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Datei
eve.h
0x00 #define LESS 0x01 #define LEQUAL 0x02 #define GREATER 0x03 #define GEQUAL 0x04 #define EQUAL 0x05 #define NOTEQUAL 0x06 #define ALWAYS 0x07 /* Bitmap formats */ #define ARGB1555 0x00 #define L1 0x01 #define L4 0x02 #define L8 0x03 #define RGB332 0x04 #define ARGB2 0x05 #define ARGB4 0x06 #define
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Datei
eve.h
0x00 #define LESS 0x01 #define LEQUAL 0x02 #define GREATER 0x03 #define GEQUAL 0x04 #define EQUAL 0x05 #define NOTEQUAL 0x06 #define ALWAYS 0x07 /* Bitmap formats */ #define ARGB1555 0x00 #define L1 0x01 #define L4 0x02 #define L8 0x03 #define RGB332 0x04 #define ARGB2 0x05 #define ARGB4 0x06 #define
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Datei
eve1.h
0x00 #define LESS 0x01 #define LEQUAL 0x02 #define GREATER 0x03 #define GEQUAL 0x04 #define EQUAL 0x05 #define NOTEQUAL 0x06 #define ALWAYS 0x07 /* Bitmap formats */ #define ARGB1555 0x00 #define L1 0x01 #define L4 0x02 #define L8 0x03 #define RGB332 0x04 #define ARGB2 0x05 #define ARGB4 0x06 #define
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PDF
MCP73811_2.pdf
FIGURE 2-13: Line Transient Response. FIGURE 2-16: Load Transient Response. 14 0.10 6.0 120 )12 0.05 ) 5.0 100 ) ( V ( A e10 0.00 ( e t a 8 -0.05 p a 4.0 80 n l i l r V 6 -0.10 R V 3.0 60 u e 4 -0.15 u r C r t e 2.0 40 g o 2 -0.20 u a MCP73831-2AC/IOT a S IOUT 100 mA O B 1.0 VDD= 5.2V 20 C 0 COUT= 4.7
in „Hackbarer(?) 21 EUR Quadcopter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP_73831.pdf
FIGURE 2-13: Line Transient Response. FIGURE 2-16: Load Transient Response. 14 0.10 6.0 120 )12 0.05 ) 5.0 100 ) ( V ( A e10 0.00 ( e t a 8 -0.05 p a 4.0 80 n l i l r V 6 -0.10 R V 3.0 60 u e 4 -0.15 u r C r t e 2.0 40 g o 2 -0.20 u a MCP73831-2AC/IOT a S IOUT 100 mA O B 1.0 VDD= 5.2V 20 C 0 COUT= 4.7
in „LiPo-IC MCP73831 kennt keine Ladeschlussspannung“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
clocktest.c
0x00) { posFlag = 0x01; TIMSK = 0; //Stop Timer TIMSK = 1<<TOIE0; //only timer0 is running DDRAM_Set_L2(4); LCDout('-'); } else if (posFlag == 0x01) { posFlag = posFlag<<1; DDRAM_Set_L2(4); LCDout(' '); LCDout('-'); } else if (posFlag == 0x02) { posFlag = posFlag<<1; DDRAM_Set_L2(5); LCDout(' '); LCDout(' '); LCDout('-'); } else if (posFlag == 0x04) { posFlag = posFlag<<1; DDRAM_Set_L2(7); LCDout(' '); LCDout('-'); } else if (posFlag == 0x08) { seconds=0; posFlag = 0x00; DDRAM_Set_L2(8); LCDout(' '); TIMSK = 1<<OCIE1A | 1<<TOIE0; //both timers on again } } SIGNAL(SIG_INTERRUPT1) /
in „For-Endlosschleife in Main funktioniert nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LMG7420PLFC-X.pdf
Ignored 0.2<D≦0.3 12 - 0.3<D≦0.5 3 0.5<D None Stains, Filamentous Foreign Maximum Number LENGTH L(mm) Width W(mm) Materials Acceptable Dark spot L≦2.0 W≦0.03 Ignored * L L≦3.0 0.03<W≦0.05 6 C - 0.05<W None D Round Average Maximum Number Minimum Diameter D(mm) Acceptable Space D<0.2 Ignored -
in „Hitachi LCD LMG7420PLFC-X - Fake oder Original?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LST670.pdf
LO T670-J1L2-24 4.50 ... 18.00 30 (typ.) Q65110A2166 LY T670-J1K2-26 yellow 4.50 ... 11.20 24 (typ.) Q65110A2173 LY T670-K1L2-26 7.10 ... 18.00 40 (typ.) Q65110A2174 LY T670-J1L2-26 4.50 ... 18.00 30 (typ.) Q65110A2175
in „[V] LS T670 Rote SMD Leds“ · Markt ·
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PDF
TC4050BP.pdf
voltage VOH V = V , V 10 9.95 ⎯ 9.95 10.00 ⎯ 9.95 ⎯ V IN SS DD 15 14.95 ⎯ 14.95 15.00 ⎯ 14.95 ⎯ 5 ⎯ 0.05 ⎯ 0.00 0.05 ⎯ 0.05 ⎪IOUT⎪< 1 μA Low-level output V OL 10 ⎯ 0.05 ⎯ 0.00 0.05 ⎯ 0.05 V voltage V IN= VSS, DD 15 ⎯ 0.05 ⎯ 0.00 0.05 ⎯ 0.05 V OH = 4.6 V 5 −0.73 ⎯ −0.65 −1.2 ⎯ −0.58 ⎯ V OH = 2.5 V 5 −2.40
in „Ersatztyp zum LVX125“ · Mikrocontroller und Digitale Elektronik ·
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PDF
WebenchReportsServlettps5450-02.pdf
900.0 mA 4. D1 Vishay-Semiconductor 50WQ10FNPBF 1 $0.41 VF@Io= 770.0 mV VRRM= 100.0 V DPAK 102mm2 5. L1 Wurth Elektronik eiSos 7443634700 1 $6.70 L= 47.0 µH DCR= 12.2 mOhm IND_WE-HCF 540mm2 6. Rfbb Vishay-Dale CRCW04021K13FKED 1 $0.01 Res= 1.13 kOhm Series= CRCW..e3 Power= 63.0 mW 0402 8mm2 Tolerance=
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PDF
XL6009_1_1.pdf
1N5821 1N5822 √ MBR320 MBR330 MBR340 MBR350 MBR360 √ SK32 SK33 SK34 SK35 SK36 3A √ 30WQ03 30WQ04 30WQ05 √ 31DQ03 31DQ04 31DQ05 √ SR302 SR303 SR304 SR305 SR306 √ 1N5823 1N5824 1N5825 √ SR502 SR503 SR504 SR505 SR506 5A √ SB520 SB530 SB540 SB550 SB560 √ 50WQ03 50WQ04 50WQ05 Typical SystemApplication for EPC
in „Step-Up Wandler arbeitet nicht mit Schmitt-Trigger“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
XL6009.pdf
1N5821 1N5822 √ MBR320 MBR330 MBR340 MBR350 MBR360 √ SK32 SK33 SK34 SK35 SK36 3A √ 30WQ03 30WQ04 30WQ05 √ 31DQ03 31DQ04 31DQ05 √ SR302 SR303 SR304 SR305 SR306 √ 1N5823 1N5824 1N5825 √ SR502 SR503 SR504 SR505 SR506 5A √ SB520 SB530 SB540 SB550 SB560 √ 50WQ03 50WQ04 50WQ05 Typical SystemApplication for EPC
in „6-9V auf 12V booster“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BTS462T_20040127.pdf
bb= 9...40 V - 70 100 T = 150 °C - 140 200 j Nominal load current; Device on PCB 1) I 3.5 4.4 - A L(ISO) TC= 85 °C, V ON = 0.5 V Turn-on time to 90% VOUT on - 90 170 µs R L 47 Ω Turn-off time to 10% V t - 90 230 OUT off R L 47 Ω Slew rate on 10 to 30% V OUT , dV/dton - 0.8 1.7 V/µs R = 47 Ω L Slew
in „Schaltregler-Diskussion“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
opa354.pdf
from Rail V = +5V, R = 1kΩ, A > 94dB 0.1 0.3 V S L OL Specified Temperature Range VS= +5V, R L 1k Ω, AOL> 90dB 0.4 V Output Current)(, Single, Dual, QuadIO VS= +5V 100 mA V = +3V 50 mA S Closed-Loop Output Impedance f < 100kHz 0.05 Ω POWER SUPPLY Specified
in „OP Verstärker scheint zu schwingen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
st7036.pdf
64 frames Cursor z Cursor or Display Shift RS R/W DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0 0 0 0 0 0 1 S/C R/L X X ¾ S/C: Screen/Cursor select bit When S/C=”High”, Screen is controlled by R/L bit. When S/C=”Low”, Cursor is controlled by R/L bit. ¾ R/L: Right/Left When R/L=”High”, set direction to right. When
in „DOG-M-Display/ST7036 Initialisierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LCD-Controller_ST7036.pdf
64 frames Cursor z Cursor or Display Shift RS R/W DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0 0 0 0 0 0 1 S/C R/L X X ¾ S/C: Screen/Cursor select bit When S/C=”High”, Screen is controlled by R/L bit. When S/C=”Low”, Cursor is controlled by R/L bit. ¾ R/L: Right/Left When R/L=”High”, set direction to right. When
in „DOG-M mit ATmega8 in Assembler ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
st7036.pdf
64 frames Cursor z Cursor or Display Shift RS R/W DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0 0 0 0 0 0 1 S/C R/L X X ¾ S/C: Screen/Cursor select bit When S/C=”High”, Screen is controlled by R/L bit. When S/C=”Low”, Cursor is controlled by R/L bit. ¾ R/L: Right/Left When R/L=”High”, set direction to right. When
in „Initialisierungsfolge fuer EA DOGM 163 SPI 3.3V“ · Mikrocontroller und Digitale Elektronik ·
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PDF
st7036.pdf
64 frames Cursor z Cursor or Display Shift RS R/W DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0 0 0 0 0 0 1 S/C R/L X X ¾ S/C: Screen/Cursor select bit When S/C=”High”, Screen is controlled by R/L bit. When S/C=”Low”, Cursor is controlled by R/L bit. ¾ R/L: Right/Left When R/L=”High”, set direction to right. When
in „DOG-M Display über SPI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
st7036.pdf
64 frames Cursor z Cursor or Display Shift RS R/W DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0 0 0 0 0 0 1 S/C R/L X X ¾ S/C: Screen/Cursor select bit When S/C=”High”, Screen is controlled by R/L bit. When S/C=”Low”, Cursor is controlled by R/L bit. ¾ R/L: Right/Left When R/L=”High”, set direction to right. When
in „LCD " ° " Zeichen aus Zeichensatz anzeigen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
st7036.pdf
64 frames Cursor z Cursor or Display Shift RS R/W DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0 0 0 0 0 0 1 S/C R/L X X ¾ S/C: Screen/Cursor select bit When S/C=”High”, Screen is controlled by R/L bit. When S/C=”Low”, Cursor is controlled by R/L bit. ¾ R/L: Right/Left When R/L=”High”, set direction to right. When
in „Controller ST7036“ · Mikrocontroller und Digitale Elektronik ·
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PDF
st7036.pdf
64 frames Cursor z Cursor or Display Shift RS R/W DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0 0 0 0 0 0 1 S/C R/L X X ¾ S/C: Screen/Cursor select bit When S/C=”High”, Screen is controlled by R/L bit. When S/C=”Low”, Cursor is controlled by R/L bit. ¾ R/L: Right/Left When R/L=”High”, set direction to right. When
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PDF
st7036.pdf
64 frames Cursor z Cursor or Display Shift RS R/W DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0 0 0 0 0 0 1 S/C R/L X X ¾ S/C: Screen/Cursor select bit When S/C=”High”, Screen is controlled by R/L bit. When S/C=”Low”, Cursor is controlled by R/L bit. ¾ R/L: Right/Left When R/L=”High”, set direction to right. When
in „STK500 und LCD (ST7036) Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ST7036.pdf
64 frames Cursor z Cursor or Display Shift RS R/W DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0 0 0 0 0 0 1 S/C R/L X X ¾ S/C: Screen/Cursor select bit When S/C=”High”, Screen is controlled by R/L bit. When S/C=”Low”, Cursor is controlled by R/L bit. ¾ R/L: Right/Left When R/L=”High”, set direction to right. When
in „i2C TWI Modus - ST7036 - DOGM DOGM162 DOGM081 EA DOGM163, ist das Möglich ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LTC1407CMSE.pdf
2.0 1.5Msps –10 0.8 1.6 –20 ) S 0.6 B 1.2 –30 ( L B–40 T 0.4 ( 0.8 ( R I D–50 E0.2 A 0.4 T–60 L 0 E 0 N L L A–70 T–0.2 L–0.4 M–80 N R R–0.4 E–0.8 –90 F N –100 D–0.6 I–1.2 –110 –0.8 –1.6 –120 –1.0 –2.0 0 100 200 300 400 500 600 700 0 4096 8192 12288
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PDF
NXP__74LVC1G17.pdf
extremely thin small outline package; no leads; 6 terminals; body 1 x 1.45 x 0.5 mm SOT886 b 1 2 3 4× (2) L1 L e 6 5 4 e1 e1 6× A (2) A1 D E terminal 1 index area 0 1 2 mm scale DIMENSIONS (mm are the original dimensions) UNIT A (1) A 1 b D E e e1 L L1 max max 0.25 1.5 1.05 0.35 0.40 mm 0.5 0.04 0.6 0.5 0.17
in „Pegelwandlung 5V => 3,3V: Überschwinger mit 74LVC1G17“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Modbus_RTU___Kommunikationshandbuch_fuer_EATON_DC1.pdf
Weitere Informationen zum Modbus finden Sie unter → www.modbus.org . 2.2 Kommunikation DE1 DA1 DC1 L1LL/NL3 DC- L1/L2/N L3 DB1 HMI-PLC L1/L L2/NL3 L1 L2 (L)(N) RS485 Modbus RTU 1 2 3 45 6 7 89 10 11 COM 12 13 1 23 4 5 6 7 89 1011 1415 16 17 18 0+10 V23 4 1314 U V W DC+ BR U U V W V W U V
in „ich bitte um Mitt-Hilfe in Sachen RS485; Modbus; Frquenzumrichter; qModMaster“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PGA2311U_datasheet.pdf
0.5 0.5 dB Gain Error Gain Setting = 31.5dB ±0.05 ±0.05 dB Gain Matching ±0.05 ±0.05 dB Input Resistance 10 10 kΩ Input Capacitance 3 3 pF AC CHARACTERISTICS THD+N V = 2Vrms, f = 1kHz 0.0004 0.001 0.0002 0.0004 % IN Dynamic Range VIN = AGND, Gain =
in „Mikrofonverstärker, neue Idee..“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PGA2311U_datasheet.pdf
0.5 0.5 dB Gain Error Gain Setting = 31.5dB ±0.05 ±0.05 dB Gain Matching ±0.05 ±0.05 dB Input Resistance 10 10 kΩ Input Capacitance 3 3 pF AC CHARACTERISTICS THD+N V = 2Vrms, f = 1kHz 0.0004 0.001 0.0002 0.0004 % IN Dynamic Range VIN = AGND, Gain =
in „Frage zur Masseführung, Datenblatt verwirrt mich“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
cd4017b-mil.pdf
35.0 Pack Materials-Page 2 PACKAGE MATERIALS INFORMATION www.ti.com 3-Jun-2022 TUBE T - Tube height L - Tube length W - Tube width B - Alignment groove width *All dimensions are nominal Device Package Name Package Type Pins SPQ L (mm) W (mm) T (µm) B (mm) CD4017BE N PDIP 16 25 506 13.97 11230 4.32 CD4017BE
in „SPS erweitern für 32 Temperatureingänge“ · Analoge Elektronik und Schaltungstechnik ·
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Bild
Tabelle mit Symbolen und Grenzwerten
Symbol Min Nom Max A - - 1.20 A1 0.05 - 0.15 A2 0.80 1.00 1.05 b 0.19 - 0.30 c 0.09 - 0.20 D 6.40 6.50 6.60 E - 6.40 BSC - E1 4.30 4.40 4.50 e - 0.65 BSC - L 0.45 0.60 0.75 L1 - 1.00 REF - R 0.09 - - R1 0.09 - - S 0.20 - - θ1 0° - 8° θ2 - 12 REF - θ3 - 12 REF - aaa - 0.10 - bbb - 0.10 - ccc - 0.05 - ddd - 0.20 - N - 20
in „SprintLayout Makro TSSOP20?“ · Platinen · · Screenshots
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PDF
Lichttechnik_Richtwerte_und_Anwendungen_Teil_1_Spektralkurven.pdf
angegeben; auch hier wird im Bereich von 200 bis 2500 nm gemessen. Die spektralen Reflexionsgrade a l l e r Sorten betragen mindestens 4 %. 1.5.4 (Licht-) Reflexionsgrade Analog zu 1.5.2 (Licht-) Transmissionsgrade werden die Reflexionsgrade definiert: Vd e e d
in „Filterscheibe für rote LED-Displays“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
162828-da-01-en-IRLML_2803TR.pdf
PD - 91258D IRLML2803 HEXFET Power MOSFET l Generation V Technology l Ultra Low On-Resistance D l N-Channel MOSFET V DSS = 30V l SOT-23 Footprint l Low Profile (<1.1mm) G l Available in Tape and Reel R DS(on) = 0.25Ω l Fast Switching S Description
in „PWM RGB-Led Beleuchtung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
4N25.pdf
SaturationVoltage vs Collector Current (Black Package) (White Package) ) ) (100 ( E E 100 G G T T L O T = 25˚C V V A N 10 N 10 I I T A R R U T A 1 A 1 S S R I = 2.5 mA E I = 2.5 mA T F T F I I M 0.1 E 0.1 - - R O T T C IF= 20 mA E L0.01 F = 10 mA L 0.01 F = 20 mA L F = 5 mA O C C IF= 5 mA ) ) IF= 10
in „optocoupler beschaltung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RN5RT-RICOH.pdf
V I=7.0V e V I=8.0V g l 3.0 V t 2.0 p u O 1.0 0.0 0 100 200 300 400 500 600 Output Current OUT(mA) 2) Output Voltage vs. Input Voltage RN5RT30A RN5RT30A Topt=25˚C Topt=25˚C 3.2 3.05 3.04 ) 3.0 ) ( ( 3.03 IOU=10µA U 2.8 U 3.02
in „Elektronik Grundfoss Alpha 2 Pumpe - Bauteilbestimmung!“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
an75f_Low_Power-Design.pdf
AN75-28 Application Note 75 H E 0 1 1 2 VR O R 4 D D T z Q 0 . . O H 7 - - f 0 A 4 0 0 5 M T T A Q L L L 2 3 4 7 V Q Q Q A 2 + V Q k 9 Q 2 R R 3 A Q F e F 1 r 7 C 0 C 0 u 0 5 0 ) i 1 T N F 0 C 2 O + 1 – 3 7 H M R 4 T . N + F 2 P 2 5 O 2 I – + A 4 3 L p Y T 1 e D D U 5 T H 1 r T 1 0 C L g A 1 †F / i
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Datei
spi.c
Adresse übermitteln while (!(SPSR & (1<<SPIF))); // warten bis SPI übermittlung komplett SPDR = 0x05; // L-Byte der Adresse übermitteln while (!(SPSR & (1<<SPIF))); // warten bis SPI übermittlung komplett rueckgabe = SPDR; // Daten von EEPROM in die rueckgabe - Variable while (!(SPSR & (1<<SPIF)));
in „EEPROM per SPI lesen!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at24c1024.pdf
REF Bottom View L 0.62 0.67 0.72 1 L1 0.92 0.97 1.02 1 Note: 1. Metal Pad Dimensions. 11/13/01 TITLE DRAWING NO. REV. 2325 Orchard Parkway 8CN1, 8-lead (8 x 5 x 1.04 mm Body), Lead Pitch 1.27 mm, R San Jose, CA 95131
in „i2c at24c1024 page P0“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TX09D70VM1CDA.pdf
discuss the matter in detail. APPLIED No. ITEM CRITERIA ZONE Scratches Length Width Maximum number L(mm) W(mm) acceptable L≦2.0 W≦0.03 ignored A,B L≦2.0 0.03<W≦0.05 4 L>2.0 0.05<W none Dent Distinguished one is acceptable A (To be judged by HITACHI standard) Wrinkles in PolarizerSame as above A Bubbles
in „TFT Anschluss mit FPGA / CPLD / AVR“ · FPGA, VHDL & Co. ·
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Datei
AVRrescue.c
rescue in progress * 9 'bF' burn fuses * 10 'CE' chip erase * 11 '__' error code */ uint8_t specialL [] = { DIGIT_NOP, DIGIT_i, DIGIT_i, DIGIT_i, DIGIT_F, DIGIT_F, DIGIT_F, DIGIT_L, DIGIT_o, DIGIT_b, DIGIT_C, DIGIT_ERR}; uint8_t specialR [] = { DIGIT_NOP, DIGIT_0, DIGIT_1, DIGIT_2, DIGIT_L, DIGIT_H,
in „AVR-Rescue: standalone Parallel HV-Programmer“ · Projekte & Code ·
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PDF
Sternschnuppe.brd.pdf
T16 7 6 5 4 3 2 0 1 0 9 8 7 6 3 2 R R R R R R 1 1 R R R R R R2 2 R R R R 3 IC1 C4 MEGA8-AI 5 C3 2 L C C1 C U$ 7 R 21.12.2012 18:42:26 C:\Users\Stefan\Documents\eagle\Sternschnuppe\Sternschnuppe.brd U$21 P$1 8 1 P$1 VIN VOUT VCC C 2 GND GND 3 C 7 GND GND 6 V C4 78L05 C5 78L05 C V GND P$1 P$1 P$1 P$1
in „Kann man mit 16 Transistoren einen ATMega8 überfordern ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HTR-India-Products-Wire-Wound-Resistors-Ceramic-Encased-Resistor-HEA-English.pdf
Crimped Termination Assembly AEC-Q200Qualified e : info@htr-india.com www.htr-india.com Rev Date : 22/05/2019 PHYSICAL CONFIGURATION WIRE WOUND RESISTORS CERAMIC ENCASED TYPE HEA HTR POWER DIMENSIONS (mm) RESISTANCE TYPICAL TYPE RATING * RANGE WEIGHT at L W H d LM PER PC 70°C ±1.5 ±1 ±1 ±0.05 ±1 min max
in „Entkopplungs-Widerstand für Weidezaunanlagen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM117.pdf
L M 1 A L M 3 7 906364 FIGURE 12. Top View of the Thermal Test Pattern in Actual Scale 13 www.national.com 7 3 M / A 1 3 L 7 1 M L 906365 FIGURE 13. Bottom View of the Thermal Test Pattern in Actual Scale
in „Wie 10mA Konstantstromquelle ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IRF3205Z.pdf
Fig 14. Threshold Voltage Vs. Temperature 6 www.irf.com IRF3205ZS/L 1000 Duty Cycle = Single Pulse Allowed avalanche Current vs ) 100 avalanche pulsewidth, tav ( 0.01 assuming ∆Tj = 25°C due to t avalanche losses. Note: In no e case should Tj be allowed to u 0.05 C 10 exceed Tjmax e 0.10 c l a A 1 0.1 1.0E-08 1.0E-07 1.0E-06 1.0E-05 1.0E-04 1.0E-03 1.0E-02 1.0E-01 tav (sec) Fig 15. Typical Avalanche Current Vs.Pulsewidth 200 Notes on Repetitive Avalanche Curves , Figures 15, 16: TOP Single
in „Geiger Counter Sparkfun“ · Mikrocontroller und Digitale Elektronik ·
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PDF
cd0603-b.pdf
YLNHYKPUN▯[OL▯HTV\U[▯VM▯HKKP[PVUHS▯[LZ[▯THYNPU▯[V▯KLZPNU▯PU[V▯[OLPY▯KL]PJL▯VY▯HWWSPJH[PVU▯[V▯JVTWLUZH[L▯MVY▯ KPɈLYLUJLZ▯IL[^LLU▯SHIVYH[VY`▯HUK▯YLHS▯^VYSK▯JVUKP[PVUZ▯ <USLZZ▯)V\YUZ▯OHZ▯L_WSPJP[S`▯KLZPNUH[LK▯HU▯PUKP]PK\HS▯)V\YUZ ® product as meeting the requirements of a particular industry Z[HUKHYK▯▯L▯N
in „Fein MultiTalent AFMT 12 QSL - Bauteil identifizieren“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
LUW_W5AM_Pb_free.pdf
ISTSE M t 0 lbp<).i ctry 3 ˚C withd ortrti i e e 6 MPT O t s havth le at fna d at2 re. tical FlFl l ootrti O m oni eqe i lb e lw g ,n:r a oce du iden el4l5 a FF l d:w,o rc,gdeee be untwh e ke pr a t is r L Le vevelel6 l d pe rbfl e bn i e s re m10% o rba eald oistst r r LeLev se a iphas nk e loH,.
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PDF
LCM-60-spec_2-1.pdf
-V RECTIFIERS FILTER CURRENT DIM+ LIMIT DIM- PFC O.L.P. DETECTION PWM CIRCUIT CONTROL CONTROL O.T.P. O.V.P. Derating Curve Static Characteristics 100 100 Others 90 80 80 60 70 60 40 1050mA / 1400mA 50 20 40 -30 -15 0 15 30 40 50 60 70 (HORIZONTAL) 180
in „LED Raumbeleuchtung flimmerfrei dimmen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
datasheet_1_.pdf
L4805-L4885-L4892 L4808-L4810-L4812 VERY LOW DROP VOLTAGE REGULATORS . INPUT/OUTPUT DROP TYP. 0.4V LOWQUIESCENT CURRENT REVERSE POLARITYPROTECTION OVERVOLTAGEPROTECTION (〉 60V) FOLDBACKCURRENT LIMITING
in „L4812 - ein Heizelement bei Unterspannung?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SI4946CDY.pdf
Axis Title Axis Title 100 10000 0.20 10000 ) ) 10 ( 0.15 ( c n TJ= 150 °C 1000 n 1000 e r e e e s e e l u TJ= 25 °C l l i si l l d e 1 t d d R 0.10 t d 2 r 1 2 n n 1 2 o 2 O T = 150 °C S 100 ) J 100 - 0.1 ( 0.05 I D R TJ= 25 °C 0.01 10 0 10 0 0.3 0.6 0.9 1.2 1.5 0 2 4 6 8 10 VSD - Source-to-Drain Voltage
in „Frage zu Ic SI4948“ · Analoge Elektronik und Schaltungstechnik ·
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InkCut-1.0-GPGL.diff
bin/hpgl.py InkCut-1.0-mine/inkcut/app/bin/hpgl.py --- InkCut-1.0-orig/inkcut/app/bin/hpgl.py 2010-05-24 17:22:36.000000000 +0200 +++ InkCut-1.0-mine/inkcut/app/bin/hpgl.py 2014-09-19 10:44:12.491522793 +0200 @@ -56,7 +56,7 @@ def format(poly): # polyline to hpgl hpgl = [] line = poly.pop(0) # first
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IRF1404.pdf
PD-91896F IRF1404 ® HEXFET Power MOSFET l Advanced Process Technology l Ultra Low On-Resistance D l Dynamic dv/dt Rating VDSS = 40V l 175°C Operating Temperature l Fast Switching R = 0.004Ω l Fully Avalanche Rated G DS(on) l Automotive Qualified
in „MOSFET wird sehr heiß“ · Analoge Elektronik und Schaltungstechnik ·