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PDF
Alto_D1__D2__D3__D4_Power_Amp_Service_Manual.pdf
390W 4X 390W 2 X5 40W 4X 540W Powe rEIAJ@ 1% TH D,both channelsd rven,230V 8ohms per chnn elEIAJ) 2 X 270W 4X 270W 2 X 370W 4 X 370W 4ohms per chnn e(EA J) 2X 500W 4X 500W 2 X 750W 4X 750W BRIDG ED MO DE 16ohm
in „Endstufe reparieren, Bauteil identifizieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
3B036723d01.pdf
E-16 E.2.4 RAM parallel bootstrap ................................................................................... E-19 E.2.4.1 Jump to start of RAM ($0050)..........................................
in „unbekanntes Touchpad, wie anschliessen und verwenden?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
isow7841.pdf
DWE 16 2000 330.0 16.4 10.75 10.7 2.7 12.0 16.0 Q1 ISOW7842DWER SOIC DWE 16 2000 330.0 16.4 10.75 10.7 2.7 12.0 16.0 Q1 ISOW7842FDWER SOIC DWE 16 2000 330.0 16.4 10.75 10.7 2.7 12.0 16.0 Q1 ISOW7843DWER SOIC DWE 16 2000 330.0 16.4 10.75 10.7 2.7 12.0 16.0 Q1 ISOW7843FDWER SOIC DWE 16 2000 330.0 16.4 10.75 10.7 2.7 12.0 16.0 Q1 ISOW7844DWER SOIC DWE 16 2000 330.0 16.4 10.75 10.7 2.7 12.0 16.0 Q1 ISOW7844FDWER SOIC
in „Problem mit der SPI Datenübertragung zwischen einem Arduino Portenta H7 und einem ADS8684 (ADC)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
164a_series-v10.PDF
7 Data hold time h2 10 --- --- ns DB 0 DB 7 Displaytech Ltd LCD MODULE 164A SERIES Version : 1.0 P4 of 17 l Read mode Characteristic Symbol Min. Typ. Max. Unit Test pin E cycle time C 500 --- --- ns E E rise time r --- --- 25 ns E E fall time f --- --- 25 ns E E pulse width tW 220 --- --- ns E R/W
in „LCD Aufloesung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
doc7593.pdf
/OC.1B) PB6 16 33 PE0 (WR) 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 1 1 1 2 2 2 2 2 2 2 2 2 2 3 3 3 7 4 5 T C D L L 0 1 2 3 4 5 6 7 B E E E V N A A D D D D D D D D ) ) ) E G X X ) ) ) ) ) ) ) ) C C C R T T T T P K T T C S S
in „Problem mit dem TC4469“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lcd_2x16_spec.pdf
2 Vdd 12.45 56.20(AA) 3 Vo 0 5 6 8.0 P2.54*15=38.10 0 2 5 10.0 MAX 4 RS 1 1 1 1.80 16- 1.0 PTH . . 5 R/W 2 2 7.0 6 E . 7 DB0 5 1 16 3 8 DB1 8 9 DB2 5 ) ) K 1 0 0 A A 0 10 DB3 0 . ( 0 . 1 11 DB4 6 2 6 . 5 3 3 1 1 A 12 DB5 13 DB6 14 DB7 15 LEDA 40.55 4- 2.5 PTH 1.0 16 LEDK
in „2x16 LCD PROBLEM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Schwingkond-53278649.pdf
for this shunt capacitance is: L(s)pF 107 * s+ 1) s(140kQ8pF s +1) 115 Velocity +5 Velocity Figure4.8: OP627-based sense amplifier The phase margin of 4.80is shown in the bode plot of Figure 4.9. Uncompensated Transfer function Gm= 17.567dB (at2.5781e+07 rad/sec), Pm = 4.7637deg (at9.3596e+06 rad/sec
in „DC-Messverstärker (Chopper) mit Kapazitätsdioden (diskret)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Ethernet-DK.pdf
Port 5 Port 6 Port 3 Board CP2200 Port 4 Port 7 Port 1 RJ45 Pin 2 J10 J8 J6 J9 T Pin 1 Port 0 Port 2 E J3 E J23 R MONEN P1.6 . Prototyping C8051F12x P Area J4 C8051F120 J21 J1 J3 G J5 Target Board T Pin 2 J22 Pin 2 J LED1 J6 R1 J4 LED2 Pin
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PCF8833_1.pdf
partial Display mode the drive voltage can be reduced. Table 33 Partial area register bits D/C 7 6 5 4 3 2 1 0 DEFAULT 0 0 0 1 1 0 0 0 0 30H 1 AA1S 7 AA1S6 AA1S5 AA1S4 AA1S3 AA1S 2 AA1S1 AA1S 0 tbf 1 AA1E 7 AA1E6 AA1E5 AA1E4 AA1E3 AA1E 2 AA1E1 AA1E 0 tbf 2003 Feb 14 28 Philips Semiconductors Objective
in „Versorgung einer LCD Anzeige und MC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
atmel-8393-mcu_wireless-atmega256rfr2-atmega128rfr2-atmega64rfr2_datasheet.pdf
18. Mapping between RSSI Value and Received Input Power 10 0 Measured ] m -10 Ideal d F -20 R r -30 e o -40 t u -50 I r -60 i -70 e e -80 R -90 -100 0 2 4 6 8 10 12 14 16 18 20 22 24 26 28 30 RSSI 9.5.4 Energy Detection (ED) The Energy Detection (ED) module is characterized by: • 85 unique energy levels
in „AVR-Verlustleistung maximieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sender_Empf_LCD.pdf
Data hold time th2 10 --- --- ns DB 0 DB 7 Displaytech Ltd LCD MODULE 204B SERIES Version : 1.1 P 4 of 17 l Read mode Characteristic Symbol Min. Typ. Max. Unit Test pin E cycle time C 500 --- --- ns E E rise time r --- --- 25 ns E E fall time t --- --- 25 ns E f E pulse width tW 220 --- --- ns E R/
in „Adressvergabe für Ram und LCD ??“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HWSC_S_A0014431442_1-3073393.pdf
O — RR barbed ports, RR barbed ports, 2.5MD ±2.5 mbar 250LD ±250 Pa 001ND ±1 i2H 001BD -1 1 bar — 4 8 10 ±0.75 ±0.25 ±0.25 16 same side same side 1.6BD -1.6 1.6 bar — 8 16 10 ±0.75 ±0.25 ±0.25 16 004MD ±4 mbar 400LD ±400 Pa 002ND ±2 i2H JN Single radial JN Single radial 006MD ±6 mbar 600LD ±600 Pa 004ND ±4 i2H 2.5BD -2.5 2.5 bar — 8 16 10 ±0.75 ±0.25 ±0.25 16 barbless port barbless port 010MD ±10 mbar 001KD ±1 kPa 005ND ±5 i2H O 004BD -4.0 4.0 bar — 16 17 10 ±0.75 ±0.25 ±0.25 16 006BD -6 6 bar — 17 17
in „ESP32 Wroom mit Honeywell Drucksensor verbinden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
S1D13305.pdf
Y2 Y1 Y0 (lines) 0 0 0 0 0 Illegal –1 +1 1 0 0 0 1 2 01 00 ↓ ↓ ↓ ↓ ↓ ↓ 8 1 0 0 0 9 +AP ↓ ↓ ↓ ↓ ↓ ↓ E 1 1 1 0 15 11 F 1 1 1 1 16 Figure 16. Cursor direction 34 EPSON S1D13305 Series Technical Manual INSTRUCTION SET Table 16. Cursor shift direction C CD1 CD0 Shift direction 4CH 0 0 Right 4DH 0 1 Left
in „SP14Q002-A1 aus eBay - Erfahrungsaustausch“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Epson_S1D13305.pdf
Y2 Y1 Y0 (lines) 0 0 0 0 0 Illegal –1 +1 1 0 0 0 1 2 01 00 ↓ ↓ ↓ ↓ ↓ ↓ 8 1 0 0 0 9 +AP ↓ ↓ ↓ ↓ ↓ ↓ E 1 1 1 0 15 11 F 1 1 1 1 16 Figure 16. Cursor direction 34 EPSON S1D13305 Series Technical Manual INSTRUCTION SET Table 16. Cursor shift direction C CD1 CD0 Shift direction 4CH 0 0 Right 4DH 0 1 Left
in „SP14Q002-A1 aus eBay - Erfahrungsaustausch“ · Mikrocontroller und Digitale Elektronik ·
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PDF
manual42.pdf
107 type Integral 0 Stored Energy 1 Block Cross-section 2 Block Volume 3 Average D over the block 4 Average E over the block 5 Weighted Stress Tensor Force 6 Weighted Stress Tensor Torque Returns one or two floating point values as results, e.g.: Fx, Fy = eo blockintegral(4) • eo getpointvalues(X,Y)
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STM.pdf
) 6.0 5 13 16 19 W(L) Minimum Pulse 2.0 32 75 95 110 Width 4.5 8 15 19 22 ns (S/L) 6.0 7 13 16 19 t Minimum Set-up 2.0 24 75 95 110 s Time 4.5 6 15 19 22 (PI - S/L) ns (SI - CK) 6.0 5 13 16 19 (S/L -CK) h Minimum
in „Arduino + 74HC165“ · Mikrocontroller und Digitale Elektronik ·
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Datei
EPaper_1_54_Test.ino
reset=*/ 16); // Connect RW with GND //U8G2_SED1520_122X32_1 u8g2(U8G2_R0, 8, 9, 10, 11, 4, 5, 6, 7, /*dc=*/ A0, /*e1=*/ A3, /*e2=*/ A2, /* reset=*/ A4); // Set R/W to low! //U8G2_T6963_240X128_1_8080 u8g2(U8G2_
in „Fragen zu Waveshare e-paper 1.54"“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tm512ac_v1-7_en.pdf
choose an appropriate intermediate value. 15 ©Titan Micro Electronics www.titanmec.com V1.7 DMX512 16-Bit high gray driving IC TM512AC Package Diagram: SOP16 2 A A 1 L θ C A b e E E Symbol Dimensions In Millimeters Dimensions In Inches Min Max Min Max A 1.350 1.750 0.053 0.069 A1 0.100 0.250 0.004 0.010
in „TM512AC - Startadresse programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tm512ac_v1-7_en.pdf
choose an appropriate intermediate value. 15 ©Titan Micro Electronics www.titanmec.com V1.7 DMX512 16-Bit high gray driving IC TM512AC Package Diagram: SOP16 2 A A 1 L θ C A b e E E Symbol Dimensions In Millimeters Dimensions In Inches Min Max Min Max A 1.350 1.750 0.053 0.069 A1 0.100 0.250 0.004 0.010
in „TM512AC - Startadresse programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
cic1.pdf
Signal Processing Group Inc. Website: http://www.signalpro.biz. = e –(j2πfM)/2 ( 2jSin πfM ) Eqn 16.0 Similarly we get for the denominator: = e –(j2πf/R)/2( 2jSin πf/R) Eqn 17.0 Combining the two we get; N H(f) = Sin πfM –(jπf/R(RM-1) e Sin πf/R Eqn 18.0 Again using
in „Verständnis von CIC Decimation“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
_ATmega32.pdf
0.0% 32 -1.4% 64 0.2% 57.6k 16 2.1% 34 -0.8% 19 0.0% 39 0.0% 21 -1.4% 42 0.9% 76.8k 12 0.2% 25 0.2% 14 0.0% 29 0.0% 15 1.7% 32 -1.4% 115.2k 8 -3.5% 16 2.1% 9 0.0% 19 0.0% 10 -1.4% 21 -1.4% 230.4k 3 8.5% 8 -3.5% 4
in „Anschwingvorgang µC & Quarz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADS7846.pdf
, V = External +2.5V, f = 125kHz, and f = 16 • f = 2MHz, unless otherwise noted. A CC REF SAMPLE CLK SAMPLE REFERENCE CURRENT vs SAMPLE RATE REFERENCE CURRENT vs TEMPERATURE 14 18 12 16 ) A A (10 ( 14 n n r 8 r u u 12 C e c 6 c e r 10 f 4 f e e
in „Frage zu ADS7846“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HCPL7800_appl.pdf
Figure 6. Gain vs. Supply. Figure 7. Nonlinearity vs. Temperature. Figure 8. Nonlinearity vs. Supply. 4.2 13 0 A V m A – – µ -1 E 3.4 T – A E 10 N T R E -2 O U R V 2.6 C U T Y C P P T -3 T P 7 P O S I – 1.8 – I – O VOP D DD1 II -4 V VOR I IDD2 1.0 4 -5 -0.5 -0.3 -0.1 0.1 0.3 0.5 -0.5 -0.3 -0.1 0.1 0.3
in „Galvanisch getrennten 1-10V Ausgang regeln“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HCPL7800_appl.pdf
Figure 6. Gain vs. Supply. Figure 7. Nonlinearity vs. Temperature. Figure 8. Nonlinearity vs. Supply. 4.2 13 0 A V m A – – µ -1 E 3.4 T – A E 10 N T R E -2 O U R V 2.6 C U T Y C P P T -3 T P 7 P O S I – 1.8 – I – O VOP D DD1 II -4 V VOR I IDD2 1.0 4 -5 -0.5 -0.3 -0.1 0.1 0.3 0.5 -0.5 -0.3 -0.1 0.1 0.3
in „8fach Trennverstärker 0..10V - wie realisieren?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
2243913.pdf
footprints VDD would need to be offset from each other. MCP44X1 Quad Potentiometers 0.1 µF P3A 1 20 P2A e P3W 2 19 P2W o P3B 3 18 P2B t HVC/A0 4 17 VDD / o SCL 5 16 A1 A X o SDA 6 15 RESET 5 X c VSS 7 14 WP MCP42X1 Pinout (1) / 6 SCL i P1B 8 12 P0B W X / ® P1W 9 12 P0W 5 X I P1A 10 11 P0A 4 6 P C 4 TSSOP
in „[V] 11St. SMD Dual Digital Poti - I2C Microchip MCP4561-103 10kOhm 256Steps Nonvolatile (8€)“ · Markt ·
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PDF
2243913.pdf
footprints VDD would need to be offset from each other. MCP44X1 Quad Potentiometers 0.1 µF P3A 1 20 P2A e P3W 2 19 P2W o P3B 3 18 P2B t HVC/A0 4 17 VDD / o SCL 5 16 A1 A X o SDA 6 15 RESET 5 X c VSS 7 14 WP MCP42X1 Pinout (1) / 6 SCL i P1B 8 12 P0B W X / ® P1W 9 12 P0W 5 X I P1A 10 11 P0A 4 6 P C 4 TSSOP
in „[V] 44St. SMD Digital I2C / 256 Steps 10K Poti Microchip MCP4561- 103E/MS (MSOP8 Gehäuse)“ · Markt ·
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PDF
2243913.pdf
footprints VDD would need to be offset from each other. MCP44X1 Quad Potentiometers 0.1 µF P3A 1 20 P2A e P3W 2 19 P2W o P3B 3 18 P2B t HVC/A0 4 17 VDD / o SCL 5 16 A1 A X o SDA 6 15 RESET 5 X c VSS 7 14 WP MCP42X1 Pinout (1) / 6 SCL i P1B 8 12 P0B W X / ® P1W 9 12 P0W 5 X I P1A 10 11 P0A 4 6 P C 4 TSSOP
in „[V] 10St. Digitalpoti MCP4561-103E/MS 8MSOP orginalverpackt. (9€)“ · Markt ·
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PDF
aMG-160128B-SYFLY-W-6_010.pdf
color difference. We can only guarantee the same color in the same batch.) Duty 1/128 View direction 6 o’clock Backlight LED yellow green page 4 of 43 4. Absolute Maximum Ratings Item Symbol Min Typ Max Unit Operating Temperature TOP -20 - +70 ℃ Storage
in „LCD Kontrastspannungsproblem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NCO8703.pdf
parallel with an inductance of 40 H each have been chosen. nsec = SQR((L.1)/( o × r × A)) nsec = SQR((40E − 6 × 9.2E − 2)/(4πE − 7 × 120 × 97.6E − 6)) = 15.8 turns. So n pr8 turns and n sec= 16 turns. For each transformer V max depends on the power over 100 . V max= SQR(2 × P ×OR ) =LSQR(2 × 150 × 100) =
in „Stackpole Ferrit Kerne für RF Verstärker“ · HF, Funk und Felder ·
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PDF
ADXL345.pdf
clock for I C, and SCLK is the clock for SPI. Rev. E | Page 7 of 40 ADXL345 Data Sheet TYPICAL PERFORMANCE CHARACTERISTICS 20 20 18 18 )16 )16 ( ( N N I14 I14 T T L12 L12 U U P P P10 P10 F F O 8 O 8 T T E E C 6 C 6 R R P 4 P 4 2 2 0 4 0 7 –150 –100 –50 0 50 100 150 - –150 –100 –50 0 50 100 150 - 9 9 ZERO g OFFSET (mg) 0 ZERO g OFFSET (mg) 0 Figure4.X-AxisZero gOffsetat25°C,V =2.5S Figure7.X-AxisZero gOffsetat25°C,V =3.3S 20 20 18 18 )16 )16 ( ( N N14 I14 I A A L12 L12 P P O10 O10 P P F F O 8 O 8 N N E 6 E 6 C R E E P 4 P 4 2 2 0 0 0 0 –150 –100
in „ADXL345 und ESP8266: Echtzeitdatenergassung mit konstanter Abtastrate und Interrupts“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PT2260.pdf
-R4S PT2260-D (L) 16 Pins, DIP (300 mil) PT2260-D PT2260-R2 (L) 16 Pins, DIP (300 mil) PT2260-R2 PT2260-R4 (L) 16 Pins, DIP (300 mil) PT2260-R4 PT2260-R2S (L) 16 Pins, SOP (150 mil) PT2260-R2S PT2260-R4S
in „Lieferkosten aus Asien, was habe ich falsch gemacht?“ · Offtopic ·
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PDF
SN74LVC3G17_datasheet.pdf
Supply voltage Operating 1.65 5.5 V V Input voltage 0 5.5 V I VO Output voltage 0 VCC V VCC = 1.65 V –4 V = 2.3 V –8 CC OH High-level output current –16 mA VCC = 3 V –24 VCC = 4.5 V –32 V = 1.65 V 4 CC VCC = 2.3 V 8 OL Low-level output current 16 mA VCC = 3 V 24 VCC = 4.5 V 32 TA Operating free-air temperature
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PDF
Telit_UC864-E_Hardware_User_Guide_r1.pdf
...............................................12 4.1 Turning ON the UC864-E......................................................................................................12 4.2 Turning OFF the UC864-E...........................................
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PDF
1407fa.pdf
E R 2 V R R 4 W R 6 O E D A P D A 2 T A 2 H A M 5 T T 7 D 5 O D B O D I 2 F 2 2 F 4 U 6 1 T 8 1 4 N D P D 2 G 2 I O 7 O 9 L A D D A D 2 H A 2 O A H 8 H E 0 T D T D 2 T 2 S E 9 N 1 E D S D 2 P 2 R R 1 E
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PDF
PH-1_Phono_preamp.pdf
used, if the heater shunting capacitor C16 is left off the board, or is replaced by 0.01µF ceramic capacitor. Filament Jumper Wire Schedule V5 V6 V7 V8 4 5 4 5 4 5 4 5 +H J1 J2 J3 J4 J5 J6 J7 J8 J9 J10 J11 J12 C16 5 4 5 4 5 4 5 4 -H V1 V2 V3
in „Kondensatoren für Aikido RIAA“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
UM08001_JLinkARM.pdf
to contact Segger. ARM7TDMI (Rev 1) ARM7TDMI (Rev 3) ARM7TDMI-S (Rev 4) ARM720T ARM920T ARM922T ARM926EJ-S ARM946E-S ARM966E-S ARM1136JF-S ARM1136J-S ARM1156T2-S ARM1156T2F-S ARM1176JZ-S ARM1176JZF ARM1176JZF-S Cortex-M0 Cortex-M1 Cortex-M3 1.4.1 Upcoming supported cores
in „[V] J-Link JTAG Adapter USB für ARM abzugeben“ · Markt ·
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PDF
AN040_Comparison_of_simple_LED_circuits_for_low_power_LEDs.pdf
35.3 mA 35.3 mA 28.2 mA D3 D7 D11 D15 LA_E6xF-typ-3B-min LA_E6xF-typ-3B-midLA_E6xF-typ-3B-mid LA_E6xF-typ-3B-max 48.3 mA 35.3 mA 35.3 mA 28.2 mA D4 D8 D12 D16 LA_E6xF-typ-3B-min LA_E6xF-typ-3B-midLA_E6xF-typ-3B-mid LA_E6xF-typ-3B-max 0 Matrix
in „LED-Taschenlampe "cree" XHP70.2“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Comparison_of_simple_LED_circuits_for_low_power_LEDs.pdf
35.3 mA 35.3 mA 28.2 mA D3 D7 D11 D15 LA_E6xF-typ-3B-min LA_E6xF-typ-3B-midLA_E6xF-typ-3B-mid LA_E6xF-typ-3B-max 48.3 mA 35.3 mA 35.3 mA 28.2 mA D4 D8 D12 D16 LA_E6xF-typ-3B-min LA_E6xF-typ-3B-midLA_E6xF-typ-3B-mid LA_E6xF-typ-3B-max 0 Matrix
in „led-tech.de: Wieso parallel verschaltete LEDs?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN040_Comparison_of_simple_LED_circuits_for_low_power_LEDs.pdf
35.3 mA 35.3 mA 28.2 mA D3 D7 D11 D15 LA_E6xF-typ-3B-min LA_E6xF-typ-3B-midLA_E6xF-typ-3B-mid LA_E6xF-typ-3B-max 48.3 mA 35.3 mA 35.3 mA 28.2 mA D4 D8 D12 D16 LA_E6xF-typ-3B-min LA_E6xF-typ-3B-midLA_E6xF-typ-3B-mid LA_E6xF-typ-3B-max 0 Matrix
in „LED Gesamtstrom stimmt irgendwie nicht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
hut1_12v2.pdf
Name Position PC-MacUNI Boot (Dec) (Hex) AT X 221 DD Keypad Hexadecimal 222-223 DE-DF Reserved 224 E0 Keyboard LeftControl 58 √ √ √ 4/101/104 225 E1 Keyboard LeftShift 44 √ √ √ 4/101/104 226 E2 Keyboard LeftAlt 60 √ √ √ 4/101/104 227 E3 Keyboard Left GUI10;23 127 √ √ √ 104 228 E4 Keyboard RightControl
in „USB HID Descriptor Spotify-Steuerung STM32“ · Mikrocontroller und Digitale Elektronik ·
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PDF
fn3082.pdf
NC 2 32 G2 TEST 3 31 C3 OSC 3 4 30 A3 5 29 G3 NC OSC 2 6 28 BP/GND OSC 1 7 27 POL V+ 8 26 AB4 D1 9 25 E3 C1 10 24 F3 B1 112 13 14 15 16 17 18 19 20 21 22 23 B3 A1 F1 G1 E1 D2 C2 B2 A2 F2 E2 D3 2 FN3082.8 ICL7106, ICL7107, ICL7107S
in „Magnetfeldsensor mit LED Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
fn3082.pdf
NC 2 32 G2 TEST 3 31 C3 OSC 3 4 30 A3 5 29 G3 NC OSC 2 6 28 BP/GND OSC 1 7 27 POL V+ 8 26 AB4 D1 9 25 E3 C1 10 24 F3 B1 112 13 14 15 16 17 18 19 20 21 22 23 B3 A1 F1 G1 E1 D2 C2 B2 A2 F2 E2 D3 2 FN3082.8 ICL7106, ICL7107, ICL7107S
in „Muss ich beim ICL 7107 wirklich -5V einspeisen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
NEC_78F.pdf
LIN- 1 ch e S bus 2 I C bus 1 ch 10-bit A/D 4 ch 6 ch (38 Pins)/ 8 ch <R> 8 ch (44 Pins) p u External 6 7 8 e Internal 14 16 I <R> Key interrupt − 2 ch (38 Pins)/ 4 ch 4 ch (44 Pins) RESET pin Provided t s POC 1.59
in „NEC bzw. Renesas Microcontroller“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Infineon-IRFP4668-DataSheet-v01_01-EN.pdf
1000 VGS TOP 15V TOP 10V 10V ) 8.0V ) 8.0V t 100 7.0V ( 7.0V n 6.0V n 6.0V r 5.5V r 5.5V u BOTTOM 4.5V u 100 BOTTOM 4.5V e 10 C r r o u - ≤60μs PULSE WIDTH S t 1 t i Tj = 25°C n r r 10 D D ,D 0.1 ,D I I 4.5V 4.5V ≤60μs PULSE WIDTH Tj = 175°C 0.01 1 0.1 1 10 100 1000 0.1 1 10 100 1000 VDS, Drain-to-Source
in „Ersatz Mosfet für 6kw Wechselrichter "Reliable/WZRELB"“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AVR_ATmega_328PB.pdf
AVR-ATmega328PB_Datasheet_Complete-10/2015 Signal PD3/OC2B/INT1/ PD2/INT0/ PD1/TXD0/ PD0/RXD0/ Name PCINT19 PCINT18 PCINT17 PCINT16 DI PCINT19 INPUT PCINT18 INPUT PCINT17 INPUT PCINT16 INPUT / INT1 INPUT / INT0 INPUT / RXD0 AIO – – – – 18.3.4. Alternate Functions of Port E The Port E pins with alternate functions are shown in this
in „ATmega328PB: UART(MC) empfängt falsche Daten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD815_SOP.pdf
Output Resistance vs. Frequency 15 V = ⴞ10V 40 TA= 25ⴗC TA= 25ⴗC S p VS= ±15V 10 RL= 25⍀ – V = ⴞ5V E S VS= ⴞ15V G RL= 100⍀ V 5 30 m L – V T T S 0 P RL= 50⍀ F 20 O V O T IN 1/2 L R–5 f = 0.1H100⍀ AD815 I R = 25⍀ VOUT T L 49.9⍀ 10 RL= E –10 25⍀ F 1k⍀ 1k⍀ I D RL= 1⍀ 0 –15 –20 –16 –12 –8 –4 0 4 8 12 16
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PDF
cem.pdf
0 0 * Analysis Setup * .tran 1ms 40ms * Semiconductor Device Model * ref.sch .model Dbreak D (IS=1e-14A N=1) .model Dbreak D (IS=1e-14A N=1 + BV=4.7V RS=0) .model D Dbreak(IS=1e-14A N=1 + BV=4.7V RS=10) 8 V ( ) 7 2 : 6 d i n ( 2 @ V 1 V 0 ) 7 ( 1 : 6 e a 5 o l 2 n R( @ V 1 V 0 16 ) m12 ( 8 1 ( 4 I
in „Kondensator LT Spice“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Boot_Blackfin.pdf
0A0000004080A0FF04000000120061 10-Byte Header for Block 2 of Init Code DXE :04000A005C00000096 :20000E000000A0FF460000000200660167014005C00408E1180A48E1C0FF80E14A070097D7 :20002E00240008E1140A48E1C0FF80E101000097240008E1100A48E1C0FF00E18D9940E16F :10004E009100009324008004000527012601100072 :0C005E000000A0FF020000000A00660184
in „Blackfin ADSP-BF532 - Einstieg“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
STK520.pdf
M P b y C 1 0 E u d 2 & t e 2 5 R e n2 E E E C C C C E T E m > e R P P P P P P P S W c o W G P D < V l e A t 0 2 4 6 8 0 2 4 6 8 0 2 4 6 8 0 i i a 2 4 6 8 1 1 1 1 1 2 2 2 2 2 3 3 3 3 3 4 T S D D O T T T L E E E D T
in „DALI EVG stk520“ · Mikrocontroller und Digitale Elektronik ·
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ICL_7106_-_07_-_FN3082.pdf
TEST 3 31 C3 4 30 A3 OSC 3 NC 5 29 G3 OSC 2 6 28 BP/GND OSC 1 7 27 POL V+ 8 26 AB4 D1 9 25 E3 C1 10 24 F3 B1 11 23 B3 12 13 14 15 16 17 18 19 20 21 22 A1 F1 G1 E1 D2 C2 B2 A2 F2 E2 D3 2 ICL7106, ICL7107, ICL7106S,
in „Digitalmultimeter Modul mit 7107“ · Mikrocontroller und Digitale Elektronik ·