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Wie leistet man sich als Ing ein Haus Gesperrt
Zinsen Monatl. Zahlung Tilgung Tilgungssatz 1 300 000 5% 15 000 2 000 9 000 3.00% 2 276 000 5% 13 800 2 000 10 200 3.70% 3 252 000 5% 12 600 2 000 11 400 4.52% 4 228 000 5% 11 400 2 000 12 600 5.53% 5 204 000 5% 10 200 2 000 13 800
miteinbezogen. Edelmetalle wie Silber oder Gold sind noch besser gelaufen, da erreichte man die letzten 10 jahre Renditen von bis zu 10% p.a. .
Ausbildung, Studium & Beruf ·Stefan · ·635 Antworten
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C8051F53x.pdf
8 kB 256 0.5% 3 6 DFN-10 C8051F521A-IM 25 8 kB 256 0.5% 3 6 — DFN-10 C8051F523A-IM 25 4 kB 256 0.5% 3 6 DFN-10 C8051F524A-IM 25 4 kB 256 0.5% 3 6 — DFN-10 C8051F526A-IM 25 2
in „[V]erkaufe 35 µC von Silabs C8051F531 (TSSOP-20)“ · Markt ·
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C8051F531.pdf
8 kB 256 0.5% 3 6 DFN-10 C8051F521A-IM 25 8 kB 256 0.5% 3 6 — DFN-10 C8051F523A-IM 25 4 kB 256 0.5% 3 6 DFN-10 C8051F524A-IM 25 4 kB 256 0.5% 3 6 — DFN-10 C8051F526A-IM 25 2
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andilcd_conchar_sheet_en_splc780d1.pdf
display. RS R/W DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0 N = 1: Two-line display. Code 0 1 BF a a a a a a a F: It sets the character font. F = 0: 5 x 8 dots character font. F = 1: 5 x 10 dots character font. When BF = 1, it indicates the system is busy now and it will not accept any instruction until not busy (BF = 0). At the same time, N F No. of Display Lines Character Font Duty Factor the content of Address Counter (aaaaaaa) i2 read. 0 0 1 5 x 8 dots 1 / 8 0 1 1 5 x 10 dots 1 / 11 7.2.10. Write data to character generator RAM or 1 X
in „initialisierung splc780d1“ · Mikrocontroller und Digitale Elektronik ·
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splc780d1.pdf
display. RS R/W DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0 N = 1: Two-line display. Code 0 1 BF a a a a a a a F: It sets the character font. F = 0: 5 x 8 dots character font. F = 1: 5 x 10 dots character font. When BF = 1, it indicates the system is busy now and it will not accept any instruction until not busy (BF = 0). At the same time, N F No. of Display Lines Character Font Duty Factor the content of Address Counter (aaaaaaa) i2 read. 0 0 1 5 x 8 dots 1 / 8 0 1 1 5 x 10 dots 1 / 11 7.2.10. Write data to character generator RAM or 1 X
in „DDRAM Adressen Pollin 4x16 LCD“ · Mikrocontroller und Digitale Elektronik ·
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debug_okay.asm
&= ~( (1<<CS12) | (1<<CS11) | (1<<CS10) ); // stop timer/counter 168: e1 e8 ldi r30, 0x81 ; 129 16a: f0 e0 ldi r31, 0x00 ; 0 16c: 80 81 ld r24, Z 16e: 88 7f andi r24, 0xF8 ; 248 170: 80 83 st Z, r24 172: 08 95 ret 00000174 <acquire_DHT>:
in „Fehler bei einfacher Integer-Division?“ · Mikrocontroller und Digitale Elektronik ·
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Ansteuer-IS_UC1698__Vers._1.21_fuer_DEM_240160AFGH-PW___240x160.pdf
Set Display Enable Figure 12: Reference Power-Up Sequence T Delay 0 S VDD2/3 2.8V VDD 1.8V T Wait 10mS V DD < 0.1V VDD2/3 V DD T < 10 mS T T 10µS < T 1 T2< 10 mS f 1 2 Figure 14: Delay allowance and Power Off-On Sequence 50 MP Specifications UC1698u 160x128RGB CSTN Controller-Driver M ULTI -TIME P ROGRAM
in „LCD DEM240160 mit UC1698 wie Bildspeicher auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PIC18Fxx2.pdf
01da ffff ffff C, DC, Z, OV, 1, 2 borrow SUBWF f, d, a Subtract WREG from f 1 0101 11da ffff ffff C, DC, Z, OV, N SUBWFB f, d, a Subtract WREG from f with 1 0101 10da ffff ffff C, DC, Z, OV, 1, 2 borrow SWAPF f, d, a Swap nibbles in f 1 0011 10da ffff
in „AD1 und AD2 Multiplexen (PIC18F452)“ · Mikrocontroller und Digitale Elektronik ·
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Fusspunktimpedanz Ferritantenne
7.3.3.7 Offene Symmetrierschleife 152 7.3.3.8 Halbschalen-Balun 152 7.3.3.9 DJ9HO-Balun 152 7.3.3.10 ST-Leitung 153 7.3.4 Symmetrierbrücken 153 7.3.4.1 Boucherot-Brücke 153 7.3.4.2 Alford-Netzwerk 154 7.3.5 Symmetriertöpfe 154 7.3.5.1 Halbwellen-Symmetriertopf 154 7.3.5.2 Gefalteter Balun 154
12.2.2 Fächerdipol 272 12.2.3 Doppelkegel-Antenne 273 12.2.4 Flächendipol 274 12.2.5 Batwing-Antenne 276 12.2.6 Herz-Antenne 277 12.2.7 Breitbandmonopol 277 12.2.8 Reusenantenne 278 12.2.9 Diskon-Antenne 278 12.2.10 Scimitar-Antenne 281 12.3 Schaltungsbedingte Breitbandantennen 282 12.3.2 Breitband-Dipole
HF, Funk und Felder ·Hägar · ·11 Antworten
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AN98030.pdf
44104 C15 33 pF ceramic, ±2% 2222 650 34339 C16 = C17 3.3 F ±10% 2222 344 21335 C18 = C19 220 F 4 V, electrolytic 2222 016 2221 C20 = C21 100 nF polyester, ±20% 2222 342 44104 C22 220 F 10 V, electrolytic 2222 016 4221
in „Stackpole Ferrit Kerne für RF Verstärker“ · HF, Funk und Felder ·
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Mikrocontroller-PIC18F2420.pdf
0101 01da ffff ffff C, DC, Z, OV, N Borrow SUBWF f, d, aSubtract WREG from f 1 0101 11da ffff ffff C, DC, Z, OV, N1, 2 SUBWFB f, d, aSubtract WREG from f with 1 0101 10da ffff ffff C, DC, Z, OV, N Borrow SWAPF f, d, aSwap Nibbles in f 1 0011 10da ffff
in „Spannungseinbruch beim Sampeln des Signals“ · Mikrocontroller und Digitale Elektronik ·
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4620.pdf
01da ffff ffff C, DC, Z, OV, N borrow SUBWF f, d, aubtract WREG from f 1 0101 11da ffff ffff C, DC, Z, OV, N 1, 2 SUBWFB f, d, aubtract WREG from f with 1 0101 10da ffff ffff C, DC, Z, OV, N borrow SWAPF f, d, awap nibbles in f 1 0011 10da ffff
in „SPI master/slave - schreib/lese befehle ?“ · Mikrocontroller und Digitale Elektronik ·
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PIC_32_MX_110_F_016_-_I-SO__11-2-3___SO_28_.pdf
External Interrupt 2 INT3 PPS PPS PPS PPS I ST External Interrupt 3 INT4 PPS PPS PPS PPS I ST External Interrupt 4 RA0 27 2 33 19 I/O ST PORTA is a bidirectional I/O port RA1 28 3 34 20 I/O ST RA2 6 9 7 30 I/O ST RA3 7 10 8 31 I/O ST RA4 9 12 10
in „pic32 flash und i/o speed“ · Mikrocontroller und Digitale Elektronik ·
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PIC_32M_X_220_F_032_B-50I-SP_____DIP_28_.pdf
External Interrupt 2 INT3 PPS PPS PPS PPS I ST External Interrupt 3 INT4 PPS PPS PPS PPS I ST External Interrupt 4 RA0 27 2 33 19 I/O ST PORTA is a bidirectional I/O port RA1 28 3 34 20 I/O ST RA2 6 9 7 30 I/O ST RA3 7 10 8 31 I/O ST RA4 9 12 10
in „PIC32MX flash access time“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ffft.S
XL ;while(X /= 2) adiw XL, 0 ; rjne 1b ;/ popw YH,YL popw AH,AL popw T14H,T14L popw T12H,T12L popw T10H,T10L popw T8H,T8L popw T6H,T6L popw T4H,T4L popw T2H,T2L ; clr r1 ret .endfunc .macro FFT_OUTPUT_CLEANUP_AND_RETURN st Y+,BL ; Store the final value into the output buffer subiw AH,AL, 1 ;while(--A)
in „AVR Assembler Konstanten variabel machen“ · Mikrocontroller und Digitale Elektronik ·
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LC651152.pdf
C1 100 pF ±10% CSB1000J C2 100 pF ±10% R 3.3 kΩ 800 kHz (Murata Mfg. Co., Ltd.) C1 100 pF ±10% Figure 5 Reset Circuit CSB800J C2 100 pF ±10% R 3.3 kΩ Note: If the power supply rise time is zero, the reset time
in „SANYO LC651152 was macht der TEST pin?“ · Mikrocontroller und Digitale Elektronik ·
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SSD1331_v1.2.pdf
RAM12 - - - - - - - - COM60 Row 3 RAM3 Row 11 RAM11 Row 3 RAM11 - - - - - - - - COM61 Row 2 RAM2 Row 10 RAM10 Row 2 RAM10 - - - - - - - - COM62 Row 1 RAM1 Row 9 RAM9 Row 1 RAM9 - - - - - - - - COM63 Row 0 RAM0 Row 8 RAM8 Row 0 RAM8 - - - - - - - - Display examples refer (a) (b) (c) (d) (e) (f) (g) to figures
in „Spannungsreglerproblem durch Frequenzen bei Arduino Adafruit“ · Mikrocontroller und Digitale Elektronik ·
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SAM-V71Q-SAM-V71N-SAM-V71J_Datasheet.pdf
PC10 I/O – – NANDWE O TCLK7 I – – – – PIO, I, PU, ST 1 D D 94 F11 VDDIO GPIO_AD PC11 I/O – – NRD O TIOA8 I/O – – – – PIO, I, PU, ST a A s T 17 F4 VDDIO GPIO_AD PC12 I/O AFE1_AD3 (5) I NCS3 O TIOB8 I/O CANRX1
in „Atmel SAMV71 CAN FD“ · Mikrocontroller und Digitale Elektronik ·
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HX5116_4.3inch.pdf
table: Pins connection Recommended voltage Capacity Resistance of wire (Ω ) C11P/N, C12P/N, DDVDH 10V 1 µF < 10 VGAM1OUT 10V 1 µF < 15 C21P/N, C22P/N 10V 1 µF < 10 HVO, LVO 16V 1 µF < 10 VGH, VGL,ARREF 16V 1 µF < 15 VDDD 10V 1uF < 10 VCI, VSSD, VSSA, VSSP - - < 5 Table 5. 10 Adoptability of Capacitor
in „OLED CMEL SPI Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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andilcd_conoled_sheet_de_hx5116.pdf
table: Pins connection Recommended voltage Capacity Resistance of wire (Ω ) C11P/N, C12P/N, DDVDH 10V 1 µF < 10 VGAM1OUT 10V 1 µF < 15 C21P/N, C22P/N 10V 1 µF < 10 HVO, LVO 16V 1 µF < 10 VGH, VGL,ARREF 16V 1 µF < 15 VDDD 10V 1uF < 10 VCI, VSSD, VSSA, VSSP - - < 5 Table 5. 10 Adoptability of Capacitor
in „HX 5116 Anschlussbelegung an einem Atmega 644“ · Mikrocontroller und Digitale Elektronik ·
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Osram-Quicktronic-Dimmbar-Technische-Fiebel.pdf
und Hinweise 8 Die häufigsten Anwendungen Ziel Anwendung Steuergerät Basisschaltung DIM PICO S. 19f Konstantlichtregelung DIM MICO S. 21f DIM MULTI Energiekosten S. 23ff Konstantlichtregelung + sparen Bewegungsmelder DIM MULTI 2 S. 38ff Zeitsteuerung Treppenhaus- S. 46 automat Poti S. 10 Eine Bedienstelle
in „EVG 5m von Leuchtstofflampe entfernt“ · Analoge Elektronik und Schaltungstechnik ·
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user.manual.lpc17xx.pdf
pF < 200 Ω 39 pF, 39 pF 30 pF < 100 Ω 57 pF, 57 pF 10 MHz - 15 MHz 10 pF < 160 Ω 18 pF, 18 pF 20 pF < 60 Ω 39 pF, 39 pF 15 MHz - 20 MHz 10 pF < 80 Ω 18 pF, 18 pF Table 16. Recommended values for C X1/X2in
in „LPCxpresso 1769 I2C Takt einstellen“ · Mikrocontroller und Digitale Elektronik ·
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The_International_System_of_Units_sp330.pdf
in every document in which they are used. † Table 10. Examples of other non-SI units Name Symbol Value in SI units (a) 10 curie Ci 1 Ci = 3.7 ⫻ 10 Bq roentgen (b) R 1 R = 2.58 ⫻ 10 C/kg (c,f) –2 rad rad 1 rad = 1 cGy = 10 Gy rem (d,f) rem 1 rem = 1 cSv = 10 Sv (e) –4 X unit 1 X unit 艐 1.002⫻10 nm gamma (f) ␥ 1 ␥ = 1 nT = 10 T9 –26 –2 –1 jansky Jy 1 Jy = 10 W ⭈ m ⭈ Hz fermi (f) 1 fermi = 1 fm = 10 –15m (g) metric carat 1 metric carat = 200 mg = 2⫻10 kg–4
in „Stromangabe in der Einheit At?“ · Mikrocontroller und Digitale Elektronik ·
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pcf8573.pdf
− 3 − M −7 fosc oscillator stability (VDD − VSS1) = 100 mV; − 2 × 10 − Tamb = 25 °C; (VDD − VSS1) = 1.55 V Quartz crystal parameters (f = 32.768 kHz) Rs series resistance − − 40 k C parallel load capacitance − 10 − pF L CT trimmer capacitance 5 − 25 pF IC-bus timing (
in „DS3231 vs PCF8573, hilfe gesucht !“ · Mikrocontroller und Digitale Elektronik ·
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pic18f2320.pdf
only active if Peripheral Select is active. 2003 Microchip Technology Inc. DS39599C-page 107 PIC18F2220/2320/4220/4320 TABLE 10-5: PORTC FUNCTIONS Name Bit# Buffer Type Function RC0/T1OSO/T1CKI bit 0 ST Input/output port pin or Timer1 oscillator output/Timer1 clock input. RC1/T1OSI/CCP2 bit 1 ST Input
in „I2C-Bus Collision“ · Mikrocontroller und Digitale Elektronik ·
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M7000_US_2003.pdf
0.10 27 F71 230 – 332 0.12 41 230 – 277 0.10 28 F80 230 – 332 0.13 44 230 – 277 0.11 29 F90 230 – 332 0.25 88 230 – 277 0.26 72 F100 230 – 332 0.28 88 230 – 277 0.26 70 F112 230 – 332 0.31 107 230 – 277 0.26 73 F132 230 – 332 0.27 89 230 – 277 0.29 82 Three phase low-voltage connection - 3~U F63 220 – 332 0.08 23 220 – 290 0.10 27 F71 220 – 332 0.08 24 220 – 290 0.10 30 F80 220 – 332 0.08 25 220 – 290 0.01 29
in „Frequenzumformer“ · Analoge Elektronik und Schaltungstechnik ·
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debug_error.asm
&= ~( (1<<CS12) | (1<<CS11) | (1<<CS10) ); // stop timer/counter 168: e1 e8 ldi r30, 0x81 ; 129 16a: f0 e0 ldi r31, 0x00 ; 0 16c: 80 81 ld r24, Z 16e: 88 7f andi r24, 0xF8 ; 248 170: 80 83 st Z, r24 172: 08 95 ret 00000174 <acquire_DHT>:
in „Fehler bei einfacher Integer-Division?“ · Mikrocontroller und Digitale Elektronik ·
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RM-MPU-3300.pdf
Clock Speed Divider 0 348 kHz 23 1 333 kHz 24 2 320 kHz 25 3 308 kHz 26 4 296 kHz 27 5 286 kHz 28 6 276 kHz 29 7 267 kHz 30 8 258 kHz 31 9 500 kHz 16 10 471 kHz 17 11 444 kHz 18 12 421 kHz 19 13 400 kHz 20 14 381 kHz 21 15 364 kHz 22 Parameters: MUL_MST_EN When set to 1, this bit enables multi-master
in „SPI Kommunikation mit MPU3300“ · Mikrocontroller und Digitale Elektronik ·
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PCF8583.pdf
100 kHz; clock mode; − − 200 A (operating mode) note 3 DDO supply current see Fig.20 (clock mode) f = 0 Hz; V = 5 V − 10 50 A SCL DD SCL = 0 Hz; DD= 1 V − 2 10 A DDR data retention OSCI= 0 Hz; DD = 1 V T = −40 to + 85 °C − − 5 A amb Tamb= −25 to + 70 °C − − 2 A 2 VEN I C-bus enable level note 4 1.5
in „RTC PCF8583 einen Interrupt ausloesen“ · Mikrocontroller und Digitale Elektronik ·
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PCF8583_5_rtc_real_time_clock.pdf
100 kHz; clock mode; − − 200 A (operating mode) note 3 DDO supply current see Fig.20 (clock mode) f = 0 Hz; V = 5 V − 10 50 A SCL DD SCL = 0 Hz; DD= 1 V − 2 10 A DDR data retention OSCI= 0 Hz; DD = 1 V T = −40 to + 85 °C − − 5 A amb Tamb= −25 to + 70 °C − − 2 A 2 VEN I C-bus enable level note 4 1.5
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PCF8583P.pdf
100 kHz; clock mode; − − 200 A (operating mode) note 3 DDO supply current see Fig.20 (clock mode) f = 0 Hz; V = 5 V − 10 50 A SCL DD SCL = 0 Hz; DD= 1 V − 2 10 A DDR data retention OSCI= 0 Hz; DD = 1 V T = −40 to + 85 °C − − 5 A amb Tamb= −25 to + 70 °C − − 2 A 2 VEN I C-bus enable level note 4 1.5
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PCF8583_5.pdf
100 kHz; clock mode; − − 200 A (operating mode) note 3 DDO supply current see Fig.20 (clock mode) f = 0 Hz; V = 5 V − 10 50 A SCL DD SCL = 0 Hz; DD= 1 V − 2 10 A DDR data retention OSCI= 0 Hz; DD = 1 V T = −40 to + 85 °C − − 5 A amb Tamb= −25 to + 70 °C − − 2 A 2 VEN I C-bus enable level note 4 1.5
in „PCF8583: Welche Genauigkeit kann ìch erwarten?“ · Mikrocontroller und Digitale Elektronik ·
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UC1698u_Revision__1.5.pdf
G2 G1 G0 B3 B2 B1 B0 t i 2 Write Data Cycle 0 0 0 0 R3 R2 R1 R0 G3 G2 G1 G0 B3 B2 B1 B0 LC[7:6] = 10b ( RRRRR-GGGGGG-BBBBB, 64K-color ) n 1Data Write Sequence (8-bit)orD[7:0]16 RAM bits directly. e 1stWrite Data Cycle R4 R3 R2 R1 R0 G5 G4 G3 id 2nd Write Data Cycle G2 G1 G0 B4 B3 B2 B1 B0 f Dsta Write
in „Defekte Heizungsregelung RC310 Display leuchtet“ · Haus & Smart Home ·
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datasheet__4_.pdf
specified. SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT Oscillator Cosc integrated oscillator 20 25 30 pF capacitance fosc oscillator stability for V DD = 100 mV; − 2 × 10−7 − T = 25 °C; V = 1.5 V amb DD i input frequency note 1 − − 1 MHz Quartz crystal parameters (f = 32.768 kHz) Rs series resistance − − 40 k CL parallel load capacitance − 10 − pF CT trimmer capacitance 5 − 25 pF IC-bus timing (see Fig.22; notes 2 and 3) SCL SCL clock frequency − − 100 kHz SP tolerable spike width on bus − − 100 ns BUF bus free time 4.7 − − s t START condition
in „Wie verbindet man pcf8593 und arduino (eigentlich irgend uC)“ · Mikrocontroller und Digitale Elektronik ·
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rej09b0101_16c29hm_2_.pdf
PD9 323 03B316 03F416 Port P10 register P10 324 03B416 03F516 03B516 CRC snoop address register CRCSAR 314 03F616 Port P10 direction register PD10 323 03B616 CRC mode register CRCMR 314 03F716 03F816 03B716 03B816 DMA0
in „Zeitproblem bei Softwarepwm“ · Mikrocontroller und Digitale Elektronik ·
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harman_kardon_avr145_sm.pdf
harman/kardon NJM2595 EQUIVALENT CIRCUIT PIN No. PIN NAME INSIDE EQUIVALENT CIRCUIT VOLTAGE 14 SW1 Vcc 10 SW2 20k SW 32k - 16k 4k Gnd Vee TEST CIRCUIT + V Vout2.2 Vout2.1 Vout3.2 Vout3.1 75 VCL VCH 75Ω 75 VCL V CH 75Ω Ω Ω 0.1µF Vin1 Vin2 + SW1 SW2 75 75 100µF Ω 10µF Ω 10µF + + 16 15 14 13 12 11 10 9 + 3 V u W i N u W i o S V G V S V V t 5 5 3 4 4 3 o W i S i S V V V S V V 1 2 3 4 5 6 7 8 + + + 75 10µF 10µF 10µF Ω SW5 SW3 SW4 0.1µF Vin5 Vin4 Vin3 + 100µF 75Ω 75Ω 75Ω 75Ω VCL VCH VCL V CH VCL VCH Vout1.2 Vout1.1 - V 75 AVR145 harman/kardon 76 AVR145 harman/kardon 77 AVR145 harman/kardon 78 AVR145 harman
in „Relais beim AVR 145 von harman/kardon durch SSR ersetzen“ · Analoge Elektronik und Schaltungstechnik ·
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pm2519ocr.pdf
3 1 4 1 4 C 5 0 7 1 O N F 100V 4 8 2 2 1 2 2 3 1 4 1 4 5 0 9 1 O N F 1 0 0 V 4 8 2 2 122 3 1 4 1 4 e 5 1 0 1 U F 4 0 % 2 5 V 4 8 2 2 124 20944 eit 1UF 40% 25V 48221242094 e512 10UF 50% 16V 53221241406, 513 2200UF 10% 100V 482212421382
in „Pjilips PM2519“ · Markt ·
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RGB_LED_10bitPWM.asm
, accu2 ; accu1=(42-f) (f steht in accu2) lds accu2, hsv_s ; accu2 =S rcall HSV_MULT ; accu2(L):accu3(H)= (S*(42-f)) ldi accu1, low(10710) ldi accu4,high(10710) sub accu1, accu2 ; accu2(L):accu3(H)= 10710 - (S*(42-f)) sbc
in „Mega8 Assembler RGB Fader“ · Mikrocontroller und Digitale Elektronik ·
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SSD1332_R1.61.pdf
N-FET with low RDSon) and low Vth voltage. e.g. MGSF1N02LT1 [ON SEMICONDUCTOR] R1, R2 Resistor 1%,1/10W R3 Resistor, 1.2Ω 1%, 1/2W C1 Capacitor, 1µF 16V C2 Capacitor, 22µF Low ESR, 25V C3 Capacitor, 1µF 16V C4 Capacitor, 10nF 16V C5 Capacitor, 1 ~ 10 µF 16V C6 Capacitor, 0.1 ~ 1µF 16V C7 Capacitor, 15nF
in „OLED und 8051“ · Mikrocontroller und Digitale Elektronik ·
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at91rm9200-ek.pdf
offender to legal proceedings. 8 7 6 5 4 3 2 1 8 7 6 5 4 3 2 1 L2 742792093 3V3 1 2 3V3 D D C16 C15 C14 C10 C205 C204 C9 100NF 100NF 10 uF 10µF 100NF 100NF 100NF 10V LINE OUT 10 9 18 J5 U2 5 4 AVDD1 AVDD0 VDD C11 3 150uF 2 16V C1 + R203 47R 1 OUT_L 5 330PF R217 10K 21 DEECTRL OUT_R 7 + R200 47R ST-3081-5N
in „SD-RAM aus PC für AT91RM9200 (ARM9)“ · Mikrocontroller und Digitale Elektronik ·
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SED1565.pdf
Data setup time D0 to D7 tDS8 80 — ns Address hold time tDH8 30 — ns RD access time tACC8 CL = 100 pF — 280 ns Output disable time tOH8 10 200 ns *1 The input signal rise time and fallt,t) is specified at 15 ns or less. When the system cycle time is extremely fast, ( f) ≤tCYC8– tCCLW –tCCHW ) forr+ t
in „Pollin 128x64 GLCD : Bild verzerrt“ · Mikrocontroller und Digitale Elektronik ·
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SSD2119_Specification.pdf
. The valid range is from 1 to 240. G1 1st line of G1 data 1st line of G30 data SCN8-0 SCN8-0 = 000000000 = 000011101 G240 G240 Sleep mode (R10h, R12h) Reg# R/W DC IB15 IB14 IB13 IB12 IB11 IB10 IB9 IB8 IB7 IB6 IB5 IB4 IB3 IB2 IB1 IB0 R10h W 1
in „Display Module CFAF320240F-TS Ansteuerung --- ATMEGA 128 ---- STK600“ · Mikrocontroller und Digitale Elektronik ·
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at91rm9200.pdf
F7 PB16 J6 PB29 B4 PB21 D6 PD7 F9 PB11 J12 GND B5 PD12 D7 PB14 F11 PA30 J13 GNDOSC B6 PD9 D8 VDDIOP F12 PA28 J14 VDDOSC B7 GND D9 PB8 F13 PA4 J15 VDDPLL B8 PB10 D10 PB2 F14 PD2 J16 GNDPLL B9 PB5 D11 GND F15 PD1 J17 XIN B10 PB0 D12 PA22 F16 PA5 K1 HDPA B11 VDDIOP D13 PA21 F17 PLLRCB K2 DDM B12 PA24 D14 PA16 G1 PD19 K3 HDMA B13 PA17 D15 PA10 G2 PD17 K4 VDDIOP B14 PA15 D16 PD6 G3 GND K5 DDP B15 PA11 D17
in „S1D113513 + AT91RM9200“ · Mikrocontroller und Digitale Elektronik ·
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ds-mb86r01-jade-rev1-4.pdf
I2S_WS0 - - - 197 G3 DOUTR1[4] MEM_ED[28] I2S_SDI0 - - - 280 G4 DOUTR1[3] MEM_ED[27] I2S_SDO0 - - - 6 F1 DOUTR1[2] MEM_ED[26] - GPIO_PD[12] - - 105 F2 DOUTG1[7] MEM_ED[25] - GPIO_PD[11] - - 196 F3 DOUTG1[6] MEM_ED[24] - GPIO_PD[10] - - 279 F4 DOUTG1[5] MEM_ED[23] - GPIO_PD[9] - - 5 E1 DOUTG1[4] MEM_ED[
in „Bild im Bild in der Instumententafel Range Rover“ · Mikrocontroller und Digitale Elektronik ·
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038-05058-01-X-MLCC_REVB03_SKIT.pdf
CONFIG1 [12] G2 K11 G3 STDP4320_GPIO13_DP_TX1_CONFIG2 [12] MASTER3_IRQ_IN DNC_14 GPIO13/TX1_CONFIG2 F2 GPO C C U27C STDP4320 PS_1V2 A1 E5 A14 GND_A1 DVDD12_E5 E10 B6 GND_A14 DVDD12_E10 F5 1 C330 1 C331 1 C332 1 C240 1 C333 1 C334 1 C335 1 C336 B7 GND_B6 DVDD12_F5 F10 GND_B7 DVDD12_F10 0.01uF 0.01uF 0.47UF
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Magazin_Bauteile.pdf
0,00 2 2 5 1 8 Keramik Kondensator 100nF SMD 50V 5% AVX 1206 Kyocera Farnell 228-0701 0,124 0,99 2 10 Keramik Kondensator 1µF 50V 10% X7R 1206 Kemet Farnell 299-1419 0,151 1,51 3 6 Keramik Kondensator 10µF 25V 10% X6S 1206 Murata Farnell 267
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MS-17631_2.0.pdf
PAD2 4 EC50 X_C0.1u10X0402 EC10 C0.1u10X0402 SME_ATEC048 SME_ATEC048 HOLES_8X8_D3MM_VIA5 HOLES_8X8_D3MM_VIA5 HOLES_8X8_D3MM_VIA5 EC19 C0.1u10X0402 EC123 C0.1u10X0402 HOLES_R276D185P_PT HOLES_R276D185P_PT 1 1 3 6 3 6 3 6 EC25
in „In Circuit Programmierer für 8-pin 150mil SOIC PM25LD512“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCD8544_1.pdf
voltage generator V V tolerance internally V = 2.85 V; V = 7.0 V; − 0 300 mV LCD LCD DD LCD generated fSCLK = 0; display load = 10 A; note 5 TC0 VLCD temperature coefficient 0 V DD= 2.85 V; VLCD = 7.0 V; − 1 − mV/K fSCLK = 0; display load = 10 A TC1 VLCD temperature coefficient 1 V DD= 2.85 V; VLCD = 7.0 V; − 9 − mV/K fSCLK = 0; display load = 10 A TC2 VLCD temperature coefficient 2 V DD= 2.85 V; VLCD = 7.0 V; − 17 − mV/K f = 0; SCLK display load = 10 A TC3 V temperature coefficient 3 V = 2.85 V; V = 7.0 V; − 24 − mV/
in „(Dieser Beitrag wurde geloescht)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pcd8544.pdf
voltage generator V V tolerance internally V = 2.85 V; V = 7.0 V; − 0 300 mV LCD LCD DD LCD generated fSCLK = 0; display load = 10 A; note 5 TC0 VLCD temperature coefficient 0 V DD= 2.85 V; VLCD = 7.0 V; − 1 − mV/K fSCLK = 0; display load = 10 A TC1 VLCD temperature coefficient 1 V DD= 2.85 V; VLCD = 7.0 V; − 9 − mV/K fSCLK = 0; display load = 10 A TC2 VLCD temperature coefficient 2 V DD= 2.85 V; VLCD = 7.0 V; − 17 − mV/K f = 0; SCLK display load = 10 A TC3 V temperature coefficient 3 V = 2.85 V; V = 7.0 V; − 24 − mV/
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PDF
PCD8544_1.pdf
voltage generator V V tolerance internally V = 2.85 V; V = 7.0 V; − 0 300 mV LCD LCD DD LCD generated fSCLK = 0; display load = 10 A; note 5 TC0 VLCD temperature coefficient 0 V DD= 2.85 V; VLCD = 7.0 V; − 1 − mV/K fSCLK = 0; display load = 10 A TC1 VLCD temperature coefficient 1 V DD= 2.85 V; VLCD = 7.0 V; − 9 − mV/K fSCLK = 0; display load = 10 A TC2 VLCD temperature coefficient 2 V DD= 2.85 V; VLCD = 7.0 V; − 17 − mV/K f = 0; SCLK display load = 10 A TC3 V temperature coefficient 3 V = 2.85 V; V = 7.0 V; − 24 − mV/
in „MSP430F2013 steuert Nokia-3310-Display an“ · Mikrocontroller und Digitale Elektronik ·