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PDF
BA6162.pdf
V – 80 (BA6129AF) Output current 1 IOUT1 mA – 40 (BA6162 / BA6162F) Output current 2 IOUT2 – 200 A 900 1 (BA6162) Power dissipation Pd 550 2 (BA6129AF) mW (BA6162F) Operating temperature Topr – 20 ~ + 75 °C Storage temperature Tstg – 40 ~ + 125 °C IOUT1indicates the output currenCCoside, anOUT2the output
in „DS1210 als Ersatz für BA6162?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT1300.pdf
IR drops along supply and ground lines and are especially demanding on alkaline batteries. By in- A900 ( stalling an R1 and C3 as shown in Figure 4, the switch N800 currentintheLT1300islimitedto400mAuntilthe15 A R C700 flowingoutoftheI LIM pinchargesupthe0.1 Fcapaci- H600 tor. Input current is held to
in „Regulierte 3.3v spannung bei 3.7v batterie?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
eBUS_Stuttgart_041201_eBUS_Only.PDF
100305020100 programs operationaldatarequestfromburnertoheatingcontrol I/O - check pump control 0310050001A900 flame control operationaldatatransmissiontoheatingcontrol adjust mixer valves 0310050308010C7E25833C6E.... eBUS - operationaldatatransmissiontoburnercontrol eBUS - communication communication 100305010505A9013F85FF8415
in „eBus CRC Berechnung nachvollziehen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
mt7623n-bananapi-bpi-r2.dts.txt
0x00 0x700>; #address-cells = <0x02>; #size-cells = <0x02>; ranges; status = "okay"; pcie-phy@1a14a900 { reg = <0x00 0x1a14a900 0x00 0x700>; clocks = <0x35>; clock-names = "ref"; #phy-cells = <0x01>; status = "okay"; phandle = <0x32>; }; }; usb@1a1c0000 { compatible = "mediatek,mt7623-xhci\0mediatek,
in „ADC- und DAC-Experimente mit PCF8591 auf Banana Pi SBCs (WiringPi, i2c-tools)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CSI93C86.pdf
provided for stresses up to 100 mA on address and data CC+1V.rom –1V to V (5) Standby Current 2ISB )=0 A (<900nA) for 93C46/56/52/66, (ISB )=2 A for 93C86. Doc. No. 25056-00 2/98 M-1 2 93C46/56/57/66/86 PIN CAPACITANCE Symbol Test Max. Units Conditions (3) COUT OUTPUT CAPACITANCE (DO) 5 pF V OUT=OV (3) CIN
in „asm Code für EEPROM 93C86“ · Mikrocontroller und Digitale Elektronik ·
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PDF
0046274001518549145.pdf
at 80℃ 80% 60% 70% 50% 60% D 40% 500mA D 50% 500mA T T 600mA 30% 600mA 40% 700mA 30% 700mA 20% 900mA 900mA 20% 10% 1050mA 1050mA 1400mA 10% 1400mA 0% 0% 10% 20% 30% 40% 50% 60% 70% 80% 90% 100% 10% 20% 30% 40% 50% 60% 70% 80% 90% 100% LOAD LOAD (230Vac Input) (277Vac Input) POWER FACTOR (PF) CHARACTERISTIC
in „PWM-Signal 24V 500Hz wandeln in 10V PWM“ · Haus & Smart Home ·
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PDF
Clock_jitter_analyzed_in_the_Time_Domain_Part_2.pdf
transformer); hence, theoretically the phase noise should be integrated to ~1 GHz (rolling off at 3 dB at a 900-MHz offset). This would result in ~1.27 ps of sampling-clock jitter and would reduce the SNR at f = 1 GHz to ~42.8 dBFS! CDCE72010 IN The actual SNR measurement was quite a bit better than that, as
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Datei
tfrec-d-dump.txt
4a55 0 94aa 1 2954 0 4aaa 1 9554 0 2aa9 0 52a9 0 a552 0 4aa4 0 9548 0 2a90 0 5520 0 aa40 0 5480 0 a900 0 5200 0 a400 0 4800 0 9000 0 2000 0 4000 0 8000 0 0000 0 5552 0 aaa4 0 5548 0 aa90 0 5520 0 aa40 0 5480 0 a900 0 5200 0 a400 0 4800 0 9000 0 2000 0 4000 0 8000 0 0000 1 0000 1 0000 0 0001 0 0001 0
in „SDR-Dekoder für TFA KlimaLogg Pro/IT+ Temperatursensoren“ · Projekte & Code ·
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PDF
ZN427.pdf
250 ns Clock pulse width BD 500 - - ns Maximum clock frequency 900 1000 - kHz See note 1 Note 1: A 900kHz clock gives a conversion time of 10 s (9 clock periods). 2 ZN427 GENERAL CIRCUIT OPERATION The ZN427 utilises the successive approximation technique. to1. Thisprocedureisrepeatedforalleightbits.
in „A/D Wandler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
zn427E.pdf
250 ns Clock pulse width BD 500 - - ns Maximum clock frequency 900 1000 - kHz See note 1 Note 1: A 900kHz clock gives a conversion time of 10 s (9 clock periods). 2 ZN427 GENERAL CIRCUIT OPERATION The ZN427 utilises the successive approximation technique. to1. Thisprocedureisrepeatedforalleightbits.
in „Austauschtyp gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CMT2210LC_433MHz_OOK_Receiver.pdf
duty cycle receiving mode, please refer to the figure below for details. 3.8 mA 3.8 mA 2.0 mA 2.0 mA 900 uA 300 nA 520 uA 300 nA 520 uA PUP SLEEP XTAL TUNE RX SLEEP XTAL TUNE RX State TSTART-UPms) TRX2 s) TRESET ms) TRX 2 s) Figure 10-1. Chip Operating Timing and Current Consumption in Duty Cycle Mode
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Datei
qaxe_flash_stm32L.txt
0x800a700 erased (size: 0x100) -> Flash page at 0x800a800 erased (size: 0x100) -> Flash page at 0x800a900 erased (size: 0x100) -> Flash page at 0x800aa00 erased (size: 0x100) -> Flash page at 0x800ab00 erased (size: 0x100) -> Flash page at 0x800ac00 erased (size: 0x100) -> Flash page at 0x800ad00 erased
in „10W Bitcoin miner mit 450GH/s für Raspberry Pi“ · Projekte & Code ·
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PDF
tps65136.pdf
= 100 mA 200 M2 MOSFET on-resistance sw = 100 mA 400 rDS(on) mΩ M3 MOSFET on-resistance sw = 100 mA 900 M4 MOSFET on-resistance I = 100 mA 600 sw SW Switch current limit (M2) Vin 3.7 V 620 700 940 mA Vin 2.5 V 720 830 1120 P Output power V – V ≤ 10 V; V = 2.9 V 750 mW out pos neg in s Switching frequency
in „OLED Sammelbestellung“ · Markt ·
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PDF
TPS_Datasheet.pdf
300, 6.8 685 A(1800) T(1800) B(600,1200) B(600,1000) C(500,600,700) D(150,400,500) 500,600) C(700) A(900,1800) B(500,800), C(500) B(500,1000) A(1500) (M) D(125,300) 10 106 R(3000) R(1000,1500,3000) P(2000) T(800,1000) C(500,700) C(300,500) E(200), Y(250) E(400,500) T(1000,2000) W(500,600) W(500) A(1000
in „Was für besondere Kondensatoren sind das??“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX4508-MAX4509.pdf
1000 o 1100 o 600 o 0 900 / 1000 V+ = +9V / V+ = +15V / V+ = +4.5V 4 5 V- = -15V 5 8 800 V- = -4.5V A 900 A 500 A M M +125°C M / 700 800 +85°C M V+ = +10V 700 V+ = +12V 400 ) 600 V- = -10V ) V+ = +15V ) A ( V+ = +15V ( 600 ( O500 O V+ = +20V O300 +70°C R V- = -15V R 500 R X 400 V+ = +30V +25°C 400 200
in „Messsystem mit PhotoMOS“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
vishayHVTantal.pdf
1.125 0.600 XTV397*018P0A 560 15 12 1.5 165 227 330 20 - 85 + 20 + 35 50 550 1.125 0.600 XTV567*018P0A 900 15 12 1.5 165 227 330 20 - 85 + 20 + 35 68 694 1.125 1.100 XTV907*018P0A 1800 15 12 1.5 165 227 330 20 - 85 + 20 + 35 82 694 1.125 1.100 XTV188*018P0A 20 WVDC AT + 85 °C 28 17.5 13 10.0 30 45 60 85
in „Tantal für 400V“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
channel_scan_raw.txt
1 C11 29 1807868252 00 1946107301 00DC 1B 2 15 73104619 72819005 801100624050B50000053700000000D16A900D43 0D43 1 Listening CH30 and 70 Listening CH31 and 71 Listening CH32 and 72 Listening CH33 and 73 Listening CH34 and 74 Listening CH35 and 75 C11 35 2120634976 00 1946107301 0058 0B 0 15 73104619 72819005
in „Wechselrichter Hoymiles HM-xxxx 2,4 GhZ Nordic Protokoll?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
171573-da-01-en-LT_1073_5_DIP_8_STEP_UP_1V_5V.pdf
Current vs R LIM 1.2 1.4 1200 VIN= 1.5V L = 82µH 1100 1.0 1.3 1000 V IN= 3V V = 1.25V V ) IN E 1.2 A 900 0.8 G ( V L N 800 T VIN= 1V O 1.1 R700 S 0.6 VIN= 5V N U V O 1.0 C 600 V = 3V C C 500 VIN= 1.5V 0.4 IN I I V = 2V S 0.9 S 400 IN 300 0.2 0.8 200 0.7 0 0 0.2 0.4 0.6 0.8 1.0 1.2 0 0.1 0.2 0.3 0.4 0.5
in „LT 1073 Spg.schwankungen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
sine_values.txt
4bae5807", 413 => x"4bd6e61b", 414 => x"4bff6878", 415 => x"4c27df16", 416 => x"4c5049f0", 417 => x"4c78a900", 418 => x"4ca0fc3e", 419 => x"4cc943a6", 420 => x"4cf17f30", 421 => x"4d19aed7", 422 => x"4d41d294", 423 => x"4d69ea60", 424 => x"4d91f637", 425 => x"4db9f612", 426 => x"4de1e9e9", 427 => x"4e09d1b9
in „DDFS von Lothar Miller ich steh aufm Schlauch“ · FPGA, VHDL & Co. ·
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PDF
es51966.pdf
ES51966 4 3/4 and 5 3/4 A/D (Peak &Cap) Application Circuit 820K 5V + 9V Regulator Vc 0.1u 7.5V uA 900 uA 180K + + + 0.1u 10u1 4.7u mA uA DGND V- 0.1u 2 Vss Vc AGND V- + +4.7u 90 AGND OSC4M 8051 9 mA V+ SCLK serial V+ STATUS mA LBATT 0.47u VCC CAZ EOC 10A 0.9910A RAZ OSC2 *33n CINT 0.01 *200K OSC1 SGN
in „Multimeter UT71A - defekte Kapazitätsmessung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
heag.pdf
Die einzelnen Zellen werden zunächst durch Reihenschaltung zu einzelnen Modulen verbunden. Ent- 2,0A 900 W/m² g 1,0W sprechend der gewählten Spannung werden dann mehrere u i Module in Reihe zu einem Strang zusammengeschaltet. Je o1,6A l 0,8W nach Leistung werden dann mehrere Stränge zur Erhö- s 600 W/
in „Wirkungsgrad = Spannungsabfall?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
1776fs.pdf
V 7.4 V Thermally Limited Continuous Operating Voltage 40 V IVIN VINupply Current VC= 0V 620 800 A 900 A IVCC VCC Supply Current VC= 0V 3.2 4.0 mA 5.0 mA V VCC VCC Dropout Voltage (Note 2) 2.8 3.1 V Shutdown Mode I V = 0V 30 50 A VIN SHDN 75 A Feedback Amplifier V REF Reference Voltage 1.225 1.240 1.255
in „Stromausfall Datensicherung auf EEprom“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RBS17707-SN65HVD230-CAN-Board-Datasheetsiyyp0AhGRhw5g.pdf
e RS= 100 kΩ i i T 700 T a VCC = 3 V a 950 V CC = 3.6 V e e D 600 D o o V = 3.3 V a V CC = 3.3 V a 900 CC g 500 g p p r r P 400 V CC = 3.6 V P 850 g o V CC = 3 V H - o 300 t - h 800 o i r 200 r e e r r 750 D 100 D – L L 0 H 700 t –55 –40 0 25 70 85 125 t –55 –40 0 25 70 85 125 TA– Free-Air Temperature
in „PCB Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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PDF
16389fg.pdf
E W D L 30 N G N GAIN BANDWIDTH G P NEGATIVE SUPPLY B ) B000 PRODUCT 10 ) S 20 I1100 20 I R 10 G A900 0 W G O 0 P 1000 10 800 –10 –10 0 5 10 15 20 25 30 35 40 45 1 10 100 1 10 100 1000 TOTAL SUPPLY VOLTAGE (V) LOAD RESISTANCE (kΩ) FREQUENCY (kHz) 1638/39 G15 1638/39 G17 1638/39 G16 CMRR vs Frequency
in „Alternative gesucht zu OpAmp“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD603.pdf
laser trimmedtoestablishamoreexactinputresistanceof100Ω±3%, AD603 were preceded by, for example, a 900 Ω resistor to allow operation from inputs up to 10 V rms.) As the selected tap whichensuresaccurateoperation (gainandHPcornerfrequency) moves away from the input, the dependence of the noise on when
in „AD603 Output matching“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
panasonic_tx-50dx800e_tx-50dxw804_chassis_la67.pdf
C7472 F1H1H103B047 C 10NF, , 50V 1 PAVCCZ C7800 F1J1H471A906 C 470PF, -, 50V 1 PAVCCZ C7801 F1J1H103A900 C 10NF, , 50V 1 PAVCCZ C7802 F1J1H103A900 C 10NF, , 50V 1 PAVCCZ C7803 F1J1H104A902 C 100NF, , 50V 1 PAVCCZ C7804 F1J1H223A900 C 22NF, , 50V 1 PAVCCZ C7805 F1J1H103A900 C 10NF, , 50V 1 PAVCCZ C7806
in „Schaltregler SMD Marking“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
tps65131.pdf
MAXIMUM OUTPUT CURRENT vs vs INPUT VOLTAGE INPUT VOLTAGE 400 1100 TPS65131 1000 350 VNEG = −4 V A A 900 m m VNEG = –4 V t 300 t 800 e n r r 700 C 250 u t V NEG= −8 V t 600 t 200 p V = –10 V u u NEG O O 500 m 150 m m u 400 x V NEG= −10 V i a 100 a 300 VNEG = –15 V M M 200 50 100 0 0 2.5 2.9 3.3 3.7 4.1
in „OLED Sammelbestellung“ · Markt ·
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PDF
TSC2003.pdf
SUPPLY CURRENT vs V DD 300 1200 High-Speed Mode = 3.4MHz 1100 250 1000 High-Speed Mode = 3.4MHz A A 900 ( 200 ( 800 n n e e 700 u 150 u 600 C Fast Mode = 400kHz C Fast Mode = 400kHz l l 500 p 100 p 400 S S Standard Mode = 100kHz 300 50 200 Standard Mode = 100kHz 100 0 0 –40 –20 0 20 40 60 80 100 2.5
in „Hilfe mit Touchscreen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DCDC-Konverter.pdf
MAXIMUM OUTPUT CURRENT vs vs INPUT VOLTAGE INPUT VOLTAGE 400 1100 TPS65131 1000 350 VNEG = −4 V A A 900 m m VNEG = –4 V t 300 t 800 e n r r 700 C 250 u t V NEG= −8 V t 600 t 200 p V = –10 V u u NEG O O 500 m 150 m m u 400 x V NEG= −10 V i a 100 a 300 VNEG = –15 V M M 200 50 100 0 0 2.5 2.9 3.3 3.7 4.1
in „DC-DC-Konverter Tps65131 Funktionalität“ · Mikrocontroller und Digitale Elektronik ·
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Datei
test-eeprom.txt
V:239 READ: A: 896 - V:240 READ: A: 897 - V:240 READ: A: 898 - V:240 READ: A: 899 - V:240 READ: A: 900 - V:240 READ: A: 901 - V:240 READ: A: 902 - V:240 READ: A: 903 - V:240 READ: A: 904 - V:241 READ: A: 905 - V:241 READ: A: 906 - V:241 READ: A: 907 - V:241 READ: A: 908 - V:241 READ: A: 909 - V:241
in „I2C Eeprom 24C16 - Speicherproblem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MotorolaDatenCD_2000.pdf
VDD Output Power Eff. Gain Semiconductor Device MHz V dBm % dB Technology Package MRF9382T1 (18f, )6a 900 6.0 36.5 65 10.5 LDMOS PLD–1 (18f, )6a MRF9482T1 900 4.8 36.0 65 10 LDMOS PLD–1 (1Tape and Reel Packaging Option Available by adding suffix: a) R1 = 500 units; b) R2 = 2,500 units; c) T1 = 3,000 units
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PDF
ES51922.pdf
D2 4.7u ADO 9 D1 1.0u 1.0u 88M mA ADI A 90 uA 100K 0.1u ACVL mA 100K IVSH 3.9K ACVH uA 3.9K TEST5 uA 900 IVSL 3K V R V 1 R 2K 5 .Diode test 10M AGND -100mV OVH Voltage input 100 Z1 6V PTC Z2 1.5K 2. Resistor test VR1 10M OVX 22n OHMC4 1.111M VR2 220n OHMC3 330n PTC OHMC2 OVSG 1.5K 47n OHMC1 6. Low battery
in „UT61E Batterieabschaltung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP73837.pdf
cycle is terminated when, during constant )000 voltage mode, the average charge current diminishes A900 below a percentage of the programmed charge current t800 e700 (established with the value of the resistor connected to u600 the PROG pin) or the internal timer has expired. A 1 ms e500 filter time on
in „Verständnissfrage - MCP73837“ · Mikrocontroller und Digitale Elektronik ·
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Datei
testimg.c
0x2B19,0x1129,0xF539,0x3319,0x7309,0xB208,0xF410,0x5922,0x8F09,0x1221,0x3B43,0xF629,0x3732,0xF529,0xB229,0xEF21,0xA900,0x6F10,0x7B42,0x3E6C,0x7F8D,0x1F75,0xFC4A,0xFD63,0x5B53,0x532A,0xFA4A,0x5B4B,0xDA4A,0xDA5B,0xB542,0x9329,0x595B,0x1A53,0xDC6B,0x9963,0x5D7C,0x7D84,0xFF84,0x3F8D,0x1FB6,0xFFCE,0x1475,0x4A63,0x4B6B,0x2B6B
in „Image Converter - Bild zu c array konvertieren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
testimg.h
0x2B19,0x1129,0xF539,0x3319,0x7309,0xB208,0xF410,0x5922,0x8F09,0x1221,0x3B43,0xF629,0x3732,0xF529,0xB229,0xEF21,0xA900,0x6F10,0x7B42,0x3E6C,0x7F8D,0x1F75,0xFC4A,0xFD63,0x5B53,0x532A,0xFA4A,0x5B4B,0xDA4A,0xDA5B,0xB542,0x9329,0x595B,0x1A53,0xDC6B,0x9963,0x5D7C,0x7D84,0xFF84,0x3F8D,0x1FB6,0xFFCE,0x1475,0x4A63,0x4B6B,0x2B6B
in „Image Converter - Bild zu c array konvertieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lg_lh-cx245_cx246_cx247_cx640__1_.pdf
ASSEMBLY,SUBSET(AUDIO LHS-D6230W SUB WOOFER 2.5M, OR 2-4 4. Woofer Section Speaker (LHS-CX640W) 952 954 A900 953 956 955 951 950 S AL LOCA. NO. PART NO. DESCRIPTION SPECIFICATION REMARKS A900 6401RM0160A SPEAKER ASSEMBLY CW-210B150L-1 SAMMI LHS-C640W 950 5208RM0059A DUCT SPK LHS-T6540W MOLD CHROME PLA 951
in „Netzteil von LG LH-C360 defekt“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
down.txt
S1130D70CA01820F931F02968A179B0740F490932F S1130D80CA008093C90021933193CF0137C080E01A S1130D9090E034C0ADB7BEB7E091A900F091AA00CD S1130DA0AE1BBF0BE4CF2417350769F0421B530B6E S1130DB0EF01C40FD51F299339934250504040830B S1130DC05183CE011BC0109749F0228133811296C2 S1130DD02D933C931397CF01029610C04281538107 S1130DE05093CC004093CB00F6CF109771F722813B
in „Calibration Byte 8MHz“ · Mikrocontroller und Digitale Elektronik ·
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Datei
PCM_master.vhd
895 => x"0BD9D8EE", 896 => x"0BAB1F5D", 897 => x"0B7C5D9C", 898 => x"0B4D93CA", 899 => x"0B1EC20A", 900 => x"0AEFE87C", 901 => x"0AC10741", 902 => x"0A921E7A", 903 => x"0A632E48", 904 => x"0A3436CB", 905 => x"0A053825", 906 => x"09D63276", 907 => x"09A725E0", 908 => x"09781284", 909 => x"0948F882",
in „DDS mit DE0-Nano Board nur niedrige Frequenzen?“ · FPGA, VHDL & Co. ·
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PDF
6307.pdf
–30 –20 –10 0 10 PIN– dBm sures very low residual offsets. Figure 45. Output vs. Input Level for a 900 MHz Input Signal A temporary ac signal, typically a sine wave of 100 mV in ampli- tude at a frequency of about 100 Hz, is applied via the capacitor Evaluation Board at node TEMP; this has the effect
in „HI-Empfänger: Könnte das so funktionieren?“ · HF, Funk und Felder ·
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Datei
G32trust.asm
[esp+0Ch+arg_0] push edi call sub_1000A7B0 mov esi, 80000000h loc_1000A921: ; CODE XREF: sub_1000A900+3A j mov eax, esi and eax, [esp+arg_8] cmp eax, 1 sbb al, al inc al push eax push ebx push edi call sub_1000A540 shr esi, 1 or esi, esi jnz short loc_1000A921 mov esi, 80000000h loc_1000A941: ; CODE XREF: sub_1000A900+60 j mov eax, esi and eax, [esp+arg_C] cmp eax, 1 sbb al, al inc al push eax push ebx push edi call sub_1000A540 or al, al jz short loc_1000A95C or ebp, esi loc_1000A95C: ; CODE XREF: sub_1000A900+58
in „Wer kann mir eine ASM File compelieren“ · Softwareentwicklung ·
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PDF
HD66766-10.pdf
"1383"H COM169 COM8 "A800"H "A801"H "A802"H "A803"H "A880"H "A881"H "A882"H "A883"H COM170 COM7 "A900"H "A901"H "A902"H "A903"H "A980"H "A981"H "A982"H "A983"H COM171 COM6 "AA00"H "AA01"H "AA02"H "AA03"H "AA80"H "AA81"H "AA82"H "AA83"H COM172 COM5 "AB00"H "AB01"H "AB02"H "AB03"H "AB80"H "AB81"H "AB82
in „The Siemens S65 132x176, 65536 color display with AVR“ · Projekte & Code ·
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PDF
HD66766R.PDF
A800"H "A801"H "A802"H "A803"H "A880"H "A881"H "A882"H "A883"H "A902"H "A980"H "A982"H COM170 COM7 "A900"H "A901"H "A903"H "A981"H "A983"H COM171 COM6 "AA00"H "AA01"H "AA02"H "AA03"H "AA80"H "AA81"H "AA82"H "AA83"H COM172 COM5 "AB00"H "AB01"H "AB02"H "AB03"H "AB80"H "AB81"H "AB82"H "AB83"H COM173 COM4
in „LCD-Modul F51661GNCJU-MLW-AA * Info *“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OsmoSDR.pdf
I also blindly copied the RF power display, a toggle for saving the audio files out to disk, and a +-900khz tuning slider from other receivers. I added a second 'fine' tune +-50Khz. This is done by setting the frequency of the Xlating FIR filter to, freq_offset+fine+finer where freq_offset is the frequency
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PDF
msp430g2452.pdf
regulation 3 V LSB VREF+ = 500 µA ± 100 µA, Analog input voltage Ax ≉ 1.25 V, ±2 REF2_5V = 1 VREF+ = 100 µA→900 µA, V REF+load regulation VAx ≉ 0.5 × VREF+, 3 V 400 ns response time Error of conversion result ≤ 1 LSB, ADC10SR = 0 C Maximum capacitance at I ≤ ±1 mA, REFON = 1, REFOUT = 1 3 V 100 pF VREF+ pin
in „MSP430 Gleitkommazahl in Flash speichern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HD66773.pdf
"1382"H "1383"H "A800"H "A801"H G169 G8 "A802"H "A803"H "A880"H "A881"H "A882"H "A883"H G170 G7 "A900"H "A901"H "A902"H "A903"H "A980"H "A981"H "A982"H "A983"H G171 G6 "AA00"H "AA01"H "AA02"H "AA03"H "AA80"H "AA81"H "AA82"H "AA83"H G172 G5 "AB00"H "AB01"H "AB02"H "AB03"H "AB80"H "AB81"H "AB83"H "AB82
in „The Siemens S65 132x176, 65536 color display with AVR“ · Projekte & Code ·
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PDF
HD66773.pdf
"1382"H "1383"H "A800"H "A801"H G169 G8 "A802"H "A803"H "A880"H "A881"H "A882"H "A883"H G170 G7 "A900"H "A901"H "A902"H "A903"H "A980"H "A981"H "A982"H "A983"H G171 G6 "AA00"H "AA01"H "AA02"H "AA03"H "AA80"H "AA81"H "AA82"H "AA83"H G172 G5 "AB00"H "AB01"H "AB02"H "AB03"H "AB80"H "AB81"H "AB83"H "AB82
in „The Siemens S65 132x176, 65536 color display with AVR“ · Projekte & Code ·
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PDF
20120224183241077.pdf
“01303"H …. “013EC"H “013ED"H “013EE"H “013EF"H : : : : : : : : : : : : : : : : : : : : G393 G8 “1A900"H “1A801"H “1A802"H “1A803"H …. “1A8EC"H “1A8ED"H “1A8EE"H “1A8EF"H G394 G7 “1AA00"H “1A901"H “1A902"H “1A903"H …. “1A9EC"H “1A9ED"H “1A9EE"H “1A9EF"H G395 G6 “1AB00"H “1AA01"H “1AA02"H “1AA03"H ….
in „Handydummy (Attrappe)mit richtigem Display - Sony Ericsson Vivaz“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Hercule.c
0x9CC5, 0xC70D, 0x70CD, 0xFFDC, 0x2995, 0xFFF7, 0xFFFF, 0xFFFF, 0x65BF, 0x7DC6, 0xDC8E, 0x7EFF, 0xA900, 0x3F5C, 0x38E9, 0x8E47, 0x87AB, 0x371D, 0x609B, 0x9DCE, 0x8E85, 0xC1C3, 0x177D, 0x605C, 0x346E, 0x25F7, 0x2C1B, 0xFB01, 0xBB98, 0xB8E1, 0xDC89, 0x36FF, 0xF730, 0xFFFF, 0xFFFF, 0xBFFF, 0xCD6D, 0x8E7D
in „BMP/JPEG/GIF/PNG nach C-Code konvertieren“ · Projekte & Code ·
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Datei
Hercule.c
0x9CC5, 0xC70D, 0x70CD, 0xFFDC, 0x2995, 0xFFF7, 0xFFFF, 0xFFFF, 0x65BF, 0x7DC6, 0xDC8E, 0x7EFF, 0xA900, 0x3F5C, 0x38E9, 0x8E47, 0x87AB, 0x371D, 0x609B, 0x9DCE, 0x8E85, 0xC1C3, 0x177D, 0x605C, 0x346E, 0x25F7, 0x2C1B, 0xFB01, 0xBB98, 0xB8E1, 0xDC89, 0x36FF, 0xF730, 0xFFFF, 0xFFFF, 0xBFFF, 0xCD6D, 0x8E7D
in „Bilder umwandeln für C/C++ Code“ · Softwareentwicklung ·
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Datei
Castillo33.c
0x3005, 0x005A, 0x0169, 0x05A2, 0x4558, 0x0161, 0x5596, 0x033C, 0x88F5, 0x40C1, 0x5D51, 0x2989, 0xA900, 0x00A8, 0x88A0, 0xA000, 0x0028, 0x5059, 0x40D4, 0x4551, 0x50F1, 0x60D1, 0x8001, 0x0CF5, 0x3522, 0x540C, 0x1410, 0x4198, 0x5169, 0x6034, 0x8140, 0xC661, 0x4430, 0xC45C, 0x1145, 0x4435, 0x40DC, 0xE559
in „BMP/JPEG/GIF/PNG nach C-Code konvertieren“ · Projekte & Code ·