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Datei
MCP6001.txt
stability w/cap load * * Recommendations: * Use PSPICE (other simulators may require translation) * For a quick, effective design, use a combination of: data sheet * specs, bench testing, and simulations with this macromodel * For high impedance circuits, set GMIN=100F in .OPTIONS * * Supported: * Typical
in „ltspice problem“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
MCP6001.txt
MCP6001R, MCP6001U * * Recommendations: * Use PSPICE (other simulators may require translation) * For a quick, effective design, use a combination of: data sheet * specs, bench testing, and simulations with this macromodel * For high impedance circuits, set GMIN=100F in .OPTIONS * * Supported: * Typical
in „MCP6001 LTspice“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
MCP6L01.txt
MCP6L01/2/4 op amp family: * MCP6L01, MCP6L01R, MCP6L01U, MCP6L02, MCP6L04 * * Revision History: * REV A: 25-Jun-10, Created model * REV B: 09-Jul-12, Added MCP6L01R, MCP6L01U * * Recommendations: * Use PSPICE (other simulators may require translation) * For a quick, effective design, use a combination
in „[LTSpice] MCP6L01 will nicht so wie ich“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
MCP6001.txt
MCP6001R, MCP6001U * * Recommendations: * Use PSPICE (other simulators may require translation) * For a quick, effective design, use a combination of: data sheet * specs, bench testing, and simulations with this macromodel * For high impedance circuits, set GMIN=100F in .OPTIONS * * Supported: * Typical
in „Einbinden opv in LT-Spice“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
MCP6001.txt
stability w/cap load * * Recommendations: * Use PSPICE (other simulators may require translation) * For a quick, effective design, use a combination of: data sheet * specs, bench testing, and simulations with this macromodel * For high impedance circuits, set GMIN=100F in .OPTIONS * * Supported: * Typical
in „Einbinden opv in LT-Spice“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
MCP6001.txt
MCP6001R, MCP6001U * * Recommendations: * Use PSPICE (other simulators may require translation) * For a quick, effective design, use a combination of: data sheet * specs, bench testing, and simulations with this macromodel * For high impedance circuits, set GMIN=100F in .OPTIONS * * Supported: * Typical
in „OPV-Schaltung in LT Spice nicht stabil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Ferrite.pdf
0,26 > 1.9 GHz 30 0.15 570m 2 x 1.5 Murata LQN21A BCQ-33n-A 0,35 - 0,30 > 1.7 GHz 50 900MHz 0.18 540m 3.2 x 2.5 Simid 02 BCQ-33n-B 0,35 - 0,30 33 nH > 1.6 GHz 47 1 GHz 0.27 600m 1.6 x 0.8 Toko LL1608F 5 % BCQ-33n-C 0,30 - 0,26 > 2 GHz 60 500MHz 0.27
in „Gefunden und für gut befunden.Filterliste.“ · HF, Funk und Felder ·
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PDF
STM32F746G_Discovery.pdf
0402 FMC_A7A H1 A8 DQ28 C2 R18R18 10K_1%_0402 FMC_A6A PIG30H1 A7 DQ27 PIUA1C2 PIR1801R2R2802 10K_1%_0402 NLFMC0A PIU10G3 A6 DQ26 PIU10A1 COR19 PIR201PIR2202 FMC_A5 PIU10G2 A5 DQ25 PIU10C3 R1PIR1901PIR19020402 FMC_A4A P I U 1 A4G 1 DQ24 P I U 1 0 A 2 R2PIR230PIR2302_0402 FMC_A3A PIU10F3 PIU10A8 R2PIR2501PIR25020402 FMC_A2A F7 A3 DQ23 C7 R2424 10K_1%_0402 FMC_A1A PIG90F7 A2 DQ22 PIUA9C7 R26R26 10K_1%_04022402 NLFMC0A PIU10G9
in „STM32F7 Discovery Board“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BPW_34.pdf
and drive circuits „Messen/Steuern/Regeln“ Typ Bestellnummer Fotostrom, E =1000 lx, standard light A, V = 5 V v R Type Ordering Code Photocurrent Ip (A) BPW 34 Q62702P0073 80 (≥50) BPW 34 S Q65110A1209 80 (≥50) BPW 34 SR Q65110A2701 80 (≥50) 2007-05-23 1 BPW 34, BPW 34 S, BPW 34 SR Grenzwerte Maximum
in „Photodiode messen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ths6012.pdf
SLEW RATE SLEW RATE vs vs OUTPUT STEP OUTPUT STEP 1500 1000 V = ± 15V V = ± 5V CC CC 1300 Gain = 5 900 Gain = 2 RF= 1 k R F 1 k RL= 25 +SR 800 R L 25 1100 −SR +SR S S 700 − 900 − −SR e e 600 a a R R 500 e 700 e S S 400 500 300 300 200 100 100 0 5 10 15 20 0 1 2 3 4 5 Output Step (Peak−To−Peak) − V Output
in „DDS Endstufe DC-50 Mhz“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
bc559.pdf
Small–Signal Transistors, FETs and Diodes Device Data BC559, B, C BC560C 2.0 –1.0 I VCE =–10V –0.9 TA=25⋅C A 1.5 T TA=25 ⋅C –0.8 N VBE(sat)IC B =10 R 1.0 –0.7 R L V BE(on)V CE=–10V C 0.8 V0.6 C ( D G0.5 E 0.6 T I O0.4 A V M 0.4 –0.3 O , –0.2 E 0.3 VCE(sat)IC B =10 h –0.1 0.2 0 –0.2 –0.5 –1.0 –2.0 –5.0 –10 –
in „Transistorfrage: mit Masse 12V leiten?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
irmpprotocols.h
150.0e-6 // 150 usec pulse #define A1TVBOX_STOP_BIT 0 // has no stop bit #define A1TVBOX_LSB 0 // MSB...LSB #define A1TVBOX_FLAGS (IRMP_PARAM_FLAG_IS_MANCHESTER | IRMP_PARAM_FLAG_1ST_PULSE_IS_1 ) // flags #define A1TVBOX_FRAMES 1 // A1TVBOX sends each frame 1 times #define A1TVBOX_ADDRESS_OFFSET 1 // skip 1 bits #define A1TVBOX_ADDRESS_LEN 8 // read 8 address bits #define A1TVBOX_COMMAND_OFFSET 9 // skip 9 bits (start bit + address) #define A1TVBOX_COMMAND_LEN 8 // read
in „IR Fernbedienung mit IRSND“ · Mikrocontroller und Digitale Elektronik ·
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Datei
irmpprotocols.h
150.0e-6 // 150 usec pulse #define A1TVBOX_STOP_BIT 0 // has no stop bit #define A1TVBOX_LSB 0 // MSB...LSB #define A1TVBOX_FLAGS (IRMP_PARAM_FLAG_IS_MANCHESTER | IRMP_PARAM_FLAG_1ST_PULSE_IS_1 ) // flags #define A1TVBOX_FRAMES 1 // A1TVBOX sends each frame 1 times #define A1TVBOX_ADDRESS_OFFSET 1 // skip 1 bits #define A1TVBOX_ADDRESS_LEN 8 // read 8 address bits #define A1TVBOX_COMMAND_OFFSET 9 // skip 9 bits (start bit + address) #define A1TVBOX_COMMAND_LEN 8 // read
in „IRMP - Infrared Multi Protocol Decoder“ · Projekte & Code ·
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Datei
irmpprotocols.h
150.0e-6 // 150 usec pulse #define A1TVBOX_STOP_BIT 0 // has no stop bit #define A1TVBOX_LSB 0 // MSB...LSB #define A1TVBOX_FLAGS (IRMP_PARAM_FLAG_IS_MANCHESTER | IRMP_PARAM_FLAG_1ST_PULSE_IS_1 ) // flags #define A1TVBOX_FRAMES 1 // A1TVBOX sends each frame 1 times #define A1TVBOX_ADDRESS_OFFSET 1 // skip 1 bits #define A1TVBOX_ADDRESS_LEN 8 // read 8 address bits #define A1TVBOX_COMMAND_OFFSET 9 // skip 9 bits (start bit + address) #define A1TVBOX_COMMAND_LEN 8 // read
in „IRMP - Infrared Multi Protocol Decoder“ · Projekte & Code ·
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PDF
4560.pdf
HDSP- HDSP- HDSP- HDSP- Description Drawing A101 7511 A801 A901 7.6 mm Common Anode Right Hand Decimal A A103 7513 A803 A903 7.6 mm Common Cathode Right Hand Decimal B A107 7517 A807 A907 7.6 mm Common Anode ± 1. Overflow C A108 7518 A808 A908 7.6
in „7 Segment LED datenblatt suche für EAGLE“ · Mikrocontroller und Digitale Elektronik ·
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Datei
roms_constant_tb.vhd
x"55" after 850ns, x"56" after 860ns, x"57" after 870ns, x"58" after 880ns, x"59" after 890ns, x"5A" after 900ns, x"5B" after 910ns, x"5C" after 920ns, x"5D" after 930ns, x"5E" after 940ns, x"5F" after 950ns, x"60" after 960ns, x"61" after 970ns, x"62" after 980ns, x"63" after 990ns, x"64" after 1000ns
in „Rom simulation“ · FPGA, VHDL & Co. ·
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PDF
E_Grad_kpl.pdf
Emissionsdaten aus der Fachlitera- tur und eigenen Messungen von FLIR Systems. 18.1 Referenzen 1. Mikaél A. Bramson: Infrared Radiation, A Handbook for Applications, Plenum press, N.Y. 2. William L. Wolfe, George J. Zissis: The Infrared Handbook, Office of Naval Research, Department of Navy, Washington, D.C
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PDF
ax_2.200_40.pdf
TAPED TAPED MOUNTING R 100 Hz 5 min 100 Hz 10 kHz IN BOX ON REEL IN BOX RING (V) (µF) ∅ D ×L 85 °C (µA) 100 Hz Ω ) (Ω ) FORM (mm) (mA) AA FORM FORM FORM BR BA MR 6.3 470 8× 11 260 10 0.25 0.85 0.64 − 23471 33471 − 1000 8× 18 440 17 0.25 0.4 0.5 − 23102 33102 − 2200 10× 25 710 32 0.29 0.21 0.16 − 90588
in „H-Brücke DC Motor Strom oszilliert schwingt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ct_2021_17_USB-Stick.pdf
/s beim Schreiben und knapp ein Foto, um für einen Haufen Lego- undspucktweitereBauvorschlägeaus. 900MByte/sbeimLesen. Steine Bauvorschläge zu machen. Mit„Collect“konkurriertdieAppmit InderPraxisaberfälltdieGeschwin - Websites wie Rebrickable oder Bricklink: digkeit dann doch auf das erwartete Maß BrickIt
in „USB 3.0 Stick Geschwindigkeit Problem“ · PC Hard- und Software ·
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Datei
Oberschlitten2.asm
xl ;----- Timer1 ------------------------------------------------------------------- ldi xl,(1<<COM1A0) ; MotPUL-Pin bei Compare Match togglen out TCCR1A,xl ldi xl,(1<<CS10)|(1<<WGM12) ; kein Vorteiler, CTC-Modus4 out TCCR1B,xl ;------------------------------------------------------------------------
in „Timer0 und Timer1 funktionieren nicht gemeinsam“ · Mikrocontroller und Digitale Elektronik ·
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PDF
4100R.pdf
Derating Curve Power Temperature Derating Curve Power Temperature Derating Curve .350 .350 .350 T T T A250 A.250 A.250 W W W .150 .150 .150 .050 .050 .050 0 25 70 125 0 25 70 125 0 25 70 125 AMBIENT TEMPERATUR° ( C ) AMBIENT TEMPERATURE ( C ) AMBIENT TEMPERATURE ( C ) Popular Resistance Values (1, 2 Circuit
in „[V] 28 Stück 4114R-001(1,5KOHM), Widerstände zu verkaufen“ · Markt ·
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Datei
SDRSharp_20190801_191129Z_145803355Hz_IQ.txt
-0 to APGE01-0 via DB0GIS-10,DB0FDA-0 UI PID=F0 }DB0FAT>APLM01,TCPIP,DB0ASF*:>!5008.29N/00901.99E#/A=000525 Bodo at Home 17:51:36$ fm DB0TFM-6 to APOTC1-0 via DB0TFM-1,DB0FDA-0 UIv PID=F0 >Teufelsmuehle 900m NN, Ultimeter 2100 12.1V 21C 17:51:40$ fm DM3HJW-1 to TYPQT5-0 via DB0TFM-1,DB0FDA-0 UIv PID
in „SDR: ISS SSTV Signal durch Digipeater gestört - Quelle finden“ · HF, Funk und Felder ·
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Datei
0200_main.c
sichert die Parameter nach Stromausfall 0x03, // Adresse oberes Byte 0x03, // Adresse unteres Byte 0x1A, // 8N1, UART baut rate:9600 (bps), Übertragungsrate:2,4k (bps) 0x09, // Kanal 09 gesendet von von Gerät 3 0xC7 // "fixed" Übetragungsmodus; TXD und AUX als Ausgang RXD als Eingang; }; const unsigned
in „Sende/Empfangsvorgang mittels nur 1St. µC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
0710.pdf
V T = 25°C, Sens = 100 mV/A, C = 0, C = 4.7 nF, R open – 3.0 – mV NOISE(rms) A f LOAD LOAD I = 6.5 A, T = 25°C – 100 – mV/A P A Sensitivity Sens P = 6.5A, A = 25°C to 125°C – 100 – mV/A P = 6.5A, A = –40°C to 25°C – 100 – mV/A
in „Stromsensor ACS710“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SIOV_Calculation.pdf
this transient, a varistor is to be connected in parallel with the inductor as a flywheel circuit. V DC = 24 V L = 0.1 H R Cu = 24 I = 1 A C = 250 pF 6 Required switching rate = 10 Period = 10 s Required protection level
in „Varistor dimensionieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Intersil_HIP4081A_.pdf
CURRENT vs V DD FIGURE 5. DDO NO-LOAD I DD SUPPLY CURRENT vs SUPPLY VOLTAGE FREQUENCY (kHz) 5.0 +125°C A m 20.0 +75°C T ) 4.0 N A E ( +25°C R 15.0 T U E 0°C C R 3.0 A U -40°C B C Y 10.0 L P P 2.0 P U S S G 5.0 C I I 1.0 T O L F 0.0 0.0 0 100 200 300 400 500 600 700 800 900 1000 0 100 200 300 400 500 600 700 800 900 1000 SWITCHING FREQUENCY (kHz) SWITCHING FREQUENCY (kHz) FIGURE 6. SIDE A, B FLOATING SUPPLY BIAS CURRENT vs FIGURE 7. CCO , NO-LOAD ICC SUPPLY CURRENT vs FREQUENCY (LOAD = 1000pF) FREQUENCY (kHz) TEMPERATURE
in „Umrichter für E-Kart Anwendung 60V / 120A“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LUXEON_K2_BLAU_LXK2_PB14_N00.pdf
A 700 m t 600 n e 500 r C d 400 r Rθ =50ºC/W w 300 RθJ=40ºC/W r J A F 200 RθJ A0ºC/W - RθJ A5ºC/W IF100 RθJ A0ºC/W RθJ A5ºC/W 0 0 25 50 75 100 125 150 175 200 T A AmbT - Ambient Temperature ( C) A Figure
in „[S] LED aus Feuerwehr Singalleuchte (Blitzlicht)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
VCO_designs.pdf
and multimode system at 900 MHz or uses a dual conversion scheme requiring at least employing many VCO functions.There are many ways to realize two VCOs. these functions, making it virtually impossible to specify the fre- When
in „RF vervielfacher und Verstärker“ · HF, Funk und Felder ·
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PDF
juken-x10.504.pdf
info@jukenswisstech.com 1 / 24 o F X10.504 Analog Car Clock (ACC) Stepper Motor Doc. No.: SP-X10-e-A 2 Functional description The JST X10 is a stepper motor and the rotative movement is generated by an electro-magnetic circuit. The circuit is composed with 2 coils, a stator and a rotor with a bipolar
in „Motor für möglichst kleine Analog-Uhr gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
RT8298E-02.pdf
internal power MOSFETand 6AOutputCurrent a gate driver for a low side external power MOSFET. It 45m Ω Internal High Side N-MOSFET can deliver up to 6A output current from a 4.5V to 24V Current Mode Control input supply. The RT8298E's current
in „Schaltregler - maximaler Spulenstrom“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
RT8298E-02.pdf
internal power MOSFETand 6AOutputCurrent a gate driver for a low side external power MOSFET. It 45m Ω Internal High Side N-MOSFET can deliver up to 6A output current from a 4.5V to 24V Current Mode Control input supply. The RT8298E's current
in „Wahl des SynchrongleichrichterMOSFETs für Buck Converter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
RT8298E-02.pdf
internal power MOSFETand 6AOutputCurrent a gate driver for a low side external power MOSFET. It 45m Ω Internal High Side N-MOSFET can deliver up to 6A output current from a 4.5V to 24V Current Mode Control input supply. The RT8298E's current
in „Woher Eingangsschwingung am Buck“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Strom_Sensor_AAV003-10E_Data_Sheet.pdf
after exposure to a large field with a degauss signal. This same effect can be observed when a large constant current (>200 mA) is applied to the on-chip current strap, or a smaller constant current (>100 mA) at high temperatures
in „kontaktlose Strommessung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SFH4544-Datasheet.pdf
Bestellinformation Type: Radiant Intensity Ordering Code Typ: Strahlstärke Bestellnummer IF= 100 mA, tp= 20 ms Ie[mW/sr] SFH 4544 550 (≥ 250) Q65111A4886 Note: Measured at a solid angle of Ω = 0.001 sr Anm.: Gemessen bei einem Raumwinkel Ω = 0.001 sr Maximum Ratings (T = 25 °C) A Grenzwerte Parameter
in „Max. Strom für IR-LED für NEC-Code“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
tps65136.pdf
negstart 6 8.7 11 ms V Feedback ground regulation –10 0 10 mV FBG M1 MOSFET on-resistance sw = 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
in „OLED Sammelbestellung“ · Markt ·
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PDF
MMSZ5232BS.pdf
lmpedance Leakage Current Device Device Vz(Volts) @ ZzT Z zkIzk IR@V R Marking IzT @ IzT Min Nom Max mA Ω Ω mA uA Volts MMSZ5221BS HC1 2.28 2.4 2.52 20 30 1200 0.25 100 1 MMSZ5222BS HC2 2.38 2.5 2.63 20 30 1250 0.25 100 1 MMSZ5223BS HC3 2.57 2.7 2.84 20 30 1300 0.25 75 1 MMSZ5224BS HC4 2.66 2.8 2.94 20
in „Bauteilidentifizierung am Lautsprecher Messgerät“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
motor.pdf
>AE vANO?DEA@AJAJ ,NADz=DHAJ vANBüC>=NA *AtNEA>OIKIAJt. ,=O MKIAJt EOt =ußAN@AI =>DäJCEC vKJ @AN =JCAHACtAJ 5L=JJuJC uJ@ @AN )Nt @AN )JOtAuANuJC. 7I 5?DNEttvANHuOtA zu vANIAE@AJ, OKHHtA @AN MKtKN EI CAO=
in „schrittmotor Steuerung“ · Platinen ·
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PDF
JBT6K71-AS_A__v1.42_2006-02-07_E.PDF
JBT6K71-AS(A) TOSHIBA CMOS Digital Integrated Circuit Silicon Monolithic JBT6K71-AS (A) 256-Output Source Driver with On-Chip RAM and Power Supply System for Low-Temperature Poly-Si TFT-LCD The JBT6K71-AS(A) is a
in „LCD aus Benq EL71 Handy“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FM2112.pdf
过放电检测延迟时间 典型值140ms 放电过流检测延迟时间 典型值12ms 充电过流检测延迟时间 典型值8ms 负载短路检测延迟时间 典型值400μs (3)低耗电流 工作模式 典型值3.0μA ,最大值6.0μA(VDD=3.2V) 休眠模式 最大值0.1μA C (4)连接充电器的端子采用高耐压设计(CS端子和OC端子,绝对最大额定值是20V) (5)允许向0V电池充电功能:可选择“允许”或“禁止” (6)宽工作温度范围:-40℃~+85℃ (7)小型封装:SOT23-6 (8)FM2112 系列是无卤素绿色环保产品 产品应用 1节磷酸铁锂可再充电电池组 管脚定义及功能说明
in „LiFepo4 balancer - China ICs“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
am26lv32.pdf
ACTIVE INPUTS SEE 1, 2, OR 3 3, 2, OR 1 UNUSED FIGURE ACTIVE OUTPUTS OR INACTIVE VIL† VID VIC† OUTPUTS 900 mV 200 mV 1 V 4 Known state High state −100 mV 200 mV 0 V 5 Known state ? 600 mV 800 mV 1 V 6 Known state High state 0 800 mV 400 mV 7 Known state ? † Measured with respect to ground. Produces a High State at VID = 200 mV Unused or Inactive Outputs VIL= 900 mV VIC= 1V 0V Figure 4. Waveform One VIC= 0V An Unknown State is Produced at Unused or Inactive Outputs V = −100 mV V = 200 mV IL ID Figure 5. Waveform Two VID = 800 mV Produces a High State at Unused
in „Maßnahmen zum ausfallsicheren Busreceiververhalten, wie geht das?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
am26lv32.pdf
ACTIVE INPUTS SEE 1, 2, OR 3 3, 2, OR 1 UNUSED FIGURE ACTIVE OUTPUTS OR INACTIVE VIL† VID VIC† OUTPUTS 900 mV 200 mV 1 V 4 Known state High state −100 mV 200 mV 0 V 5 Known state ? 600 mV 800 mV 1 V 6 Known state High state 0 800 mV 400 mV 7 Known state ? † Measured with respect to ground. Produces a High State at VID = 200 mV Unused or Inactive Outputs VIL= 900 mV VIC= 1V 0V Figure 4. Waveform One VIC= 0V An Unknown State is Produced at Unused or Inactive Outputs V = −100 mV V = 200 mV IL ID Figure 5. Waveform Two VID = 800 mV Produces a High State at Unused
in „Stromaufnahme eines RS422-Receivers anhand von Datenblatt ermitteln“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RAD5807P_ProgManual_1.0.pdf
input 01: LNAN 10: LNAP 11: dual port input 5:4 LNA_ICSEL_BIT[1:0] Lna working current bit: 10 00=1.8mA 01=2.1mA 10=2.5mA 11=3.0mA 3:0 VOLUME[3:0] DAC Gain Control Bits (Volume). 1000 0000=min; 1111=max Volume scale is logarithmic 0AH 15 RESERVED 0 14 STC Seek/Tune Complete. 0 0 = Not complete 1 = Complete
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Siferrit_materials.pdf
magnetization curves (typical values) (typical values) (f = 10 kHz, T = 25 °C) (f = 10 kHz, T =100 °C) FAL0654-A FAL0655-I 300 300 mT mT B B 200 200 150 150 100 100 50 50 0 0 -200 0 200 400 600 800 1000 A/m 1400 -100 100 300 500 700 900 A/m 1300 H H 52 08/01 SIFERRIT Materials K 7 Specific data for K 7 Complex
in „Schaltregler und EMV?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
RFM12BP.PDF
characteristic symbol parameter Remark min typ max Unit Idd_TX_PMA Supply current 433MHz band 200 mA (TX mode, P = 500mW) 868/915MHz band 230 X out Idd_RX Supply current 433MHz band 20 mA (RX mode) 868/915MHz band 23 Ix Idle current Crystal oscillator on 0.62 1.2 mA Ipd Sleep mode current All blocks
in „Verkaufe Hoperf - 10 rfm12b und 2 rfm12bp 868 MHz“ · Markt ·
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Datei
lanc.c
(in && millis() < start + MAX_WAIT_MILLISEC ); } void frameStartBitWait() { // finds the start of a telegram/frame unsigned long usec = 0; unsigned long start = millis(); do { usec = pulseIn(LANC_X_PIN,HIGH); /* DEBUG if (usec > 1200 && usec < candidate) { candidate = usec; Serial.print(usec); Serial.println(" usec"); } */ // } while (usec < 5864); // works for sony TVR900 & HDR-HC9 // } while (usec < 5085); // 5089 // Canon } while (usec < 1450 && millis() < start + MAX_WAIT_MILLISEC); // Frame Lengths are 1200-1400 dep. on device /* DEBUG */ //Serial.print("frame start
in „Hoelscher/Henne DMX-Empfangscode modifizieren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
flag_cnt_testbench.vhd
testbench_cnt IS END testbench_cnt; ARCHITECTURE testbench_cnt_arch OF testbench_cnt IS -- If you get a compiler error on the following line, -- from the menu do Options->Configuration select VHDL 87 -- time for one full clock cycle constant CLK_TIME : Time := 100 ns; COMPONENT flag_counter port ( clk
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PDF
555Geigerzaehler.pdf
6682 Geigerzähler R3 R4 10M 10M +5V R6 LS1 C2 C3 D7 C11 0 * 100n 100µ 10V 1 100n TR1 C6 C8 A 1N4148 D8 0W5 32Ω R2 C4 D2 D3 D4 D5 D6 4148 8 4 0 V 0 8 4 1 22n 6 2 * 2 R C5 C7 C9 R TR 6 THR 7 3 OUT R5 DIS P1 R1 IC1 T1 M IC2 0 7 1 1 555 DIS C5...C8 = 22n / 250V 555 R7 D1...D6 = 1N4004 2 OUT 3 100k
in „Geiger Counter Sparkfun“ · Mikrocontroller und Digitale Elektronik ·
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Datei
loraAtmega.ino
spreading factor: 9 // coding rate: 7 // sync word: 0x12 // output power: 4 dBm // current limit: 45 mA // preamble length: 6 symbols // amplifier gain: 0 (automatic gain control) int state = lora.begin(444, 125.0, 9, 7, 0x12, 4, 45, 6); if (state == ERR_NONE) { Serial.println(F("successful!")); } else
in „Atmega328p LoRa Node (RFM98w) - Zu hoher Stromverbrauch!“ · Haus & Smart Home ·
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PDF
Linux-CPU-freq-governors.pdf
software how the performance of the workload running on a CPU will change when frequency changes. A workload with sensitivity of 0% (memory/IO-bound) will not perform any better on higher core frequency, whereas a workload with sensitivity of 100% (CPU-bound
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PDF
GC9306_DS_V1.01.pdf
1 Parameter 1 1 ↑ XX X X Vreg1_vap[5:0] 2a Set the voltage level value to output the VREG1A OUT level, which is a reference level for the grayscale voltage level. vap[5:0] vreg1a(V) vap[5:0] Vreg1a(V) Vap[5:0] Vreg1a(V) 6'h00 3.900 6'h16 5.000
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