfe JTAG für IP Webcam ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
30262e.pdf
source, this means that MCLRdoes not draw any significant current. 2002 Microchip Technology Inc. DS30262E-page 1 PIC16F8X second half (2000h-3FFFh) being configuration mem- 2.0 PROGRAM MODE ENTRY ory. The PC will increment from 0000h to 1FFFh and 2.1 User Program Memory Map wrap to 0000h, or 2000h
in „PGD und PGC beim PIC16F84A“ · Mikrocontroller und Digitale Elektronik ·
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Dot-Matrix-Driver_max6952eax.pdf
vs. SUPPLY VOLTAGE vs. SUPPLY VOLTAGE 105 c 1.01 c 2 2 X X z M m1.00 M ( 100 4 Y O N D0.99 U 95 I E A F M0.98 R O A 90 T L E0.97 C R O 85 U C0.96 80 0.95 2.5 3.0 3.5 4.0 4.5 5.0 5.5 2.5 3.0 3.5 4.0 4.5 5.0 5.5 SUPPLY VOLTAGE (V) SUPPLY VOLTAGE (V) WAVEFORMS AT O2 (PIN 3) AND O14 (PIN 28) 15/16 INTENSITY
in „PIC: max6952 ansteuerung über SPI“ · Mikrocontroller und Digitale Elektronik ·