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PDF
PEP_SMART_I-O_Base.pdf
user’smanual withdetailedSMART-BASE,SMART-EXTandSMART-Moduleinformation 9901 7 m 9 N MAN-SMARTIO UpdatedhandbookshowingamendmentstotheSMARTI/Ofamily 12916 1 i P c P b © P Important:TheDC/DCconverteroftheSMART-BASEiscapableofsupplying6.75W
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PDF
ZXTN19060CG.pdf
Semiconductors plc 2008 ZXTN19060CG Absolute maximum ratings Parameter Symbol Limit Unit Collector-Base voltage V CBO 160 V Collector-Emitter voltage (forward blocking) VCEX 160 V Collector-Emitter voltage V 60 V CEO Emitter-Collector voltage (reverse blocking) V 6 V ECX Emitter-Base voltage V 7 V EBO
in „5-12V bis 2A schalten, aber wie?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
7499211121A.pdf
& Zulassungen / material & approvals : G Eigenschaften / general specifications : Basismaterial / base material: Ferrit/ ferrite Betriebstemp. / operating temperature: -40°C - + 85°C Draht / wire: 0UEW 155°C Hochspannungsprüfung / Hipot test: 1500Vrms 1min. Kontaktmaterial/ contact plating: 30µ"gold plating on contact areaignet für 10/100Base-TX gemäß IEEE 802.3u / Compliant with IEEE 802.3u for 10/100Base-TX-Applications Gehäuse / housing Thermoplastic UL-94V0 Auto MDIX fähig / Auto MDIX capable LED 1,8-2,8 V/ 20mA Shield 50µ" nickel over
in „Power over Ethernet“ · Mikrocontroller und Digitale Elektronik ·
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PDF
uln2803a.pdf
Device Marking Samples (1) Drawing Qty (2) Ball material (3) (4/5) (6) ULN2803ADW ACTIVE SOIC DW 18 40 RoHS & Green NIPDAU Level-2-260C-1 YEAR -40 to 85 ULN2803A ULN2803ADWG4 ACTIVE SOIC DW 18 40 RoHS & Green NIPDAU Level-2-260C-1 YEAR -40 to 85 ULN2803A ULN2803ADWR ACTIVE SOIC DW 18 2000 RoHS & Green NIPDAU Level-2-260C-1 YEAR -40 to 85 ULN2803A ULN2803ADWRG4 ACTIVE SOIC DW 18 2000 RoHS & Green NIPDAU Level-2-260C-1 YEAR -40 to 85 ULN2803A (1) The marketing status values are defined as follows: ACTIVE: Product device recommended
in „PCB Komponenten zur Ansteuerung von Wasserpumpen (Anfänger)“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
n5110.c
n5110.h * Âîçâðàùàåìîå çíà÷åíèå : ñìîòðè âîçâðàùàåìîå çíà÷åíèå â n5110lcd.h */ byte Lcd_rect ( byte baseX, byte baseY, byte height, byte width, LcdPixelMode mode ) { byte tmpIdxX,tmpIdxY,tmp; byte response; // Ïðîâåðêà ãðàíèö if ( ( baseX >= LCD_X_RES) || ( baseY >= LCD_Y_RES) ) return OUT_OF_BORDER; if ( height > baseY ) tmp = 0; else tmp = baseY - height + 1; // Ðèñîâàíèå ëèíèé for ( tmpIdxY = tmp; tmpIdxY <= baseY; tmpIdxY++ ) { for ( tmpIdxX = baseX; tmpIdxX < (baseX + width); tmpIdxX++ ) { response = Lcd_pixel
in „Atxmega 128a1“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ch557.h
endpoint 4 control SFR_(UEP4_T_LEN ,0xDF); // endpoint 4 transmittal length SFR_(USB_CTRL ,0xE2); // USB base control #define bUC_HOST_MODE 0x80 // enable USB host mode: 0=device mode, 1=host mode #define bUC_LOW_SPEED 0x40 // enable USB low speed: 0=full speed, 1=low speed #define bUC_DEV_PU_EN 0x20 // USB
in „uC für 0,20€ CH552 / CH554 von WCH Billig Micro mit USB Funktion, Chip vorstellung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
kicad-gdb-crash-log.txt
ProcessEvent(wxEvent&) () at /usr/local/lib64/libwx_baseu-3.0.so.0 #75 0x00007ffff6ea33ab in wxWindowBase::TryAfter(wxEvent&) () at /usr/local/lib64/libwx_gtk2u_core-3.0.so.0 #76 0x00007ffff6ea33ab in wxWindowBase::TryAfter(wxEvent&) () at /usr/local/lib64/libwx_gtk2u_core-3.0.so.0 --Type <RET> for more
in „KiCad 5.0.2 - Absturz beim Footprint-Editor Aufruf“ · Platinen ·
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PDF
RM_PDTA114E_SER.pdf
Absolute Maximum Rating System (IEC 60134). Symbol Parameter Conditions Min Max Unit VCBO collector-base voltage open emitter - 50 V V collector-emitter voltage open base - 50 V CEO VEBO emitter-base voltage open collector - 10 V VI input voltage positive - +40 V negative - 10 V O output current -
in „AEG Lavatherm IH67680IH schaltet sporadisch ab“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BD137__FAI-2013.pdf
T = 25°C unless otherwise noted. 3 C 9 Symbol Parameter Value Units — BD135 45 F V CBO Collector-Base Voltage BD137 60 V a BD139 80 u r BD135 45 s V CEO Collector-Emitter Voltage BD137 60 V BD139 80 V EBO Emitter-Base Voltage 5 V C Collector Current (DC) 1.5 A ICP Collector Current (Pulse) 3.0 A I Base
in „High Freq Power Amplifier“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
pollin-pnx8950.diff
the debugger's needs. # Beware: exceptions aren't trapped if an offset is used! -TEXT_BASE = 0xA0010000 # Use offset of 0x10000 +TEXT_BASE = 0x80100000 # Use offset of 0x10000 diff -uNr u-boot-1.2.0/board/silverbox/silverbox.c u-boot-1.2.0-pnx//board/silverbox/silverbox.c --- u-boot-1.2.0
in „Pollin - Receiver-Mainboard mit Twin DVB-[T,C] Tuner, NXP PNX8950EH“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Infineon-BFP520-DS-v02_00-EN-_APs_.pdf
testcondition Min. Typ. Max. Collector emitter breakdownvoltage V(BR)CEO 2.5 3 3.5 V IC=1 mA,I =B, open base Collector emitter leakage current CES – 1 30 2) nA V CE= 2V, BE = 0, E-Bshortcircuited – 1000 2) V = 10 V, V = 0, CE BE E-Bshortcircuited 2) Collector base leakage current CBO 30 V CB=2 V, E =0, open
in „R&S TSMU Radio Network Analyzer“ · HF, Funk und Felder ·
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PDF
eao_Serie_31.pdf
rd w t l g l r p n t i t n m n h u r e a 18 x 24 mm o e i F Front cap T Typ-Nr. M T C e Buzzer IP 40 Plastic black S1 31-801.002 1 3 1 0.015 Operation voltage : 10 ... 26 VDC Operation voltage : 10 ... 55 VAC, 10 ... 75 VDC IP 40 Plastic black S 31-810.005 1 3 2 0.015 Further information in the Technical
in „[S] Custom Tastaturkappen mit individueller Beschriftung“ · Markt ·
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PDF
eao_Serie_31.pdf
rd w t l g l r p n t i t n m n h u r e a 18 x 24 mm o e i F Front cap T Typ-Nr. M T C e Buzzer IP 40 Plastic black S1 31-801.002 1 3 1 0.015 Operation voltage : 10 ... 26 VDC Operation voltage : 10 ... 55 VAC, 10 ... 75 VDC IP 40 Plastic black S 31-810.005 1 3 2 0.015 Further information in the Technical
in „Taster für Kanalumschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
main.c
include "lcd.h" #include "board.h" #include "bits.h" #include "gps.h" volatile AT91PS_PIO mPIOB = AT91C_BASE_PIOB; volatile AT91PS_PMC mPMC = AT91C_BASE_PMC; AT91PS_PIO v_pPioA = AT91C_BASE_PIOA; extern void LowLevelInit(void); void config_switch(void); void blink_if_char_(); char *gga_msg1, ch1; nmea_GGA_tp
in „Data aus USART vom SAM7-EX256 lesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Siedle_HTS811_SET_CA_812-x_EW_210008862-00_PI--.pdf
call as 2-tone call in and insert the cores into the base Compact set with ZERT 811-0 pos- Electrostatic charging plate. Fasten the base plate using 4 sible screws. Close the two openings at • Integrated call silencing via volume the top using rubber stoppers
in „Klingel mit 100 Melodien - last minute Weihnachtsgeschenk“ · Projekte & Code ·
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PDF
D130858D.PDF
speed switching t = 0.15 sec (typ.) at f = 64 kHz f H • Isolated package TO–3PFM Outline TO–3PFM 1. Base 2. Collector 1 3. Emitter 2 3 2SC5449 Absolute Maximum Ratings (Ta = 25°C) Item Symbol Ratings Unit Collector to base voltage V CBO 1500 V Collector to emitter voltage V 700 V CEO Emitter to base voltage
in „Transistor am Arduino“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADNS2051.pdf
) IGES file drawing describing the (0.091) base plate molding features for lens and PCB alignment. 5.10 (0.201) The components interlock as 12.60 11.38 13.88 they are mounted onto defined (0.498)(0.448) (0.546) features on the base plate. 0 REF.
in „Maussensor ADNS 2051 Bild auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2SC2922.pdf
Complement to type 2SA1216 APPLICATIONS ·Audio and general purpose PINNING(see Fig.2) PIN DESCRIPTION 1 Base Collector;connected to 2 mounting base 3 Emitter Fig.1 simplified outline (MT-200) and symbol Absolute maximum ratings(Ta=25 ℃) SYMBOL PARAMETER CONDITIONS VALUE UNIT VCBO Collector-base voltage Open emitter 180 V VCEO Collector-emitter voltage Open base 180 V VEBO Emitter-base voltage Open collector 5 V IC Collector current 17 A IB Base current 5 A PC Collector power dissipation TC=25℃ 200 W T Junction temperature 150 ℃ j T stg Storage temperature
in „Gefälschte Transistoren!“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
header_lcd.h
******************** /* ----- Definitions concerning LCD internal memory ------ */ #define glcd_G_BASE 0x0000 // base address of graphics memory #define glcd_T_BASE 0x1400 // base address of text memory #define glcd_GRABYTES_PER_ROW 16 // how many graphic bytes per row on screen #define glcd_TEXBYTES_PER_ROW
in „Display defekt? Zeilen werden nicht angezeigt..“ · Mikrocontroller und Digitale Elektronik ·
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PDF
noisecan.pdf
exp S kT , (6) signal where g is the voltage divider gain ~0.025 here!. The voltage divider on the base of Q perf2rms three functions: It reduces the swing of A so 2hat the base-collector junction cannot be Zenered or for- ward biased enough to cause servo lockup. The Fig. 3. Schematic diagram of the
in „OPA890 vs. OPA847 als Tranzimpedanzverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
rfm12.c
1; // Vorteiler berechnen // Timer Grundkonfiguration TIM_TimeBaseStructure.TIM_Period = 10; // Timer zählt von 0 ... 10 = 1 ms //TIM_TimeBaseStructure.TIM_Period = 100; // Timer zählt von 0 ... 10 = 10 ms TIM_TimeBaseStructure.TIM_Prescaler = PrescalerValue; TIM_TimeBaseStructure.TIM_ClockDivision = 0; TIM_TimeBaseStructure.TIM_CounterMode = TIM_CounterMode_Up; TIM_TimeBaseInit(TIM2, &TIM_TimeBaseStructure); // Timer einstellen //Timer Vorteiler-Taktkonfiguration TIM_PrescalerConfig(TIM2, PrescalerValue, TIM_PSCReloadMode_Immediate
in „RFM12 und STM32F1xx“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Full_Code.c
defined end // Initialize all the handles needed for this application myClk = CLK_init((void *)CLK_BASE_ADDR, sizeof(CLK_Obj)); myCpu = CPU_init((void *)NULL, sizeof(CPU_Obj)); myFlash = FLASH_init((void *)FLASH_BASE_ADDR, sizeof(FLASH_Obj)); myGpio = GPIO_init((void *)GPIO_BASE_ADDR, sizeof(GPIO_Obj)); myPie = PIE_init((void *)PIE_BASE_ADDR, sizeof(PIE_Obj)); myPll = PLL_init((void *)PLL_BASE_ADDR, sizeof(PLL_Obj)); myPwm1 = PWM_init((void *)PWM_ePWM1_BASE_ADDR, sizeof(PWM_Obj)); myPwm2 = PWM_init((void *)PWM_ePWM2_BASE_ADDR, sizeof
in „Fließkommazahlen in Ganzzahlen umrechnen für Register“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Final_Program_PWM-AC__synchronised.pdf
_eval.h" /* Private typedef -----------------------------------------------------------*/ TIM_TimeBaseInitTypeDef TIM_TimeBaseStructure; TIM_OCInitTypeDef TIM_OCInitStructure; TIM_ICInitTypeDef TIM_ICInitStructure; ADC_InitTypeDef ADC_InitStructure; ADC_CommonInitTypeDef ADC_CommonInitStructure; GPIO_InitTypeDef
in „STM32L1xxx µC displaying memory contents“ · µC & Digital Electronics ·
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PDF
datasheet_FLEX003__v1_03.07.2008_.pdf
JP7 GND AV SS ext Figure 1: FLEX Full Base Board JP8 +5V +3.3V JP9 +USB +5V JP10 DSP_MCLR PIC18_MCLR MORS1 (9-36 V power supply) JP11 DSP_PDATA PIC18_PDATA Pin 1 VINA JP12 Pin 2 VINB DSP_PCLK PIC18_PCLK JP13 VDD pull up - Pin 3 EARTH JP15 SOSCI
in „LED blinken lassen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Wohnraumuhr1_Rev1.1.pdf
-00182 115 x 65 x 40 mm -40...+120 °C RND 455-00205 360 x 200 x 150 mm -40...+120 °C RND 455-00183 115 x 65 x 55 mm -40...+120 °C RND 455-00184 115 x 90 x 55 mm -40...+120 °C RND 455-00185 171 x 121 x 55 mm -40...+120 °C
in „wohnraumuhr 2 - leiterplatte nach projekt scott huehn“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HA-2540.pdf
S 4 T E N G 2 R 16 T 0 R VS= ±5V L U V -2 Y 12 T L U -4 P T -6 1mV U 8 U S O -8 10mV 4 -10 0 0 40 80 120 160 200 240 -80 -40 0 40 80 120 160 SETTLING TIME (ns) TEMPERATURE ( oC) FIGURE 9. SETTLING TIME FOR VARIOUS OUTPUT STEP FIGURE 10. POWER SUPPLY CURRENT vs TEMPERATURE VOLTAGES 5 HA-2540 Typical
in „HA-2540 Operationsverstärker wird warm“ · Analoge Elektronik und Schaltungstechnik ·
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Bild
Präsentationsfolie zu Single-Pair Ethernet Standards
automation. The SPE electrical requirements are specified in the following IEEE standards IEEE 802.3cg (10BASE-T1): Bandwidth 0.1 to 20 MHz, reach up to 1000 m. IEEE 802.3bw (100BASE-T1): Bandwidth 0.3 to 66 MHz, reach up to 40 m. IEEE 802.3bp (1000BASE-T1): Bandwidth 1 to 600 MHz, reach up to 40 m. SPE requires
in „EMV 2026 – Vorträge, Verbrauchsmaterial und Architekturales“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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PDF
hm1000.pdf
base B by B and thus expanded. The Y-position of the signal is the (2nd time base/Delay/Triggering“ in the chapter ”Triggering same when displayed with either A or B. This means, however, and time bases“
in „defektes Hameg HM-1000“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Scratch_MegaSample.c
DMA_InitTypeDef DMA_InitStruct; DMA_InitStruct.DMA_Channel = DMA_Channel; DMA_InitStruct.DMA_PeripheralBaseAddr = ADC_DMA_PeripheralBaseAddr; DMA_InitStruct.DMA_Memory0BaseAddr = (uint32_t)ADC_DMA_Buffer; DMA_InitStruct.DMA_DIR = DMA_DIR_PeripheralToMemory; DMA_InitStruct.DMA_BufferSize = 300; DMA_InitStruct.DMA_PeripheralInc
in „STM32F4 ADC/DMA Phänomene“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PSMN4R8-100PSE.pdf
] Continuous current limited by package. 03aa16 003aaj964 120 200 D Pder (A) (%) 160 80 (1) 120 80 40 40 0 0 0 50 100 150 200 0 50 100 150 200 Tmb(°C) Tmb(°C) Fig. 1. Normalized total power dissipation as a (1) Capped at 120A due to package function of mounting base temperature Fig. 2. Continuous drain
in „Problem mit N-MOSFET“ · Analoge Elektronik und Schaltungstechnik ·
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Bild
Tabelle mit DC-Charakteristiken eines Transistors
condition Collector emitter breakdown voltage V(BR)CEO Min. 4 Typ. 4.5 Max. - V IC = 3 mA, IB = 0, open base Collector emitter leakage current ICES - Min. 0.1 Max. 1 2) µA VCE = 13 V, VBE = 0, E-B short circuited Min. 1 Max. 40 2) nA VCE = 5 V, VBE = 0, E-B short circuited Collector base leakage current ICBO Min. 1 Max. 40 2) VCB = 5 V, IE = 0, open emitter Emitter base leakage current IEBO Min. 10 Max. 500 2) VEB = 0.5 V, IC = 0, open collector DC current gain hFE Min. 100 Typ. 170 Max. 250 VCE = 3 V, IC = 5 mA, pulse
in „Clapp Oszillator mit oder ohne Bandpassfilter“ · HF, Funk und Felder · · Screenshots
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Datei
GRAPHICS.s
LINE + "I is x-axis" jr nc,=3 ex de,hl ! dec a * */ * if (y.dx.high & 0x80) =3: bit 7,(iy+dx+high-y_base) * if (y.dy.high & 0x80) jr z,=4 bit 7,(iy+dy+high-y_base) * A = A ^ 7; jr z,=5 xor 7 * else jr =6 =5: * A = A ^ 4; xor 4 =6: * else jr =7 =4: * if (! y.dy.high & 0x80) bit 7,(iy+dy+high-y_base) * A
in „Retro Fieber: Z80 oder 68000 ?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
GRAPHICS.s
LINE + "I is x-axis" jr nc,=3 ex de,hl ! dec a * */ * if (y.dx.high & 0x80) =3: bit 7,(iy+dx+high-y_base) * if (y.dy.high & 0x80) jr z,=4 bit 7,(iy+dy+high-y_base) * A = A ^ 7; jr z,=5 xor 7 * else jr =6 =5: * A = A ^ 4; xor 4 =6: * else jr =7 =4: * if (! y.dy.high & 0x80) bit 7,(iy+dy+high-y_base) * A
in „Gibt es eine Programmiersprache mit diesem Schleifentyp?“ · Offtopic ·
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PDF
PH2520U.pdf
PH2520U N-channel TrenchMOS ultra low level FET 120 003aab131 120 03aa15 I der P der (%) (%) 80 80 40 40 0 0 0 50 100 150 200 0 50 100 150 200 Tmb(°C) Tmb(°C) Fig 1. Normalized continuous drain current as a Fig 2. Normalized total power dissipation as a function of mounting base temperature function
in „FET Empfehlung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PH2925U.pdf
PH2925U N-channel TrenchMOS ultra low level FET 003aaa631 03aa15 120 120 Ider P der (%) (%) 80 80 40 40 0 0 0 50 100 150 200 0 50 100 150 200 Tmb(°C) Tmb(°C) Fig 1. Normalized continuous drain current as a Fig 2. Normalized total power dissipation as a function of mounting base temperature function
in „Mosfet IRFP4568PbF wird extrem heiß - warum?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Schrittmotor.pdf
,0,0,0 sys &H0101 &H40,cp + led,0,0,0 ' cp sys &H0101 &H40,0 + led,0,0,0 next i sys &H0101 &H40,data + led,0,0,0 ' RS = 0 sys &H0101 &H40,0 + led,0,0,0 return ' ************************************************************** #schreiben for i=7 to 0 step -1 if wert and 1 shl i then sys &H0101 &H40,rs + led,0,0,0 sys &H0101 &H40,cp + led,0,0,0 ' cp sys &H0101 &H40,0 + led,0,0,0 next i sys &H0101 &H40,data + rs + led,0,0,0 ' RS = 1 sys &H0101 &H40,0 + led,0,0,0 return ' *************************
in „schrittmotor Steuerung“ · Platinen ·
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PDF
Nelson_Pass_Class-A_design_a40_OK.pdf
Q9,10 PMD17K100 Lambda R12 750 ohms D 1-3 1N4148 diode R13 2k2 Q11 2N5248 FET Pass D.I.Y Project: A40 page 3 DAMPING, CURRENT, OUTPUT current following through the current source FET Q11. This 1.3V at the base of Q3 results in a .6V drop across R7, giving the current source a Fig. 7 plots the output
in „MOSFET Class-A Endstufe, Ruhestrom Einstellung“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
pinaddr.c
bekommen die Adresse im RAM für den jeweiligen PIN ( also 0x30 fuer PIND, 0x33 fuer PINC,...) #define pinBaseAddr(pa) ( (((pa) >> 3) & 3) * 3 + 0x10 + 0x20) // Die Adresse fuer das PIN-Register ist genau die pinBaseAddr (s.o.) // Die Adresse fuer das DDR-Register ist die pinBaseAddr + 1 // Die Adresse fuer das PORT-Register ist die pinBaseAddr + 2 #define pinPinAddr(pa) pinBaseAddr(pa) #define pinDdrAddr(pa) (pinBaseAddr(pa) + 1) #define pinPortAddr(pa) (pinBaseAddr(pa) + 2) // Die Bit-Nummer aus einer Pin-Adresse extrahieren ( Bits 0
in „Ports in Array möglich?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
kk_bb.c
PORTC 2 #define PORTD 3 #define PORT(x) GLUE(PORT, x) #define pinDIRout(port,pin) {*(uint32_t*)(GPIOA_BASE + PORT(port) *0x400 + (pin/8)*4)&=~(0b1111<<(4*(pin%8)));*(uint32_t*)(GPIOA_BASE + PORT(port) *0x400 + (pin/8)*4)|=(0b0011<<(4*(pin%8)));} #define pinDIRin(port,pin) {*(uint32_t*)(GPIOA_BASE + PORT(
in „Problem FatFS + SPI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DSA-461964.pdf
D General Purpose Transistors NPN Silicon 2N2219 2N2219A * 0 COLLECTOR 0 3 2N2222 / 3 2 2N2222A * BASE *Motorola Preferred Devices / 1 1 EMITTER 2 MAXIMUM RATINGS 2N2219 2N2219A P Rating Symbol 2N2222 2N2222A Unit I Collector–Emitter Voltage VCEO 30 40 Vdc H Y Collector–Base Voltage VCBO 60 75 Vdc 3
in „Alternative/Vergleichstyp zu 2N5109“ · HF, Funk und Felder ·
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PDF
MC9S12XF512.pdf
2 I-Bit PMFFCTL (FIE2) Vector Base+ $8C $46 PMF Fault 3 I-Bit PMFFCTL (FIE3) Vector Base + $8A Reserved Vector Base + $88 Reserved Vector Base + $86 Reserved Vector Base + $84 Reserved Vector Base + $82 Reserved Vector base + $80 $40
in „Wie oft kann ein µC programmiert werden?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MC9S12XF512.pdf
2 I-Bit PMFFCTL (FIE2) Vector Base+ $8C $46 PMF Fault 3 I-Bit PMFFCTL (FIE3) Vector Base + $8A Reserved Vector Base + $88 Reserved Vector Base + $86 Reserved Vector Base + $84 Reserved Vector Base + $82 Reserved Vector base + $80 $40
in „Probleme beim Ansteuern eines EEPROM über SPI“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Lauritzen_Saber.txt
nu). default 1 # #The following 4 parameters T0, tB, tA, ILH cannot be set to zero. # T0 = 466n, #Base transit time at low Voltage (t). Default 1u. tB = 1.76u, #Base carrier lifetime (t). Default 2u. tA = 160n, #eq. lifetime of anode emitter efficiency (t) ILH = 4, #Transition from low to high level
in „LTSpice - grammatical error bei .FUNC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
WS81.pdf
4 Wyrównanie potencja∏u 30 4.Potencial˜ i‰lyginimas 39 5.Wskazówki dot. pracy 30 5.Darbo nurodymai 40 6.Akcesoria 30 6.Priedai 40 7.Zakres wyposa˝enia 30 7.Tiekiamas komplektas 40 1.Figyelem!yzék Oldal31 1.Uzman¥bu! rÇd¥tÇjs41 2.Leírás 31 2.Apraksts 41 Mıszaki adatok 31 Tehniskie dati 41 3.Üzembevétel
in „Lötstation nachbauen, aber welche“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pdf-generaltechnicalinformation.pdf
respective graphs. Contact us for the specific multiplier values of a particular capacitor. 5.2.2 Base cooling with heat sink As a large amount of heat is dissipated through the base of the case, a heat sink connected to the capacitor base provides the most efficient cooling. We offer specially designed
in „BEHRINGER EURODESK MX 8000 Netzteil Schaltplan / Daten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM1203.pdf
upon level clamp) which holds the dc bias of the video amplifiers the differential DC voltage at the bases of Q3 and Q4. The and CRT cathodes constant during the black level reference Q3 and Q4 differential base voltage is determined by the portion of the video waveform. The clamp comparator, contrast control
in „Overhead-Projektor Display ansteuern?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
T6963.c
void) { unsigned int t; for (t=0; t<1000; t++) { *RESETPtr=0; } // ca. 125æs. Reset lcd_send_data(T_BASE%256); // Text Adresse lcd_send_data(T_BASE>>8); lcd_send_cmd(0x40); lcd_send_data(BYTES_PER_ROW%256); // Zeilenlänge lcd_send_data(BYTES_PER_ROW>>8); lcd_send_cmd(0x41); lcd_send_data(G_BASE%256); /
in „Hilfe ext. Mem ATmega162“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Servo.txt
MILLISEC_BASE ( F_CPU / PRESCALER / 1000 ) #define CENTER ( MILLISEC_BASE / 2 ) // // Konfiguration der Servoleitungen // #define NR_SERVOS 2 #define SERVO_DDR DDRD #define SERVO_PORT PORTD uint8_t ServoPuls[NR_SERVOS
in „Ansteuerung mehrere Servos“ · Mikrocontroller und Digitale Elektronik ·
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Datei
softwareSerial.cpp
,back--) { c=*front;*front=*back;*back=c; } return str; } char *itoa(int v, char *buff, int radix_base){ static char table[] = "0123456789abcdefghijklmnopqrstuvwxyz"; char *p=buff; unsigned int n = (v < 0 && radix_base == 10)? -v : (unsigned int) v; while(n>=radix_base){ *p++=table[n%radix_base]; n/=radix_base; } *p++=table[n]; if(v < 0 && radix_base == 10) *p++='-'; *p='\0'; return strrev(buff); } void printNumber(int32_t num) { char buf[40]={0}; itoa(num,buf,10); printString(buf); } void printCR() { writeByte
in „STM32 Arduino“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AV02-1046EN_0__3_.pdf
4 AbsoluteMaximumRatings Parameter HEDS-55XX/56XX HEDM-550X/560X HEDM-5540 StorageTemperature,T S -40°C to 100°C -40°C to +70°C -40°C to 85°C OperatingTemperature,T -40°C to 100°C -40°C to +70°C -40°C to 85°C A SupplyVoltage,V CC -0.5V to 7V -0.5V to 7V -0.5V to 7V OutputVoltage,V O -0.5V toVCC -0.5V
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