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09DE0009_eHZ_tech_Infos.pdf
Nennspannung U : 4-Leiter: 3 x 230 / 400 V n 2-Leiter: 230 V (wahlweise L1, L2 oder L3) Anlaufstrom Ist 0,02 A Mindeststrom I min : 0,1 A Übergangsstrom l : 0,5 A tr Referenzstrom l ref= 5 A (= 10 xtr ) Grenzstrom I max : 60 A Nennfrequenz: 50 Hz, jede Phasenfolge ist zulässig. Anschlussart: direkt angeschlossen
in „eHZ - Auslesen über rückseitige IR-Schnittstelle (Elektronischer Haushaltszähler)“ · Haus & Smart Home ·
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LM317.PDF
40 V, 1, 2 IAdj – 0.2 5.0 A 10 mA IL max, PD Pmax Reference Voltage, 3.0 V IV OV 40 V, 3 V ref 1.2 1.25 1.3 V 10 mA IO Imax, D Pmax Line Regulation (Note 3), 3.0 VI O –V 40 V 1 Reg line – 0.02 0.07 % V Load Regulation (Note 3), 10 mA O I max 2 Regload V 5.0 V – 20 70 mV O VO ↓ 5.0 V
in „Spannungsregler für Kleinverbraucher bei 1,2V gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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LT3465.pdf
75 SW VOUT % V Y IN C 70 CIN LT3465/ COUT I 1µF LT3465A 0.22µF I 65 E CTRL FB GND R1 60 10Ω 3465A TA02a 55 CIN TAIYO YUDEN JMK107BJ105 LT3465 COUT: AVX 0603YD224 LT3465A L1: MURATA LQH32CN220 50 0 5 10 15 20 LED CURRENT (mA) 3465A TA02b 3465afa 13 LT3465/LT3465A U TYPICAL APPLICATIO Li-Ion to Five White
in „s65 display stromversorgung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
FT8_preview.h
graphics engine specific macros useful for static display list generation */ #define ALPHA_FUNC(func,ref) ((9UL<<24)|(((func)&7UL)<<8)|(((ref)&255UL)<<0)) #define BEGIN(prim) ((31UL<<24)|(((prim)&15UL)<<0)) #define BITMAP_HANDLE(handle) ((5UL<<24)|(((handle)&31UL)<<0)) #define BITMAP_LAYOUT(format,linestride
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sn74hc02.pdf
PDIP – N Tube of 25 SN74HC02N SN74HC02N Tube of 50 SN74HC02D SOIC – D Reel of 2500 SN74HC02DR HC02 Reel of 250 SN74HC02DT –40°C to 85°C SOP – NS Reel of 2000 SN74HC02NSR HC02 SSOP – DB Reel of 2000 SN74HC02DBR HC02 Tube of 90 SN74HC02PW
in „Ersatztype CD4001“ · Mikrocontroller und Digitale Elektronik ·
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HAMEG_HM1507-3_150MHZ_Oszilloskop_-_Service_Manual.pdf
R206 R2I0 R25 5 TT TT2 flc I YT_AC Y1_DC YTZTOÜÜFF YTITODON YTJTOÜFF YT:TooTT “ZV RZZGT C a L \. 1 T ı02oT2A Tc2012B To oFFs_T R22 5'< U c2T42 R22e0 C ae 3CK043 B C2029 9 R2055 .02 JJR2 C02u. CR22s2 nox U _5v C RZOEB Z2 -ev +T2\/ DC RZUG4 56T?2 QNOOON TR DC OOOÜNOOOOOFF RzoTT R2n4s 0 B 2'O~.< 2:ww--<† T
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LTC1859.pdf
32767 –32768 –16384 0 16384 32767 0 5 10 15 20 25 30 35 40 45 50 CODE CODE FREQUENCY (kHz) 1859 TA02 1859 G02 1869 G03 LTC1859 Channel-to-Channel LTC1859 SINAD LTC1859 Total Harmonic Offset Error Matching vs vs Input Frequency Distortion vs Input Frequency Temperature 90 –70 1.0 88 B s ( B 86 O –80
in „LTC1859 merkwürdige Messwerte“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP73831.pdf
Response. FIGURE 2-17: Complete Charge Cycle (180 mAh Li-Ion Battery). 0.35 0.04 6.0 600 ) 0.30 0.02 ) 5.0 500 A ( 0.25 0.00 V ( m t ( e 4.0 400 t e 0.20 -0.02 p t e r i o r C 0.15 -0.04 R V 3.0 300 u u 0.10 -0.06 u r e t t t 2.0 200 r u 0.05 -0.08 u a MCP73831-2AC/IOT a O 0.00 -0.10 O B 1.0 VDD= 5.2V
in „Akku Ladetechnik“ · Mikrocontroller und Digitale Elektronik ·
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PDF
62761.pdf
PDIP – N Tube of 25 SN74HC02N SN74HC02N Tube of 50 SN74HC02D SOIC – D Reel of 2500 SN74HC02DR HC02 Reel of 250 SN74HC02DT –40°C to 85°C SOP – NS Reel of 2000 SN74HC02NSR HC02 SSOP – DB Reel of 2000 SN74HC02DBR HC02 Tube of 90 SN74HC02PW
in „Treiberfähigkeit bei Gatter für LED-Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
avr_adc_timer_test.c
/* Note [5] */ { DDRD |= ( 1 << PD3 ); PORTD |= ( 1 << PD3 ); // TCCR0 |= ( 1 << CS00 ) | ( 1 << CS02 ); // Prescaler=1024 d.h. Timer läuft mit CPU/1024-Takt // TCCR0 |= ( 1 << CS00 ); // Prescaler=1 d.h. Timer läuft mit vollem CPU-Takt TCCR1B |= ( 1 << CS11 ) | ( 1 << CS10 ); // Prescaler=1 d.h. Timer
in „Woher kommt der Timerüberlauf“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Main.asm
OCR1AH, temp ldi temp, $ff out OCR1AL, temp ldi temp, (0<<WGM01) | (0<<WGM00) | (1<<CS00) | (1<<CS02) ; CS00 setzen: Teiler 1024 ;out TCCR0, temp ldi temp, (0<<CS00) | (0<<CS02) ; CS00 setzen: Teiler 1024 out TCCR1B, temp ldi temp, (1<<OCIE2) | (1<<OCIE1A) | (1<<TOIE0) ; TOIE0: Interrupt bei Timer match
in „Problem mit INT2 am Atmega 32“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SERVICE_MANUAL_270200-SL227_SL230.pdf
ROTATE THE KEYBOARDS IN THE (d) AND (e) DIRECTIONS. 15 25 6 14 14 9 25 PART DESCRIPTIONS TABLE # 13 REF. DESCRIPTION REF. DESCRIPTION 13 PHENCLLEVELPITMIDI 1 LEFT TWEETER SPEAKER 23 PEDALBOARD SUPPORT 2 STOPS BOARDS 24 CABINET REAR PANEL 3 MUSIC STAND 25 RIGHT SLIDING COVER GUIDE 4 RIGHT TWEETER SPEAKER
in „AHLBORN ORGEL SL 230 keine Funktion“ · Analoge Elektronik und Schaltungstechnik ·
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RC28F256J3C-125.pdf
datasheet to reflect the best known methods Updated max value for Clear Block Lock-Bits time 03/21/02 -011 Minor text edits 12/12/02 -012 Added nomenclature for J3C (0.18 µm) devices. Added 115 ns access speed 64 Mb J3C device. Added 120 ns access speed 128 01/24/03 -013 Mb J3C device. Added “TE” package
in „Passender Ersatz für Intel RC28F256J3C-125“ · Mikrocontroller und Digitale Elektronik ·
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TransistorTester_eng_094k.pdf
reference voltage is read by every power on if this function is selected with the option WITH_AUTO_REF. I noticed that the reference voltage is permanently somewhat to low, so that you can choose an offset with the Makefile option REF_KORR. The measured reference voltage will then be corrected (added
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Datei
2008_10_31_2eing.c
ADCSRA |= (1<<ADEN) | (1<<ADATE) | (1<<ADIE) | (1<<ADPS2) | (1<<ADPS0); // -1.ADC-init ADMUX |= (1<<REFS0); // 0.MUX setzen, AVCC als Ref., Kanal1 ausgewählt SFIOR |= (1<<ADTS1) |(1<<ADTS0); // 1. Auslösung der AD-Wandlung auf Timer setzen TIMSK = (1<<OCIE0); // Timer 0 Compare Match enable OCR0=0x32;
in „2 ADC-Kanäle "gleichzeitig" abtasten - AVR Atmega32“ · Mikrocontroller und Digitale Elektronik ·
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Datei
L_fter_rs232.c
0xff; // PORT Initialisierung DDRC=0x00; DDRD=0x00; PORTC=0xff; PORTD=0xff; TCCR0|=(1<<CS00)|(1<<CS02); // Timer 0 Initialisierung TIMSK|=(1<<TOIE0); TCCR1A|=(1<<WGM10)|(1<<WGM11)|(1<<WGM12)|(1<<COM1A1)|(0<<COM1A0); // Timer 1 Initialisierung >> PWM TCCR1B|=(1<<CS10); ADCSRA|=(1<<ADEN)|(1<<ADPS0)|(1<<ADPS2); //AD-Wandler1 ADMUX|=(0<<MUX0); ADMUX|=(1<<REFS1)|(1<<REFS0); ADCSRA |= (1<<ADSC); // eine ADC-Wandlung while ( ADCSRA & (1<<ADSC) ) {} uart_init(UART_BAUD_SELECT(UART_BAUD_RATE,F_CPU)); x20=64520; //AD-Wert bei 20°C sei(); //Interrupts enabel while
in „versch. Werte vom ADC trotz gleicher Schaltung (mega 8)“ · Mikrocontroller und Digitale Elektronik ·
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ATMega164_324_644_1284pa.pdf
the Timer/Counter0 Overflow interrupt is executed. The setting of this flag is dependent of the WGM02:0 bit setting. Refer to Table 15-8, ”Waveform Generation Mode Bit Description” on page 106. 110 8272C–AVR–06/11 ATmega164A/PA/324A/PA/644A/PA/1284/P 16. 16-bit Timer/Counter1 and Timer/Counter3 with
in „Hilfe bei AD-Wandler!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX6457-MAX6460.pdf
500 nA Output Short-Circuit Sink I OUT asserted, OUT = V 10 mA SC CC MAX6460 Reference Short-Circuit REF = GND 7 mA Current TA= -40°C to +85°C 2.183 2.25 2.303 Reference Output Voltage V REF V TA= +85°C to +125°C 2.171 2.25 2.303 Sourcing: 0 ≤ I ≤ 100µA, Load Regulation REF 50 µV/µA sinking: 0 REFI ≤ 300nA
in „Tiefenentladungsschutz für Li-Ion Akku mit MAX6457“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AM700_SM.pdf
p-p from DC to 500 Hz, decreasing proportionally to 0.5 UI p-p from 10 kHz to 50 kHz. Resolution 0.02 UI p-p Accuracy DC to 20 kHz ±(10% of value + 0.02 UI) 20 kHz to 50 kHz ±(20% of value + 0.02 UI) Cable Simulator A selectable cable simulator inserts the response of a long, typical digital audio cable
in „Tektronix AM700“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Utikiteval.c
Mode 8 - 2 or 3 termistors 1k÷25k"}; int const Line5[208] = {"\r\n 9 -> Mode 9 - Resistive bridge, ref. is Vbridge,+/- 200 mV \r A -> Mode 10 - Resistive bridge, ref. is Vbridge,+/- 12.5 mV \r B -> Mode 11 - Resistive bridge, ref. is Ibridge,+/- 200 mV"}; int const Line6[207] = {"\r\n C -> Mode 12 - Resistive bridge, ref. is Ibridge,+/- 12.5 mV \r D -> Mode 13 - Resistive bridge and 2 resistors,+/- 200 mV \r E -> Mode 14 - Resistive bridge and 2 resistors,+/- 12.5 mV"}; int const Line7[77] = {"\r\n F -> Mode 15 - 3
in „PT100 + SMT-UTI + ATmega8 (in C) = bin zu doof“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ltc4010.pdf
DC input power supply or the battery TIMER(Pin8):ChargeTimerInput.Aresistorconnected to this pin. Refer to the Applications Information section between TIMER and GND programs charge cycle timing for further details. Suggested applied voltage range is limits. Refer to the Applications Information section
in „NiMH-Ladeschaltung mit LTC4010 lädt nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
iotnx61.h
define AREFD 3 #define ADC3D 4 #define ADC4D 5 #define ADC5D 6 #define ADC6D 7 #define DIDR1 _SFR_IO8(0x02) #define ADC7D 4 #define ADC8D 5 #define ADC9D 6 #define ADC10D 7 #define ADCSRB _SFR_IO8(0x03) #define ADTS0 0 #define ADTS1 1 #define ADTS2 2 #define MUX5 3 #define REFS2 4 #define IRP 5 #define GSEL
in „Fehler in ATtiny461 Definitions-Header“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STTH16L06C.pdf
0.6 0.5 0.5 0.4 0.4 0.3 0.3 0.2 0.2 Single pulse 0.1 0.1 Single pulse p (s) tp(s) 0.0 0.0 1.E-03 1.E-02 1.E-01 1.E+00 1.E-03 1.E-02 1.E-01 1.E+00 1.E+01 Figure 5: Peak reverse recovery current versus Figure 6: Reverse recovery time versus dI /dt F dI Fdt (typical values, per diode) (typical values, per
in „Philips TV 47PFL9664H/12 Hintergrundbeleuchtung defekt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Display_Controller.pdf
on-chip resistors are not used (INTRS = "L") When using internal resistors (INTRS = "H"), open this pin REF I Selects the external VREF voltage via the VEXT pin − REF = “H”: using the internal VREF − REF = “L”: using the external VREF VEXT I Externally input reference voltage (VREF) for the internal voltage
in „LCD Controler mit Spannungsregulier-Eingängen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
4412f.pdf
S6 Package 6-Lead Plastic TSOT-23 (Reference LTC DWG # 05-08-1636) 2.90 BSC 0.62 0.95 (NOTE 4) MAX REF 1.22 REF 1.50 – 1.75 3.85 MAX 2.62 REF 1.4 MIN 2.80 BSC (NOTE 4) PIN ONE ID RECOMMENDED SOLDER PAD LAYOUT 0.95 BSC 0.30 – 0.45 PER IPC CALCULATOR 6 PLCS (NOTE 3) 0.80 – 0.90 0.20 BSC 0.01 – 0.10 DATUM ‘A’ 1.00 MAX 0.30 – 0.50 REF 0.09 – 0.20 1.90 BSC (NOTE 3) S6 TSOT-23 0302 NOTE: 1. DIMENSIONS ARE IN MILLIMETERS 2. DRAWING NOT TO SCALE 3. DIMENSIONS ARE INCLUSIVE OF PLATING 5. MOLD FLASH SHALL NOT EXCEED 0.254mmASH AND METAL
in „Akku_bei_MP3-Player“ · Analoge Elektronik und Schaltungstechnik ·
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gu128x64-800b_e03-f3.pdf
128 by 64 dots. Display merging using these 2 layers can be done with the Display ON/OFF command. Refer to 9.2 on page # 8 for details. Layer 0 has an area of 128x64 dots that starts from top left point defined by the GRAM Start Position Address. The area of Layer 1 is the next 128x64 dots. When the
in „Grafik VFD GU128x64 an Mega32“ · Mikrocontroller und Digitale Elektronik ·
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Datei
CRTIR.asm
rjmp start2 ;Positive edge of 1st start bit mov temp,timerL ;timer is 1/2 bit time clr timerL mov ref1,temp lsr ref1 mov ref2,ref1 add ref1,temp ;ref1 = 3/4 bit time lsl temp add ref2,temp ;ref2 = 5/4 bit time start3: cp timerL,ref1 ;If high period St2 > 3/4 bit time brge fault ;exit sbic PINB,INPUT
in „BW-CRT-Controller aus Mega8 bauen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BC846BDNPN.PDF
6/SOT−363) CASE 419B−02 D ISSUE W e NOTES: 1. DIMENSIONING AND TOLERANCING PER ANSI Y14.5M, 1982. 2. CONTROLLING DIMENSION: INCH. 6 5 4 3. 419B−01 OBSOLETE, NEW STANDARD 419B−02. H MILLIMETERS INCHES E −E− 1 2 3 DIM MIN NOM MAX MIN NOM MAX A 0.80 0.95 1.10 0.031 0.037 0.043 A1 0.00 0.05 0.10 0.000 0.002 0.004 A3 0.20 REF 0.008 REF b 0.10 0.21 0.30 0.004 0.008 0.012 b 6 PL C 0.10 0.14 0.25 0.004 0.005 0.010 D 1.80 2.00 2.20 0.070 0.078 0.086 0.2 (0.008) M E M E 1.15 1.25 1.35 0.045 0.049 0.053 e 0.65 BSC 0.026 BSC L
in „Leckströme für NPN Transistor“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LP2980.pdf
L12B 3000 Units on Tape and Reel STD LP2980IM5-2.9 L12B 1000 Units on Tape and Reel LP2980AIM5X-3.0 L02A 3000 Units on Tape and Reel A LP2980AIM5-3.0 L02A 1000 Units on Tape and Reel 3.0 STD LP2980IM5X-3.0 L02B 3000 Units on Tape and Reel LP2980IM5-3.0 L02B 1000 Units on Tape and Reel A LP2980AIM5X-3.2
in „LDO LD1117 100nF?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LIDAR_Lite_v3.pdf
Value Details 0x00 W ACQ_COMMAND Device command -- page 8 0x01 R STATUS System status -- page 8 0x02 R/W SIG_COUNT_VAL Maximum acquisition count 0x80 page 8 0x04 R/W ACQ_CONFIG_REG Acquisition mode control 0x08 page 8 0x09 R VELOCITY Velocity measurement output -- page 8 0x0c R PEAK_CORR Peak value
in „BeagleboneBlack: Sensor über I2C“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LIDAR_Lite_v3.pdf
Value Details 0x00 W ACQ_COMMAND Device command -- page 8 0x01 R STATUS System status -- page 8 0x02 R/W SIG_COUNT_VAL Maximum acquisition count 0x80 page 8 0x04 R/W ACQ_CONFIG_REG Acquisition mode control 0x08 page 8 0x09 R VELOCITY Velocity measurement output -- page 8 0x0c R PEAK_CORR Peak value
in „BeagleboneBlack: Sensor über I2C“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lidar_lite_v3_operation_manual_and_technical_specifications.pdf
Value Details 0x00 W ACQ_COMMAND Device command -- page 8 0x01 R STATUS System status -- page 8 0x02 R/W SIG_COUNT_VAL Maximum acquisition count 0x80 page 8 0x04 R/W ACQ_CONFIG_REG Acquisition mode control 0x08 page 8 0x09 R VELOCITY Velocity measurement output -- page 8 0x0c R PEAK_CORR Peak value
in „Belegung Lidat V1 (2)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
S1D13504_MF1072-04.pdf
X19A-A-002-17) 10: DISPLAY CONFIGURATION 15-bpp: P 0P 1 P2 P 3 P4 P5 P 6 P7 5-5-5 RGB bit 7 bit 0 G 02 G 01 G 00 B 04 B 03 B 02 B0 1 B 00 TFT Byte 0 4-0 4-0 4-0 Pn = (R n , G n , B n ) Byte 1 R 04 R 03 R 02 R 01 R 00 G 04 G 03 Passive 2 1 0 4 3 2 1 0 Pn = (R n4-1, Gn 4-, B n4-) Byte 2 G 1 G 1 G 1 B 1
in „[V] Displaycontroller Epson SED1354 (800*600)“ · Markt ·
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PDF
XTR105U-4-20mA-current-transmitter.pdf
produce increasing output current according to the output current to limit at approximately 2.2mA. Refer to the transfer function, up to the output current limit of approxi- typical characteristic Under-Scale Current vs Temperature. mately 27mA. Refer to the typical characteristic Over-Scale Current vs
in „[V] Verschiedene SMD-IC's“ · Markt ·
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PDF
P20101.pdf
0603) 1% D1: UDZSTE-172.7B (zener diode) This circuit is for 8080 8bits interface. 8.3 COMMAND TABLE Refer to IC Spec.: SEPS114A - 16 - REV.: X02 2008/03/20 This document contains confidential and proprietary inNeither it nor the information contained herein shall be disclosed to others or duplicated or
in „RiTdisplay - Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX1700-MAX1701.pdf
VLBO= 5V 0.01 1 µA LBN, LBP Input Current VLBP= VLBN = 1.5V 20 nA REFERENCE Reference Output Voltage REF = 0 1.237 1.250 1.263 V REF Load Regulation -1µA < I < 50µA 5 15 mV REF REF Supply Rejection 2.5V < OUT < 5V 0.2 5 mV LOGIC AND CONTROL INPUTS Input Low Voltage (Note 7) 1.2V < OUT < 5.5V, ONA and ONB
in „5V Spannung aus Lipo?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TDA8920B.pdf
24 (17) 19 (-) 17 (11) 20 (13) coa023 VSSA2 VSSA1 VSSD VSSP1 VSSP2 n.c. Pin numbers in parenthesis refer to the TDA8920BJ. Fig 1. Block diagram TDA8920B_2 © Koninklijke Philips Electronics N.V. 2005. All rights reserved. Product data sheet Rev. 02 Ñ 07 November 2005 3 of 34 Philips Semiconductors TDA8920B
in „Schaltnetzteil im Audioverstärker defekt?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
datasheet.pdf
Figure 53. EIM Bus Timing Diagram Table 41. EIM Bus Timing Parameters 1.8V +/- 0.1V 3.0V +/- 0.3V Ref No. Parameter Unit Min Typical Max Min Typical Max 1a Clock fall to address valid 3.97 6.02 9.89 3.83 5.89 9.79 ns 1b Clock fall to address invalid 3.93 6.00 9.86 3.81 5.86 9.76 ns 2a Clock fall to
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datasheet_SIM800L.pdf
by STATUS pin, which is at low level at this time. For detail aboutAT command “AT+CPOWD”, please refer to document [1]. 4.2.2.3. Over-voltage or Under-voltage Power down The module software monitors the VBAT voltage constantly. If the voltage ≤ 3.5V, the following URC will be reported: UNDER-VOLTAGE
in „LM2596 an SIM800l“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD7416_7_8_f.pdf
to the configuration register of the AD7418 and choosing Channel 4. (See Control Byte section.) 6 REF IN Reference Input. An external 2.5 V reference can be connected to the AD7418 at this pin. To enable the on-chip reference, the REF IN pin should be tied to GND. If an external reference is connected
in „I²C-Code - fehlt noch was?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
hv_mini_smps.asm
maxduty = 180 init: ; Volle Taktfreq. ldi temp1, 0xff out OSCCAL, temp1 ; PWM pin = output ldi temp1, 0x02 out DDRB, temp1 ; PWM einstellen ldi temp1, (1<<PWM1 | 1<<CS10 | 1<<COM1A1) out TCCR1, temp1 ldi dutyh, 0 ldi dutyl, 0 out OCR1A, dutyh ldi temp1, 255 out OCR1B, temp1 ; ADC einstellen ldi temp1, (1<<REFS1 | 1<<REFS0 | (1<<MUX0 | 1<<MUX1)) out ADMUX, temp1 ldi temp1, 1<<ADEN | (1<<ADPS0 | 0<<ADPS1 | 0<<ADPS2) out ADCSR, temp1 main: ldi adcycle, 16 ldi temp3, 0 ldi adtmplo, 0 ldi adtmpmid, 0 ldi adtmphi
in „Regelung für einen AVR-Schaltregler“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Servo_Testing.c
uint16_t ADC_conversion(uint8_t); volatile uint8_t Flag=0; int main (void) { // Portrichtung DDRB = 0x02; // PB0-PB2 sind Ausgänge, PB3-PB5 sind Eingänge (ADU) PORTB = 0x00; // Global Interrupts erlauben sei(); // ADC initialisieren ADC_init(2); //Timer1 initialisieren Timer1_init(); while(1) { if (Flag
in „Frage zu Compare Timer des ATTiny 25“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NEC_Usage_of_Three_Terminal_Regulators.pdf
reference reference voltage used in the PC7800A Series. Figure 3-2. Band Gap Reference Circuit V+ I V REF= VBE3+ R2 (KT lnR2) R3 q R1 V REF R 1 R2 R2 V BE R3 Q3 Q 2 VBE Q 1 VBE R 3 GND The reference voltage is as follows. V REF = VBE3 + (I2 + I ) •R 2 R2 = VBE3 + ( V ) + I B3• R2 R3 = VBE3 + R2 KT lnR2
in „Literatur des Linearregler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CA723-Intersil.pdf
FREQUENCY UNREGULATED COMPENSATION TEMPERATURE- INPUT COMPENSATED ZENER INVERTING INPUT VC V - VOLT REF ERROR SERIES PASS REF AMP TRANSISTOR AMP + NON-INVERTING V REGULATED INPUT O OUTPUT VZ CURRENT CURRENT V- LIMIT SENSE CURRENT LIMITER V+ V C UNREGULATED INPUT R1 R3 R4 R5 500 25k 1k 1k Q8 Q3 D3 Q7 Q14
in „Datenblatt suchen“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
SwitchingAmpV12_0.asm
STARTUP ROM=vectors * ; and change the start address of the page0 section from 0x5 to 0x0 * ; * ; Refer to the MPASM User's Guide for additional information on * ; features of the assembler and linker (Document DS33014). * ; * ; Refer to the respective PICmicro data sheet for additional * ; information
in „PIC 16F627A ASM in MPLAB-SIM und Realität“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Projet_07_Akkulader.asm
normal modus operation arbeitet ldi TEMP,0b00000100 ;Timer 1 normal operation und prescaler 256(1,02s)einstellen out TCCR1B,TEMP ;Ich den bit7 auf null gesetzt weil ich nicht den Input Capture Noise Canceler Modus brauche ;Bit6 wurde auch auf null gesetzt weil ich nicht den Input Capture Edge Select
in „AVR Programm nachsehen ob richtig oder falsch“ · Softwareentwicklung ·
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Datei
Projet_07_Akkulader.asm
normal modus operation arbeitet ldi TEMP,0b00000100 ;Timer 1 normal operation und prescaler 256(1,02s)einstellen out TCCR1B,TEMP ;Ich den bit7 auf null gesetzt weil ich nicht den Input Capture Noise Canceler Modus brauche ;Bit6 wurde auch auf null gesetzt weil ich nicht den Input Capture Edge Select
in „AVR Programm nachsehen ob richtig oder falsch“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MBRS140T3-D.pdf
2 A C 75⋅C R 0.2 E 1 F R 0.5 S 0.1 E 0.3 O0.07 E 0.2 25⋅C E T C 25⋅C , 0.1 A0.05 I N 0.03 T0.03 0.02 I0.02 , 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1 1.1 0.01 0 4 8 12 16 20 24 28 32 36 40 iF vF, INSTANTANEOUS FORWARD VOLTAGE (VOLTS) VR, REVERSE VOLTAGE (VOLTS) Figure 1. Typical Forward Voltage Figure
in „Target: Meldung im Layouteditor: Gehäuse bitte überprüfen“ · Platinen ·
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PDF
MJ2500-3000.pdf
VBE @V CE=3.0V L C0.3 , 0.5 VCE(sat) C B=250 I0.2 MJ2500,MJ3000 TJ=200⋅C MJ2501,MJ3001 0.1 00.010.02 0.05 0.1 0.2 0.5 1.0 2.0 5.0 10 1.0 2.0 3.0 5.0 7.010 20 30 50 70 100 I ,COLLECTORCURRENT(AMP) V ,COLLECTOR–EMITTERVOLTAGE(VOLTS) C CE Figure 4. “On” Voltages Figure 5. DC Safe Operating Area There are
in „Netzteilschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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pcm1803.pdf
as possible to the REF 1 pin to reduce dynamic errors on the ADC reference. VREF2 Pin The differential voltage between V REF2 and AGND sets the analog input full-scale range. A 0.1- F ceramic capacitor and 10- F electrolytic capacitor are recommended between V REF2 and AGND. These capacitors should be located as close as possible to the V 2 pin to reduce dynamic errors on the ADC reference. REF DOUT Pin The DOUT pin has enough load drive capability, but if the
in „PCM1803 Audio ADC ewige Einschwingzeit“ · Mikrocontroller und Digitale Elektronik ·