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Datei
main.c
void ScreenSaver(uint8_t minutes); int main(void) { uint8_t i; /* uint8_t *m; // Fill RAM for(m=0x2000;m<=RAMEND;m++) *m=0x55;*/ // Power reduction: Stop unused peripherals PR.PRGEN = 0x18; // Stop: AES, EBI PR.PRPA = 0x04; // Stop: DAC PR.PRPB = 0x03; // Stop: ADC, AC PR.PRPC = 0x7C; // Stop: TWI,
in „ATXmega - Pin Eingang oder Ausgang“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LPC3130_31.pdf
SRAM bank 1 APB3 domain I2SRX_1 0x1600 0200 0x2002 0000 I2SRX_0 0x1600 0180 external SRAM bank 0 0x2000 0000 I2STX_1 0x1600 0100 reserved 0x1900 1000 I2STX_0 0x1600 0080 USB OTG 0x1900 0000 I2S system config 0x1600 0000 reserved reserved 0x1500 3000 0x1800 0900 MCI/SD/SDIO 0x1800 0000 SPI 0x1500 2000
in „LCD-Interface LPC3131“ · Mikrocontroller und Digitale Elektronik ·
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PDF
6300_RM-217_RM-222_schematics.pdf
purposes Version: 2.0 | 19.12.2006 | 6300 | Board version: 1ywa_32 | Frontpage | Page (11) Charger jack X2000 E2010 L2000 2.0A CHARGER J2010 1 TAHVO R2074 K J2000 2 V2000 220R/100MHz F2000 100R C2002 C2000 ESDA18-1F2 C2001 E2002 10n 27p A 470n C2080 10n GND GND N2030 R2044 R2045 TS5A6542_YZT 220R 2k2 J2006
in „Nokia 6300 Display“ · Mikrocontroller und Digitale Elektronik ·
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Datei
dmesg.txt
io 0xl000-0x0fff1 get_res_add_size a BAR 13: ass igned [ io 0x1000—0xlfff1 BAR 13: ass igned [ io 0x2000-0x2fff1 BAR 13: ass igned [ io 0x3000—0x3fff1 BAR 13: ass igned [ io 0x4000-0x4fff1 BAR 13: ass igned [ io 0x5000-0x5fff1 BAR 13: ass igned [ io 0x6000—0x6fff1 BAR 13: ass igned [ io 0x7000-0x7fff1
in „qemu/kvm: unter Mint 19 läuft die VM, unter Mint 21 nicht“ · PC Hard- und Software ·
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PDF
spraa85d_Programming_TMS320xx280xx_C_C__.pdf
this to 3F81FA EALLOW // a 16-bit read-modify-write 3F81FB MOVW DP,#0x0180 EALLOW; 3F81FD OR @20,#0x2000 ECanaRegs.CANMC.bit.SCB = 1; 3F81FF EDIS EDIS; To force 32-bit accesses, the bit-field definitions and read-modify-write operations must not be used. The register must be read and written using the
in „XC8 compiler - Register schreiben wie bei Atmel“ · Mikrocontroller und Digitale Elektronik ·
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Datei
enc28j60.h
ENC28J60 PHY PHCON2 Register Bit Definitions #define PHCON2_FRCLINK 0x4000 #define PHCON2_TXDIS 0x2000 #define PHCON2_JABBER 0x0400 #define PHCON2_HDLDIS 0x0100 // ENC28J60 ERXFCON Register Bit Definitions #define ERXFCON_UCEN 0x80 #define ERXFCON_ANDOR 0x40 #define ERXFCON_CRCEN 0x20 #define ERXFCON_PMEN
in „Probleme mit dem myEthernet.kein USART-Signal“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lpc11u3x.pdf
0000 APB peripherals 0x4000 0000 23 GPIO GROUP0 INT 1 GB 0x4005 C000 reserved 22 SSP1 0x4005 8000 0x2000 4800 20 - 21 reserved 0x4004 C000 2 kB USB RAM (LPC11U34/421 GPIO interrupts LPC11U35/401/501 19 0x4004 C000 system control LPC11U36/401/501 18 0x4004 8000 LPC11U37/401/501) 0x2000 4000 17 IOCON 0x4004 4000 reserved 16 SSP0 0x4004 0000 0x2000 0800 15 flash/EEPROM controller 2 kB SRAM1 (LPC11U35/501 0x4003 C000 LPC11U35/501 14 PMU 0x4003 8000 LPC11U37/501) 0.5 GB 0x2000 0000 reserved 10 - 13 reserved 0x1FFF 4000 16 kB boot ROM 0x4002 8000
in „LPC11U3 CRP zurücksetzen“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
fritzbox_7590_log.txt
0x84000000 0x1200000 0x800 [ 1.071377][ T1] 0x84000000 0x1200000 [ 1.075361][ T1] 0x85200000 0x800000 0x2000 [ 1.079876][ T1] 0x85200000 0x800000 [ 1.084096][ T1] [cbm] { init_fsqm_buf_std : 1173 }init fsqm std successfully [ 1.091359][ T1] [cbm] { init_fsqm_buf_jumbo : 1213 }init fsqm jbo successfully [
in „FritzBox 7590 Boot Loop“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN07NMEA183-010.pdf
Message bit GSV 0x0001 GSA 0x0002 ZDA 0x0004 PPS 0x0010 FOM 0x0020 Reserved* 0x0040 GLL 0x1000 GGA 0x2000 VTG 0x4000 RMC 0x8000 I.e. to allow GLL and RMC messages one would set mask as 0x1000 + 0x8000 = 0x9000. See examples below. Page6of 25 AN07NMEA183-010 Note that hexadecimal digits A, B, C, D, E and
in „DCF77 Auswertung (ein bisschen anders)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN07NMEA183-010.pdf
Message bit GSV 0x0001 GSA 0x0002 ZDA 0x0004 PPS 0x0010 FOM 0x0020 Reserved* 0x0040 GLL 0x1000 GGA 0x2000 VTG 0x4000 RMC 0x8000 I.e. to allow GLL and RMC messages one would set mask as 0x1000 + 0x8000 = 0x9000. See examples below. Page6of 25 AN07NMEA183-010 Note that hexadecimal digits A, B, C, D, E and
in „Daten von GPS-Modul über USB lesen;“ · PC Hard- und Software ·
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PDF
en.DM00091010.pdf
STM32F0x0 memory boundary addresses Device Boundary address Size Memory Area Register description 0x2000 1000 - 0x3FFF FFFF ~512 MB Reserved - 0x2000 0000 - 0x2000 0FFF 4 KB SRAM Section 2.3 on page 41 0x1FFF FC00 - 0x1FFF FFFF 1 KB Reserved - 0x1FFF F800 - 0x1FFF FBFF 1 KB Option bytes Section 4 on page
in „EFM32F030 und Standby“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LF2407_EZDSP_INC.pdf
mode disabled; 1=self test mode enabled */ ///// Setup the second A/D control register *ADCTRL2= 0x2000; /* group C pins */ /* bit 15 0: 0=do nothing; 1=seq started by event manager bit 14 0: 0 unless using calibration mode bit 13 1: start conv. trigger..see book bit 12 0: 0=sequencer idle; 1=conversion
in „TMS320LF2407 ???“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
Amadeus.pdf
multi-panel flashing. So it is faster when different parts of the SW start at org 0x0000 and org 0x2000 and for 32kBytes devices in addition org 0x4000 and org 0x6000 instead of one big program chunk. • PIC18F devices don't need to erase the complete chip, before they can reprogram the application software
in „USB-Programmer für eine Reihe von PICs und AVRs“ · Mikrocontroller und Digitale Elektronik ·
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Datei
disass-vle.pl
== 0x1800) && (($word2 & 0xF800) == 0x8800)) { &addcmd4("e_addi. "); } if((($word1 & 0xfc00) == 0x2000) && (($word1 & 0x0200) == 0x0000)) { &addcmd5("se_addi "); } if((($word1 & 0xfc00) == 0x1800) && (($word2 & 0xF800) == 0x9000)) { &addcmd4("e_addic "); } if((($word1 & 0xfc00) == 0x1800) && (($word2
in „Toolchain für PowerPC mit VLE“ · Mikrocontroller und Digitale Elektronik ·
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Datei
gdb_log.txt
(0000ms, 1780ms total) 02-00000000-00-00002732-004E: TBA7FC700 002:733 JLINK_ReadReg(R3) returns 0x2000BC94 (0000ms, 1780ms total) 02-00000000-00-00002732-004E: TBA7FC700 002:733 JLINK_ReadReg(R4) returns 0x00000000 (0000ms, 1780ms total) 02-00000000-00-00002732-004E: TBA7FC700 002:733 JLINK_ReadReg(
in „Problem mit Breakpoints (Eclipse + JLink)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GD32E230xx_Datasheet_Rev1.5.pdf
0800 - 0x4000 0FFF Reserved 0x4000 0400 - 0x4000 07FF TIMER2 0x4000 0000 - 0x4000 03FF Reserved 0x2000 2000 - 0x3FFF FFFF Reserved SRAM 0x2000 0000 - 0x2000 1FFF SRAM 0x1FFF F810 - 0x1FFF FFFF Reserved 0x1FFF F800 - 0x1FFF F80F Option bytes 0x1FFF EC00 - 0x1FFF F7FF System memory Code 0x0801 0000 -
in „Wechselrichter Hoymiles HM-xxxx 2,4 GhZ Nordic Protokoll?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HW_manual_bf533.pdf
bypassing the boot sequence: Execute from 16-bit external memory – Execution starts from address 0x2000 0000 with 16-bit packing. The boot ROM is bypassed in this mode. All configuration settings are set for the slowest device possible (3-cycle hold time; 15-cycle R/W access times; 4-cycle setup). Boot
in „Blackfin ADSP-BF532 - Einstieg“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
SJA1000_3.pdf
2 BIT 1 BIT 0 ID.28 ID.27 ID.26 ID.25 ID.24 ID.23 ID.22 ID.21 Note 1. ID.X means identifier bit X. 2000 Jan 04 40 Philips Semiconductors Product specification Stand-alone CAN controller SJA1000 Table 30 TX identifier 2 (EFF); CAN address 18; note 1 BIT 7 BIT 6 BIT 5 BIT 4 BIT 3 BIT 2 BIT 1 BIT 0 ID.20
in „Can Controller "SJA1000" Probleme mit Register“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EN_UM_N32G45x_Series_User_Manual_V3.pdf
Main Flash System Memory SRAM 0x0000_0000 0x1000_0000 X 0 Mian Flash start 0x1FFF_0000 0x0800_0000 0x2000_0000 0 1 System Memory 0x08000000 0x0000_0000 0x1000_0000 start 0x1FFF_0000 0x2000_0000 0x0000_0000 1 1 SRAM start 0x08000000 0x1FFF_0000 0x1000_0000 0x2000_0000 Embedded boot loader Embedded boot
in „ALLPOWERS S2000 PRO Reparaturhilfe“ · Mikrocontroller und Digitale Elektronik ·
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Datei
sdio.patch
(KW_REGISTER(0x90000)) /* Kirkwood Sata controller has two ports */ #define KW_SATA_PORT0_OFFSET 0x2000 diff -N -r -u u-boot.orig/drivers/mmc/Makefile u-boot-sdio-patched/drivers/mmc/Makefile --- u-boot.orig/drivers/mmc/Makefile 2010-09-19 17:44:14.710342039 +0200 +++ u-boot-sdio-patched/drivers/mmc/
in „20Euro Embedded System mit ARM, 128MB ram und 256MB Flash“ · Mikrocontroller und Digitale Elektronik ·
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Datei
sdio.patch
(KW_REGISTER(0x90000)) /* Kirkwood Sata controller has two ports */ #define KW_SATA_PORT0_OFFSET 0x2000 diff -N -r -u u-boot.orig/drivers/mmc/Makefile u-boot-sdio-patched/drivers/mmc/Makefile --- u-boot.orig/drivers/mmc/Makefile 2010-09-19 17:44:14.710342039 +0200 +++ u-boot-sdio-patched/drivers/mmc/
in „20Euro Embedded System mit ARM, 128MB ram und 256MB Flash“ · Mikrocontroller und Digitale Elektronik ·
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Datei
bat_sensor_0x0d_analysis.html
canvas id="chartVoltage" height="130"></canvas> </div> <div class="footer"> Kalibrierung: I = (raw − 0x2000) × 0.02441 A/LSB · U = raw × 0.060 V/LSB · Sensor Range ±200A </div> <script> const T = [0.0, 0.21, 0.42, 0.62, 0.83, 1.04, 1.25, 1.46, 1.66, 1.87, 2.08, 2.29, 2.5, 2.7, 2.91, 3.12, 3.33, 3.54, 3.74
in „Reverse Engineering eines LIN Bus“ · Mikrocontroller und Digitale Elektronik ·
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Datei
strace.txt
0xb7303000 mmap2(0xb7306000, 8192, PROT_READ|PROT_WRITE, MAP_PRIVATE|MAP_FIXED|MAP_DENYWRITE, 3, 0x2000) = 0xb7306000 close(3) = 0 access("/etc/ld.so.nohwcap", F_OK) = -1 ENOENT (No such file or directory) open("/usr/lib/i386-linux-gnu/libcrypto.so.1.0.2", O_RDONLY|O_CLOEXEC) = 3 read(3, "\177ELF\1\1
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ADIS16250.pdf
160°/sec −80°/sec 10 1110 1111 0000 0x2EF0 −4368 −600°/sec −300°/sec −150°/sec 10 0000 0000 0000 0x2000 −8192 1Two MSBs have been masked off and are not considered in the coding. 2Nominal sensitivity and zero offset null performance are assumed. Rev. 0 | Page 12 of 20 ADIS16250 CS SCLK DIN ADDRESS =
in „ADIS16250 Gyro Code von Hersteller?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADIS16250.pdf
160°/sec −80°/sec 10 1110 1111 0000 0x2EF0 −4368 −600°/sec −300°/sec −150°/sec 10 0000 0000 0000 0x2000 −8192 1Two MSBs have been masked off and are not considered in the coding. 2Nominal sensitivity and zero offset null performance are assumed. Rev. 0 | Page 12 of 20 ADIS16250 CS SCLK DIN ADDRESS =
in „Probleme mit Code für Gyro ADIS16250“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADIS16250.pdf
160°/sec −80°/sec 10 1110 1111 0000 0x2EF0 −4368 −600°/sec −300°/sec −150°/sec 10 0000 0000 0000 0x2000 −8192 1Two MSBs have been masked off and are not considered in the coding. 2Nominal sensitivity and zero offset null performance are assumed. Rev. 0 | Page 12 of 20 ADIS16250 CS SCLK DIN ADDRESS =
in „Drift bei Gyro ADIS16250“ · Mikrocontroller und Digitale Elektronik ·
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Datei
LPC11Axx.h
@ 0x1080) Word pin registers port 1*/ __I uint32_t RESERVED1[982]; __IO uint32_t DIR[2]; /*!< (@ 0x2000) Direction registers port 0/1*/ __I uint32_t RESERVED2[30]; __IO uint32_t MASK[2]; /*!< (@ 0x2080) Mask register port 0/1*/ __I uint32_t RESERVED3[30]; __IO uint32_t PIN[2]; /*!< (@ 0x2100) Portpin
in „constexpr Mikrokontroller Pointer Hartwarezugriff“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN332-1_Programming_Guide.pdf
and larger values Si4740/41/42/43/ 0x1304 RELEASE_RATE provide faster release. The default is 8192x2000 44/45, (approximately 8000 dB/s) Si4704/05/30/31/ 34/35/84/85-D50 and later Rev. 0.8 57 AN332 Table 9. FM/RDS Receiver Property Summary (Continued) Prop Name Description Default Available In Si4706
in „Si4705 und C8051F321 kommunizieren nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
tn816def.inc
INTERNAL_SRAM_END (0x3E00 + 0x0200 - 1) #define MAPPED_PROGMEM_START 0x8000 #define MAPPED_PROGMEM_SIZE 0x2000 #define MAPPED_PROGMEM_END (0x8000 + 0x2000 - 1) #define MAPPED_PROGMEM_PAGE_SIZE 0x40 #define PROGMEM_START 0x0000 #define PROGMEM_SIZE 0x2000 #define PROGMEM_END (0x0000 + 0x2000 - 1) #define PROGMEM_PAGE_SIZE
in „ATtiny816 wo finde ich def.inc“ · Mikrocontroller und Digitale Elektronik ·
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Datei
LiIon_1s_Lader.lst
Übergabe: ACb1:0, Rückgabe Produkt in ACb1:0, 00095 ;Der Übergabewert muß gleich/kleiner als 8192 = 0x2000 sein! Sonst 00096 ;erfolgt ein Überlauf, C=1, Flags,ERR=1! 00097 ; movlw 0x20 ;0x222E=8750 Überlauf! 00098 ; movwf ACb1 00099 ; movlw 0x00 ;0x2000=8192 OK 2^16=65536 00100 ; movwf ACb0 02CB 1003 00101
in „PIC16F1827-MCP4151 TMR0-Interrupt wird immer wieder nicht ausgefuehrt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADIS16250_16255.pdf
160°/sec −80°/sec 10 1110 1111 0000 0x2EF0 −4368 −600°/sec −300°/sec −150°/sec 10 0000 0000 0000 0x2000 −8192 1 2Two MSBs have been masked off and are not considered in the coding. Nominal sensitivity and zero offset null performance are assumed. CS SCLK DIN W/R BIT = 0 ADDRESS = 000101 DOUT 8 DATA =
in „Bias bei Gyro“ · Mikrocontroller und Digitale Elektronik ·
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Datei
half.c
0x7c00 ); const uint16_t h_m_mask = _uint16_li( 0x03ff ); const uint16_t h_m_msb_mask = _uint16_li( 0x2000 ); const uint16_t h_m_msb_sa = _uint16_li( 0x000d ); const uint16_t h_m_hidden = _uint16_li( 0x0400 ); const uint16_t h_e_pos = _uint16_li( 0x000a ); const uint16_t h_e_bias_minus_one = _uint16_li(
in „float16_t für AVR?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Lichttechnik_Richtwerte_und_Anwendungen_Teil_1_Spektralkurven.pdf
gegossenen PMMA-Platten und nach DIN 16958 / ISO 7823 - 2 für extrudiertes PMMA für Formate bis 3000 mm x 2000 mm festgelegt. Aufgrund des Herstellungsverfahrens weisen extrudierte Platten kleinere Dickenschwankungen auf als gegossene Platten. Daher liegen bei PLEXIGLAS XT Vorteile hinsichtlich gleichmäßiger
in „Filterscheibe für rote LED-Displays“ · Mechanik, Gehäuse, Werkzeug ·
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Datei
journalctl.txt
1c.3: PCI bridge to [bus 05-0c] Mär 31 15:34:29 T400 kernel: pci 0000:00:1c.3: bridge window [io 0x2000-0x2fff] Mär 31 15:34:29 T400 kernel: pci 0000:00:1c.3: bridge window [mem 0xf8000000-0xf9ffffff] Mär 31 15:34:29 T400 kernel: pci 0000:00:1c.3: bridge window [mem 0xf4000000-0xf40fffff 64bit pref]
in „ArchLinux mountet Bootpartition nicht“ · PC Hard- und Software ·
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Datei
BASIC31A.A51
jc X1ff3 ret ; X1ff3: cjne a,#30h,X1ff6 X1ff6: cpl c ret ; orl a,52h anl 4fh,a anl 3ah,a jb 24h.2,X2000 ; X000f equ 0fh X0054 equ 54h X00f8 equ 0f8h X011d equ 11dh X0140 equ 140h X016f equ 16fh X01a2 equ 1a2h X01ca equ 1cah X01d1 equ 1d1h X01d5 equ 1d5h X020b equ 20bh X022d equ 22dh X0254 equ 254h X027d
in „Basic für 80C31“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RDA5851S.pdf
Address Size Description kseg2 0xc000,0000 0x4000,0000 1 GB mapped and cached kseg1 0xa000,0000 0x2000,0000 0,5 GB unmapped and uncached kseg0 0x8000,0000 0x2000,0000 0,5 GB unmapped and cached kuseg 0x0000,0000 0x8000,0000 2 GB mapped and cached Note that kuseg and kseg2 are available only with the
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PDF
GD32F3x0_RM_v1.0.pdf
0x4000 0000 - 0x4000 03FF TIMER1 28 GD32F3x0 User Manual Pre-defined Bus ADDRESS Peripherals Regions 0x2000 5000 - 0x3FFF FFFF Reserved SRAM 0x2000 0000 - 0x2000 4FFF SRAM 0x1FFF FC00 - 0x1FFF FFFF Reserved 0x1FFF F800 - 0x1FFF FBFF Option bytes 0x1FFF EC00 - 0x1FFF F7FF System memory 0x0810 0000 - 0x1FFF
in „"NUCLEO"-Borads von GigaDevice“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GD32F3x0_RM_v1.0.pdf
0x4000 0000 - 0x4000 03FF TIMER1 28 GD32F3x0 User Manual Pre-defined Bus ADDRESS Peripherals Regions 0x2000 5000 - 0x3FFF FFFF Reserved SRAM 0x2000 0000 - 0x2000 4FFF SRAM 0x1FFF FC00 - 0x1FFF FFFF Reserved 0x1FFF F800 - 0x1FFF FBFF Option bytes 0x1FFF EC00 - 0x1FFF F7FF System memory 0x0810 0000 - 0x1FFF
in „"NUCLEO"-Borads von GigaDevice“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCU_-_HR8P506_Datasheet_e.pdf
0x2200_0000 0x21FF_FFFF 0x6000_0000 0x5FFF_FFFF Peripheral Reserved 0x4000_0000 0x3FFF_FFFF SRAM 0x2000_0000 0x2000_2000 0x1FFF_FFFF 0x2000_1FFF 8K Bytes FLASH SRAM 0x0000_0000 0x2000_0000 Figure 3-6 SRAM Map 3. 3. 2 SRAM Bit Banding Bit banding is available in SRAM, and a bit can be written and read
in „Re - Programmierung eines Cortex M0“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheetMax3392.pdf
I/O V CC , VCC = +2.5V, V =L+1.8V) M 2500 t 14 t 300 t 7 DATA RATE = 8Mbps 7 tLH 7 A X 12 X 250 X 2000 M M M X ) ) 10 ) ( LH ( LH ( 200 3 E1500 E E T T 8 T DATA RATE = 500kbps, 3 L L L 150 9 / / 6 / OPEN-DRAIN I1000 I I 0 R R tHL R 100 DATA RATE = 230kbps 4 E 500 HL 2 50 – HL M 0 0 0 20 30 40 50 60
in „Max3392 Pegelwandler, BlueNiceCom 4“ · Mikrocontroller und Digitale Elektronik ·
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PDF
schematics.pdf
FFFF ASYNC BANK 1 A5 D5 A4 26 11 D3 A4 26 11 D11 A7 E3 K6 D6 A3 DQ3 R202 22 402 A3 DQ3 R190 22 402 0x2000 0000 - 0x200F FFFF ASYNC BANK 0 A6 D6 A5 29 44 D4 A5 29 44 D12 A8 C3 G6 D7 A4 DQ4 R198 22 402 A4 DQ4 R193 22 402 0x0000 0000 - 0x03FF FFFF SDRAM A7 D7 A6 30 47 D5 A6 30 47 D13 A9 D6 H3 D8 A5 DQ5 R201
in „Versorgung“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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Datei
platformio.ini
-DSS_TIMER=4 -DSTM32_FLASH_SIZE=512 -DHSE_VALUE=12000000U -DUSE_USB_COMPOSITE -DVECT_TAB_OFFSET=0x2000 -DGENERIC_BOOTLOADER extra_scripts = ${common.extra_scripts} pre:buildroot/share/PlatformIO/scripts/STM32F1_create_variant.py buildroot/share/PlatformIO/scripts/STM32F103RC_MEEB_3DP.py lib_deps = $
in „Ender3 Z-Achse fährt mit Marlin nur nach oben“ · Mechanik, Gehäuse, Werkzeug ·
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Datei
MKL25Z4.h
define MCM_PLACR_DFCIC_MASK 0x1000u #define MCM_PLACR_DFCIC_SHIFT 12 #define MCM_PLACR_DFCC_MASK 0x2000u #define MCM_PLACR_DFCC_SHIFT 13 #define MCM_PLACR_EFDS_MASK 0x4000u #define MCM_PLACR_EFDS_SHIFT 14 #define MCM_PLACR_DFCS_MASK 0x8000u #define MCM_PLACR_DFCS_SHIFT 15 #define MCM_PLACR_ESFC_MASK
in „Interrupts bei Keil ARM? (KL25Z)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bluenrg-2.pdf
register description: address offset RTC_BASE_ADDR+0x0C Bit Field name Reset RW Description 13:0 CWYEAR 0x2000 R RTC clockwatch year value. Clockwatch year, in BCD format is from 0 to 3999. 31:14 RESERVED 0x0 R RESERVED Table 180. RTC - CWYMR register description: address offset RTC_BASE_ADDR+0x10 Bit Field
in „DC/DC-Wandler im ST BlueNRG-2 - Wofür?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CM6206_Datasheet_v2.1_en.pdf
Integrated USB Audio I/O Controller REG0 Address: 0x00 SPDIF OUT channel status control Reset State: 0x2000 15 14 13 12 11 10 9 8 DMA_Master Sampling rate Category Code[7:4] 7 6 5 4 3 2 1 0 Category Code[3:0] Emphasis Copyright Non-Audio PRO/CON Bit Bit Read/ Function Number Mnemonic Write 15 DMA_Master
in „soundchip mit mehr als stereo“ · Mikrocontroller und Digitale Elektronik ·
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Datei
datei-dmesg.txt
0.105758] pci 0000:00:1f.6: reg 0x10: [io 0x2400-0x24ff] [ 0.105770] pci 0000:00:1f.6: reg 0x14: [io 0x2000-0x207f] [ 0.105838] pci 0000:00:1f.6: PME# supported from D0 D3hot D3cold [ 0.105900] pci 0000:00:1f.6: System wakeup disabled by ACPI [ 0.106034] pci 0000:01:00.0: [1002:4c59] type 00 class 0x030000
in „Limux:: Netzwerk und WLAN futsch.“ · PC Hard- und Software ·
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PDF
MP600_DataSheet.pdf
0x1FFF_FFFF 0x4000_0000 ~ 0x5FFF_FFFF 2GB. Addressable in Kernel or U0x0000_0000 ~ 0x1FFF_FFFF mode. 0x2000_0000 ~ 0x3FFF_FFFF 0x0000_0000 ~ 0x1FFF_FFFF 0x0000_0000 ~ 0x1FFF_FFFF Cached 0x0000_0000 ~ 0x1FFF_FFFF The 512MB of physical space is further mapped as follows: Physical Space Range Description 0x1C00
in „Datenblatt von Magic Pixel MP600BUCG“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Anleitung_PGI_1200_A1.pdf
2006/95/EC X 2006/42/EC Annex IV 2006/28/EC Notified Body: Notified Body No.: 2005/32/EC Reg. No.: X 2000/14/EC_2005/88/EC X 2004/108/EC Annex V 2004/22/EC Annex VI Noise: measured L = 94,39 dB(A); guaranteed L = 95 dB(A) 1999/5/EC P= 750 W WA WA X Notified Body: Société Nationale de Certification et d
in „Inverter Generator PGI 1200 A1 - keine Spannung an 230V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Anleitung_PGI_1200_A1.pdf
2006/95/EC X 2006/42/EC Annex IV 2006/28/EC Notified Body: Notified Body No.: 2005/32/EC Reg. No.: X 2000/14/EC_2005/88/EC X 2004/108/EC Annex V 2004/22/EC Annex VI Noise: measured L = 94,39 dB(A); guaranteed L = 95 dB(A) 1999/5/EC P= 750 W WA WA X Notified Body: Société Nationale de Certification et d
in „Inverter Generator PGI 1200 A1 - keine Spannung an 230V“ · Mechanik, Gehäuse, Werkzeug ·
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_MS-SCCSTR_-210625.pdf
0020) OSM= %x1680; OGHAM SPACE MARK (U+1680) MVS= %x180E; MONGOLIAN VOWEL SEPARATOR (U+180E) ENQD= %x2000; EN QUAD (U+2000) EMQD= %x2001; EM QUAD (U+2001) ENSP= %x2002; EN SPACE (U+2002) EMSP= %x2003; EM SPACE (U+2003) TPEMSP= %x2004; THREE-PER-EM SPACE (U+2004) 10 / 29 [MS-SCCSTR] - v20210625 SqlClient
in „Verbindungsproblem mit STM32 und MS-SQL Server“ · Mikrocontroller und Digitale Elektronik ·