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Datei
asm-defs.h
Assembler, C, C++) */ /*****************************************************************/ #ifdef __AVR_PM_BASE_ADDRESS__ /* Devices with a linear address space: Flash memory is seen in the RAM address space at an offset of __AVR_PM_BASE_ADDRESS__ and can be accessed by LD*. This is the case for devices like
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PDF
qsc_gx5_sh_ts_sch.pdf
V- BAL 5 1 PCNT R160 R165 10 PCNT 1 PCNT P2 (GRAY) (BLACK) 1 PCNT 1 PCNT 1 13 1 PCNT A1 1/2W R 5 -16v 16v P2 1/2W 0.1 0.1 MAC12HCM 2 E V P2 1/2W 0.1 0.1 50V 1/8W 1 1 J10 1/8W C12 1/10W 44mv 1/10W - 1 COMPARATOR R87 R80 5 PCNT 5 PCNT D7 Q63 Q65 R 5 COMPARATOR R155 R157 5 PCNT 5 PCNT C C FEMALE 9 R25
in „QSC GX5 negative Spannung am Ausgang“ · Mikrocontroller und Digitale Elektronik ·
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PDF
qsc_gx5_sh_ts_sch.pdf
V- BAL 5 1 PCNT R160 R165 10 PCNT 1 PCNT P2 (GRAY) (BLACK) 1 PCNT 1 PCNT 1 13 1 PCNT A1 1/2W R 5 -16v 16v P2 1/2W 0.1 0.1 MAC12HCM 2 E V P2 1/2W 0.1 0.1 50V 1/8W 1 1 J10 1/8W C12 1/10W 44mv 1/10W - 1 COMPARATOR R87 R80 5 PCNT 5 PCNT D7 Q63 Q65 R 5 COMPARATOR R155 R157 5 PCNT 5 PCNT C C FEMALE 9 R25
in „QSC GX5 negative Spannung am Ausgang“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Devices.txt
/5 5 BC850SMD 5 BC517 5 BC516 5 BC237 5 BAS70 5 AT90S8535P 5 AK500/3 5 AK300/3 5 78L05SMD 5 74LS74N 5 74LS20N 5 74LS138N 5 74LS10N 5 74LS03N 5 74LS00N 5 74HC595D 5 74HC154N 5 555N 5 4067N 5 4052 5 3,81/1,4 5 2,15/1,0 5 1N4728 5 1MX16 4 X1206
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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PDF
TE28F128J3D75.pdf
0.53 2.4 sec 1,2,3,4 W16 WHQV4 Block Erase Time 1.0 4.0 sec 1,2,3,4 tEHQV4 W16 WHQV5 Set Lock-Bit Time 50 60 µs 1,2,3,4,9 tEHQV5 WHQV6 W16 tEHQV6 Clear Block Lock-Bits Time 0.5 0.70 sec 1,2,3,4,9 WHRH1 W16 t Program Suspend
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MT6223C.pdf
Base 8013_0000h UART 1 16 UART1 Base 8014_0000h SIM Interface 16 SIM Base 8015_0000h Pulse-Width Modulation Outputs 16 PWM Base 8016_0000h Alerter Interface 16 ALTER Base 8017_0000h Security Engine for JTAG
in „GSM-Modul (SIM908) nur analoge Ausgänge für Anruf?“ · HF, Funk und Felder ·
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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
servo.c
// // Programm fuer einen ATmega16 // #define F_CPU 11056000UL #include <avr/io.h> #include <avr/interrupt.h> #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 128 #define PRESCALER_BITS (1<<CS22) | ( 1 << CS20 ) #define MILLISEC_BASE ( F_CPU / PRESCALER / 1000 ) #define
in „Hexabot und Servoproblemchen.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BCY59.pdf
Collector-emitter VoltageBEV= 0) 32 45 V V CEO Collector-emitter VoltagB (I = 0) 32 45 V V EBO Emitter-base Voltage CI= 0) 7 V C Collector Current 200 mA I Base Current 50 mA B Ptot Total Power Dissipation atamb 25 ⋅C 0.39 mW at Tcase 45 ⋅C 1 W T stg Tj Storage and Junction Temperature – 65 to 200 ⋅C January
in „HiFi Alternative für BC237, BC107 gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
TB_la_register.vhd
tc.pattern_edge_comb); tmp_length_value <= to_integer(tc.length_value); wr <= '1'; tic; set(TRIGGER0_BASE + TRIGGER_PATTERN_VALUE, tc.pattern_value); set(TRIGGER0_BASE + TRIGGER_PATTERN_MASK, tc.pattern_mask); set(TRIGGER0_BASE + TRIGGER_EDGE_RISING, tc.edge_rising); set(TRIGGER0_BASE + TRIGGER_EDGE_FALLING, tc.edge_falling); set(TRIGGER0_BASE + TRIGGER_EDGE_MASK, tc.edge_mask); set(TRIGGER0_BASE + TRIGGER_COMBINE, tmp_pattern_edge_comb); set(TRIGGER0_BASE + TRIGGER_LENGTH_VALUE, tmp_length_value); -- XXX invert wr <= '0'; end procedure write
in „Modelsim Problem- bidirektionaler Bus“ · FPGA, VHDL & Co. ·
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Bild
Schaltplan eines HF-Verstärkers
Input -10dBm @3-30MHz Input 3dB ATT C14 103 R12 200R C12 103 R15 10R R22 000R VCC_Base R5 00R T1 2N5109 VCC_TX C18 103 R11 56R C10 103 R13 56R SC3387 C15 103 R1 103 C13 103 VCC_TX_Base R8 00R C19 103 T2 2N5109 VCC_TX_Base C5 103 R9 00R L3 220uH Q1 IRF530 Idq=30mA VCC_IN C1 104 1000U 16V
in „MiniPA100 Schema“ · HF, Funk und Felder · · Schaltpläne
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Datei
main.c
void HAL_TIM_PeriodElapsedCallback(TIM_HandleTypeDef *htim) { if(TIM2==htim->Instance) { HAL_TIM_Base_Stop_IT(&htim2); HAL_TIM_Base_Start_IT(&htim12); HAL_GPIO_TogglePin(LD2_GPIO_Port ,LD2_Pin); //HAL_GPIO_WritePin(LD2_GPIO_Port, LD2_Pin, GPIO_PIN_SET); } else if(TIM12==htim->Instance) { HAL_TIM_Base_Stop_IT(&htim12); HAL_TIM_Base_Start_IT(&htim3); HAL_GPIO_TogglePin(LD2_GPIO_Port ,LD2_Pin); //HAL_GPIO_WritePin(LD2_GPIO_Port, LD2_Pin, GPIO_PIN_RESET); } else if(TIM3==htim->Instance) { HAL_TIM_Base_Stop_IT(&htim3); HAL_TIM_Base_Start_IT
in „STM32 Signalerzeugung für Bitmuster“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2305_ds_2-1007_en__2_.pdf
TETRA mobile station and base station tests from the base station’s power amplifier. relevant for service • Intuitive and failsafe user interface Complete Mobile Station Measurement Functionality to Provide the Full Picture • Made
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PDF
Firmware_buglist_2.06.3.pdf
channel mode and 1GSs, but test signal need to be higher to get same error) and applying for example 16MHz square wave the waveform is switching between proper square: and crippled square every second: 15. Display / Time base scaling strange behavior. When you apply e.g. 1kHz signal, set time base to 80us
in „TEKWAY DST1xx2B Oszilloskop“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Firmware_buglist_2.06.3.pdf
channel mode and 1GSs, but test signal need to be higher to get same error) and applying for example 16MHz square wave the waveform is switching between proper square: and crippled square every second: 15. Display / Time base scaling strange behavior. When you apply e.g. 1kHz signal, set time base to 80us
in „TEKWAY DST1xx2B Oszilloskop“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM7001.pdf
50, and 100 kHz • Band-switching outputs (3 bits) • Controller clock output (400 kHz) • Clock time base output (8 Hz) • Serial input circuit for data input (using the CE, CL, and DATA pins) SANYO: DIP16 unit: mm 3036B-MFP20 [LM7001JM] SANYO: MFP20 SANYO Electric Co.,Ltd. Semiconductor Bussiness Headquarters
in „PLL per Software“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2N5088-89.pdf
Silicon Features • Pb−FreePackages are Available* http://onsemi.com 3 COLLECTOR 2 MAXIMUM RATINGS BASE Rating Symbol Value Unit Collector − Emitter Voltage V Vdc CEO 1 EMITTER 2N5088 30 2N5089 25 Collector − Base Voltage VCBO Vdc 2N5088 35 TO−92 2N5089 30 CASE 29 Emitter − Base Voltage VEBO 3.0 Vdc STYLE
in „rauscharmer NPN min 200v gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
setup.c
> #include <mach/portmux.h> #include <linux/fb.h> #include <video/atmel_lcdc.h> #define PB_EXTINT_BASE 25 #define TS_IRQ 0 #define PIN_TS_EXTINT GPIO_PIN_PB(PB_EXTINT_BASE+TS_IRQ) /* Sharp LQ043T3DX0x (or compatible) panel */ static struct fb_videomode __initdata lcd_fb_modes[] = { { .name = "480x272
in „Probleme mit ADS7846 beim NGW100“ · Mikrocontroller und Digitale Elektronik ·
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Datei
setup.c
> #include <mach/portmux.h> #include <linux/fb.h> #include <video/atmel_lcdc.h> #define PB_EXTINT_BASE 25 #define TS_IRQ 0 #define PIN_TS_EXTINT GPIO_PIN_PB(PB_EXTINT_BASE+TS_IRQ) /* Sharp LQ043T3DX0x (or compatible) panel */ static struct fb_videomode __initdata lcd_fb_modes[] = { { .name = "480x272
in „Probleme mit ADS7846 beim NGW100“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CNW82.pdf
diode which is optically coupled to an NPN phototransistor. 6 The CNW82 and CNW84 do not have the base pin connected for CNW83 improved noise immunity. 1 CNW84 FEATURES • Wide body DIL encapsulation, with a pin distance of 10.16 mm. 6 CNW85 Minimum creepage distance 10 mm. 1 High current transfer ratio
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PDF
u2270b.pdf
U2270B Read / Write Base Station IC Description IC for IDIC ∪ *)read-write base stations specific distances. It also includes all signal-processing circuitswhich are necessary to form the small inputsignal The U2270B is a bipolar
in „Pollin RFID Entwicklungsboard“ · Mikrocontroller und Digitale Elektronik ·
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Datei
verifynrf24.py
95m%s\033[0m' , 'lblue':'\033[96m%s\033[0m' } def color(string, color = 'grey'): if color in color_base: return color_base[color] % string else: return color_base['grey'] % string def make_byte(s): #byt = int(s[0])<<7 | int(s[1])<<6 | int(s[2])<<5 | int(s[3])<<4 | int(s[4])<<3| int(s[5])<<2 | int(s[6]
in „Wechselrichter Hoymiles HM-xxxx 2,4 GhZ Nordic Protokoll?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ZDT6790.pdf
ELECTRICAL CHARACTERISTICS (at T amb = 25°C). PARAMETER SYMBOL MIN. TYP. MAX. UNIT CONDITIONS. Collector-Base Breakdown V 45 V I=100 A Voltage (BR)CBO C Collector-Emitter V (BR)CEO 45 V IC=10mA* Breakdown Voltage Emitter-Base Breakdown V (BR)EBO 5 V IE100 A Voltage Collector Cutoff Current CBO 0.1 A VCB=35V
in „N-Channel und P-Channel Mosfet in gemeinsamen Gehäuse“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
USB-DMX512_EN.pdf
dark field. Icon is custom value. Icon is pause in whole. Icon is overall control output. 2 . Lamp base produced: The easiest way to creat light treasury: Click system start>procedure>FreeStyler>fixture Creator,the production of light emerging library interface Page 5 of 16 According to MAC500M4 as
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PDF
ST20450.pdf
transfers to/from register bank 1 This register contains refresh information. ConfigDataField1 EMI base address + #04 Read/Write Bit Bit field Function Units 1:0 PortSize Bit width of the bank (8,16, or 32-bits). PortSize1:0 Bank width 00 Invalid 01 32-bits 10 16-bits 11 8-bits 6:2 ShiftAmount Defines
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Datei
tools_LC_Meter.c
of pulses */ /* frequencies */ uint32_t LC_Freq; /* measured frequency (in Hz) */ uint32_t f_i; /* base frequency (in Hz) */ uint32_t f_x; /* frequency with C_x/L_x (in Hz) */ uint16_t f_n = 140; /*(in Hz) offsets the zero measurement of the inductance. Example - "At 300 the initial value of the inductance
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PDF
TL497A_TEX.pdf
70⋅C, and the TL497AI is characterized for operation from –40⋅C to 85⋅C. functional block diagram BASE † 11 BASE DRIVE † 12 13 Current CUR LIM SENS Limit Sense 3 FREQ CONTROL 2 Oscillator INHIBIT COMP INPUT 1 10 COL OUT SUBSTRATE 4 1.2-V 8 Reference EMIT OUT CATHODE 6 7 ANODE †BASE and BASE DRIVE are
in „Negative Spannungen...“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Storm_Matrixtastatur_Datasheet.pdf
with ) 4000 series) (K ey e y) Key) 2 5. 0 (12 K Key) 00 (12 y) 93.0 83 00 82 50 64 .0 0 ( 6 74. (16 Ke 0 4 , (12 & (4 Ke Ø 4.5 83.0 3.00 12 & 16 K y ) Pane 9 16 Ke ey) y) Detai Pane 2 75 10 4 R 3.75 0( 2 h 9 4, .0 12 y 0 &1 Ke (, 6K 1 12 y 0( &1 ) 30 Panel Cut-out 6 )9 e e Details for Under Sealing
in „Neue Storm 4x4 Matrixtastatur mit roter Hintergrundbeleuchtung“ · Markt ·
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PDF
calormatik230.pdf
di H 2 — — — H 3 — — — riscaldamento La centralina di termoregolazione pre- Tab. 4.2 Programma di base impostato in senta un programma base (vedi tab. 4.2) fabbrica Istruzioni per l‘uso calorMATIC 230 CH IT 11 4 Uso È possibile adeguare il programma di Nella tabella seguente sono riportati base impostato
in „Heizungsthermostat 3-4-5 selber schalten“ · Haus & Smart Home ·
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Datei
fastAdcClassV1.py
array import array from time import ticks_us, ticks_diff import micropython class FastADC: # _ADC_BASE = const(0x4004c000) # rp2040 _ADC_BASE = const(0x400a0000) # rp2350 _ADC_CS = const(0x00 >> 2) _ADC_FCS = const(0x08 >> 2) _ADC_FIFO = const(0x0c >> 2) def __init__(self, adc_pin): self.adc = ADC(adc_pin
in „Micropython PiPico constant sampling ADC“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Fehlermeldung.txt
main.o build/Debug/Cygwin-Windows/main.o: In function `_ZN5boost11basic_regexIcNS_12regex_traitsIcNS_16cpp_regex_traitsIcEEEEE6assignEPKcj': /cygdrive/C/Programme/Boost-1.34.1/include/boost/detail/sp_counted_base_gcc_x86.hpp:(.text$_ZN5boost11regex_matchIPKcSaINS_9sub_matchIS2_EEEcNS_12regex_traitsIcNS
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Datei
pt1000_rp2040.ino
Leitungen unbedingt anpassen #define PT_FAKTOR 3.85 // schon mit 1000.0 skaliert #define IO_BANK0_BASE 0x40014000UL // ist auch schon in addressmap.h definiert #define GPIO0_CTRL (*(volatile unsigned int*)(IO_BANK0_BASE + 0x4u)) #define GPIO1_CTRL (*(volatile unsigned int*)(IO_BANK0_BASE + 0xcu)) #define
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PDF
BU208A.pdf
VCES Collector-Emitter VoltageBE= 0) 1500 V VCEO Collector-Emitter VoltagB (I = 0) 700 V V Emitter-Base Voltage (I = 0) 10 V EBO C IC Collector Current 8 A ICM Collector Peak Currentp(t < 5 ms) 15 A BU208A BU508A BU508AFI TO - 3 TO - 218 ISOWATT218 P Total Dissipation at T = 25 C 150 125 50 W tot c Visol
in „Qualität heutiger Transistoren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
bc547.pdf
BC546, CEO=65V 9 Low Noise: BC549, BC550 5 Complement to BC556 ... BC560 5 0 1 TO-92 1. Collector 2. Base 3. Emitter NPN Epitaxial Silicon Transistor Absolute Maximum Ratings T a25°C unless otherwise noted Symbol Parameter Value Units VCBO Collector-Base Voltage: BC546 80 V : BC547/550 50 V : BC548/549
in „Mikrocontrollerboard: Funktioniert das?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bc547.pdf
BC546, CEO=65V 9 Low Noise: BC549, BC550 5 Complement to BC556 ... BC560 5 0 1 TO-92 1. Collector 2. Base 3. Emitter NPN Epitaxial Silicon Transistor Absolute Maximum Ratings T a25°C unless otherwise noted Symbol Parameter Value Units VCBO Collector-Base Voltage: BC546 80 V : BC547/550 50 V : BC548/549
in „Mikrocontrollerboard: Funktioniert das?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bc547.pdf
BC546, CEO=65V 9 Low Noise: BC549, BC550 5 Complement to BC556 ... BC560 5 0 1 TO-92 1. Collector 2. Base 3. Emitter NPN Epitaxial Silicon Transistor Absolute Maximum Ratings T a25°C unless otherwise noted Symbol Parameter Value Units VCBO Collector-Base Voltage: BC546 80 V : BC547/550 50 V : BC548/549
in „Displaybeleuchtung mit PWM dimmen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
18481_BC547_data.pdf
CEO=65V 9 • Low Noise: BC549, BC550 5 • Complement to BC556 ... BC560 5 0 1 TO-92 1. Collector 2. Base 3. Emitter NPN Epitaxial Silicon Transistor Absolute Maximum Ratings T a25°C unless otherwise noted Symbol Parameter Value Units VCBO Collector-Base Voltage: BC546 80 V : BC547/550 50 V : BC548/549
in „NPN Transistor Kennlinie verstehen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BC547.pdf
CEO=65V 9 • Low Noise: BC549, BC550 5 • Complement to BC556 ... BC560 5 0 1 TO-92 1. Collector 2. Base 3. Emitter NPN Epitaxial Silicon Transistor Absolute Maximum Ratings T a25°C unless otherwise noted Symbol Parameter Value Units VCBO Collector-Base Voltage: BC546 80 V : BC547/550 50 V : BC548/549
in „Arduino. Transistor schaltet nicht richtig“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BC547B.pdf
CEO=65V 9 • Low Noise: BC549, BC550 5 • Complement to BC556 ... BC560 5 0 1 TO-92 1. Collector 2. Base 3. Emitter NPN Epitaxial Silicon Transistor Absolute Maximum Ratings T a25°C unless otherwise noted Symbol Parameter Value Units VCBO Collector-Base Voltage: BC546 80 V : BC547/550 50 V : BC548/549
in „Basiswiderstand richtig berechnet?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BC547_datasheet.pdf
CEO=65V 9 • Low Noise: BC549, BC550 5 • Complement to BC556 ... BC560 5 0 1 TO-92 1. Collector 2. Base 3. Emitter NPN Epitaxial Silicon Transistor Absolute Maximum Ratings T a25°C unless otherwise noted Symbol Parameter Value Units VCBO Collector-Base Voltage: BC546 80 V : BC547/550 50 V : BC548/549
in „Frage zur Berechnung von Basiswiderstand BC547B mit Motor 5V“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
gsm.c
#include "board.h" #include "bits.h" #include "gps.h" #include "gsm.h" AT91PS_PIO g_pPioA = AT91C_BASE_PIOA; AT91PS_PMC g_pPMC = AT91C_BASE_PMC; AT91PS_USART g_pUSART1 = AT91C_BASE_US1; AT91PS_PDC g_pPDC1 = AT91C_BASE_PDC_US1; AT91PS_MC g_pMC = AT91C_BASE_MC; void InitUSART1(void) { g_pPioA->PIO_PDR
in „GSM sim300 mit SAM7-EX256 kommunizieren“ · 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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Datei
gps.c
#include "bits.h" #include "at91sam7x256.h" #include "gps.h" AT91PS_PIO u_pPioA = AT91C_BASE_PIOA; //AT91PS_PIO u_pPioB = AT91C_BASE_PIOB; AT91PS_PMC u_pPMC = AT91C_BASE_PMC; AT91PS_USART u_pUSART0 = AT91C_BASE_US0; AT91PS_PDC u_pPDC0 = AT91C_BASE_PDC_US0; AT91PS_MC u_pMC = AT91C_BASE_MC; void
in „Data aus USART vom SAM7-EX256 lesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BC320-Motorola.pdf
BC BC BC Unit BC321, A, B 320 321 322 Collector-EmitteVoltage VCEO 45 30 20 Vdc BC322, B Collector-BaseVoltage VCBO 50 40 30 Vdc Emitter-BaseVoltage VEBO 6.0 5.0 5.0 Vdc CollectorCurrent- Continuous ic 150 mAdc CASE 29-02, STYLE 1 TotalDevice Dissipatio@Ta = 25°C PD 625 mW TO-92 (TO-226AA) Derateabove
in „[V] ca. 250-280St 2N3702 (PNP TO92) und 128St. BC320 (PNP TO92)“ · Markt ·
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PDF
BC320-Motorola.pdf
BC BC BC Unit BC321, A, B 320 321 322 Collector-EmitteVoltage VCEO 45 30 20 Vdc BC322, B Collector-BaseVoltage VCBO 50 40 30 Vdc Emitter-BaseVoltage VEBO 6.0 5.0 5.0 Vdc CollectorCurrent- Continuous ic 150 mAdc CASE 29-02, STYLE 1 TotalDevice Dissipatio@Ta = 25°C PD 625 mW TO-92 (TO-226AA) Derateabove
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PDF
683405.pdf
R R DETECTOR BV CEO Collector-Emitter Breakdown VoltagIC= 1.0mA, F = 0 30 100 V BV CBO Collector-Base Breakdown Voltage IC= 100µA, F = 0 70 120 V BV ECO Emitter-Collector Breakdown VoltagIE= 100µA, F = 0 7 10 V ICEO Collector-Emitter Dark Current V CE= 10V, F = 0 1 50 nA ICBO Collector-Base Dark Current
in „optokoppler_Eingangsspannung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GA-5486AL.pdf
Guide Total Memory Bank 0 Bank 1 Bank 2 Bank 3 4 MB 4 MB 8 MB 8 MB 8 MB 4 MB 4 MB 12 MB 8 MB 4 MB 16 MB 16 MB 16 MB 8 MB 8 MB 16 MB 4 MB 4 MB 4 MB 4 MB 20 MB 16 MB 4 MB 24 MB 16 MB 4 MB 4 MB 24 MB 16 MB 8 MB 32 MB 32 MB 32 MB 16 MB 16 MB 64 MB 16 MB 16 MB 16 MB 16 MB 64 MB 32 MB 32 MB 3.7 SPEAKER CONNECTOR
in „Sucher 486er bis DX4 100“ · Markt ·
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startup_stm32f0xx.S
3 #ifdef __HEAP_SIZE .equ Heap_Size, __HEAP_SIZE #else .equ Heap_Size, 0xC00 #endif .globl __HeapBase .globl __HeapLimit __HeapBase: .if Heap_Size .space Heap_Size .endif .size __HeapBase, . - __HeapBase __HeapLimit: .size __HeapLimit, . - __HeapLimit .section .isr_vector .align 2 .globl __isr_vector
in „STM32F0 - Boot ins SRAM mit OpenOCD“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BC546-D.PDF
LEAD BENT LEAD BC548 30 TAPE & REEL Collector - Base Voltage VCBO Vdc BC546 80 BC547 50 BC548 30 MARKING DIAGRAM Emitter - Base Voltage VEBO 6.0 Vdc Collector Current − Continuous C 100 mAdc BC 54xy Total Device DissipationA@ T = 25°C P D 625 mW AYWW
in „5V Solid-State-Relais über 3.3V Logik steuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
749196111.pdf
Testbedingungen / Wert / value Einheit / unit tol. test conditions Induktivität / L inductance 10 kHz / 0,1 V base 27,4 µH ±20% 1,5 Sättigungsstrom / saturation current |∆L/L|<10% Isat base 0,22 A typ. Nennstrom / ∆T=40 K Irms base 0,55 A typ. rated current DC-Widerstand / R , , DC-resistance @ 20°C DC base 344,0 mΩ max. 9 1 Spannungs-Zeit-Fläche / Voltage-µsecond ∫Udt 32,9 µVs max. Speicherenergie / E peak base 0,77 µJ typ. storage energy 2,0 Streuinduktivität 100 kHz / 0,1V L 0,21 µH typ. leakage inductance s base Hochs pannungstest / Hipot test 3mA / 1sec HV 500 VDC D Prüfgeräte / test equipment : E Testbedingungen
in „Wirkungsgrad beim Schaltreger mit galv. Trennung (Flyback)“ · Mikrocontroller und Digitale Elektronik ·