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Datei
gdt.c
0x800 #define GDT_FLAG_32_BIT 0x400 uint64_t gdt[GDT_ENTRIES]; void set_gdt_entry(int i, unsigned int base, unsigned int limit, int flags) { gdt[i] = limit & 0xffffLL; gdt[i] |= (base & 0xffffffLL) << 16; gdt[i] |= (flags & 0xffLL) << 40; gdt[i] |= ((limit >> 16) & 0xfLL) << 48; gdt[i] |= ((flags >> 8 )& 0xffLL) << 52; gdt[i] |= ((base >> 24) & 0xffLL) << 56; } void init_gdt() { set_gdt_entry(0, 0, 0, 0); set_gdt_entry(1, 0, 0xfffff, GDT_FLAG_SEGMENT | GDT_FLAG_32_BIT | GDT_FLAG_CODESEG | GDT_FLAG_4K_GRAN | GDT_FLAG_PRESENT); set_gdt_entry
in „GDT erstellen - Dauernd reboot?“ · Softwareentwicklung ·
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PDF
153157-da-01-en-TRANSISTOR_AF_BC847_B_SOT_23__INF.pdf
BC849... 30 Collector-emitter voltage V CES BC847..., BC850... 50 BC848..., BC849... 30 Collector-base voltage V CBO BC847..., BC850... 50 BC848..., BC849... 30 Emitter-base voltage V EBO BC847..., BC850... 6 BC848..., BC849... 6 100 mA Collector current C Peak collector currept, t ≤ 10 ms CM 200 Total
in „Check Transistorschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
OK.pdf
Dissipation 45 mW DETECTOR O (avg) Average Output Current (Pin 6) 8 mA IO(pk) Peak Output Current 16 mA VEBR Emitter−Base Reverse Voltage (HCPL0500/0501 only) 5 V V CC Supply Voltage −0.5 to 30 V VO Output Voltage −0.5 to 20 V IB Base Current (HCPL0500/0501 only) 5 mA PD Output Power Dissipation 100
in „Defekte Analoge Strom-Ausgangskarte 0/4-20 mA Bauteilsuche“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
stm32f4xx_rcc.c
t)0xF89FFFFF) /* RCC Flag Mask */ #define FLAG_MASK ((uint8_t)0x1F) /* CR register byte 3 (Bits[23:16]) base address */ #define CR_BYTE3_ADDRESS ((uint32_t)0x40023802) /* CIR register byte 2 (Bits[15:8]) base address */ #define CIR_BYTE2_ADDRESS ((uint32_t)(RCC_BASE + 0x0C + 0x01)) /* CIR register byte 3 (Bits[23:16]) base address */ #define CIR_BYTE3_ADDRESS ((uint32_t)(RCC_BASE + 0x0C + 0x02)) /* BDCR register base address */ #define BDCR_ADDRESS (PERIPH_BASE + BDCR_OFFSET) /* Private macro -------------------
in „STM32F103 Bluepill mit 128kb lässt sich nicht flashen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
S32K-RM.pdf
MTB_DWT_COMPn) The MTBDWT_COMPn registers provide the reference value for comparator n. Address:0h base + 20h offset + (16d × i), where i=0d to 1d Bit 31 30 29 28 27 26 25 24 23 22 21 20 19 18 17 16 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 0 R COMP W Reset0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0
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Datei
0001-Visual-Studio-2015-Files.patch
src\atmega128.h" /> + <ClInclude Include="src\atmega1284abase.h" /> + <ClInclude Include="src\atmega16_32.h" /> + <ClInclude Include="src\atmega2560base.h" /> + <ClInclude Include="src\atmega668base.h" /> + <ClInclude Include="src\atmega8.h" /> + <ClInclude Include="src\attiny2313.h" /> + <ClInclude Include
in „Simulavr unter Windows mit Visual Studio 2015 kompilieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PartNumberBreakdown_ds.pdf
Numbers for Proprietary Parts Most Maxim parts use our own part numbering system which consists of a base part number followed by a suffix, plus optional additional designators. Example: (A) Base Part Number The base part number identifies the product type, independent of package, temperature, and other
in „SMD Bauteil identifizieren "4313"“ · Mikrocontroller und Digitale Elektronik ·
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Datei
M8DualHexDisplayDriver.asm
byte (LSB=0) lpm ; OSCCAL value is now in R0 out OSCCAL,r0 ; write it to the OSCCAL register. ldi r16,high(RAMEND) ;Initialize Stack Pointer out SPH,r16 ldi r16,low(RAMEND) out SPL,r16 ; Configure I/Os ; PortD, data bus, all inputs clr r16 out PORTD,r16 ; all 0's, no pullups. out DDRD, r16 ; all inputs. ; PortC, /RESET on PC6, all others outputs clr r16 out PORTC, r16 ; all 0's for now ldi r16, (1<<PC5)|(1<<PC4)|(1<<PC3)|(1<<PC2)|(1<<PC1)|(1<<PC0) out DDRC, r16 ; Set PC0..5 as outputs. ; PortB: 0-5 are outputs, 6 and 7 are inputs out DDRB, r16 ; Set
in „asm compiler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BC107.pdf
18 INTERNAL SCHEMATIC DIAGRAM ABSOLUTE MAXIMUM RATINGS Symbol Parameter Value Unit VCBO Collector-Base Voltage EI = 0) 50 V VCEO Collector-Emitter VoltageB(I = 0) 45 V VEBO Emitter-Base Voltage CI = 0) 6 V I Collector Current 100 mA C Ptot Total Dissipation aamb ≤ 25 C 0.3 W at T ≤ 25 C 0.75 W C o T
in „Berechnung Transistorschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BC107.pdf
18 INTERNAL SCHEMATIC DIAGRAM ABSOLUTE MAXIMUM RATINGS Symbol Parameter Value Unit VCBO Collector-Base Voltage EI = 0) 50 V VCEO Collector-Emitter VoltageB(I = 0) 45 V VEBO Emitter-Base Voltage CI = 0) 6 V I Collector Current 100 mA C Ptot Total Dissipation aamb ≤ 25 C 0.3 W at T ≤ 25 C 0.75 W C o T
in „Transistor ; Definition von r(BE)“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
stm32f30x_rcc.c
3 (Bits[31:23]) base address */ #define CFGR_BYTE3_ADDRESS ((uint32_t)0x40021007) /* CIR register byte 2 (Bits[15:8]) base address */ #define CIR_BYTE2_ADDRESS ((uint32_t)0x40021009) /* CIR register byte 3 (Bits[23:16]) base address */ #define CIR_BYTE3_ADDRESS ((uint32_t)0x4002100A) /* CR register byte 2 (Bits[23:16]) base address */ #define CR_BYTE2_ADDRESS ((uint32_t)0x40021002) /* Private macro ---------------------
in „Probleme mit dem STM32F3Discoery, mal wieder.“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Schaltplan einer Stromversorgung und Spannungsregelung
+BATT F2 1A L1 68u IP03B0P06NH D25 18V C2 10n/250V C3 68u/50V Q3 BATT_EXT GND R42 15k 0.1% D20 BAS416 BATT_EXT C9 1u/50V GND C10 100n/50V R43 100R U11 OP4191 LOAD_CURR GND R46 300k 0.1% R47 15k 0.1% D21 BAS416 BATT_EXT R71 100R D24 BAS416 GND C17 220p/50V GND D1 = Diotec 5KP20CA D22 = TI LM4050BIM3-4.1 Strommessung Erzeugung Offset-Spannung +5V C28 100n/16V GND R39 3k D22 SV1 C30 1u/16V GND C18 100n/16V GND R48 22R U2A TLV9004 ca. 99.5 mV R50 931R GND
in „Eingangsschutz/Diode mit geringem Leckstrom für OPV zur Strommessung im KFZ“ · Analoge Elektronik und Schaltungstechnik · · Schaltpläne
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Datei
httpboot-m1284p-8mhz-w5500.c
reg>>8,reg&0xFF,ptr,len); uint16_t htonsval; uint16_t W51_read16 (uint16_t reg) { W51_recv(reg>>8,reg&0xFF,(uint8_t*)&htonsval,2); return NTOHS(htonsval); } void W51_write16 (uint16_t reg, uint16_t data) { htonsval = HTONS(data); //
in „Atmega Eeprom/Flash andauernde Schreibfehler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SDS_Series_Oscilloscopes_Service_Manual_v1_0.pdf
step B and test the other channel. 3.3.11 Drift test Turn the voltage of CH1 and CH2 at 5mV, time base at 1mS; record the drift value of zero position at the set time. 3.3.12 Noise testing Turn the voltage of CH1 and CH2 at 5mV, time base at 1mS; record the max displayed amplitude, which is the open-circuit
in „WELEC W2000A vs. OWON SDS8102“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BC368.pdf
OFFCHARACTERISTICS V (BR)CEO Collector-Emitter Breakdown Voltage IC= 10 mA, I B 0 20 V V Collector-Base Breakdown Voltage I = 100 A, I = 0 25 V (BR)CES C µ E V (BR)EBO Emitter-Base Breakdown Voltage E = 10µA, IC= 0 5.0 V ICBO Collector-Cutoff Current VCB= 25 V, IE= 0 10 µ A VCB= 25 V, IE= 0, TA= 150°C
in „Transistor - Spannungsabfall“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Berkeley_1.pdf
is forward biased. IC current gaiβ:≡ I B EE105 Fall 2007 Lecture 4, Slide 7 Prof. Liu, UC Berkeley Base Current • The base current consists of two components: 1) Injection of holes into the emitter, and 2) Recombination of holes with electrons injected from the emitter. I = β I C B EE105 Fall 2007 Lecture
in „Anfänger frage: Wiederstand in Transitor schaltung warum?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
agilent_54645D.pdf
8- or 16-bit like operation of both the scope and been greatly reduced with the devel- microcontroller systems logic channels. For example, simply opment of MegaZoom technology, turn the time-base knob to set
in „[V] HP 54645D MSO, 2 + 16 Kanal, 100 MHz, 200 MS/s“ · Markt ·
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PDF
msp430fr5969.pdf
PMMCTL0 00h PMM interrupt flags PMMIFG 0Ah PM5 Control 0 PM5CTL0 10h Table 24. FRAM Control Registers (Base Address: 0140h) REGISTER DESCRIPTION REGISTER OFFSET FRAM control 0 FRCTL0 00h General control 0 GCCTL0 04h General control 1 GCCTL1 06h Table 25. CRC16 Registers (Base Address: 0150h) W REGISTER DESCRIPTION
in „Probleme mit Konfiguration der SPI-Schnittstelle am MSP430“ · Mikrocontroller und Digitale Elektronik ·
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PDF
A100-BC327_28_BC337_38.pdf
BC338 Collector Emitter Voltage V CEO 45 60 25 V Collector Emitter Voltage VCES 50 60 30 V Emitter Base Voltage V EBO 5.0 V Collector Current Continuous C 800 mA Peak I 1.0 A CM Emitter Current Peak IE M 1.0 A I Base Current Continuous B 100 mA Base Current Peak IBM 200 mA Power Dissipation @ Ta=25°C
in „Tansistor brechnen allgemein“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
usart_nrf.c
{'\r', '\n', ':'}; const char pro_end[] = {'0', '0', '0', '0', '0', '0', '0', '1', 'f', 'f'}; uint16_t UsartNrf_Get_crc_xor16(uint16_t *b_hex, uint16_t len) { uint16_t i; uint16_t crc; crc = 0; for(i = 0; i < len; i++) { crc = crc ^ (*(b_hex + i)); } return (crc); } /********************************
in „Wechselrichter Hoymiles HM-xxxx 2,4 GhZ Nordic Protokoll?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sht4x.pdf
Ordering Information Material Description Material Number Details Quantity (pcs) SHT40-AD1B-R2 3.000.465 base RH&T acc., 0x44 I2C addr. 2’500 SHT40-AD1B-R3 3.000.353 base RH&T acc., 0x44 I2C addr. 10’000 base RH&T acc., 0x44 I2C addr., including SHT40-AD1F-R2 3.000.820 patented PTFE membrane 2’500 base RH&T
in „Trockenschrank für Elektronik wie funktioniert es?“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
sht4x.pdf
Ordering Information Material Description Material Number Details Quantity (pcs) SHT40-AD1B-R2 3.000.465 base RH&T acc., 0x44 I2C addr. 2’500 SHT40-AD1B-R3 3.000.353 base RH&T acc., 0x44 I2C addr. 10’000 base RH&T acc., 0x44 I2C addr., including SHT40-AD1F-R2 3.000.820 patented PTFE membrane 2’500 base RH&T
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Datei
TWI.h
__inline void AT91F_TWI_myConfigure(AT91PS_TWI pTWI) { AT91C_BASE_AIC->AIC_IDCR = (1<<AT91C_ID_TWI); AT91C_BASE_PIOA->PIO_PDR = (1<<3) | (1<<4); AT91C_BASE_PIOA->PIO_MDER = (1<<3) | (1<<4); AT91C_BASE_PMC->PMC_PCER = (1<<AT91C_ID_TWI); //* Disable interrupts pTWI-
in „TWI mit AT91SAM7S“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BFL_SHA2_Spec_Rev2.2_-_Release.pdf
16bits 31 Second sha2_64 H_A lower 16 bits input 0 ddd dddd 1001 0000 H1 A<31:0> lower 16bits 32 Second sha2_64 H_A upper 16 bits input 0 ddd dddd 1001 0001 H1 A<31:0> upper 16bits 33 0 ddd dddd 1001 0010 H1 B<31:0> lower 16bits 34 0 ddd dddd 1001 0011 H1 B<31:0> upper 16bits 35 0 ddd dddd 1001 0100 H1 C<31:0> lower 16bits 36 0 ddd dddd 1001 0101 H1 C<31:0> upper 16bits 37 0 ddd dddd 1001 0110 H1 D<31:0> lower 16bits 38
in „Chips für SHA256 Berechnungen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ARJP11A.pdf
RJ45PoE&PoE+10/100Base-TXJackwithMagneticModule ARJP11A RoHS Compliant 16.26x13.84x21.59mm FEATURES: APPLICATIONS: | | | | | | | | | | | | | | •PoE&PoE+ •10/100base-TXLAN •AvailablewithorwithoutLED •NIC, LoMandPC •SuitableCAT5&
in „Suche Quelle für 10/100 Base-TX POE-Ethernet RJ45-Buchse mit Übertragern und Gleichrichtern“ · Mikrocontroller und Digitale Elektronik ·
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Datei
led_modes.c
index]; } struct cRGB stroboscope(void){ } struct cRGB colorFade(void){ uint8_t random_color_value; int16_t pwm_difference_red = 0; int16_t pwm_difference_green = 0; int16_t pwm_difference_blue = 0; //float brightness_step_red = 0.0; //float brightness_step_green = 0.0; //float brightness_step_blue = 0.0
in „Code zu groß für AtTiny45“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uarttestc.c
#define PS_BASE 0xFFFF4000 #define PS_CR (*(volatile unsigned *)0xFFFF4000) #define PS_CR_OFFSET 0x0 #define PS_PCER (*(volatile unsigned *)0xFFFF4004) #define PS_PCER_OFFSET 0x4 #define PS_PCDR (*(volatile unsigned
in „Platinen mit GPS - Empfänger bei ebay“ · Mikrocontroller und Digitale Elektronik ·
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Datei
T6963c.c
while(*ptr) { T6963cPutCharXY(zeile, spalte, (*ptr++)); }//lcd_write(*ptr++,1); } break; case 'b': Base = 2; goto ConversionLoop; case 'c': //Int to char format_flag = va_arg(ap,int); T6963cPutCharXY(zeile, spalte, (format_flag++));// (format_flag++,1); break; case 'i': Base = 10; goto ConversionLoop; case 'o': Base = 8; goto ConversionLoop; case 'x': Base = 16; ConversionLoop: itoa(va_arg(ap,int),str_buffer,Base); int b=0; while (str_buffer[b++] != 0){}; b--; if (b<move) { move -=b; for (tmp = 0;tmp<move;tmp++
in „AVR für wenig Geld im LAN“ · Mikrocontroller und Digitale Elektronik ·
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Datei
T6963c.c
va_arg(ap,char *); while(*ptr) { T6963cPutChar(*ptr++); }//lcd_write(*ptr++,1); } break; case 'b': Base = 2; goto ConversionLoop; case 'c': //Int to char format_flag = va_arg(ap,int); T6963cPutChar(format_flag++);// (format_flag++,1); break; case 'i': Base = 10; goto ConversionLoop; case 'o': Base = 8; goto ConversionLoop; case 'x': Base = 16; ConversionLoop: itoa(va_arg(ap,int),str_buffer,Base); int b=0; while (str_buffer[b++] != 0){}; b--; if (b<move) { move -=b; for (tmp = 0;tmp<move;tmp++) { str_null_buffer[tmp] = '0'; } //tmp +
in „AVR für wenig Geld im LAN“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74980111211-1723921.pdf
release Kunde / customer : Artikelnummer / part number : 74980111211 LAN-Übertrager WE-RJ45LAN 10/100BaseT Bezeichnung : description : LAN-Transformer WE-RJ45LAN 10/100BaseT DATUM / DATE : 2012-09-24 A Mechanische Abmessungen / dimensions : B Lötpad / soldering spec. : C Elektrische Eigenschaften / electrical
in „Suche Distributor für Notebook RJ45 Steckverbinder“ · Markt ·
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PDF
12785.pdf
Absolute Maximum Rating System (IEC 134). SYMBOL PARAMETER CONDITIONS MIN. MAX. UNIT VCBO collector-base voltage open emitter BC635 − 45 V BC637 − 60 V BC639 − 100 V VCEO collector-emitter voltage open base BC635 − 45 V BC637 − 60 V BC639 − 80 V V emitter-base voltage open collector − 5 V EBO C collector
in „Stromverstärkung BC-635“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
funktion.txt
switch (by) { case 's': ptr = va_arg(ap,char *); while(*ptr) {lcd_write(*ptr++,1); } break; case 'b': Base = 2; goto ConversionLoop; case 'c': //Int to char format_flag = va_arg(ap,int); lcd_write (format_flag++,1); break; case 'i': Base = 10; goto ConversionLoop; case 'o': Base = 8; goto ConversionLoop; case 'x': Base = 16; //**************************** ConversionLoop: //**************************** itoa(va_arg(ap,int),str_buffer,Base); int b=0; while (str_buffer[b++] != 0){}; b--; if (b<move) { move -=b; for (tmp
in „Ulrich Radigs LCD Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BC846BDNPN.PDF
10 100 B , BASE CURRENT (mA) Figure 11. Base−Emitter Temperature Coefficient http://onsemi.com 4 BC846BDW1T1G, SBC846BDW1T1G, BC847BDW1T1G, SBC847BDW1T1G Series, BC848CDW1T1G TYPICAL CHARACTERISTICS − BC847BDW1T1G,
in „Leckströme für NPN Transistor“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
NXP_BC846_BC546_Series.pdf
Pinning information Table 3. Pinning Pin Description Simplified outline Symbol SOT23; SOT323; SOT416 1 base 2 emitter 3 3 3 collector 1 2 1 2 006aaa144 sym021 SOT54 1 emitter 2 base 3 3 collector 1 2 2 3 1 001aab347 sym026 SOT54A 1 emitter 3 2 base 3 collector 1 2 2 3 001aab348 1 sym026 SOT54 variant 1 emitter
in „Und wieder eine kleine lustige Teilesucherei Mosfet“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CompactFlashSpecifications.pdf
tlGHAX 20 CE Setup before IORD tsuCE(IORD) tELIGL 5 CE Hold following IORD thCE(IORD) tlGHEH 20 IOIS16 Delay Falling from Address tdfIOIS16(ADR) tAVISL 35 IOIS16 Delay Rising from Address tdrIOIS16(ADR) tAVISH 35 Note: The maximum load on -IOIS16 is 1 LSTTL with 50pF total load. All times are in nanoseconds
in „CompactFlash im I/O Mode“ · Mikrocontroller und Digitale Elektronik ·
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PDF
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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PDF
esp8266_hardware_design_guidelines_en.pdf
is connected to the Ground Pad at the bottom of the chip. 1.6.2. Positioning a ESP32 Module on a Base Board If users adopt on-board design, they should pay attention to the layout of the module on the base board. The interference of the base board on the module's antenna performance should be reduced
in „MCP1700-3302 mit ESP8266“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XPort-Pro_PB-16300.pdf
Specifications High performance 32-bit processor Part Number Description On–board memory • 8MB SDRAM/16MB Flash or 16MB SDRAM/16MB Flash XPort Pro RoHS Extended Temperature XPP1002000-02R w/encryption w/Evolution OS w/16MB Serial Interface SDRAM, Bulk • Software selectable data rates from 300 to 921kbps
in „[V] 1x (neu) Lantronix XPORT_PRO -LAN-Serielle Module (28€)“ · Markt ·
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PDF
PCM9574.pdf
.......15 2.7 Installing DRAM (SODIMMs) ...........................................................16 2.7.1 Introduction.................................................................................16 2.7.2 Installing SODIMMs ..................................................................16 2.8
in „16 Pin Postenstecker auf 15pol-Sub-D (Advantech PCM 9574)“ · PC Hard- und Software ·
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PDF
moxa-eds-508a-series-datasheet.pdf
2 km Standards IEEE 802.3 for 10BaseT IEEE 802.3u for 100BaseT(X) and 100BaseFX IEEE 802.1X for authentication IEEE 802.1D-2004 for Spanning Tree Protocol IEEE 802.1w for Rapid Spanning Tree Protocol IEEE 802.1s for Multiple Spanning Tree
in „[V] Diverse Moxa Industrie Switche und Access Points“ · Markt ·
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PDF
2SC5001.pdf
Complementsthe2SA1834. 5 5 . 9 0 1 5 z 0.75 2 Packaging specificationsand h FE . Type 2SC5001 (1)Base 0.92.3 0.65 8 (1) (2) (3)2.3 00.5 Package CPT3 (2)Collector 1.0 hFE QR (3)Emitter Code TL Basic ordering unit (pieces) 2500 z Absolutemaximumratings (Ta=25 C° Parameter Symbol Limits Unit Collector-base voltage VCBO 30 V Collector-emitter voltage VCEO 20 V Emitter-base voltage VEBO 6 V IC 10 A Collector current CP 15 A ∗ Base current IB 2 A Collector power dissipation 1 W PC 10 W(Tc=25 °C) Junction temperature T j 150 °C Storage temperature Tstg −55 to +150 °C ∗ Single
in „Bauteil identifizieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AND9282-D_AC_Zero_Crossing.pdf
a constant voltage over half-wave, when the current through R 2 is sufficient to R 3(this is the base-emitter voltage o2 Q , some 650 mV at power up the base of 1. During the negative half wave the the design operating point), and as consequence a constant Q1 base voltage is forced to about −0.65 V
in „Nulldurchgangserkennung: Optokoppler sperrt dauerhaft“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
version_1p3_assembler.lst
33 DB 33H 5632: 16E9 33 DB 33H 5633: 16EA 33 DB 33H 5634: 16EB 83 DB 83H 5635: ; 5636: 16EC 80 DB 128 5637: 16ED 01 DB 01H 5638: 16EE 67 DB 67H 5639: 16EF 66 DB 66H 5640: 16F0 66 DB 66H 5641: 16F1 16 DB 16H 5642: ; 5643
in „Basic für 80C31“ · Mikrocontroller und Digitale Elektronik ·
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Datei
readme.txt
Stck. 1 Stck. 12 MHz Quarz / 0,08 Euro 1,49 Euro / 20 Stck. 2 Stck. 100nF / 0,06 Euro 1 Stck. 47uF / 16V / 0,05 Euro 1 Stck. (Mini) USB-Buchse auf PCB / 0,23 Euro 1,15 Euro / 5 Stck. 1 Stck. DIP 16 PCB / 0,15 Euro 1,47 Euro / 10 Stck. --------------- ------------- 1,65 Euro 7,20 Euro 1 Stck. ST-Link v2
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PDF
Infineon-BFP520-DS-v02_00-EN-_APs_.pdf
testcondition Min. Typ. Max. Collector emitter breakdownvoltage V(BR)CEO 2.5 3 3.5 V IC=1 mA,I =B, open base Collector emitter leakage current CES – 1 30 2) nA V CE= 2V, BE = 0, E-Bshortcircuited – 1000 2) V = 10 V, V = 0, CE BE E-Bshortcircuited 2) Collector base leakage current CBO 30 V CB=2 V, E =0, open
in „R&S TSMU Radio Network Analyzer“ · HF, Funk und Felder ·
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PDF
AVR911.pdf
occur, or a null pointer is provided. AVRBootloader This is a class derived from the AVRProgrammer base class. It provides a generic interface for the Bootloader application described in Application Note AVR109. It overrides all the virtual methods from its base class, and provides a constructor with equivalent parameters. AVRInSystemProg This is a class derived from the AVRProgrammer base class. It provides a generic interface for the In-System Programmer application described in Application Note AVR910. It overrides all the virtual methods from its base class, and provides a constructor
in „AVR911: Das Ende aller Leiden?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Siedle_HTS811_SET_CA_812-x_EW_210008862-00_PI--.pdf
call as 2-tone call in and insert the cores into the base Compact set with ZERT 811-0 pos- Electrostatic charging plate. Fasten the base plate using 4 sible screws. Close the two openings at • Integrated call silencing via volume the top using rubber stoppers
in „Klingel mit 100 Melodien - last minute Weihnachtsgeschenk“ · Projekte & Code ·
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Datei
out.txt
ZN17modbus_eventbytes20add_recv_event_flushEv 0x08003201 Lc 1 Code De 0x38 50 _ZN6modbus9can_sleepEPb 0x080032ad Lc 1 Code De 0x16 51 _ZN14timer_irq_base12set_callbackEPFvPvES0_ 0x080032c5 Lc 1 Code De 0x12 52 _ZN14timer_irq_base4stopEv 0x080032d9 Lc 1 Code De 0x2c 53 _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
irsnd.c
_t! #define SAMSUNG32_FRAME_REPEAT_PAUSE_LEN (uint16_t)(F_INTERRUPTS * SAMSUNG32_FRAME_REPEAT_PAUSE_TIME + 0.5) // use uint16_t! #define SAMSUNG48_AUTO_REPETITION_PAUSE_LEN (uint16_t)(F_INTERRUPTS * SAMSUNG48_AUTO_REPETITION_PAUSE_TIME + 0.5) // use uint16
in „IRMP - Infrared Multi Protocol Decoder“ · Projekte & Code ·
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Datei
irsnd.c
_t! #define SAMSUNG32_FRAME_REPEAT_PAUSE_LEN (uint16_t)(F_INTERRUPTS * SAMSUNG32_FRAME_REPEAT_PAUSE_TIME + 0.5) // use uint16_t! #define SAMSUNG48_AUTO_REPETITION_PAUSE_LEN (uint16_t)(F_INTERRUPTS * SAMSUNG48_AUTO_REPETITION_PAUSE_TIME + 0.5) // use uint16
in „IRMP - Infrared Multi Protocol Decoder“ · Projekte & Code ·