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startup.txt
-------------------------- # copy code into internal ram # copy_section code, __code_start__, RAM_Base_Boot, __code_end__ # Relocate .data section (Copy from ROM to RAM) # copy_section data, __data_start__, __data_start__+RAM_Base_Boot, __data_end__ # --------------------------------------------- # Clear
in „LCP2294: Start des Programms nach Powerup“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BD137__FAI-2013.pdf
T = 25°C unless otherwise noted. 3 C 9 Symbol Parameter Value Units — BD135 45 F V CBO Collector-Base Voltage BD137 60 V a BD139 80 u r BD135 45 s V CEO Collector-Emitter Voltage BD137 60 V BD139 80 V EBO Emitter-Base Voltage 5 V C Collector Current (DC) 1.5 A ICP Collector Current (Pulse) 3.0 A I Base
in „High Freq Power Amplifier“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
u_kunde.c
static char *cgi_file_kunde, *cgi_description=""; static file_t *cur_file; datei_t *selected_dateien_base[512]; datei_t **selected_datei=selected_dateien_base; static objekt_info_t null_objekt_info[1]; objekt_info_t *selected_objekts_base[512]; objekt_info_t **selected_objekt_info=selected_objekts_base
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Datei
bios.asm
not, see <http://www.gnu.org/licenses/>. msize: equ 62 ;size of available RAM in k bias: equ (msize-20) * 1024 ccp: equ $3400+bias ;base of cpm ccp bdos: equ ccp+$806 ;base of bdos bios: equ ccp+$1600 ;base of bios cdisk: equ $0004 ;current disk number (0 ... 15) iobyte: equ $0003 ;intel iobyte buff:
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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Datei
serialAccelerometer.ino
Port2Pin('D', 2) */ HardwareSPI acc(1); #define CS 67 int x, y, xx, yy, z, zz; int i; byte ctrl[2] = {0x20, 0xc7}; int16 xg, yg, zg; int16 x_array[100]; int16 y_array[100]; int16 z_array[100]; float x_avg, y_avg, z_avg; float xyz_theta; uint8 spiTransfer( uint8 data) { SPI1_BASE->DR = data; delay(10); while (!(SPI1_BASE->SR & SPI_SR_RXNE)); return SPI1_BASE->DR; } uint8 spiRead(uint8 reg) { uint8 in; uint8 data = 0x80 | reg; gpio_write_bit(GPIOE, 3, 0); // cs low delay(2); spiTransfer(data); delay(2); in = spiTransfer
in „STM32F4 Discovery Arduino“ · Mikrocontroller und Digitale Elektronik ·
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Techniques_for_Robust_Touch_Sensing_Design_AN1334.pdf
AN1334 Techniques for Robust Touch Sensing Design Author: Burke Davison In Figure 1, C BASE is the capacitance value when no object is over the pad. This is referred to as the Microchip Technology Inc. sensor’s base capacitance. C is the capacitance F change caused by a finger touch, and C
in „Wie realisiert man Sensortasten?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
tasks.c
= ( unsigned portBASE_TYPE ) pdFALSE; PRIVILEGED_DATA static volatile unsigned portBASE_TYPE uxMissedTicks = ( unsigned portBASE_TYPE ) 0; PRIVILEGED_DATA static volatile portBASE_TYPE xMissedYield = ( portBASE_TYPE ) pdFALSE; PRIVILEGED_DATA static volatile portBASE_TYPE xNumOfOverflows = ( portBASE_TYPE ) 0; PRIVILEGED_DATA static unsigned portBASE_TYPE uxTaskNumber = ( unsigned portBASE_TYPE ) 0; #if ( configGENERATE_RUN_TIME_STATS == 1 ) PRIVILEGED_DATA static
in „freertos: Compilerwarnung“ · Mikrocontroller und Digitale Elektronik ·
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Cal-Adapter.pdf
0 5 C10 1 D IC1P D 100 S 8V CA ADAPTER X10 12 350 7847 02 X10 5 G D R13 X10 10 X10 1 1 5V D6 X10 2 BAS32 10E 5DX2 RE AY 10C 2 10D 6 3 7 12 13 9 10 5 IC1 3 Q1 G D G D Q0 BSS138 Q1 2 Q2 4 X10 6 Q3 7 Q4 10 6 0 D11 14 C Q5 1 R20 D 5V6 Q6 5 G D Q7 6 R12 Q8 9 X10 9 1 13 E A Q9 11 5V G D 15 12 D7 X10 7 RES C BAS32 1 10A 111 74HC4017 1DX2 RE AY 4 X10 8 R17 1 Q2 BSS138 G D X10 3 5V D8 BAS32 11E 5DX2 RE AY 2 6 11C 11D 12 13 9 10 3 7 G D G D Q3 G D BSS138 R15 X 470 0 1% 2 X R14 470 0 1% 5V G D D9 X BAS32 56 1%
in „Rohde & Schwarz URY mit Fehlermeldung "FLT" im Display“ · HF, Funk und Felder ·
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ULN200xA_data.pdf
current, essentially equating to operation with low GPIO voltages. The GPIO voltage is converted to base current through the 2.7-kΩ resistor connected between the input and base of the predriver Darlington NPN. The 7.2-kΩ and 3-kΩ resistors connected between the base and emitter of each respective NPN
in „[V] Darlington Transistor Arrays, npn, Relaistreiber“ · Markt ·
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CP2200_short.pdf
Controller ing an integrated IEEE 802.3 Ethernet Media Access Con- - Integrated IEEE 802.3 MAC and 10 BASE-T PHY troller (MAC), a 10 BASE-T Physical Layer (PHY), and - Fully compatible with 100/1000 BASE-T networks 8 kB of Non-Volatile Flash Memory available in a 28-pin - Full/Half duplex with auto-negotiation
in „"Neuer" Ethernet Controller von Silabs: Erfahrungen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MN-RBXEB-01.pdf
required after the option ROM test has 99h completed. Configuring the timer data area and printer base address next. 9Ah Set the timer and printer base addresses. Setting the RS- 232 base address next. Returned after setting the RS-232 base address. 9Bh Performing any required initialization before the
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W83627HF_datasheet.pdf
control registers in W83627HF. These registers are defined below: ADDRESS REGISTER OFFSET READ WRITE base address + 0 SA REGISTER base address + 1 SB REGISTER base address + 2 DO REGISTER base address + 3 TD REGISTER TD REGISTER base address + 4 MS REGISTER DR REGISTER base address + 5 DT (FIFO) REGISTER
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datasheet.pdf
stant during the black level reference portion of the video upon the differential DC voltage at the bases of Q3 and Q4. waveform. The clamp comparator, when gated on during The Q3 and Q4 differential base voltage is determined by this reference period, will charge or discharge the clamp the contrast control
in „Kann mir jemand bei dieser Platine helfen?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
dma.h
uint8_t dma_channel_number); void (*transfer_error) (uint8_t dma_channel_number); uint32_t PeripheralBaseAddr; /*!< Specifies the peripheral base address for DMAy Channelx. */ uint8_t DIR; /*!< Specifies if the peripheral is the source or destination. This parameter can be a value of @ref DMA_data_transfer_direction
in „STM32L1xx DMA+SPI: 2 Bugs“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TIP150_1_2.pdf
)= 400V min (TIP152) D Collector−Emitter Saturation Voltage: V CE(sat) 2V max at I C 5A D Reverse−Base SOA: 300V to 400V at 7A Absolute Maximum Ratings: Collector−Emitter Voltage, VCEO TIP150 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
in „Welches SSR für Zündunterbrecher bzw. Alternativen zum SSR?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
out.txt
p. POP {r4-r6,pc} 0x0800334c: 2001 . MOVS r0,#1 0x0800334e: e7fc .. B 0x800334a ; _ZN14timer_irq_base4initEPK21timer_irq_base_configP20timer_irq_base_sleepP7pio_set + 70 0x08003350: 2000 . MOVS r0,#0 0x08003352: e7fa .. B 0x800334a ; _ZN14timer_irq_base4initEPK21timer_irq_base_configP20timer_irq_base_sleepP7pio_set
in „ARM Bootloader mit ELF, Einstieg nicht bei 0x08000000“ · Mikrocontroller und Digitale Elektronik ·
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Datei
e3d_tools.inc
#local Cos=0; #local MyAxis=<0,0,0>; #else #local MyAxis=vnormalize(vcross((C-A),(B-A))); #local Base1=vnormalize(C-A); #local Base2=vnormalize(vcross(MyAxis,Base1)); #local VB=<0.5*vlength(C-A),0,0>; #local VA=vcross(VB,z); #local VD=.5*<vdot(B-A,Base1),vdot(B-A,Base2),0>; #local VC=vcross(VD,z); #
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Datei
e3d_tools.inc
#local Cos=0; #local MyAxis=<0,0,0>; #else #local MyAxis=vnormalize(vcross((C-A),(B-A))); #local Base1=vnormalize(C-A); #local Base2=vnormalize(vcross(MyAxis,Base1)); #local VB=<0.5*vlength(C-A),0,0>; #local VA=vcross(VB,z); #local VD=.5*<vdot(B-A,Base1),vdot(B-A,Base2),0>; #local VC=vcross(VD,z); #
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PDF
BCR562-INF.pdf
C SOT23 Maximum Ratings Parameter Symbol Value Unit Collector-emitter voltage VCEO 50 V Collector-base voltage VCBO 50 Input forward voltage Vi(fwd) 30 Input reverse voltage Vi(rev) 10 Collector current I 500 mA C Total power dissipation- P 330 mW tot TS ≤ 79 °C Junction temperature Tj 150 °C Storage
in „BRC562 direkt an uC“ · Mikrocontroller und Digitale Elektronik ·
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Datei
M8DualHexDisplayDriver.asm
add r18, r18 ; Double it to get offset into SRAM(for two bytes per char.) ldi YH, $0 ; Set the SRAM base high address ldi YL, $60 ; Get the SRAM base low address add YL, r18 ; Add the char address offset to Y. ld r20,Y+ ; Get the character patterns. ld r19,Y ori r20,$10 ; Set the character select bit for
in „asm compiler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RM_PDTA114E_SER.pdf
Absolute Maximum Rating System (IEC 60134). Symbol Parameter Conditions Min Max Unit VCBO collector-base voltage open emitter - 50 V V collector-emitter voltage open base - 50 V CEO VEBO emitter-base voltage open collector - 10 V VI input voltage positive - +40 V negative - 10 V O output current -
in „AEG Lavatherm IH67680IH schaltet sporadisch ab“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
crt0.S
ifdef __HEAP_SIZE .equ Heap_Size, __HEAP_SIZE #else .equ Heap_Size, 0x0000100 #endif .globl __HeapBase .globl __HeapLimit __HeapBase: .space Heap_Size .size __HeapBase, . - __HeapBase __HeapLimit: .size __HeapLimit, . - __HeapLimit .section .isr_vector .align 2 .globl __isr_vector __isr_vector: .long
in „Linkerscript und Startupcode für Cortex M3/M4“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Recalibrate_Clock.asm
must be defined as float, append ".0" for integer value #define bclock 16.0;Mhz use max. 16 MHz for base clock #define tclock 20.0;Mhz target clock, up to 2*base clock ;very low clock ratio might not be achievable as only the higher frequency range (with CAL7=1) will be used for approximation .set clk_d=int((tclock/bclock)*32768) .if clk_d>65535 .set clk_d=65535 .warning "Only target clock up to 2*base clock is supported!" .endif .if clk_d<32768 .error "Target clock must be higher than base clock!" .endif .org 0 rjmp start .org WDTaddr pop r0 ;remove the interrupt return address from stack pop r0
in „ATtiny Clock Recalibration ohne externe Referenz“ · Projekte & Code ·
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PDF
CompactFlashSpecifications.pdf
A03 I I1Z 17 A03 I I1Z 18 A02 I I1Z 18 A02 I I1Z 18 A02 I I1Z 19 A01 I I1Z 19 A01 I I1Z 19 A01 I I1Z 20 A00 I I1Z 20 A00 I I1Z 20 A00 I I1Z 21 D00 I/O I1Z,OZ3 21 D00 I/O I1Z,OZ3 21 D00 I/O I1Z,OZ3 22 D01 I/O I1Z,OZ3 22 D01 I/O I1Z,OZ3 22 D01 I/O I1Z,OZ3 23 D02 I/O I1Z,OZ3 23 D02 I/O I1Z,OZ3 23 D02 I/O
in „CompactFlash im I/O Mode“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Hexfrmt.pdf
bytes 1-byte The 32-bit Extended Linear Address Record is used to specify bits 16-31 of the Linear Base Address (LBA), where bits 0-15 of the LBA are zero. Bits 16-31 of the LBA are referred to as the Upper Linear Base Address (ULBA). The absolute memory address of a content byte in a subsequent Data
in „ARM SAM7 Flash Speicher“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Intel-Hexfrmt.pdf
bytes 1-byte The 32-bit Extended Linear Address Record is used to specify bits 16-31 of the Linear Base Address (LBA), where bits 0-15 of the LBA are zero. Bits 16-31 of the LBA are referred to as the Upper Linear Base Address (ULBA). The absolute memory address of a content byte in a subsequent Data
in „AVR Studio .eep Dateiformat“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Intel_Hex-Format.pdf
bytes 1-byte The 32-bit Extended Linear Address Record is used to specify bits 16-31 of the Linear Base Address (LBA), where bits 0-15 of the LBA are zero. Bits 16-31 of the LBA are referred to as the Upper Linear Base Address (ULBA). The absolute memory address of a content byte in a subsequent Data
in „Frage zu Intel-Hex-File, RecordType 02“ · Mikrocontroller und Digitale Elektronik ·
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PDF
intelhex.pdf
bytes 1-byte The 32-bit Extended Linear Address Record is used to specify bits 16-31 of the Linear Base Address (LBA), where bits 0-15 of the LBA are zero. Bits 16-31 of the LBA are referred to as the Upper Linear Base Address (ULBA). The absolute memory address of a content byte in a subsequent Data
in „Frage zu Intel-Hex-File, RecordType 02“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Hexfrmt.pdf
bytes 1-byte The 32-bit Extended Linear Address Record is used to specify bits 16-31 of the Linear Base Address (LBA), where bits 0-15 of the LBA are zero. Bits 16-31 of the LBA are referred to as the Upper Linear Base Address (ULBA). The absolute memory address of a content byte in a subsequent Data
in „Memory-Anzeige vor debugging auf 0 setzen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Hexfrmt.pdf
bytes 1-byte The 32-bit Extended Linear Address Record is used to specify bits 16-31 of the Linear Base Address (LBA), where bits 0-15 of the LBA are zero. Bits 16-31 of the LBA are referred to as the Upper Linear Base Address (ULBA). The absolute memory address of a content byte in a subsequent Data
in „[Newbie] PonyProg-Rätsel bzgl. der Hex-Anzeige“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2012_02-RIAA.pdf
danscettesection,malgréleurcoûtplusélevé. -3.4 -3.6 10 20 50 100 200 500 1k 2k 5k 10k 20k Hz Étage MM LacaractéristiqueHFRIAAestcorrigéepour C8 sont prévus, vous pouvez donc la modi- pour cellule magnétodynamique le gain d’étage relativement bas par R26, fier.LagammeconvenablepourC8vade0à
in „Empfehlung für Phono-Vorverstärker-Schaltplan?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MT6223C.pdf
DMAn_DST Bit 31 30 29 28 27 26 25 24 23 22 21 20 19 18 17 16 Name DST[31:16] Type R/W 52/352 MediaTek Inc. Confidential Reset 0 Bit 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 0 Name DST[15:0] Type R/W Reset 0 The above registers contain the base or current
in „GSM-Modul (SIM908) nur analoge Ausgänge für Anruf?“ · HF, Funk und Felder ·
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Datei
spi_ll.h
= 0x05, SPI_LL_BASE_CMD_HD_EN_QPI = 0x06, SPI_LL_BASE_CMD_HD_WR_END = 0x07, SPI_LL_BASE_CMD_HD_INT0 = 0x08, SPI_LL_BASE_CMD_HD_INT1 = 0x09, SPI_LL_BASE_CMD_HD_INT2 = 0x0A, } spi_ll_base_command_t; /*-------------------
in „C > Struct > Pointer - Adresszuweisung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2SB1623A.pdf
20 mA Forward current tra/Dfer rahFE1 VCE= −3 C, I = w 0.5 m i 1000 Collector-emitter saturatiVn voltI = −3 A, I = −12 mAe 1000 1−200 V ten VCE(satC2= −5 Bi I =w−20 mA −4 Transitian frequency T VCE=s
in „Endstufen Transistoren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
S9013.pdf
0.4 0.02 2.06 0.1 0 0 0 4 1 1.27 Typ 2.54 Typ. 1 2 3 . PIN Connections ± 8 1. Emitter 2 . 1 0 2. Base 3. Collector KST-9016-000 1 STS9013 Absolute maximum ratings (Ta=25 °) Characteristic Symbol Ratings Unit Collector-Base voltage V 40 V CBO Collector-Emitter voltage V CEO 30 V Emitter-Base voltage
in „Welcher Transistor?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
2304140030_SOC-Shenzhen-SinOne-Microelectronics-SC93F8331M16U_C221434.pdf
32k 振荡器,作为 内部 2.4V Base Timer 时钟源,可唤醒 STOP。 内部一路 ADC 可直接测量 VDD 电压, 一路可测 量温度传感器电压 内建低频 128kHz LRC 振荡器 可设 ADC 转换完成中断 频率误差:跨越 (4.0V ~ 5.5V) 及 (-20 ~ 85℃) 应用环电模式: 境, 频率误差不超过 ±4%。 IDLE Mode,可由任何中断唤醒 STOP Mode,由 INT0~2
in „Saunasteuerung "smart" machen - Taster aus Tastenfedern / Kontaktfedern kapazitiv“ · Haus & Smart Home ·
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PDF
SC93F8331M16U_C221434.pdf
32k 振荡器,作为 内部 2.4V Base Timer 时钟源,可唤醒 STOP。 内部一路 ADC 可直接测量 VDD 电压, 一路可测 量温度传感器电压 内建低频 128kHz LRC 振荡器 可设 ADC 转换完成中断 频率误差:跨越 (4.0V ~ 5.5V) 及 (-20 ~ 85℃) 应用环电模式: 境, 频率误差不超过 ±4%。 IDLE Mode,可由任何中断唤醒 STOP Mode,由 INT0~2
in „Saunasteuerung "smart" machen - Taster aus Tastenfedern / Kontaktfedern kapazitiv“ · Haus & Smart Home ·
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PDF
Parallel_Port_Driver.pdf
specified, the data group defaults to output. For example: loadrt hal_parport cfg="0x278 0x378 in 0x20A0 out" This example installs drivers for one port at 0x0278, with pins 2-9 as outputs (by default, since neither "in" nor "out" was specified), one at 0x0378, with pins 2-9 as inputs, and one at 0x20A0
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1_AMD_Rev_Guide_Family_15h_Mod_00h-0Fh.pdf
register contents from this step are saved in a temporary variable for use in later steps. 3. Cc6BaseAddress[47:0] = {DramLimitSysAddrReg[20:0], ((DramLimitSysAddrReg[23:21] ^ 111b) << 24), 000000h} . In this step, software calculates the CC6 base address using the DramLimitAddr. DramLimitAddr[47:27] is bits 20:0 of the register read in step 2. Bits 26:24 of the CC6 base address is calculated from DramInlvEn. 4. NodeInterleavingEnabled = (DramLimitSysAddrReg[23:21] != 000b). In this step, software determines
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Datei
t6963c_main_v1.asm
unterdrücken .INCLUDE <m8def.inc> ; Controllertyp .equ F_CPU = 7372800 ; Systemtakt in Hz .equ TXT_BASE = 0x0000 .equ GFX_BASE = 0x0300 .equ FONT_SIZE = 8 ; änderbar über FS-Pin am Display .equ LCDMode = 0b10000000 .equ SPALTEN = 128/FONT_SIZE .equ GFX_ZEILEN = 64 .equ TXT_ZEILEN = 64/8 ;=============
in „Probleme GLCD im Textmodus (T6963c) ASM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
167606-da-01-en-Transistor__BD243_B_C.pdf
ABSOLUTE MAXIMUM RATINGS Symbol Parameter Value Unit NPN BD243B BD243C PNP BD244B BD244C VCBO Collector-Base Voltage EI = 0) 80 100 V VCEO Collector-Emitter VoltageB(I = 0) 80 100 V VEBO Emitter-Base Voltage CI = 0) 5 V IC Collector Current 6 A ICM Collector Peak Current 10 A IB Base Current 2 A P tot Total
in „Lüftersteuerung mit AVR über PWM ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2SA1943.pdf
Free Halogen Free 1 2 3 2SA1943L-x-T3L-T 2SA1943G-x-T3L-T TO-3PL B C E Tube Note: Pin Assignment: B: Base C: Collector E: Emitter 2SA1943L-x-T3L-T (1) T: Tube (1)Packing Type (2) T3L: TO-3PL (2)Package Type (3) x: refer to ClassificatFEn of h (3)Rank (4)Green Package (4) L: Lead Free, G: Halogen Free and
in „Gibt es noch brauchbare Transistoren für den Audio-Bereich?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Fundamentals-of-PCB-Technologies.pdf
Max. thickness (in) 0.150 0.200 0.250 0.300 Min. thickness (in) 0.005 0.003 0.002 0.001 Min. copper base 0.0012 0.0007 0.0004 0.0002 thickness (in) Max. copper thickness 4 oz. 6 oz. 10 oz. 20 oz. Number of layers 10 14 20 >30 Tolerance plated holes +- 0.003 +- 0.002 +- 0.0015 +- 0.001 (in) Tolerance routed
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Datei
LatFET2019_09_27_THD20kHz.asc.txt
656 0 FLAG 304 464 0 FLAG 224 464 0 FLAG 976 -80 0 FLAG 224 -80 0 FLAG 2816 416 0 FLAG 224 272 Q8-base IOPIN 224 272 In FLAG 960 176 Q10-base IOPIN 960 176 In FLAG 816 528 0 FLAG 1488 -96 VASout IOPIN 1488 -96 Out FLAG 2304 432 Gate IOPIN 2304 432 Out FLAG 1936 1344 0 FLAG 1920 -368 0 FLAG 2816 -368
in „Class AB Audioverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
sendmail.patch
TCP_DATA_START_VAR]); @@ -119,15 +119,15 @@ if (message_code == 334) { MAIL_DEBUG("2: Send Username: "); - decode_base64((unsigned char*)SMTP_USERNAME,mail_auth_str); + decode_base64((unsigned char*)SMTP_USERNAME,(unsigned char*)mail_auth_str); MAIL_DEBUG("%s",mail_auth_str); MAIL_DEBUG("\r\n"); - memcpy(ð_buffer
in „AVR für wenig Geld im LAN“ · Mikrocontroller und Digitale Elektronik ·
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PDF
1980-09.pdf
is an improved version of a similar technique used in the 5360A Counter.3 An ordi nary 10-MHz time base is used. Interpolator circuitry in creases resolution by determining where in relation to the 100-ns time base pulses the counter's gate actually opens and closes. For instance, if the start of the
in „Time-interpolation“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD2500_Macro_Assembler_V402_Manual.pdf
that value is stored in each byte. Otherwise, the reserved bytes are zeroed. A label is optional. 1 - 20 Assembler Directives Storage Control BLKB 20 ;Reserves 20 zeroed bytes BLKB 20,0 ;Reserves 20 zeroed bytes BLKB 20,FFH ;Reserves 20 bytes and stores FF Hex in each one LABEL: BLKW SIZE, VALUE Reserves
in „2500 A.D. Z80 Macro Assembler“ · Mikrocontroller und Digitale Elektronik ·
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Datei
dcm25.vhd
false,use_inclk_switchover=false,use_dyn_reconfig=false,feedback_source=FDBK_AUTO,primtype_sel=PLL_BASE,num_out_clk=1,clkin1_period=20.0,clkin2_period=20.0,use_power_down=false,use_reset=false,use_locked=false,use_inclk_stopped=false,use_status=false,use_freeze=false,use_clk_valid=false,feedback_type=
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ULTRASCHALL_SENSOR_MURATA_MA40S4R.pdf
ultrasonic waves propagated into the air = attenuate proportionally with distance. This is caused (t20ϒC) by diffusion loss on a spherical surface due to diffrac- - 10 tion phenomenon and absorption loss, that energy is absorbed by medium. B - 20 c As shown in Fig.1, the higher the frequency of the ultra
in „Ultraschallsensor Murata MA40S4R nieder- oder hochohmig“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Datenblatt_CJ45Buchse_EthernetModul_pjrc.pdf
Cetus International Ltd . SINGLE RJ45 CONNECTOR MODULE WITH 10/100 BASE-TX MAGNETICS AND LEDS P/N: J1B1211CCD Page : 1/3 Feature � Suitable for CAT 5 & 6 Fast Ethernet Cable or better UTP. � Meets or exceeds IEEE 802.3 standard for 100 Base-T. � 350 µH minimum OCL with
in „RJ45 Magnetics Teensy 4.1“ · Analoge Elektronik und Schaltungstechnik ·