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PDF
Acrich2-Applicationnote.pdf
D10 Stage1 2 7 DI Acrich Acrich 11 Rset A D3 9 VN set 3 1 22 VN(-)Acrich 2+D4 8 D15 D16 D17 D18 D19 D20 D21 Stage2 2 7 VN(-) r D4 Acrich Acrich Acrich Acrich Acrich Acrich Acrich (-) 33 N.C ) e N.C 7 D11 D12 N.C P+ l .N.C Acrich Acrich Stage3 1 7 VP l . Stage2 V B N D22 D23 D24 D25 D26 D27 D28 4 5 6 Stage4
in „Surge Schutzbeschaltung am Netz“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
EG8010_datasheet.pdf
feedback Vcc=5V - 0.5 - V Temperature TFB feedback Vcc=5V - 4.3 - V Vin(H) Vcc=5V 2.0 5.0 5.5 V Vin(L) Vcc=5V -0.3 0 1.0 V Vout(H) Vcc=5V,IOH=-3mA 3.0 5.0 - V Vout(L) Vcc=5V,IOL=10mA - - 0.45 V Isink - - - 20 mA Isource - - - -3 mA Copyright © 2014 by EG Microelectronics Corporation www.EGmicro.com 11
in „Inverter DC/AC mit EGS002 China DEV-Board“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
GU112x16G-7806-07.pdf
Temperature -40°C to +85°C UDF3 Storage Temperature -40°C to +85°C Operating Humidity (non condensing20 to 80% RH @ 25°C UDF4 UDF5 SOFTWARE COMMAND SUMMARY UDF6 Instruction R/W RS D0-D7 Clear Display L L 01H UDF7 Cursor Return Home L L 02H UDF8 NOTE: UDF characters are available using 5x7 font only. Entry
in „Noritake VFD im 10x14-Modus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LTC1923.pdf
4.60 1.00 ) VSET = 5V ( VSET = 5V ( D ) 1.0 D4.59 O0.99 m O S (O S E VI R H R 0.5 H4.58 R0.98 F R O L T I M I M A 0 M4.57 E0.97 O E T R T D E–0.5 N4.56 T0.96 P O O S –1.0 4.55 0.95 –50 –20 10 40 70 100 130 –50 –20 10 40 70 100 130 –50 –20 10 40 70 100 130 TEMPERATURE (°C) TEMPERATURE (°C) TEMPERATURE
in „Peltier und PWM?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
EFS10.pdf
5,30 2,20 4 6 30 2100 670 210 66 25,50 10,20 4,28 1,85 9 + 35 1652 530 168 54 21,54 8,69 3,71 1,62 l T n 40 1300 420 135 45 18,20 7,40 3,22 1,41 e i 45 1020 317 103 35 14,28 6,02 2,67 1,20 ö L 50 800 240 79 27 11,20 4,90 2,22 1,02 8 9 - D 4 0 1 c t Temperature Humidity Characteristic (EFS-10) o P H 10000 m G S N E U R S 1000 I S E ) S m R h G O H ( e n 100 a n d l p h m b I o n g 10 u e n Ä h i h e 1 T 10 20 30
in „Feuchtesensor EFS10 Temperaturkompensation“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
156545-da-01-de-Feuchtesensor_EFS10.pdf
5,30 2,20 4 6 30 2100 670 210 66 25,50 10,20 4,28 1,85 9 + 35 1652 530 168 54 21,54 8,69 3,71 1,62 l T n 40 1300 420 135 45 18,20 7,40 3,22 1,41 e i 45 1020 317 103 35 14,28 6,02 2,67 1,20 ö L 50 800 240 79 27 11,20 4,90 2,22 1,02 8 9 - D 4 0 1 c t Temperature Humidity Characteristic (EFS-10) o P H 10000 m G S N E U R S 1000 I S E ) S m R h G O H ( e n 100 a n d l p h m b I o n g 10 u e n Ä h i h e 1 T 10 20 30
in „Funktion einer Messschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ProASICPlus_DS.pdf
GND GND N22 NC I/O L15 VDD VDD M19 GND GND N23 I/O I/O L16 VDD VDD M20 VDD VDD N24 I/O I/O L17 VDD VDD M21 V DDP VDDP N25 I/O I/O L18 VDD VDD M22 NC I/O N26 I/O I/O L19 VDD VDD M23 I/O I/O N27 I/O I/O L20 VDD VDD M24 I/O
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DAC3550A_Stereo_Audio_DAC.pdf
) BW =20 Hz...0.5 fs unweighted, Analog Gain = 0 dB, Input =−20 dBFS FINL/R 90 92 dB R ≥ 5 kΩ, R L ≥ 612 Ω dec BW etc2 as above 16 bit I, SEL_53V = 0 94 dB 32 bit I, SEL_53V = 0 96 dB 16 bit I S, SEL_53V = 1
in „Mini-DSP für Audio-Verarbeitung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN-3008.pdf
of inductance result in higher snubber resistance and R = 2ρ -L = 2(0.6) -39.8× 10 = 1400 ohms S C 0.029 × 10–6 reduced -I. For example: dt 12 REV. 4.01 6/24/02 APPLICATION NOTE AN-3008 8A LOAD 10 0.33 µF R L 100 µH < 50 V/µs MAC 218-6 20A 68Ω 120V 60Hz LS 1 0.033
in „MOC3063 vs MOC3063M“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
50052T01e_01_110902.pdf
x x 0 P17L 1 1 1 0 0 0 0 1 P17M x x x x x x x 0 SEIKO EPSONç ç Product NumbeL2F50052T01 Document NumberMP02049 Page 14ö42 ç P18L 1 1 1 0 0 1 1 0 P18M x x x x x x x 0 P19L 1 1 1 0 1 1 0 0 P19M x x x x x x x 0 P20L
in „The Siemens S65 132x176, 65536 color display with AVR“ · Projekte & Code ·
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PDF
b1549218978.96147.pdf
SW3 SW4 V-BLK (H) V-BLK pulse width L L 19 H L 20 15 SW4 selection L H 21 H H 21 MN676011NPS For Video Equipment Pin Descriptions (continued) Pin No. Symbol Pin Name Function Description 6 SC1 SC (R-Y) output Color subcarrier frequency signal
in „Panasonic WJ-AVE5 (PAL) auf NTSC umbauen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MN676011_datasheet.pdf
SW3 SW4 V-BLK (H) V-BLK pulse width L L 19 H L 20 15 SW4 selection L H 21 H H 21 MN676011NPS For Video Equipment Pin Descriptions (continued) Pin No. Symbol Pin Name Function Description 6 SC1 SC (R-Y) output Color subcarrier frequency signal
in „Wer verkauft diesen NTSC-Chip: Panasonic MN676011NPS“ · Mikrocontroller und Digitale Elektronik ·
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PDF
irf7389.pdf
www.irf.com P-Channel IRF7389 2.0 ) 0.6 c ID= 4.9A ( n e s n 0.5 s s e 1.5 s R R O ) n 0.4 e e O r l c o a 1.0 u 0.3 - r o t o o n ( - VGS = -4.5V▯ a a 0.2 D D , 0.5 , n n 0.1 ( ( V = -10V▯ D D GS R VGS =10V R 0.-60 -40 -20 0 20 40 60 80 100 120 140 160 0.0 A 0 10 20 30 T J Junction Temperature ( C)
in „Treiber für Push-Pull 12V?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
irf7389.pdf
www.irf.com P-Channel IRF7389 2.0 ) 0.6 c ID= 4.9A ( n e s n 0.5 s s e 1.5 s R R O ) n 0.4 e e O r l c o a 1.0 u 0.3 - r o t o o n ( - VGS = -4.5V▯ a a 0.2 D D , 0.5 , n n 0.1 ( ( V = -10V▯ D D GS R VGS =10V R 0.-60 -40 -20 0 20 40 60 80 100 120 140 160 0.0 A 0 10 20 30 T J Junction Temperature ( C)
in „Brushless DC Motorsteureung Dysfunktion AVR444“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
supercap_manual.pdf
.V r r 85 8 7 7 e 120 e 120 ,5 , , ,5 e 60 e 60 r r 5C 5˚ ˚ ˚ r r s 100 s 100 8 8 7 70 s s t t t t l 80 l 80 l 40 l 40 a a a a i 60 i 60 i i q 40 q 40 q 20 q 20 E E E E 20 20 0 0 0 0 Initial value Initial value 1,000 1,000 10,000 10,000 Initial valueitial value00 1,000 1,000 10,000 10,000 Time (h) Time
in „Super cap - .1F 5.5V TOKIN“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
L6376_Highside.pdf
SHUTDOWN UNDER VOLTAGE LOCKOUT WITH HYS- TERESYS DIAGNOSTIC OUTPUT FOR UNDER VOLT- POWERDIP PowerSO20 AGE, OVER TEMPERATURE AND OVER 16+2+2 CURRENT EXTERNAL ASYNCHRONOUS RESET IN- ORDERING NUMBERS:L6376 (DIP PUT L6376PD (PSO) PRESETTABLE DELAY FOR OVERCUR- RENT DIAGNOSTIC DESCRIPTION OPENGROUNDPROTECTION
in „Gegentaktendstufe als 40xx Booster“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
STM32G-STM32L-2dac-maximal32pins.txt
STM32G431KBTx LQFP32 468 M4 128k 32k 11 - 2 | 11 STM32G441KBTx LQFP32 468 M4 128k 32k 11 - 2 | 11 STM32L072KBTx LQFP32 447 M0+ 128k 20k 10 - 2 | 10 STM32L072KZTx LQFP32 447 M0+ 192k 20k 10 - 2 | 10 STM32L082KBTx LQFP32 447 M0+ 128k 20k 10 - 2 | 10 STM32L082KZTx LQFP32 447 M0+ 192k 20k 10 - 2 | 10 STM32G051F6Px
in „STM32 mit DAC - Ersatz für SAMD11?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ltn154x3-l06.pdf
TxIN16 TxCLKOUT- 14 9 RxCLKIN- BLUE5 TxIN17 Hsync TxIN18 100 ΩRxCLKIN+ Vsync TxIN19 15 10 Enable TxIN20 TxCLKOUT+ CLOCK TxClkIN Note : The LCD Module uses a 100ohm resistor between positive and negative lines of each receiver input. Samsung Secret Doc.No. LTN154X3-L06 Rev.No 04-A01-G-070730 Page 15 / 30
in „BeagleBoard LVDS Transmitter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
fed.pdf
lead and also support lead-free solder- ing. SHAPES AND DIMENSIONS/ELECTRICAL CHARACTERISTICS D H a 3 L (F) Dimensions in mm Rated ∗1 DC Diameter of Dimensions(mm) Weight Part No. current (µH)min.ce resistance Shape winding wire ∗3 (A)max. (mΩ )max. ø(mm) D max. H max. L (F) (g) SF-T3-20-01-PF 1 10 40
in „Welche Induktivität bei Schaltreglern“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
korg_sp-250.pdf
S er vic M an u a l SP-250 1) Circuit Diagrams : Page 2 - 6 2) Disassembly : Page 7 - 20 3) Test Mode : Page 21 - 29 4) Parts List : Page 30 - 34 1st Edition Issued Issued by: KORG INC. sp250m.sch-1 - Wed Nov 23 16:39:48
in „Korg SP-250 lässt sich nicht mehr anschalten / Elko ausgelaufen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
korg_sp-250_ServiceManual.pdf
S er vic M an u a l SP-250 1) Circuit Diagrams : Page 2 - 6 2) Disassembly : Page 7 - 20 3) Test Mode : Page 21 - 29 4) Parts List : Page 30 - 34 1st Edition Issued Issued by: KORG INC. sp250m.sch-1 - Wed Nov 23 16:39:48
in „Korg SP-250 e-Piano hängt sich auf“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
korg_sp-250.pdf
S er vic M an u a l SP-250 1) Circuit Diagrams : Page 2 - 6 2) Disassembly : Page 7 - 20 3) Test Mode : Page 21 - 29 4) Parts List : Page 30 - 34 1st Edition Issued Issued by: KORG INC. sp250m.sch-1 - Wed Nov 23 16:39:48
in „E-Piano Korg SP-250 rechter Lautsprecher rauscht und kratzt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
korg_sp-250.pdf
S er vic M an u a l SP-250 1) Circuit Diagrams : Page 2 - 6 2) Disassembly : Page 7 - 20 3) Test Mode : Page 21 - 29 4) Parts List : Page 30 - 34 1st Edition Issued Issued by: KORG INC. sp250m.sch-1 - Wed Nov 23 16:39:48
in „Korg SP-250 schaltet Register um“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ina139-q1.pdf
characteristics are at T = 25°C, V+ = 5 V, V = 12 V, and R = 125 kΩ, unless otherwise noted. A IN+ L GAIN vs FREQUENCY COMMON−MODE REJECTION vs FREQUENCY 40 120 RL= 100kΩ ) G = 100 30 d 100 R = 10kΩ ( L i 20 c 80 B e G = 10 ( R i 10 e 60 a Ω o G = 1 G R L 1k − 0 o 40 m m −10 C 20 −20 0 100 1k 10k 100k
in „200A Shunt und Ina139“ · Mikrocontroller und Digitale Elektronik ·
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PDF
rxv396.pdf
Characteristics 1kHz, 0.09% THD, 8Ω 70W+70W BASS : Boost/Cut ±10dB(50Hz) CENTER : Turnover Frequency 350Hz 20Hz to 20kHz, 0.06% THD, 8Ω 60W TREBLE : Boost/Cut ±10dB(20kHz) : Turnover Frequency 3.5kHz 1kHz, 0.09% THD, 8Ω 70W R,T,A,B,G,L models Filter Characteristics MAIN L/R, REAR L/R MAIN, CENTER, REAR SP SMALL : H.P.F. 20Hz to 20kHz, 0.06% THD, 8Ω 60W+60W fc=90Hz, 12dB/oct. 1kHz, 0.09% THD, 8Ω 65W65W SUB WOOFER : L.P.F. fc=90Hz, 18dB/oct. CENTER 20Hz to 20kHz, 0.06% THD, 8Ω 60W FM SECTION 1kHz, 0.09% THD, 8Ω 65W Tuning
in „Yamaha RX-V396 RDS Fehlersuche“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ILC555N_and_IZC555N.pdf
Max rature, V °С Rise (Fall) Time of Output, tTHL, TLH R L 10 М , C = 1L pF 5.0 35 75 25 10 ns 70 150 -20, 70 Guaranteed Max Osc Freq, fMAX Astable Operation 2.0- 500 25 10 kHz 18.0 200 -20, 70 Initial accura, % 5 Drift with Temperatur, αf 5.0 0.02 -20, 70 %/°С R L 1 - 100 k ,Ω 10.0 0.03 C L 0.1 μF 15.0 0.06 Drift with Supply Voltage, ∆ f 5.0 3 25 10 %/В 6 -20, 70 COMPARATOR A TRIGGER THRESHOLD COMPARATOR B Figura 1. Block Diagram V CC 0.9 TRIGGER 0.1 GND HL VCC
in „Strom sparen mit Low Power NE555 als Multivibrator an 3V (Out of Spec)“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
xtea_size.S
sbci s1, 0x79 sbci s2, 0x37 sbci s3, 0x9E rjmp .L_XTEA_Loop .L_XTEA_Encode_Delta: brmi .L_XTEA_Loop breq .L_XTEA_Done subi s0, 0x47 sbci s1, 0x86 sbci s2, 0xC8 sbci s3, 0x61 .L_XTEA_KeyfromSum: mov ZL, s1 lsr ZL .L_XTEA_Loop: ldi t4, 0x20 .L_XTEA_Shift
in „XTEA Enc/Dec in unter 100 Befehlen mit GCC konformer Schnittstelle“ · Projekte & Code ·
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PDF
PL_Series_Instruction_Manual_-_Iss_12.pdf
de pollution Degré 2, plage de températures 5°C à 40°C, 20% - 80% HR (sans condensation). Il peut être soumis de temps à autre à des températures comprises entre +5°C et –10°C sans dégradation de sa sécurité. Ne pas l'utiliser lorsqu'il y a de la condensation
in „Bedeutung blinkender Punkte in Stromanzeige“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EcoFlow_DELTA_mini_Multi-language_User_Manual.pdf
vitesse est celle que vous avez définie. Elle est de 200 W par défaut, mais peut être personnalisée sur l'application EcoFlow. Dans des situations inhabituelles où le courant d'entrée alternatif dépasse 20 A, le port d'entrée de charge X-Stream déclenche une fonction d'autoprotection, et l'interrupteur de
in „Ecoflow Wechselrichter Eingänge in Reihe schalten?“ · Haus & Smart Home ·
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PDF
SSP_202_-_Fahrzeugdiagnose-__und_Mess-_und_Infomationssystem_VAS_5051.pdf
der Taste "Sprung Fahrzeugsystem-Test 1996 und der Auswahl gelangen Sie zur Airbag Variant AFN 1,9l Turbodieselmotor / 81 kW Meßtechnik Sprung Druck Hilfe Diesel- Direkteinspritz- und Vorgluehanlage VAS 50Automatisches Getriebe 01M Fehler N01-0103 ABS / EDS Teves 20 GI Meßtechnik Sprung Druck Hilfe
in „SRAM auslesen der von einer anderen CPU genutzt wird“ · Fahrzeugelektronik ·
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PDF
160156-da-01-en-7_Segmentanzeige_100mm_SA40-19EWA.pdf
5-20#60988# 24:- 9 )3 ▯ 422 )/-" ▯.▯▯ +▯-+!-" " 4▯, ▯.▯. ▯-,: 4MF. =K.#M * +C K.#M 5,#=#. F=KJ K.J # ) -)/ 5 ° 05F>H M E?A?F,2,A K, @ , '5-J "?? J 39@2& ',&2 #H9L@2@H9& C@68 455@ @,9 5 *,L >1@ $A,,9 4>4 λ
in „Grundlegendes zu SPI“ · Mikrocontroller und Digitale Elektronik ·
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Datei
muxdelchain32.vhd
=1 */ ; muxcy20 : MUXCY_L port map(LO => del (20), CI =>del (19), DI => '0', S => '1'); -- synthesis syn_preserve=1 */ ; muxcy21 : MUXCY_L port map(LO => del (21), CI =>del (20), DI => '0', S => '1'); -- synthesis syn_preserve
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PDF
dem-pcm1704.pdf
commercial audio equipment, such as CD and DVD players. IW0 IW1 I S IW1 IW0 INPUT FORMAT Switches L L L 16-Bit, Standard, MSB-First, Right-Justified DIP switches SW1 and SW2 are used to set the configura- L L H 20-Bit, Standard, MSB-First, Right-Justified L H L 24-Bit, Standard, MSB-First, Right-Justified
in „Wie sauber samplerate vervierfachen“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
Product_preview_LPST096096A00-T3.pdf
circuit. Item Description LDS516 OLED Driver IC (Leadis) U1 DC/DC Converter – LT1930 Step-up(Linear) L1 Inductor – 10µH, 520mA D1 Zener Diode – 2.4V D2,D3 Zener Diode – 2.2V D4 Schottky Diode – 20V, 0.5A R1 Resistor – 39kΩ R2 Resistor – 68kΩ R3 Resistor – 110kΩ R4 Resistor – 8.2kΩ C1,C3,C4 Capacitor –
in „O-LED Display von SMI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Product_preview_LPST096096A00-T3__Rev_0.0_.pdf
circuit. Item Description LDS516 OLED Driver IC (Leadis) U1 DC/DC Converter – LT1930 Step-up(Linear) L1 Inductor – 10µH, 520mA D1 Zener Diode – 2.4V D2,D3 Zener Diode – 2.2V D4 Schottky Diode – 20V, 0.5A R1 Resistor – 39kΩ R2 Resistor – 68kΩ R3 Resistor – 110kΩ R4 Resistor – 8.2kΩ C1,C3,C4 Capacitor –
in „[V] 2,4GHz Transceiver(CortexM3) Chip-Antenne, Balun.“ · Markt ·
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PDF
74HC4066_74HCT4066_SMDHC4066_PHI.pdf
15 6.0 2 8 10 12 9.0 PZH PZL turn-on time 36 100 125 150 ns 2.0 RL= 1 k ; nE to V C = 50 pF os 13 20 25 30 4.5 L 10 17 21 26 6.0 (see Figs 19 and 20) 8 13 16 20 9.0 t /t turn-off time 44 150 190 225 ns 2.0 R = 1 k ; PHZ PLZ L nE to os 16 30 38 45 4.5 CL= 50 pF (see Figs 19 13 26 33 38 6.0 and 20) 16
in „welche relais für rs232 und atmega32“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ad835.pdf
Differential Gain & Figure 4. Gain Flatness to 0.1 dB Phase, NTSC for Y Channel; f = 3.58 MHz, R = 150 L REV. A –3– AD835 X, Y CH = 5dBm RL= 150 C < 5pF L –10 0 B –20 20 d – Y FEEDTHROUGH – –30 40 R D R T –40 60 C N X FEEDTHROUGH G –50 80 A X FEEDTHROUGH M –60 Y FEEDTHROUGH 1M 10M 100M 1G 1M 10M 100M 1G
in „Verständnisfrage: Multiplikative Mischung und PSK“ · HF, Funk und Felder ·
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PDF
rgpr30bm40-e.pdf
V GE5V : 20 VGE 5V n n e VGE 4.5V e VGE 4.5V u 15 u 15 C V GE3.5V C V GE3.5V o o c c l 10 l 10 o o C C 5 5 0 0 0 1 2 3 4 5 0 1 2 3 4 5 Collector To Emitter Voltage CEV [V] Collector To Emitter Voltage CEV [V] Fig
in „Transistorzündung für Moped mit LL-Mosfet/ -IGBT (Einstiegsprojekt)“ · Fahrzeugelektronik ·
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PDF
GWS6967.pdf
e o c TJ=-55 C a t u d o n 25 C o0 125 C s n a T r a r o F 1 1 10 ID-DrainCurrent(A) SP-6967-100-5 20 June 2007 4 GWS6967 OnResistanceVs.JunctionTemperature ThresholdVoltageVs.Temperature 1.60 1.3 )1.50 VGS e ID=250uA e 4.5V a 1.2 i l l1.40 I 65A o a V 1.1 r d o1.30 o N h 1.0 ( s ) c1.20 r d n h z0.9
in „Bauteilsuche Hexfet? Hilfe“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATtiny26.pdf
20S (-40°C to +85°C)) ATtiny26L-8MU 32M1-A ATtiny26L-8MUR 32M1-A ATtiny26-16PU 20P3 ATtiny26-16SU 20S Industrial 16 4.5 - 5.5 ATtiny26-16SUR 20S (1) ATtiny26-16MU 32M1-A (-40°C to +85°C) ATtiny26-16MUR
in „ATtiny26(L) Analog-Digital-Wandler ( ADC ) Datenblattübersetzung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN036-MX25L6445E-12845E-1.0.pdf
MX25L6405D MX25L6445E Vcc Standby 20uA (max) 100uA (max) 20uA (max) 10uA (max) (ISB1) Deep Power- x 40uA (max) x 30uA (max) Done (ISB2) 10mA @ 33MHz (max) 10mA @ 33MHz (max) 10mA @ 33MHz (max) 15mA @ 33MHz (max) Icc (Read) 25mA @ 50MHz (max) 15mA @ 66MHz (max) 20mA @ 66MHz (max) 15mA @ 66MHz (max) 19mA @ 104MHz (max) 25mA @ 86MHz (max) 19mA @ 104MHz (max) Icc (Write) 20mA (max) 20mA (max) 20mA (max) 20mA (max) 2-2 Read Performance TM MX25L12845/6445E fast read
in „FLASH Memory Chip im Lenovo X200 von 8 MB auf 16 MB vergroessern“ · PC Hard- und Software ·
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PDF
tips_microDCDCconverter.pdf
Horizontal Vertical 70 70 60 60 ] 50 ] 50 R / / M V 40 VCCI Class B(3m) u 40 VCCI Class B(3m) D B B 1 l l B v 30 v 30 3 L L 2 20 20 C X 10 10 0 0 10 100 1000 10 100 1000 Frequency [MHz] Frequency [MHz] 70 70 60 60 50 m m 50 R v VCCI Class B(3m) v VCCI Class B(3m) 3 B 40 B 40 8 [ [ B e 30 e 30 9 e e 2 L 20 L 20 L C 10 X 10 0 0 10 100 1000 10 100 1000 Frequency [MHz] Frequency [MHz] 70 70 60 60 ] 50 ] 50 R m / D V 40 VCCI Class B(3m) u 40 VCCI Class B(3m) 8 B B 1 [ l B e 30 v 30 0 e L 2 L 20 20 C X 10 10
in „1.5A regulator Built-in Step-Down micro DC/DC Converters“ · Mikrocontroller und Digitale Elektronik ·
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PDF
irf3205.pdf
PD - 9.1279D IRF3205 HEXFET Power MOSFET l Advanced Process Technology l Ultra Low On-Resistance D V = 55V l Dynamic dv/dt Rating DSS l 175°C Operating Temperature l Fast Switching R DS(on) = 0.008 G l Fully Avalanche Rated ID= 110A Description
in „Schaltung zu Kondensatorentladungsschweißen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
mb1045_changed.pdf
P0U3A0PB11 PJ11 P0R3202 P0R3201 P0R5502 P0R5501 P0U3BPE11 PH11 P0R7102 P0R7101 R260 [N/A] ULPI_D5 PB12 L13 N0PB12 P0U3A0L13 P0U3A0BB10 PJ12PJ12 LCD_B0LCD0B0 R30 220K D9N0D9 PE120PE12 R67 33 R10 P0U3B0R10 P0U3B0MM15 R59 33 PH120PH12 D20N0D20 USB_ S2_IDS20ID P0R26001 P0R26002 PB12 PJ12 P0R3001 P0R3002 P0R6702
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PDF
mb1045_changed_korrigiert.pdf
P0U3A0PB11 PJ11 P0R3202 P0R3201 P0R5502 P0R5501 P0U3BPE11 PH11 P0R7102 P0R7101 R260 [N/A] ULPI_D5 PB12 L13 N0PB12 P0U3A0L13 P0U3A0BB10 PJ12PJ12 LCD_B0LCD0B0 R30 220K D9N0D9 PE120PE12 R67 33 R10 P0U3B0R10 P0U3B0MM15 R59 33 PH120PH12 D20N0D20 USB_ S2_IDS20ID P0R26001 P0R26002 PB12 PJ12 P0R3001 P0R3002 P0R6702
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PDF
LT3582-12_Datasheet.pdf
(Note 2) Code = 00h, V = 0 l 3.152 3.20 3.248 V VOUTP_MIN OUTP PLUS VVOUTP_LR VOUTPLine Regulation Code = BFh, 2.575 <IN < 5.5 –0.02 %/V VVOUTN Negative Output Voltage LT3582-5 l –5.075 –5 –4.925 V LT3582-12 l –12.1 –12 –11.868
in „Stromverbrauch einer Schaltung“ · Analoge Elektronik und Schaltungstechnik ·
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ICM7216.pdf
use these outputs as logic signals. CIN OUT where C L = C + C IN OUT 9-20 ICM7216A, ICM7216B, ICM7216D Accuracy In addition, there is a quantization error inherent in any digital measurement of ±1 count. Clearly this error is reduced by dis- In a
in „[V] 1St. Harris ICM7216AIJI Ceramic DIP28 8-Digit, Multi-Function, Frequency Counters/Timers“ · Markt ·
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STP6NK90ZFP.pdf
1.14 1.55 c 0.48 0.70 D 15.25 15.75 D1 1.27 E 10.00 10.40 e 2.40 2.70 e1 4.95 5.15 F 1.23 1.32 H1 6.20 6.60 J1 2.40 2.72 L 13.00 14.00 L1 3.50 3.93 L20 16.40 L30 28.90 øP 3.75 3.85 Q 2.65 2.95 DS2985 - Rev 6 page 16/26 STB6NK90ZT4, STP6NK90Z, STP6NK90ZFP, STW7NK90Z TO-220 type H package information 4.3
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STP6NK90ZFP.pdf
1.14 1.55 c 0.48 0.70 D 15.25 15.75 D1 1.27 E 10.00 10.40 e 2.40 2.70 e1 4.95 5.15 F 1.23 1.32 H1 6.20 6.60 J1 2.40 2.72 L 13.00 14.00 L1 3.50 3.93 L20 16.40 L30 28.90 øP 3.75 3.85 Q 2.65 2.95 DS2985 - Rev 6 page 16/26 STB6NK90ZT4, STP6NK90Z, STP6NK90ZFP, STW7NK90Z TO-220 type H package information 4.3
in „Unterschiedliche Power MOSFET kompatibel?“ · Analoge Elektronik und Schaltungstechnik ·
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TDA7560.pdf
19.37 0.731 0.747 0.762 L2 (2) 15.50 15.70 15.90 0.610 0.618 0.626 L3 7.70 7.85 7.95 0.303 0.309 0.313 L4 5 0.197 L5 3.5 0.138 M 3.70 4.00 4.30 0.145 0.157 0.169 M1 3.60 4.00 4.40 0.142 0.157 0.173 N 2.20 0.086 O 2 0.079 R 1.70 0.067 R1 0.5 0.02 R2 0.3 0.12 R3 1.25 0.049 R4 0.50 0.019 V 5⋅ (Typ.) V1 3⋅ (Typ.) Flexiwatt25 V2 20⋅ (Typ.) V3 45⋅ (Typ.) (1):dam-bar protusion notincluded (2):molding protusionincluded H V3 H1 H3 H2 A O R3 4 R4 L V1 R2 L N R L L1 L V1 V2 R2 R1 D L5 R1 R1 E G G1 F V M M1 B C V FLEX25ME 9/10 TDA7560