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PDF
AN-162.pdf
Q22 until its voltage matches that on of Q45 the circuit may be used as a comparator in which the base of Q16. When the voltage on Q16 base goes low, loads to either VCC or ground may be switched. Q45 is ca- pable of sinking 50 mA. Input bias current is typically 50 nA, Q16 turns ‘‘ON,’’ which results
in „LM2907/17 Frequenz-Spannungswandler“ · Mikrocontroller und Digitale Elektronik ·
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Datei
read_it_first.txt
Rotorplatine. Die zuge- hoerigen Programm-Dateien finden sich unter C:\MOCOLOCK\PROGRAMM. ** mocolock supply.bas ** Steuerung der Relais, Auswertung des FB- und DCF-Sig- nals und serielle Datenuebertragung zum Rotor ** mocolock rotor.bas ** Steuerung und Anzeige von Grafiken und Text im Display, Auswertung von seriellen Daten In den Rotor-Programmcode werden folgende Dateien per INCLUDE geladen ** Intro.Bas ** Datentabellen Intro-Grafiken ** Grafiken.Bas ** Datentabellen User-Grafiken ** Texte.Bas ** User-Texte ** Zeichensatz.Bas ** Zeichen-Datentabelle Somit koennen Grafiken und Texte relative einfach
in „Rotor-Display oder Propeller-Clock“ · Mikrocontroller und Digitale Elektronik ·
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Datei
twi_lib.h
------------------------------- //--------------------------------------------- //--- Defines SLA Base Addresses for different TWI ICs //--------------------------------------------- #define DS1631_BaseAdr 0b10010000 // 144 BaseAddress for Temperatur Sensor #define PCF8574_BaseAdr 0b01000000 // 64 BaseAddress for 8-bit I/O Expander - "Regular" #define PCF8574A_BaseAdr 0b01110000 // 112 BaseAddress for 8-bit I/O Expander - Version "A" #define PCF8583_BaseAdr 0b10100000 // 160 BaseAddress for RTC Real Time Clock #define EEPROM_BaseAdr 0b10100000 // 160 BaseAddress
in „TWI MUX per SW an einem Port“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BC337.pdf
Voltage CEO : BC337 45 V : BC338 25 V V Emitter-Base Voltage 5 V EBO C Collector Current (DC) 800 mA P Collector Power Dissipation 625 mW C TJ Junction Temperature 150 °C T Storage Temperature -55 ~ 150 °C STG Electrical Characteristics Ta=25°C unless
in „Lüftersteuerung.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BC337_338.pdf
Voltage CEO : BC337 45 V : BC338 25 V V Emitter-Base Voltage 5 V EBO C Collector Current (DC) 800 mA P Collector Power Dissipation 625 mW C TJ Junction Temperature 150 °C T Storage Temperature -55 ~ 150 °C STG Electrical Characteristics Ta=25°C unless
in „Transistorberechnungen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Butler_OT_XO.pdf
operation. 11.2 Butler’s Emitter Follower Oscillator Operation ward. Let us break the circuit at the base junction and draw its ac equivalent cir- cuit as shown in Figure 11.2. We start at the base in which the base-to-emitter 237 238 Understanding Quartz Crystals and Oscillators Figure 11.1 Butler’s emitter
in „3rd-OT-Oszillator mit NE602 (an Pin 6 und 7)“ · HF, Funk und Felder ·
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PDF
qsc_gx5_sh_ts_sch.pdf
MMST3906 3 13.85v 60v D10 C74 1/8W 3 D29 2 F4 100 10 P50V 10M P1 13.2v 3 2 1 PCNT C10 1 PCNT 2 1 Q11 BAS21 F3 22UF 1 Q40 BAS21 1/8W R20 1/8W 5.3v 2 MMST3906 15.6v 2 R132 20 PCNT 2 MMST3906 2 SP-B 32V 2N5064 C75 0.1UF 2.00K -14V R72 R106 25V 2 R145 R166 15A 5 PCNT 1 PCNT -14v WHEN A-LIM 1 2 1 SP-A 69.8K
in „QSC GX5 negative Spannung am Ausgang“ · Mikrocontroller und Digitale Elektronik ·
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PDF
qsc_gx5_sh_ts_sch.pdf
MMST3906 3 13.85v 60v D10 C74 1/8W 3 D29 2 F4 100 10 P50V 10M P1 13.2v 3 2 1 PCNT C10 1 PCNT 2 1 Q11 BAS21 F3 22UF 1 Q40 BAS21 1/8W R20 1/8W 5.3v 2 MMST3906 15.6v 2 R132 20 PCNT 2 MMST3906 2 SP-B 32V 2N5064 C75 0.1UF 2.00K -14V R72 R106 25V 2 R145 R166 15A 5 PCNT 1 PCNT -14v WHEN A-LIM 1 2 1 SP-A 69.8K
in „QSC GX5 negative Spannung am Ausgang“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Firmware_buglist_2.07.1.pdf
every second: The best would be to disable (or let user to choose in options) it. 10. Display / Time base scaling strange behavior with 512k memory depth. Apply e.g. 1kHz signal, chose 512k memory depth, set time base to 80us/DIV and move the waveform to 500us/DIV: When you now change time base to 40uS/
in „Tekway/Hantek/Voltcraft MSO“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT1734.pdf
°C T 85°C A VCM2 Current Monitor Voltage on PROG Pin IBAT= 10%of I BAT2 RPROG = 2100 , 0.10 0.15 0.20 V 4.55V V CC 8V, Pass PNP Beta > 50, 0°C T 85°C A IDSINK Drive Output Current VDRIVE = 3.5V 20 mA 1734lf 2 LTC1734L ELECTRICAL CHARACTERISTICS The denotes the specifications which apply over the full
in „akku mit solar aufladen, kommt das IC: LT1734L dafür in Frage?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Transistor_2N3904.pdf
Absolute Maximum Rating System (IEC 134). SYMBOL PARAMETER CONDITIONS MIN. MAX. UNIT V collector-base voltage open emitter − 60 V CBO VCEO collector-emitter voltage open base − 40 V VEBO emitter-base voltage open collector − 6 V C collector current (DC) − 200 mA CM peak collector current − 300 mA I
in „12V relais lässt nicht los“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
CH32V003_reg1.asm
SRAM_start = 0x20000000 SRAM_end = 0x20000800 STACK = 0x20000800 TIM2_BASE = 0x40000000 W_WDG_BASE = 0x40002C00 I_WDG_BASE = 0x40003000 I2C_BASE = 0x40005400 PWR_BASE = 0x40007000 AFIO_BASE = 0x40010000 EXTI_BASE = 0x40010400 PORTA_BASE = 0x40010800 PORTC_BASE = 0x40011000 PORTD_BASE = 0x40011400 ADC_BASE = 0x40012400 TIM1_BASE = 0x40012C00 SPI_BASE = 0x40013000 USART_BASE = 0x40013800 DMA_BASE = 0x40020000 RCC_BASE = 0x40021000 FLASH_INTERFACE_BASE = 0x40022000 EXTENDED_MEM_BASE
in „RISCV (CH32V003): GNU Assembler übersetzt "CALL" nicht korrekt (oder bin ich nur zu doof?)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
opto.pdf
Normalized to: N VCE= 10 V i R VCE= 10 V R F = 10 mA n R F= 10 6A R RBE= 10 Ω D C T = 25˚CΩ C F = 20 mA TA= 25˚C T A T P P 1 P I = 10 mA T T 1 F H O O g – – IC I F = 5 mA h D D V Z 0.1 Z o L L l M M a R R g N N e P 0.01 10 0.-60 -40 -20 0 20 40 60 80 100 h o F – LED INPUT CURRENT (mA) T A AMBIENT TEMPERATURE
in „Optokoppler - Relais“ · 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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Datei
core_cm4.h
*/ #define ITM_BASE (0xE0000000UL) /*!< ITM Base Address */ #define DWT_BASE (0xE0001000UL) /*!< DWT Base Address */ #define TPI_BASE (0xE0040000UL) /*!< TPI Base Address */ #define CoreDebug_BASE (0xE000EDF0UL) /*!< Core Debug Base Address */ #define SysTick_BASE (SCS_BASE + 0x0010UL) /*!< SysTick Base Address */ #define NVIC_BASE (SCS_BASE + 0x0100UL) /*!< NVIC Base Address */ #define SCB_BASE (SCS_BASE + 0x0D00UL) /*!< System
in „STM32F3 FPU Aktivieren/Benutzen in STM32CubeIDE“ · Mikrocontroller und Digitale Elektronik ·
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PDF
eSpDS1k2.pdf
DIV (as 2-5-10 step) DS-1102, DS-1202: DC to 200MHz Bandwidth DS-1002: DC to 100MHz BW Limit Approx. 20MHz Range 8 divisions Offset Level ±4 divisions Offset Increments 0.1 division DC accuracy ±3% Time Base DS-1102, DS-1202: Real-time sampling: 200MS/s @ 1Ch, 100MS/s @2Ch (Single Shot) Equivalent sampling
in „USB Oszilloskop“ · Mikrocontroller und Digitale Elektronik ·
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PDF
High_Frequency_VCO_Design_and_Schematics__VA3IUL.pdf
Colpitts VCO There are 3 types of BJT Colpitts VCOs. Common-Collector, Common-Emitter and Common-Base. The most used is Common-Collector configuration where the output is often taken from the collector terminal, simply acting as a buffer for the oscillator connection at the base-emitter terminals. This
in „Realisierung PLL, VCO-Kennlinie nicht linear, problematisch?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
dmx-pwm24.c
10, 10, 11, 11, 11, 12, 12, 12, 13, 13, 13, 14, 14, 14, 15, 15, 16, 16, 16, 17, 17, 18, 18, 19, 19, 20, 20, 21, 22, 22, 23, 23, 24, 25, 25, 26, 27, 28, 28, 29, 30, 31, 32, 32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 43, 44, 45, 46, 47, 49, 50, 51, 53, 54, 56, 57, 59, 61, 62, 64, 66, 68, 69, 71, 73, 75, 77
in „C - Ersatz von switch case.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Agilent_DSO3000-Serie.pdf
mV/div to 5 mV/div Vertical zoom Vertical expand Maximum input voltage 300 Vrms CAT II; derated at 20 dB/decade above 100 kHz to 13 V p-p AC at 3 MHz and above Time base range 2 ns/div to 50 s/div BW limit ~ 20 MHz Input coupling DC, AC, Ground Input impedance 1 MΩ: ≈ 13 pF Time base accuracy 100 ppm
in „Oszilloskope; USB VS Standgerät“ · 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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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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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 128 #define PRESCALER_BITS (1<<CS22) | ( 1 << CS20 ) #define MILLISEC_BASE ( F_CPU / PRESCALER / 1000 ) #define CENTER ( MILLISEC_BASE / 2 ) // // Konfiguration der Servoleitungen // #define NR_SERVOS 18 #define GELENK1_DDR DDRD #define GELENK1_PORT PORTD #define GELENK2_DDR
in „Hexabot und Servoproblemchen.“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
or open leads * to the SDRAM device. * * \param base Base address of the external memory device * * \retval STATUS_OK on success, and \ref status_code_t error code on failure */ static status_code_t ebi_test_data_bus(hugemem_ptr_t base) { hugemem_ptr_t
in „Xmega128-a1-explained und ASF“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Exp_Meth_In_RF_Des--Wes_Hayward.pdf
measuring a crystal oscillator with a receiver using the Hartley. A differential amplifier with heavy base duces a peak collector signal of 3.3 V. This A typical circuit used for the testing is shown drive will behave as a limiting switch. The transforms to a base signal of 1.6 peak V; in Fig 4.20. This
in „Literatur zum Selbstbau von Sendern und Empfängern“ · HF, Funk und Felder ·
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Datei
main.c
STELLARIS_ARM_CORTEX_M4) void timer1_init (void) { SysCtlPeripheralEnable(SYSCTL_PERIPH_TIMER1); TimerConfigure(TIMER1_BASE, TIMER_CFG_32_BIT_PER); TimerLoadSet(TIMER1_BASE, TIMER_A, (F_CPU / F_INTERRUPTS) -1); IntEnable(INT_TIMER1A); TimerIntEnable(TIMER1_BASE, TIMER_TIMA_TIMEOUT); TimerEnable(TIMER1_BASE, TIMER_A); //
in „IRMP-Anwendung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PSMN8R7-80PS_MOSFET.pdf
drain-source voltage Tj≥ 25 °C; Tj≤ 175 °C - 80 V V DGR drain-gate voltage Tj≥ 25 °C; Tj≤ 175 °C; RGS = 20 kΩ - 80 V V GS gate-source voltage -20 20 V I drain current V = 10 V; T = 100 °C; see Figure 1 - 64 A D GS mb V = 10 V; T = 25 °C; see Figure 1 - 90 A GS mb IDM peak drain current pulsed; p ≤ 10 µs;
in „Motoransteuerung Pi und PWM“ · Mikrocontroller und Digitale Elektronik ·
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Datei
servo.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 128 #define PRESCALER_BITS (1<<CS22) | ( 1 << CS20 ) #define MILLISEC_BASE ( F_CPU / PRESCALER / 1000 ) #define CENTER ( MILLISEC_BASE / 2 ) // // Konfiguration der Servoleitungen // #define NR_SERVOS 8 #define SERVO_DDR DDRD #define SERVO_PORT PORTD uint8_t ServoPuls[NR_SERVOS
in „Hexabot und Servoproblemchen.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LTZ1000afe_reference.pdf
7.15 7.45 V Z Z Q1 Q1 Zener Change with Current 1mA ≤ IZ< 5mA 80 240 mV Zener Leakage Current V = 5V 20 200 µA Z Zener Noise lZ= 5mA, 0.1Hz < f < 10Hz 1.2 2 µV P-P 1Q1 = 100µA Heater Resistance IL≤ 100µA 200 300 420 Ω Heater Breakdown Voltage 35 V Transistor Q1 Breakdown IC= 10µA, LVCEO 15 20 V Transistor
in „Elektronikbuch“ · Offtopic ·
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Datei
STM32F100RB_PWM_IO.c
PWM */ // GPIO_PinRemapConfig(GPIO_FullRemap_TIM2, ENABLE); /* Remap Pins if necessary */ TIM_TimeBaseStructure.TIM_Period = 20000 - 1; /* PWM signal length 20 ms */ TIM_TimeBaseStructure.TIM_Prescaler = 24 - 1; /* counter increments every 1 µs */ TIM_TimeBaseInit(TIM2, &TIM_TimeBaseStructure); /* initialize
in „RC Servo Signale mit STM32 einlesen und ausgeben“ · Projekte & Code ·
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PDF
NEXPERIA_BC846_SER.pdf
10 0 10−1 1 10 102 103 10−1 1 10 102 103 C (mA) IC(mA) I /I = 20 /I = 10 C B IC B (1) T = 150 C (1) T = 55 C amb amb (2) T amb= 25 C (2) T amb= 25 C (3) T amb= 55 C (3) T amb= 150 C Fig 3. Selection A: Collector-emitter saturation Fig 4. Selection A: Base-emitter
in „Und wieder eine kleine lustige Teilesucherei Mosfet“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
2SA1943_datasheet_en_20160107__2_.pdf
amplifier output stage. Absolute Maximum Ratings (Ta = 25°C) Characteristics Symbol Rating Unit Collector-base voltage VCBO −230 V Collector-emitter voltage VCEO −230 V Emitter-base voltage V −5 V EBO Collector current IC −15 A Base current IB −1.5 A Collector power dissipation (Tc = 25°C) PC 150 W JEDEC ― Junction
in „Gibt es noch brauchbare Transistoren für den Audio-Bereich?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
APPCHP6.PDF
forward voltage is quite low (about an npn transistor T 1and a pnp transistor T .2The collector 1/20th of the time taken when the thyristor is of T1provides the base current for T .2Base current for T 1 is provided by the external gate current in addition to the gate-triggered). As a general rule, however
in „Motorsteuerung verbessern bei el. Nähmaschine“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
APPCHP6.pdf
forward voltage is quite low (about an npn transistor T 1and a pnp transistor T .2The collector 1/20th of the time taken when the thyristor is of T1provides the base current for T .2Base current for T 1 is provided by the external gate current in addition to the gate-triggered). As a general rule, however
in „defekter Drehzahlsteller eines Schwingschleifers“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
APPCHP6.PDF
forward voltage is quite low (about an npn transistor T 1and a pnp transistor T .2The collector 1/20th of the time taken when the thyristor is of T1provides the base current for T .2Base current for T 1 is provided by the external gate current in addition to the gate-triggered). As a general rule, however
in „AQH2213 SSR Snubber dimensionieren“ · Analoge Elektronik und Schaltungstechnik ·
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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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PDF
Freischaltung.pdf
disappearance issue. 7. Resolved the issue where statisitcs is performed only once under 50 ms time base. 8. Resolved the issue where system crash occured when modifying the source of All Measure under zoomed time base in measurement settings. 9. Resolved the issue of invalid setting of screen grid. 10
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PDF
PCM9574.pdf
2.12.4 Reset switch ..............................................................................20 2.13 Power connectors (FAN1, CN14, CN6)..............................................20 2.13.1 Peripheral power connector, -5 V, -12 V(CN14) .....................20 2.13.2 Main power connector, +5 V,
in „16 Pin Postenstecker auf 15pol-Sub-D (Advantech PCM 9574)“ · PC Hard- und Software ·
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Datei
version_1p3_assembler.lst
LOCATION 6088: 194B 02 09 5C LJMP ISTA1 6089: ; 6090: 194E 20 E0 2A IBLK1: JB ACC.0,FP_BASE6 ;FLOATING POINT INPUT 6091: 1951 60 19 JZ T_L ;DO OUTPUT ON 80H 6092: 1953 90 19 6D MOV DPTR,#FP_BASE-2 6093: 1956 73 JMP @A+DPTR 6094: ; ASEM-51 V1.3 Copyright (c) 2002
in „Basic für 80C31“ · 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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Datei
Arrr12.asm
msg02: ldi zl,low (msg_base + msg_len *2);init z pointer lo_byte ldi zh,high(msg_base + msg_len *2);init z pointer hi_byte ret msg03: ldi zl,low (msg_base + msg_len *3);init z pointer lo_byte ldi zh,high(msg_base + msg_len *3);init z pointer hi_byte ret msg04: ldi zl,low (msg_base + msg_len *4);init z pointer lo_byte ldi zh,high(msg_base + msg_len *4);init z pointer hi_byte ret msg05: ldi zl,low (msg_base + msg_len *5);init z pointer lo_byte ldi zh,high(msg_base + msg_len *5)
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PDF
activity_recognition_from_accelerometer_data.pdf
for different activities Correlation is calculated between each pair of axes as the than that of base-level classifiers, base-level-classifiers are ratio of the covariance and the product of the standard devia- known to outperform meta-level-classifiers on several data tions uorr)xGy* ¿ uτ xxyy*. Correlation
in „Menschliche Bewegung detektieren (laufen von gehen unterscheiden)“ · 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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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
BD139-16.pdf
Absolute Maximum Rating System (IEC 134). SYMBOL PARAMETER CONDITIONS MIN. MAX. UNIT VCBO collector-base voltage open emitter BD135 − 45 V BD137 − 60 V BD139 − 100 V V collector-emitter voltage open base CEO BD135 − 45 V BD137 − 60 V BD139 − 80 V VEBO emitter-base voltage open collector − 5 V I collector
in „Transistor als Schalter (BD139) richtig auslegen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bd139.pdf
Absolute Maximum Rating System (IEC 134). SYMBOL PARAMETER CONDITIONS MIN. MAX. UNIT VCBO collector-base voltage open emitter BD135 − 45 V BD137 − 60 V BD139 − 100 V V collector-emitter voltage open base CEO BD135 − 45 V BD137 − 60 V BD139 − 80 V VEBO emitter-base voltage open collector − 5 V I collector
in „Basisvorwiderstand Berechung beim BD139 richtig?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TEKTDS1000B_2000B.PDF
1.0 GS/s 1.0 GS/s 1.0 GS/s 2.0 GS/s 2.0 GS/s each channel Record Length 2.5 K points at all time-bases on all models Vertical 8-Bits Resolution Vertical 2 mV to 5 V/div on all models with calibrated fine adjustment Sensitivity *2Bandwidth is 20 MHz at 2 mV/div, all models. 2 Digital Storage Oscilloscopes
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Datei
stm32f103x6.h
) #define TIM2_BASE (APB1PERIPH_BASE + 0x00000000UL) #define TIM3_BASE (APB1PERIPH_BASE + 0x00000400UL) #define RTC_BASE (APB1PERIPH_BASE + 0x00002800UL) #define WWDG_BASE (APB1PERIPH_BASE + 0x00002C00UL) #define IWDG_BASE (APB1PERIPH_BASE + 0x00003000UL) #define USART2_BASE (APB1PERIPH_BASE + 0x00004400UL) #define I2C1_BASE (APB1PERIPH_BASE + 0x00005400UL) #define CAN1_BASE (APB1PERIPH_BASE + 0x00006400UL) #define BKP_BASE (APB1PERIPH_BASE
in „System Workbench für STM32 Anfängerfragen“ · PC Hard- und Software ·
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PDF
167622-da-01-en-bd_243b_243c_244b_244c.pdf
BD244B BD244C Unit ÎÎÎÎÎÎÎÎÎÎÎÎ ÎÎÎÎÎÎ ÎÎÎ ÎÎ Collector–Emitter Voltage VCEO 80 100 Vdc ÎÎÎÎÎCollector–Base Voltage VCB 80 100 Vdc ÎÎÎÎÎEmitter–Base Voltage VEB 5.0 ÎÎÎ Vdc ÎÎÎÎÎCollector Current — Continuous I 6 Adc C ÎÎÎÎÎÎÎÎÎÎÎÎ ÎÎÎÎÎÎÎÎÎ ÎÎ 10 ÎÎÎÎÎÎÎÎÎÎÎÎ ÎÎÎÎÎÎÎÎÎ ÎÎ B 2.0 Adc ÎÎÎÎÎÎÎÎÎÎÎÎ ÎÎÎÎÎÎÎÎÎ
in „Lüfter mit Wiederstand regeln“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FMMT491.pdf
Zetex Semiconductors plc 2007 FMMT491 Absolute maximum ratings Parameter Symbol Limit Unit Collector-base voltage VCBO 80 V Collector-emitter voltage VCE0 60 V Emitter-base voltage VEBO 7 V (a) I 1 A Continuous collector current C Peak pulse current I 2 A CM Power dissipation at T25°C(a) PD 500 mW A Linear
in „Wozu diese Schaltung? Funtkionsweise? LEDs in Kfz.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PN2222-D.PDF
noted a Symbol Parameter Test Condition Min. Max. Units BVCBO Collector-Base Breakdown Voltage IC=10µA, E =0 60 V BVCEO Collector Emitter Breakdown VoltagIC=10mA, B =0 30 V BVEBO Emitter-Base Breakdown Voltage IE=10µA, C =0 5 V CBO Collector Cut-off Current VCB=50V, E =0 0.01
in „Arduino - Lüfter mit PN2222 oder Tip120“ · Mikrocontroller und Digitale Elektronik ·