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Datei
CMU200_SW_functions_and_data_types.txt
get_absolute_level_pk get_absolute_level_rms get_absolute_level_rms_min get_abs_usb_parameter get_aclr_base get_aclr_base().meas_fg_hw_sig_interface().rx_table_size() >= CHANNEL_TABLE_SIZE get_aclr_params get_aclr_result get_actual_level_type get_actual_scenario get_actual_stack_frame_number get_actual_status_message
in „CMU200 Erfahrungen und Modifikationen“ · HF, Funk und Felder ·
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Datei
ntp-4.2.8p10_hopf_clockmouse_V0.9_2017-11-30.diff
<ImportGroup Label="PropertySheets"> - </ImportGroup> - <PropertyGroup Label="UserMacros"> - <OutBaseDir>$(SolutionDir)\$(Platform)-out\$(Configuration)</OutBaseDir> - <TmpBaseDir>$(SolutionDir)\$(Platform)-tmp\$(Configuration)</TmpBaseDir> - </PropertyGroup> - <PropertyGroup> - <_ProjectFileVersion
in „Hopf Clock Mouse --> Abfrageprotokoll“ · Mikrocontroller und Digitale Elektronik ·
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PDF
User-Guide_L200.pdf
junction-case thermal resistance of this pack- age,which is greaterthan that of the Pentawatt,is AN255/1288 1/21 APPLICATION NOTE Figure 1 : BlockDiagram. Figure 2 : SchematicDiagram. 2/21 APPLICATION NOTE Figure 3. OVERLOADPROTECTION THERMALPROTECTION Thedevice hasan overload protectioncircuitwhich The junction
in „Bastel Anleitung Funktion Generator und oder Labor Netzteil“ · Mikrocontroller und Digitale Elektronik ·
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SDP-M130-84.pdf
VCC and GND. 24- 24- PIN/ 84-Lead Pin PIN/ 84-Lead Pin Signal PLCC DIP Signal PLCC DIP Names SOCKET Base | Names SOCKET Base GND 1 12 | VCC 84 22 VCC 2 22 | I5 83 23 I/O0 3 NC | I/O63 82 NC I/O1 4 NC | I/O62 81 NC I/O2 5 NC | I/O61 80 NC I/O3 6 NC | I/O60 79 NC I/O4 7 NC | I/O59 78 NC I/O5 8 NC | I/O58
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SDP-M130-84.pdf
VCC and GND. 24- 24- PIN/ 84-Lead Pin PIN/ 84-Lead Pin Signal PLCC DIP Signal PLCC DIP Names SOCKET Base | Names SOCKET Base GND 1 12 | VCC 84 22 VCC 2 22 | I5 83 23 I/O0 3 NC | I/O63 82 NC I/O1 4 NC | I/O62 81 NC I/O2 5 NC | I/O61 80 NC I/O3 6 NC | I/O60 79 NC I/O4 7 NC | I/O59 78 NC I/O5 8 NC | I/O58
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2SA1316.pdf
impedance 1/2 equivalent input noise voltagen E = 0.6 nV/H(typ.) ▯ Low pulse noise. Low 1/f noise ▯ Low base spreading resistance:bb’ 2.0 Ω (typ.) ▯ Complementary to 2SC3329 Maximum Ratings (Ta ▯ 25°C) Characteristics Symbol Rating Unit Collector-base voltage VCBO 80 V Collector-emitter voltage VCEO 80 V Emitter-base voltage VEBO 5 V Collector current IC 100 mA Base current IB 20 mA JEDEC TO-92 Collector power dissipation P 400 mW C JEITA SC-43 Junction temperature T 125 °C j TOSHIBA 2-5F1B Storage temperature range T 55~125 °C stg Weight: 0.21 g (typ.) Electrical
in „"alte" Grafikdisplays“ · Mikrocontroller und Digitale Elektronik ·
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2N3055-TOSH.pdf
Operatings MAXIMUM RATINGS (Ta=25 C) ~) 30.2±0.2 CHARACTERISTIC SYMBOL RATING UNIT * 100 V Collcetor-Base Voltage VCBO * Collector-Emitter Sustaining (Rp =100 £1) VCER(SUS) 70 V Voltaee F * Collector-Emitter Sustaining 60 V Vol tage VCEO(SUS) * Emitter-Base Voltage 7 V vebo * Collector Current ic 15 A * Base Current IB 7 A 1.BASE 2.EMITTER * Collector Power Dissipation PC 115 W COLLECTOR (CASE) (Tc=25°C) Derate Linearly 0.66 w °c / JEDEC T0-2 4MA/TO— * Junction Temperature T 200 °c i EIAJ TC—3 ,TB— * Storage
in „2N3055 , was sind aktuelle Alternativen ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Exp_Meth_In_RF_Des--Wes_Hayward.pdf
when the related resistances are equal. In the amplifier we analyzed, the input was applied to the base while the emitter was grounded through a large bypass capacitor. Hence, the input was applied Fig 2.21—Single transistor audio amplifier design. See text for details. between the base and the emitter
in „Literatur zum Selbstbau von Sendern und Empfängern“ · HF, Funk und Felder ·
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PDF
BB_Schem_75839_b.pdf
R15 R16 R17 CS_IN1_B 0xCC600000 1K NOPOP 74LCX32 GND CS_IO0_B 0xCC800000 CS_IO1_B 0xCCA00000 8 bit Base board ID The resistor populated is represented "0". Note : CS_IN1_B and CS_IO1_B are Base Board ID = 02 reserved by MX21 EVB. C C Expanded IO Address : 0xCC80 0000 (16 bit) B_D[0..15] U5 B_D0 3 2 B_D1
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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Datei
wiznet_driver.h
define NET_MEMALLOC 0x05 // Use 2K of Tx/Rx Buffer #define WIZ_TX_BUF_ADDR 0x4000 // W5100 send buffer base address #define WIZ_RX_BUF_ADDR 0x6000 // W5100 read buffer base address #define WIZ_TX_BUF_MASK 0x07FF // Tx 2K Buffer Mask: #define WIZ_RX_BUF_MASK 0x07FF // Rx 2K Buffer Mask: //#################
in „Problem bei Übergabe von struct & Pointer“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GD32VF103_User_Manual_EN_V1.0.pdf
[15:0] r Bits Fields Descriptions 31:0 UNIQUE_ID[31:0] Unique device ID Base address: 0x1FFF F7EC The value is factory programmed and can never be altered by user. 30 GD32VF103 User Manual 31 30 29 28 27 26 25 24 23 22 21 20 19 18 17 16 UNIQUE_ID[63:48] r 15 14 13 12 11 10 9
in „STM32F103C8T6 => GD32VF103C8T6“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DTA124E-D.pdf
replace a single (OUTPUT) device and its external resistor bias network. The Bias Resistor PIN 1 R1 BASE Transistor (BRT) contains a single transistor with a monolithic bias (INPUT) network consisting of two resistors; a series base resistor and a base− R2 emitter resistor. The BRT eliminates these individual
in „Bauteil identifzieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MC9S12XF512.pdf
2 I-Bit PMFFCTL (FIE2) Vector Base+ $8C $46 PMF Fault 3 I-Bit PMFFCTL (FIE3) Vector Base + $8A Reserved Vector Base + $88 Reserved Vector Base + $86 Reserved Vector Base + $84 Reserved Vector Base + $82 Reserved Vector base + $80 $40
in „Wie oft kann ein µC programmiert werden?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MC9S12XF512.pdf
2 I-Bit PMFFCTL (FIE2) Vector Base+ $8C $46 PMF Fault 3 I-Bit PMFFCTL (FIE3) Vector Base + $8A Reserved Vector Base + $88 Reserved Vector Base + $86 Reserved Vector Base + $84 Reserved Vector Base + $82 Reserved Vector base + $80 $40
in „Probleme beim Ansteuern eines EEPROM über SPI“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
include <util/delay.h> // // Der Prescaler muss so gewählt werden, dass der Ausdruck // für MILLISEC_BASE einen Wert kleiner als 128 ergibt // MILLISEC_BASE ist der Timerwert, der 1 Millisekunde Zeitdauer ergeben // soll. // #define PRESCALER 8 #define PRESCALER_BITS (1<<CS01) #define MILLISEC_BASE ( F_CPU
in „Servo Delay Modul (Atmega8)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
manual_en_2015-10-27.pdf
-0000) Searchlight base should be mounted on level, flat surface. Using the light base mounting template Select a location near the helm which will allow for convenient operation of control. enclosed, drill three (3) mounting
in „LED Ersatz für Sealed Beam H9405 gesucht“ · Fahrzeugelektronik ·
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Datei
irmp_stm8.diff
diff -Nurb irmp.orig/irmp.c irmp/irmp.c --- irmp.orig/irmp.c 2015-09-21 14:46:25.126889000 +0200 +++ irmp/irmp.c 2015-10-25 23:18:11.000000000 +0100 @@ -2013,6 +2013,9 @@ ROM_GPIOPadConfigSet(IRMP_PORT_BASE, IRMP_PORT_PIN, GPIO_STRENGTH_2MA, GPIO_PIN_TYPE_STD_WPU); +#elif
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PDF
Motortreiber_diskret.pdf
+Mot1 Stift1 D105 3 Kanal 1 SMBJ28 1 R111 PA4 LED0805-rot LED0805-rot 12.2k -Mot1 Stift1 MCL103 2 BAS40-05 Br4 T20 M21 9 9 M41 T40 2 TP1 4 G 8 8 G 4 TP2 D31 # 1 3 1 7 7 1 3 1 3 Q31 STL1550 R5 R22 D D U D R42 2 P11 1 1 1 BC850 R24 2 6 2 6 2 R44 BC850 1 1 BC850 1 Q111 end- up ~1 Q11 3 10k 1 3 S 5 2D25 D45 5 S 3 110k 1 1 BC807 100R 10k Q21 IRFH5106 Q41 10k D41 R31 3 P11 1 BC850 2 D22 IRFH5106 D42 2 2 1 ~2 R21 1 1C21 1 2 1ES1D ES1D 1 2 1 C41 1 1R41 2MCL103 1k R103 R107 1 D114 P11 R7 C22 2 2.7k 2.2u R25 R45 2.2u 2.7k 1 10k 10k gelb end-down
in „Motoransteuerung - 24vdc / max. 500W“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
txt_util.vhd
hex conversion and other bases) function chr(int: integer) return character; -- converts integer into string using specified base function str(int: integer; base: integer) return string; -- converts integer to string, using base
in „Rechnen im Hex-Dezimalsystem mit Dezimalanzeige“ · FPGA, VHDL & Co. ·
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PDF
IQmath_Quickstart.pdf
<base>\examples_ccsv4\Cpp\source Shared source code for the C++ example <base>\examples_ccsv4\Cpp\<device> Each device family has its own project folder <base>\examples\cmd Linker command files used by the
in „PID Regler in Q15 Format“ · Mikrocontroller und Digitale Elektronik ·
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Datei
myfirst168.s
GPIOB_BASE + 0x00 @<<<<< .equ GPIOB_AFRL , GPIOB_BASE + 0x20 @<<<<< .equ GPIOB_AFRH , GPIOB_BASE + 0x24 .equ GPIOA_BASE , 0x40020000 .equ GPIOA_MODER , GPIOA_BASE + 0x00 .equ GPIOA_OTYPER , GPIOA_BASE + 0x04 .
in „Break auf 0xfffffffe in STM32CubeIDE“ · Mikrocontroller und Digitale Elektronik ·
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PDF
velleman_hps5_oscilloscope.pdf
easiest way to do this would be by placing the vertical markers either on NOTE: Use the minimum time base (2 microsec) as a two consecutive peaks or two identical slopes of a startingpointwhenmeasuringasignalandselectlonger signal. time bases until the signal is displayed properly. Other- t-V/div Setting
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Datei
myfirst168.s
GPIOB_BASE + 0x00 @<<<<< .equ GPIOB_AFRL , GPIOB_BASE + 0x20 @<<<<< .equ GPIOB_AFRH , GPIOB_BASE + 0x24 .equ GPIOA_BASE , 0x40020000 .equ GPIOA_MODER , GPIOA_BASE + 0x00 .equ GPIOA_OTYPER , GPIOA_BASE + 0x04 .
in „STM32CubeIDE - kann man dem gdb server einen Schalter mitgeben?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
appl_1a.pdf
V AMP OUT 2. Wide linear range of the photocurrent relative to + the radiant intensity. VCC Figure 21 shows a logarithmic photocurrent ampli- fier using an operating amplifier. The circuit uses a OP1-21 logarithmic diode for the logarithmic conversion of Figure 21. Logarithmic Photocurrent Amplifier
in „Lichtsensor überprüfen aber wie?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Test_Drehgeber.asm
sts ENC_PORT + PORT_PIN2CTRL_offset, accu1 clr accu1 sbr accu1, EVSYS_CHMUX_PORTE_PIN1_gc sts EVSYS_base + EVSYS_CH0MUX_offset, accu1 clr accu1 sbr accu1, EVSYS_QDEN_bm + EVSYS_DIGFILT_8SAMPLES_gc sts EVSYS_base + EVSYS_CH0CTRL_offset, accu1 clr accu1 sbr accu1, TC0_CLKSEL3_bm + 0 sts TCC0_base + TC0_CTRLA_offset, accu1 clr accu1 sbr accu1, TC0_EVACT0_bm + TC0_EVACT1_bm + TC0_EVSEL3_bm + 0 sts TCC0_base + TC0_CTRLD_offset, accu1 ldi accu1, low(Cnt_Enc) sts TCC0_base + TC0_PER_offset, accu1 ldi accu1, high(Cnt_Enc) sts TCC0_base + TC0_PER_offset +1, accu1 ret Init_Timer1C: ; Blink PA0 mit 2x f_timer
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MN-RBXEB-01.pdf
interrupt controller test next. The DMA page register test passed. Performing the 60h DMA Controller 1 base register test next. The DMA controller 1 base register test passed. 62h Performing the DMA controller 2 base register test next. 65h The DMA controller 2 base register test passed. Programming DMA controllers
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Ciappa_Selected_failure_mechanisms_of_modern_power_modules.pdf
, have been promoted on an in- modules (even at accelerated conditions). The strategy ternational base. This is for example the case of the high- used for circumventing this limit bases on the well- power semiconductors for railway traction applications known concept of built-in reliability. The main
in „E-Mobilitaet - wie sieht der Antrieb eigentlich technisch aus?“ · Fahrzeugelektronik ·
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Datei
check-steps.pl
15] = 192; $orig[16] = 50; $orig[17] = 19; $orig[18] = 116; $orig[19] = 85; $orig[20] = 182; $orig[21] = 151; $orig[22] = 248; $orig[23] = 217; $orig[24] = 58; $orig[25] = 27; $orig[26] = 124; $orig[27] = 93; $orig[28] = 190; $orig[29] = 159; $orig[30] = 240; $orig[31] = 34; sub calc_next($){ my $val
in „An Bit Experten: "Alles CRC oder was?" - oder so.“ · Mikrocontroller und Digitale Elektronik ·
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Datei
simple.s
GPIOD_BASE + 0x00 @ pp. 287 of DM00031020.pdf .equ GPIOD_OTYPER , GPIOD_BASE + 0x04 .equ GPIOD_ODR , GPIOD_BASE + 0x14 .equ GPIOB_BASE , 0x40020400 .equ GPIOB_MODER , GPIOB_BASE + 0x00 .equ GPIOB_OTYPER , GPIOB_BASE + 0x04 .equ GPIOB_OSPEEDR , GPIOB_BASE + 0x08 .equ GPIOB_PUPDR , GPIOB_BASE + 0x0C .equ GPIOB_IDR , GPIOB_BASE + 0x10 .equ GPIOB_ODR , GPIOB_BASE + 0x14 .equ GPIOB_BSRR , GPIOB_BASE + 0x18 .equ GPIOB_LCKR , GPIOB_BASE + 0x1C .equ GPIOB_AFRL
in „STM32CubeIDE Debug View, Threads, Breakpoints“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Interfacing_the_Serial_RS232_Port.pdf
Control Register (MCR) Page 19 Line Status Register (LSR) Page 20 Modem Status Register (MSR) Page 21 Scratch Register Page 21 Interfacing the Serial / RS232 Port V5.0 Page 1 Interfacing the Serial / RS232 Port V5.0 http://www.senet.com.au/~cpeacock Part 3 : Programming (PC’s) Page 22 Polling or Interrupt
in „fehlerfreie UART-Übertragung?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
xminilab-manual.pdf
...................................................................................................21 3.10 UART Sniffer ...........................................................................................................................21 3.11 SPI Sniffer ......................................
in „USART - xmodem (Xminilab) - Bildübertragung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
xminilab-manual.pdf
...................................................................................................21 3.10 UART Sniffer ...........................................................................................................................21 3.11 SPI Sniffer ......................................
in „ATXmega32 flashen mit ATMEL Flip (Xminilab)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BAS70_1PS7XSB70_SER.pdf
common cathode BAS70-05W SOT323 SC-70 dual common cathode BAS70-06 SOT23 - dual common anode BAS70-06W SOT323 SC-70 dual common anode BAS70-07 SOT143B - dual isolated BAS70-07S SOT363 SC-88 dual isolated BAS70-07V SOT666
in „[S] BAT54C Schottky“ · Markt ·
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Datei
MKL25Z4.h
FPTB_BASE (0xF80FF040u) /** Peripheral FPTB base pointer */ #define FPTB ((FGPIO_Type *)FPTB_BASE) /** Peripheral FPTC base address */ #define FPTC_BASE (0xF80FF080u) /** Peripheral FPTC base pointer */ #define FPTC ((FGPIO_Type *)FPTC_BASE) /** Peripheral FPTD base address */ #define FPTD_BASE (0xF80FF0C0u) /** Peripheral FPTD base pointer */ #define FPTD ((FGPIO_Type *)FPTD_BASE) /** Peripheral FPTE base address */ #define FPTE_BASE
in „Interrupts bei Keil ARM? (KL25Z)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
OS_SerialTFT.h
void println(); void print(const char str[]); void print(int8_t c); void print(uint8_t b, uint8_t base = DEC); void print(int16_t n); void print(uint16_t n, uint8_t base = DEC); void print(int32_t n); void print(uint32_t n, uint8_t base = DEC); void println(const char str[]); void println(int8_t c); void println(uint8_t b, uint8_t base = DEC); void println(int16_t n); void println(uint16_t n, uint8_t base = DEC); void println(int32_t n); void println(uint32_t n, uint8_t base = DEC); void fillScreen(uint16_t color); void drawPixel(
in „Arduino Softwareserial umarbeiten auf HardwareSerial?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
OS_SerialTFT.h
void println(); void print(const char str[]); void print(int8_t c); void print(uint8_t b, uint8_t base = DEC); void print(int16_t n); void print(uint16_t n, uint8_t base = DEC); void print(int32_t n); void print(uint32_t n, uint8_t base = DEC); void println(const char str[]); void println(int8_t c); void println(uint8_t b, uint8_t base = DEC); void println(int16_t n); void println(uint16_t n, uint8_t base = DEC); void println(int32_t n); void println(uint32_t n, uint8_t base = DEC); void fillScreen(uint16_t color); void drawPixel(
in „Arduino Softwareserial umarbeiten auf HardwareSerial?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
TXbuddy.asm
_; check which bit is 0 ldi ZH,low(chdata) ; calculate address add ZH,ZL ; by adding channel # to base address st X,ZH ; save sampleidne_: inc XL ; inc XH ; counter cpi XH,4 ; all channels checked? sec ; C=1 for rol wr_ brne sampleo_ ; branch if more to check ; DEACTIVATE PORTB?? ; TC (generates IR base signal) ; PCM base 38kHz, 50% duty cycle ldi wr, (1<<CS00) | (1<<WGM02) ; SYSCLOCK/1, WGM00&01&02 set: fast PWM, TOP=OCR0A out TCCR0B, wr ldi wr, 209 ; out OCR0A, wr ; lsr wr ; /2 out OCR0B, wr ; ldi wr, PCMsetup & (~
in „Anfängerfrage zu AVR Tiny12“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
; TCCR2A = (1 << COM2A1) | (1 << COM2A0) | (1 << COM2B1) | (1 << COM2B0) | (1 << WGM20) | (1 << WGM21); TCCR2B = (1 << CS22); OCR0A = 128; OCR0B = 128; OCR1B = 128; OCR1A = 128; OCR2A = 128; OCR2B = 128; // UART config UBRR0H = UBRR_VAL >> 8; UBRR0L = UBRR_VAL & 0xFF; UCSR0B = (1<<RXCIE0) | (1<<RXEN0
in „PWM per DMX regeln Atmega48“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BSP_User_Manual.pdf
the /tftpboot/imx21ads directory cp <install_path>/ rootfs/boot/* /tftpboot/imx21ads cp <install_path>/<flashfs> /tftpboot/imx21ads 6. Edit/etc/exports and add the following line: /tftpboot/imx21ads/ltib/ <target board
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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Datei
LPC2300_s.txt
) <0x0-0xFFFFFFFF> ;// </h> Heap_Size EQU 0x00000600 AREA HEAP, NOINIT, READWRITE, ALIGN=3 __heap_base Heap_Mem SPACE Heap_Size __heap_limit ; System Control Block (SCB) Module Definitions SCB_BASE EQU 0xE01FC000 ; SCB Base Address PLLCON_OFS EQU 0x80 ; PLL Control Offset PLLCFG_OFS EQU 0x84 ; PLL Configuration
in „Bootloader & Interrupts (LPC2366)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
4N27-M.pdf
1 6 t c 1 o 3 NC 4 p e 6 s PIN 1. ANODE 1 2. CATHODE 3. NO CONNECTION 4. EMITTER 5. COLLECTOR 6. BASE ©2005 Fairchild Semiconductor Corporation www.fairchildsemi.com 4NXXM, H11AXM Rev. 1.0.0 N X Absolute Maximum Ratings (T = 25°C unless otherwise specified) X A M Symbol Parameter Value Units , H TOTAL
in „Wechselspannungs Fragen :(“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
LPC2300.s
0xFFFFFFFF> ;// </h> ;//++0170 Heap_Size EQU 0x00001000 AREA HEAP, NOINIT, READWRITE, ALIGN=3 __heap_base Heap_Mem SPACE Heap_Size __heap_limit ; System Control Block (SCB) Module Definitions SCB_BASE EQU 0xE01FC000 ; SCB Base Address PLLCON_OFS EQU 0x80 ; PLL Control Offset PLLCFG_OFS EQU 0x84 ; PLL Configuration
in „Heap und Stack Einstellungen beim LPC23xx“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sl11hspec.pdf
TO TRANSFER 128-BYTES OF DATA TO APERIPHERAL: ..................................16 2.3.1 USB Host Base Address [01H] ............................................................................................16 2.3.2 USB Host Base Length [02H] ........................................................
in „[V] SL11H, USS720E ua.“ · Markt ·
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PDF
ADIS16209-246154.pdf
4 9 5 8 2 XINCL_OUT = 0° 9 YINCL_OUT = 0° 0 Figure21.AccelerometerPolarity Rev. C | Page 12 of 20 Data Sheet ADIS16209 HorizontalInclineAngle Table 15. Vertical Incline Angle Data Format Examples Orientation Decimal Hex Binary The XINCL_OUT (see Table
in „Neigungswinkelinkelmessung beweglicher Teile“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
ow.c
/////////////////////////////////////////////////////////////////////// static unsigned long time_base; static unsigned short us500; static unsigned short us420; static unsigned short us120; static unsigned short us70; static unsigned short us12; static unsigned short us2; volatile unsigned char *PORT_OW
in „Falsche TEMP mit DS1820“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Technische Zeichnung und Anwendungshinweise eines Widerstands
DIMENSIONS (Unit: mm) 4.89mm ø4.37mm ø10-32 17.50mm 33.21mm 7.62mm 76.20mm 11.43mm 41.20mm 33.21mm 4.76mm 20.26mm Application Notes: When designing your system, please follow these guidelines which are essential to the performance of the resistor. Heatsink plate (base plate of the resistor) temperature must be monitored to establish the correct de-rating. Reliable technique is to attach a thermocouple to the side of the base plate of the resistor. Temperature of
in „Bauteil-Roundup: Drohnenkit bis Piezoputzanlage“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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Datei
usart_nrf.c
RealTimeData(uint8_t *pBuffer) { switch(pBuffer[1]) { case ANSWER_REQ_A_DAT: //89 UsartNrf_Process_BaseDataPort(pBuffer, 0); break; case ANSWER_REQ_A_EVENT: //88 UsartNrf_Process_BaseEventPort(pBuffer, 0); break; case ANSWER_REQ_B_DAT: //91 UsartNrf_Process_BaseDataPort(pBuffer, 1); break; case ANSWER_REQ_B_EVENT
in „Wechselrichter Hoymiles HM-xxxx 2,4 GhZ Nordic Protokoll?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TS13003_D07.pdf
126 Pin Definition: 1. Emitter 1. Emitter PRODUCT SUMMARY 2. Collector 2. Collector BVCEO 400V 3. Base 3. Base BVCBO 700V C 1.5A VCE(SAT) 0.8V @ IC/ B = 0.5A / 0.1A Features Block Diagram ● High Voltage ● High Speed Switching Structure ● Silicon Triple Diffused Type ● NPN Silicon Transistor Ordering
in „Transistor "13003" (TO92)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TS13003_D07.pdf
126 Pin Definition: 1. Emitter 1. Emitter PRODUCT SUMMARY 2. Collector 2. Collector BVCEO 400V 3. Base 3. Base BVCBO 700V C 1.5A VCE(SAT) 0.8V @ IC/ B = 0.5A / 0.1A Features Block Diagram ● High Voltage ● High Speed Switching Structure ● Silicon Triple Diffused Type ● NPN Silicon Transistor Ordering
in „Reparatur EVG für T5 Röhre“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
4N25.pdf
0.001 10 µA DETECTOR Collector-Emitter Breakdown Voltage (C = 1.0 mA,FI = 0) BVCEO 30 100 V Collector-Base Breakdown Voltage (C = 100 µA,FI = 0) BVCBO 70 120 V Emitter-Collector Breakdown Voltage (I = 100 µA, I = 0) BV 7 10 V E F ECO Collector-Emitter Dark Current (VCE= 10 V,FI = 0) CEO 1 50 nA Collector-Base
in „optocoupler beschaltung“ · Mikrocontroller und Digitale Elektronik ·