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Datei
stm32f10x.h
define TIM4_BASE (APB1PERIPH_BASE + 0x0800) #define TIM5_BASE (APB1PERIPH_BASE + 0x0C00) #define TIM6_BASE (APB1PERIPH_BASE + 0x1000) #define TIM7_BASE (APB1PERIPH_BASE + 0x1400) #define RTC_BASE (APB1PERIPH_BASE +
in „COIDE 2.7.0 und STMF103C8T6 (china board), startprobleme“ · Mikrocontroller und Digitale Elektronik ·
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PDF
WS81.pdf
ediniz. Lehim kalemleri orta boy lehim uçlarına göre ayarlanmıs¸tır. Uç deg˘is¸tirilmesi nedeniyle veya bas¸ka uç s¸ekilleri kullanıldıg˘ında farklılıklar olabilir. 6. Aksam 5 29 161 99 Lehim kalemi takımı WSP 80 5 33 131 99 Lehim kalemi takımı MPR 80 5 33 112 99 Lehim kalemi takımı LR 21 antistatik 5 33
in „Lötstation nachbauen, aber welche“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX4890E-MAX4892E.pdf
Pair 18 16 6B1 B1 Differential Pair 19 17 5B2 B2 Differential Pair 20 18 4B2 B2 Differential Pair 21 19 5B1 B1 Differential Pair 22 20 4B1 B1 Differential Pair 23 21 3B2 B2 Differential Pair 24 22 2B2 B2 Differential Pair 25 23 3B1 B1 Differential Pair 26 24 2B1 B1 Differential Pair 27 29 SEL Select
in „MAX4890E Eagle Lib“ · Platinen ·
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Datei
_P168_ThermOLED.ino
thermo.dat")) { fs::File f = SPIFFS.open("thermo.dat", "r"); if (f) { f.read( ((uint8_t *)&UserVar[event->BaseVarIndex] + 0), 16 ); f.close(); } } Plugin_168_lastsavetime = millis(); if (UserVar[event->BaseVarIndex] < 1) { UserVar[event->BaseVarIndex] = 19; // setpoint UserVar[event->BaseVarIndex + 2] = 1; /
in „ESPEasy Sketch Kompilierungsfehler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS_Micrel_ETH-TRANSIVER_KSZ9031RNX.pdf
0h, Bit [9], a self-clearing bit, to force a restart of Auto-Negotiation. Auto-Negotiation and 10Base-T/100Base-TX speeds use only differential pairs A (pins 2, 3) and B (pins 5, 6). Differential pairs C (pins 7, 8) and D (pins 10, 11) can be left as no connects. May 14, 2015 21 Revision 2.2 Micrel,
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Bild
Diagramme zur Nutzung von Automotive Betriebssystemen
Automotive Grade Linux (18%). While 41% of respondents said that they have no intention of using a base Automotive OS, those who did intend to use one said they are most likely to use AUTOSAR OS (21%), Automotive Grade Linux (13%), and Android Automotive OS (11%). WHAT IS THE BASE AUTOMOTIVE OS THAT YOUR
in „MCX A34, Nuvoton M2354 und Renesas RL78/L23“ · Mikrocontroller und Digitale Elektronik · · Diagramme
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PDF
m_mops386a_p389m115.pdf
0000-00-0). The following table shows the pinout. Header Pin Signal Name Function In/Out 1 TXD+ 10BASE-T Transmit Differential Output 2 TXD- 10BASE-T Transmit Differential Output 3 RXD+ 10BASE-T Receive Differential Input 4 NC Unused 5 NC Unused 6 RXD- 10BASE-T Receive Differential Input 7 LNLED LAN
in „Kontron PC-104 MOPS386A board from Bender Unimet 1000 ST“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PicoMOD-Startintf_Hardware_eng_Rev100.pdf
this pin 17 COM2 TXD J10 18 COM2 RXD J10 10 Connector Description and Pin Assignment J1 Pin Use on base board Remarks Connector 19 COM2 RTS J10 20 COM2 CTS J10 21 COM3 TXD (J4) 22 COM3 RXD (J4) 23 COM1 TXD (J6) 24 COM1 RXD (J6) 25 USB Device DN (J14) 26 USB Host DN (J10, J11, J12) 27 USB Device DP (J14
in „PicoMOD1 - 400 MHz 32MB Ram SBC für 9,95 von Pollin“ · Mikrocontroller und Digitale Elektronik ·
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Datei
dosbox-0.74.conf.txt
R-S_CMU_HD c: #VER SET 6 22 #SET COMSPEC=C:\COMMAND.COM #SET PATH=C:\DOS;C:\CMU\;C:\VERM;C:\CMU\B01_V5.21;C:\CMU\B01_V5.21\BASE;C:\CMU\B01_V5.21\TOOLS;C:\CMU\B01_V5.21\BASE\BSW\EXE #AUTOEXEC.BAT VER SET 6 22 SET DEF_PATH=C:\;C:\DOS;C:\VERM;C:\CMU\UTILS; SET COMSPEC=C:\COMMAND.COM SET PROMPT=$P$G SET TEMP=C:\TEMP SET TMP=C:\TEMP #SET DIRCMD=/o:gn /l SET DIRCMD= SET CMU_VERSION=B01_V5.21 SET CMU_DIRECTORY=B01_V5.21 SET NO_REBOOT=TRUE SET PATH=C:\CMU\B01_V5.21\TOOLS;C:\;C:\DOS;C:\VERM;C:\CMU\UTILS; SET FEH_SUP_CHK_REP_2_MMI=FALSE SET SYS_BAS=C:\CMU\B01_V5.21 SET SYS_LOG_DIR=C:\INTERNAL
in „CMU200 Erfahrungen und Modifikationen“ · HF, Funk und Felder ·
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Datei
stm32f10x.h
0x1000) #define TIM7_BASE (APB1PERIPH_BASE + 0x1400) #define TIM12_BASE (APB1PERIPH_BASE + 0x1800) #define TIM13_BASE (APB1PERIPH_BASE + 0x1C00) #define TIM14_BASE (APB1PERIPH_BASE + 0x2000) #define RTC_BASE (APB1PERIPH_BASE
in „STM32 - Eclipse, ARM GCC - Funktionsaufruf geht nicht :-(“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stm32f10x.h
0x1000) #define TIM7_BASE (APB1PERIPH_BASE + 0x1400) #define TIM12_BASE (APB1PERIPH_BASE + 0x1800) #define TIM13_BASE (APB1PERIPH_BASE + 0x1C00) #define TIM14_BASE (APB1PERIPH_BASE + 0x2000) #define RTC_BASE (APB1PERIPH_BASE
in „C-Libs for USB and OLED-Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet_FLEX003__v1_03.07.2008_.pdf
Vout Pin 62 V out Pin 15 TMS/RA0 Pin 16 AN20/FLTA/INT1/RE8 Pin 63 GND out Pin 64 GND out Pin 17 AN21/FLTB/INT2/RE9 Pin 18 AN5/QEB/CN7/CN7/RB5 Pin 19 AN4/QEA/CN6/RB4 Pin 20 AN3/INDX/CN5/RB3 CON3 for Piggybacking (PIC18F2550) Pin 21 AN2/SS1/CN4/RB2 Pin 22 V /RA9 ref− Pin 1 +VDD out Pin 2 GND Pin 23 V
in „LED blinken lassen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
User_guide_-_Driver.pdf
Prototype: void I2CSlaveEnable(unsigned long ulBase) Parameters: ulBase is the base address of the I2C Slave module. Description: This will enable operation of the I2C Slave block. Returns: None. 11.2.2.21 I2CSlaveInit Initializes the I2C Slave block
in „PCF8574 mit LM3S8938 per I2C auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bfr183.pdf
Symbol Value Unit 12 V Collector-emitter voltage VCEO Collector-emitter voltage VCES 20 Collector-base voltage VCBO 20 2 Emitter-base voltage VEBO Collector current I 65 mA C Base current IB 5 2) Total power dissipation Ptot 450 mW T ≤ 60 °C S Junction temperature Tj 150 °C Ambient temperature TA -65
in „Induktivität SOT23“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
grasshopper_schematic.pdf
R97 49R9 P3 PA20(USART1-CTS/SPIO-NPCS3) PC20(LCDC-HSYNC) F9 PC20[1] [1,6] LED2 48 47 [1,4] CLK25 PA21(SSC0-RX_FRAME_SYNC/PWM-PWM2) PC21(LCDC-PCLK) PC21[1] [1,6] LED3 [1,6] PWRLED R1 PA22(SSC0-RX_CLOCK/PWM-PWM3) PC22(LCDC-VSYNC) D9 PC22[1] [1,6] LED4 50 49 B [1,6] LED1 R3 PA23(SSC0-TX_CLOCK/TIMER1-A0)
in „Grasshopper Inbetriebnahme“ · Mikrocontroller und Digitale Elektronik ·
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PDF
High_Performance_Flash_and_Arc_Lamps_-_PerkinElmer.pdf
10 71 142 600 2100 16 0.6 4 3 25 95 4.75/13 10.7 1.84 x 10 35 70 400 1400 16 0.2 4 3 50 120 4.75/13 21.3 3.69 x 10 71 142 500 1750 16 0.4 4 3 75 145 4.75/13 32.0 5.53 x 10 106 212 600 2100 16 0.6 4 3 100 170 4.75/13 42.7 7.38 x 10 141 282 700 2450 16 0.8 Bore Arc Overall Base Size Impedance Explosion
in „Projekt: Leistungsstarkes Blitzgerät aus 12 Volt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Perkin_Elmer_Flash___Arc_Tubes.pdf
10 71 142 600 2100 16 0.6 4 3 25 95 4.75/13 10.7 1.84 x 10 35 70 400 1400 16 0.2 4 3 50 120 4.75/13 21.3 3.69 x 10 71 142 500 1750 16 0.4 4 3 75 145 4.75/13 32.0 5.53 x 10 106 212 600 2100 16 0.6 4 3 100 170 4.75/13 42.7 7.38 x 10 141 282 700 2450 16 0.8 Bore Arc Overall Base Size Impedance Explosion
in „Reparatur (UW) Blitzgerät möglich?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SMD-PHILIPS_1999.pdf
BAT17 A3p; A3t SOT23 BAS21 JSp; JSt SOT23 BAT54 L4p; L4t SOT23 BAS28 JTp SOT143B BAT54A L42 SOT23 BAS29 L20 SOT23 BAT54AW 42 SC-70/SOT323 BAS31 L21 SOT23 BAT54C L43 SOT23 BAS32L black SOD80C BAT54CW 43 SC-70/SOT323 BAS35 L22
in „Datenbuch Valvo 1977 gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
bm40.S
; SP += 1 ; pop __tmp_reg__ pop r29 ; pop r28 ; ret .size main, .-main .section .text._ZN3AVR11getBaseAddrINS_7Series05ClockEEEPT_v,"axG",@progbits,AVR::Series0::Clock* AVR::getBaseAddr<AVR::Series0::Clock>(),comdat .weak AVR::Series0::Clock* AVR::getBaseAddr<AVR::Series0::Clock>() .type AVR::Series0
in „AVR128, CCP und Optimierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BC337-D.PDF
NPN Silicon Features http://onsemi.com • These are Pb−Free Devices COLLECTOR 1 MAXIMUM RATINGS 2 BASE Rating Symbol Value Unit Collector − Emitter Voltage V CEO 45 Vdc 3 Collector − Base Voltage V CBO 50 Vdc EMITTER Emitter − Base Voltage V EBO 5.0 Vdc Collector Current − Continuous C 800 mAdc Total
in „Grundlagenproblem Transistor?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SR0604100MSB.PDF
SR0805392KS ¡… 3900.0 10% 28 1K 0.252M 1.1 18.000 0.09 ¡… ¡Ó SR0805472KS 4700.0 10% 30 1K 0.252M 1.0 21.000 0.08 1).¡…¡G Packaging information¡A Bulk B ¡GTaping Reel 2). IDC base on temp. rise 40max. &¡µL/L0A=10% max. E ¡X 10 ¡· SR1006 Series Inductance Q Test Freq. ( Hz ) SRF RDC IDC DWG No. (£gH) ref
in „Pollin SMD-Induktivitäten identifizieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
pkg.pdf
CERDIP Package Dimensions in Inches (DATUM A) B N/2 1 4 E E1 N E3 e/2 DETAIL A E D A 4 A2 (DATUM B) BASE PLANE A1 A C SEATING PLANE e L 7 c b2 Z Z E2 b .010 M C A B b1 WITH LEAD FINISH (c) c1 BASE METAL 4X b3 (b) SECTION Z-Z 3 DETAIL A S YB INCHES NOTES: OL MIN. NOM. MAX. 1. DIMENSIONING AND TOLERANCING
in „Pinabstand aus dem Datenblatt ermitteln, ich blicke nicht durch“ · Mikrocontroller und Digitale Elektronik ·
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Datei
cpu_z_log.txt
0x1A] (TMPIN2) Fan 1 2265 RPM [0x254] (FANIN1) Fan 2 1190 RPM [0x237] (FANIN2) Register space LPC, base address = 0x0A30 00 01 02 03 04 05 06 07 08 09 0A 0B 0C 0D 0E 0F 00 19 90 BF 26 00 00 00 00 00 C0 48 00 00 00 52 36 10 00 4F 6D 60 C0 00 94 8C 00 02 02 94 21 98 00 00 20 95 20 D8 A2 5B A2 2C 84 8F 2B
in „Frage zu neues Mainboard anschaffen“ · PC Hard- und Software ·
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PDF
NAT7210_AN110.pdf
+2 #define accr BASE_ADDRESS+2 #define bsr BASE_ADDRESS+3 #define auxcr BASE_ADDRESS+3 #define isr2 BASE_ADDRESS+4 #define adr BASE_ADDRESS+4 #define spmr BASE_ADDRESS+5 #define spsr BASE_ADDRESS+5 #define cptr BASE_ADDRESS
in „avr und gpib“ · Mikrocontroller und Digitale Elektronik ·
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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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PDF
FH23.pdf
16 07.5 07.9 05.7 05.1 16.5 FH23-33S-0.3SHAW(51)586-1305-0-51 33 24 11.5 12.7 10.5 09.9 24.5 FH23-21S-0.3SHW(51) 586-1314-1-51 21 16 07.5 09.1 06.9 06.3 16.5 FH23-39S-0.3SHW(51) 586-1306-3-51 39 24 11.5 14.5 12.3 11.7 24.5 FH23-21S-0.3SHAW(51)586-1315-4-51 21 16 07.5 09.1 06.9 06.3 16.5 FH23-39S-0.3SHAW
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PDF
FH23.pdf
16 07.5 07.9 05.7 05.1 16.5 FH23-33S-0.3SHAW(51)586-1305-0-51 33 24 11.5 12.7 10.5 09.9 24.5 FH23-21S-0.3SHW(51) 586-1314-1-51 21 16 07.5 09.1 06.9 06.3 16.5 FH23-39S-0.3SHW(51) 586-1306-3-51 39 24 11.5 14.5 12.3 11.7 24.5 FH23-21S-0.3SHAW(51)586-1315-4-51 21 16 07.5 09.1 06.9 06.3 16.5 FH23-39S-0.3SHAW
in „OLED Sammelbestellung“ · Markt ·
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PDF
OLED-Stecker_0.3pitch.pdf
16 07.5 07.9 05.7 05.1 16.5 FH23-33S-0.3SHAW(51)586-1305-0-51 33 24 11.5 12.7 10.5 09.9 24.5 FH23-21S-0.3SHW(51) 586-1314-1-51 21 16 07.5 09.1 06.9 06.3 16.5 FH23-39S-0.3SHW(51) 586-1306-3-51 39 24 11.5 14.5 12.3 11.7 24.5 FH23-21S-0.3SHAW(51)586-1315-4-51 21 16 07.5 09.1 06.9 06.3 16.5 FH23-39S-0.3SHAW
in „OLED Sammelbestellung“ · Markt ·
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Datei
LPC11Axx.h
(LPC_APB0_BASE + 0x04000) #define LPC_USART_BASE (LPC_APB0_BASE + 0x08000) #define LPC_CT16B0_BASE (LPC_APB0_BASE + 0x0C000) #define LPC_CT16B1_BASE (LPC_APB0_BASE + 0x10000) #define LPC_CT32B0_BASE (LPC_APB0_BASE + 0x14000) #define LPC_CT32B1_BASE (LPC_APB0_BASE + 0x18000) #define LPC_ADC_BASE (LPC_APB0_BASE + 0x1C000) #define LPC_DAC_BASE (LPC_APB0_BASE + 0x24000) #define LPC_CMP_BASE (LPC_APB0_BASE + 0x28000) #define LPC_SSP0_BASE (LPC_APB0
in „constexpr Mikrokontroller Pointer Hartwarezugriff“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ss12.pdf
maximum peak of 260 °C SMA (DO-214AC) • AEC-Q101 qualified available - Automotive ordering code: base P/NHE3 or P/NHM3 • Material categorization: for definitions of compliance please see www.vishay.com/doc?99912 TYPICAL APPLICATIONS PRIMARY CHARACTERISTICS IF(AV) 1.0 A For use in low voltage, high frequency
in „Identifikation SMD Bauteil“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
IS51Basic.ASM
expression ; ;*************************************************************** ; EXPRB: MOV R2,#LOW OPBOL ;BASE PRECEDENCE ; EP1: PUSH R2B0 ;SAVE OPERATOR PRECEDENCE CLR ARGF ;RESET STACK DESIGNATOR ; EP2: MOV A,SP ;GET THE STACK POINTER ADD A,#12 ;NEED AT LEAST 12 BYTES JNC EP21 LJMP E1XX2 EP21: MOV A,ASTKA
in „Layout für MCS51 Experimentierboard“ · Projekte & Code ·
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Datei
panel-simple.c
of_node_put(ddc); if (!panel->ddc) { err = -EPROBE_DEFER; goto free_backlight; } } drm_panel_init(&panel->base); panel->base.dev = dev; panel->base.funcs = &panel_simple_funcs; err = drm_panel_add(&panel->base); if (err < 0) goto free_ddc; dev_set_drvdata(dev, panel); return 0; free_ddc: if (panel->ddc) put_device
in „Linux RPI VC4 Driver - DRM NullPointer Exception“ · Mikrocontroller und Digitale Elektronik ·
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PDF
xmega_a1.pdf
base 0x00C DMA_INT_base DMA Controller Interrupt base 0x014 RTC_INT_base Real Time Counter Interrupt base 0x018 TWIC_INT_base Two-Wire Interface on Port C Interrupt base 0x01C TCC0_INT_base Timer/Counter
in „Welchen Wert hat der Pull-up-Widerstand dieses XMega?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
The_International_System_of_Units_sp330.pdf
in combination with those for base and other derived units to express the units of other quantities. 2.2.1 Units expressed in terms of base units Table 2 lists some examples of derived units expressed directly in terms of base units.
in „Stromangabe in der Einheit At?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ds1879a.pdf
rate. At each system timer interrupt, the Data Transfers in Extended Mode command 10h, 11h, 20h, or 21h is issued, followed by the sample. Polling of the write buffer available flag The first audio channel is programmed using the controller (Audio_Base+Ch [bit 7]) is required before writing the registers
in „Informationen über ISA-Karten“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DG24128.asm
--------------------- .equ F_CPU = 8000000 .equ CYCLES_PER_US = ((F_CPU+500000)/1000000) .equ TXT_BASE = $0000 .equ GFX_BASE = $0300 .equ FONT_SIZE = 6 .equ SPALTEN = 240/FONT_SIZE .equ GFX_ZEILEN = 128 .equ TXT_ZEILEN = 128/8 ; 0bxxxxxyyyyyyyyzzz ; x - CHR_OFFSET ; y - CHR_CODE ; z = CHR_LINE .equ CHR_OFFSET
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PDF
DTC114.pdf
PIN 1. SOURCE PIN 1. DRAIN PIN 1. BASE 1 PIN 1. CATHODE 2. SOURCE & SUBSTRATE 2. DRAIN 2. GATE 2. EMITTER 2. GATE 3. DRAIN 3. GATE 3. SOURCE & SUBSTRATE 3. BASE 2 3. ANODE STYLE 11: STYLE 12: STYLE 13: STYLE 14: STYLE 15: PIN 1. ANODE PIN
in „Transistor mit Vorwiderstand (Digitaltransistor) in TO92 gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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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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Datei
stm32f103xb.h
) #define TIM2_BASE (APB1PERIPH_BASE + 0x00000000UL) #define TIM3_BASE (APB1PERIPH_BASE + 0x00000400UL) #define TIM4_BASE (APB1PERIPH_BASE + 0x00000800UL) #define RTC_BASE (APB1PERIPH_BASE + 0x00002800UL) #define WWDG_BASE
in „System Workbench für STM32 Anfängerfragen“ · PC Hard- und Software ·
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PDF
io-controller-hub-9-datasheet.pdf
(USB EHCI—D29:F7, D26:F7).................................................................665 17.1.21NXT_PTR2—Next Item Pointer #2 Register (USB EHCI—D29:F7, D26:F7).................................................................665 17.1.22DEBUG_BASE—Debug Port Base Offset Register (USB EHCI—D29:F7,
in „FLASH Memory Chip im Lenovo X200 von 8 MB auf 16 MB vergroessern“ · PC Hard- und Software ·
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PDF
BFG591.pdf
Absolute Maximum Rating System (IEC 134). SYMBOL PARAMETER CONDITIONS MIN. MAX. UNIT VCBO collector-base voltage open emitter 20 V VCEO collector-emitter voltage open base 15 V VEBO emitter-base voltage open collector 3 V I collector current (DC) 200 mA C Ptot total power dissipation up to s =
in „UKW-Prüfsender: Diverse Fragen!“ · HF, Funk und Felder ·
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Datei
lpc111x.h
enable_interrupts() asm(" cpsie i ") #define disable_interrupts() asm(" cpsid i ") // APB Peripherals #define I2C_BASE 0x40000000 #define WDT_BASE 0x40004000 #define UART_BASE 0x40008000 #define TMR16B0_BASE 0x4000c000 #define TMR16B1_BASE 0x40010000 #define TMR32B0_BASE 0x40014000 #define TMR32B1_BASE 0x40018000 #define ADC_BASE 0x4001c000 #define PMU_BASE 0x40038000 #define FLASH_CTRL_BASE 0x4003c000 #define SSP0_BASE 0x40040000 #define IOCONFIG_BASE 0x40044000 #define SYSCON_BASE 0x40048000 #define C_CAN_BASE 0x40050000 #
in „LPC1114FN28 und GPIO“ · Mikrocontroller und Digitale Elektronik ·
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Datei
NanoEveryRegister.h
const uint8_t portCtrl = 0x0A; // Slewrate Bit }; constexpr Offset addrOffset; struct Address // base addresses of registers { uint16_t vport; uint16_t port; uint8_t pinCtrl; uint8_t mask; }; // The index is always the Arduino pin number. constexpr Address baseAddr[] { // | VPORT | PORT | PINn | BIT | // | Base | Base | CTRL | MASK | // BIT | PIN {0x0008, 0x0440, 0x15, 0x20}, // 5 | 0 {0x0008, 0x0440, 0x14, 0x10}, // 4 | 1 {0x0000, 0x0400, 0x10, 0x01}, // 0 | 2 {0x0014, 0x04A0, 0x15, 0x20}, // 5 | 3 {0x0008
in „Wie Klassen-Template Objekte in einem Array nutzen (non Template, constexpr, inline)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
abl_wait_signalling.txt
Ausgänge !WAIT pin istype 'com'; " Hardware-Wait-States an µP "KONSTANTEN für IO-PORT-Adressen GLCD_BASE = !A25 & !A24 & A23 & A22 & !A21 & !A12; " 0x00C00000 wird mit IOD0 für Wait-Init verwendet ADU_BASE = !A25 & A24 & A23 & !A22 & !A21 & !A12; " 0x01800000 EQUATIONS " Ports CS_AD = !RESET & ADU_BASE
in „ABEL -> VHDL counter & state-machine“ · FPGA, VHDL & Co. ·
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Datei
CppTest.cpp
namespace Peripheral { using reg32_t =uint32_t; using reg16_t =uint16_t; constexpr reg32_t PERIPH_BASE = 0x40000000U; constexpr reg32_t APB1PERIPH_BASE = PERIPH_BASE; constexpr reg32_t APB2PERIPH_BASE = PERIPH_BASE + 0x00010000UL; constexpr reg32_t AHB1PERIPH_BASE = PERIPH_BASE + 0x00020000UL; constexpr
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Datei
SJA.c
(CAN_BASE + 2) #define CAN_INT *(unsigned char *) (CAN_BASE + 3) #define CAN_AC *(unsigned char *) (CAN_BASE + 4) #define CAN_AM *(unsigned char *) (CAN_BASE + 5) #define CAN_TMG_0 *(unsigned char *) (CAN_BASE
in „SJA1000 ATMega8515“ · Mikrocontroller und Digitale Elektronik ·
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Datei
sja1000-A.c
variable volatile uint8_t active = 0; volatile uint8_t sja_add = 0; txbuf_t txbuf[SJA_NUM]; uint16_t base[] = { BASE_ADDR_0, BASE_ADDR_1 }; // prototype uint8_t _send_message(const can_t *msg); // ----------------------------------------------------------------------------- // Description: Read a register
in „Volatile array element oder struct element?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
br-61xx.c
br61xx_vlans[6] __initdata = { 0x41, 0x42, 0x44, 0x48, 0x50, 0x00 }; /* SPI specific part CS GPIO_21 SCLK GPIO_20 MOSI GPIO_18 MISO GPIO_17 */ static struct mcp251x_platform_data mcp251x_info = { .oscillator_frequency = 16000000, .board_specific_setup = NULL, .irq_flags = IRQF_TRIGGER_LOW, .power_enable
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Datei
TFT_DHT11_mit_1_8_TFT_LED.ino
sizeof(ledBaseColors) / 4 - 1; colorIndex++) { for (byte generation = 0; generation < 5; generation++) { for (byte i = 0; i < NUMPIXELS; i++) { if (i % 2 == generation % 2) { ring.setPixelColor(i, ledBaseColors[colorIndex
in „Sketch für Projekt will nicht so richtig“ · Mikrocontroller und Digitale Elektronik ·
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Datei
TFT_DHT11_mit_1_8_TFT_LED.ino
(ledBaseColors) / 4 - 1; colorIndex++) { for (byte generation = 0; generation < 5; generation++) { for (byte i = 0; i < NUMPIXELS; i++) { if (i % 2 == generation % 2) { ring.setPixelColor(i, ledBaseColors[colorIndex
in „Sketch für Projekt will nicht so richtig“ · Mikrocontroller und Digitale Elektronik ·