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Datei
main.c
(0xFF); // return the last received character } int MMC_Init(void) { // init SPI char i; PORTB |= (1 << SPICS); // disable MMC // start MMC in SPI mode for(i=0; i < 10; i++) SPI(0xFF); // send 10*8=80 clock pulses PORTB &= ~(1 << SPICS); // enable MMC if (Command(0x40,0,0,0x95) != 1) goto mmcerror; // reset MMC st: // if there is no MMC, prg. loops here if (Command(0x41,0,0,0xFF) !=0) goto st; return 1; mmcerror: return 0; } int writeramtommc(uint32_t sec) { // write RAM sector to MMC cli(); uint8_t c; uint16_
in „mega16 mit SDC und UART funktionieren nicht zusammen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
X10AM1.PDF
Type: 4MHz Xtal, 1uS Instruction Cycle ; Watchdog: On ; Code Protection: Off ; Customer ID Code: 'ABAC' ; Assembler: MPASM version 1.30 ; Code Revision: 1.28 First released version TITLE "X-10 Receiver" LIST P = 16C54
in „Prototyp: Low-Cost Powerline Hausbus mit AVR“ · Haus & Smart Home ·
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PDF
X10AM1_Schaltplan.pdf
Type: 4MHz Xtal, 1uS Instruction Cycle ; Watchdog: On ; Code Protection: Off ; Customer ID Code: 'ABAC' ; Assembler: MPASM version 1.30 ; Code Revision: 1.28 First released version TITLE "X-10 Receiver" LIST P = 16C54
in „Power Line bzw. Power LAN im Selbstbau“ · Haus & Smart Home ·
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PDF
M74HC04B1.pdf
C -40 to 85°C -55 to 125°C Unit (V) Min. Typ. Max. Min. Max. Min. Max. CIN Input Capacitance 5.0 5 10 10 10 pF C Power Dissipation PD Capacitance (note 5.0 22 pF 1) 1) PD is defined as the value of the IC’s internal equivalent capacitance which is calculated from the operating current consumption without
in „RC-Oszillator mit 74HC04 spinnt“ · Analoge Elektronik und Schaltungstechnik ·
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CMEL_C0283QGLC-T_Tentative_Spec_May07_-_GLYN_.pdf
- -1.0 V Logic Operating Voltage RVDD - 1.45 1.5 1.55 V Operating frequency fosc Frame frequency = 60Hz 1161.1 1290.2 1419.3 kHz st 1 step-up input voltage VCI1 - 2.1 - 2.75 V 1ststep-up output voltage VLOUT1 Without load +4.6 - +5.5 V st 1 step-up output VLOUT1 I_VLOUT1_LOAD= 2.3mA 90 95 - % nd 2 step-up output voltage VLOUT2 Without load 8.1 V nd 2 step-up output VLOUT2 I_VLOUT2_LOAD= 0.1mA 90 93 - % 3rdstep-up output voltage VLOUT3
in „OLED Sammelbestellung“ · Markt ·
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PDF
CMEL_C0283QGLC-T_Tentative_Spec_May07_-_GLYN_.pdf
- -1.0 V Logic Operating Voltage RVDD - 1.45 1.5 1.55 V Operating frequency fosc Frame frequency = 60Hz 1161.1 1290.2 1419.3 kHz st 1 step-up input voltage VCI1 - 2.1 - 2.75 V 1ststep-up output voltage VLOUT1 Without load +4.6 - +5.5 V st 1 step-up output VLOUT1 I_VLOUT1_LOAD= 2.3mA 90 95 - % nd 2 step-up output voltage VLOUT2 Without load 8.1 V nd 2 step-up output VLOUT2 I_VLOUT2_LOAD= 0.1mA 90 93 - % 3rdstep-up output voltage VLOUT3
in „[V] Displays und diverses“ · Markt ·
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Datei
Neues_Textdokument.txt
; prime for 1st execution of ANT1 logic ; ; ANTENNA1 portion of cycle ; mainloop: out portb,r17 ;turn on antenna1 loop1: eor r21,r3 ;toggle 100 kHz clock signal nop out portd,r21 ;update I/O port pins ldi r25,divcount
in „benötige hilfe um die angehängte datei zu verstehen“ · Mikrocontroller und Digitale Elektronik ·
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GH025A_A3__-_090622.pdf
1 DUTY VCC 20 4 5 FB1 R1 3 BCT REG53 18 C10 C15 4 BRT BST 17 5 CT SW 16 S2 R12 R2 6 SRT LN 15 S1 R17 8 GND PGND 13 C8 9 FB SS 12 C7 10 IS SCP 11 C6 VS STB C18 R5 R8 OVP R6 C4 FB1 5V R3 Q1 C14 R23 R24 D7
in „Display ansteurern“ · Mikrocontroller und Digitale Elektronik ·
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Reference_Design_Dimming_Ballast_Control.pdf
Panasonic EEU-FC1H4R7 12 1 C10 Capacitor, 100pF, SMT 1206 Panasonic ECU-V1H101JCH 13 1 C12 Capacitor, 1.5nF,1KV, SMT 1812 Johanson 102S43W152KV4 14 1 CRES Capacitor, 8.2nF, 1600VDC Panasonic ECW-H16822JV 15 2 D1,D4 Diode
in „Leuchstoff Röhre Dimmer Neon“ · Mikrocontroller und Digitale Elektronik ·
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Datei
RFM12.txt
'=== PLL Setting === 'Hex = 198 + y 'Bit-Syntax: 110011000 | ob1 | ob0 | lpx | ddy | ddit | bw1 | bw0 'ob... = ... (00= 5 oder 10MHz [standard] / 01=3.3MHz / 1x=2.5MHz oder weniger) 'lpx = Wählt den 'Low-Power-Mode' für den Quarz-Oszilator aus. (0=1ms [620µA] / 1=
in „bidirektionale RS232 Funkbrücke mit RFM12“ · Projekte & Code ·
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WS3441-WINSEMI.pdf
Ivcc=1mA 7.3 V Icc_clamp VCC Clamp current 2.5 mA V CC_ST VCC Turn On Threshold VCC Rising 6.9 V Vuvlo_HYS VCC Turn off Hysteresis VCC Falling 1.5 V Ist VCC Startup Current VCC<VCC_ST-0.5V 230 270 uA Iop VCC
in „LED Deckenleuchte integriert - glimmt nur leicht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HCF4511B.pdf
0.05 0.05 0.05 OL Voltage 10/0 10 0.05 0.05 0.05 V 15/0 15 0.05 0.05 0.05 V IH High Level Input 0.5/3.8 5 3.5 3.5 3.5 Voltage 1/8.8 10 7 7 7 V 1.5/13.8 15 11 11 11 V IL Low Level Input 3.8/0.5 5 1.5 1.5 1.5 Voltage 8.8/1 10 3 3 3 V 13.8/1.5 15 4 4 4 V Output Drive 0 4.1 4.57 4.1 4.1 OH Voltage 5 4.24 10 3.6 4.12 3.3 3.3 5 V 15 3.94 20 2.8 3.75 2.5 2.5 25 3.54 0 9.1 9.58 9.1 9.1 5 9.26 10 8.75 9.17 8.45 8.45 15 10 9.04 V 20 8.1 8.90 7.8
in „BCD-7Segment Treiber für VFD Röhren“ · Analoge Elektronik und Schaltungstechnik ·
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UC3842B.pdf
Supply Voltage. Current. Vsat D95IN341 Ii D95IN342 (V) Source Saturation (mA) Vi (Load to Ground) -1 TA=25˚C T A-40˚C 20 -2 Vi15V 80 s Pulsed Load 120Hz Rate 15 3 10 4 4 RT=10K 3 2 CT=3.3nF 2 T A-40˚C 8 8 VFB=0V TA=25˚C C C Sense0V 5 U U TA=25˚C 1 Sink Saturation GND (Load to Vi 0 0 0 200 400 600 O
in „Reparatur Schaltnetzteil“ · Analoge Elektronik und Schaltungstechnik ·
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uc3842b.pdf
Supply Voltage. Current. Vsat D95IN341 Ii D95IN342 (V) Source Saturation (mA) Vi (Load to Ground) -1 TA=25˚C T A-40˚C 20 -2 Vi15V 80 s Pulsed Load 120Hz Rate 15 3 10 4 4 RT=10K 3 2 CT=3.3nF 2 T A-40˚C 8 8 VFB=0V TA=25˚C C C Sense0V 5 U U TA=25˚C 1 Sink Saturation GND (Load to Vi 0 0 0 200 400 600 O
in „40-390V HV DC-DC-Wandler vom Chinamann“ · Analoge Elektronik und Schaltungstechnik ·
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zukunft67.pdf
g t e tw a 500 p F , die T o leran z J_ 20 P ro zen t, d e r V erlu stw in k el lie g t zw ischen 10~2 u n d 1 0 “1. A us diesen G rü n d en is t m an in d e r H a lb le ite rb lo c k te c h n ik gezw ungen, m ö g lich st a u f K o n d e n sa to re n zu v erzich ten . L ogische S c h a ltu n g e n a
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AND9282-D_AC_Zero_Crossing.pdf
OUTPUT PULSE Component 230 V Variant 120 V Variant Component 230 VACVariant 120 AC Variant AC AC D1 S1FLJ BAS21LT1G C1 3.3 nF/450 V 6.8 nF/250 V D1, D2, D3 S1FLK BAS21LT1G R1 43 kW 24 kW Q1 MPSA44 MMBTA42LT1G R2 300 kW 300 kW R3 10 kW 10 kW Q2, Q3 BC848BWT1G BC848BWT1G R1 470 W 470 W R2 330 kW 160
in „Nulldurchgangserkennung: Optokoppler sperrt dauerhaft“ · Analoge Elektronik und Schaltungstechnik ·
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philips_715g5246-p01_psu.pdf
Circuit Diagrams and PWB Layouts TPM10.1A LA 10. EN 54 10.3 A 715G5246 PSU 10-3-1 Power Circuit Power Circuit A01 A01 D9802 FB9803 1N5408-11 60R SB+ 2 1 2 B1+ RV9902 FB902 ! FB9804 FB9801 24V CN903 TVR14561KFAOZF BEAD BEAD FMN-1106S BEAD
in „Fehlersuche TV-Netzteil“ · Analoge Elektronik und Schaltungstechnik ·
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tms320lf2407a.pdf
register field definitions. 15 13 12 11 10 9 8 0 ST0 ARP OV OVM 1 INTM DP 15 13 12 11 10 9 8 7 6 5 4 3 2 1 0 ST1 ARB CNF TC SXM C 1 1 1 1 XF 1 1 PM Figure 10. Organization of Status Registers ST0 and ST1 Table 5. Status Register Field Definitions
in „TMS320LF2407 ???“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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488.1-1987-NN.pdf
1 (Note 10) U ST X X X X X X X 1 XXX 1 1 X X X PPR 2 parallel poll response 2 (Note 10) U ST X X X X X X 1 X XXX 1 1 X X X PPR 3 parallel poll response 3 (Note 10) U ST X X X X X 1 X X XXX 1 1 X X X PPR
in „GPIB Controller“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Antennen.asm
; prime for 1st execution of ANT1 logic ; ; ANTENNA1 portion of cycle ; mainloop: out portb,r17 ;turn on antenna1 loop1: eor r21,r3 ;toggle 100 kHz clock signal nop out portd,r21 ;update I/O port pins ldi r25,divcount
in „benötige hilfe um die angehängte datei zu verstehen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
i2c.c
I2cReceiveDataIndex, I2cReceiveData); // set state I2cState = I2C_IDLE; break; // Slave Transmitter case TW_ST_SLA_ACK: // 0xA8: own SLA+R has been received, ACK has been returned case TW_ST_ARB_LOST_SLA_ACK: // 0xB0: GCA+R has been received, ACK has been returned #ifdef I2C_DEBUG uart_tx_string("I2C: ST->SLA_ACK
in „TWI, I2C Master-Slave mit AVR“ · Mikrocontroller und Digitale Elektronik ·
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Anlage.pdf
0 20 9 5 2 1 C 4 C 1 11 R4 9 8 7 k k 8 19 2 , 2 , 3 14 7 18 4 4 2 3 6 16 IC3a 2 1 IC3 3 15 IC3b 1 1 5 1 C 7 1 2 14 1 R R 2 13 2 9 J3 3 1 12 6 10 4 4 8 5 5 12 2 10 74HC20 13 0 2 1 Reset 2 2 3 1 1 S K 1 K Q1 1 2 K21 K22 3 4 1 1 2 1 J2 5 6 2 p 2 p 1 2 1 2 2 2 5 C 2 3 4 6 K K K C 1 2 1 2 1 2 5 6 5 6 5 6 7 8 7 8 A 9 10 9 10 r 11 12 11 12 o 13 14 13 14 P 15 16 D B r t o o P P O S t KS I O s D 2 1 S MMRG e N 1 n o 6 5 4 3 2 1
in „AVR-Programmierung über LPT nicht möglich“ · Mikrocontroller und Digitale Elektronik ·
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kicad_vergleich_v_03.pdf
-10-2017 MCU_Microchip_PIC24.dcm 1 30-10-2017 MCU_Microchip_PIC32.dcm 13 30-10-2017 MCU_NXP_Kinetis.dcm 146 30-10-2017 MCU_NXP_LPC.dcm 93 30-10-2017 MCU_NXP_S08.dcm 189 30-10-2017 MCU_Parallax.dcm 3 30-10-2017 MCU_ST_STM32.dcm 799 30-10-2017 MCU_ST_STM8.dcm 7 30-10-2017 MCU_Texas_MSP430.dcm 357 30-10-2017 mechanical.dcm 6 24-08-2017 Mechanical.dcm 6 30-10-2017 memory.dcm 124 24-08-2017 memory.dcm 126 30-10-2017 microchip.dcm
in „Neues bei KiCAD Nightly-Builds ab 2017 Okt.“ · Platinen ·
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Anleitung.pdf
T T T K17 16 A2 A A2 1 2 1 2 9 15 D6 Q6 5 RESET 2 3 4 100 10n 1 2 3 4 5 6 7 8 9 10 18 D7 Q7 S S S 19 17 3 K11 44 23 11 33 20 10 A7 A7 PA7/ADC7 c c c c 21 40244 9 1 2 9 A6 A6 36 PA6/ADC6 V V V V PB7/SCK 9 CLOCK 22 +5V +5V 8
in „AVR_Ctrl mit BasCom programmieren“ · Mikrocontroller und Digitale Elektronik ·
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NUVOTON_M058_M0516.pdf
44 4 4 44 4 3 3 3 Crystal AD3 10 I/O2 I/O13 35 AD12 24 3 2 1 0 1 1 0 0 CB6 DVDD 11 I/O3 I/O12 34 DVSS CB5 41 1 1 1 1D DS S S S 0.1uF DVSS 12 VCC VSS 33 DVDD 0.1uF P/ / / / /V VT T T T AD4 13 VSS VCC 32 AD11 0 1 1 2 2A 0 1 2 3 14 I/O4
in „ARM Cortex M0 NUVOTON M058ZBN auslesen / flashen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
MPLAYER.ASM
0f0 jb special_i je special_d cmp al,0f1 je special_n cmp al,0f7 je useasis cmp al,0f9 jb special_o cmp al,0fd jb special_u je special_y jmp short normalized special_s: mov al,(('S'-041) shl 1)+042 jmp short normalized special_o: mov al,(('
in „Kennt sich jemand mit Tastatur Puffern aus ?“ · Mikrocontroller und Digitale Elektronik ·
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bma150.pdf
-0) acc_z (06h, 7-6; 07h, 7-0) The description of the digital signals acc_x, acc_y and acc_z is “2’s complement”. From negative to positive accelerations, the following sequence for the ±2g measurement range can be observed (±4g and ±8g correspondingly): -2.000g : 10 0000 0000 -1.996g : 10 0000 0001
in „ARDUINO: Neigungsmesser bauen (Steigung/Gefälle)“ · Mikrocontroller und Digitale Elektronik ·
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doc8373.pdf
three pins: RESET: TPI enable input TPICLK: TPI clock input TPIDATA: TPI data input/output Figure 1. The Atmel Tiny Programmer Interface for external programmers. +5V ATtiny4/5/9/10 TPI TPIDATA/PB0 PB3/RESET CONN GND V CC TPICLK/PB1 PB2 APPLICATION 8373B−AVR−10/2012 Refer to the corresponding device
in „Neue 8-Bit Tinys vorgestellt: 417/814/816/817“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OM5610_2_1_.pdf
Table 6 Digital inputs SYMBOL PARAMETER MIN. MAX. UNIT Digital inputs VIH HIGH level input voltage 1.4 − V VIL LOW level input voltage − 0.6 V Timing clk clock frequency − 300 kHz HIGH clock HIGH time 1.67 − s LOW clock LOW time 1.67 − s da shift register available after Ôsearch readyÕ − 14 s INTERFACE
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PDF
OM5610_2_1_.pdf
Table 6 Digital inputs SYMBOL PARAMETER MIN. MAX. UNIT Digital inputs VIH HIGH level input voltage 1.4 − V VIL LOW level input voltage − 0.6 V Timing clk clock frequency − 300 kHz HIGH clock HIGH time 1.67 − s LOW clock LOW time 1.67 − s da shift register available after Ôsearch readyÕ − 14 s INTERFACE
in „[V] FM Tuner OM5610“ · Markt ·
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PDF
OM5610_2_1_.pdf
Table 6 Digital inputs SYMBOL PARAMETER MIN. MAX. UNIT Digital inputs VIH HIGH level input voltage 1.4 − V VIL LOW level input voltage − 0.6 V Timing clk clock frequency − 300 kHz HIGH clock HIGH time 1.67 − s LOW clock LOW time 1.67 − s da shift register available after Ôsearch readyÕ − 14 s INTERFACE
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PDF
OM5610.pdf
Table 6 Digital inputs SYMBOL PARAMETER MIN. MAX. UNIT Digital inputs VIH HIGH level input voltage 1.4 − V VIL LOW level input voltage − 0.6 V Timing clk clock frequency − 300 kHz HIGH clock HIGH time 1.67 − s LOW clock LOW time 1.67 − s da shift register available after Ôsearch readyÕ − 14 s INTERFACE
in „[V] FM Tuner OM5610“ · Markt ·
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Datei
usart-adc.txt
_1; //ADC10CTL0 = ADC10SHT_2 | ADC10ON | REFON | REF2_5V; // Input channel 1, trigger using ADC10SC bit , no clock division , // internal ADC clock , single channel single conversions ADC10CTL1 = INCH_3
in „MSP430G2231 USART letztes Zeichen kaputt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mb1045_changed.pdf
AIN_1N01 10P0U15010 P0U15027 27 T_J MS0JTMS +3V3 P PA0 S2_MISO P0U15026 N0T0JTCK 11P0U1501PA1 1 S2_CK 6 T_J CK 12 P0U15012 T P0U15255 T_SWDIO_INWDIO0IN U2_TX O S O PB12 S O 1 X K K I O B _ _ _ _ C M M 0 1
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PDF
mb1045_changed_korrigiert.pdf
AIN_1N01 10P0U15010 P0U15027 27 T_J MS0JTMS +3V3 P PA0 S2_MISO P0U15026 N0T0JTCK 11P0U1501PA1 1 S2_CK 6 T_J CK 12 P0U15012 T P0U15255 T_SWDIO_INWDIO0IN U2_TX O S O PB12 S O 1 X K K I O B _ _ _ _ C M M 0 1
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A25L080_Flash.pdf
data is available from the Figure 1. Bus Master and Memory Devices on the SPI Bus SPI Interface with SDO SDI (CPOL, CPHA) = (0, 0) or (1, 1) SCK C DO DIO C DO DIO C DO DIO Bus Master (ST6, ST7, ST9, ST10, Other) SPI Memory SPI Memory SPI
in „MSP430 SPI A25L080 Flash“ · Mikrocontroller und Digitale Elektronik ·
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PDF
66712.pdf
and Display Patterns SEGRAM SEGRAM data address a) 5-dot font width b) 6-dot font width A3 A2 A1 A0 D7 D6 D5 D4 D3 D2 D1 D0 D7 D6 D5 D4 D3 D2 D1 D0 0 0 0 0 B1 B0 * S1 S2 S3 S4 S5 B1 B0 S1 S2 S3 S4 S5 S6 0 0 0 1 B1 B0 * S6 S7 S8 S9 S10 B1 B0 S7 S8 S9 S10 S11 S12 0 0 1 0 B1 B0 * S11 S12 S13 S14 S15B1
in „ds89c420 @ 32mhz“ · Mikrocontroller und Digitale Elektronik ·
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AkkuPack_4LiPo.PDF
To:BMZ Product Specifications st 1. Date of 1 Issue: 2011-6-16 2. Date of Revision (1 s): 3. Customer’s Part Name: 4. Customer’s Part Number: 5. AEenergy’s Part Name: AE754364P8H-4S 6. AEenergy’s Part Number:AE776-02-A 7. Customer’s
in „Lipo Akkus zusammen schalten..“ · Analoge Elektronik und Schaltungstechnik ·
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tda7449.pdf
Resistance Junction- pins 85 °C/W Table 4. Quick Reference Data Symbol Parameter Min. Typ. Max. Unit V S Supply Voltage 6 9 10.2 V V Max Input Signal Handling 2 V CL RMS THD Total Harmonic Distortion V = 0.1Vrms f = 1KHz 0.01 0.1 % S/N Signal to Noise RatoutV1Vrms (mode = OFF) 106 dB S C Channel Separation
in „Woher TDA7449 (in DIP Package) nehmen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AOB0000C27.pdf
specifications should be verified in written form with the engineering division. 200 ERQ14A 2.0 to 9.1 (Ω) 200 ERQ12A 2.0 to 9.1 (Ω) 10 to 470 (Ω) 10 to 560 (Ω) 100 100 50 50 ) ) ( 30 ( 30 m m t t n n s s F 10 F 10 5 5 1 0 7 9 12 16 20 25 30 10 7 9 12 16 20 25 30 Multiple of the power rating Multiple of the power rating ERQ1AB ERQ2AB 200 2.0 to 9.1 (Ω) 200 2.0 to 9.1 (Ω) 10 to 560 (Ω) 10 to 560 (Ω) 100 100 50 50 s s ( 30 ( 30 m m t t i i u u F 10 F 10 5 5 1 1 0 7 9 12 16 20 25 30 0 7 9 12 16 20 25 30 Multiple of the power
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Datenblatt_Epson_S1D15G10_vom_Display_Controller.pdf
drive of liquid crystal. 396 COMn O They output the signal for common drive of liquid crystal. 132 10 EPSON Rev. 1.0 S1D15G10D08B000 7.5 EEPROM Interface Pins Number of Pin name I/O Description pins SDA O Connected to the SDA pin of S1F17A10. *1 1 RESET O Connected to the XRST pin of S1F17A10. *1 1 CLOCK
in „The Siemens S65 132x176, 65536 color display with AVR“ · Projekte & Code ·
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PDF
S1D15G10.pdf
drive of liquid crystal. 396 COMn O They output the signal for common drive of liquid crystal. 132 10 EPSON Rev. 1.0 S1D15G10D08B000 7.5 EEPROM Interface Pins Number of Pin name I/O Description pins SDA O Connected to the SDA pin of S1F17A10. *1 1 RESET O Connected to the XRST pin of S1F17A10. *1 1 CLOCK
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PDF
802.3-2008_section2.pdf
1 0 = 1000 Mb/s 0 1 = 100 Mb/s 0 0 = 10 Mb/s 0.12 Auto-Negotiation Enable 1 = enable Auto-Negotiation process R/W 0 = disable Auto-Negotiation process 0.11 Power Down 1 = power down R/W 0 = normal operationb
in „Kommunikation uC mit PHY“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
PLC-LOX.ino
lo2 off analog output command: rail1 ao1 180 status command: rail1 stat10 reset command: rail1 rst default scan cycles: 1wire cycle: 30000 ms analog input cycle: 10000 ms heart beat cycle(only RS485): 60000 ms MODBUS TCP commands: FC1 -
in „1 Wire auf 2 GPIO pins“ · Mikrocontroller und Digitale Elektronik ·
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LST670.pdf
tP IF mA T T D =0.005 0.01 0.02 0.05 0.1 2 0.2 10 5 0.5 DC 10 1 10-5 10-4 10-3 10-2 10-1 10 s 10 1 tp 2006-01-01 8 LS T670, LO T670, LY T670, LG T670, LP T670 8)Seite 15 Maßzeichnung Package Outlines 8) page 15 3.0(0.118) 2.1(0.083) 2.6(0.102
in „[V] LS T670 Rote SMD Leds“ · Markt ·
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Bild
Schaltplan eines Netzteils
AC IN, PRIMARY, POWER (4), For FCT use, 200V Dest Only, R22 Pull Down, DESTINATION, J:0, U:1.2k, C:2.7k, R:4.7k, T:8k, K:10k, A:15k, B:24k, GE:47k, L:100k, AC OUT, CB1, CB2, C7, F2, s6, J1, R1, CB4, CB3, LS9D1, 0.10.25, TP0031-31, Q6, M6, D105, s8, J, YA129, UC2A91, R14, TK, X7035, BG, X7035, 0.01/100, D11, D105, s12, R12, no-use, s13, C75, s14, R18, no-use, ST1, POWER(4), PN1, PHL, 1SS355, Q2, 2.2k, R8, KTC38755-Y, GR-R, IC2, EL816, s41, s42, Q5, s43, R15, R17, R14, 1/92.2k, R13, 0.1, 1SS355, Q3, KTC38755, 1SS355
in „Reparatur Yamaha DSP Z7“ · Analoge Elektronik und Schaltungstechnik · · Schaltpläne
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PDF
BC847BS_2xnpn.pdf
mV Cc collector capacitance E = e = 0;CB = 10 V; f = 1 MHz − − 1.5 pF Ce emitter capacitance C = c = 0;EB = 500 mV; f = 1 MHz − 11 − pF f transition frequency I = 10 mA; V = 5 V; f = 100 MHz100 − − MHz T C CE Note 1. Pulse test: t 300 s; δ ≤ 0.02
in „BC547 matched“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
987651-3691.pdf
Terminal Retention to Housing (min.): 4.9N Tray (Through Hole Header Assembly) headers Mating Force(1st): 19.6N (2 Circuit W to B) — Tin plated for crimp terminal, through hole Bag (Receptacle Housing) 24.5N (2 Circuit W to W) Designed In: Millimeters header and SMT header Unmating Force (1st): 2.8N
in „Ausrückwerkzeug für Molex PicoBlade Connector - gibt es das?“ · Mechanik, Gehäuse, Werkzeug ·
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msm82c55a_2rs.pdf
29 D3 PC6 6 28 D4 PC5 7 27 D5 PC4 8 26 D6 PC 9 25 D 0 7 PC1 10 24 VCC PC2 11 23 PB7 2 3 4 5 6 7 8 9 0 1 44 pin Plastic QFJ 1 1 1 1 1 1 1 1 2 2 2 C C B B1 B2 C B B4 B B C D A0 A1 A A C A4 A A A7 R N P P P P V P P P P N R P P P P N P P P P W 6 5 4 3 2 1 3 2 1 0
in „8255 - wie programmieren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
definitions.h
position; }u8e_t; typedef struct u8f{ uint8_t code; uint8_t position; }u8f_t; typedef struct u8flameLed1st{ uint8_t code; uint8_t position; }u8flameLed1st_t; typedef struct u8flameLed2nd{ uint8_t code; uint8_t position; }u8flameLed2nd_t; typedef struct sysDevider{ uint32_t microsecond; uint32_t multiplicator
in „Interrupt wird ständig aufgerufen“ · Mikrocontroller und Digitale Elektronik ·