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3105fb.pdf
Enable Delay vs Input Voltage 340 120 1000 900 320 IC ENABLE V 800 ) m 100 m300 E 700 ) ( A ( G280 L 600 IC DISABLE E T V 500 I 80 O D Y T260 O 400 L U S D I240 E 300 H 60 T 200 220 100 200 0 40 –45 –30 –15 0 15 30 45 60 75 90 1.25 2.25 3.25 4.25 5.25 1.25 2.25 3.25 4.25 5.25 TEMPERATURE (°C) 3105 G01
in „Low power DC-DC Converter (step up)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
NT7701Ver2.1.pdf
199 54 200 53 NT7701 216 37 1 36 Block Diagram V0R V12R V 43R V5R Y1 Y2 Y159 Y160 V5L FR 160 Bits 4 Level Driver Level V43L Shifter DISPOFF V12L /160 160 Bits Level Shifter V0L EIO 1 V5R /160 Active Control 160
in „Wintek WD-H3224V 320x240“ · Mikrocontroller und Digitale Elektronik ·
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Datei
EEVBLOG_CMU200.txt
CMU200 Options for tracking generator ===================================== Ebay supply: http://www.ebay.co.uk/itm/CMU200-Radio-Services-Monitor-Tracking-Generator-Duplexer-Measurement-Sources-/252464888662
in „Option B41 bei einer CMU200 nachrüsten.“ · HF, Funk und Felder ·
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PDF
p6smb6.pdf
160 168 1 219 2.7 0.108 140 P6SMB180AT3G 180A 154 5 171 180 189 1 246 2.4 0.108 130 P6SMB200AT3G 200A 171 5 190 200 210 1 274 2.2 0.108 115 6. A transient suppressor is normally selected according to the working peak rRWMr), which should be equal to or greater than the DC or continuous peak
in „was ist das für ein Bauteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Littelfuse_TVS_Diode_P6KE_Datasheet.pdf
% current decays toPPM% of I r % 75 t PeakValue u g n 100 IPPM r t r ) e u P r C HalfValue ( e 50 l I PPM e n u PPM ( )2 w g P P i a 50 10/1000µsec.Waveform e r 25 P as defined by R.E.A l e - P D P k I e 0 P d 0 25 50 75 100 125 150 175 200 0 0 1.0 2.0 3.0 4.0 T J Initial Junction Temperature (ºC) t-Time
in „PhotoMos mit TVS schützen ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
p6smb6_8at3_d-1196020.pdf
160 168 1 219 2.7 0.108 140 P6SMB180AT3G 180A 154 5 171 180 189 1 246 2.4 0.108 130 P6SMB200AT3G 200A 171 5 190 200 210 1 274 2.2 0.108 115 6. A transient suppressor is normally selected according to the working peak rRWMr), which should be equal to or greater than the DC or continuous peak
in „Ersatzteilempfehlungen gesucht (TVS-Diode HDD)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AT070TN83___LCM__TTL_TCB___TSP__Final_Spec1214.pdf
). LED1 LED2 LED8 LED9 The copyright belongs to InnoLux. Any unauthorized use is prohibited. INNO L UX SPEC NO.: A070-83-TT-01 PAGE: 8/25 3.2.Power Sequence Power Supply Vcc Data Signal t t 1 t 1 t2 3 B/L 1 > 50 mSec 2 ≧ 200 mSec 3 ≧ 200 mSec The copyright belongs to InnoLux. Any unauthorized use is
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2630_Copy2.pdf
L O V 0.3 V 0.3 L E IO= 9.6 mA E IO= 9.6 mA O = 6.4 mA V I = 5.0 mA L 0.2 O = 6.4 mA L 0.2 E 40 F W W L L 0.1 L 0.1 W – – L L 0 L 0 – 20 VO -60-40 -20 0 20 40 60 80 100 VO -60-40 -20 0 20 40 60 80 100
in „Optokopler (input zwischen 90 und 180V dc) Output transistor an 24V verbunden“ · Mikrocontroller und Digitale Elektronik ·
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DCF_77.pdf
Empfänger-IC 8; der,, Kleine” un terscheidet Versorgungsspannung Stromaufnahme (im Betrieb) :600 f l (< 1 mA) sich hiervon aber nur unwesentlich. (im Stand-by) :2@(<lOl_IA) Al A2 E3 AP2 CD CR Schaltstrom an PON (bei UPON= HIGH) : -15 f l ( < -50 @) APl Eingangsspannungsbereich Nachverstärker : 30...450 PV HF-Verstärkung an Al :53dB El Demodulator-Ausgangsspannung : 200 mVss Ausgangsstrom (Io,,) :max.lO@ Ausgangsstrom (Io, bei Ua I 200 mV) :min. 60 @ Ausgangsimpulsbreite (bei LOW-Bits) :100ms(c120ms) (bei HIGH-Bits) :200 ms (> 180 ms) Beide ICs sind weitgehend identisch
in „DCF77: Welcher Parallelkondensator?“ · HF, Funk und Felder ·
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PDF
LM3404.pdf
Datasheet min/ / max specification limits are guaranteed by design, test, or statistical analysis. L M LM3404 4 0 Symbol Parameter Conditions Min Typ Max Units 4 H SYSTEM PARAMETERS V ON-1 On-time 1 V = 10V, R = 200 kΩ 2.1 2.75 3.4 µs IN ON ON-2 On-time 2 VIN 40V, R ON = 200 kΩ 515 675 835 ns LM3404HV
in „Extreme Störungen LM3404“ · Mikrocontroller und Digitale Elektronik ·
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PDF
L6374FP_01.pdf
POWERDIP 16+2+2 SO 16+2+2 S OUTPUTVOLTAGERANGE OUTPUT VOLTAGE CLAMP TO V SAND TO GROUND ORDERING NUMBER: L6374DP (POWERDIP16+2+2) OVERTEMPERATURE AND UNDERVOL- L6374FP (SO16+2+2) TAGE PROTECTIONS DIAGNOSTIC FOR OVERTEMPERATURE, UNDERVOLTAGEAND OVERCURRENT PRESETTABLE DELAY FOR OVERCUR- DESCRIPTION RENT DIAGNOSTIC
in „Treiberbaustein“ · Mikrocontroller und Digitale Elektronik ·
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PDF
L6374FP_01.pdf
POWERDIP 16+2+2 SO 16+2+2 S OUTPUTVOLTAGERANGE OUTPUT VOLTAGE CLAMP TO V SAND TO GROUND ORDERING NUMBER: L6374DP (POWERDIP16+2+2) OVERTEMPERATURE AND UNDERVOL- L6374FP (SO16+2+2) TAGE PROTECTIONS DIAGNOSTIC FOR OVERTEMPERATURE, UNDERVOLTAGEAND OVERCURRENT PRESETTABLE DELAY FOR OVERCUR- DESCRIPTION RENT DIAGNOSTIC
in „Push Pull Ausgangsstufe“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
pc814.pdf
Floating capacitance C f V= 0, f= 1MHz - 0.6 1.0 pF teristics Cut-off frequency fc VCE5V,I =CmA,R =1L0 , -3dB 15 80 - kHz Rise time tr V CE= 2V, I C 2mA, R = L - 4 18 s Response time Fall time tf 100 - 3 18 s *4 Classification table of current transfer ratio Model No. Rank mark CTR % ( ) PC814A PC824A
in „Optokoppler Problem“ · Mikrocontroller und Digitale Elektronik ·
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Optokoppler.pdf
Forward Current vs. Forward Voltage vs. Forward Current Voltage e 6 A A A A O 500 a m 1 m m m Ta= 25 C o l 5 . 3 5 7 Ta= 75oC o v = A200 50 C 25oC o I (100 0 o a 4 I -25 C t n 50 s r r 3 c 20 i d m ) 2 a 10 t ) r o a F 5 l ( 1 o C 2 C V 0 1 0 5 10 15 0 0.5 1.0 1.5 2.0 2.5 3.0 Forward currenF(mA) Forward voltageF
in „Encoderauswertung, Verständnisfrage und Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SMA_Datenlogger_Rev_1_0_Final.pdf
C53 C54 C55 C56 C57 C58 C59 C61 S 2 3 7 G 3 8 IC1C 100nF 100nF 100nF 100pF100nF 1uF 100pF100nF 1uF L25 5 VP I/O_2 6 , 1 1 74HCT32D AVCC33_USB +5V I/O_3 4 M IC1A It is possible to use TPS2065 with FB0805/200mA C67 2 GND I/O_4 1 D 74HCT32D lower current limit! 100nF I/O 3 1 S 1 2 9 1 U5 +5V S U B U 1 5 3 L27 IP4220CZ6 3 OUT IN C L22L23 FLT USBEN1 C C68 C69 FB0805/200mA R76 2.2k USB1-VBUS R47 4 A 100pF10uF 2.2k EN_OR_EN R77 10k USB1_ID L21 L24 2 FB0805/200mA GND R51 C44 C49 1 1 1 71 3 3 4 4 4 L263 100k
in „Probleme mit phyCore AM3352 und Cypress USB, MMC2“ · Mikrocontroller und Digitale Elektronik ·
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SMA_Datenlogger_Rev_1_0_Final.pdf
C53 C54 C55 C56 C57 C58 C59 C61 S 2 3 7 G 3 8 IC1C 100nF 100nF 100nF 100pF100nF 1uF 100pF100nF 1uF L25 5 VP I/O_2 6 , 1 1 74HCT32D AVCC33_USB +5V I/O_3 4 M IC1A It is possible to use TPS2065 with FB0805/200mA C67 2 GND I/O_4 1 D 74HCT32D lower current limit! 100nF I/O 3 1 S 1 2 9 1 U5 +5V S U B U 1 5 3 L27 IP4220CZ6 3 OUT IN C L22L23 FLT USBEN1 C C68 C69 FB0805/200mA R76 2.2k USB1-VBUS R47 4 A 100pF10uF 2.2k EN_OR_EN R77 10k USB1_ID L21 L24 2 FB0805/200mA GND R51 C44 C49 1 1 1 71 3 3 4 4 4 L263 100k
in „Cypress USB HUB Chip Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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MXB7846.pdf
Valid t C = 50pF 200 ns DO LOAD CS Rise-to-DOUT Disable tTR C LOAD = 50pF 200 ns CS Fall-to-DOUT Enable t C = 50pF 200 ns DV LOAD DCLK Falling-to-BUSY Rising tBD 200 ns CS Falling-to-BUSY Enable t 200 ns BDV CS Rise-to-BUSY
in „OLED Sammelbestellung“ · Markt ·
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PDF
NCP1605-D.PDF
NCP1605B 2.430 2.500 2.550 EA Error Amplifier Current Capability − ±20 − mA G EA Error Amplifier Gain 100 200 300 mS IPin4 Pin 4 Bias Current @Pin4 VREF −500 − 500 nA VCONTROL Pin 2 Voltage: V − V MAX − @ V = 2 V − 3.6 − CONTROL Pin4 − VCONTROL MIN − @ VPin4= 3 V − 0.6 − − D V l 2.7 3.0 3.3 CONTROL V L / V
in „Hilfe bei der Reparatur eines Schaltnetzteiles erbeten“ · Analoge Elektronik und Schaltungstechnik ·
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max1481-max1486.pdf
CONDITIONS MIN TYP MAX UNITS X RECEIVER 1 Receiver Differential Threshold 4 Voltage VTH -7V ≤ CM ≤ 12V -200 200 mV 8 1 Receiver Input Hysteresis ∆VTH 70 mV Receiver Output High Voltage VOH O = -4mA, VID= 200mV 3.5 V M Receiver Output Low Voltage V I = 4mA, V = -200mV 0.4 V OL O ID A Three-State Output Current
in „MODBUS Protokoll MSP430“ · Mikrocontroller und Digitale Elektronik ·
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pr4401.pdf
= 10µH 23 23 mA L1 = 6.8µH -- 32 mA L1 = 4.7µH -- 40 mA Switching Current at Vout Vout = 0.4V 200 250 mA Switching Frequency 500 500 kHz Quiescent supply current Vcc > 950mV 4 5 8 10 mA Vcc = 600mV 50 100 µA Vcc = 400mV
in „Step-Up Transistorschaltung für LED Lampe“ · Analoge Elektronik und Schaltungstechnik ·
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A501_LCW_E6SG.pdf
1 Y W H o ue 2. r b o ) M o t e s i iybdrr reqCu/ E : tm m e e 1 68 a b) Se vice oum2g ie IP n ed l oror titimir e 3 .D a b) 2a a rien ate op e F F lFlooo or t .Ifre f ea ld ti e v el1l 2 a F l P-1-0-2 4 ag s an d e L eL veveel2l3 Bin:n:Q:- p ST B a t isturu r e LeL ev e 67 6 BiBin Tem20C C R RT EMY D M o o sti t tureui S T PLY D rM 2 a2L24060C al2 XT D8 M M o o is LtiT O 2 3 ddtii R:R1 Q -1 M Mu l e A R 07ACKVA :P -1+ P ORPU t )G( 44 s ptoors 199 8 D/C:01 M d uct 1002 (D) 0 S R Aicon NO:2 2 34 :200 O Sem ATCH G H1 Q(QTY M (6P)B :12 3
in „LED ganz einfach dimmen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GWM120-0075P3.pdf
= 75 V with Trench MOSFETs ID25 = 125 A in DCB isolated high current package R DSon typ. = 3.7 m Ω L+ P is Gate G3 G1 G5 S3 S5 S1 L1 L2 L3 G4 G6 G2 ns S4 S6 P owerP i S2 L - Applications MOSFETs AC drives Symbol Conditions Maximum Ratings • in automobiles V T = 25°C to 150°C 75 V -electric power steering
in „Umrichter für E-Kart Anwendung 60V / 120A“ · Mikrocontroller und Digitale Elektronik ·
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Optokoppler_AQV252GA.pdf
0.035 Ω 0.08 Ω F = 5 mA R on A L = Max. Maximum 0.08 Ω 0.12 Ω Within 1 s Typical 0.018 Ω 0.04 Ω F = 5 mA t On resistance R on B L = Max. t Maximum 0.04 Ω 0.06 Ω Within 1 s u O Typical 0.01 Ω 0.02 Ω F = 5 mA R on C L = Max. Maximum 0.02
in „Zu blöd Datenblatt lesen AQV252GA“ · Analoge Elektronik und Schaltungstechnik ·
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GIC_Presentation_at_PSRC_05_14_2014.pdf
HaroicpectrofagetigCurrtnderifftlevefIs 18 6% 35% 16 t Idc=2ps/Phase e5% t 30% 14 u Idc=5ps/Phase n C r a u R12 L C V d4% d 25% l t a t10 R L e o f a %3% o n ( % 20% F 8 d t % l e p r 6 A2% u i c 15% n n 4 m i a c H1% E 2 % 10% 0 0% 0 25 50 75 100 125 150 175 200 60 120 180 240 300 360 420 480 540 600 660 5% GIC
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139cll.pdf
- 7.6 x 8.2 DIMENSIONS in millimeters O H 0.05− 0.15 2+ 0.5 0.07 + 0.05 2 0 0 0 − 0.3 R S ±0.3 G W L Fig. 2 - Dimensional outline Table 1 DIMENSIONS in millimeters, MASS AND PACKAGING QUANTITIES NOMINAL CASE SIZE CASE MASS PACKAGING L max. W max. H max. O max. S G max. Rmin. QUANTITIES L x W x H CODE
in „Tantal vs Kerko“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Quelltext.txt
code char at __CONFIG1H _conf0 = _IESO_OFF_1H & _FCMEN_OFF_1H & _OSC_XT_1H; code char at __CONFIG2L _conf1 = _BODEN_OFF_2L & _PUT_OFF_2L; code char at __CONFIG2H _conf2 = _WDT_DISABLED_CONTROLLED_2H; code char at __CONFIG4L _conf4 = _STVR_OFF_4L & _LVP_OFF_4L & _BACKBUG_OFF_4L; unsigned int a,b,c,i
in „PIC18F1320 mit DS1821 Temperatur Sensor keine Daten“ · Mikrocontroller und Digitale Elektronik ·
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2sk3142.pdf
D 10 ms n n CO m s t e per 1 a 20 r 10 ato ho i C Operation in n( ) i n this area is c = D a 3 25 l r limited by DS(on) C) n 10 D 1 n h C 0.3 0.1 Ta = 25°C 0 50 100 150 200 0.1 0.3 1 3 10 30 100 Case Temperature Tc (°C) Drain to Source Voltage V DS (V) Typical Output Characteristics Typical Transfer
in „Geiger Counter Sparkfun“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TC7920_B080613-1532304.pdf
Marking 1.0oz, 4-layer, 3”x4” PCB. Y = Last Digit of Year Sealed 7920 W = Code for Week Sealed YWLL L = Lot Number = “Green” Packaging Package may or may not include the following marks: Si or 12-Lead DFN Drain Output Diodes Sym Parameter Min Typ Max Unit Condition VR Breakdown voltage 200 - - V R =
in „Mosfet Gate Treiber MD1822/ TC7920“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Values.txt
11 0,1 uF 10 PORT 10 AVR-ISP-6 10 8MHz 10 680 Ohm 10 4u7 10 470k 10 33n 10 33k 10 220k 10 220µ 10 200R 10 1N4148DO35-7 10 1k2 10 17,8k 10 1,5K 10 12,7k 10 10 pF 10 10microH 10 0,001µF 9 ROT 9 LM324N 9 L44 9 GN 9 BYV27 9 BC847CSMD 9 74HC573N 9 4K7 9 400 9 1nF 9 1,8nF 9 15K 9 150R 9 10 uF 9 10K0 9 100µF
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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PDF
max774-max776.pdf
EXT= 1nF / CEXT = 5nF / V+ = 5V 6 120 7 450 4 A 6 M A M 110 400 M 100 5V RISE s 5V RISE s ( 90 ( 350 L L µ t 80 5V FALL tF 300 ( 16 & 70 & 250 t I I 5V FALL t 60 tR 12V RISE 200 12V RISE 50 40 150 12V FALL 100 30 12V FALL 20 50 15 -60 -40 -20 0 20 40 60 80 100 120 140 -60 -40 -20 0 20 40 60 80 100 120
in „[V] kleines Konvolut ältere DIL / DIP ICs (8€)“ · Markt ·
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MAX9812-MAX9813L.pdf
FREQUENCY vs. FREQUENCY (V CC TO BIAS) vs. FREQUENCY 40 o 0 c 0 o RL= OPEN 1 -10 VRIPPLE= 200mV P-P 1 VRIPPLE= 200mV P-P 1 VOUT= 10mV P-P X -20 INPUT REFERRED X -10 X ) 30 M -30 M -20 M ( B N -40 ( -30 A 20 -50 S E B -60 I -40 A ( O L 10 R -70 T -50 V P -80 C T -90 ( -60 P 0 -100 R U P -70 O
in „Richtiger Anschluss einer Elektretkapsel“ · Analoge Elektronik und Schaltungstechnik ·
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BZX55__VISHAY-2013.pdf
t e VZtn VZtVZ(25 °C) n n i 400 h 1.2 TKVZ= 10 x 10 /K m C -4 A e 8 x -4K n a 1.1 6 x 10 /K t 300 l 4 x 10 /K n l l V 2 x 10K J e t 200 t 1.0 0 i l - 2 x 10 /K e R -4 . 100 - 0.9 - 4 x 10 /K m Z e TL= constant V h 0 0.8 - - 60 0 60 120 180 240 J 0 5 10 15 20 Rt 95 9599 Tj- Junction Temperature (°C)
in „Z-Diode macht nicht was ich denke“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
73758.pdf
Dissipation vs. Fig.4 Total Power Dissipation vs. Ambient Ambient Temperature Temperature 250 250 ) W ) 200 ( 200 m C t n P t n 150 p 150 t s i d i e r 100 o 100 e r o t l e o o 50 T 50 C 0 0 −30 0 25 50 75 100 125 −30 0 25 50 75 100 125 Ambient temperature a (˚C) Ambient temperatureaT (˚C) Fig.5 Peak Forward
in „PC817 Hilfe wiederstände bestimmen“ · Analoge Elektronik und Schaltungstechnik ·
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APT34F100B2_L_D-1593638.pdf
E 100 O VDS= 200V R V 10 U E C C VDS= 500V I 80 R 8 A TJ= 25°C O R - D 60 O 6 S - VDS= 800V R TJ= 150°C E 4 V 40 0 A E - G R, 8 ,S 2 D 20 D G IS V e 0 0 R 0 50 100 150 200 250 300 350 400 0 0.3 0.6 0.9 1.2 1.5 Qg, TOTAL
in „SMA SB4200TL-MS Reparatur“ · Analoge Elektronik und Schaltungstechnik ·
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68hc68p1e.pdf
WH 400 - 200 - ns Clock Width Low WL 400 - 200 - ns Data In to Clock Set-Up Time DVCV 200 - 100 - ns Data In after Clock Hold Time CVDX 200 - 100 - ns Clock to Data Propagation Delay CVDV - 200 - 100 ns Chip Disable to Output High Z t - 200 - 100 ns EXQZ Output Rise Time t - 200 - 100 ns r Output Fall Time t - 200 - 100 ns f Clock to Data Out Archive CVQX - 200 - 100 ns Clock Recovery Time tREC 200 - 200 - ns 4 CDP68HC68P1 Waveforms MISO
in „maximale unabhängige Ausgänge“ · Mikrocontroller und Digitale Elektronik ·
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X25_xxx_01_SP_E-1.pdf
Units Operating temperature Ta 40 105 °C Coil resistance Rb 260 290 320 Operating current m @ fz = 200 Hz 15 20 mA Magnetic saturation voltage Ubs 9 V Start Stop Frequency fss @ J L 0,2x10 kgm 2 200 Hz Maximum driving frequency fm @ J L 0,2x10 kgm 2 600 Hz Dynamic torque M 200 @ fz= 200 Hz 1.0 1.3 mNm
in „Ein Füllstandmesser auf Einperlungsbasis“ · Haus & Smart Home ·
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DS_UJ3N120070K3S-1530204.pdf
Vgs = -6V t Tj = 125°C ID40 Vgs = -8V n t r Tj = 175°C e Vgs = -10V u r 30 C1.E-05 C g n k r 20 e D L i1.E-06 10 r D 0 1.E-07 0 1 2 3 4 5 6 7 8 9 10 200 400 600 800 1000 1200 Drain-Source Voltage,DS (V) Drain-Source Voltage, DS(V) Figure 3 Typical output characteristics Figure 4 Typical drain-source
in „SiC Kaskoden Body Diode“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
pr4402.pdf
0.90 V min. startup Ta = 0...60°C 1.00 1.05 1.00 1.05 V max. operating 1.90 1.90 V LED Mean Current L1 = 22µH 12 12 mA measured with L1 type LQH32CN L1 = 14.7µH 15 15 mA L1 = 10µH 23 23 mA L1 = 6.8µH -- 32 mA L1 = 4.7µH -- 40 mA Switching Current at Vout Vout = 0.4V 200 250 mA Switching Frequency 500
in „LED mit 0,5 V zum Leuchten bringen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OSRAM_LSG_T676.pdf
co ± 5 date i e e 4 24 6H o C TOI SE t <4w lt p).i ct r 23 ˚C w ih oortrti i e e MPT O ts ahatalen l a tf at e. tral FlFloo ortrti O m on qesitlb e ow ,i:r ad edu iden l4 FF l o 4d:e,iore ode be l ti hen p r c e is L evevel5l5a6 ebflow arc see o%n w a ke ld at ure eL L evevel l d pe ere ee b ti e ore
in „Farberkennung mit Fototransistor (oder doch nicht?)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TE_Labels_LE_LM_LEB2-1730723.pdf
laserandinkjetprinters.Itisidealforbarcoding,PCBand I componentlabeling,andgenerallabelingapplicationsrequiringa l whitehighdurabilitylabel.LEoffershighprintresolutionaswellas e goodsolventandsmudgeresistance. b a LM L Tyco Electronics LM is a metalized polyester film with a permanent acrylic adhesive and a special
in „Etiketten auf PCB“ · Platinen ·
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PDF
FM_AM-Tuner_TEA5757HL_5759HL_1.pdf
BB112(12) TUNE 47 k 2 AM AM AM AM AGC AM V/I (5) E FRONT-END OSCILLATOR MIXER IF DETECTOR CONVERTER L5 A 22 nF L1 18 5 pF 7 7 (1) 44 45 39 48 9 23 11 12 4 5 (2) (3) 10 F 10 nF 220 nF 7 L2 L3 H (4) L 18 pF 330 pF ; L4 T P 18 pF BB112(12) 470 nF MHB642 r d E o VSTAB(A) w VSTAB(B) TUNE V A u 470 pF 47 k
in „Autoradio selber bauen.“ · Mikrocontroller und Digitale Elektronik ·
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XR2206.pdf
2206 16 LEAD CERAMIC DUAL-IN-LINE (300 MIL CDIP) Rev. 1.00 16 9 1 8 E D E1 Base A1 Plane A Seating L Plane e c B B1 α INCHES MILLIMETERS SYMBOL MIN MAX MIN MAX A 0.100 0.200 2.54 5.08 A 0.015 0.060 0.38 1.52 1 B 0.014 0.026 0.36 0.66 B 1 0.045 0.065 1.14 1.65 c 0.008 0.018 0.20 0.46 D 0.740 0.840 18.80 21.34 E 1 0.250 0.310 6.35 7.87 E 0.300 BSC 7.62 BSC e 0.100 BSC 2.54 BSC L 0.125 0.200 3.18 5.08 α 0⋅ 15 ⋅ 0⋅ 15⋅ Note: The control dimension is the inch column Rev. 1.03 13 XR-2206 16 LEAD PLASTIC DUAL-IN-LINE (300 MIL PDIP) Rev. 1.00 16 9 E1 1 8 D E A 2 Seating A Plane L
in „Funktionsgenerator mit XR2206“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
XR2206.pdf
2206 16 LEAD CERAMIC DUAL-IN-LINE (300 MIL CDIP) Rev. 1.00 16 9 1 8 E D E1 Base A1 Plane A Seating L Plane e c B B1 α INCHES MILLIMETERS SYMBOL MIN MAX MIN MAX A 0.100 0.200 2.54 5.08 A 0.015 0.060 0.38 1.52 1 B 0.014 0.026 0.36 0.66 B 1 0.045 0.065 1.14 1.65 c 0.008 0.018 0.20 0.46 D 0.740 0.840 18.80 21.34 E 1 0.250 0.310 6.35 7.87 E 0.300 BSC 7.62 BSC e 0.100 BSC 2.54 BSC L 0.125 0.200 3.18 5.08 α 0⋅ 15 ⋅ 0⋅ 15⋅ Note: The control dimension is the inch column Rev. 1.03 13 XR-2206 16 LEAD PLASTIC DUAL-IN-LINE (300 MIL PDIP) Rev. 1.00 16 9 E1 1 8 D E A 2 Seating A Plane L
in „XR2206 Sinus Generator“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XR2206v103.pdf
2206 16 LEAD CERAMIC DUAL-IN-LINE (300 MIL CDIP) Rev. 1.00 16 9 1 8 E D E1 Base A1 Plane A Seating L Plane e c B B1 α INCHES MILLIMETERS SYMBOL MIN MAX MIN MAX A 0.100 0.200 2.54 5.08 A 0.015 0.060 0.38 1.52 1 B 0.014 0.026 0.36 0.66 B 1 0.045 0.065 1.14 1.65 c 0.008 0.018 0.20 0.46 D 0.740 0.840 18.80 21.34 E 1 0.250 0.310 6.35 7.87 E 0.300 BSC 7.62 BSC e 0.100 BSC 2.54 BSC L 0.125 0.200 3.18 5.08 α 0⋅ 15 ⋅ 0⋅ 15⋅ Note: The control dimension is the inch column Rev. 1.03 13 XR-2206 16 LEAD PLASTIC DUAL-IN-LINE (300 MIL PDIP) Rev. 1.00 16 9 E1 1 8 D E A 2 Seating A Plane L
in „Funktionsgenerator XR2206; Tastverhältins des Rechtecksignals ändern“ · Mikrocontroller und Digitale Elektronik ·
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XR2206v103.pdf
2206 16 LEAD CERAMIC DUAL-IN-LINE (300 MIL CDIP) Rev. 1.00 16 9 1 8 E D E1 Base A1 Plane A Seating L Plane e c B B1 α INCHES MILLIMETERS SYMBOL MIN MAX MIN MAX A 0.100 0.200 2.54 5.08 A 0.015 0.060 0.38 1.52 1 B 0.014 0.026 0.36 0.66 B 1 0.045 0.065 1.14 1.65 c 0.008 0.018 0.20 0.46 D 0.740 0.840 18.80 21.34 E 1 0.250 0.310 6.35 7.87 E 0.300 BSC 7.62 BSC e 0.100 BSC 2.54 BSC L 0.125 0.200 3.18 5.08 α 0⋅ 15 ⋅ 0⋅ 15⋅ Note: The control dimension is the inch column Rev. 1.03 13 XR-2206 16 LEAD PLASTIC DUAL-IN-LINE (300 MIL PDIP) Rev. 1.00 16 9 E1 1 8 D E A 2 Seating A Plane L
in „Signalgenerator XR2206 Spanungsgesteuerte Amplitudenverstellung“ · Mikrocontroller und Digitale Elektronik ·
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XR2206CP.pdf
2206 16 LEAD CERAMIC DUAL-IN-LINE (300 MIL CDIP) Rev. 1.00 16 9 1 8 E D E1 Base A1 Plane A Seating L Plane e c B B1 α INCHES MILLIMETERS SYMBOL MIN MAX MIN MAX A 0.100 0.200 2.54 5.08 A 0.015 0.060 0.38 1.52 1 B 0.014 0.026 0.36 0.66 B 1 0.045 0.065 1.14 1.65 c 0.008 0.018 0.20 0.46 D 0.740 0.840 18.80 21.34 E 1 0.250 0.310 6.35 7.87 E 0.300 BSC 7.62 BSC e 0.100 BSC 2.54 BSC L 0.125 0.200 3.18 5.08 α 0⋅ 15 ⋅ 0⋅ 15⋅ Note: The control dimension is the inch column Rev. 1.03 13 XR-2206 16 LEAD PLASTIC DUAL-IN-LINE (300 MIL PDIP) Rev. 1.00 16 9 E1 1 8 D E A 2 Seating A Plane L
in „XR2206 - split supply“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XR2206v103.pdf
2206 16 LEAD CERAMIC DUAL-IN-LINE (300 MIL CDIP) Rev. 1.00 16 9 1 8 E D E1 Base A1 Plane A Seating L Plane e c B B1 α INCHES MILLIMETERS SYMBOL MIN MAX MIN MAX A 0.100 0.200 2.54 5.08 A 0.015 0.060 0.38 1.52 1 B 0.014 0.026 0.36 0.66 B 1 0.045 0.065 1.14 1.65 c 0.008 0.018 0.20 0.46 D 0.740 0.840 18.80 21.34 E 1 0.250 0.310 6.35 7.87 E 0.300 BSC 7.62 BSC e 0.100 BSC 2.54 BSC L 0.125 0.200 3.18 5.08 α 0⋅ 15 ⋅ 0⋅ 15⋅ Note: The control dimension is the inch column Rev. 1.03 13 XR-2206 16 LEAD PLASTIC DUAL-IN-LINE (300 MIL PDIP) Rev. 1.00 16 9 E1 1 8 D E A 2 Seating A Plane L
in „Sinusfrequenz mittels Gleichspannung einstellen XR2206“ · Mikrocontroller und Digitale Elektronik ·
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Datenblatt_XR2206.pdf
2206 16 LEAD CERAMIC DUAL-IN-LINE (300 MIL CDIP) Rev. 1.00 16 9 1 8 E D E1 Base A1 Plane A Seating L Plane e c B B1 α INCHES MILLIMETERS SYMBOL MIN MAX MIN MAX A 0.100 0.200 2.54 5.08 A 0.015 0.060 0.38 1.52 1 B 0.014 0.026 0.36 0.66 B 1 0.045 0.065 1.14 1.65 c 0.008 0.018 0.20 0.46 D 0.740 0.840 18.80 21.34 E 1 0.250 0.310 6.35 7.87 E 0.300 BSC 7.62 BSC e 0.100 BSC 2.54 BSC L 0.125 0.200 3.18 5.08 α 0⋅ 15 ⋅ 0⋅ 15⋅ Note: The control dimension is the inch column Rev. 1.03 13 XR-2206 16 LEAD PLASTIC DUAL-IN-LINE (300 MIL PDIP) Rev. 1.00 16 9 E1 1 8 D E A 2 Seating A Plane L
in „Funktionsgenerator mit XR2206 - Ausgangssignale sind unsauber“ · Mikrocontroller und Digitale Elektronik ·
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Intersil_ICL8052_ICL8068_ICL71C03.pdf
3081.2 O M M EN D E NO R EC 1 Precision 4 / Digi2, A/D Converter Features itle The ICL8052A or ICL8068A/lCL71C03 chip pairs with their • Typically Less Than 2µV P-P Noise (200.00mV Full Scale, L80 multiplexed BCD output and digit drivers are ideally suited lCL8068A AA/ for the visual display DVM/DPM market
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b210.pdf
plus long de les deux sorties LED! Reliez la plaquette de relais avec l'ordinateur par un câble protégé à huit conducteurs. Le câble peut avoir 10...200 cm de longueur. La plaquette a besoin d'une tension de service de 12 V=, 0,8 A au maximum. Veuillez Instrucciones para