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Datei
Te.c
; GET_BIT(up,PINB,7); GET_BIT(down,PINE,5); if(select==0 && temp==1 && (OCR3C<2100)) //+1 { temp=0; PORTD SET_BIT6; OCR3C= OCR3C + 1; } if(left==0 && temp==1 && (OCR3C>=1000)) //-100 { temp=0; PORTD SET_BIT4; PORTD SET_BIT7; OCR3C= OCR3C - 100; } if(right==0 && temp==1 && (OCR3C<=2000)) //+100 { temp=0; PORTD SET_BIT5; PORTD SET_BIT6; OCR3C= OCR3C + 100; } if(up==0 && temp==1 && (OCR3C<=2090)) //+10 { temp=0; PORTD SET_BIT6; OCR3C= OCR3C + 10; } if(down==0 && temp==1 && (OCR3C>=910
in „AVR USB1287 PWM“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Sensormodul_2_V210_veraendert_4.asm
ein (MOSI) ; PortB4: Ein/Ausgang Sensorbus 8 (MISO) ; PortB5: Ein/Ausgang Sensorbus 7 (SCK) ; ; PortC0: Ein/Ausgang Sensorbus 6 ; PortC1: Ein/Ausgang Sensorbus 5 ; PortC2: Ein/Ausgang Sensorbus 4 ; PortC3: Ein/Ausgang Sensorbus 3 ; PortC4: Ein/Ausgang Sensorbus 2 ; PortC5: Ein/Ausgang Sensorbus 1 ; ;
in „AVR-ASM Knobelei : Bitmanipulation am LCD im 4-Bit Mode“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Sensormodul_2_V210_veraendert_v3.asm
ein (MOSI) ; PortB4: Ein/Ausgang Sensorbus 8 (MISO) ; PortB5: Ein/Ausgang Sensorbus 7 (SCK) ; ; PortC0: Ein/Ausgang Sensorbus 6 ; PortC1: Ein/Ausgang Sensorbus 5 ; PortC2: Ein/Ausgang Sensorbus 4 ; PortC3: Ein/Ausgang Sensorbus 3 ; PortC4: Ein/Ausgang Sensorbus 2 ; PortC5: Ein/Ausgang Sensorbus 1 ; ;
in „Temperaturmesssystem Sensormodul 2 mit ATmega 8 in AVR-ASM“ · Projekte & Code ·
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PDF
sim.pdf
v c h v = 1 = 3 r R r R v + V2 + V4 h 200 dc=15 0 C9 D10 2 3 100n 3.3V R r + V3 + V5 200 dc=15 Q11 D13 2 2 r R r R 15V Q12 e r .paramrmos=25k p n e .paramrsource=10k C10 2 o 15V .paramcmos=33p v h v c .options
in „Slew Rate Erhöhung für diskrete Operationsverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
anleitug_f_avr_unter_winxp__v2__.pdf
die gcc2.bat : @set PATH=e:\winavr\bin;e:\winavr\utils\bin :diese Zeile mit einfügen make.exe %1 >c:\tempfile 2>&1) In E:\Winavr\pn\pn.exe starten Unter Tools-> Options->Tools, für Scheme C/C++ wählen-> Add Dann folgende Einstellungen vornehmen: File->New ->C/C++ Leeres Blatt speichern unter E:\Winavr
in „AVR Studio 4.07“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
setzen, Takt = 8MHz sei(); char buffer[100]; int Send, Send1, Send2; int Data[20]; //->> Array für I2C-Daten Analog int Data_1[10]; uint8_t Test; while (1) { uart_puts(" ;-; "); uart_puts(buffer); uart_puts(" ;-; "); I2C_Start(Analog, I2C_READ); for (int z =1; z<17; z++) { Data[z] = I2C_ReadAck(); } Data[17] = I2C_ReadNack(); I2C_Stop(); uart_puts(" z "); Test = Data[3] * 256 + Data[2]; sprintf(buffer, "%d", Test); Data_1[5] = buffer; uart_puts(buffer); uart_puts(" # "); uart_puts(Data_1[5]); uart_puts(" -|- "
in „Datnarray beschreibung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Schematics.pdf
2 1 + V2 B 12V B - 0 U4 7 3 + 5 V V+ C7 OS2 6 + V1 1000n V- OS1 0.2V 2 - 1 C5 + V3 - R10 R8 4 1000n 12V 2200k 2200k uA741 R4 330k R5 C8 - 47k 220p 0 0 0 C6 10p R3 0 47K 0 A A OrCAD, Inc. Page Size: A 13221 S.W. 68th Parkway, Suite 200 Beaverton, OR 97223 (503) 671-9500 (800) 671-9505 Revision: - January 1, 2000 Page 1 of 1 2 1
in „Gitarre an Codec - Anti Aliasing Filter“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
1484705136163908.pdf
耐电压/Voltage Proof UR.dc:1.6*R, (dc)2s; U R.ac: 2.5(dc) , 2s 绝缘电阻/Insulation Resistance ≥15, 000MΩ, C ≤0.33µF (20℃,100V,1min) ≥5, 000 s, C > 0.33µF ≥ 1000MΩ·µF R 80 MET/MEA CL20 外形尺寸 Dimensions(mm) MET-100VDC MET-250VDC DIMENSIONS尺寸 (mm) DIMENSIONS尺寸 (mm) CAP (μF) W OD d Φ CARLI CAP (Max mm) (Max mm)
in „Datenblatt Carli Kondensator Typ MEA“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CSI93C86.pdf
Method 1033 TDR(3) Data Retention 100 Years MIL-STD-883, Test Method 1008 (3) VZAP ESD Susceptibility 2000 Volts MIL-STD-883, Test Method 3015 (3)(4) LTH Latch-Up 100 mA JEDEC Standard 17 D.C. OPERATING CHARACTERISTICS V = +1.8V to +6.0V, unless otherwise specified. CC Limits Symbol Parameter Min. Typ. Max
in „asm Code für EEPROM 93C86“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Test.txt
+I2C_WRITE); if ( SlaveError ) { i2c_stop(); PORTD = (1<<PD7); } i2c_stop(); while(1) { i2c_start_wait(RX8564+I2C_WRITE); i2c_write(0x02); i2c_rep_start(RX8564+I2C_READ); Sekunden = i2c_readAck(); Minuten = i2c_readAck(); Stunden = i2c_readAck(); Tag= i2c_readAck(); Tag_Name = i2c_readAck(); Monat =i2c_readAck(); Jahr = i2c_readNak(); i2c_stop(); Sekunden &= 0x7F; Minuten &= 0x7F; Stunden &= 0x3F; Tag &= 0x3F
in „Sprung in eine Subroutine von ISR aus!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AEG_Power_Supply_V3.pdf
CS 1 10 8 V+ 1N4148 9 PE C C 2 Gl2 C4 8 6 B250C2000 47u 2 R3 7 N.O. -IN 6 COM 3 GND 5 V- TBD 5 N.C. GND 4 D1 +IN 3 3 ??? 7 9 4 R4 2 AC2 4 COMP VREF RELAY DPDT 1 AC1 LM723HC TBD R5 R6 A(BACK) TBD S 2K C7 J1C 16 GND TR1 GND 470p 15 +15V 24V 14 +5V OUT 13 37V 12 REL- GND 11 15V REG B PE 10 B U2 9 PE L7815C-T 240V E2 8 7 N.C. 1 Vin +5V 3 2 6 COM C5 C4 PR. TRAFO E3 E1 5 N.O. C6 D C6 D3 220V 4 0u1 470u, 35V N 100u 0u1 TBD G 3 1 N 3 GND GND GND GND 110V E4 L 2 AC2 2 1 AC1 4 GND VOLTS SEL. C(FRONT) DIN41612
in „Netzteilkarte von 1990 defekt. LM723CH“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AEG_Power_Supply_V3b.pdf
CS 1 10 8 V+ 1N4148 9 PE C C 2 Gl2 C4 8 6 B250C2000 47u 2 R3 7 N.O. -IN 6 COM 3 GND 5 V- TBD 5 N.C. GND 4 D1 +IN 3 3 ??? 7 9 4 R4 2 AC2 4 COMP VREF RELAY DPDT 1 AC1 LM723HC TBD R5 R6 A(BACK) TBD S 2K C7 J1C 16 GND TR1 GND 470p 15 +15V 24V 14 +5V OUT 13 37V 12 REL- GND 11 B PE 10 B U2 9 PE L7815C-T 240V E2 8 7 N.C. 1 Vin +5V 3 15V REG 2 6 COM C5 C4 E3 E1 5 N.O. C6 D C6 D3 PR. TRAFO 220V 4 0u1 470u, 35V N 100u 0u1 TBD G 3 1 N 3 GND GND GND GND 110V E4 L 2 AC2 2 1 AC1 4 GND VOLTS SEL. C(FRONT)
in „Netzteilkarte von 1990 defekt. LM723CH“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
mt7623n-bananapi-bpi-r2.dts.txt
phandle = <0x15>; cir-default { phandle = <0x16>; pins-cir { pinmux = <0x2e01>; bias-disable; }; }; i2c0-default { phandle = <0x1f>; pins-i2c0 { pinmux = <0x4b01 0x4c01>; bias-disable; }; }; i2c1-default { phandle = <0x20>; pin-i2c1 { pinmux = <0x3901 0x3a01>; bias-disable; }; }; i2c1-alt { pin-i2c1 { pinmux = <0xf204 0xf304>; bias-disable; }; }; i2c2-default { pin-i2c2 { pinmux = <0x4d01 0x4e01>; bias-disable; }; }; i2c2-alt { pin-i2c2 { pinmux = <0x7a04 0x7b04>; bias-disable; }; }; i2s0-default { pin-i2s0 { pinmux = <0x3101 0x4801 0x4901 0x4a01
in „ADC- und DAC-Experimente mit PCF8591 auf Banana Pi SBCs (WiringPi, i2c-tools)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
WT11_Data_Sheet.pdf
UFL connectoro modules even with lower power consumption! • Industroal temperature range from -40 C WT11 is a highly integrated and sophisticated to +85 C Bluetooth® module, containing all the • Enhanced Data Rate (EDR) compliant with necessary elements from Bluetooth® radio to v2.0.E.2 of specification
in „WT11 von Bluegiga, Registrierung?“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Typenschild eines HP AC/DC Adapters
hp HP PN C8881-61601 AC/DC ADAPTER V85 MODEL: ADP-12PB INPUT: 100-240V ~ 50/60Hz 500mA max. OUTPUT: 6V --- 2000mA CAUTION: For use with Information Technology Equipment. ATTENTION: Pour matériel Informatique Technologie
in „Identifikation smd-IC“ · Analoge Elektronik und Schaltungstechnik · · Fotos
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PDF
Polstellen.pdf
Variante 1 (RL +RC) C≔0.1 μF R1≔2000 Ω R 2100 Ω L≔1⋅ mH ,1.1⋅mH ‥1000⋅ mH ⎛‾‾‾‾‾‾‾‾‾‾‾‾‾ ⎞ ⎛‾‾‾‾‾‾‾‾‾‾‾‾‾‾‾‾‾‾‾‾‾‾‾‾‾‾‾ ⎞ L ‾‾‾‾‾‾‾R2⋅C⋅L L R 2C⋅L ⎜― +R 2C-2⋅ C⋅L+ ――― ⎟ ⋅ ― +R ⋅2+2⋅ C⋅L+ ――― ⎟ L + R 2C - ⎝ R1 R1 ⎠ ⎝ R 1 R 1 ⎠ 2⋅R―― ――――2―――――――――――――――――― 2 Polstellen s L ≔-――――――――――――――――――――――――――――― 1 R 2C⋅L C⋅L+――― R 1 ⎛‾‾‾‾‾‾‾‾‾‾‾‾‾ ‾‾‾‾‾‾‾‾‾‾‾‾ ⎞ ⎛‾‾‾‾‾‾‾‾‾‾‾‾‾‾‾‾‾‾‾‾‾‾‾‾‾‾‾ ⎞ ⎜ L R2⋅C⋅L ⎟ ⎜ L R 2C⋅L ⎟ R ⋅C ―R +R 2C-2⋅ C⋅L+ ――― R ⋅ R +R ⋅2+2⋅ C⋅L+ ―――R ―― ―― ――――――――――――――――――――――― 1 ⎠ ⎝ 1 1 ⎠ 2⋅R 1
in „PT1 Glied - Reihenschaltung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
test.c
include <stdint.h> #include <avr/io.h> #define DD (1 << DDB2) #define LED (1 << PB2) #define SHORT 2000 #define LONG 20000 #define PAUSE 20000 volatile uint32_t wait; const uint8_t letters[2] = { 0b01, 0b1000}; void ok() { for (wait=0;wait<SHORT;++wait); PORTB &= ~LED; for (wait=0;wait<SHORT;++wait);
in „merkwürdiges Verhalten“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Schaltplan einer Steuerung mit IC201 und Lüftersteuerung
TP FOR TEMP ADJ, TP2, R7302, R7303, C7301, 3300P, 8.6V, CN7104, KM2000SA2, 12V, FAN MOTOR, 1, 2, D7208, 2SC1815+V/GR, 0V, R7216, 15K, R7211, 15K, 0.65V, R7203, 10K, VR7201, 7V, R7202, 10K, 0V, R7253, 0V, R7204, SHORT, C7219, 0.01, FAN, OP
in „[S]Pioneer - PAC006B Schutzschaltung / Chip gesucht“ · Markt · · Schaltpläne
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PDF
tlc5941.pdf
TLC5941PWP+ W 3.84 k TLC5941RHB ! W o m 3000 s − s t R 1.92 k R e 1.28 k n TLC5941NT n 1−k t r 0.96 k a 2000 f 0.79 k s TLC5941PWP− R 0.64 k i ! 0.55 k D F 0.48 k e E w ( P 1000 R 100 0 0 10 20 30 40 50 60 70 80 IO(LC) Output−Current ! mA −40 −20 0 20 40 60 80 TA− Free-Air Temperature − 5C Figure 3. Figure
in „TLC5941 Vorwiderstände und Spannungsversorgung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
7447709101.pdf
General Information: It is recommended that the temperature of the component does not exceed +125 °C under worst case conditions Ambient Temperature (refering to -40 up to +85 °C , IR) ± , Operating Temperature -40 up to +125 °C 2 1 Storage Conditions (in original packaging) < 40 °C ; < 75 % RH Moisture
in „[V] "jede Menge" Würth SMD WE-PD Speicherdrosseln 100uH, 1210, 2,5A, 110mOhm, Nr. 7447709101 geschir“ · Markt ·
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PDF
744770147.pdf
General Information: It is recommended that the temperature of the component does not exceed +125 °C under worst case conditions Ambient Temperature (refering to -40 up to +85 °C , IR) ± 0 Operating Temperature -40 up to +125 °C 2 1 Storage Conditions (in original packaging) < 40 °C ; < 75 % RH Moisture
in „[V] Weitere WÜRTH Power WE-PD SMD Induktivitäten 22uH, 33uH, 47uH“ · Markt ·
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PDF
7447709330.pdf
General Information: It is recommended that the temperature of the component does not exceed +125 °C under worst case conditions Ambient Temperature (refering to -40 up to +85 °C , IR) ± , Operating Temperature -40 up to +125 °C 2 1 Storage Conditions (in original packaging) < 40 °C ; < 75 % RH Moisture
in „[V] Weitere WÜRTH Power WE-PD SMD Induktivitäten 22uH, 33uH, 47uH“ · Markt ·
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PDF
MC1489.pdf
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 Temperature Range T − 65 to + 175 °C stg Stresses exceeding Maximum Ratings may damage the device. Maximum Ratings are
in „USB/RS232 Konverter, einige Fragen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Sensirion_Humidity_SHT21_Sample_Code_V1.2.pdf
uC in I2C_HAL.h/.c // - adapt the timing of the delay function for your uC in system.c // - adapt the HW_Init() in system.c // - change the uC register definition file <io70f3740.h> in system.h //======
in „SHT11 SHT21 unterschiedliche Luftfeuchte Werte“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sim.pdf
=2000 .paramcmos=33p 1 R r .options ITL2=5000 Q14 C3 D4 2 } 1n e o V 3 3.3V .temp=27 r C17 3 m 1 D C12 2 o {cmos} R = {csource} R { 15V 1 r r D16 Q21 } IXTH24N50L Q5 C18 2 o k 3 r R 2 {cmos} R r r Q15 7 D
in „Slew Rate Erhöhung für diskrete Operationsverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
744770122.pdf
General Information: It is recommended that the temperature of the component does not exceed +125 °C under worst case conditions Ambient Temperature (refering to -40 up to +85 °C , R ) ± 0 Operating Temperature -40 up to +125 °C 2 1 Storage Conditions (in original packaging) < 40 °C ; < 75 % RH Moisture
in „[V] Weitere WÜRTH Power WE-PD SMD Induktivitäten 22uH, 33uH, 47uH“ · Markt ·
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PDF
7447709220.pdf
General Information: It is recommended that the temperature of the component does not exceed +125 °C under worst case conditions Ambient Temperature (refering to -40 up to +85 °C , R ) ± , Operating Temperature -40 up to +125 °C 2 1 Storage Conditions (in original packaging) < 40 °C ; < 75 % RH Moisture
in „[V] Weitere WÜRTH Power WE-PD SMD Induktivitäten 22uH, 33uH, 47uH“ · Markt ·
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Datei
fx80emu.py
nicht geöffnet werden" sys.exit(1) print "Warte auf Reset" resetted = 0 prn = "" while resetted < 2 : c=ser.read() prn += c if c == "\x1b" : c=ser.read() prn += c if c == "\x40" : resetted += 1 print "Reset "+str(resetted)+ "/2 erkannt" ser.close() print "Daten werden konvertiert" graphmode = False graphlen
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PDF
datasheet.pdf
ms 750 A 2 T vj 150 °C, 10 ms 600 2 i t T vj25 °C, 8,3...10 ms 2800 A s T vj150 °C, 8,3...10 ms 1800 A s VF T vj= 25 °C; F = 150 A 1,6 V V(TO) T vj= 150 °C 0,85 V T T vj= 150 °C 8 m RD T vj= 25 °C; VRD = VRRM 1 mA SKB SKD T vj= 150 °C; RD = VRRM 10 mA t T = 25 °C typ. 10 s rr vj G 2000 Hz Rthjc total 0,65 0,45 °C/W Features Rthch total 0,06 0,06 °C/W • Isolated metal case with screw R T = 35 °C; P1A/120 F 0,9 0,7 °C/W terminals thja
in „[V oder T] TDS420“ · Markt ·
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PDF
SKD50-08_A3_Gleichrichtermodul_Datasheet.pdf
ms 750 A 2 T vj 150 °C, 10 ms 600 2 i t T vj25 °C, 8,3...10 ms 2800 A s T vj150 °C, 8,3...10 ms 1800 A s VF T vj= 25 °C; F = 150 A 1,6 V V(TO) T vj= 150 °C 0,85 V T T vj= 150 °C 8 m RD T vj= 25 °C; VRD = VRRM 1 mA SKB SKD T vj= 150 °C; RD = VRRM 10 mA t T = 25 °C typ. 10 s rr vj G 2000 Hz Rthjc total 0,65 0,45 °C/W Features Rthch total 0,06 0,06 °C/W • Isolated metal case with screw R T = 35 °C; P1A/120 F 0,9 0,7 °C/W terminals thja
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Datei
bauteile_002.txt
----------------------------------------------------------------- 500 S1M/11T SMD Vishay 100 4,00 2000 100nF/X7R 0603 100 1,00 Keramik-C 200 B140-7 Liteon 50 1,00 Shottky-Diode 400 LSGT677K SMD Osram 50 2,50 TOPLED 200 BAT54A SOT23 Fairchild 100 2,00 200 BAT54S SOT23 Fairchild 100 2,00 200 BAT54C SOT23
in „Verkaufe diverse Bauteile“ · Markt ·
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Datei
ohne_cf.txt
0.174588] pnp 00:01: [io 0x04d6] [ 0.174593] pnp 00:01: [io 0x087f] [ 0.174597] pnp 00:01: [io 0x0c00-0x0c01] [ 0.174602] pnp 00:01: [io 0x0c14] [ 0.174607] pnp 00:01: [io 0x0c50-0x0c52] [ 0.174612] pnp 00:01: [io 0x0c6c] [ 0.174616] pnp 00:01: [io 0x0c6f] [ 0.174621] pnp 00:01: [io 0x0cd0-0x0cd1]
in „Thin client über speedport w701v einrichten“ · PC Hard- und Software ·
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Datei
with_cf.txt
0.174644] pnp 00:01: [io 0x04d6] [ 0.174648] pnp 00:01: [io 0x087f] [ 0.174653] pnp 00:01: [io 0x0c00-0x0c01] [ 0.174658] pnp 00:01: [io 0x0c14] [ 0.174663] pnp 00:01: [io 0x0c50-0x0c52] [ 0.174667] pnp 00:01: [io 0x0c6c] [ 0.174672] pnp 00:01: [io 0x0c6f] [ 0.174677] pnp 00:01: [io 0x0cd0-0x0cd1]
in „Thin client über speedport w701v einrichten“ · PC Hard- und Software ·
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PDF
fdgfdkfdp.pdf
PERMISSIBLE CHANGE (R) CLAUSE TEST METHOD (1) STABILITY CLASS 5 OR BETTER 4.23 4.23.2 2 (Bb) Dry heat 200 °C; 16 h Damp heat, cyclic 4.23.3 30 (Db) 55 °C; 24 h; 90 % to 100 % RH; 1 cycle 4.23.4 1 (Ab) Climatic sequence Cold -55 °C; 2 h ± (0.5 % R + 0.05 ) 4.23.5 13 (M) Low air pressure; 1.0 kPa; 2 h; 15 °C to 35 °C Damp heat, cyclic 4.23.6 30 (Db) 55 °C; 24 h; 95 % to 100 % RH; 5 cycles Ptest= 1.16 x P70 U test 1.16 x P 70x R U max. 4.25.2 - Endurance at on = 1.5 h; off 0.5 h room temperature 25 °C; 1000 h ±
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PDF
7427503.pdf
Classification Reflow Soldering Profile: Profile Feature Value Preheat Temperature Min Ts min 150 °C Preheat Temperature Max T 200 °C s max Tp Preheat Time t from T to T t 60 - 120 seconds t T C5°C s s min s max s Max. Ramp Up Rate p Ramp-up Rate (T tL T ) P 3 °C/ second max. Max. Ramp Down Rate Liquidous
in „DC/DC-Wandler filtern“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Boardtester.bas
'-------------------------------------------------------------- ' (c) 1999-2000 MCS Electronics '-------------------------------------------------------------- ' file: PORT.BAS ' demo: PortB and PortD '-------------------------------------------------------------- $regfile
in „NEED HELP bin wohl zu dumm“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CZX3500.pdf
Contact Arrangement ....................SPDT.... Operational Temperature ....................- 25°C to + 50°C Max Temperature Rise ....................20°C.... Weight ....................Approx. 320 g Mounting ....................Four screws Cable Connections ....................3 N type female connectors
in „Koaxialrelais im Gehäuse betreiben“ · HF, Funk und Felder ·
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PDF
EZPack_XL__2260mAh.pdf
Current: 1080mA Rec. Charge Cut Off: by current 50mA or timer 4h Max. Continuous Discharge Current: 2000mA Rec. Discharge Cut Off: 3V Internal Impedance: approx. 110mΩ Exp. Cycle Life: >500 cycles >70% of initial cap. (0.5C/0.5C) Cell Protection Overcharge Detection: 4.3 ± 0.02V (0.8 to 1.2sec. delay,
in „Li-Ion Akku Lade-IC gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2_20.pdf
during 40µs data write and read. Display On/Off Sets ON/OFF of all display (D) cursor 0 0 0 0 0 0 1 D C B ON/OFF (C), and blink of cursor positi40µs Control character (B). Cursor / Display 0 0 0 0 0 1 S/C R/L * * Moves the Cursor and shifts the displa40µs Shift without changing DD RAM contents. Sets interface
in „Brauche Hilfe beim Schaltplan eines LCDs“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ANNE-50X_.pdf
Termination SMA ANNE-50X+ 50Ω DC to 20000 MHz Maximum Ratings Features Operating Temperature -55°C to 100°C • wideband coverage, DC to 20000 MHz CASE STYLE: LL561 Storage Temperature -55°C to 100°C • return loss, 40 dB typ. up to 4000 MHz Permanent damagemay occur if any of theselimits areexceeded
in „Abschlusswiderstand zur Vermessung“ · HF, Funk und Felder ·
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PDF
DMX_512.PDF
plate marking 25 5 Pin XLR - Cable Scheme Permitted Marking at Comments 26 Pins Wired XLR 27 1, 2, 3 C1 DMX512 Scheme C1 28 1, 2, 3 C2 DMX512 Scheme C1 Can be upgraded to full wiring of XLR and remarked for Scheme C2 at later date if required 29 1, 2, 3, 4, 5 C1 not permitted -Note 1- 30 1, 2, 3, 4, 5 C2 DMX512 Scheme C2 necessary for use with TYPE 2 – TYPE 5 ports 31 a(1, 2, 3) b(1, 2, 3) C5.1 DMX512 Scheme C1 One CAT 5 Cable w/ two universes 32 1, 2, 3 C5.2 DMX512 Scheme C1 Can be upgraded to full
in „DMX Kabel anschließen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DMX_512.PDF
plate marking 25 5 Pin XLR - Cable Scheme Permitted Marking at Comments 26 Pins Wired XLR 27 1, 2, 3 C1 DMX512 Scheme C1 28 1, 2, 3 C2 DMX512 Scheme C1 Can be upgraded to full wiring of XLR and remarked for Scheme C2 at later date if required 29 1, 2, 3, 4, 5 C1 not permitted -Note 1- 30 1, 2, 3, 4, 5 C2 DMX512 Scheme C2 necessary for use with TYPE 2 – TYPE 5 ports 31 a(1, 2, 3) b(1, 2, 3) C5.1 DMX512 Scheme C1 One CAT 5 Cable w/ two universes 32 1, 2, 3 C5.2 DMX512 Scheme C1 Can be upgraded to full
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PDF
DMX_512.PDF
plate marking 25 5 Pin XLR - Cable Scheme Permitted Marking at Comments 26 Pins Wired XLR 27 1, 2, 3 C1 DMX512 Scheme C1 28 1, 2, 3 C2 DMX512 Scheme C1 Can be upgraded to full wiring of XLR and remarked for Scheme C2 at later date if required 29 1, 2, 3, 4, 5 C1 not permitted -Note 1- 30 1, 2, 3, 4, 5 C2 DMX512 Scheme C2 necessary for use with TYPE 2 – TYPE 5 ports 31 a(1, 2, 3) b(1, 2, 3) C5.1 DMX512 Scheme C1 One CAT 5 Cable w/ two universes 32 1, 2, 3 C5.2 DMX512 Scheme C1 Can be upgraded to full
in „DMX 512 Lichtsteuerpult bauen“ · Mikrocontroller und Digitale Elektronik ·
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FPF2700.pdf
Human Body Model, JESD22-A114 2000 V w Protection Level Charged Device Model, JESD22-C101 2000 e (1) ™ Thermal Resistance, MLP 3x3 , See Figure 8 80 °C/W JA Junction to Ambient SO8 , See Figure 10 102 . ~ Note: 2 1. Thermal resistanceJAθ
in „Highside-Switch gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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Diagramm einer Ladekurve eines Batterie-Sensors
LIN BATTERIE-SENSOR · LADEKURVE I: +388..+728 mA V: 12.56..14.80 V T: 22.6..25.0 °C Ford AG9N-10C679-DE - 0x8D - 60s Intervall - Nur Ladegeraet - 115 Frames - 114 min I [mA] = ((b[1]<<8|b[0]) - 0x2000) * 10 V [V] = b[2] / 16 T [°C] = b[3] / 3.4 Lader AN CC Bulk CV-Phase I sinkt CC ANLAUF CC BULK CV ABSORPTION STROM (mA) 600 450 150 0 SPANNUNG (V) 14 13.50 13 12.50 12 TEMP. (°C) 25 24 23 22 5min 10min 15min 20min 25min 30min 35min 40min 45min 50min 55min 60min 65min 70min 75min 80min 85min 90min 95min 100min 105min 11min
in „Reverse Engineering eines LIN Bus“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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EntwurfV3.pdf
überprüfen IC104-A IC107-A 1 2 P2_ACTIVE R107 1*2 4 5 100k B 4 0k S Q 8 Y 15 +5V_1+ 4 n 3 74HC14-PW 1 1 6 C R IC105-A P2_ACTIVE 2 D 1 7 1 M C 74LVC1G58-GW C 4 R 1 1 4 SEL_TRG 3 B Y CP IC2-B GND P 1 6 3 9 74LVC1G97-GW R Q EN_P1/EN_P2 3 4 T101 1 1 1 +5V_2 GND GND S C 74HC74-PW B 74HC14-PW GND GND +5V 2000 ms
in „Einfache USB Upstream Port Umschaltung“ · Mikrocontroller und Digitale Elektronik ·
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dts_vtb8440bh-8441bh.pdf
ABSOLUTE MAXIMUM RATINGS Planar silicon photodiode in recessed ceramic StorageTemperature: -20°Cto75°C package. The package incorporates an infrared OperatingTemperature: -20°Cto75°C rejection filter. These diodes have very high shuntresistanceandhavegoodblueresponse. ELECTRO-OPTICAL CHARACTERISTICS @
in „Kurze Frage zu Transimpedanzverstärker - Single Supply möglich (für Photodiode)“ · Analoge Elektronik und Schaltungstechnik ·
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830055299.pdf
number 13 Frequency Parameters Frequency 25.0MHz Frequency Tolerance ±20.00ppm Tolerance Condition @25°C Frequency Stability ±30.00ppm Operating Temperature Range -40.00 to 85.00°C Overtone Order Fundamental Ageing ±5ppm max per year @25°C Electrical Parameters Outline (mm) Load Capacitance (CL) 18.00pF
in „Schaltung W5500“ · Mikrocontroller und Digitale Elektronik ·
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Schaltplan zur Einschaltstrombegrenzung
A B C D E F 1 Hauptschalter Säge 2 S1 R2 47 Rel1 Tr1 Br1 R1 C1 3 18V 1,5VA 280 2000µF 4 Änderungen Datum gez. Bezeichnung Blatzzahl 1 Datum Name 30.12.2006 Einschaltstrombegrenzung 2 gepr.: Blatt-Nr.: 1 (c
in „Einschaltstrombegrenzung“ · Analoge Elektronik und Schaltungstechnik · · Schaltpläne
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SEMIKRON_DataSheet_SKR_96_02643980.pdf
; T = 150 ºC 80 A C FSM Tvj 25º C ; 10 ms 2000 A Rectifier Diode Tvj 180º C ; 10 ms 1700 A Tvj 180º C ; 10 ms; VR= V RRM 1450 A i t T = 25º C ; 8,3...10 ms 20000 A s SKN 96 vj 2 SKR 96 Tvj 180º C ; 8,3...10 ms 14400 A 2 Tvj 180º C ; 8,3...10 ms; R = VRRM 10500 A s VF Tvj 25º C, IF= 300 A Max. 1,2 V V T = 180º C 0,8 V (TO) vj Features rT Tvj 180º C 1,4 mΩ Low power dissipation R Tvj 25º C ; VR= V RRM 0,6 mA Reverse voltages up
in „Dioden identifizieren“ · Analoge Elektronik und Schaltungstechnik ·