-
PDF
MAX7450ESA_T-Dallas-Semiconductor.pdf
MAX7450), V SUPPLY = ±3.3V ±5% (MAX7451), V SUPPLY = +5V ±5% (MAX7452), R = 150Ω to GLD, C = 0 to L 20pF, GSET = 1, AGCD = 1. T = +25°C, unAess otherwise noted. 4 7 GROUP DELAY vs. FREQUENCY 2T RESPONSE DIFFERENTIAL GAIN X MAX7450 toc02 ) 60 t ( 0.4 o A 4 A 0.2 5 A G A M 50 M I 0 M / ) N ( E -0.2 1 Y
in „Video conditioners gesucht“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
stb6nk60z.pdf
0.051 H1 6.20 6.60 0.244 0.256 J1 2.40 2.72 0.094 0.107 L 13 14 0.511 0.551 L1 3.50 3.93 0.137 0.154 L20 16.40 0.645 L30 28.90 1.137 ∅P 3.75 3.85 0.147 0.151 Q 2.65 2.95 0.104 0.116 11/17 Package mechanical data STB6NK60Z - STB6NK60Z-1 - STP6NK60ZFP - STP6NK60Z TO-220FP MECHANICAL DATA mm. inch DIM. MIN
-
PDF
stb6nk60z.pdf
0.051 H1 6.20 6.60 0.244 0.256 J1 2.40 2.72 0.094 0.107 L 13 14 0.511 0.551 L1 3.50 3.93 0.137 0.154 L20 16.40 0.645 L30 28.90 1.137 ∅P 3.75 3.85 0.147 0.151 Q 2.65 2.95 0.104 0.116 11/17 Package mechanical data STB6NK60Z - STB6NK60Z-1 - STP6NK60ZFP - STP6NK60Z TO-220FP MECHANICAL DATA mm. inch DIM. MIN
in „Unterschiedliche Power MOSFET kompatibel?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
rgs50tsx2d-e.pdf
Case Temperature vs. Case Temperature 400 60 ] ] 50 [300 [ P I : t 40 i e a r i200 C 30 i r D c e l 20 o100 o P C 10 Tj≤ 175ºC VGE≥ 15V 0 0 0 25 50 75 100 125 150 175 0 25 50 75 100 125 150 175 Case Temperature : T [°C ] Case Temperature : T [°C ] C C Fig.3 Forward Bias Safe Operating Area Fig.4 Reverse
in „RGS50TSX2D als Ersatz für IHW20N120R3?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
rgs50tsx2d-e.pdf
Case Temperature vs. Case Temperature 400 60 ] ] 50 [300 [ P I : t 40 i e a r i200 C 30 i r D c e l 20 o100 o P C 10 Tj≤ 175ºC VGE≥ 15V 0 0 0 25 50 75 100 125 150 175 0 25 50 75 100 125 150 175 Case Temperature : T [°C ] Case Temperature : T [°C ] C C Fig.3 Forward Bias Safe Operating Area Fig.4 Reverse
in „Induktions Doppelfeld (stand alone) - eine Seite hinüber.“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
MC1489.pdf
Symbol Value Unit Power Supply Voltage VCC 10 Vdc Input Voltage Range VIR ± 30 Vdc Output Load Current L 20 mA Power Dissipation (Package Limitation, SOIC−14 and Plastic Dual In−Line Package) P D 1000 mW Derate above T = + 25°C 1/ 6.7 mW/°C A qJA Operating Ambient Temperature Range T 0 to + 75 °C A Storage
in „USB/RS232 Konverter, einige Fragen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
BC546-D.PDF
) Figure 7. DC Current Gain Figure 8. “On” Voltage ) T 2.0 )-1.0 O ° ( TA= 25°C V E 1.6 (-1.4 A N L 20 mA 50 mA 100 mA 200 mA I V I E 1.2 F-1.8 T O q for V M C VB BE - C = R -55°C to 125°C R 0.8 10 mA T-2.2 T R E P L 0.4 M-2.6 C T ,E B VC θ 0 -3.0 0.02 0.05 0.1 0.2 0.5 1.0 2.0 5.0 10 20 0.2 0.5 1.0 2.0
in „5V Solid-State-Relais über 3.3V Logik steuern“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
maxell-lisocl2-batteries-catalog.pdf
duration time (h) d 7,000 g a 5,000 0.5 Temperature: –40 deg. C h 4.0 i D ) 2,000 ( e 3.0 a 1,000 l 20 30 50 70 100 200 300 500 V Discharge current (µA) 2.0 1mA 100µA 20µA 2 3 4 5 1 10 10 10 10 10 Discharge duration time (h) 쐽 Storage Characteristics Temperature: 60 deg. C Discharge current: 1mA Temperature
in „Ladestrom schädlich für Li-SOCl2-Primärzellen?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
LT8609_StepDown.pdf
Voltage Line Regulation VIN= 4.0V to 40V,LOAD = 0.5A l 0.02 0.04 %/V Feedback Pin Input Current V = 1V l ±20 nA FB MinimumOn-Time LOAD = 1.5A l 45 75 ns LOAD = 1.5A, SYNC = 1.9V l 45 60 ns MinimumOff Time 115 ns Oscillator Frequency R = 221k, I = 0.5A l 155 200 245 kHz FSET LOAD l RFSET= 60.4k, LOAD= 0.5A
in „LT8609 MSOP Platine. Ich bekomms einfach nicht hin.“ · Platinen ·
-
PDF
MSP430F233TPM.pdf
P4, P5, and P6 PARAMETER TEST CONDITIONS V CC MIN TYP MAX UNIT Port output frequency P1.4/SMCLK, C L 20 pF, R L 1 kΩ 2.2 V DC 10 fPx.y with load (see Notes 1 and 2) 3 V DC 12 MHz P2.0/ACLK/CA2, P1.4/SMCLK, C =L20 pF, 2.2 V DC 12 fPort_CLK Clock output frequency MHz RL= 1 kΩ (see Note 2) 3.3 V DC 16 P1.0/TACLK/CAOUT, C =L20 pF, LF mode 30 50 70 P1.0/TACLK/CAOUT, C =L20 pF, XT1 mode 40 50 60 % Duty cycle of output P1.1/TA0, CL= 20 pF, XT1 mode 40 60 t(Xdc) frequency P1.1/TA0, CL= 20 pF, DCO 50% - 15 ns 50 50% + 15 ns P1.4
in „MSP430 SPI A25L080 Flash“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
XC6216_XE6216.pdf
(ceramic),T℃=25 ) ) d80 d 80 ( ( R70 R 70 S S 60 :60 : a a 50 R50 ( n R 40 c40 c je j R30 R 30 le l 20 ip0 p R R 10 10 0 0 0.01 0.1 1 10 100 0.01 0.1 1 10 100 RipFrequency : f (kHz)Hz) Ripple Frequency: f (kHz) XC6216B/D 332 XC6216B/D 332 VIN=5.3Vdc+0.5Vp-p, IOUT=1mA VIN=5.3Vdc+0.5Vp-p, IOUT=30mA CL=
in „Suche schaltung für Ladeerhaltung einer Pufferbatterie“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
PC2004_bei_robotikhardware.de.pdf
- VDD-10.0 V DD+0.3 V Input Voltage V IN - -0.3 V DD+0.3 V Operating Temperature T OP Excluded B/L -20 70 ℃ Storage Temperature T ST Excluded B/L -30 80 ℃ Storage Humidity HD Ta<40 ℃ - 90 %RH PC2004LRU-CWA-HDHQ Rev.0 (DK) Page4 1.4 DC Electrical Characteristics V DD = 5.0 V ± 10%,V =SSV,Ta = 25℃ Item
in „Atmega2560 8 Bit Steuerung LCD“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
FARBSENSOR_TCS_230.pdf
S1 OUTPUT FREQUENCY SCALING (f ) o S2 S3 PHOTODIODE TYPE L L Power down L L Red L H 2% L H Blue H L 20% H L Clear (no filter) H H 100% H H Green Available Options DEVICE TA PACKAGE − LEADS PACKAGE DESIGNATOR ORDERING NUMBER TCS230 −40⋅C to 85⋅ C SOIC−8 D TCS230D Absolute Maximum Ratings over operating
in „Farbsensor TCS 230“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AT070TN83___LCM__TTL_TCB___TSP__Final_Spec1214.pdf
larger than 20 mA. L Note 2: The LED Supply Voltage is defined by the number of LED at Ta=25℃ and L =20mA. In the case of 3pcs LED, VL=3.3*3=9.9V Note 3: The LED driving condition is defined for each LED module(3 LED Serial). LED1 LED2 LED8 LED9 The copyright belongs to InnoLux. Any unauthorized use
-
PDF
TDA7294.pdf
1.14 1.27 1.4 0.045 0.050 0.055 G1 17.57 17.78 17.91 0.692 0.700 0.705 H1 19.6 0.772 H2 20.2 0.795 L 20.57 0.810 L1 18.03 0.710 L2 2.54 0.100 L3 17.25 17.5 17.75 0.679 0.689 0.699 L4 10.3 10.7 10.9 0.406 0.421 0.429 L5 5.28 0.208 L6 2.38 0.094 L7 2.65 2.9 0.104 0.114 S 1.9 2.6 0.075 0.102 S1 1.9 2.6 0.075
in „TDA7294 Verstärker“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
TDA7294.pdf
1.14 1.27 1.4 0.045 0.050 0.055 G1 17.57 17.78 17.91 0.692 0.700 0.705 H1 19.6 0.772 H2 20.2 0.795 L 20.57 0.810 L1 18.03 0.710 L2 2.54 0.100 L3 17.25 17.5 17.75 0.679 0.689 0.699 L4 10.3 10.7 10.9 0.406 0.421 0.429 L5 5.28 0.208 L6 2.38 0.094 L7 2.65 2.9 0.104 0.114 S 1.9 2.6 0.075 0.102 S1 1.9 2.6 0.075
in „Problem mit TDA7294 datasheet“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
irs2011pbf.pdf
SupplyVoltage www.irf.com 7 IRS2011(S)PbF s s ( 50 (50 e e i i i 40 i40 n n i i t 30 c30 M M Max. y Max. y20 l 20 l D D n 10 f10 - - r r T 0 T 0 T T -50 -25 0 25 50 75 100 125 -50 -25 0 25 50 75 100 125 o Temperature( C) V CCSupply Voltage(V) Figure 6A. Turn-onDelayMatchingTime Figure 6B. Turn-onDelayMatchingTime
in „H-Brücke - 30A - MOSFET“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
155574-da-01-en-OP_VERST_LM2902N_STM.pdf
Characteristics LM2902 Figure 15. Positive supply voltage Figure 16. Positive supply voltage 100 160 ) R L 20kΩ A ( 75 ) 120 T d E ( R I U 50 G 80 R L 2kΩ C E T G P 25 T 40 I Tamb= +25°C L V 0 10 20 30 0 10 20 30 POSITIVE SUPPLY VOLTAGE (V) POSITIVE SUPPLY VOLTAGE (V) Figure 17. Power supply & common mode Figure
in „Operationsverstärker“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
TDA7294_100V_100W.pdf
1.14 1.27 1.4 0.045 0.050 0.055 G1 17.57 17.78 17.91 0.692 0.700 0.705 H1 19.6 0.772 H2 20.2 0.795 L 20.57 0.810 L1 18.03 0.710 L2 2.54 0.100 L3 17.25 17.5 17.75 0.679 0.689 0.699 L4 10.3 10.7 10.9 0.406 0.421 0.429 L5 5.28 0.208 L6 2.38 0.094 L7 2.65 2.9 0.104 0.114 S 1.9 2.6 0.075 0.102 S1 1.9 2.6 0.075
in „TDA7294: Passender Schaltplan?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
PC2004LRU-CWA-HDHQ_4x20.pdf
- VDD-10.0 V DD+0.3 V Input Voltage V IN - -0.3 V DD+0.3 V Operating Temperature T OP Excluded B/L -20 70 ℃ Storage Temperature T ST Excluded B/L -30 80 ℃ Storage Humidity HD Ta<40 ℃ - 90 %RH PC2004LRU-CWA-HDHQ Rev.0 (DK) Page4 1.4 DC Electrical Characteristics V DD = 5.0 V ± 10%,V =SSV,Ta = 25℃ Item
-
PDF
MBI5026.pdf
Rext00 Ω CLK - SDO tpHL V L4.0 V 15 20 - ns R L52 Ω CLK tw(CLK) 20 - - ns C L10 pF Pulse Width LE tw(L) 20 - - ns t 200 - - ns OE w(OE) Hold Time for LE 5 - - ns th(L) Setup Time for LE 5 - - ns tsu(L) Hold Time for SDI t 10 - - ns h(D) Setup Time for SDI t 5 - - ns su(D) Cascade Clock Frequency F CLK Operation
in „Vorschläge für Led-Treiber?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MBI5026.pdf
Rext00 Ω CLK - SDO tpHL V L4.0 V 15 20 - ns R L52 Ω CLK tw(CLK) 20 - - ns C L10 pF Pulse Width LE tw(L) 20 - - ns t 200 - - ns OE w(OE) Hold Time for LE 5 - - ns th(L) Setup Time for LE 5 - - ns tsu(L) Hold Time for SDI t 10 - - ns h(D) Setup Time for SDI t 5 - - ns su(D) Cascade Clock Frequency F CLK Operation
in „TPIC6B595N Cascade Problem“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
61231020621.pdf
Middle) P 10.16 mm WR-BHD 2.54mm Male SMT Box l Würth Elektronik eiSos GmbH & Co. KG ORDER CODE Length L 20.32 mm Max-Eyth-Str. 1 Solutions Header WR-BHD L 74638 Waldenburg 61231020621 Length 1 18.02 mm Tel. +49 (0) 79 42 945 - 0 BUSINESS UNITSTATUS PAGE www.we-online.com eiSos@we-online.com eiCan Valid 1
in „[V] 120St 10poliger SMD Wannenstecker WÜRTH WR-BHD 2.54 mm Male SMT Box Header 61231020621 (36€)“ · Markt ·
-
PDF
MOC3020-M.pdf
AmbientTemperature Figure 4. LED Current Required toTrigger vs. LED PulseWidth P 1.4 25 h a ) s ) 1.3 E e D L 20 NORMALIZED TO: I A PW in 100 µs O A 1.2 R p M N t O (T15 o ( 1.1 -F s IF T o - 1.0 E l N R 10 a R U o U 0.9 R r C E 5 s E I T G 0.8 R r I T a T 0 c 0.7 1 2 5 10 20 50 100 NORMALIZED TOAT= 25°C D LED
-
PDF
STP6NK90ZFP.pdf
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 TO-220 type H package information Figure 27. TO
-
PDF
STP6NK90ZFP.pdf
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 TO-220 type H package information Figure 27. TO
in „Unterschiedliche Power MOSFET kompatibel?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
msp430fr5969.pdf
(2) VSS + I(OLmax) 6 mA VSS 0.60 (3) (4) (5) 2.2 V 16 P fPx.y Port output frequency (with load) C L 20 pF, R L MHz 3.0 V 16 R ACLK, MCLK, or SMCLK at 2.2 V 16 O f Clock output frequency(3) configured output port MHz Port_CLK (5) 3.0 V 16 D C L 20 pF 2.2 V 4 15 U trise,dig Port output rise time, digital only port pins C L 20 pF ns C 3.0 V 3 15 2.2 V 4 15 T tfall,dig Port output fall time, digital only port pins C L 20 pF ns 3.0 V 3 15 P R t Port output rise time, port pins with shared C = 20 pF 2.2 V 6 15 ns rise,ana analog
in „Probleme mit Konfiguration der SPI-Schnittstelle am MSP430“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
eGC.pdf
PIIC90C2 SD_DAT0_3V3 7 mmc2_dat4PIL200L18 SD_DAT0_1V8 B2 D2 SD_DAT1_3V3 PI8107DAT0 mmc2_dat5PIL210L20 SD_DAT1_1V8 PA2C90DAT0A DAT0B PID190D2 SD_DAT2_3V3 PI1108DAT1 mmc2_dat6PIM190L21 SD_DAT2_1V8 PB4C90DAT1A DAT1B PIC490D1 SD_DAT3_3V3 PI2101DAT2 mmc2_dat7 SD_DAT3_1V8 PIIC90A4T2A DAT2B PIIC90D4 PIJ102DAT3 L21 DAT3A DAT3B PIJ1010 mmc2_dir_cmd L18 SD_DIR_CMD PIIC90B5 CD mmc2_dir_dat0 L20 SD_DIR_DAT0 PIIC90C5D-dir PIIC90C3 PIJ106 mmmc2_dir_dat2IIC10V18 SD_DIR_DAT123 PIIC90DAT123-dir GND PIIC90B3 PIJ101GND mmc2_dir_dat4:7IC10Y19 PIJ109CD_GND SN74AVCA406E C AM3505-ZER µSD Connector C GND
in „[Suche] Interessierte(n) an Projekt (ARM/FPGA)“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
GU112x16G-7806-07.pdf
18H fonts can then be selected by software Display Shift Right L L 1CH Select 4/8 bit interfaceL L 20H (4Bit) / 30H (8Bit) + luminance command. Display Luminance L H 00H-03H (must follow above command) Set CG RAM Addr. L L 40H-7FH FONT SELECTION Set DD RAM Addr. L L 80H-E7H J3 Font Read BUSY/Addr. H
in „Noritake VFD im 10x14-Modus“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
STD60N55F3.pdf
0.051 H1 6.20 6.60 0.244 0.256 J1 2.40 2.72 0.094 0.107 L 13 14 0.511 0.551 L1 3.50 3.93 0.137 0.154 L20 16.40 0.645 L30 28.90 1.137 θP 3.75 3.85 0.147 0.151 Q 2.65 2.95 0.104 0.116 14/19 STB60N55F3 - STD60N55F3 - STF60N55F3 - STP60N55F3 - STU60N55F3Package mechanical data TO-220FP MECHANICAL DATA mm.
in „Frage zu MOSFET STF60N55F3“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
PG12864LRS-DNN-H.pdf
LCD ¡— VDD -19.0 V DD+0.3 V Input Voltage VIN ¡— -0.3 V DD.3 V Operating Temperature TOP Excluded B/L -20 70 ¢J Storage Temperature TST Excluded B/L -30 80 ¢J Storage Humidity H D Ta¡Õ40 ¢J - 90 %RH PG12864LRS-DNN-H Rev.0(DK) Page4 1.4 DC Electrical Characteristics V = 5.0 V ± 10%¡A V = 0V¡A Ta = 25¢J
-
PDF
ITS716G.pdf
1 and 2) Normal operation L L L L H L H L H H H L H L H H H H H H Open load Channel 1 (3) L X Z X L20) H X H X H Channel 2 (4) X L X Z L15) X H X H H Overtemperature both channel L L L L H X H L L L H X L L L Channel 1 (3) L X L X H H X L X L Channel 2 (4) X L X L H X H X L L L = "Low" Level X = don
in „SPS-kompatible Ein- und Ausgänge am uC“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
HIP4086_Mostfet.pdf
TO 4V) 40 100 V = XHB-XHS = 12V, C = 1000pF DD GATE s s ( 30 ( 80 S Y E L xHI to xHO I E T RISE D L 20 N 60 A T F A N FALL G A P E O 40 I 10 P R xLI to xLO 20 -60 -40 -20 0 20 40 60 80 100 120 140 160 -60 -40 -20 0 20 40 60 80 100 120 140 160 o o JUNCTION TEMPERATURE ( C) JUNCTION TEMPERATURE ( C) FIGURE
in „Kommunikation zwischen mehreren µC“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
IR2110-DataSheet.pdf
Temperature DD 60 100 50 ) 80 A µ ( t n 40 e e u 60 u s y 30 B p u u I 40 S 20 1 D i Max. V o 10 L 20 Typ. 0 0 0 2 4 6 8 10 12 14 16 18 20 -50 -25 0 25 50 75 100 125 V Logic Supply Voltage (V) Temperature (°C) DD Figure 19B. V DD Supply Current vs. V DD Voltage Figure 20A. Logic “1” Input Current vs
in „Inverter DC/AC mit EGS002 China DEV-Board“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
sfh610a-1767438_1_.pdf
) ) 50 a A 45 ( 1.0 ( IF= 30 mA R n 40 T 0.8 e 35 IF= 25 mA C u e C 30 l 0.6 o 25 F = 20 mA a c r l 20 IF= 15 mA o 0.4 o 15 - C F = 10 mA R C 10 IF= 1 mA C 0.2 Normalized to CTR value: I 5 N I = 10 mA, V = 5 V, T = 25 °C IF= 5 mA 0 F CE amb 0 0 1 2 3 4 5 6 7 8 9 10 -60 -40 -20 0 20 40 60 80 100 120 V
in „[V] 16St Optokopler Vishay SFH610A -2 und -A3“ · Markt ·
-
PDF
MT6252.pdf
0n28h DMA Bandwidth limiter Register e a s DMAn_LIMITER Namet 31 30 29 28 27 26 25 24 2i a l2 R 2e l 20 19 18 17 16 ReBit 15 14 13 12 11 10 f i9 8n t 7 6 5 4 3 2 1 0 NType e k C o n LIR/WER This register is to suppress the Bus utilization of the DMThe value is from 0 to 250 means no limitation, and 255
in „Amparos GPS Tacker - Pollin Schnäppchen“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
par.txt
Freigabetemperatur; L19;2;64;1;100;1;\'b0C;64;0;0;0;Pumpen externer Heizkreis Freigabetemperatur; L20a;2;62;1;100;1;\'b0C;62;0;0;0;Pumpen Boilerpumpe 0 Freigabetemperatur; L20;2;62;1;100;1;\'b0C;62;0;0;0;Pumpen Boilerpumpe 1 Freigabetemperatur; L21;2;63;1;100;1;\'b0C;63;0;0;0;Pumpen Boilerpumpe 2 Freigabetemperatur
in „Hargassner Pelletheizung Betriebsdatenerfassung“ · Haus & Smart Home ·
-
PDF
en.CD00000444.pdf
1.27 E 10 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 14 L1 3.50 3.93 L20 16.40 L30 28.90 ∅ P 3.75 3.85 Q 2.65 2.95 DocID2143 Rev 33 37/59 59 Package information L78 8.2 TO-220 (single gauge) package information Figure 38. TO-220 (single gauge) package outline ▯▯▯▯▯▯▯BUHY
in „LM7805A zu hohe Ausgangsspannung“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
SGST-S-A0003208530-1.pdf
1.27 E 10 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 14 L1 3.50 3.93 L20 16.40 L30 28.90 ∅P 3.75 3.85 Q 2.65 2.95 DocID2574 Rev 31 39/53 Package information LFXX 6.2 TO-220 (single gauge) package information Figure 17: TO-220 (single gauge) package outline 40/53 DocID2574
in „[V] 27Stück Positiv Low Drop Spannungsregler, SMD, 3.3 V LF33CPT PPAK 5Pin“ · Markt ·
-
PDF
en.CD00000546.pdf
1.27 E 10 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 14 L1 3.50 3.93 L20 16.40 L30 28.90 ∅P 3.75 3.85 Q 2.65 2.95 DocID2574 Rev 31 39/53 Package information LFXX 6.2 TO-220 (single gauge) package information Figure 17: TO-220 (single gauge) package outline 40/53 DocID2574
-
PDF
MSP430F5438IPZ.pdf
hold time ns 3 V 0 2.2 V 25 VALID,MO SIMO output data valid time2) UCLK edge to SIMO valid, ns C L 20 pF 3 V 20 (3) 2.2 V HD,MO SIMO output data hold time C L 20 pF ns 3 V (1) UCxCLK = 1/2LO/HIwith tO/HI≥ max(tVALID,MO(USCI) SU,SI(SlaveSU,MI(USCI) VALID,SO(Slave) For the slave's parametersSU,SI(Slave
in „Strombelastbarkeit MSP430“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
INA111_BB.pdf
MAXIMUM OUTPUT VOLTAGE SWING vs FREQUENCY OUTPUT CURRENT LIMIT vs TEMPERATURE 30 50 V 25 ) 40 ( m d t l 20 e p r 30 A C +I k 15 i –I CL e c CL - i 20 t 10 t k o e S P 5 10 0 0 –75 –50 –25 0 25 50 75 100 125 1k 10k 100k 1M 10M Frequency (Hz) Temperature (°C) ® 5 INA111 TYPICAL PERFORMANCE CURVES (CONT) At
in „INA111 als Verstärker für Solarzelle?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
datasheet-13.pdf
O /"ÛÚ +] , :XW;XW 48;0/,9.0 ,W +] 4V ▯ ▯5 ▯ ▯ /"Û{¥ƒ} +] ▯ ▯5 ▯ ▯ , 25,/ /" { %K0 3L4L3;3 6083L99L-20 809L9:LY0 25,/ L9 ▯:K0 3,[L3;3 .,6,.L:LY0 25,/ L9 !1 «Ì ¥ «Ö !1 %5 J;,8,4:00 56:L3;3 9LJ4,2 +,4/2L4J 6081583,4.0 :K0 80,.:LY0 25,/ 51 :K0 , .L8.;L:8\ ▯L4:08.5440.:L549 $ : 1L2:08▯ K,9 :5 -0 :;40/ :5
in „C-Box 2 Platine von Pollin“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
4051.pdf
Figure 7) BW 10 17 — MHz (R = 1 k , V = 1/2 (V –V ) p–p, C = 50pF ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ L 20 Log (out in = – 3 dB) ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ Off Channel Feedthrough Attenuation (Figure 7) — 10 – 50 — dB ÎÎÎÎÎÎÎÎRL= 1K , Vin= 1/2 (DDΖ VEE) p–p f = 4.5 MHz — MC14051B ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
in „V: MC14051BCP“ · Markt ·
-
PDF
ssm2404.pdf
VS= 12V E m 0.4 R50 – VA= GND U N 0.2 VINH = 2.4V C40 E E V = 0.8V R 0 A30 IL U K C E L –0.2 ISY– L20 P H U –0.4 IGND T10 V = 2.4V S I IH –0.6 S 0 –10 –0.8 –20 –1.0 –15 –10 –5 0 5 10 15 –40 –20 0 20 40 60 80 100 ANALOG INPUT VOLTAGE – Volts TEMPERATURE – °C Figure 13. Overvoltage Characteristics Figure
in „Audio Switch IC gesucht (4066 Alternative)“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
TL494.pdf
AVOL 40 E M 12 V A T P 60 60 H A 10 O 50 80 S D 8.0 N 40 φ 100 ES T E C E 6.0 O 30 120 E R 0.001 ▯F ,L20 140 , E 4.0 V φ T 2.0 A 10 160 D 0 180 % 0 1.0 10 100 1.0 k 10 k 100 k 1.0 M 500 k 1.0 k 10 k 100 k 500 k f, FREQUENCY (Hz) f , OSCILLATOR FREQUENCY (Hz) osc Figure 4. Open Loop Voltage Gain and Figure
in „Problem mit TL494“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
LB1847.pdf
CC m PHA,ENA=V CC A typ. – typ. m 40 B 4 O utu tON – N , C utputO n t O r e 30 c 3 r l c tO FF p l 20 O utu u 2 p e s g i s Ou tutO FF g 10 u 1 L t u O 0 0 0 1 2 3 4 5 6 7 0 10 20 30 40 50 60 Logic supply voltage,CC – mV Output stage supply current voltage,BB– V V o(sat) – I o Vo (sat)– I o 2.8 2.8
in „Spannung steig an Vcc an, wenn Vbb über 7V geht“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
4051.pdf
Figure 7) BW 10 17 — MHz (R = 1 k , V = 1/2 (V –V ) p–p, C = 50pF ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ L 20 Log (out in = – 3 dB) ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ Off Channel Feedthrough Attenuation (Figure 7) — 10 – 50 — dB ÎÎÎÎÎÎÎÎRL= 1K , Vin= 1/2 (DDΖ VEE) p–p f = 4.5 MHz — MC14051B ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
in „Einfache Multiplex Schaltung (Anfänger!)“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
HSD043I9W1-B00_formal_specification.pdf
Signal Input Level V i -0.3 5.0 V 2.1.2 Back-Light Unit Item Symbol Typ. Max. Unit Note LED current L 20 - mA (1)(2)(3) LED voltage V L 19.8 - V (1)(2)(3) Note (1) Permanent damage may occur to the LCD module if beyond this specification. Functional operation should be restricted to the conditions described
in „TFT-LCD HSD043I9W1“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
4513.pdf
Inputs D, BI and LT high. f in respect to a system clock. All outputs connected to respective C loads. L 20 ns 20 ns V 90% DD A, B, AND C 50% 1 10% VSS 2f 50% DUTY CYCLE VOH ANY OUTPUT 50% VOL Figure 1. Dynamic Power Dissipation Signal Waveforms http://onsemi.com 4 MC14513B ÎÎÎÎSWITCHING CHARACTERISTICSÎÎÎÎ
in „BCD zu 7 Segment Decoder“ · Mikrocontroller und Digitale Elektronik ·