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PDF
st7036.pdf
393 69 SEG[8] -2518 -295 30 VIN -345 393 70 SEG[9] -2518 -350 31 VIN -421 393 71 SEG[10] -2253 -378 32 VOUT -497 393 72 SEG[11] -2198 -378 33 VOUT -573 393 73 SEG[12] -2143 -378 34 PSB -649 393 74 SEG[13] -2088 -378 35 VSS -725 393 75 SEG[14] -2033 -378 36 PSI2B -801 393 76 SEG[15] -1978 -378 37 CAP1P
in „Controller ST7036“ · Mikrocontroller und Digitale Elektronik ·
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PDF
st7036.pdf
393 69 SEG[8] -2518 -295 30 VIN -345 393 70 SEG[9] -2518 -350 31 VIN -421 393 71 SEG[10] -2253 -378 32 VOUT -497 393 72 SEG[11] -2198 -378 33 VOUT -573 393 73 SEG[12] -2143 -378 34 PSB -649 393 74 SEG[13] -2088 -378 35 VSS -725 393 75 SEG[14] -2033 -378 36 PSI2B -801 393 76 SEG[15] -1978 -378 37 CAP1P
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PDF
st7036.pdf
393 69 SEG[8] -2518 -295 30 VIN -345 393 70 SEG[9] -2518 -350 31 VIN -421 393 71 SEG[10] -2253 -378 32 VOUT -497 393 72 SEG[11] -2198 -378 33 VOUT -573 393 73 SEG[12] -2143 -378 34 PSB -649 393 74 SEG[13] -2088 -378 35 VSS -725 393 75 SEG[14] -2033 -378 36 PSI2B -801 393 76 SEG[15] -1978 -378 37 CAP1P
in „STK500 und LCD (ST7036) Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ST7036.pdf
393 69 SEG[8] -2518 -295 30 VIN -345 393 70 SEG[9] -2518 -350 31 VIN -421 393 71 SEG[10] -2253 -378 32 VOUT -497 393 72 SEG[11] -2198 -378 33 VOUT -573 393 73 SEG[12] -2143 -378 34 PSB -649 393 74 SEG[13] -2088 -378 35 VSS -725 393 75 SEG[14] -2033 -378 36 PSI2B -801 393 76 SEG[15] -1978 -378 37 CAP1P
in „i2C TWI Modus - ST7036 - DOGM DOGM162 DOGM081 EA DOGM163, ist das Möglich ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
f_2320312311226304479081.pdf
Frequency Application/additional Part number range(V) range(V) Duty Segment Common RAM(bits) interface (KHz) Package features S1D15100D00C (SED1510D 0C) Al pad chip Small segment-type S1D15100F00C 0.9 to 6.0 1.8 to 6.0 1/4 32 4 128 bit Serial 18(internal) LCD display. Common (SED1510F0C)* QFP12-48pin and
in „Philips GLCD Modul“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HF500-30.pdf
V OLP 3.7 V time Time duration before OLP when FB reaches the protection point T OLP C TIMER= 47nF 32 ms Over-Power Compensation (B/O) V B/O= 1.1V, VFB= 2.5V, T = 25°C 0 J V B/O= 1.3V, VFB= 2.5V, T J= 25°C 19 Compensation voltage V OPC V B/O= 2.9V, VFB= 2.5V, 153 200 247 mV T J= 25°C V B/O= 3.5V, VFB
in „Marking Code Hilfe“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt_Epson_S1D15G10_vom_Display_Controller.pdf
frequency Model name Die No. /built-in oscillation frequency S1D15G10D08B000 D15GAD8B0 180 Hz/47.52 kHz Rev. 1.0 EPSON 3 S1D15G10D08B000 6. PIN COORDINATE Unit: µm PAD Pin X Y Xsize Ysize PAD Pin X Y Xsize Ysize No. Name No. Name 1 NC –11607.0 –1187.0 82 109 58 GND3 –4921.0 –1187.0 82 109 2 NC –11487.0
in „The Siemens S65 132x176, 65536 color display with AVR“ · Projekte & Code ·
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PDF
S1D15G10.pdf
frequency Model name Die No. /built-in oscillation frequency S1D15G10D08B000 D15GAD8B0 180 Hz/47.52 kHz Rev. 1.0 EPSON 3 S1D15G10D08B000 6. PIN COORDINATE Unit: µm PAD Pin X Y Xsize Ysize PAD Pin X Y Xsize Ysize No. Name No. Name 1 NC –11607.0 –1187.0 82 109 58 GND3 –4921.0 –1187.0 82 109 2 NC –11487.0
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111COMX_Communication_Module_DG_16_EN.pdf
Module ...............................................................................................32 2.6 Meaning of the Address Switch ...................................................................................................32 2.6.1 PROFIBUS DP Slave........................................
in „Externes SRAM + Atmel AT91SAM7SE“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD9857.pdf
be transferred DATA is shown in Figure 21 and Figure 22. Rev. C | Page 18 of 40 AD9857 TxENABLE t DS DH PDCLK t DS D<13:0> 0 Q 0 I1 Q1 IN Q N - 8 tDH 1 0 Figure21.14-BitParallelPortTimingDiagram—QuadratureModulationMode TxENABLE DS DH PDCLK DS 2 D<13:0> 0 1 I2 I3 K – 1 K C 1 tDH 0 Figure22.14-BitParallelPortTimingDiagram—InterpolatingDACMode
in „Updatepin zur Aktivierung beschriebener Kontrollregister“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD9857.pdf
be transferred DATA is shown in Figure 21 and Figure 22. Rev. C | Page 18 of 40 AD9857 TxENABLE t DS DH PDCLK t DS D<13:0> 0 Q 0 I1 Q1 IN Q N - 8 tDH 1 0 Figure21.14-BitParallelPortTimingDiagram—QuadratureModulationMode TxENABLE DS DH PDCLK DS 2 D<13:0> 0 1 I2 I3 K – 1 K C 1 tDH 0 Figure22.14-BitParallelPortTimingDiagram—InterpolatingDACMode
in „Mit MSP430F2013 parallele Datenübertragung programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Platinfuchs_IIa_Schematic-and-Layout.pdf
GND GND 10µF 4 A DE B3 A3 a485-en PMEG4010 PMEG4010 6,3V 100nF 10R EIA-485 5 4 12 5 GND DI B4 A4 C32 D29 SN65HVD72 11 B5 A5 6 4 3 a485-tx a485-tx *GND* *GND* *GND* CDSOT23-SM712 Replacement: SN65HVD1780 100nF Replacement: PESD12VL2BT 10 7 U4B 3V3 3V3 EN2 EN1 74LVC14A 4 B *GND* *GND* 9 8 a485-rx C 5
in „Platinfuchs IIa: Isolierter, bidirektionaler 45W DC/DC Wandler zum Laden/Entladen eines Liion-Akkus“ · Projekte & Code ·
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PDF
rudi_____RX-V4A_TSR-400.pdf
.................................. 140 W...........................................................32 kHz to 96 kHz * Specifications are subject to change without notice. COAXIAL................................................................32 k....................................................174.928
in „Test in der Schaltung STR3A400“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SPLC501C_v1.8.pdf
Capacitance C IN TA= 25 ℃ f = 1.0MHz - 5.0 8.0 pF Oscillator Internal Oscillator L OSC TA = 25℃ 18 22 26 KHz *8 Frequency External Input A fCL SPLC501C 18 22 26 KHz CL r VSS2 With Triple (Relative to VDD) -4.0 - -2.4 V VSS2 Input Voltage o VSS2 With Quad (Relative to VDD) -3.0 - -2.4 V VSS2 e Supply Setup-up
in „Welche Signale sind das? LCD Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SPLC501C_v1.8.pdf
Capacitance C IN TA= 25 ℃ f = 1.0MHz - 5.0 8.0 pF Oscillator Internal Oscillator L OSC TA = 25℃ 18 22 26 KHz *8 Frequency External Input A fCL SPLC501C 18 22 26 KHz CL r VSS2 With Triple (Relative to VDD) -4.0 - -2.4 V VSS2 Input Voltage o VSS2 With Quad (Relative to VDD) -3.0 - -2.4 V VSS2 e Supply Setup-up
in „LCD-Display Signal abgreifen, verändern und weiterschicken“ · Mikrocontroller und Digitale Elektronik ·
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PDF
18000-1.pdf
(DS1) contained therein, decoding means (10) for decoding the encoded data signal (DS1) and for outputting data (D1, D2), and data processing means (11) for processing the data (D1, D2) output by the decoding
in „RFID Controller programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
L6207_AN.pdf
..................................................................................................32 4.1 Decay mode, sensing resistors and reference voltage..........................................................32 5 APPENDIX - EVALUATION BOARDS.....................................................
in „Schrittmotor mit L6207“ · Mikrocontroller und Digitale Elektronik ·
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PDF
en.CD00004482.pdf
..................................................................................................32 4.1 Decay mode, sensing resistors and reference voltage..........................................................32 5 APPENDIX - EVALUATION BOARDS.....................................................
in „Treiberstufe fuer Faulhaber Schrittmotor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PicoMite_User_Manual.pdf
on a PIC32. "Micromite" on the PIC32MX150/250 "Micromite MkII" on the PIC32MX170/270 "Micromite Plus" on the PIC32MX470 "Micromite Extreme" on the PIC32MZ series "ARMmite H7" on the ArmmiteH7 "ARMmite F407" on
in „allgemeine PicoMite Anfängerfragen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
W83627HF_HGb.pdf
LRESET# 30 IN tsp3 Reset signal. It can connect to PCIRST# signal on the host. SUSCLKIN 75 IN tsp3 32khz clock input, for CIR only. Publication Release Date: June 09, 2006 - 13 - Revision 2.27 W83627HF/ F/ HG/ G 6.2 FDC Interface SYMBOL PIN I/O FUNCTION DRVDEN0 1 OD 24 Drive Density Select bit 0. DRVDEN1
in „Pullups für nicht verwendete Open-Drain-Outputs?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Detektorradio_Workshop.pdf
die 120 µH Spule 35 Windungen und für die 160µH-Spule 40 Windungen (ca. 1,30m Litze) aufzubringen. 32 High-Performance Zweikreiser Zweikreiser #48 von Detektor Guru Dave Schmarder, N2DS. Antennenkreis und Detektorkreis sind induktiv gekoppelt. Die Kopplung wird durch Kippen der Spulen variiert. Alternativ
in „Was ist denn das für ein seltsames Gerät? Radio?“ · HF, Funk und Felder ·
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PDF
KS0713.pdf
pins Duty SHL COM[1:16] COM[17:24] COM[25:40] COM[41:48] COM[49:64] COMS 1/33 0 COM[1:16] *NC COM[17:32] COMS 1 COM[32:17] *NC COM[16:1] 0 COM[1:24] *NC COM[25:48] 1/49 COMS 1 COM[48:25] *NC COM[24:1] 0 COM[1:64] 1/65 COMS 1 COM[64:1] *NC: No Connection 22 KS071 3 65 COM / 1 32 SEG DRIVER & CONTROLLER
in „Dbox LCD HT12538“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DAT-31R5A-PP_.pdf
spurious-free operation. It also allows fast switching up to 1 MHz (vs. +2.7 to +3.6V (Positive) and 25 kHz for single supply). -3.6 to -3.2V (Negative) Wide range fo positive operating voltages allows the DAT-31R5A+ Series of models to be Useable over a wide range of supply used in a wide range of applications
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PDF
DAT-31R5A-PN_.pdf
spurious-free operation. It also allows fast switching up to 1 MHz (vs. +2.7 to +3.6V (Positive) and 25 kHz for single supply). -3.6 to -3.2V (Negative) Wide range fo positive operating voltages allows the DAT-31R5A+ Series of models to be Useable over a wide range of supply used in a wide range of applications
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PDF
DAT-31575A-SP_.pdf
spurious-free operation. It also allows fast switching up to 1 MHz +2.7 to +3.6V (Positive) and (vs. 25 kHz for single supply). -3.6 to -3.2V (Negative) Wide range fo positive operating voltages allows the DAT-31575A+ Series of models to Useable over a wide range of supply volt- be used in a wide range of
in „Stereopoti syncronisieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Bidirektionale_RS232_Funkbr_cke_mit_RFM12_2.pdf
Empfänger auf 145 khz. Damit kann man locker noch 40 Kanäle spezifizieren mit je 250 khz Abstand. Mit den in den Codebeispielen angegebenen Einstellungen für LNA gain und RSSI Threshold (alles auf Maximum) ist das DQD Bit
in „bidirektionale RS232 Funkbrücke mit RFM12“ · Projekte & Code ·
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PDF
sed1278.pdf
SEG35 9 SEG14 29 V4 49 COM3 69 SEG34 10 SEG13 30 V5 50 COM4 70 SEG33 11 SEG12 31 LP 51 COM5 71 SEG32 12 SEG11 32 XSCL 52 COM6 72 SEG31 13 SEG10 33 VDD 53 COM7 73 SEG30 8 2 14 SEG9 34 FR 54 COM8 74 SEG29 1 15 SEG8 35 DO 55 COM9 75 SEG28 E S 16 SEG7 36 RS 56 COM10 76 SEG27 17 SEG6 37 R/W 57 COM11 77 SEG26
in „Suche Schaltplan, Peaktech 4010.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CN3795.pdf
Charge Current Up to 4A with constant current and constant voltage mode. PWM Switching Frequency: 310KHz In constant voltage mode, the regulation voltage is Can be used as Voltage Source when set by 2 external resistors. The constant charging Battery isAbsent current is programmable with a single current
in „5V Solarmodul zu 5V USB - Optimierung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CN3795-CONSONANCE.pdf
Charge Current Up to 4A with constant current and constant voltage mode. PWM Switching Frequency: 310KHz In constant voltage mode, the regulation voltage is Can be used as Voltage Source when set by 2 external resistors. The constant charging Battery isAbsent current is programmable with a single current
in „Auseinandergenommene Geräte“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CN3795-CONSONANCE.pdf
Charge Current Up to 4A with constant current and constant voltage mode. PWM Switching Frequency: 310KHz In constant voltage mode, the regulation voltage is Can be used as Voltage Source when set by 2 external resistors. The constant charging Battery isAbsent current is programmable with a single current
in „cn3795 Richtige Werte für FB und MPPT“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
C17410452.pdf
9.6 10.5 V Threshold Voltage Normal Operation Average Switching Frequency fOSC(AVG) 8 − 3 58 65 72 kHz Switching Frequency Δf 8 − 3 — 5.4 — kHz Modulation Deviation Maximum Feedback Current IFB(MAX) V CC= 12 V 4 − 3 −110 −72 −40 µA Minimum Feedback Current IFB(MIN) 4 − 3 −21 −13 −5 µA Light Load Operation
in „Test in der Schaltung STR3A400“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Design_Considerations_For_Class-D_Audio_Power_Amps__TI.pdf
calculated using the BTL equations: 1 1 C L Ǹ + Ǹ + 1.1mF (11) 2 @ p @ 2@ RL@ fC 2 @ p @ 2 @ 4W @ 25 kHz Ǹ Ǹ L + 2 @ RL + 2 @ 4W + 18 mH (12) 4 @ p @Cf 4 @ p @ 25 kHz These values are checked by substituting into equation 10 and found to be correct. ReviewingavailablecomponentvaluesshowsoptionsforLof15
in „Class-D Verstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
lm2679-adj.pdf
Output Leakage V IN= 40V, Softstart Pin = 0V mA Current V SW ITCH= 0V 1.0 1.5 mA V SW ITCH= −1V 6 15 R DS(ON) Switch ISW ITCH= 5A 0.12 0.14/0.225 Ω On-Resistance fO Oscillator Measured at Switch Pin 260 225 280 kHz Frequency D Duty Cycle Maximum Duty Cycle 91 % Minimum Duty Cycle 0 % I Feedback Bias V =
in „Schaltregler Schaltplan und Layout Kontrolle“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM2576.pdf
Bias Current V OUT = 5V (Adjustable Version Only) 50 100/500 nA fO Oscillator Frequency (Note 11) 52 kHz 47/42 kHz (Min) 58/63 kHz (Max) VSAT Saturation Voltage IOUT = 3A (Note 4) 1.4 V 1.8/2.0 V(Max) DC Max Duty Cycle (ON) (Note 5) 98 % 93 %(Min) I Current Limit (Notes 4, 11) 5.8 A CL 4.2/3.5 A(Min) 6.9
in „Schaltnetzteilverbrauch“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STC15F100-en.pdf
//Timer clock mode, comment this line is 12T mode, uncomment is 1T mode #ifdef MODE1T #define F38_4KHz (65536-FOSC/2/38400) //38.4KHz frequency calculation method of 1T mode #else #define F38_4KHz (65536-FOSC/2/12/38400) //38.4KHz frequency calculation method of 12T mode #endif /* define SFR */ sfrAUXR
in „STC15F104W will nicht so recht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
311_Schaltungen.pdf
elektronische Türgong mit RIFF-WAVE Format/PCM, 8-bit, mono ATmega328P ist eigentlich ein kleiner und 8 kHz Samplingrate. Der Flashspei- WAV-Player, der per Klingelknopf akti- cher des ATmega328 ist 32 KB groß. Für viert wird und dann eine kleine WAV-Da- dieFirmwaresind1KB(also1024 Bytes) tei über die integrierte
in „[S] Sammlung von elektr. Schaltungen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NFAQ1560R43T-D.PDF
and OFF signal) www.onsemi.com 11 NFAQ1560R43T TEST CIRCUITS • ICES 34 ICE VBS=15V U+ V+ W+ U− V− W− 32 A A A 38 38 38 32 26 20 VBS=15V 28 B 32 26 20 17 18 19 26 VCE U+, V+, W+ : High side phase VBS=15V 22 U−, V−, W− : Low side phase 20 VDD=15V 2,9,11,12 B 1,10,17,18,19 Figure 16. Test Circuit for I CE • VCE(sat) (Test by pulse) U+ V+ W+ U− V− W− A 38 38 38 32 26 20 VBS=15V 34 32 A B 32 26 20 17 18 19 28 C 3 4 5 6 7 8 VBS=15V 26 V IC VBS=15V 22 VCE(sat) 20 VDD=15V 2,9,11,12 5V C B 1,10,17,18,19 Figure 17. Test Circuit for CE(SAT) • VF (Test by pulse) U+ V+
in „Ersatz für ON-Semi STK5Q4U362J-E / STK5Q4U363J-E bzw. passt da NFAQ1060L33T / NFAQ1060L36T“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AND9674-D.PDF
below the supply voltage (V ) of the gate driver. The bootstrap • T ON = 25 μs (Duty = 50% at f s 20 KHz) DD • ILKDIODE = 10 μA capacitor is discharged only when the high−side switch is turned on. This bootstrap capacitor is the supply voltage (V BS) for the high circuit section. The first parameter to
in „Bootstrap Kondensator richtig wählen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
VAR-DT6CUSTOMBOARD_SCH_V1_1_Doc_V1_2.pdf
) (GPIO3[4])CSI1_DATA5 25 CSI1_DATA5 6 1 28 VBAT VBAT 27 SOM_VBAT 28 GND GND 27 30 29 1 30 29 C147 32 VBAT VBAT 31 6 CSI1_DATA19 32 CSI1_DATA19(GPIO5[4]) (GPIO3[21])SPDIFIN 31 SPDIF_IN 6 34 VBAT VBAT 33 C148 6 CSI1_DATA18 34 CSI1_DATA18(GPIO6[6]) (GPIO3[22])SPDIFOUT 33 SPDIF_OUT 6 47uF 36 GND VBAT 35
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PDF
AVR450_BattCharger.pdf
Interface and EEPROM data memory can be downloaded from AVRISP PC programming software. ATtiny15 with 100 kHz Buck ATtiny15 includes special features to make it specially suited for battery charger appli- Converter cations. The internal 100 kHz PWM is connected to a buck converter. The high switching frequency
in „Pb-Akku Ladegerät mit µP Selbstgemacht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MachXO2FamilyDataSheet.pdf
migration files. 2-37 MachXO2 Family Data Sheet DC and Switching Characteristics May 2016 Data Sheet DS1035 1, 2, 3, 4 Absolute Maximum Ratings MachXO2 ZE/HE (1.2 V) MachXO2 HC (2.5 V / 3.3 V) Supply Voltage V CC . . . . . . . . . . . . . . . . . . . . . . .–0.5 V to 1.32 V . . . . . . . . . . . . .–0.5
in „Statemachine springt in falsche "states" warum?“ · FPGA, VHDL & Co. ·
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PDF
Display.pdf
30 to +85 ßC) PARAMETER SYMBOL CONDITIONS APPLICABLE PIN MIN. MAX. UNIT CK "H" pulse width tCKHW 10 32 µs CK "L" pulse width tCKLW CK 10 32 µs Input signal rise and fall tiR, F 15 ns (VDD = 1.8 to 2.4 V,OPR = —30 to +85 ßC) PARAMETER SYMBOL CONDITIONS APPLICABLE PIN MIN. MAX. UNIT CK "H" pulse width tCKHW 10 32 µs CK "L" pulse width tCKLW CK 10 32 µs Input signal rise and fall tiR, F 30 ns NOTE : All the timings must be specified relative to 20%DDvoltage.f V 8. CONNECTION EXAMPLES OF REPRESENTATIVE APPLICATIONS
in „LC-Display Sharp M078CKA ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lh155.pdf
30 to +85 ßC) PARAMETER SYMBOL CONDITIONS APPLICABLE PIN MIN. MAX. UNIT CK "H" pulse width tCKHW 10 32 µs CK "L" pulse width tCKLW CK 10 32 µs Input signal rise and fall tiR, F 15 ns (VDD = 1.8 to 2.4 V,OPR = —30 to +85 ßC) PARAMETER SYMBOL CONDITIONS APPLICABLE PIN MIN. MAX. UNIT CK "H" pulse width tCKHW 10 32 µs CK "L" pulse width tCKLW CK 10 32 µs Input signal rise and fall tiR, F 30 ns NOTE : All the timings must be specified relative to 20%DDvoltage.f V 8. CONNECTION EXAMPLES OF REPRESENTATIVE APPLICATIONS
in „Suche sehr dünnes Grafikdisplay“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lh155.pdf
30 to +85 ßC) PARAMETER SYMBOL CONDITIONS APPLICABLE PIN MIN. MAX. UNIT CK "H" pulse width tCKHW 10 32 µs CK "L" pulse width tCKLW CK 10 32 µs Input signal rise and fall tiR, F 15 ns (VDD = 1.8 to 2.4 V,OPR = —30 to +85 ßC) PARAMETER SYMBOL CONDITIONS APPLICABLE PIN MIN. MAX. UNIT CK "H" pulse width tCKHW 10 32 µs CK "L" pulse width tCKLW CK 10 32 µs Input signal rise and fall tiR, F 30 ns NOTE : All the timings must be specified relative to 20%DDvoltage.f V 8. CONNECTION EXAMPLES OF REPRESENTATIVE APPLICATIONS
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PDF
mm5450.pdf
Current 750 mA 3.0 4.3 V Output Matching (Note 1) g 20 % Clock Input (Notes 5 and 6) Frequency,Cf 500 kHz High Time,ht 950 ns Low Time,lt 950 ns Data Input Set-Up Time,DS 300 ns Hold Time,DH 300 ns Data Enable Input Set-Up Time,DES 100 ns Note 1: Output matching is calculated as the perceMAXvarMIN)/2.(I
in „LED-Ansteuerungs-IC M5450“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADS8345.pdf
SAMPLING DYNAMICS Conversion Time 16 ✻ CLK Cycles Acquisition Time 4.5 ✻ CLK Cycles Throughput Rate 100 ✻ kHz Multiplexer Settling Time 500 ✻ ns Aperture Delay 30 ✻ ns Aperture Jitter 100 ✻ ps Internal Clock Frequency SHDN = V 2.4 ✻ MHz DD External Clock Frequency 0.024 2.4 ✻ ✻ MHz Data Transfer Only 0 2.4
in „ext. AD Wandler ADS8345“ · Mikrocontroller und Digitale Elektronik ·
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PDF
drv8833.pdf
The DC power dissipation of one H-bridge can be roughly estimated by Equation 2. 2 2 P TOT= (HS - R DS(ON) IOUT(RMS) + (LS - R DS(ON) IOUT(RMS) (2) where P TOT is the total power dissipation, HS - RDS(ON) is the resistance of the high side FET, LS - R DS(ON) is the resistance of the low side FET, and I OUT(RMS) is the RMS output current being applied to the motor. Note that R DS(ON)increases with temperature, so as the device heats, the power dissipation increases. This must be taken into consideration when sizing the heatsink. Heatsinking The PowerPAD™ packages (PWP and RTY
in „TI DRV8833 Muss man den PWM Pin wechseln?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
m7000b.pdf
Programming Times for Different Test Clock Frequencies Device fTCK Units 10 MHz 5 MHz 2 MHz 1 MHz 500 kHz 200 kHz 100 kHz 50 kHz EMP7032B 2.13 2.13 2.15 2.19 2.26 2.47 2.82 3.52 s EMP7064B 2.13 2.14 2.18 2.24 2.36 2.72 3.32 4.52 s EMP7128B 2.14 2.16 2.23 2.34 2.56 3.23 4.34 6.56 s EMP7256B 2.17 2.21 2.35
in „verkauf von Altera“ · Markt ·
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PDF
SPLC780D001BC.pdf
Code (Temp = 25℃) Instruction Description Fosc= Fosc= Fosc= RS RW DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0 190KHz 270KHz 350KHz Write "20H" to DDRAM Clear Display 0 0 0 0 0 0 0 0 0 1 and set DDRAM address 2.16ms 1.52ms 1.18ms Set DDRAM address to "00H" from AC and return cursor to its l Return Home 0 0 0 0 0 0
in „LCD Display initialisieren oder geht das automatisch?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
splc780D.pdf
Code (Temp = 25℃) Instruction Description Fosc= Fosc= Fosc= RS RW DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0 190KHz 270KHz 350KHz Write "20H" to DDRAM Clear Display 0 0 0 0 0 0 0 0 0 1 and set DDRAM address 2.16ms 1.52ms 1.18ms Set DDRAM address to "00H" from AC and return cursor to its l Return Home 0 0 0 0 0 0
in „2x16 LCD Batron Tabelle?“ · Mikrocontroller und Digitale Elektronik ·