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Sager_D87P_Service_Manual_Part4.pdf
) PR136 3 2 1 0 PL6 0.9UH 0 1 1 1 1 [2] VID4 PD21 1SS355 PU7 c C A A R / N [2] VID5 1 P D N P 9 VCC5S PR17 TG BG 1 1 1 1 PR142 5.1K_1% PR141 33K_1% 3 8 PC13+ PC14+ PC107+ PC104+ S Modify 5/31 5.1K_1% CO VIN D 2 BST CDLY 7 D D D 330UF 330UF 330UF 330UF VCC3
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SSD2119_Specification.pdf
HEA1 HEA0 R46h position (013Fh) 0 0 0 0 0 0 0 1 0 0 1 1 1 1 1 1 First window start 0 1 0 0 0 0 0 0 0 SS18 SS17 SS16 SS15 SS14 SS13 SS12 SS11 SS10 R48h (0000h) 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 First window end 0 1 0 0 0 0 0 0 0 SE18 SE17 SE16 SE15 SE14 SE13 SE12 SE11 SE10 R49h (00EFh) 0 0 0 0 0 0 0 0 1 1
in „Display Module CFAF320240F-TS Ansteuerung --- ATMEGA 128 ---- STK600“ · Mikrocontroller und Digitale Elektronik ·
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DataLogger.pdf
I2C_SDA L 33E C j 4 GND RTX1 20 12 /RST V C VBCOMP 22 R7 2-4 a PCF8563 10K 13 SCLK V DP1 21 2-3 C 13 25 14 20 2-2 U : MEGA_RXD 14 UART_TXD-DTRDY RTX2 15 /SS DM1 2-1 W GND GND MEGA_TXD UART_RXD-BUSY 16 MISO R9 +5V +5V 10K 1K 39 UH_RESET MOSI 24 33E G R18 23 /UH_RES 46 UH_INT XI V 24 SPI_MISO-RTS UH_INT 45
in „datenlogger - ausreisser erkennen“ · Mikrocontroller und Digitale Elektronik ·
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b1549218978.96147.pdf
synchronizing signals as defined by the EIA RS-170A standard. VDD1 1 28 V DD2 It features a built-in 4f(14.31818 MHz) crystal os- SC V SS1 2 27 V SS2 cillator circuit and divides that frequency to generate the EX4f I 3 26 SYNC horizontal synchronizing signalHf (15.7 kHz), the vertical SC 4fSCSCI 4 25 VP synchronizing
in „Panasonic WJ-AVE5 (PAL) auf NTSC umbauen“ · Analoge Elektronik und Schaltungstechnik ·
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MN676011_datasheet.pdf
synchronizing signals as defined by the EIA RS-170A standard. VDD1 1 28 V DD2 It features a built-in 4f(14.31818 MHz) crystal os- SC V SS1 2 27 V SS2 cillator circuit and divides that frequency to generate the EX4f I 3 26 SYNC horizontal synchronizing signalHf (15.7 kHz), the vertical SC 4fSCSCI 4 25 VP synchronizing
in „Wer verkauft diesen NTSC-Chip: Panasonic MN676011NPS“ · Mikrocontroller und Digitale Elektronik ·
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3999fa-1.pdf
Converter Duty Cycle Control VIN 16 12V 10µF 16V VIN 15.3µH VOUT 15 SYNC SWA 12V 255k UVLO 10µF 0.8A ( 14 16V G 13 IOUT= 400mA OVLO/DC T IOUT= 200mA 10k RDC V 12 15.8k LT3999 U IOUT= 800mA 3999 TA01a T 11 RT SWB O 10 ILIM/SS RBIAS 9 500kHz 0.1µF 49.9k GND 8 10 11 12 13 14 15 16 17 18 INPUT VOLTAGE (V) 3999
in „Halbbruecke Fragen“ · Analoge Elektronik und Schaltungstechnik ·
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sinus.pdf
computing & = 0 mod m/2 and then further decomposed into a sum of three other angles as (7.55) p=a+ß+Xx where T a<- 2 T << =274 (7.56) ß 2 T Xy< 52700 Using the trigonometric identity sin(a + ß + x) = sin(a + ß) cos(y) + cos(a) cos(ß) sin(y) — sin(a) sin(ß) sin(y) (7.57) and exploiting the small-angle approximations where possible, sin(a + ß + y) = sin(a + ß) + cos(a) sin(y) (7.58) 331 The contents of the upper ROM in Figure 7.34 then contains the quantity sin(a_ + ß) andthe lower ROM contains Ihe quantity cos(a) sin(y). Since sin(y) < 1
in „Genauer und schneller Sinus im FPGA“ · FPGA, VHDL & Co. ·
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hst_v_09.pdf
: Fachgebiet Hochspannungstechnik Hochspannungstechnik Prof. Dr.-Ing. Volker Hinrichsen WS 09/10 + SS 10 9 DER ELEKTRISCHE DURCHSCHLAG VON GASEN Seite 14 a) Ist das Teilchen A ein Elektron , so ist A << r, und die mittlere freie Weglänge wird 1 λm,e= 2 π⋅r ⋅n b) Ist das Teilchen A einIon , für das giltAr
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DSAIH000309343.pdf
FUNCTIONAL DESCRIPTION Therefore, the temperature sensor output viewed from the system GND (SVD2 O in Fig.6.14) is affected by ΔV to the temperature sensor output viewed from the IC’s V SS(SVD2 I in Fig.6.14). To eliminate the affect of ΔV as much as possible, you are requested to design and use the temperature
in „Pollin Display VL-FS-COG-VLGEM1277-01“ · Mikrocontroller und Digitale Elektronik ·
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HD66766R.PDF
the 176th ("Araster - row row 31 HD66766R Rev. 1.0-1 / September 2002 1 Screen Driving Position (R14h) nd 2 Screen Driving Position (R15h) R/W RS DB15 DB14 DB13 DB12 DB11 DB10 DB9 DB8 DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0 W 1 SE17 SE16 SE15 SE14SE13 SE12 SE11 SE10 SS17 SS16 SS15 SS14 SS13 SS12 SS11 SS10 W
in „LCD-Modul F51661GNCJU-MLW-AA * Info *“ · Mikrocontroller und Digitale Elektronik ·
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smp04.pdf
. . . . . . . . . . . . . . DD–0.3 V, V V IN DGND . . . . . . . . . . . . . . . . . . . . . . . . SS. DD. . . V JAV specified for worst case mounting conditiJAs, i.e., u is specified for device V OUT to DGND . . . . . . . . . . . . . . . . . . . . . . SS. DD. . . . V , Vket for cerdip and plastic DIP
in „Power Supply Bypassing - wie ist es richtig??“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
smp04.pdf
. . . . . . . . . . . . . . DD–0.3 V, V V IN DGND . . . . . . . . . . . . . . . . . . . . . . . . SS. DD. . . V JAV specified for worst case mounting conditiJAs, i.e., u is specified for device V OUT to DGND . . . . . . . . . . . . . . . . . . . . . . SS. DD. . . . V , Vket for cerdip and plastic DIP
in „Sample-and-Hold-Verstärker - wie richtig beschalten??“ · Analoge Elektronik und Schaltungstechnik ·
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smp04.pdf
. . . . . . . . . . . . . . DD–0.3 V, V V IN DGND . . . . . . . . . . . . . . . . . . . . . . . . SS. DD. . . V JAV specified for worst case mounting conditiJAs, i.e., u is specified for device V OUT to DGND . . . . . . . . . . . . . . . . . . . . . . SS. DD. . . . V , Vket for cerdip and plastic DIP
in „Umgang mit Hold-Step bei Sample-and-Hold-Versärkern“ · Mikrocontroller und Digitale Elektronik ·
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PCF2119X__plagin_LCD_.PDF
REGISTER 5 × 12 BIT VLCDSENSE 5 168 OSCILLATOR OSC CURSOR AND DATA CONTROL 5 VDD1 1 to 6 VDD2 7 to 14 V 15 to 18 CHARACTER CHARACTER DD3 GENERATOR GENERATOR RAM (128 × 5) ROM (CGRAM) (CGROM) 16 CHARACTERS 240 CHARACTERS V SS1 22 to 29 TIMING GENERATOR V 30 to 35 8 SS2 20 T1 DISPLAY DATA RAM 7 (DDRAM)
in „I2C Display Steuern“ · Mikrocontroller und Digitale Elektronik ·
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HD66766-10.pdf
the 176th ("AF"H) raster - row 31 HD66766 Rev. 1.0 / 30 November 2001 1 Screen Driving Position (R14h) 2 Screen Driving Position (R15h) R/W RS DB15 DB14 DB13 DB12 DB11 DB10 DB9 DB8 DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0 W 1 SE17 SE16 SE15 SE14SE13 SE12 SE11 SE10 SS17 SS16 SS15 SS14 SS13 SS12 SS11 SS10 W 1
in „The Siemens S65 132x176, 65536 color display with AVR“ · Projekte & Code ·
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Datei
Code.c
; Disp_modus(); Speicher_Daten(); break; case 1: deaktiviere_timer(); break; } } if(Timer_an){ aus_ss = aus_zeit[0]*10 + aus_zeit[1]; an_ss = an_zeit[0]*10 + an_zeit[1]; switch(Blink){ case 0: Lcd_Chr(2,ss_Pos+2,' '); break; case 255: Lcd_Chr(2,ss_Pos+2,':'); break; } if(!aus_SS && !wechsel_ventil){
in „Pumpensteuerung - Finde den Fehler PIC 16f628a“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Schaltplan eines elektronischen Geräts mit Motor und Lüfter
CJS1036D HangYuXin USBIN D2 D4 BAT- BAT+ SS14 SS14 PM1 R6 560R R2 150K 1% USBIN R9 10R SS8550 GCIN R1 34K/1% BT1 USB-VDD 1 2 3 4 GND CTRL_C C2 0.1uF VDDIC VDDC CTRL_L TEST U1 TEST VDD 16 CTRL_M OPT 15 GND GCIN 14 GFIN 13 SHIFT 12 CTRL_L CTL_C 11 CTRL_C CHKIN 10 CHKIN 9 VDD LEDR LEDBL LED4 LED1 LED2 R5 820R R8 4.7K OFF SS8550 LED3 LED3A LED3 R7 4.7K R7 10K MOTOR C1 0.1uF D1 SS814 M- M- F1 ZMM16V VDD R4R7 D5 ZMM16V CTRL_L NM2 CTRL_M NM3 FAN 18033419374 QQ: 2480425950
in „CJS1036D: Keine/fehlerhafte Lithium-Ladeschlusserkennung (Laden-LED erlischt nicht mehr)“ · Mikrocontroller und Digitale Elektronik · · Schaltpläne
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PDF
TC4050BP.pdf
Absolute Maximum Ratings (Note) Characteristics Symbol Rating Unit DC supply voltage V DD VSS − 0.5~SS + 20 V Input voltage V V − 0.5~V + 20 V IN SS SS Output voltage VOUT V SS− 0.5~VDD + 0.5 V DC input current IIN ±10 mA Power dissipation PD 300 (DIP)/180 (SOIC) mW Operating temperature range T opr −
in „Ersatztyp zum LVX125“ · Mikrocontroller und Digitale Elektronik ·
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TPS40060_TPS40061.pdf
Stations • Servers SIMPLIFIED APPLICATION DIAGRAM TPS40060PWP 1 KFF ILIM 16 V 2 RT VIN 15 IN 3 BP5 HDRV 14 4 SYNC BPN10 13 5 SGND SW 12 + 6 SS/SD BP10 11 V 7 VFB LDRV 10 OUT 8 COMP PGND 9 - UDG-02157 Please be aware that an important notice concerning availability, standard warranty, and use in critical applications
in „Parameter-Berechnung für Schaltregler“ · Analoge Elektronik und Schaltungstechnik ·
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LDS517_Displaycontroller.pdf
2nd parameter W H Screen_Saver_Step_Unit SSTEPUNIT W L - 13h SS Step Timer Unit Set - 1st parameter W H - - - - - S1 S0 00h Screen_Saver_Box_Area SBOXSIZE W L - 14h SS Box Column & Row Set - 1st parameter W H - - - - SX6 SX5 SX4 00h 2nd parameter W H - - - SX3 SX2
in „Verkaufe OLED Displays FullColor 128*128 bzw. 96*64“ · Markt ·
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SSD1307.pdf
is segment output current reference pin. REF A resistor should be connected between this pin and V SS to maintain the IREF current at 10 uA. Please refer to Figure 7-14 for the details of resistor value. FR O This pin outputs RAM write synchronization signal. Proper timing between MCU data writing and
in „STM32 F103 - I2C Probleme“ · Mikrocontroller und Digitale Elektronik ·
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NT2GC64B8HC0NS.pdf
VSS 111 VDD 112 VDD 161 V SS 162 VSS 9 VSS 10 61 VSS 62 113 114 163 DQ48 164 DQ52 11 DM0 12 DQS0 63 DM3 64 DQS3 115 116 ODT0 165 DQ49 166 DQ53 13 VSS 14 V SS 65 VSS 66 VSS 117 VDD 118 VDD 167 V SS 168 VSS
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Philips_53-56.pdf
V C9223 C 6 R9219 8 10NF 1KV ! F + U F + 3 + C9222 + + + 2 1 C9225 9 U 0 U F 9 R +24V R9252 D9201 SS1060FL Q9201 0 1 0 U 5 C 1 0.47UF 50V 10 110K 1% R9204 R9203 300K 1% 1/2W C9247 2 1 TK13A50D 1 1 0 470UF 35V 3 5 5 11 NC/0R05 1 U 3 12 Q9209 K 7 U 13 1 R9206 4 7 14 STD1NK60T4 R9253 1K 1/8W 1% F 10 OHM
in „Mosfet 5R190CE“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
FA_715G8886.pdf
5 3 + 5 C9223 9 R9219 7 10NF 1KV 3 + U 3 + 5 + C9222 + + C + 4 % C9225 8 U 0 U 3 9 1 9 R9252 D9201 SS1060FL Q9201 0 0 0 F 5 C K 0.47UF 50V 10 +24V 1.5M OHM 1% 1/4W R9204 R9203 1.5M 1% C9247 2 1 IPA50R190CE 0 1 0 0 470UF 35V 3 V . 11 NC/0R05 1 1 0 F 3 5 12 Q9209 V 1 0 F 13 1 4 0 14 STD1NK60T4 R9253 F
in „Varistor im TV Netzteil defekt- wird wohl nicht das Einzige sein?“ · Analoge Elektronik und Schaltungstechnik ·
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DCL10_ds593.pdf
WP INIT HALT 14 13 PGND NC NC NC 12 11 GND 2.00 mm MOSI DIN TDI 10 9 GND TYP. 16.66 mm MISO DONE TDO 8 7 GND SCK CCLK TCK 6 5 GND SS PROG TMS 4 3 GND Vref Vref Vref 2 1 0.50 mm DS593_14_012508 Figure 14: Target Interface
in „USBprog CPLD Starterkit Wie bauen?“ · FPGA, VHDL & Co. ·
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PDF
lbo-5880_LEADER_anleitung.pdf
n D A HOLD OFF n HIGH i CH 2 V CLnMP 32 n/D INTEN VnRLOW l Æ H8RIZ. DISPLnY 3 ì n/D INTN VnR HIGH 14 TRIB, MIDE 34 n/D DELnY TIME PBS LOW 15 HDRIZ. Mns x ß 55 n/D BELnY TIE PaS H18H 15 SWEEP TIME n , 17 SWEEP TIME RtSE n 35 B ENDS n 3N/O F 18 SWEEP TI EVnRInBLE n 57 kP iO Rl lEj TRISe CUPLE n 58 CD’
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lbo-5880_LEADER_anleitung.pdf
n D A HOLD OFF n HIGH i CH 2 V CLnMP 32 n/D INTEN VnRLOW l Æ H8RIZ. DISPLnY 3 ì n/D INTN VnR HIGH 14 TRIB, MIDE 34 n/D DELnY TIME PBS LOW 15 HDRIZ. Mns x ß 55 n/D BELnY TIE PaS H18H 15 SWEEP TIME n , 17 SWEEP TIME RtSE n 35 B ENDS n 3N/O F 18 SWEEP TI EVnRInBLE n 57 kP iO Rl lEj TRISe CUPLE n 58 CD’
in „Problem Oszilloskop-Bedienung“ · Analoge Elektronik und Schaltungstechnik ·
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msp430f1232.pdf
- P1.0 21 - P1.0 TACLK TACLK ACLK ACLK SMCLK SMCLK Timer NA 9 - P2.1 9 - P2.1 7 - P2.1 INCLK INCLK 14 - P1.1 22 - P1.1 22 - P1.1 TA0 CCI0A 14 - P1.1 22 - P1.1 22 - P1.1 10 - P2.2 10 - P2.2 8 - P2.2 TA0 CCI0B CCR0 TA0 18 - P1.5 26 - P1.5 26 - P1.5 DV SS GND 10 - P2.2 10 - P2.2 8 - P2.2 DV CC VCC ADC10
in „MSP430 Interrupt Prioritäten?“ · Mikrocontroller und Digitale Elektronik ·
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Power_Supply_PCB_Assembly.pdf
5 12 T2-A LL4148 LL4148 CT GND D10 TP9 0026697 6 11 TP14 SS0540 R11 C45 C46 WSH5 WASHER 3.2X6.2X1 RT OUTA 4 10 TP21 DZ1 R5 0.1UF 0026697 Q2 R14 1N5242 1K 10UF 50V WSH6 WASHER 3.2X6.2X1 7 DSCH SHDN 10 5 IRFP460A 100 12V 50V R13 R19 8 9 Q4 R12 J9-1 0021419 100 SFST COMP D14 D12 MMBT4403 10K TP10 FAN 2 WSH7 R20 SS0540 SS0540 1K D16 WASHER 3X6X2.69 R81 LL4148 TH5 J9-2 0021419 12K KA3525A 6 100 PTC WSH8 WASHER 3X6X2.69 C23 C22 T2-B 50C 470PF 10UF TP15 50V 50V 0021424 R15 INS1
in „Mackie PPM1012 Netzteilfehler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
151130_atmel-9625-at42-qtouch-bsw-at42qt1085_datasheet.pdf
HAPTIC_EN O Enable pin for haptic amplifier Leave open 13 HAPTIC_PWM O Drive for haptic effects Leave open 14 SS I SPI Enable Pull up to VDD via a 100 k resistor 15 MOSI I SPI Data In Leave open 16 MISO O SPI Data Out Leave open 17 SCK I SPI Clock Leave open 18 AVDD P Analog Power – 19 KEY6 / GPIO13 I/O Sense
in „Atmel AT42QT1085“ · Mikrocontroller und Digitale Elektronik ·
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MC14006B.pdf
From 100_C To 125_C BLOCK DIAGRAM 1 13 4 11 12 5 10 6 8 9 D Q4 D Q8 Q9 D Q13 D Q17 Q18 P1 P5 P10 P14 VDD =PIN14 D D D D D D V =PIN7 4 4 1 4 4 1 SS STAGES STAGES STAGE STAGES STAGES STAGE NC =PIN2 C C C C C C CLOCK3 LOGIC DIAGRAM (ONE REGISTER STAGE) C C # * DATA D+1 * Transmission Gate (C #Inverter
in „Platine Bedieneinheit mit Oszi durchmessen“ · Platinen ·
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PDF
MAX5494-MAX5499.pdf
Years TA= +25°C 200,000 Endurance Stores TA = +85°C 50,000 POWER SUPPLIES Single-Supply Voltage V DD V SS= GND = 0 2.70 5.25 V V DD GND = 0 2.50 5.25 Dual-Supply Voltage V (V - V ) ≤ 5.25V -2.5 -0.2 V SS DD SS Average Programming Current PG During nonvolatile write only; 220 400 µA digital inputsDD Vr GND
in „Digitalpoteniometer für Audio-Anwendung“ · Mikrocontroller und Digitale Elektronik ·
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NECCS04393-1.pdf
noise reduction measures, such as supplying voltage to V DD0 and V DD1 individually and connecting V SS0 and V SS1 to different ground lines, is recommended. 8 Data Sheet U11776EJ2V1DS µPD78P0308, 78P0308Y • 100-pin plastic QFP (14 × 20) ] A D [ B / I 3 3 3 3 3 3 3 3 3 3 2 2 2 2 2 2 / S/ / S/S / / S/S
in „Anschlussbelegung uP D78P0308GF gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
lm3150.pdf
= 200 mA 3.4 Ω R DS-LG-Pull-DownLG Drive Pull–Down On-Resistance LG Sink = 200 mA 2 Ω Soft-Start I SS Pin Source Current V = 0V 5.9 7.7 9.5 µA SS SS ISS-DIS SS Pin Discharge Current 200 µA Current Limit I Current Limit Sense Pin Source Current 75 85 95 µA LIM-TH ON/OFF Timer VIN 10V, R ON= 100 kΩ, V
in „LM3150 zu geringe Ausgangsspannung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
protocol.pdf
string, time, ASCII character. Additional Type Length Data character ‘A’ ‘B’ ‘C’ ‘D’ ‘E’ ‘F’ ‘G’ ‘H’ SS5 ST5 WD5 WS5 SS7 ST7 WD7 WS7 ‘I’ ‘J’ ‘K’ ‘L’ ‘M’ ‘N’ ‘O’ ‘P’ SDS SRF STF WDF WSF SDF SS10 ST10 Font value 2 byte 0xFE ‘Q’ ‘R’ ‘S’ ‘T’ ‘U’ ‘V’ ‘W’ ‘X’ WD10 WS10 SS15 ST15 WD15 WS15 SS24 SS31 ‘@’ SMALL
in „LED Display Ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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ATmega_Pinout.pdf
PD6 12 17 PB3 (MOSI/OC2) (PCINT22/OC0A/AIN0) PD612 17 PB3 (MOSI/OC2A/PCINT3) (AIN1) PD7 13 16 PB2 (SS/OC1B) (PCINT23/AIN1) PD713 16 PB2 (SS/OC1B/PCINT2) (ICP1) PB014 15 PB1 (OC1A) (PCINT0/CLKO/ICP1) PB014 15 PB1 (OC1A/PCINT1) ATmega16/32 ATmega8535 (XCK/T0) PB0 PA0 (ADC0) (XCK/T0) PB0 PA0 (ADC0) (T1)
in „Anschlußbelegung aller Atmega und Attiny zusammen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
62256.pdf
O6 A13 26 17 I/O5 WE 27 16 I/O4 VCC 28 15 I/O3 A14 1 14 V SS A12 2 13 I/O2 A7 3 12 I/O1 A6 4 11 I/O0 A5 5 10 A0 A4 6 9 A1 A3 7 8 A2 (Top View) Pin Description Symbol Function A0 – A14 Address I/O0 – I/O7 Input/output CS Chip select WE Write enable OE Output enable NC No connection VCC Power supply V Ground SS 3 HM62256B Series Block Diagram V CC (MSB) A12 V SS A5 • A7 • • Memory Matrix A6 • Row • • • 512 512 A8 • Decoder A13 • • A14 A4 (LSB) A3 I/O0 • • • Column I/O • • • • Input • • Column Decoder • Data
in „IC P51256Sl-10 SRAM“ · Mikrocontroller und Digitale Elektronik ·
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Datei
spi_driver.c
, const uint8_t *transmitData, uint8_t *receiveData, uint8_t bytesToTransceive, PORT_t *ssPort, uint8_t ssPinMask) { dataPacket->ssPort = ssPort; dataPacket->ssPinMask = ssPinMask; dataPacket->transmitData = transmitData; dataPacket->receiveData = receiveData; dataPacket->bytesToTransceive
in „Micro SD Karte SPI an Xmega“ · Mikrocontroller und Digitale Elektronik ·
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Datei
spi_driver.c
, const uint8_t *transmitData, uint8_t *receiveData, uint8_t bytesToTransceive, PORT_t *ssPort, uint8_t ssPinMask) { dataPacket->ssPort = ssPort; dataPacket->ssPinMask = ssPinMask; dataPacket->transmitData = transmitData; dataPacket->receiveData = receiveData; dataPacket->bytesToTransceive
in „ATXMega32e5 SPI MISO immer 0 mit AT45DB161 Flash IC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lm5026.pdf
SNVS363C –AUGUST 2005–REVISED MARCH 2010 www.ti.com Connection Diagram VIN 1 16 DCL UVLO 2 15 SYNC CS 3 14 RT RES 4 13 COMP TIME 5 12 SS REF 6 11 AGND VCC 7 10 PGND OUT_A 8 9 OUT_B Figure 2. 16-Lead TSSOP VIN 1 16 DCL UVLO 2 15 SYNC CS 3 14 RT RES 4 EP 13 COMP TIME 5 12 SS 11 AGND REF 6 VCC 7 10 PGND OUT_A
in „.lib datei einbinden“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Speicher.pdf
currents required during program and erase operations. Rev 0.5 / Jun. 2006 8 HY27US(08/16)561A Series HY27SS(08/16)561A Series 256Mbit (32Mx8bit / 16Mx16bit) NAND Flash IO0 IO1 IO2 IO3 IO4 IO5 IO6 IO7 1st Cycle A0 A1 A2 A3 A4 A5 A6 A7 2nd Cycle A9 A10 A11 A12 A13 A14 A15 A16 3rd Cycle A17 A18 A19 A20 A21 A22
in „SD Karte selber bauen!“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Code.txt
data), HAL_MAX_DELAY); delay_us(50); } delay_us(10); // End transaction HAL_GPIO_WritePin(SPI_ANGLE_SS_GPIO_Port, SPI_ANGLE_SS_Pin, GPIO_PIN_SET); // CS HIGH // Extract and calculate angle uint16_t data_bytes = (data[2] << 8) | data[3]; // Combine two bytes uint16_t first14 = data_bytes >> 2; // Extract first 14 bits float value = (float)(first14 / 16384.0); // Divide by 2^14 to get a value between 0 and 1 float angle = (value - 0.1) / (0.9 - 0.1) * 360; // Scale value to degrees UART_Printf("Winkel: %.2f\n"
in „SPI Kommunikation mit STM32 und PST360G2“ · Mikrocontroller und Digitale Elektronik ·
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PDF
A_Design_of_High_Speed_and_Real-time_DSO_Based_on_FPGA.pdf
i!'1l[IX&;f~tEr, WIJiEU .X!1HM ff!iXrri!i!'l1'I1+uJ<!l,\r,J)iErr'~T ARM(j';ff!0t!'P·:iG fIJfflJ:>ß1Jit, FFTif;:iEUiJ'~i',,'ARM9i(ü$JJJ"'I",'rr 96MHz",TI;I1:102tFFTml"II'ß]}200m.,::16ms:k:kfiU;;'Ti:I' ;rr(j';iilii(iiijJl;i'Ii,I30ms iiiTi;ftl(;!*0 14.2Ji!ojE"ti.,lU'102,#FF'l!'m~1i,},\'i'JlW, ~ il"fJi'oJ13J
in „Oszilloskop - SoC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
lt3580.pdf
restart the soft-start sequence. Do not float this pin. 3580fb 5 LT3580 BLOCK DIAGRAM RC VIN C C C SS C IN SHDN 7 2 SS VC 5 – 1.3V + DISCHARGE L1 DETECT 275k UVLO SR2 VC SW D1 SOFT- 4 VOUT R START LIMIT COMPARATOR Q Q2 SR1 – DRIVER VIN S A3 R Q Q1 C1 3 1.215V S REFERENCE + RFB + + 14.6k A4 A1 ∑ 0.01Ω
in „Switcher CAD III Simulation - Schaltungsfehler ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
harman_kardon_avr507_sm.pdf
DIODE 1SS133T-77 D583 HVD1SS133MT DIODE 1SS133T-77 D584 HVD1SS133MT DIODE 1SS133T-77 D585 HVD1SS133MT DIODE 1SS133T-77 D601 HVD1SS133MT DIODE 1SS133T-77 D801 HVD1SS133MT DIODE 1SS133T-77 D802 HVD1SS133MT DIODE
in „Harman Kardon geht nicht an (hängt im Standby fest)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PCA85133.pdf
bias o2 ⁄ bias in 3his mode as shown in Figure 7 and Figure 8. Tfr V LCD LCD segments BP0 V LCD/2 V SS state 1 V LCD state 2 BP1 V LCD/2 V SS V LCD Sn V SS V LCD Sn+1 V SS (a) Waveforms at driver. V LCD V LCD/2 state 1 0 V −V LCD/2 −V LCD V LCD V LCD/2 state 2 0 V −V LCD/2 −V LCD (b) Resultant waveforms
in „I2C-Signal SCL & SDA“ · Mikrocontroller und Digitale Elektronik ·
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Datenblatt.pdf
, so for high ambient temperature operation, two diodes in series are recommended. +8V to +15V +5V 14 14 V DD VDD 10 kΩ TC9400 TC9400 0.01 µF 33 kΩ 0.01 µF 11 Frequency 33 kΩ 11 FrInputcy DET Input DET +5V IN914 +5V IN914 1.0 1.0 MΩ 0V MΩ 0V GND VSS 0.1 µF 10 kΩ V SS 4 6 4 -5V (a) ±5V Supply (b) Single
in „Frequenz-Spannungswandler OP-Verstärkung“ · Mikrocontroller und Digitale Elektronik ·
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MC14503B.pdf
D MC14503B LOGIC DIAGRAM CIRCUIT DIAGRAM 15 ONE OF TWO/FOUR BUFFERS DISABLE B 12 11 IN 5 OUT 5 VDD 14 13 IN 6 OUT 6 2 3 IN 1 OUT 1 *INn OUT n IN 2 4 5 OUT 2 IN 3 6 7 OUT 3 *DISABLE 10 9 *INPUT IN 4 OUT 4 V SS DISABLE A 1 VDD = PIN 16 TO OTHER BUFFERS V = PIN 8 SS *Diode protection on all inputs (not
in „Dipl. Ing Heinz Ahborn Orgel - Keine Töne mehr“ · Analoge Elektronik und Schaltungstechnik ·
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AVR-DD-Product-Brief-DS40002215A-1.pdf
6 13 7 PC2 AIN30 AINN3 ZCIN (3) (3) (3) WO2 EVOUTC LUT1,IN2 Fm+ 0,RxD MISO SDA(M) TWI 1,XDIR SS (3) SCL(S) 9 5 7 14 8 PC3 AIN31(6) AINP4 (6) WO3 (3) LUT1,OUT Fm+ 0,XCK (3) SCK (3) SCL(M) (3) 10 6 8 15 9 VDDIO2 11 7 PD1 AIN1 WO1 (3) LUT2,IN1 (3) 12 8 PD2 AIN2 AINP0 WO2 EVOUTD LUT2,IN2 (3) 13 9 PD3
in „AVR-DD im Anrollen“ · Mikrocontroller und Digitale Elektronik ·
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ICM7216.pdf
14 Input Low Voltage, VINL - - 0.8 V Input High Voltage, INH 2.0 - - V Input Resistance to V , R V = V +1.0V 50 100 - k SS IN IN SS 9-13 ICM7216A, ICM7216B, ICM7216D o Electrical Specifications V DD = 5.0V
in „[V] 1St. Harris ICM7216AIJI Ceramic DIP28 8-Digit, Multi-Function, Frequency Counters/Timers“ · Markt ·