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3__HV9961_.pdf
0.356 e 240VAC u r C 0.354 C 0.35 D 240VAC 120VAC L 0.352 E 0.30 L 0.350 0.25 0.348 120VAC 0.346 0.20 10 20 30 40 50 60 70 0 10 20 30 40 50 60 70 Output Voltage (V) Output Voltage (V) Current Regulation vs. AC Line Voltage Efficiency 0.370 95% 0.365 60V 90% ) ( 0.360 ) n VO= 20V ( e c u 0.355 e 85% C V
in „LED-Treiber Dimensionierung“ · Analoge Elektronik und Schaltungstechnik ·
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an266.pdf
winding, then : R.t wtere 1k ≤ R ≤ 100k t off(max)is given approximately by : t off(max)≈ kt Figure 10 : Winding Current @ off (max). IH, M, L – min L k = t = IH, M, L r off (max)kt 9/13 APPLICATION NOTE ∗toff(min) -td :thisisthetimerequiredbyV toreCchthecom- parator threshold level and is determined
in „Schrittmotor mit L6219 und tiny2313 - Microstepping funktioniert nicht“ · Mikrocontroller und Digitale Elektronik ·
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Diode.pdf
1 58 64.4 67.8 1 93.6 4.3 5.21 121 19 2.62 10.4 SMAJ70A/CA 0.2 1 70 77.8 81.9 1 113 3.5 7.72 146 16 3.75 10.5 SMAJ85A/CA 0.2 1 85 94 99 1 137 2.9 11.4 178 13 5.70 10.6 SMAJ100A/CA 0.2 1 100 111 117 1 162 2.5 15.7 212 11 8.10 10.7 SMAJ130A/CA 0.2
in „Überspannungsschutz ADC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CMEL_C0283QGLC-T_Tentative_Spec_May07_-_GLYN_.pdf
Surrounding temperature: 25 C 1. test condition: TBD 2.response Time test condition Tr Tf 100% 90% 10% Time 3.Viewing angle test condition: Vss(GND) ψ=270° 11 Document No.: 4.Contrast Luminance with all pixels white CR = Luminance with all pixels black 5.Optical tester: Topcon SR3 6. Full White with
in „OLED Sammelbestellung“ · Markt ·
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PDF
CMEL_C0283QGLC-T_Tentative_Spec_May07_-_GLYN_.pdf
Surrounding temperature: 25 C 1. test condition: TBD 2.response Time test condition Tr Tf 100% 90% 10% Time 3.Viewing angle test condition: Vss(GND) ψ=270° 11 Document No.: 4.Contrast Luminance with all pixels white CR = Luminance with all pixels black 5.Optical tester: Topcon SR3 6. Full White with
in „[V] Displays und diverses“ · Markt ·
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PDF
2N5087-D.PDF
(IC= 1.0 mAdc, CE= 5.0 Vdc, f = 1.0 kHz) 250 900 Noise Figure NF dB (I = 20 mAdc, V = 5.0 Vdc, R = 10 kW, f = 10 Hz/15.7 kHz) − 2.0 C CE S (C = 100 mAdc,CE = 5.0 Vdc,SR = 3.0 kW, f = 1.0 kHz) − 2.0 1. Pulse Test: Pulse Width ≤ 300 ms, Duty Cycle ≤ 2.0%. http://onsemi.com 2 2N5087 TYPICAL NOISE CHARACTERISTICS
in „rauscharmer NPN min 200v gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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ANBS1_00_06_Setting_up_with_Eclipse_and_GNU.pdf
downloaded from: http://www.eclipse.org/downloads/ . There you will get file eclipse-cpp- ganymede-SR2-win32.zip. Unzip it and install on your machine. 1.3Install Yagarto Tools and Yagarto GNU ARM Toolchain Download from http://www.yagarto.de/index.html . Follow the installation until “Choose Components
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PDF
STM32F4-BASE.pdf
S FTSH-105-01-F- +3V3 T R 28pF 28pF 2 1 T L1 +3V3 R I 4 3 C6 1 2 GND T D K 6 5 GND GND N W C O 8 7 10nF WE-CBF_0805 / W I 10 9 Sehr nah an MCU & guter Ceramic Cap! S S S T A Würth Electronics: 74279206 M K E J . CON1 J C A / 10k RS: 358-676 5 J R T 1 2 3 4 5 Interner Regulator / R R12 GND D D D D D D
in „STM32F407 (100pin) Basisboard - Review bitte“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
#define T_SET 0x02 // Taster an P2.1 #define LED_ON 0x80 // LED (grün) an P4.7 #define LED_X_Br 0x10 // LED_X Brücke an P7.4 (wegen TB0) #define N_Blinken 3 * 2 // 3x ON 3x OFF .... #define N_2Hz 5 // 5x wait_0s1 = 0,5s ==> 2Hz // __________ Prototypen der verwenndeten Funktionen _________________ void
in „MSP430 F5529 Wobbel-Generator“ · Mikrocontroller und Digitale Elektronik ·
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PDF
harman_kardon_avr145_sm.pdf
10K OHM 1 R754 CRJ10DJ103T RES , CHIP 10K OHM 1 R756 CRJ10DJ103T RES , CHIP 10K OHM 1 R759 CRJ10DJ330T RES , CHIP 33 OHM 1 R760 CRJ10DJ105T RES , CHIP 1M OHM 1 R765 CRJ10DJ103T RES , CHIP 10K OHM 1 R766
in „Relais beim AVR 145 von harman/kardon durch SSR ersetzen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ILX535K.pdf
1 t9 80 250 1 — ns RS pulse rise time t10 0 10 30 ns RS pulse fall time t11 0 10 30 ns t12 — 70 — ns Signal output delay time — 10 — ns t13 RS, 1/ 2 pulse timing 2 t14 50 250 1 — ns 1 These timing is the recommended condition undeRS= 1MHz. –
in „Linearen CCD auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AM-480272MTMQW-00H-_HSD043I9W1_.pdf
defined above and considered to be problem shall be reviewed and discussed by both parties. Note (10) Bright dot, mura and leak are defined through transmission ND Filter as following. Date : 2010/6/7 AMPIRE CO., LTD. 21 10. GENERAL PRECAUTION 10-1 Use Restriction This product is not authorized for
in „TFT-LCD HSD043I9W1“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ST232C.PDF
0.004 0.008 a2 2.45 0.096 b 0.35 0.49 0.014 0.019 b1 0.23 0.32 0.009 0.012 C 0.5 0.020 c1 45˚ (typ.) D 10.1 10.5 0.397 0.413 E 10.0 10.65 0.393 0.419 e 1.27 0.050 e3 8.89 0.350 F 7.4 7.6 0.291 0.300 G L 0.5 1.27 0.020 0.050 M 0.75 0.029 S 8 ˚ (max.) PO13I 13/19 Package mechanical data ST232 TSSOP16 MECHANICAL
in „ST232C-RS232 Wandler für USB geeignet?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
tl074.pdf
Symbol Parameter Unit Min. Typ. Max. Min. Typ. Max. Input offset voltags (R = 50Ω) T = +25°C TL074 3 10 3 10 amb TL074A 3 6 Vio TL074B 1 3 mV Tmin≤Tamb ≤Tmax TL074 13 13 TL074A 7 TL074B 5 DV io Input offset voltage drift 10 10 μV/°C Input offset current Iio Tamb= +25°C 5 100 5 100 pA T ≤T ≤T 4 10 nA min
in „Nichtinvertierter Operationsverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
tcnd5000.pdf
20 ms VF 1.2 1.5 V Temperature coefficient ofFV F = 1 mA TKVF -1.3 mV/K Reverse current V = 5 V I 10 μA R R Junction capacitance VR= 0 V, f = 1 MHz, E = 0 lx Cj 40 pF Radiant intensity F = 20 mA, p = 20 ms Ie 11 15 mW/sr Angle of half intensity ± 12 deg Peak wavelength F = 100 mA P 930 940 nm Spectral
in „Ferraris Stromzähler für SmartHome erfassen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
app031.pdf
1 2 ID_0 WE 31 MEMW# 3 ID_1 CAT 30 4 A12 RSTIN 29 2 1 RESET HEADER 3 5 A7 NC 28 6 A6 A8 27 10K 7 A5 ROM_CS 26 8 A4 A11 25 74VCHT04 9 A3 OE 24 MEME# 10 A2 BUSY 23 11 A1 CE 22 SA[0..12] 12 A0 D7 21 13 D0 D6 20 D[0..7] 15 D1 D5 18 16 D2 D4 17 C1 GND D3 0.1uf MilleniumTSOP-II VCC JP1 Address 74VHCT138A
in „Pollin Netbox“ · Mikrocontroller und Digitale Elektronik ·
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Datei
owdevice_ATT13_DS18B20.c
OWT_READLINE 40 #define OWT_LOWTIME 43 //60 Gemessen 58 #define OWT_HIGHTTIME 64 #define OWT_PAUSE 10 #define TIMER_INT ISR(TIMER1_OVF_vect) #define PIN_INT ISR(INT0_vect) #define DBH PORTD|=(1<<PORTD4); #define DBL PORTD&=~(1<<PORTD4); #define DBH1 PORTD|=(1<<PORTD3); #define DBL1 PORTD&=~(1<<PORTD3
in „1-Wire Slave auf AVR“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
Temperatur; } } void init_iic(void) { UCB0CTL1 |= UCSWRST; // Activate the reset status UCB0CTL1 &= ~UCA10; UCB0CTL1 &= ~UCSLA10; UCB0CTLW0 |= UCMODE_3 + UCMST; // I2C master mode UCB0BRW = 0x0008; // Set baudrate = SMCLK / 8 --> (1MHz/8 = 125kHz) UCB0CTLW1 = UCASTP_2; // Autom. STOP assertion P1SEL1 |= 0xC0
in „I2C mit MSP430FR5739 ACK wird nicht gesetzt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Test_ESP8266_DS18B20.ino
{ tempC = tempC - 0.01; } Serial.print("Temperatur Celsius: "); Serial.println(tempC); if(tempC < 10.0) zu_kaltC = 1; } return String(tempC); } /* Fkt um die DS18B20 Temperatur zu messen, umgewandelt in °F */ String readDSTemperatureF() { float tempF = 0; err_tempF = 0; zu_kaltF = 0; sensors.requestTemperatures
in „HTML Anzeige - Farbe Meldetext ändern“ · Mikrocontroller und Digitale Elektronik ·
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Datei
rcc.h
CIR_PLLRDYC : 1; uint32_t CIR_PLLI2SRDYC : 1; uint32_t : 1; uint32_t CIR_CSSC : 1; uint32_t : 8; // 10 AHB1 peripheral reset (RCC_AHB1RSTR) uint32_t AHB1RSTR; // 14 AHB2 peripheral reset (RCC_AHB2RSTR) uint32_t AHB2RSTR; // 18 AHB3 peripheral reset (RCC_AHB3RSTR) uint32_t AHB3RSTR; // 1C uint32_t rsvd
in „(STM32) Register Lib mit define oder nicht define..“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Verlegearten__Strombelstbarkeit_von_Kabeln_und_Leitungen.pdf
Strombelastbarkeit in A 2 2) schnitt in mm Nennstrom In in A 0,75 I 7,6 – – – z I 6 – – – n 1,0 I 10,4 9,6 11,7 11,5 z I 10 8 10 10 n 1,5 Iz 13,5 12,2 15,2 16,1 In 13 10 13 16 2,5 Iz 18,3 16,5 21 22 In 16 16 20 20 4 Iz 25 23 28 30 In 25 20 25 25 6 Iz 32 29 36 37 In 32 25 35 35 10 Iz 44 40 50 52 In 40
in „Stromanschluss“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2CDC401002D0102.pdf
Strombelastbarkeit in A 2 2) schnitt in mm Nennstrom In in A 0,75 I 7,6 – – – z I 6 – – – n 1,0 I 10,4 9,6 11,7 11,5 z I 10 8 10 10 n 1,5 Iz 13,5 12,2 15,2 16,1 In 13 10 13 16 2,5 Iz 18,3 16,5 21 22 In 16 16 20 20 4 Iz 25 23 28 30 In 25 20 25 25 6 Iz 32 29 36 37 In 32 25 35 35 10 Iz 44 40 50 52 In 40
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PDF
NL6448BC33-63D.pdf
measurement methods are as follows. 50cm Optical Measuring Instrument Optical Measuring Instrument (BM-5Aor SR-3) (EZ Contrast) 1 LCD module (Product) LCD module (Product) Note3: See "4.10.2 Definition of contrast ratio". Note4: See "4.10.3 Definition of luminance uniformity". Note5: These coordinates are found
in „[V] Industrie Display NEC 10.4" NL6448BC33-63D“ · Markt ·
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PDF
LIS3LV02DQ.pdf
at 25°C Figure 10. x-axis 0-g level at 2.5V Figure 11. y-axis 0-g level at 2.5V 20 25 18 16 20 ) ) %14 % s s a12 a15 f f t10 t e e r 8 r10 P P 6 4 5 2 −10 −5 0 5 10 −10 −5 0 5 10 0−g LEVEL (mg) 0−g LEVEL (mg) Figure 12
in „V: 3 Drehratensensoren, 1 Dreiachs-Beschleunigungssensor“ · Markt ·
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PDF
RSP-750-12.pdf
Curve") WORKING HUMIDITY 20 ~ 90% RH non-condensing ENVIRONMENTSTORAGE TEMP., HUMIDITY -40 ~ +85℃, 10 ~ 95% RH non-condensing TEMP. COEFFICIENT ±0.03%/℃ (0 ~ 50℃) VIBRATION 10 ~ 500Hz, 2G 10min./1cycle, 60min. each along X, Y, Z axes SAFETY STANDARDS UL62368-1,CSAC22.2No.62368-1,TUV BSEN/ EN62368-1,CCCGB4943.1
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PDF
DS_AT32F421_V2.01_EN.pdf
CMP1_INM7 TMR15_CH2 / USART2_RX / 9 9 9 9 13 PA3 I/O FTa ADC1_IN3 I2S2_MCK TMR14_CH1 / USART2_CK / 10 10 10 10 14 PA4 I/O FTa SPI1_CS/ I2S1_WS ADC1_IN4/ CMP1_INM4 ADC1_IN5 / 11 11 11 11 15 PA5 I/O FTa SPI1_SCK/ I2S1_CK CMP1_INP0 / CMP1_INM5 2022.6.6 22 Ver 2.01 AT32F421 Series Datasheet Pin number )
in „Firmware entschlüsseln, Updateprogramm als Hilfe?“ · Softwareentwicklung ·
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PDF
21237_0_samwha-green-cap.pdf
3 140 350 0.008 1.63 2.59 1,339 2,132 1.6 1.0 8× 20 5 110 250 0.013 1.97 2.76 1,364 1,910 2.2 1.6 10 × 20 2.5 10 65 120 0.025 2.48 3.68 1,786 2,653 3.5 2.4 10 × 30 25 35 65 0.063 2.89 4.32 1,538 2,296 7.5 5.0 16 × 25 60 20 30 0.150 3.77 5.12 1,812 2,456 13.8 10.2 18 × 40 3 60 90 0.008 2.17 3.02 6,943 9,669 1.4 1.0 8× 20 5 50 70 0.014 2.41 3.22 5,951 7,956 2.1 1.6 10 × 20 2.7 10 30 50 0.027 3.49 4.30 6,033 7,426 2.9 2.4 10 × 30 25 20 35 0.068 3.78 5.04 3,730 4,972 6.7 5.0 16 × 25 50 10 20 0.140 4.40 4.97 3,803 4,297 11.5 10.2 18 × 40 25
in „Goldcap auslutschen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
samwha-green-cap.pdf
3 140 350 0.008 1.63 2.59 1,339 2,132 1.6 1.0 8× 20 5 110 250 0.013 1.97 2.76 1,364 1,910 2.2 1.6 10 × 20 2.5 10 65 120 0.025 2.48 3.68 1,786 2,653 3.5 2.4 10 × 30 25 35 65 0.063 2.89 4.32 1,538 2,296 7.5 5.0 16 × 25 60 20 30 0.150 3.77 5.12 1,812 2,456 13.8 10.2 18 × 40 3 60 90 0.008 2.17 3.02 6,943 9,669 1.4 1.0 8× 20 5 50 70 0.014 2.41 3.22 5,951 7,956 2.1 1.6 10 × 20 2.7 10 30 50 0.027 3.49 4.30 6,033 7,426 2.9 2.4 10 × 30 25 20 35 0.068 3.78 5.04 3,730 4,972 6.7 5.0 16 × 25 50 10 20 0.140 4.40 4.97 3,803 4,297 11.5 10.2 18 × 40 25
in „Green-Cap/Super-Cap 2.7V 500F - fake?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HLG-120H-spec.pdf
IP65 Io and Vo adjustable through built-in potentiometer In Stock B IP67 3 in 1 dimming function (1~10VDC, 10V PWM signal and resistance) In Stock Io and Vo adjustable through built-in potentiometer & AB IP65 3 in 1 dimming function (1~10Vdc, 10V PWM signal and resistance) In Stock D IP67 Timerdimming
in „Netzteil für Getriebemotor“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
samwha-green-cap.pdf
3 140 350 0.008 1.63 2.59 1,339 2,132 1.6 1.0 8× 20 5 110 250 0.013 1.97 2.76 1,364 1,910 2.2 1.6 10 × 20 2.5 10 65 120 0.025 2.48 3.68 1,786 2,653 3.5 2.4 10 × 30 25 35 65 0.063 2.89 4.32 1,538 2,296 7.5 5.0 16 × 25 60 20 30 0.150 3.77 5.12 1,812 2,456 13.8 10.2 18 × 40 3 60 90 0.008 2.17 3.02 6,943 9,669 1.4 1.0 8× 20 5 50 70 0.014 2.41 3.22 5,951 7,956 2.1 1.6 10 × 20 2.7 10 30 50 0.027 3.49 4.30 6,033 7,426 2.9 2.4 10 × 30 25 20 35 0.068 3.78 5.04 3,730 4,972 6.7 5.0 16 × 25 50 10 20 0.140 4.40 4.97 3,803 4,297 11.5 10.2 18 × 40 25
in „Datenblatt von Kondensator“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DA_Mean-Well-DDR-480C-48-DC-DC-Wandler-48V-10A-480W-Anzahl-Ausgaenge-1-x-Inhalt-1St..pdf
480D-12DDR-480D-24 DDR-480D-48 DC VOLTAGE 12V 24V 48V 12V 24V 48V 12V 24V 48V RATED CURRENT 33.4A 20A 10A 33.4A 20A 10A 33.4A 20A 10A CURRENT RANGE 0 ~ 33.4A 0 ~ 20A 0 ~ 10A 0 ~ 33.4A 0 ~ 20A 0 ~ 10A 0 ~ 33.4A 0 ~ 20A 0 ~ 10A RATED POWER 400.8W 480W 480W 400.8W 480W 480W 400.8W 480W 480W PEAK CURRENT 5sec
in „Mean Well DDR 480C 48 Reihenschaltung möglich um Akku zu laden“ · Fahrzeugelektronik ·
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Datei
main.c
löscht OFIFG for (i=0xff;i>0;i--); } while (IFG1&OFIFG); // abbruchbedinung BCSCTL2 = SELM_3; _BIS_SR(GIE); // allgemeiner Interrupt enable // RS232-Einstellungen P3SEL = 0x30; // P3.4 und P3.5 als USART0 TXD/RXD ME1 |= UTXE0; // UTXE0 + TX- und RX-modul erst mal anschalten UCTL0 |= CHAR; // 8 data bits
in „MSP430 läuft nicht !“ · Mikrocontroller und Digitale Elektronik ·
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Datei
I2C_ADXL345_26_04_12.c
BIT7; P1SEL2 |= BIT6 + BIT7; UCB0CTL1 |= UCSWRST; UCB0CTL0 = UCMST + UCMODE_3 + UCSYNC; UCB0BR0 = 10; UCB0BR1 = 0; UCB0CTL1 = UCSSEL_2; UCA0CTL1 &= ~UCSWRST; //Take UCA0 out of reset } void uart_init() { P1SEL |= BIT1 + BIT2 ; P1SEL2 |= BIT1 + BIT2; UCA0CTL1 = UCSWRST; //UCA0 in Reset UCA0CTL1 |= UCSSEL
in „MSP430G2553, I2C read falsche Reihenfolge bei der Ausgabe“ · Mikrocontroller und Digitale Elektronik ·
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PDF
22b_fv_integramotor_brochure.pdf
variable duty cycle input to control motor voltage/speed). A high input applies voltage to the winding. 10 Encoder Channel B 11 Brake (High input activates dynamic braking) 12 +5 VDC (Logic Power) The New (OEM & N-Stock Models) “22B/FV” INTEGRAmotor™ & Gearmotors, Bodine ElectPage1 of 205 ehg) APPLICATION
in „Wie bekomme ich diesen Motor zum Drehen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Marantz_PM7000PM8000_Service.pdf
1259 H RG RG RG 7 5 3 7 2 C 2 1 0 T017 5352 T018 3 1 2258 3278 7262 0 k * 3 2 9 6 3 6 45X6 MR62-24SR T026 1 # 220R# 2SC2240 2 2 7 X 3322 3330 7280 T016 7 0 5270 -PWD T027 2 470p 2.2n* 680E* 3 2 4 0 R 1 k B 6 4 10R 2SA1941 # 4 k 2 1 3 RG 7 k 3 0 3 1 2 4 47R 2SA1962 * 3 2 +24V 6281 SPK_1 T028 3 4 3 1
in „Marantz Verstärker defekt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
edison-module_HG_331189.pdf
period of the SCL clock 60 – ns tHD:DAT Data hold time: I2C-bus devices 0 – ns tSU:DAT Data setup time 10 – ns tr CL Rise time of SCL signals 10 40 ns tf CL Fall time of SCL signals 1 40 ns trCL1 Rise time of SCL signal after repeated START condition and af10r 40 ns acknowledge bit tr DA Rise time of SDAH
in „Intel Edison Breakout Board“ · Mikrocontroller und Digitale Elektronik ·
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PDF
4121_60503B.pdf
±50mV 0.12%±120mV 0.1%±50mV 0.1%±50mV 0.1%±125mV Regulatio(w/remotesen10mV 10mV 5mV 20mV 10mV Constantresistancemode 0.033to1.0 Ω 0.20to24.0 Ω 0.067to2 Ω 0.017to0.5 Ω 0.033to2.5 Ω Ranges 1to1,000 Ω 24to10,000 Ω 2to2,000 Ω 0.5to500 Ω 2.5to2,500 Ω 10to10,000 Ω 240to50,000 Ω
in „Elektronische Last EA-EL 200“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
AvrStudio_asm.ini
ShowWhitespace =0 VirtualWhitespace =0 ReplaceTabs =1 MatchCase =0 [Font] FaceName =Courier Size =10 Italic =0 Bold =0 [ColorGroups] NumGroups =13 Group1 =Text Group2 =Text Selection Group3 =Number Group4 =Operator Group5 =Comment Group6 =Keyword Group7 =String Group8 =Disasm Group9 =Preprocessor Group10
in „AVR Studio 4.11 + Synthax Highlighting“ · Mikrocontroller und Digitale Elektronik ·
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Datei
iom16.h
5 #define ADHSM 4 #define ACME 3 #define PUD 2 #define PSR2 1 #define PSR10 0 /* TCCR0 */ #define FOC0 7 #define PWM0 6 //OBSOLETE! Use WGM00 #define WGM00 6 #define COM01 5 #define COM00 4 #define CTC0 3 //OBSOLETE! Use WGM01 #define WGM01 3 #define CS02 2 #define CS01 1 #define
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Datei
diskio.c
Initialize MMC interface */ static void init_spi (void) { CS_HIGH(); /* Set CS# high */ for (Timer1 = 10; Timer1; ) ; /* 10ms */ } /* Exchange a byte */ static BYTE xchg_spi ( BYTE dat /* Data to send */ ) { return UB_SPI3_SendByte(dat); //SPIx_DR = dat; //while (SPIx_SR & 0x80) ; //return (BYTE)SPIx_DR
in „STM32 <-> AVR“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ToneLabSE_Service_manual.pdf
8.33MHZ KLM-2455/2500 1 *334X255001 X'TAL HC-49/S 11.2896MHZ KLM-2455/2500 1 *335X111001 X'TAL HC-49US 10.000MHZ KLM-2454 1 *335X270000 PHOTO REFLECTOR RPR-359F KLM-2455/2500 2 *350X255000 TRIMER RH0614CN4J 33K KLM-2455/2500 2 *362X255000 VR RK09L12B0A4S 10KAX2 L=15MM KLM-2455/2500 1 *362X255001 VR R1103N12A1-B10K KLM-2485/68/96/7/8/9 6 *362X951G02 VR R1626N1AP4 10KB-11CC KLM-2485/68/96/7/8/9 4 *374X260000 TACT SW SKHCABA010 KLM-2485/68/96/7/8/9 9 *375X254001 BINARY SW BTDS20V-116-F27.5-5 KLM-2485/68/96/7/8/9
in „74 HC 595 Defekt feststellen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32F4-BASE.pdf
A S 28pF C25 T R 28pF 28pF FTSH-105-01-F- +3V3 28pF T 2 1 L1 +3V3 S 4 3 C6 1 2 R IO 6 5 J D L 8 7 10nF WE-CBF_0805 N S C O I 10 9 Sehr nah an MCU & guter Ceramic Cap! ST3215SB32768C0HPWBB / W W D Würth Electronics: 74279206 Farnell: 1972459 M / E J A T K C 3 CON1 RS: 358-676 5 J T A T 10k 1 2 3 4 5
in „STM32F407 (100pin) Basisboard - Review bitte“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32F4-BASE.pdf
A S 28pF C25 T R 28pF 28pF FTSH-105-01-F- +3V3 28pF T 2 1 L1 +3V3 S 4 3 C6 1 2 R IO 6 5 J D L 8 7 10nF WE-CBF_0805 N S C O I 10 9 Sehr nah an MCU & guter Ceramic Cap! ST3215SB32768C0HPWBB / W W D Würth Electronics: 74279206 Farnell: 1972459 M / E J A T K C 3 CON1 RS: 358-676 5 J T A T 10k 1 2 3 4 5
in „STM32F407 (100pin) Basisboard - Review bitte“ · Mikrocontroller und Digitale Elektronik ·
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PDF
K4B4G1646Q-Samsung.pdf
Min Max Min Max 1.35V 3.5 12 3.5 12 3.5 12 3.5 12 V/ns Differential output slew rate SRQdiff 1.5V 5 10 5 10 5 10 5 10 V/ns Description : SR : Slew Rate Q : Query Output (like in DQ, which stands for Data-in, Query-Output) diff : Differential Signals For Ron = RZQ/7 setting VOHdiffC) VTT VOLdiffC) deltTFdiff
in „Orange Pi - 15$ Quadcore SBC“ · Mikrocontroller und Digitale Elektronik ·
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Datei
PCM1738.asm
geschoben und die 2 neuen bits werden zu den alten POP ZL POP ZH POP tmp OUT sreg, tmp ; Register + SR zurück schieben POP tmp RETI ; Timer 0 IRQ fertig. version: .db 13,10,"PCM1738 Control V1 Single w/o DF",13,10,"2025 jobstens.de",13,10,"Build %YEAR%-%MONTH%-%DAY% %HOUR%:%MINUTE% UTC",13,10,"File %SOURCE
in „DAC PCM1738 mode control programmieren“ · Mikrocontroller und Digitale Elektronik ·
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IRS2092.pdf
hysteresis - 0.5 - VSS =0 V, GND pin AAHYS AA floating Floating Input positive quiescent supply V =10 V, V =0 V, QAA0 - 0.5 2 AA SS current V CSD =VSS Floating Input positive quiescent supply mA VAA=10 V, V SS =0 V, QAA1 current - 8 11 V CSD =VAA Floating Input positive quiescent supply V =10 V, V =0
in „Car Hifi Endstufe kein Ton, axton D500 digital, Irs2092s Vorverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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TCS34725.pdf
Channel PARAMETER TEST UNIT CONDITIONS MIN TYP MAX MIN TYP MAX MIN TYP MAX MIN TYP MAX λD= 465 nm 0% 15% 10% 42% 65% 88% 11.0 13.8 16.6 Note 2 λ = 525 nm counts/ Re Irradiance D 4% 25% 60% 85% 10% 45% 13.2 16.6 20.0 μW/ responsivity Note 3 cm2 λD= 615 nm Note 4 80% 110% 0% 14% 5% 24% 15.6 19.5 23.4 NOTES:
in „Frage zu TCS 34725 - RGBC Sensor“ · Mikrocontroller und Digitale Elektronik ·
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DS_K4B8G1646Q-MY_Rev10.pdf
Min Max Min Max Differential output slew rate SRQdiff 1.35V 3.5 12 3.5 12 3.5 12 3.5 12 V/ns 1.5V 5 10 5 10 5 10 5 10 V/ns Description : SR : Slew Rate Q : Query Output (like in DQ, which stands for Data-in, Query-Output) diff : Differential Signals For Ron = RZQ/7 setting VOHdiffC) V TT VOLdiffC) deltTFdiff
in „Orange Pi - 15$ Quadcore SBC“ · Mikrocontroller und Digitale Elektronik ·
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EL2099CT.pdf
V deg. ( ) 2 Amplitude 286 mVp-p, f 3.58 MHz § i (Notes 6, 7) D T Note 1: The input is moved fromb 10V toa 10V. Note 2: The supplies are moved from 5V to g 15V. Note 3: VIN e g 5V. See typical performance curve for larger valuesIN. V Note 4: Slew Rate is withOUT from a 5V to b5V and measured at 20% and
in „EL2099CT als Buffer für Frequenznormal?“ · HF, Funk und Felder ·
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BM153-User-Manual-REV3-2130695.pdf
Typ Max Bluetooth Spec Sensitivity at 0.1% BER dBm - -90 -86 ≤-70 Maximum Receiver Signal dBm -20 -10 - ≥ -20 C/I Co-Channel dB - 6 11 ≤11 Adjacent Channel Selectivity C/I -1MHz dB - -6 0 ≤0 2nd Adjacent Channel Selectivity C/I -2MHz dB - -38 -30 ≤-30 3rd Adjacent Channel Selectivity C/I -3MHz dB - -
in „Pinout-Zählreihenfolge BT-Modul BM150-V2.0 und Schaltung gesucht“ · Analoge Elektronik und Schaltungstechnik ·