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Datei
lpc111x.h
_32(TMR16B0_BASE + 0x00c) #define TMR16B0PC REGISTER_32(TMR16B0_BASE + 0x010) #define TMR16B0MCR REGISTER_32(TMR16B0_BASE + 0x014) #define TMR16B0MR0 REGISTER_32(TMR16B0_BASE + 0x018) #define TMR16B0MR1 REGISTER
in „LPC1114FN28 und GPIO“ · Mikrocontroller und Digitale Elektronik ·
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Datei
71x_map.h
--*/ typedef struct { vu16 CRR; u16 EMPTY1; vu16 CMR; u16 EMPTY2; vu16 M1R; u16 EMPTY3; vu16 M2R; u16 EMPTY4; vu16 A1R; u16 EMPTY5; vu16 A2R; u16 EMPTY6; vu16 MCR; u16 EMPTY7; vu16 DA1R; u16 EMPTY8; vu16 DA2R; u16 EMPTY9; vu16 DB1R; u16 EMPTY10; vu16 DB2R; u16 EMPTY11[27]; } CAN_MsgObj_TypeDef; typedef struct { vu16 CR; u16 EMPTY1; vu16 SR; u16 EMPTY2; vu16 ERR; u16 EMPTY3; vu16 BTR; u16 EMPTY4; vu16 IDR; u16 EMPTY5; vu16 TESTR; u16
in „enc28j60 LanController initialisieren auf ARM7“ · Mikrocontroller und Digitale Elektronik ·
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Datei
HelloWorldv101.c
uint16_t ReadI2CRegister(uint8_t i2cAdress, uint8_t registerName) { uint8_t read[2]; // read content (2x8 bit) of selected register I2CMasterSlaveAddrSet(I2C0_BASE, 0x44, true); // receive the data back (first
in „Lux Werte per OPT3001 auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
rej09b0001_r8csm.pdf
,An bit,A1 0 1 0 1 base:16[An] base:16[A1] 1 1 0 1 [An] [A0] 0 1 1 0 bit,base:16[SB] bit,base:16[SB] 1 1 1 0 [A1] 0 1 1 1 bit,base:16 bit,base:16 1 1 1 1 [ Number of Bytes/Number of Cycles ] base:8 bit,base:8 base:16 bit,base
in „Assembler durchschnitts berechnung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
eeprom.h
ADDR_FLASH_PAGE_14 ((uint32_t)0x08007000) /* Base @ of Page 14, 2 Kbytes */ #define ADDR_FLASH_PAGE_15 ((uint32_t)0x08007800) /* Base @ of Page 15, 2 Kbytes */ #define ADDR_FLASH_PAGE_16 ((uint32_t)0x08008000) /* Base @ of Page 16, 2 Kbytes */ #define
in „STM32F3 Virtual EEPROM für große Look Up“ · Mikrocontroller und Digitale Elektronik ·
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Datei
eeprom.h
ADDR_FLASH_PAGE_14 ((uint32_t)0x08007000) /* Base @ of Page 14, 2 Kbytes */ #define ADDR_FLASH_PAGE_15 ((uint32_t)0x08007800) /* Base @ of Page 15, 2 Kbytes */ #define ADDR_FLASH_PAGE_16 ((uint32_t)0x08008000) /* Base @ of Page 16, 2 Kbytes */ #define
in „STM32F3 Virtual EEPROM für große Look Up“ · Mikrocontroller und Digitale Elektronik ·
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Datei
eeprom.h
ADDR_FLASH_PAGE_14 ((uint32_t)0x08007000) /* Base @ of Page 14, 2 Kbytes */ #define ADDR_FLASH_PAGE_15 ((uint32_t)0x08007800) /* Base @ of Page 15, 2 Kbytes */ #define ADDR_FLASH_PAGE_16 ((uint32_t)0x08008000) /* Base @ of Page 16, 2 Kbytes */ #define
in „STM32 Virtueller EEPROM in Flash“ · Mikrocontroller und Digitale Elektronik ·
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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
in „constexpr Mikrokontroller Pointer Hartwarezugriff“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Siemens_CrossRef_1998.pdf
SOD-123 SOD-323 SCD-80 SOT-23 SOT143 SOT-323 SOT-343 SOT-363 SCT-595 SOT-89 SOT-223 1N4001 BAW78A BAS78A 1N4002 BAW78B BAS78B 1N4003 BAW78C BAS78C 1N4004 BAW 78 M BAW78D BAS78D 1N4001 (2x) BAW79A BAS79A 1N4002 (2x) BAW79B BAS79B 1N4003 (2x) BAW79C BAS79C 1N4004 (2x) BAW79D BAS79D 1N4148 BAS 16-02W BAS 16-03W BAS16 BAS16W BAS16S BAL/BAR74 BAL/BAR99 1N4148 (2x) BAV70 BAS28 BAV70W BAS28W BAV70S BAV74 BAW100 BAV74W BAV99 BAV99W BAV99S BAW56 BAW56W BAW56S 1N4148 (4x) BGX50A (Bridge) 1N914 SMBD914 2N2222 SMBT2222
in „1N4001und BC574C ==> SMD?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Siemens_CrossRef_1998.pdf
SOD-123 SOD-323 SCD-80 SOT-23 SOT143 SOT-323 SOT-343 SOT-363 SCT-595 SOT-89 SOT-223 1N4001 BAW78A BAS78A 1N4002 BAW78B BAS78B 1N4003 BAW78C BAS78C 1N4004 BAW 78 M BAW78D BAS78D 1N4001 (2x) BAW79A BAS79A 1N4002 (2x) BAW79B BAS79B 1N4003 (2x) BAW79C BAS79C 1N4004 (2x) BAW79D BAS79D 1N4148 BAS 16-02W BAS 16-03W BAS16 BAS16W BAS16S BAL/BAR74 BAL/BAR99 1N4148 (2x) BAV70 BAS28 BAV70W BAS28W BAV70S BAV74 BAW100 BAV74W BAV99 BAV99W BAV99S BAW56 BAW56W BAW56S 1N4148 (4x) BGX50A (Bridge) 1N914 SMBD914 2N2222 SMBT2222
in „Suche NPN Transistor Low Noise SMD“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Siemens_CrossRef_1998.pdf
SOD-123 SOD-323 SCD-80 SOT-23 SOT143 SOT-323 SOT-343 SOT-363 SCT-595 SOT-89 SOT-223 1N4001 BAW78A BAS78A 1N4002 BAW78B BAS78B 1N4003 BAW78C BAS78C 1N4004 BAW 78 M BAW78D BAS78D 1N4001 (2x) BAW79A BAS79A 1N4002 (2x) BAW79B BAS79B 1N4003 (2x) BAW79C BAS79C 1N4004 (2x) BAW79D BAS79D 1N4148 BAS 16-02W BAS 16-03W BAS16 BAS16W BAS16S BAL/BAR74 BAL/BAR99 1N4148 (2x) BAV70 BAS28 BAV70W BAS28W BAV70S BAV74 BAW100 BAV74W BAV99 BAV99W BAV99S BAW56 BAW56W BAW56S 1N4148 (4x) BGX50A (Bridge) 1N914 SMBD914 2N2222 SMBT2222
in „SMD - Transistoren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Siemens_CrossRef_1998.pdf
SOD-123 SOD-323 SCD-80 SOT-23 SOT143 SOT-323 SOT-343 SOT-363 SCT-595 SOT-89 SOT-223 1N4001 BAW78A BAS78A 1N4002 BAW78B BAS78B 1N4003 BAW78C BAS78C 1N4004 BAW 78 M BAW78D BAS78D 1N4001 (2x) BAW79A BAS79A 1N4002 (2x) BAW79B BAS79B 1N4003 (2x) BAW79C BAS79C 1N4004 (2x) BAW79D BAS79D 1N4148 BAS 16-02W BAS 16-03W BAS16 BAS16W BAS16S BAL/BAR74 BAL/BAR99 1N4148 (2x) BAV70 BAS28 BAV70W BAS28W BAV70S BAV74 BAW100 BAV74W BAV99 BAV99W BAV99S BAW56 BAW56W BAW56S 1N4148 (4x) BGX50A (Bridge) 1N914 SMBD914 2N2222 SMBT2222
in „BC337-40 in Pspice“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Siemens_CrossRef_1998.pdf
SOD-123 SOD-323 SCD-80 SOT-23 SOT143 SOT-323 SOT-343 SOT-363 SCT-595 SOT-89 SOT-223 1N4001 BAW78A BAS78A 1N4002 BAW78B BAS78B 1N4003 BAW78C BAS78C 1N4004 BAW 78 M BAW78D BAS78D 1N4001 (2x) BAW79A BAS79A 1N4002 (2x) BAW79B BAS79B 1N4003 (2x) BAW79C BAS79C 1N4004 (2x) BAW79D BAS79D 1N4148 BAS 16-02W BAS 16-03W BAS16 BAS16W BAS16S BAL/BAR74 BAL/BAR99 1N4148 (2x) BAV70 BAS28 BAV70W BAS28W BAV70S BAV74 BAW100 BAV74W BAV99 BAV99W BAV99S BAW56 BAW56W BAW56S 1N4148 (4x) BGX50A (Bridge) 1N914 SMBD914 2N2222 SMBT2222
in „SMD-Vergleichstypen von Transistoren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
FlashPrg.c
Flash Memory * Return Value: 0 - OK, 1 - Failed */ int EraseChip (void) { // Start Chip Erase Command M16(base_adr + 0xAAA) = 0xAA; M16(base_adr + 0x554) = 0x55; M16(base_adr + 0xAAA) = 0x80; M16(base_adr + 0xAAA) = 0xAA; M16(base_adr + 0x554) = 0x55; M16(base_adr + 0xAAA) = 0x10; return (Polling(base_adr
in „Flash beschreiben minimodul 167“ · Mikrocontroller und Digitale Elektronik ·
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Datei
eeprom.c
s_eraseinit; /* Get Page0 status */ pagestatus0 = (*(__IO uint16_t*)PAGE0_BASE_ADDRESS); /* Get Page1 status */ pagestatus1 = (*(__IO uint16_t*)PAGE1_BASE_ADDRESS); /* Fill EraseInit structure*/ s_eraseinit.TypeErase = FLASH_TYPEERASE_PAGES; s_eraseinit.PageAddress
in „STM32 Virtueller EEPROM in Flash“ · Mikrocontroller und Digitale Elektronik ·
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Datei
eeprom.c
s_eraseinit; /* Get Page0 status */ pagestatus0 = (*(__IO uint16_t*)PAGE0_BASE_ADDRESS); /* Get Page1 status */ pagestatus1 = (*(__IO uint16_t*)PAGE1_BASE_ADDRESS); /* Fill EraseInit structure*/ s_eraseinit.TypeErase = FLASH_TYPEERASE_PAGES; s_eraseinit.PageAddress
in „STM32F3 Virtual EEPROM für große Look Up“ · Mikrocontroller und Digitale Elektronik ·
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Datei
eeprom.c
s_eraseinit; /* Get Page0 status */ pagestatus0 = (*(__IO uint16_t*)PAGE0_BASE_ADDRESS); /* Get Page1 status */ pagestatus1 = (*(__IO uint16_t*)PAGE1_BASE_ADDRESS); /* Fill EraseInit structure*/ s_eraseinit.TypeErase = FLASH_TYPEERASE_PAGES; s_eraseinit.PageAddress
in „STM32F3 Virtual EEPROM für große Look Up“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AU85CAM.ASM
) sts WRITE_PTR+1,r16 ;rx_cont: pop YH pop YL pop r16 out SREG,r16 pop r16 reti .include "base.inc" .include "utils.inc" .include "icalcr.inc" .include "atcmd.inc" .include "twimstr.inc" .include "bi8921.inc" reset: ldi r24
in „pollin kamera au-85“ · Mikrocontroller und Digitale Elektronik ·
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Datei
sketch_dec23a.ino
uint32_t *pinCntrlReg = &GPIOA_BASE->CRH, uint16_t portPin = 0, volatile uint32_t *compareReg = &TIMER3_BASE->CCR1) { uint16_t tmp; myMode = mode; myPinCntrlReg = pinCntrlReg; myCompareReg = compareReg; if(portPin > 7) { alternateFnctMask
in „Blue Pill unter Arduino und RC-Model Servo-Signale“ · Mikrocontroller und Digitale Elektronik ·
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PDF
User_guide_-_Driver.pdf
EPI_ADDR_PER_SIZE_16MB, or EPI_ADDR_PER_SIZE_512MB to choose a pe- ripheral address space of 256 bytes, 64 Kbytes, 16 Mbytes or 512 Mbytes EPI_ADDR_PER_BASE_NONE, EPI_ADDR_PER_BASE_A, or EPI_ADDR_PER_BASE_C to choose the
in „PCF8574 mit LM3S8938 per I2C auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Uponor_IM_Smatrix_Base_PRO_MODBUS-RTU_EN_1090255_032018.pdf
channel 11 30024 0x04 Read Analogue Unsigned 16 bit integer. 0-100 % relative humidity Unsigned 16 bit integer. Humidity data channel 12 30025 0x04 Read Analogue 0-100 % relative humidity 22 l Uponor Smatrix Base PRO Controller X-147 Modbus RTU interface
in „Modbus Sniffer mit Linux“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
******************** void P_LCD1289_Delay(volatile uint32_t nCount); void UB_Graphic_DrawPixel (int16_t xpos, int16_t ypos, uint16_t color); void UB_Graphic_DrawLine(int16_t x1, int16_t y1, int16_t x2, int16_t y2, uint16_t color); void NVIC_INIT_EXAMPLE(uint16_t IRQ); void tohex4(unsigned long h1); void
in „STM32F4 DISCOVERY und SainSmart 3.2″ Display“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
need_rc2mhz = true; } #endif if (!need_rc2mhz) { osc_disable(OSC_ID_RC2MHZ); } } static void WriteSet(uint16_t x, uint16_t y , uint16_t z){ uint32_t time = ((days * 16777216) + (hours * 65536) + (minutes * 256) + seconds); if (writeptr > (BOARD_EBI_SDRAM_SIZE + BOARD_EBI_SDRAM_BASE)) writeptr = BOARD_EBI_SDRAM_BASE; hugemem_write32(writeptr ,time); writeptr +=4; hugemem_write16(writeptr ,x); writeptr +=2; hugemem_write16(writeptr ,y); writeptr +=2; hugemem_write16(writeptr ,z); writeptr +=2; } static void ClearSDRAM(void) { hugemem_ptr_t n; for (n = BOARD_EBI_SDRAM_BASE; n
in „Xmega128-a1-explained und ASF“ · Mikrocontroller und Digitale Elektronik ·
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Datei
brs501_Release_20.01.2016.c
); flag_low_frequenz=TRUE; time_basic_frequence=6; // delay_ms(166); break; case 4: base_impuls(0); // delay_ms(166); flag_low_frequenz=TRUE; time_basic_frequence=6; wait_time(2); break; case 5: stop_program_after_time(); break; default: break; } } void program_16(void) { data_led_display
in „HEX-Datei erstellen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LAN9354_Pass_Report_2022-03-17_16-16-09.pdf
Voltage 0.000 V #Avgs 128 Trial 1 file:///D:/NRX%20NXPBWEKabelverdrkurzNXMB3%20Report%202022-03-17_16-... 21.03.2022 Page 3 of 11 Trial 1: +Vout 100 Base-TX, UTP -Vout Differential Output Voltage Reference: IEEE Std. 802.3ae (ANSI X3.263-1995, Section 9.1.2.2) Test Summary: Pass Test DescriptionVout
in „Ethernet Compliance Test failLAN9354“ · Mikrocontroller und Digitale Elektronik ·
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PDF
dm9161-ds-f05_091008.pdf
Repeater/Node pin (38) is latched into this bit at power-up/reset 1 = Repeater mode 0 = Node mode 16.10 TX 1, RW 100BASE-TX Mode Control 1 = 100BASE-TX operation 0=100BASE-FX operation 16.9 FEF 0, Rw Far End Fault Enable: Control the Far End Fault mechanism Associated with 100BASE-FX operation 28 Final
in „Beschaltung VICOM DM9161CEP“ · Mikrocontroller und Digitale Elektronik ·
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Datei
dumpDBGMCU.c
0x08)) #define DBGMCU_APB_FZ2 (*(volatile uint32_t*)(DBGMCU_BASE + 0x0C)) // Flash Size Register #define FLASHSIZE_BASE 0x1FFF0FFC #define FLASH_SIZE (*(volatile uint16_t*)FLASHSIZE_BASE) // Unique ID (96-bit) #define UID_BASE 0x1FFF0E00 #define UID0 (*(volatile uint32_t*)(UID_BASE + 0x00)) #define UID1 (*(volatile uint32_t*)(UID_BASE + 0x04)) #define UID2 (*(volatile uint32_t*)(UID_BASE + 0x08)) // RCC Register (NUR EINMAL definiert!) ✅ #define RCC_BASE 0x40021000 #define RCC_CR
in „Programmieren mit KI“ · Offtopic ·
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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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Datei
CH32V003_reg1.asm
SRAM_start = 0x20000000 SRAM_end = 0x20000800 STACK = 0x20000800 TIM2_BASE = 0x40000000 W_WDG_BASE = 0x40002C00 I_WDG_BASE = 0x40003000 I2C_BASE = 0x40005400 PWR_BASE = 0x40007000 AFIO_BASE = 0x40010000 EXTI_BASE = 0x40010400 PORTA_BASE = 0x40010800 PORTC_BASE = 0x40011000
in „RISCV (CH32V003): GNU Assembler übersetzt "CALL" nicht korrekt (oder bin ich nur zu doof?)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
eeprom.c
pEraseInit; /* Get Page0 status */ PageStatus0 = (*(__IO uint16_t*)PAGE0_BASE_ADDRESS); /* Get Page1 status */ PageStatus1 = (*(__IO uint16_t*)PAGE1_BASE_ADDRESS); pEraseInit.TypeErase = TYPEERASE_SECTORS; pEraseInit.Sector = PAGE0_ID; pEraseInit.NbSectors = 1; pEraseInit.VoltageRange
in „FLASH speicher Lebensdauer Beeinflussung?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
plaques-vitro.pdf
464338, D 28 cm., D base 23,5 cm. The available accessory is: 464339, D 30 cm., D base 25,5 cm. 464340, D 32 cm., D base 28 cm. HEZ390010 HZ390010 464341, D 34 cm., D base 29 cm. 206_58300000133846_ara_en_a – 16.10.a Page 100
in „induktionsofen Kurzschluss da Sicherungen fliegen“ · Haus & Smart Home ·
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PDF
Induktionsherde_Serviceanleitung.pdf
464338, D 28 cm., D base 23,5 cm. The available accessory is: 464339, D 30 cm., D base 25,5 cm. 464340, D 32 cm., D base 28 cm. HEZ390010 HZ390010 464341, D 34 cm., D base 29 cm. 206_58300000133846_ara_en_a – 16.10.a Page 100
in „Induktionskochfeld Bauknecht defekt?“ · Haus & Smart Home ·
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PDF
Induktionsherde_Serviceanleitung.pdf
464338, D 28 cm., D base 23,5 cm. The available accessory is: 464339, D 30 cm., D base 25,5 cm. 464340, D 32 cm., D base 28 cm. HEZ390010 HZ390010 464341, D 34 cm., D base 29 cm. 206_58300000133846_ara_en_a – 16.10.a Page 100
in „Bosch Induktionsherd geht nicht mehr“ · Haus & Smart Home ·
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PDF
Induktionsherde_Serviceanleitung.pdf
464338, D 28 cm., D base 23,5 cm. The available accessory is: 464339, D 30 cm., D base 25,5 cm. 464340, D 32 cm., D base 28 cm. HEZ390010 HZ390010 464341, D 34 cm., D base 29 cm. 206_58300000133846_ara_en_a – 16.10.a Page 100
in „Serviceanleitung Induktionsherde Bosch, Siemens, Neff u.a“ · Haus & Smart Home ·
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Datei
same70j21.h
GPBR (0x400E1890) /**< \brief (GPBR ) Base Address */ #define ICM (0x40048000) /**< \brief (ICM ) Base Address */ #define ISI (0x4004C000) /**< \brief (ISI ) Base Address */ #define MATRIX (0x40088000) /**< \brief (MATRIX ) Base Address */ #
in „SAM Atmelstudio7 Interupts ohne ASF“ · Mikrocontroller und Digitale Elektronik ·
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Datei
header.h
() (ML4426_BASE_BRAKE_PORT |= (1<<ML4426_BASE_BRAKE_PIN)) #define ML4426_BASE_BRAKE() (ML4426_BASE_BRAKE_PORT &= ~(1<<ML4426_BASE_BRAKE_PIN)) #define ML4426_BASE_DIRECTION_PIN PC4 #define ML4426_BASE_DIRECTION_PORT PORTC #define ML4426_BASE_DIRECTION_DDR DDRC #define ML4426_BASE_DIRECTION_OUTPUT_MODE() (ML4426_BASE_DIRECTION_DDR |= (1<<ML4426_BASE_DIRECTION_PIN)) #define ML4426_BASE_DIRECTION_FORWARD() (ML4426_BASE_DIRECTION_PORT |= (1
in „Falscher RETURN-Wert (Atmega128)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
OneWire.h
digitalPinToPort(pin)->PIO_PER)) //#define PIN_TO_BITMASK(pin) (digitalPinToBitMask(pin)) //#define DIRECT_READ(base, mask) (((*((base)+15)) & (mask)) ? 1 : 0) //#define DIRECT_MODE_INPUT(base, mask) ((*((base)+5)) = (mask)) //#define DIRECT_MODE_OUTPUT(base, mask) ((*((base)+4)) = (mask)) //#define DIRECT_WRITE_LOW(base, mask) ((*((base)+13)) = (mask)) //#define DIRECT_WRITE_HIGH(base, mask) ((*((base)+12)) = (mask)) #define reg #define base #define mask #define DIRECT_READ(base, mask) (pio_get(ONE_WIRE_LINE_PIO,ONE_WIRE_LINE_TYPE
in „Böses One-Wire device“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stm32f4xx.h
region */ #define SRAM1_BASE ((uint32_t)0x20000000) /*!< SRAM1(112 KB) base address in the alias region */ #define SRAM2_BASE ((uint32_t)0x2001C000) /*!< SRAM2(16 KB) base address in the alias region */ #define PERIPH_BASE ((uint32
in „STM32F0 Discovery und UART1“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stm32f4xx.h
region */ #define SRAM1_BASE ((uint32_t)0x20000000) /*!< SRAM1(112 KB) base address in the alias region */ #define SRAM2_BASE ((uint32_t)0x2001C000) /*!< SRAM2(16 KB) base address in the alias region */ #define PERIPH_BASE ((uint32
in „STM32F4 SPI Problem“ · Mikrocontroller und Digitale Elektronik ·
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Datei
freq.c
Pin 2 an Port B für CCP3 konfigurieren GPIOPinConfigure(GPIO_PB2_CCP3); GPIOPinTypeTimer(GPIO_PORTB_BASE, GPIO_PIN_2); // Timer0 aktivieren ROM_SysCtlPeripheralEnable(SYSCTL_PERIPH_TIMER1); for(i = 0; i<250;i++) { } /** * Timer0 kofigurieren * -> 2 x Half-width (16 Bit) * -> Timer0A als Timer für 1 ms,
in „[Cortex M3] Flankenzähler zählt keine Flanken“ · Mikrocontroller und Digitale Elektronik ·
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Datei
LPC407x_8x_177x_8x.h
_BASE + 0x18000) #define LPC_I2C0_BASE (LPC_APB0_BASE + 0x1C000) #define LPC_COMPARATOR_BASE (LPC_APB0_BASE + 0x20000) #define LPC_RTC_BASE (LPC_APB0_BASE + 0x24000) #define LPC_GPIOINT_BASE (LPC_APB0_BASE
in „Einstieg LPC4088 QuickStart Board“ · Mikrocontroller und Digitale Elektronik ·
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Datei
bm02a.cc
basic_ostream<terminalDevice>; namespace UtilN { namespace detail { template<uint8_t Digits = 2, uint8_t Base = 10> struct Convert { static_assert(Base <= 16, "wrong Base"); static_assert(Digits <= 4, "wrong Digits"); typedef uint16_t dimension_type; constexpr inline static dimension_type dimension = Base * Base; static constexpr char toChar(uint8_t d) { static_assert(Base <= 16, "wrong Base"); if constexpr(Base > 10) { if (d < 10) { return '0' + d; } else { return 'a' + d - 10; } } else { return '0' + d; }
in „ItoA mit Uint64_t“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DSO_SFR.h
DSO_SFR_BASE_ADDR+ 4*15) #define TRIGGERREADOFFSETADDR (DSO_SFR_BASE_ADDR+ 4*16) #define TRIGGERTYPEADDR (DSO_SFR_BASE_ADDR+ 4*17) #define TRIGGERLOWVALUEADDR (DSO_SFR_BASE_ADDR+ 4*18) #define TRIGGERLOWTIMEADDR
in „Wittig(welec) DSO W20xxA Open Source Firmware (Teil2)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stm32f10x_tim.h
((uint16_t)0x000E) #define TIM_DMABase_CCR3 ((uint16_t)0x000F) #define TIM_DMABase_CCR4 ((uint16_t)0x0010) #define TIM_DMABase_BDTR ((uint16_t)0x0011) #define TIM_DMABase_DCR ((uint16_t)0x0012) #define IS_TIM_DMA_BASE
in „STM32 - Eclipse, ARM GCC - Funktionsaufruf geht nicht :-(“ · Mikrocontroller und Digitale Elektronik ·
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PDF
VAR-DT6CUSTOMBOARD_SCH_V1_1_Doc_V1_2.pdf
_P 2 HEADER 2X1 B B HDMI BASE_PER_3V3 HDMI ESD HDMI Connector C103 U100 J1 100nF 24 16 HDMI_D2M 3 VCCA TMDS_CK+ 15 HDMI_CLKP 3 HDMI_D2P 1 DAT2- TMDS_CK- HDMI_CLKM 3 2 DAT2+ BASE_PER_3V3 18 DAT2_S TMDS_D0+ 17 HDMI_D0P 3 MTG1 TMDS_D0
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Datei
w5500.h
size using @ref Sn_RXBUF_SIZE. The total sum of @ref Sn_RXBUF_SIZE can not be exceed 16Kbytes. * When exceeded, the data reception error is occurred. */ #define Sn_RXBUF_SIZE(N) (_W5500_IO_BASE_ + (0x001E << 8) + (WIZCHIP_SREG_BLOCK(N) << 3)) /* @ingroup Socket_register_group * @brief Transmit
in „Wiznet W5500 Datenübertragung via Ethernet“ · Mikrocontroller und Digitale Elektronik ·
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Datei
myfirst.s
, GPIOA_BASE + 0x20 .equ GPIOA_AFRH , GPIOA_BASE + 0x24 .equ HSERDY , BIT17 .equ HSEON , BIT16 @ USART1 on STM32F4 chips: pp. 1018 in RM0090 (dm00031020-stm*.pdf) (RM0090) .equ USART1_BASE , 0x40011000 .equ USART1
in „STM32CubeIDE - kann man dem gdb server einen Schalter mitgeben?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
controller.h
(ERROR_INTERNAL_BASE + 707) #define RC_ERROR_LAMP_NOT_FOUND (ERROR_INTERNAL_BASE + 708) #define RC_ERROR_FAN_NOT_FOUND (ERROR_INTERNAL_BASE + 709) // I2C APPLICATION ERRORS #define RC_ERROR_INVALID_I2C_ADDRESS (ERROR_INTERNAL_BASE
in „Mega32: Program hängt.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS_Micrel_ETH-TRANSIVER_KSZ9031RNX.pdf
.....................................................................15 Functional Description: 10Base-T/100Base-TX Transceiver................................................................................................16 100Base-TX Transmit........................................................
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252039.pdf
registers 01FF0000 (DrawBase) 32 KB Geometry engine registers 01FF8000 (GeometryBase) 32 MB Graphics memory 02000000 Table 4-5 Address Space in V832, SPARClite Mode Size Resource Base address (Name) 16 MB to 256 KB Graphics memory
in „LCD Display / Controller eines Schweißgerätes prüfen“ · Mikrocontroller und Digitale Elektronik ·