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LST670.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
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Littelfuse_Thyristor_Kxxxzy.pdf
V VBO (b) Waveforms - + R 50 V ½ W K1200E SIDAC VC Sidac V ≥ V V + 4.7 μF DC(IN) B0 C 100 V 1.2 μF 200 V - t C L RL 24 V ac L 60 Hz VIN- VBO t R max≤ I BO V - V R min≥ IN TM H (MIN) H.V. Ignitor Figure 15: Comparison of SIDAC versus SCR for Gas Figure 16: Xenon Lamp Flashing Circuit Ignitor Circuit 100
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485.pdf
purpose of the measurements are given in Table 1. A’ + V – ID R B’ + + V IA’ – – VIB’ +10 VID Maximum +200 mV Operating –200 mV Range VID Transition Region –10 NOTE A: 200 mV < |VID < 10 V Figure 8. Input-Sensitivity Test Circuit and Resultant Waveform For a common-mode voltage varying from –7 V to 7 V,
in „Widerstände RS485“ · Mikrocontroller und Digitale Elektronik ·
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PDF
485.pdf
purpose of the measurements are given in Table 1. A’ + V – ID R B’ + + V IA’ – – VIB’ +10 VID Maximum +200 mV Operating –200 mV Range VID Transition Region –10 NOTE A: 200 mV < |VID < 10 V Figure 8. Input-Sensitivity Test Circuit and Resultant Waveform For a common-mode voltage varying from –7 V to 7 V,
in „2 RS-485 so richtig ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS100728A_IXTN660N04T4_-1022876.pdf
GS V Transient 15 V GSM I T = 25C (Chip Capability) 660 A S D25 C D I External Lead Current Limit 200 A L(RMS) IDM TC= 25C, Pulse Width Limited by TJM 1800 A G = Gate D = Drain S = Source IA TC= 25C 330 A EAS TC= 25C 5 J Either Source Terminal S can be used as PD TC= 25C 1040 W the Source Terminal
in „Suche Power-MosFet für etwa 600A“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
tinyswitchvb.pdf
TNY255 CURRENT LIMIT vs. di/dt 1.4 7 1.4 7 0 0 ) 3 ) 3 s1.2 I s1.2 I / P / P A1.0 A1.0 i m i m i 2 i 8 L o0.8 L o0.8 n t n t e d e d r i0.6 r i0.6 u a u a C m0.4 C m0.4 r r o N (0.2 (0.2 0.0 0.0 0 50 100 150 200 250 0 160 320 480 640 800 di/dt in mA/µs di/dt in mA/µs BYPASS PIN START-UP WAVEFORM OUTPUT CHARACTERISTIC 7 9 300 9 8 6 6 4 2 V I 250 TCASE=25°C I ( P ) TCASE=100°C P e 5 A a (200 l 4 t V e n 3 r150 i u P C S 2 i A r100 P 1 D Scaling Factors: Y B 0 50 TNY253 1.00 TNY255 1.33 0 0 0.2 0.4 0.6 0.8 1.0 0 2 4 6 8 10 Time (ms) DRAIN Voltage (V) 14 2/99 TNY253/254/255 Typical Performance
in „Konstanstrom aus Netsspannung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
littelfuse-PTC-Rline-Catalog.pdf
Resettable Devices Radial-Leaded Devices Figures R1-R5 —Thermal Derating Curve (Cont’d) RKEF Figure R2 200 t e r 150 C p T d a l 100 o H t a f 50 o % -40 -20 0 20 40 60 80 AmbientTemperature (˚C) A = RUSBF075, Figure R3 RUSBF120, 200 RUSBF155 B = RUEF, t e and all other RUSBF r 150 B C p A T d a d 100 o H e a A f o 50 B % 0 -40 -20 0 20 40 60 80 Ambient Temperature (˚C) RHEF Figure R4 200 n e 150 u C r T n a 100 l H d t R o 50 % 0 -40 -20 0 20 40 60 80 100 120 Ambient Temperature (˚C) Specifications subject to change without notice. ©2016 Littelfuse, Inc. HF Halogen Free RoHS Compliant
in „Batteriehalter mit unbekannten Bauteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
datasheet.pdf
B2=3A A 4 t 3 Tj=25°C U V s 2 Tj=125°C T t , 1 s S s o 10 R E 3 t 7 T V E 5 I M 3 M E T 2 - A 2 G R L I 100 on T O IC=200A H 7 tf C V 1 T 5 L C=150A I 3 L C=50A C=100A S 2 C 0 10 –1 10 –12 3 5 7100 2 3 57 101 2 3 57 10 2 100 2 345 710 12 3 47 1022 3 47 103 BASE CURRENT I B (A) COLLECTOR CURRENT C (A)
in „Was ist das für eine Art Transistormodul?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
(3): if(!SENSE_H || startup) { STATE_4 SENSE_V; rotor_state = 4; TCNT0L = 1; } break; case (4): if(SENSE_H || startup) { STATE_5 SENSE_U; rotor_state = 5; TCNT0L = 1; } break; case (5): if(!SENSE_H || startup) { STATE_6 SENSE_W; rotor_state = 0; TCNT0L = 1; } break; } }
in „BLDC Treiber MIT AVR“ · Mikrocontroller und Digitale Elektronik ·
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PDF
qm300ha-2h.pdf
U V T=125°C s 2 T =125°C T t IC=400A , 1 S s o 10 ts R E 3 t 7 T V E 5 I M 3 M E T 2 tf - A 2 G R L I 10 0 T O I=300A H 7 C V C=200A T 5 L 1 I 3 on L S 2 C 0 10–1 345 710 –2 3 47 1002 3457 101 2 3 100 2 345 710 12 3457 10 22 3457 103 BASE CURRENT I B (A) COLLECTOR CURRENT C (A) Feb.1999 MITSUBISHI
in „Darlington mit zwei Basis Anschlüssen“ · Analoge Elektronik und Schaltungstechnik ·
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Fraunhofer-ISE_Energiesystem-Deutschland-2050.pdf
die gute Speicherbarkeit entkoppelt und das System nutzt die Erzeugung als Flexibilisierungsoption. l 350 W G 300 g Abb. 21 Installierte Leistung n 250 s von fluktuierenden e 200 erneuerbaren Energien L 150 (PV, Wind on- und off- t i 100 shore) bei unterschied- l lichen Zusammenset- s 50 zungen der Antriebstech
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DSA00206265.pdf
π 1.8)/180 (1000 - 100)/0.05 =0.635 (kgf-cm) STEPPING MOTORS 9 MOTOR H STEP MOTOR O step angle 100 200 L (deg) 5 10 1 D SST-39C1 N 0.9 SST-40C1 SST-40C2 G SST-39D1 T SST-39D2 SST-42D1 O SSTSST-55D1 SST-55D2 R SST-55D3 Q SST-55D4 SST-55D5 STH-56D1 U 1.8 STH-56D2 E STH-56D3 SST-57D1 / SST-SST-57D2 / SST
in „Daten zu einem Schrittmotor herausfinden“ · Mikrocontroller und Digitale Elektronik ·
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CXA1100P.PDF
12 THD = 1% m ] 18 [ [ l 10 v i 16 A1163 l d A1102 u 8 a 14 A1101 t REC OUT l o n A1100 m 6 i 12 u S x a 4 10 M 2 8 4 6 8 10 12 14 16 0 1 2 3 4 5 6 7 Vcc — Supply voltage [V] RL — Load resistance [k ] – 7 – CXA1100/CXA1101/CXA1102
in „Signalleitung eines Kassetten tonkopfes direkt verbinden“ · Mikrocontroller und Digitale Elektronik ·
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LTV815.pdf
Saturation Fig.4 Forward Current vs. Forward Voltage vs. Forward Current Voltage 8 g A A Ta= 25 C 500 o l 7 A A m m Ta= 75 C o v 5 7 3 5 )200 50 C 25oC n 6 m 0 C t (F00 -25 C r 5 A A t 50 a 1 3 e r 4 u t A c 20 i 3 5 r 10 - 0 w t t 2 c o 5 c s I F o (E 1 C V 2 0 1 0 0.5 1.0 1.5 2.0 2.5 3.0 3.5 4.0 0 0.5
in „Mit Optokoppler niederohmig schalten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BUF742.PDF
figure 3) Storage time IC= 0.8 A; I B 0.2 A; –I B2 = 0.4 A; ts 1.5 2 ms Fall time V clamp = 300 V; L = 200 mH t 0.15 0.2 ms f Storage time IC= 2.5 A I; B1 = 0.5 A;–IB2 = 1.3 A ; ts 1 1.3 ms Fall time V clamp = 300 V; L = 200 mH tf 0.05 0.1 ms 94 8863 IC V S2+ 10 V Imeasure IC IBw 5 IC L C V S1 0 to
in „Transistor VCE?“ · Analoge Elektronik und Schaltungstechnik ·
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fed.pdf
2 72 85 SF-T8S 0.6 17 9.5 25±3 (8) 6 SF-T8-50D-PF 2 125 100 SF-T8D 0.6 17 12.5 25±3 (10) 8 SF-T8-60L-02-PF 2 200 115 SF-T8L 0.6 19 11 25±3 (8) 9.5 SF-T8-70L-02-PF 2 260 160 SF-T8L 0.55 18.5 11 25±3 (8) 9.5 SF-T10-80-01-PF 2 300 160 SF-T10 0.6 22 12 25±3 (10) 12 SF-T10-30-PF 3 40 40 SF-T10 0.8 22 12.5
in „Welche Induktivität bei Schaltreglern“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Current_Ref._100uA.pdf
r i E –1 a –0.02 VO= 1.5V n –2 n –0.04 o –3 N –0.06 –4 –0.08 –5 –0.01 10µA 100µA 1mA 0 50 100 150 200 250 Mirror Current (A) Current (µA) MIRROR INPUT VOTAGE/OUTPUT COMPLIANCE VOLTAGE vs CURRENT 4 3 V e g l 2 V Input Voltage u n Output I 1 Compliance Voltage 0 1µA 10µA 100µA 1mA 10mA Current ® 4 REF200
in „Stromreferenz Beschaltung“ · Mikrocontroller und Digitale Elektronik ·
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datasheet.pdf
l r r r r r e e t s d s s s s s s s s t t e c l u v e e e e e u u u u u e i s l u u u u u e e i s r s i mi n 1 s t t u F u e R t s e e e l m t i n s t e l i s m i r f s µ µ s e e e d d H o p n r 1 1 m i i µ o o o o o k k i t g L O d G A i m m m m m i i O d l R R 0 ,A tP K t t t t t P F B n v T T , F F t r r r r r ,L L , C l C C e p p n t t t t t µ , s t p 0 0 t i i a a a a d d n H n e u L R e C K K d d d h h iD k C T s T T r
in „OPV mit niedriger Eingangskapazität“ · Analoge Elektronik und Schaltungstechnik ·
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047304JES_2013.pdf
(relative to default) 4x 4x 2x 2x 3.5 3.5 10 ) 1x 1x ° V 0.5x V 0.5x ( ( ( r g 3 g 3 0 t l l e o o p V V m T 2.5 2.5 -10 (c) (d) 2 2 -20 0 200 400 600 800 1000 0 500 1000 1500 2000 Discharge Capacity (mAh) Discharge Capacity (mAh) 4 4 20 dlnf/dlnc 1C discharge at -20°C dlnf±dlnc 1C discharge
in „Lithium Ionen Batterie auf 4,2V bei 0°C aufladen sicher?“ · Analoge Elektronik und Schaltungstechnik ·
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Display_SC1602D.pdf
1 Vss -- Ground 0V 2 Vdd -- Supply Voltage for Logic 5V 3 Vo -- LCD Contrast Adjust By User 4 RS H/L Register Select H: Data, L: Instruction Code 5 R/W H/L Read / Write H: Data Read, L: Data Write 6 E H, HàL Enable Enable Signal 7 DB0 H/L Data Bit 0 8-Bit Interface 8 DB1 H/L Data Bit 1 8-Bit Interface 9 DB2 H/L Data Bit 2 8-Bit Interface 10 DB3 H/L Data Bit 3 8-Bit Interface 11 DB4 H/L Data Bit 4 4 or 8-Bit Interface 12 DB5 H/L Data Bit 5 4 or 8-Bit Interface 13 DB6 H/L Data Bit 6 4 or 8-Bit Interface 14 DB7
in „hd44780 / LCD SC1602D / ATmega16 (STK500)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
P3596LM2576T-XX.pdf
Quiescent Current Q (Note 4) 5 10 mA Standby Quiescent Current ISTBY ON/OFF pin=5V (OFF), V IN40V 80 200 μA ON/OFF CONTROL ON/OFF Pin Logic Input Low VIH Regulator ON 0.6 1.3 V Threshold Voltage High V IL Regulator OFF 2.0 ON/OFF Pin Input Current H V LOGIC=2.5V (Regulator OFF) 5 15 μA L V LOGIC=0.5V (
in „Step-Down mit ext. Fet, 24Vin, 12Vout, 2A“ · Mikrocontroller und Digitale Elektronik ·
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irl7486mpbf-936689.pdf
, C SHORTED ID= 123A iss gs gd ds 12 Crss = Cgd V VDS = 32V C = C + C e oss ds gd g 10 VDS = 20V F l (10000 Ciss V c e 8 n u i C oss o a C - 6 a rss - C t C 1000 G 4 , G V 2 0 100 1 10 100 0 20 40 60 80 100 120 140 160 180 200 VDS , Drain-to-Source Voltage (V) Q G Total Gate Charge (nC) Fig 7. Typical
in „Reparatur Makita XWT08Z (DTW1002Z)“ · Analoge Elektronik und Schaltungstechnik ·
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73493.pdf
Package Information www.vishay.com Vishay Siliconix 2 TO-263 (D PAK): 3-LEAD -B- A E 2 c2 3 6 -A- L 2 D EK D 4 D E3 D D L 3 L A A b2 Detail “A” c e b E2 0.010 AM 2 PL ° INCHES MILLIMETERS - 0° L DIM. MIN. MAX. MIN. MAX. A 0.160 0.190 4.064 4.826 L1 b 0.020 0.039 0.508 0.990 b1 0.020 0.035 0.508 0.889
in „Messungen mit DMM Dual-Slope Verfahren am PMOS“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
UP6281B8.pdf
whilemaintainsminimumdeadtimeforoptimizedefficiency.T Under Voltage Lockout for Supply Input PSOP-8L or WDFN3x3-8L Paokages high-impedance at PWM pin, preventing rapid output pin r RoHS Compliant and Halogen Free capacitor discharge during system shutdowns. Ordering Information Other feature is supply input under voltage lockout. The uP6281 is available in thermal enhanced PSOP-8L or Order Number Package Type Remark WDFN3x3-8Lpackages. uP6281ASU8 PSOP - 8L Applications uP6281ADD8 cWDFN3x3 - 8L Core Voltage Supplies for Desktop, Note: uPIiproducts are compatible with the current
in „Am3 Mainboard Vcore instabil wenn kalt“ · PC Hard- und Software ·
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condensator.pdf
geringeren Verlustfaktor. AUDYN-Plus • 1200 Volt Bezeichnung C/µF Nennspannung tang δ tang δ U / Volt D x L/mm AL / mm d / mm bei 1 kHz bei 10 kHz Bestell.-Nr.: €/Stück Plus/0,10/12 0,10 1.200 25x43 50 1,00 0,0100 0,0150 134 1751 4,60 Plus/0,15/12 0,15 1.200 25x43 50 1,00 0,0090 0,0130 134 1752 5,11 Plus/0,22/12 0,22 1.200 25x43 50 1,00 0,0070 0,0120 134 1753 5,11 Plus/0,33/12 0,33 1.200 25x43 50 1,00 0,0060 0,0090 134 1754 6,14 AUDYN-Plus • 800 Volt Bezeichnung C / uF Nennspannung tang δ tang δ U / Volt D x L/mm AL /
in „Kennzeichnung Kondensator Q4“ · Analoge Elektronik und Schaltungstechnik ·
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BS170.pdf
V , I = 1mA All 0.8 2.1 3 V - GS(th) DS GS D h RDS(ON) Static Drain-Source On-ResistanGS= 10V, D = 200mA All 1.2 5 Ω a n gFS Forward Transconductance VDS= 10V,DI = 200mA BS170 320 mS n VDS ≥ 2 DS(on) MMBF170 320 l I = 200mA E D n Dynamic Characteristics a n Ciss Input Capacitance VDS= 10V, GS = 0V, All
in „BS170 Wie viel Watt verträgt er?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PD243x_353x_443x.pdf
normal ASCII data. Typical Loading Sequence CEO CE1 RD WR A2 A1 A0 D7 D6 D5 D4 D3 D2 D1 D0 Display 1. L H H L L X X 0 0 0 0 0 0 1 1 2. L H H L H H H 0 1 0 1 0 0 1 1 S 3. L H H L H H L 0 1 0 1 0 1 0 0 ST 4. L H H L H L H 0 1 0 0 1 1 1 1 STO 5. L H H L H L L 0 1 0 1 0 0 0 0STOP 6. L H H L H L H 1 1 0 0 1 1 1 STOP1 7. L H H L L X X 0 0 0 1 0 1 1 1 STO*P 8. L H H L H H H 1 1 0 1 0 0 1 1S*TO*P 9. L H H L L X X 0 0 0 1 1 1 1 1 S†TO†P 10. L H H L L X X 0 0 1 0 0 0 1 1 S*T*O*P* * Blinking character † Character alternating
in „SIEMENS Matrix LED Anzeige PB4437“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pd24xx.pdf
normal ASCII data. Typical Loading Sequence CEO CE1 RD WR A2 A1 A0 D7 D6 D5 D4 D3 D2 D1 D0 Display 1. L H H L L X X 0 0 0 0 0 0 1 1 2. L H H L H H H 0 1 0 1 0 0 1 1 S 3. L H H L H H L 0 1 0 1 0 1 0 0 ST 4. L H H L H L H 0 1 0 0 1 1 1 1 STO 5. L H H L H L L 0 1 0 1 0 0 0 0STOP 6. L H H L H L H 1 1 0 0 1 1 1 STO1 7. L H H L L X X 0 0 0 1 0 1 1 1 STO*P 8. L H H L H H H 1 1 0 1 0 0 1 1S*TO*P 9. L H H L L X X 0 0 0 1 1 1 1 1 S†TO†P 10. L H H L L X X 0 0 1 0 0 0 1 1 S*T*O*P* * Blinking character † Character alternating
in „HP 2118/SLR 2016 - Ich werde Irre!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PD2435_1x4_Dotmatrix_parallel.pdf
normal ASCII data. Typical Loading Sequence CEO CE1 RD WR A2 A1 A0 D7 D6 D5 D4 D3 D2 D1 D0 Display 1. L H H L L X X 0 0 0 0 0 0 1 1 2. L H H L H H H 0 1 0 1 0 0 1 1 S 3. L H H L H H L 0 1 0 1 0 1 0 0 ST 4. L H H L H L H 0 1 0 0 1 1 1 1 STO 5. L H H L H L L 0 1 0 1 0 0 0 0STOP 6. L H H L H L H 1 1 0 0 1 1 1 STOP1 7. L H H L L X X 0 0 0 1 0 1 1 1 STO*P 8. L H H L H H H 1 1 0 1 0 0 1 1S*TO*P 9. L H H L L X X 0 0 0 1 1 1 1 1 S†TO†P 10. L H H L L X X 0 0 1 0 0 0 1 1 S*T*O*P* * Blinking character † Character alternating
in „[V] Intelligente LED-Matrix-Displays, HDSP 2112, SCF 5740, PD 2435“ · Markt ·
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Datei
standard.dio.txt
mfg=DiodesInc type=Schottky ) .model CMDSH2-3 D(Is=210nA Rs=.5 N=1.09 Cjo=50p M=.5 Eg=.69 Xti=2 Iave=200m Vpk=30 mfg=Central type=Schottky) .model DFLS220L D(Is=25u Rs=.047 N=1 Cjo=252p M=.33 Eg=.69 Xti=2 Iave=2 Vpk=20 mfg=Diodes_Inc. type=Schottky) .model MBR735 D(Is=159u Rs=.02 N=1.76 Cjo=740p M=.6 Eg
in „Hilfe bei LTSpice nötig!“ · Analoge Elektronik und Schaltungstechnik ·
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DC02EN.pdf
Torque (oz-in.)800 Continuous Torque (Ncm) Continuous 700 500 500 600 400 300 400 500 300 400 300 200 200 300 200 100 200 100 100 100 0 0 0 0 0 1000 2000 3000 4000 5000 0 1000 2000 3000 4000 5000 Speed (RPM) Speed (RPM) DPP685-185 & DPP685M-130 DPP689-200 & DPP689M-141 Torque (oz-in.) Intermittent Torque
in „[V] 2 Elektromotoren“ · Markt ·
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PDF
14_pdfsam_TEA5767HN.pdf
sensitivity input RF = 76 MHz to 108 MHz; - 2 3.5 V voltage f = 22.5 kHz;mod = 1 kHz; (S+N)/N = 26 dB; L = R; de-emphasis = 75 s; BAF = 300 Hz to 15 kHz IP3 in-band 3rd-order f = 200 kHz; f = 400 kHz; 81 84 - dB V in 1 2 intercept point related totune= 76 MHz to 108 MHz VRFI1-RFI2peak value) IP3 out out-band
in „TEA5767 Scannt nicht korrekt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tlc4545.pdf
presented. 6 www.ti.com SLAS293 − DECEMBER 2001 TYPICAL CHARACTERISTICS DIFFERENTIAL NONLINEARITY B S 2.5 L y r 1.5 e i n 0.5 o l t −0.5 e e i −1.5 D − N −2.5 D 0 10000 20000 30000 40000 50000 60000 Code Figure 1 INTEGRAL NONLINEARITY B 2.5 L 2 − i 1.5 a 1 n 0.5 l o 0 l −0.5 r g −1 n −1.5 I L −2 I −2.5 0 10000
in „Warum funktioniert das nicht? Mittelwert, AD_wandler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tips_microDCDCconverter.pdf
Information Paper micro DC/DC Converter <参考資料>EMI(Electromagnetic Interference) V =3.7V,V =1.8V/I =200mA IN OUT OUT VCCI Class B(3m) 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
in „1.5A regulator Built-in Step-Down micro DC/DC Converters“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Hantek_Tekway_DSO_v1.03.pdf
J100 1 20R - 200MHz GND L2 P L4 P 17 CH1 BNCNC P0 R01_2 BAV9910 Q01_101 PICH1BNC01 PIR0102PIR010202 GND 1 J/SST201 - 100/200MHz 13R01_3103 GND PICH1BN02 Tp101 13 3 BSR58LT1G- 60MHz 1k CO01_19 B PIR012 1PITp10101 PIC010502
in „TEKWAY DST1xx2B Oszilloskop“ · Mikrocontroller und Digitale Elektronik ·
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PDF
aMG-160128B-SYFLY-W-6_010.pdf
Ground 3 VDD 5.0V Power supply for logic 4 Vo Power supply for LCD contrast adjustment 5 Vee NC 6 /WR L Data write. Write data into RA6963 when /WR = L 7 /RD L Data read. Read data from RA6963 when RD = L 8 /CE L Chip enable the controller RA6963 9 C/D H / L WR=L , C/D=H : Command Write C/D=L: Data write RD=L , C/D=H : Status Read C/D=L: Data read 10 /HALT L Clock operating stop signal 11 /RESET L Reset signal 12 DB0 H / L Data bus line 13 DB1 H / L Data bus line 14 DB2 H / L Data bus line 15 DB3 H / L Data
in „LCD Kontrastspannungsproblem“ · Mikrocontroller und Digitale Elektronik ·
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LM2575TADJ.PDF
(⋅C) Figure 4. Switch Saturation Voltage Figure 5. Current Limit 2.0 20 ( ▯V out 5% ) Vout= 5.0 V L 1.8 Rind= 0.2 ▯ m 18 Measured at T Load= 1.0 A T Ground Pin E 1.6 N 16 TJ= 25⋅C R R F 1.4 U 14 D C Load= 1.0 A T 1.2 N 12 P C U 1.0 Load= 200 mA E 10 - U U 0.8 , 8.0 ILoad= 200 mA P I I 0.6 6.0 0.4 4.0
in „3W Luxeon Led energiesparend dimmen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BC1604A_series_VER01.pdf
Vdd 5.0V Supply Voltage for logic (option +3.0V) 3 Vo (Variable) Operating voltage for LCD 4 RS H/L H: DATA, L: Instruction code 5 R/W H/L H: Read(MPU¡÷ Module) L: Write(MPU¡÷ Module) 6 E H,H¡÷ L Chip enable signal 7 DB0 H/L Data bit 0 8 DB1 H/L Data bit 1 9 DB2 H/L Data bit 2 10 DB3 H/L Data bit 3
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PDF
Trafo_katalog.pdf
/51 500 24 7,5 TS 180/015L EI102/51 220 24 4 220 0.38 TS 180/016L EI102/51 220lub380 24 1.5 220 0.65 TS 180/017L EI102/51 380 12 10 24 2,5 TS 200/2 RZC25/60 220 2x80 2x0,5 24 1.7 12.5 2.3 TS 200/3 RZC25/60 220 2x28,5 2x2,7 28
in „Datenblatt Unitra Zatra TS 15/36 gesucht (polnisch?)“ · Markt ·
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71v416.pdf
Truth Table CS OE WE BLE BHE I/0-I/7 I/8-I/15 Function H X X X X High-Z High-Z Deselected - Standby L L H L H DATA OUT High-Z Low Byte Read L L H H L High-Z DATA OUT High Byte Read L L H L L DATA OUT DATA OUT Word Read L X L L L DATA IN DATA IN Word Write L X L L H DATA IN High-Z Low Byte Write L X L
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Datei
SP601_BRD.ucf
=4 |IOSTANDARD=LVCMOS25; #IO_L06P_0 # //NET "PHY_RXCLK" LOC = "L16" |IOSTANDARD=LVCMOS25; #IO_L15N_1_GCLK6 //NET "PHY_CRS" LOC = "M13" |IOSTANDARD=LVCMOS25; #IO_L27N_1 //NET "PHY_COL" LOC = "L14" |IOSTANDARD=LVCMOS25; #IO_L27P_1 //NET "PHY_RXER" LOC = "P17" |IOSTANDARD=LVCMOS25; #IO_L22P_1 //NET "PHY_RXCTRL_RXDV" LOC = "N18" |IOSTANDARD=LVCMOS25; #IO_L21N_1 //NET "PHY_RXD<0>" LOC = "M14" |IOSTANDARD=LVCMOS25; #IO_L26P_1 //NET "PHY_RXD<1>" LOC = "U18" |IOSTANDARD=LVCMOS25; #IO_L25N
in „Ethernetcontroller - Marvell PHY 88e1111“ · FPGA, VHDL & Co. ·
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PDF
tft_xga_lvds.pdf
= 1.2% max., L anA L are Brightness at location A and B l B -B’l / B x 100%= 1.2% max., L anA’L are B’ightness at location A’ and B’ (C) Copyright AU Optronics, Inc. 2004 All Rights Reserved. No Reproduction and Redistribution
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LM386.pdf
L M 3 December 1994 8 6 L o w LM386 Low Voltage Audio Power Amplifier V General Description o The LM386 is a power amplifier designed for use in lowVoltage gains from 20 to 200 t voltage consumer applications
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HCPL2631.pdf
mA U T 0.5 T O C I = 10-15 mA P IO= 16 mA P 0.5 IO= 12.8 mA T F T IO= 12.8 mA T P O 0.4 O 0.4 T 50 L L O E 0.3 E 0.3 L E I = 9.6 mA E IO= 9.6 mA O = 6.4 mA E L 0.2 O O = 6.4 mA L 0.2 E 40 F = 5.0 mA W W L O O W – 0.1 – 0.1 L L L – O 0 O 0 L 20 V -60-40 -20 0 20 40 60 80 100 V -60-40 -20 0 20 40 60 80
in „HCPL2631 Vorwiderstand“ · Mikrocontroller und Digitale Elektronik ·
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HCNR200.pdf
Description bandwidth and low cost. The The HCNR200/201 high-linearity V IORM= 1414 V peak analog optocoupler consists of a HCNR200/201 is very flexible (Option #050) and, by appropriate design of the • Surface Mount Option high-performance AlGaAs LED
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A200-DATASHEET_MAX756_757.pdf
unless otherwise noted.) M PARAMETER CONDITIONS MIN TYP MAX UNITS MAX756, 3/5 = 0V, 0mA < I LOAD < 200mA 4.8 5.0 5.2 Output Voltage 2V < V < 3V MAX756, 3/5 = 3V, 0mA < I < 300mA 3.17 3.30 3.43 V IN LOAD MAX757, V OUT = 5V, 0mA < ILOAD < 200mA 4.8 5.0 5.2 Minimum Start-Up Supply Voltage LOAD = 10mA 1.1
in „MAX756-Schlechter Wirkungsgrad“ · Analoge Elektronik und Schaltungstechnik ·
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A200-DATASHEET_MAX756_757.pdf
unless otherwise noted.) M PARAMETER CONDITIONS MIN TYP MAX UNITS MAX756, 3/5 = 0V, 0mA < I LOAD < 200mA 4.8 5.0 5.2 Output Voltage 2V < V < 3V MAX756, 3/5 = 3V, 0mA < I < 300mA 3.17 3.30 3.43 V IN LOAD MAX757, V OUT = 5V, 0mA < ILOAD < 200mA 4.8 5.0 5.2 Minimum Start-Up Supply Voltage LOAD = 10mA 1.1
in „Step-Up Wandler MAX756“ · Analoge Elektronik und Schaltungstechnik ·
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Rehfuss_FU.pdf
4.5 7,5 10,5 Eingairn;g_ +"...A_US..:g:.::a::."n~g,ssiPpãan;;;n~u~n~g~---fA~r=1J==:I=:J~=I3xO:;J... 200/240§:==1 ~spaan;;;n~Umn~g---~;V~~------------~~~~::~------------~ l x 200 - 240 ± 10% Netzfrequenz V ---+-A---B Hz 47 - 63 ___messungen ~xE ====~ ~m~m~==IBo~7~X~13~6~X~16~2C:=~lII4~9~xII5[3~xI1M~ijU
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CLAA070VA02.pdf
of OFF *2) Definition of luminance: Measurewhite luminance onthesame5pointsandtaketheaveragevalue. 200 400 600 (1,1) 1 2 120 5 240 3 4 360 (800,480 ) Fig.1 Measuring point *3) Definition of Luminance Uniformity Measure maximum luminance(L(MAX) )and minimum luminance (L(MIN) )onthe5pointsasfigure1.Luminance
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22070a-53890.pdf
1 mA VIN 3.0V to 6.0V ( 120 / 0.034 n ( e 115 o 0.030 u VOUT= 2.5V t OUT= 50 mA IOUT= 100 mA C 110 l 0.026 n g c 105 VOUTc 0.8V e 0.022 s e i 100 i 0.018 Q 95 L 0.014 I = 200 mA IOUT= 300 mA OUT 90 0.010 -45 -20 5 30 55 80 105 130 -45 -20 5 30 55 80 105 130 Temperature (°C) Temperature (°C) FIGURE 2
in „[V] 50St.LowNoise Microchip LDO MCP1824T 3,3V/300mA SOT223-5 mit Shutdown“ · Markt ·