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NL2432HC22.pdf
DATA SHEET DOD-PD-0401 (4th edition) 11 NL2432HC22-22B 4.5 POWER SUPPLY VOLTAGE SEQUENCE V VGON > 90% VDD and V0 toV4 VCC > 90% Logic signals OEN 0V t > 0 > 0 > 0 > 0 > 0 > 90% VGOFF Remark1:Supply voltage sequence must be kept according to the above timings. And when it is turned off, the sequence
in „NL2432HC22 23b Display nutzen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2331212.pdf
to T 0.5 K/s to 3 K/s 0.5 K/s to 3 K/s 0.5 K/s to 3 K/s Peak Max. time above T Liquidus217 °C) (3 ) 90 s 90 s 90 s Max. time above 230 °C (t 4) 70 s 65 s 60 s Peak temperature T Peak 260 °C 250 °C 245 °C Max. time above T Peak minus 5 °C 40 s 30 s 30 s Ramp-down rate from T 3 K/s to 6 K/s 3 K/s to 6 K
in „[V] 80St. Aluminium-Elektrolytkondensatoren, SMD, Becher, radial - SMD, 100 µF, 50 V, Baureihe 146 C“ · Markt ·
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PDF
SSD1332_R1.61.pdf
325 SC11 6 D6 86 SB91 166 SC64 246 SA38 326 SB11 7 D5 87 SA91 167 SB64 247 SC37 327 SA11 8 D4 88 SC90 168 SA64 248 SB37 328 SC10 9 D3 89 SB90 169 SC63 249 SA37 329 SB10 10 D2 90 SA90 170 SB63 250 SC36 330 SA10 11 D1 91 SC89 171 SA63 251 SB36 331 SC9 12 D0 92 SB89 172 SC62 252 SA36 332 SB9 13 E(RD#) 93
in „OLED und 8051“ · Mikrocontroller und Digitale Elektronik ·
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PDF
vhfcindex.pdf
Schottky Diode Mixer B Lubbe, DJ5XA 1975/2 83 - 89 13 cm Band An SHF Wavemwter K Hupfer, DJ1EE 1975/2 90 - 92 23 cm Band An SHF Wavemeter K Hupfer, DJ1EE 1975/2 90 - 92 Measuring Technology An SHF Wavemeter K Hupfer, DJ1EE 1975/2 90 - 92 Audio Active Bandpass Filters Using RC Components Part 2 : Practical
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PDF
BAK-N18650COP.pdf
No A standard discharged cell is subjected to a reverse charge discharge testexplosion at 2.5 A for 90 minutes at 25±2℃ 5.5.4 IEC62133 强制放电测 不起火,不爆 电芯按照标准放电方式放电后,25±2℃条件下以 2.5A 试 炸 反向充电 90 分钟。 After standard fully charge, the cell is put in the oven. And 130℃ hot No fire, No then the oven temperature
in „Akku bei Grasschere tauschen“ · Analoge Elektronik und Schaltungstechnik ·
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3999fa-1.pdf
V 1.15 UVLO FALLING V1.15 OVLO FALLING N N P 1.10 P1.10 L L V 1.05 V1.05 U O 1.00 1.00 0.95 0.95 0.90 0.90 125 –50 –25 0 25 50 75 100 125 150 –50 –25 0 25 50 75 100 150 TEMPERATURE (°C) TEMPERATURE (°C) 3999 G07 3999 G08 3999fa 4 Formoreinformationwww.linear.com/LT3999 LT3999 TYPICAL PERFORMANCE CHARACTERISTICS
in „Halbbruecke Fragen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Si_4420.pdf
Tolerances Including Temperature and Aging [ppm] Bit Rate: 2.4kbps Deviation [+/- kHz] 30 45 60 75 90 105 120 315 MHz 25 50 75 100 100 100 100 433 MHz 20 30 50 70 90 100 100 868 MHz 10 20 25 30 40 50 60 915 MHz 10 15 25 30 40 50 50 Bit Rate: 9.6kbps Deviation [+/- kHz] 30 45 60 75 90 105 120 315 MHz
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Datei
Meteo.c
Chip type : AT90S8535 Clock frequency : 8,000000 MHz Memory model : Small Internal SRAM size : 512 External SRAM size : 0 Data Stack size : 128 *********************************************/ #include <90s8535.h> #include
in „Problem mit CodeVisionAVR“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Hamamatsu_-_InAsSb_photovoltaic_Detector_P13243.pdf
× 10 1.3 × 10 *2: Uniform irradiation on the entire photosensitive area *3: VR=0 V, RL=50 Ω, 10 to 90%, λ=1.55 μm Note: Uniform irradiation must be applied to the entire photosensitive area. Spectral response (D ) * Shunt resistance vs. chip temperature (Typ. Ta=25 °C) (Typ.) 1010 10 MΩ P13243-122MS
in „Photodiode mit OpAmp rauscht zu sehr“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ESP8266-12F_Tronixlabs_Australia.pdf
values Input Frequency 2412 2484 MHz Input resistance 50 Ω Input reflection -10 dB 72.2 Mbps down, PA output power 14 15 16 dBm Under 11b mode, PA output power 17.5 18.5 19.5 dBm Sensitivity DSSS, 1 Mbps -98 dBm CCK, 11 Mbps -91 dBm 6 Mbps (1/2 BPSK) -93 dBm 54 Mbps (3/4 64-QAM) -75 dBm HT20, MCS7 (65
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PDF
JINKO-SOLAR-PANEL-CHEETAH-72M-380-400-WATT.pdf
allow for excellent performance in LOW LIGHT low-light environment. Severe Weather Resilience 2400 Pa 5400 Pa Certified to withstand: wind load (2400 Pascal) and snow load (5400 Pascal). Durability Against Extreme Environmental Conditions RESISTANT High salt mist and ammonia resistance certified by TUV
in „Passt ein Solarmodul mit 72 Zellen zu einem 10S Li Akku?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SST5912_Datasheet_Rev_A.pdf
3.5 -1 -5 V DS= 10V, D = 1nA 2 IDSS Saturation Drain Current 15 7 40 mA V DS= 10V, GS = 0V -1 -100 pA V GS= -15V, DS = 0V IGSS Gate Reverse Current -0.2 nA TA = 125 C -1 -100 pA V DG= 10V, D = 5mA IG Gate Operating Current o -0.2 nA TA = 125 C VGS Gate-Source Voltage -1.5 -0.3 -4 V DG= 10V, D = 5mA V
in „Was ist das für ein Bauteil? Bzw welcher Hersteller?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATtiny261A_Complete.pdf
ADC0 (PA0) ADC1 (PA1) 20x 001100 ADC0 (PA0) ADC1 (PA1) 1x 001101 NA ADC1 (PA1) ADC1 (PA1) 20x 001110 ADC2 (PA2) ADC1 (PA1) 20x 001111 ADC2 (PA2) ADC1 (PA1) 1x 010000 ADC2 (PA2) ADC3 (PA4) 1x 010001 ADC3 (PA4)
in „USI Interface als SPI Schnittstelle beim ATtiny261A“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcdRoutines.h
Reset = Low-aktiv PortLcdCtrlDDR = 0xff; PortLcdCtrl = 0b1100011; } // PE: = Parameter Eingang // PA: = Parameter Ausgang // initialisiert das LCD void lcdInit(); // sendet ein Steuerkommando an das LCD // PE: data = Steuerkommando void lcdSendCmd(uint8_t data); /************************************
in „Funktionsparameter“ · Mikrocontroller und Digitale Elektronik ·
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Chip_-_Infosheet.pdf
without pin headers mounted, since everybody has it'sown favorates (pins male/female facing up/down or 90° angled, etc.). A set of high quality pin headers and receptacles are available as a Crumb128 Connector Kit (see www.chip45.com). Power Supply-Cru'Jlb128 requires a regulated +SV DC power supply. See
in „12 Led's mit C++ ansprechen atmega128“ · Softwareentwicklung ·
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PDF
Chip_-_Infosheet.pdf
without pin headers mounted, since everybody has it'sown favorates (pins male/female facing up/down or 90° angled, etc.). A set of high quality pin headers and receptacles are available as a Crumb128 Connector Kit (see www.chip45.com). Power Supply-Cru'Jlb128 requires a regulated +SV DC power supply. See
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PDF
bk_2610_2636_datasheet.pdf
Log) AQ0034: 1617 Filter Control Cable used in Basic Telephone Test SA0262 dB SPL Scale (28 – 89mV/Pa. AO0145: Averaging Time Control Cable Bench Type 6702 30dB Log) AO0194: Interface Cable (2m), IEC625-1 WH1698: “D” weighting networkreplaced by SA0263: dB SPL Scale (5 – 16mV/Pa. (25-way) a standardised
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PDF
SCD5580.PDF
SD MASTER SD SLAVE F VCC CLK LOAD CLK LOAD 22 F 1 2 6 9 13 14 1 2 6 9 13 14 Tan 40 11 VCC 38 OSC1 PA0 10 PA1 SCLK 33 MOSI 32 OSC2 39 V U1 CC 68HC05C4 1 RST 9 PA2 20 SCD5580/5581/5582/5583/5584 2–11 Cascading Multiple Displays Multiple displays can be cascaded using the CLK SELLK I/O pins as shown below
in „[V] 2 St. Punktmatrix Displays SCD5583, 5x5, 8-stellig, grün“ · Markt ·
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heds-1300.pdf
Symbol HEDS- Min. Typ. Max. Units Conditions Fig. Notes Dark Current Id 1200 50 1000 pA Vd = 5 V, If = 0 1300 50 1000 pA Reflection = 0% Capacitance Cd 1200 100 pF Vd = 0 V, If = 0 1300 100 pF f = 1 MHz Detector Area Ad 1200 0.16 sq-mm Square, with length 1300 0.16 sq-mm = 0.4 mm per side
in „Kugelschreiber mit Barcodescanner bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Infineon-BFQ790-DS-v02_00-EN.pdf
RFMedium Power Amplifier Electrical Performancein TestFixture 36 33 0.15GHz 30 27 0.45GHz ] 24 d 0.90GHz [x a 21 m 1.50GHz G 18 1.80GHz 2.60GHz 15 3.50GHz 12 9 6 0 1 2 3 4 5 6 7 V CE [V] Figure 10 Maximum PowerGain Gmaxvs.V CE atI C250mA,f=Parameter 1 1.5 0.5 2 0.4 5.0 6.0 3 0.3 4.0 4 0.2 3.0 5 0.01
in „HF-Ausgangsleistung - Verständnisfrage“ · HF, Funk und Felder ·
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DCF_77.pdf
kR-Widerstand). Schon aufgrund dieses extrem schmalbandigen Verhaltens ist Treiberleistung von 60 PA zur Verfügung, so daß ein nachgeschalteter Buffer sehr der Einsatz eines Quarzes naheliegend. Für den in ganz Mitteleuropa zu- zu empfehlen ist. 4 5 - IDEEN Ihi ELECTRONIC - Auch bei Betrieb an niedriger
in „DCF77: Welcher Parallelkondensator?“ · HF, Funk und Felder ·
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PDF
nRF2401rev1_1.pdf
V V V V D = = = = = = = V D D D S S S S D V V V V V V V XC1 PWR_UP TM DuoCeiver ShockBurst XC2 VSS_PA=0V DEMOD F CE B LNA VDD_PA=1.8V Clock I DR2 Recovery, DataSlicer Data DOUT2 ADDR Channel 2 CLK2 Decode CRC Frequency Code/Decode Synthesiser DR1 FIFO Data DATA In/Out Channel 1 ANT1 CLK1 GFSK 3-wire
in „Externe Antenne für Funkmodul TRW24G“ · HF, Funk und Felder ·
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PDF
FS970X-2.pdf
4.0000 MHz VBAT VSS 1 MΩ 1 KΩ VCC VSS 2 3 4 1 nF 500 KΩ mA+uA XTALI L Z RST_ 15 1A T B 19 SA X CS_ 13 PA0 LCD PANEL VDDS 27 VDDA WR_ 11 PA1 mA uA 1 ΜΩ RD_ 10 PA2 mA+uA 15A 0.99 Ω 99 Ω 23 FTA ALE 12 PA3 PUSH BUTTONS 27 nF 24 FTB AD0 9 PA4 Micro- VBAT AD1 8 PA5 Processor 0.01 Ω 17 FTC DT AD2 7 PA6 Other 5.6
in „Erfahrungen mit DM 620 (Digitalmultimeter mit Datenlogger)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
1912111437_KDS-Daishinku-1XTV10000MDA_C253701.pdf
LOAD_R//C=(10kΩ//10pF)±10% - - ±0.2 ppm 5.vs Aging TA=Room ambient - - ±1.0 ppm/year 5 Start Up Time @90% of final Vout level - - 2.0 ms 6 Frequency Control 1.Control Range V =+1.5V±1.0V ±8 - ±15 ppm 4 CONT 2.Input Resistance 500 - - kΩ 7 SSB Phase Noise Relative to f0 level offset 1kHz - - -135 dBc/Hz
in „8-stelliger Frequenzzähler, reziprok, STM32F7xx“ · Projekte & Code ·
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PDF
F1E200_Datsheet_V1.pdf
mode can be configured by software. 7.17.2 Port Configuration Table PORT A MULTIPLEX FUNCTION SELECT PA0 NPUT /OUPUT SDC0_D1 SPI1_CS0 EINT0 PA1 NPUT OUTPUT SDC0_D0 SPI1_MOSI EINT1 PA2 NPUT OUTPUT SDC0_CLK UART0_TX SPI1_CLK PA3 NPUT OUTPUT SDC0_CMD SPI1_MISO PA4 NPUT OUTPUT SDC0_D3 UART0_RX EINT2 PA5 NPUT OUTPUT SDC0_D2 IR_RX EINT3 PA6 NPUT OUTPUT TWI0_SCK NCE2 PA7 NPUT OUTPUT TWI0_SDA NCE3 PA8 NPUT OUTPUT PWM0 SPI1_CS1 EINT4 PA9 NPUT OUTPUT IRTX EINT5 PA10 NPUT OUTPUT IR RX EINT6 PortA(PA) Multiplex Function Select Table PORT C M
in „Allwinner F1E200 Alternative“ · Mikrocontroller und Digitale Elektronik ·
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PDF
196hvc_2.pdf
Rated capacitance range, C 15.0 F 15.0 F 15.0 F 15.0 F 15.0 F 15.0 F R - 45.0 F 45.0 F 45.0 F - - 90.0 F 90.0 F 90.0 F 90.0 F 90.0 F 90.0 F Tolerance on C at 20 °C -20 % to +80 % R Rated voltage, U R 1.4 V 2.8 V 4.2 V 5.6 V 7.0 V 8.4 V Maximum surge voltage, U (mSx. 30 s) 1.6 V 3.2 V 4.8 V 6.4 V 8.0
in „Kapazitätsangaben in Datenblättern bei gestapelten Cs (Supercap-Zellen)“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
IR_KL.ino.txt
// ATMEGA8 mit internen 8MHz-RC-Oszillator // PB0=PA-M104B1, PB1=PB-M104B1, PB2=PC-M104B1, PB3=PD-M104B1, PB4=HIFI-TO, PB5=STBY-M104B1 // PROGRAMM RUNTER PC0 vom ATMEGA8 // PROGRAMM RUNTER PC1 vom ATMEGA8 // LAUTSTÄRKE VERRINGERN PD6 vom ATMEGA8 // LAUTSTÄRKE
in „Alte VFD-Anzeige übrig, möchte gerne eine Uhr damit bauen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HP_601300_18AhHP_LFP.pdf
Maximum charge voltage 3.8 V Recommended charge current up to 18 A (1 C) Continuous charge current up to 90 A (5 C) Maximum pulse charge current (15 s) 270 A (15 C) (Max. SOC 70 %, average current < 90 A) Recommended voltage limit for discharge 2.5 V r Lower voltage limit for discharge 2.1 V Lower voltage
in „HowTos über LiFePo4 Akkus?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DS_OPA657_2008-12.pdf
Offset Voltage Drift VCM = 0V ±2 ±6 ±6 ±6 µV/°C Max A Input Bias Current VCM = 0V ±1 ±5 ±450 ±1250 pA Max A Input Offset Current VCM = 0V ±0.5 ±5 ±450 ±1250 pA Max A Common-Mode Rejection Ratio (CMRR) V = ±0.5V 98 91 89 87 dB Min A CM Power-Supply Rejection Ratio (+PSRR) +VS= 4.5V to 5.5V 82 78 76 74
in „Stabilität OPV OPA657“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
cube_asm.asm
restliche Vektortabelle ignoriert ldi work, RAMEND ; Stack initialisieren out SPL, work ldi work, 1<<PA0|1<<PA1 ; Ausgaberegister einstellen out DDRA, work ldi work, 1<<PB0|1<<PB1|1<<PB2|1<<PB3|1<<PB4 out DDRB, work ldi work, 1<<PD1|1<<PD3|1<<PD4|1<<PD5|1<<PD6 out DDRD, work clr work ; Alles ausschalten
in „Pollin LED Cube“ · Projekte & Code ·
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Datei
c-sps.c
: 1 Date : 20.01.2004 Author : Schweinester Josef Company : Elektrotechnik Comments: Chip type : AT90S2313 Clock frequency : 4,000000 MHz Memory model : Tiny External SRAM size : 0 Data Stack size : 32 *********************************************/ #include <90s2313.h> #define Tog_PA(Pos) PORTA ^= (1
in „AVR wie SPS Programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt_WCDMA-GSM-EDGE-Transceiver_MMM7210.pdf
Data Sheet: Technical Data, Rev. 2.2 2 Freescale Semiconductor MMM7210 Signal Description TCXO EDGE PA 1920-1980 MHz 1850-1910 MHz 1710-1980 MHz VGA HBIQ 1710-1785 MHz Mod SPI WCDMA TxVCO BB LBIQ Fltrs, ΣΔ 824-849 MHz Mod Drvrs VGA 824-915 MHz EGPRS B5-PA TxVCO GT1 GT2 824-849 MHz 824-915 MHz S Digital
in „GSM-Modul (SIM908) nur analoge Ausgänge für Anruf?“ · HF, Funk und Felder ·
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PDF
at91sam.pdf
13 PA8/PGMM0 38 PB7 63 PB18 88 PA4/PGMNCMD 14 PA9/PGMM1 39 PB12 64 PB19 89 PA5/PGMRDY 15 VDDCORE 40 PB0 65 PB20 90 PA6/PGMNOE 16 GND 41 PB1 66 PB21 91 PA7/PGMNVALID 17 VDDIO 42 PB2 67 PB22 92 ERASE 18 PA10
in „SPI-Initialisierung von zwei Geräte über den gleichen Bus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
_Dokumentation_V1.7_Stand_27.02.2013.pdf
0 0 0 0 0 0 0 0 1 1 * '* EA4 1 0 0 0 0 0 0 0 0 0 0 * '* * '* Pinbelegungen * '* ------------- * '* PA0 - Bitmuster D0 * '* PA1 - Bitmuster D1 * '* PA2 - Bitmuster D2 * '* PA3 - Bitmuster D3 * '* PA4 - Bitmuster D4 (13. Latch EA0) * '* PA5 - Bitmuster D5 (13. Latch EA1) * '* PA6 - Bitmuster D6 (13. Latch EA2) * '* PA7 - Bitmuster D7 (13. Latch EA3) * '* * '* PB0 - frei * '* PB1 - frei * '* PB2 - frei * '* PB3 - frei * '* PB4 - SD-Card /CS * '* PB5 - SD-Card DataIn, ISP-MOSI * '* PB6 - SD-Card DataOut, ISP-MISO *
in „Tutorial 10x10x10 LED-Cube“ · Mikrocontroller und Digitale Elektronik ·
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PDF
_Dokumentation_V1.8_Stand_27.03.2013.pdf
0 0 0 0 0 0 0 0 1 1 * '* EA4 1 0 0 0 0 0 0 0 0 0 0 * '* * '* Pinbelegungen * '* ------------- * '* PA0 - Bitmuster D0 * '* PA1 - Bitmuster D1 * '* PA2 - Bitmuster D2 * '* PA3 - Bitmuster D3 * '* PA4 - Bitmuster D4 (13. Latch EA0) * '* PA5 - Bitmuster D5 (13. Latch EA1) * '* PA6 - Bitmuster D6 (13. Latch EA2) * '* PA7 - Bitmuster D7 (13. Latch EA3) * '* * '* PB0 - frei * '* PB1 - frei * '* PB2 - frei * '* PB3 - frei * '* PB4 - SD-Card /CS * '* PB5 - SD-Card DataIn, ISP-MOSI * '* PB6 - SD-Card DataOut, ISP-MISO *
in „Tutorial 10x10x10 LED-Cube“ · Mikrocontroller und Digitale Elektronik ·
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PDF
_Dokumentation_V1.9_Stand_23.09.2013.pdf
0 0 0 0 0 0 0 0 1 1 * '* EA4 1 0 0 0 0 0 0 0 0 0 0 * '* * '* Pinbelegungen * '* ------------- * '* PA0 - Bitmuster D0 * '* PA1 - Bitmuster D1 * '* PA2 - Bitmuster D2 * '* PA3 - Bitmuster D3 * '* PA4 - Bitmuster D4 (13. Latch EA0) * '* PA5 - Bitmuster D5 (13. Latch EA1) * '* PA6 - Bitmuster D6 (13. Latch EA2) * '* PA7 - Bitmuster D7 (13. Latch EA3) * '* * '* PB0 - frei * '* PB1 - frei * '* PB2 - frei * '* PB3 - frei * '* PB4 - SD-Card /CS * '* PB5 - SD-Card DataIn, ISP-MOSI * '* PB6 - SD-Card DataOut, ISP-MISO *
in „Tutorial 10x10x10 LED-Cube“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SAM-V71Q-SAM-V71N-SAM-V71J_Datasheet.pdf
PA22 I/O PIODCCLK (2) I RK I/O PWMC0_PWMEXTRG1 I NCS2 O – – PIO, I, PU, ST 46 L4 VDDIO GPIO_AD PA23 I/O – – SCK1 I/O PWMC0_PWMH0 O A19 O PWMC1_PWML2 O PIO, I, PU, ST 56 L7 VDDIO GPIO_AD PA24 I/O – – RTS1
in „Atmel SAMV71 CAN FD“ · Mikrocontroller und Digitale Elektronik ·
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PDF
opa541.pdf
voltage ±V MAX ±2.5 ±10 µV/V OPA541AM/AP, vs power OPA541BM/SM ±20 ±60 µV/W B Input bias current 4 50 pA I Input offset current ±1 ±30 pA OS Specified temperature range 5 nA INPUT CHARACTERISTICS Common-mode voltage Specified temperature range ±(|VS| – 6) ±(|VS| – 3) V range Common-mode rejection V CM=
in „Audio Endstufe selber bauen nur NPN“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Sender_31.asm
0xA640 ldi r20,0xA6 ldi r21,0x40 rcall WriteCMD ;0xC647 ldi r20,0xC6 ldi r21,0x47 rcall WriteCMD ;0x90A0 ldi r20,0x94 ldi r21,0xA0 rcall WriteCMD ;0xC2AC ldi r20,0xC2 ldi r21,0xAC rcall WriteCMD ;0xCA80 ldi r20,0xCA ldi r21,0x81 rcall WriteCMD ;0xCA83 ldi r20,0xCA ldi r21,0x83 rcall WriteCMD ;0xC49B ldi
in „Kein Funk zwischen 2 RFM12 Modulen“ · HF, Funk und Felder ·
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PDF
kb6206.pdf
more than 300mA (type) Highly Accurate : ± 2% TheKB6206consistsofacurrentlimitercircuit,adriver 8.0PA (TYP.) transistor,aprecisionreferencevoltageandanerror Low Power Consumption Operational Temperature Range -40OC ~ 85 C correctioncircuit. Low ESR Capacitor can be used TheseriesiscompatiblewithlowESRceramiccapacitors
in „[S] Bezugsquelle KB6206“ · Markt ·
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PDF
BCM2070-B1_RIN_1_20_2011.pdf
solution with flexible and much improved code chip solution patching to ensure fast and easy integration -90 dBm typical receiver sensitivity On-chip voltage regulator lowers BOM requirements and Programmable output power up to +12 dBm at 1.8V supply provides additional power savings capability Minimized external
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Datei
Arduino_wdt.h
ATmega1281, ATmega2560, ATmega2561, ATmega8HVA, ATmega16HVA, ATmega32HVB, ATmega406, ATmega1284P, AT90PWM1, AT90PWM2, AT90PWM2B, AT90PWM3, AT90PWM3B, AT90PWM216, AT90PWM316, AT90PWM81, AT90PWM161, AT90USB82, AT90USB162, AT90USB646, AT90USB647, AT90USB1286, AT90USB1287, ATtiny48, ATtiny88. Note: This value
in „aktuelle AVR µC - wdt.h - kein RAMPD / CTRL / Enable Bit“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Anaview_AMS1000-2600-D.pdf
45 63 Hz Electrical specifications Parameter Comment Min Max Unit Recommended For normal operation 90 240 VAC mains voltage range Minimum mains Where all AUX supplies are available and 90 VAC starting voltage amplifier is running. AUDIO SPECIFICATIONS Absolute maximum ratings Parameter Comment Min Max
in „Audioverstärker in Standby mit PhotoMOS Öffner“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TL072.pdf
TL072B 5 DVio Input offset voltage drift 10 10 µV/°C (1) Input offset current io T = +25°C 5 100 5 100 pA amb Tmin≤ amb ≤ Tmax 4 10 nA (1) Input bias current ib Tamb= +25°C 20 200 20 200 pA Tmin≤ amb ≤ Tmax 20 20 nA Large signal voltage gaLn (R = okΩ, V = ±10V) Avd Tamb= +25°C 50 200 25 200 V/mV T ≤ T ≤
in „Operationsverstärker und 24 V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
lbo-5880_LEADER_anleitung.pdf
c c c c c c c58 ,0. t alhcdfntos c . c c c c c c c c 58 â . BC nroing hbhay Oc. c c c c c c c c c9 90. Corolm whBCD bnr c dddc Rl 59 g ( yo )Ode. . . . . Nosonswid g lhadgalwic rthckc. . _. c E60 90 Pa l . 5 a t prt _ , , .... . E EE ]E E E EE 91l Adrc DaOutpt... ._. E E, E E ] E E E E E1 . . S Rl ¡dfmtos
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PDF
lbo-5880_LEADER_anleitung.pdf
c c c c c c c58 ,0. t alhcdfntos c . c c c c c c c c 58 â . BC nroing hbhay Oc. c c c c c c c c c9 90. Corolm whBCD bnr c dddc Rl 59 g ( yo )Ode. . . . . Nosonswid g lhadgalwic rthckc. . _. c E60 90 Pa l . 5 a t prt _ , , .... . E EE ]E E E EE 91l Adrc DaOutpt... ._. E E, E E ] E E E E E1 . . S Rl ¡dfmtos
in „Problem Oszilloskop-Bedienung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
INA121.pdf
V Common-Mode Rejection VCM = –12.5V to 13.5V G = 1 78 86 72 dB G = 10 91 100 85 dB G = 100 96 106 90 dB G = 1000 106 dB BIAS CURRENT V = 0V ±4 ±50 pA CM vs Temperature See Typical Curve Offset Current ±0.5 pA vs Temperature See Typical Curve NOISE, RTI RS= 0 Voltage Noise: f = 10Hz G = 100 30 nV/√Hz
in „Instrumentenverstärker INA121 hat zu hohe Verstärkung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
datenblatt-pam8403.pdf
output filters , n Superior Low Noise which will save the system cost and PCB area. n Efficiency up to 90% n Short Circuit Protection With the same numbers of external components, n Thermal Shutdown the efficiency of the PAM8403 is much better than n Few External Components to Save the class-AB cousins.
in „PAM8403 Stereo (Kopfhörer) zu Mono (Lautsprecher) - wie?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
lm3421.pdf
age Buck-Boost Efficiency vs. Inpu(2)oltage VO= 32V (9 LEDs) VO= 21V (6 LEDs) 100 100 95 95 ) % ( ( 90 Y C N 90 N 85 I I I I 80 F F E 85 E 75 70 80 10 15 20 25 30 0 16 32 48 64 80 V (V) V (V) IN IN Figure 4. Figure 5. Boost LED Current vs. Input V(1)age Buck-Boost LED Current vs. Input(2)ltage VO= 32V
in „Spule Dimensonierung Schaltnetzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AIO486.PDF
Signalname Pin Signalname Pin Signalname 1 GND 17 D15 33 SA2 49 MEMR# 2 D0 18 VCC 34 SA3 50 MEMW# 3 D1 19 PA0 35 SA4 51 BATT-ON 4 D2 20 PA1 36 SA5 52 VCC-Bat 5 D3 21 PA2 37 SA6 53 Vpp 6 D4 22 PA3 38 SA7 54 SA14 7 D5 23 PA4 39 SA8 55 SA15 8 D6 24 PA5 40 SA9 56 SA16 9 D7 25 PA6 41 SA10 57 LA17 10 D8 26 PA7 42 SA11 58 LA18 11 D9 27 PA8 43 SA12 59 LA19 12 D10 28 PA9 44 SA13 60 LA20 13 D11 29 PA10 45 VCC 61 LA21 14 D12 30 GND 46 SHBE# 62 LA22 15 D13 31 SA0 47 FLASHCS# 63 LA23 16 D14 32 SA1 48 SRAMCS# 64 GND Tabelle 25, Pin-Belegung
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