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Datei
test.cpp
(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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PDF
hm3036.pdf
Bandwidth (IN position). 20. CH I: 1 mV/div Y-Amplifier Bandwidth – All other pushbuttons (Out Position!). 21. CH II: 1 mV/div Y-Amplifier Bandwidth – Rotate the three variable controls (TIME/DIV. and VOLTS/ 22. X-Magnification x1 DIV.) to their (calibrated) detent positions. 23. Time Base – Set TIME/DIV. switch
in „HM303-6 Schaltpläne“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Hameg_HM303-6_Service_manual.pdf
Bandwidth (IN position). 20. CH I: 1 mV/div Y-Amplifier Bandwidth – All other pushbuttons (Out Position!). 21. CH II: 1 mV/div Y-Amplifier Bandwidth – Rotate the three variable controls (TIME/DIV. and VOLTS/ 22. X-Magnification x1 DIV.) to their (calibrated) detent positions. 23. Time Base – Set TIME/DIV. switch
in „Hameg 303-6 Schaltplan + PCB.“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
ch557.h
byte SFR_(UH_TX_DMA_H ,0xE7); // host tx endpoint buffer start address high byte #define XSFR_USB_BASE 0x21E0 // USB register base address //EXTERN UINT8XV UEP4_1_MOD _AT_ 0x21E0; // endpoint 4/1 mode //#define pUEP4_1_MOD PBYTE[0xE0] #define bUEP1_RX_EN 0x80 // enable USB endpoint 1 receiving (OUT)
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
RIN32M3_CL.h
+ 0x00300UL) #define RIN_UART1_BASE (PERI_BASE + 0x00400UL) #define RIN_IIC0_BASE (PERI_BASE + 0x00500UL) #define RIN_IIC1_BASE (PERI_BASE + 0x00600UL) #define RIN_WDT_BASE (PERI_BASE + 0x00700UL) #define RIN_SYS_BASE (PERI_BASE + 0x10000UL
in „R-IN32M3-CL (Cortex-M3): Wie funktioniert Senden/Empfangen auf dem Feldbus?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
rej09b0101_16c29hm_2_.pdf
.........................................21 2.3 Frame Base Register (FB)..............................................................................................22 2.4 Interrupt Table Register (INTB).......................................
in „Zeitproblem bei Softwarepwm“ · Mikrocontroller und Digitale Elektronik ·
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Datei
version_1p3_assembler.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 „Spaß mit Kloeckner-Moeller PS3 in BASIC(?)“ · Projekte & Code ·
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Datei
version_1p3_assembler.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 „Basic für 80C31“ · Mikrocontroller und Digitale Elektronik ·
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Datei
IS52Basic.a51
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
IS52Basic.a51
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
IS52Basic.a51
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 „Basic für 80C31“ · Mikrocontroller und Digitale Elektronik ·
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Datei
BASIC131-PS3.a51
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 „Spaß mit Kloeckner-Moeller PS3 in BASIC(?)“ · Projekte & Code ·
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Datei
IS51Basic133.a51
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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PDF
749196111.pdf
Testbedingungen / Wert / value Einheit / unit tol. test conditions Induktivität / L inductance 10 kHz / 0,1 V base 27,4 µH ±20% 1,5 Sättigungsstrom / saturation current |∆L/L|<10% Isat base 0,22 A typ. Nennstrom / ∆T=40 K Irms base 0,55 A typ. rated current DC-Widerstand / R , , DC-resistance @ 20°C DC base 344,0 mΩ max. 9 1 Spannungs-Zeit-Fläche / Voltage-µsecond ∫Udt 32,9 µVs max. Speicherenergie / E peak base 0,77 µJ typ. storage energy 2,0 Streuinduktivität 100 kHz / 0,1V L 0,21 µH typ. leakage inductance s base Hochs pannungstest / Hipot test 3mA / 1sec HV 500 VDC D Prüfgeräte / test equipment : E Testbedingungen
in „Wirkungsgrad beim Schaltreger mit galv. Trennung (Flyback)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
749196101.pdf
Testbedingungen / Wert / value Einheit / unit tol. test conditions Induktivität / L inductance 10 kHz / 0,1 V base 198,6 µH typ. 1,5 Sättigungsstrom / saturation current |∆L/L|<10% Isat base 0,01 A typ. Nennstrom / ∆T=40 K Irms base 0,55 A typ. rated current DC-Widerstand / R , , DC-resistance @ 20°C DC base 344,0 mΩ max. 9 1 Spannungs-Zeit-Fläche / Voltage-µsecond ∫Udt 32,9 µVs max. Speicherenergie / E peak base 0,11 µJ typ. storage energy 2,0 Streuinduktivität 100 kHz / 0,1V L 0,21 µH typ. leakage inductance s base Hochs pannungstest / Hipot test 3mA / 1sec HV 500 VDC D Prüfgeräte / test equipment : E Testbedingungen
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Datei
stm32f103x6.h
) #define TIM2_BASE (APB1PERIPH_BASE + 0x00000000UL) #define TIM3_BASE (APB1PERIPH_BASE + 0x00000400UL) #define RTC_BASE (APB1PERIPH_BASE + 0x00002800UL) #define WWDG_BASE (APB1PERIPH_BASE + 0x00002C00UL) #define IWDG_BASE (APB1PERIPH_BASE + 0x00003000UL) #define USART2_BASE (APB1PERIPH_BASE + 0x00004400UL) #define I2C1_BASE (APB1PERIPH_BASE + 0x00005400UL) #define CAN1_BASE (APB1PERIPH_BASE + 0x00006400UL) #define BKP_BASE (APB1PERIPH_BASE
in „System Workbench für STM32 Anfängerfragen“ · PC Hard- und Software ·
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PDF
Datenblatt_VPC3_CLF3_UM300.pdf
base address of Din_Buf 1 20H R_Din_Buf_Ptr2 Segment base address of Din_Buf 2 21H R_Din_Buf_Ptr3 Segment base address of Din_Buf 3 22H R_Len_DXBout_Buf Length of the 3 DXBout_Buf 23H R_DXBout_Buf_Ptr1 Segment
in „Profibus an Mikrocontroller“ · Mikrocontroller und Digitale Elektronik ·
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Datei
UART_Test.txt
1 *********************************************** // UART IO_Pin Config AT91F_PIO_CfgPeriph(AT91C_BASE_PIOB,(unsigned int) AT91C_PB20_TXD1 |(unsigned int) AT91C_PB21_RXD1, 0); // UART setting Config AT91F_US_Configure ((AT91PS_USART) AT91C_BASE_US1, MCK, AT91C_US_ASYNC_MODE, BAUDRATE , 0); // Enable Per.Clock for UART_1 AT91F_US1_CfgPMC (); //Disable all Interrupts AT91C_BASE_US1->US_IDR = 0xffff; // AIC Enable UART_1 INT AT91C_BASE_AIC->AIC_SVR[US1_ID] = (unsigned int) UART_Handler; AT91C_BASE_AIC->AIC_IECR |= (1<<US1_ID); AT91C_BASE_AIC->AIC_SMR[US1_ID] = AT91C_AIC_SRCTYPE_INT_EDGE_TRIGGERED
in „UART Interrupt ATRM9200“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2305_ds_2-1007_en__2_.pdf
TETRA mobile station and base station tests from the base station’s power amplifier. relevant for service • Intuitive and failsafe user interface Complete Mobile Station Measurement Functionality to Provide the Full Picture • Made
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Datei
eeprom.h
_8 ((uint32_t)0x08004000) /* Base @ of Page 8, 2 Kbytes */ #define ADDR_FLASH_PAGE_9 ((uint32_t)0x08004800) /* Base @ of Page 9, 2 Kbytes */ #define ADDR_FLASH_PAGE_10 ((uint32_t)0x08005000) /* Base @ of Page 10, 2 Kbytes */ #define
in „STM32 Virtueller EEPROM in Flash“ · Mikrocontroller und Digitale Elektronik ·
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Datei
datei-dmesg.txt
1 [ 21.182696] init: bluetooth main process ended, respawning [ 21.424536] init: bluetooth main process (864) terminated with status 1 [ 21.424566] init: bluetooth main process ended, respawning [ 21.639374] init: bluetooth main process (896) terminated with status 1 [ 21.639408] init: bluetooth main process ended, respawning [ 21.770692] init: bluetooth main process (920) terminated with status 1 [ 21.770722] init: bluetooth main process ended, respawning [ 21.892291
in „Limux:: Netzwerk und WLAN futsch.“ · PC Hard- und Software ·
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Datei
avr.h
ADDR) \ { \ if (legitimate_address_p (mode, operand, 0)) \ goto ADDR; \ } #endif #define REG_OK_FOR_BASE_NOSTRICT_P(X) \ (REGNO (X) >= FIRST_PSEUDO_REGISTER || REG_OK_FOR_BASE_STRICT_P(X)) #define REG_OK_FOR_BASE_STRICT_P(X) REGNO_OK_FOR_BASE_P (REGNO (X)) #ifdef REG_OK_STRICT # define REG_OK_FOR_BASE_P(X) REG_OK_FOR_BASE_STRICT_P (X) #else # define REG_OK_FOR_BASE_P(X) REG_OK_FOR_BASE_NOSTRICT_P (X) #endif #define REG_OK_FOR_INDEX_P(X) 0 #define LEGITIMIZE_ADDRESS(X, OLDX, MODE, WIN) \ { \ (X) = legitimize_address (
in „ATtiny24 - ISR wird nie gerufen __vectors> fehlt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
myfirst.s
BIT30, 0x40000000 .equ BIT31, 0x80000000 .equ GPIOA_BASE , 0x40020000 .equ GPIOA_MODER , GPIOA_BASE + 0x00 .equ GPIOA_OTYPER , GPIOA_BASE + 0x04 .equ GPIOA_OSPEEDR , GPIOA_BASE + 0x08 .equ GPIOA_PUPDR , GPIOA_BASE + 0x0C .equ GPIOA_IDR , GPIOA_BASE + 0x10 .equ GPIOA_ODR , GPIOA_BASE + 0x14 .equ GPIOA_BSRR , GPIOA_BASE + 0x18 .equ GPIOA_LCKR , GPIOA_BASE + 0x1C .equ GPIOA_AFRL , GPIOA_BASE + 0x20 .equ GPIOA_AFRH , GPIOA_BASE + 0x24 .equ RCC_BASE , 0x40023800 .equ RCC_CR , RCC_BASE
in „mein erstes STM32F4 .asm/ .s Program stürzt ab im gdb“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uarttestc.c
RXRDY 0 #define TXRDY 1 #define TXEMPTY 9 // PIO #define P14_TXD0 14 #define P15_RXD0 15 #define P21_TXD1 21 #define P22_RXD1 22 void uart0Init(void) { // Define RXD and TXD as peripheral PIO_PDR |= (1<<P14_TXD0) | (1<<P15_RXD0); PIO_PER &= ~((1<<P14_TXD0) | (1<<P15_RXD0)); // First, enable the clock
in „Platinen mit GPS - Empfänger bei ebay“ · Mikrocontroller und Digitale Elektronik ·
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Datei
MCP23017.PAS
to GPIOB } Port[I2C_BASE + _GPIOB] := $AA; { show what we have got } For i:=0 To 21 Do DumpRegister(i); { flip input polarity if GPIOA } { R12: what was 00000000 will now be 11111111 } WriteLn('--- flipping bits in GPIOA (0x12
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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Datei
NanoEveryRegister.h
const uint8_t portCtrl = 0x0A; // Slewrate Bit }; constexpr Offset addrOffset; struct Address // base addresses of registers { uint16_t vport; uint16_t port; uint8_t pinCtrl; uint8_t mask; }; // The index is always the Arduino pin number. constexpr Address baseAddr[] { // | VPORT | PORT | PINn | BIT | // | Base | Base | CTRL | MASK | // BIT | PIN {0x0008, 0x0440, 0x15, 0x20}, // 5 | 0 {0x0008, 0x0440, 0x14, 0x10}, // 4 | 1 {0x0000, 0x0400, 0x10, 0x01}, // 0 | 2 {0x0014, 0x04A0, 0x15, 0x20}, // 5 | 3 {0x0008
in „Fehlerhafte Adressierung von lokalen Arrays bei tinyAVR(R) 0-series“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Firmware_issues.pdf
crashing and not responding anymore. 2. Apply test signal, do auto setup to trigger properly. Set time base to 4ns/DIV, change Acquisition mode from “Real Time” to “Equ Time”, hide menu by pushing F0, turn time base knob from 4ns/DIV to 2ns/DIV and DSO is crashing and not responding anymore. This bug seems
in „TEKWAY DST1xx2B Oszilloskop“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS_K4B8G1646Q-MY_Rev10.pdf
13,14, f DQ high-impedance time from CK, CK tHZ(DQ) - 400 - 300 - 250 - 225 ps 13,14, f 1.35V tDS(base) AC160 90 - 40 - - - - - ps d,17,33 tDS(base) 140 - 90 - 45 - 25 - ps Data setup time to DQS, DQS referenced to AC135 V IHC)V (IL) levels 1.5V tDS(base) 75 - 25 - - - - - ps AC175 d,17,33 tDS(base)
in „Orange Pi - 15$ Quadcore SBC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
K4B4G1646Q-Samsung.pdf
13,14, f DQ high-impedance time from CK, CK tHZ(DQ) - 400 - 300 - 250 - 225 ps 13,14, f 1.35V tDS(base) AC160 90 - 40 - - - - - ps d, 17 tDS(base) 140 - 90 - 45 - 25 - ps Data setup time to DQS, DQS referenced to AC135 V IHAC)V ILC) levels 1.5V tDS(base) 75 - 25 - - - - - ps d, 17 AC175 tDS(base) 125
in „Orange Pi - 15$ Quadcore SBC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
qsc_gx5_sh_ts_sch.pdf
MMST3906 3 13.85v 60v D10 C74 1/8W 3 D29 2 F4 100 10 P50V 10M P1 13.2v 3 2 1 PCNT C10 1 PCNT 2 1 Q11 BAS21 F3 22UF 1 Q40 BAS21 1/8W R20 1/8W 5.3v 2 MMST3906 15.6v 2 R132 20 PCNT 2 MMST3906 2 SP-B 32V 2N5064 C75 0.1UF 2.00K -14V R72 R106 25V 2 R145 R166 15A 5 PCNT 1 PCNT -14v WHEN A-LIM 1 2 1 SP-A 69.8K
in „QSC GX5 negative Spannung am Ausgang“ · Mikrocontroller und Digitale Elektronik ·
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PDF
qsc_gx5_sh_ts_sch.pdf
MMST3906 3 13.85v 60v D10 C74 1/8W 3 D29 2 F4 100 10 P50V 10M P1 13.2v 3 2 1 PCNT C10 1 PCNT 2 1 Q11 BAS21 F3 22UF 1 Q40 BAS21 1/8W R20 1/8W 5.3v 2 MMST3906 15.6v 2 R132 20 PCNT 2 MMST3906 2 SP-B 32V 2N5064 C75 0.1UF 2.00K -14V R72 R106 25V 2 R145 R166 15A 5 PCNT 1 PCNT -14v WHEN A-LIM 1 2 1 SP-A 69.8K
in „QSC GX5 negative Spannung am Ausgang“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCM9574.pdf
...........20 2.14 ATX power control connector (CN2, J4)...........................................21 2.14.1 ATX feature connector (CN2) and power button (J4)..............21 2.15 ATX power on function select (J11)...................................................22 2.16 IR connector (CN8)..........
in „16 Pin Postenstecker auf 15pol-Sub-D (Advantech PCM 9574)“ · PC Hard- und Software ·
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Datei
ulltoa_base10.h
for small inputs. Either version writes at most 21 characters to buf[] including the terminating '\0'. Returns the address of the '\0' termination for easy concatenation of other strings. */ extern char* ulltoa_base10 (uint64_t value, char *buf); extern
in „ItoA mit Uint64_t“ · Mikrocontroller und Digitale Elektronik ·
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Datei
t6963c.h
LCD internal memory ------ */ #define glcd_FONT_WIDTH 6 // pixel width #define glcd_BYTES_PER_ROW 21 // 40 chars per row #define glcd_G_BASE 0x0000 // base address of graphics memory #define glcd_T_BASE 0x0400 // base address of text memory #define glcd_wr_high() glcd_wr_PORT |= _BV(glcd_wr_PIN); #define
in „T6963C an Mega16 - Einige Pixel verirren sich ^^“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AT91SAM7.h
) // (WDTC) Base Address #define AT91C_BASE_VREG ((AT91PS_VREG) 0xFFFFFD60) // (VREG) Base Address #define AT91C_BASE_MC ((AT91PS_MC) 0xFFFFFF00) // (MC) Base Address #define AT91C_BASE_PDC_SPI ((AT91PS_PDC) 0xFFFE0100
in „arm-elf-ld problem, undefined reference to `__gccmain'“ · µC & Digital Electronics ·
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Datei
AT91SAM7S64.h
) // (WDTC) Base Address #define AT91C_BASE_VREG ((AT91PS_VREG) 0xFFFFFD60) // (VREG) Base Address #define AT91C_BASE_MC ((AT91PS_MC) 0xFFFFFF00) // (MC) Base Address #define AT91C_BASE_PDC_SPI ((AT91PS_PDC) 0xFFFE0100
in „arm-elf-ld problem, undefined reference to `__gccmain'“ · µC & Digital Electronics ·
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PDF
AN1543-D.PDF
CIRCUIT Figure 20. Turning Off the Converter by Sinking Figure 21. Fault Memorization the Base Current to Ground Q1 C Lp p Q2 TUBE +V CC R1 D1 Q3 R3 R2 C1 DIAGNOSTIC CIRCUIT Figure 22. Using the Emitter Switch Off Technique to Stop the Converter Power Factor Correction
in „Reparatur EVG für T5 Röhre“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
t6963c_main_v3.asm
unterdrücken .INCLUDE <m88def.inc> ; Controllertyp .equ F_CPU = 7372800 ; Systemtakt in Hz .equ TXT_BASE = 0x0000 .equ GFX_BASE = 0x0300 .equ FONT_SIZE = 6 ; änderbar über FS-Pin am Display .equ LCDMode = 0b10000000 .equ SPALTEN = 128/FONT_SIZE .equ GFX_ZEILEN = 64 .equ TXT_ZEILEN = 64/8 ;=============
in „Optimierung ASM-Code für GLCD“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sht4x.pdf
Ordering Information Material Description Material Number Details Quantity (pcs) SHT40-AD1B-R2 3.000.465 base RH&T acc., 0x44 I2C addr. 2’500 SHT40-AD1B-R3 3.000.353 base RH&T acc., 0x44 I2C addr. 10’000 base RH&T acc., 0x44 I2C addr., including SHT40-AD1F-R2 3.000.820 patented PTFE membrane 2’500 base RH&T
in „Trockenschrank für Elektronik wie funktioniert es?“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
sht4x.pdf
Ordering Information Material Description Material Number Details Quantity (pcs) SHT40-AD1B-R2 3.000.465 base RH&T acc., 0x44 I2C addr. 2’500 SHT40-AD1B-R3 3.000.353 base RH&T acc., 0x44 I2C addr. 10’000 base RH&T acc., 0x44 I2C addr., including SHT40-AD1F-R2 3.000.820 patented PTFE membrane 2’500 base RH&T
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PDF
tsw-965282.pdf
Max. 50g - cm Max 300g 1,000K cycles 1,000K cycles Part Number Description Tray Box TSWA-3N-C LFS Base switch with jog and select, no decoration 80 160 TSWA-3N-CB11 LFS Base switch with jog and select, white central button, white dial 65 130 TSWA-3N-CD23 LFS Base switch with jog and select, black central
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Datei
mci.c
AT91F_MCI_CfgPIO(); AT91F_MCI_CfgPMC(); // Peripheral Clock Enable AT91F_PMC_EnablePeriphClock(AT91C_BASE_PMC, AT91C_ID_MCI); // Reset MCI AT91F_MCI_SW_Reset(AT91C_BASE_MCI); // Disable MCI AT91F_MCI_Disable(AT91C_BASE_MCI); // Alle Interrupt deaktivieren AT91C_BASE_MCI->MCI_IDR = 0xFFFFFFFF; // MCI konfigurieren
in „MMC/SD Karte geben kein Antwort von sich (ARM)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
UMW-SMBJ.pdf
2.13) of 260 °C • AEC-Q101 qualified available 0.060(1.52) 0.030(0.76) - Automotive ordering code: base P/NHE3 or P/NHM3 0.008(0.2) 0(0) 0.220(5.59) 0.205(5.21) MECHANICAL DATA Case: SMB (DO-214AA) Dimensions in inches and (millimeters) Molding compound meets UL 94 V-0 flammability rating Base P/N-E3 - RoHS-compliant, commercial grade Base P/N-M3 - halogen-free, RoHS-compliant, commercial grade Base P/NHE3 - RoHS-compliant and AEC-Q101 qualified Base P/NHM3 - halogen-free, RoHS-compliant, and PRIMARY CHARACTERISTICS AEC-Q101 qualified
in „TVS Diode gefälscht?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Infineon-BFQ790-DS-v02_00-EN.pdf
Noteor TestCondition Min. Max. Collector emitter voltage VCE – 6.1 V TA=25°C – 5.1 T =40°C A Collector base voltage VCB – 18 V – Instantaneous total base emitter VBE -2.0 – V DC +RFswing reverse voltage Instantaneous total collectorcurrentCi – 600 mA DC+ RFswing DC collector current IC – 300 mA – DC base
in „HF-Ausgangsleistung - Verständnisfrage“ · HF, Funk und Felder ·
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PDF
APPCHP7.pdf
thyristor, 492 fluorescent lamp, 579 triac, 494, 523, 529 switchstart, 579 Compact fluorescent lamp, 585 Base drive, 136 Continuous mode base inductor, 147 see Switched Mode Power Supplies base inductor, diode assisted, 148 Continuous operation, 557 base resistor, 146 Converter (dc-dc) drive transformer, 145
in „2N3055 , was sind aktuelle Alternativen ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
APPCHP7.pdf
thyristor, 492 fluorescent lamp, 579 triac, 494, 523, 529 switchstart, 579 Compact fluorescent lamp, 585 Base drive, 136 Continuous mode base inductor, 147 see Switched Mode Power Supplies base inductor, diode assisted, 148 Continuous operation, 557 base resistor, 146 Converter (dc-dc) drive transformer, 145
in „Lineares Netzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
S32K-RM.pdf
process by an external debug agent. See bit field descriptions for the reset values. Address: 0h base + FD0h offset + (4d × i), where i=0d to 7d Bit 31 30 29 28 27 26 25 24 23 22 21 20 19 18 17 16 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 0 R PERIPHID W Reset x* x* x* x* x* x* x* x* x* x* x* x* x* x* x* x
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PDF
2Gb_1_35V_DDR3L.pdf
68 mA IDD2P0(Slow) All 12 12 12 12 mA DD2P1(Fast) All 14 14 14 14 mA DD2Q All 20 20 20 20 mA I All 21 21 21 21 mA DD2N IDD2NT x4, x8 26 29 31 33 mA x16 30 33 34 36 mA DD3P All 21 21 21 21 mA I x4,x8 28 30 32 34 mA DD3N x16 30 33 34 36 mA DD4R x4 64 78 90 100 mA x8 68 82 94 104 mA x16 88 108 128 148 mA
in „DDR3 Datenblatt richtig lesen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
vivazpro.txt
von Vivaz_pro\SYSTEM 14.08.2012 08:33 <DIR> . 14.08.2012 08:33 <DIR> .. 17.04.2010 19:08 1.211.348 BASE.RKW 10.07.2008 09:52 45.940 DvEnc.bfw 20.05.2008 21:20 16.212 jpg.bfw 20.09.2008 11:48 11.570 jpgenc.bfw 26.05.2008 12:41 266.876 REALOBJ.BIN 22.07.2008 15:15 0 REGISTER.DAT 02.06.2008 16:47 69.756
in „Handydummy (Attrappe)mit richtigem Display - Sony Ericsson Vivaz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bas33_1_.pdf
Ammopack (52 mm tape), 50 k/box Parts Table Part Type differentiation Ordering code Type Marking Remarks BAS33 VRRM = 40 V BAS33-TAP or BAS33-TR BAS33 Ammopack/Tape and Reel V = 70 V BAS34 RRM BAS34-TAP or BAS34-TR BAS34 Ammopack/Tape and Reel Absolute Maximum Ratings Tamb = 25 °C, unless otherwise specified
in „Frage zu ELV Netzteil“ · Analoge Elektronik und Schaltungstechnik ·