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Datei
oled1.c
,0x00,Max_Row,0x07,0xFF); // Red => Column 65~80 Fill_Block(0x40,0x4F,0x00,Max_Row,0xF8,0x00); // Green => Column 81~96 Fill_Block(0x50,0x5F,0x00,Max_Row,0x07,0xE0); // Blue => Column 97~112 Fill_Block(0x60,0x6F,0x00,Max_Row,0x00,0x1F); // Black => Column 113~128 Fill_Block(0x70,Max_Column,0x00,Max_Row,0x00,0x00); } //-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-= // Show Character (5x7) // /
in „AVR Oled Display odm 100-Wie ansteuern?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
oled.c
,0x00,Max_Row,0x07,0xFF); // Red => Column 65~80 Fill_Block(0x40,0x4F,0x00,Max_Row,0xF8,0x00); // Green => Column 81~96 Fill_Block(0x50,0x5F,0x00,Max_Row,0x07,0xE0); // Blue => Column 97~112 Fill_Block(0x60,0x6F,0x00,Max_Row,0x00,0x1F); // Black => Column 113~128 Fill_Block(0x70,Max_Column,0x00,Max_Row,0x00,0x00); } //-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-= // Show Character (5x7) // /
in „ODM100 OLED bleibt schwarz“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ODM100.c
,0x00,Max_Row,0x07,0xFF); // Red => Column 65~80 Fill_Block(0x40,0x4F,0x00,Max_Row,0xF8,0x00); // Green => Column 81~96 Fill_Block(0x50,0x5F,0x00,Max_Row,0x07,0xE0); // Blue => Column 97~112 Fill_Block(0x60,0x6F,0x00,Max_Row,0x00,0x1F); // Black => Column 113~128 Fill_Block(0x70,Max_Column,0x00,Max_Row,0x00,0x00); } //-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-= // Show Character (5x7) // /
in „SSD 1351 - OLED ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HD61202U.pdf
off, set address, set display start line, read status • Lower power dissipation: during display 2 mW max • Power supply: V : 2.7V~5.5V CC • Liquid crystal display driving voltage: 8V to 16V • CMOS process Ordering Information Type No. Package HD61202UFS 100-pin plastic QFP (FP-100A) HD61202UTE 100-pin
in „seltsames Grafik Display verhalten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GN80_2_NMEA_Protocol__1_.pdf
syntax below: “Param”: Log Output Sentence <Log Output Sentence Length in bytes> “GGAnn”:$GPGGA<82 max> GGA00-GGA60 [5](sec){GGA01} “ZDAnn”:$GPZDA<36> ZDA00-ZDA60 [5](sec){ZDA01} “GLLnn”:$GPGLL<47> GLL00-GLL60 [5](sec){GLL00} “GSAnn”:$GPGSA<69 max> GSA00-GSA60 [5](sec){GSA00} “GSVnn”:$GPGSV<70 max> GSV00-GSV60 [5](sec){GSV01} “VTGnn”:$GPVTG<46 max> VTG00-VTG60 [5](sec){VTG01} “RMCnn”:$GPRMC<77 max> RMC00-RMC60 [5](sec){RMC00} “ancnn”:$PFEC,GPanc<62> anc00-anc60 [5](sec){anc00} “accnn”:$PFEC,GPacc<49> acc00-acc60 [5](sec){acc00} “astnn”:$PFEC,
in „DGPS korreliert nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
VisiLogic_-_Communications.pdf
Main Routine of the Ladder application. CANbus Specifications Power Requirements: 24VDC ( ±4%), 40mA max. per unit Galvanic Isolation between CANbus and controller: Yes Baud rate Max. Network Cable Length: 1 Mbit/s 25 m 500 Kbit/s 100 m 250 Kbit/s 250 m 125 Kbit/s 500 m 100 Kbit/s 500 m 50 Kbit/s 1000
in „USB-Host / industrielle SPS / Frequency Counter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MB91F465DA-FujitsuMediaDevices.pdf
average output ΣOHAV current* ⎯ − 230 mA Stepper motor controller max, CLKB ⎯ 100 Permitted operating frequency max, CLKP ⎯ 50 MB91F465DA max, CLKT ⎯ 50 MHz T A ≤ 105 °C max, CLKCAN ⎯ 50 max, CLKB ⎯ 96 Permitted operating frequency max, CLKP ⎯ 48 MB91F467DA, MB91F467DB, MHz T A ≤ 105 °C MB91F467DBH max, CLKT ⎯ 48 max, CLKCAN ⎯ 48 max, CLKB ⎯ 92 Permitted operating frequency max, CLKP ⎯ 46 MHz 105 °C ≤ T A ≤ 125 °C MB91F467DBH max, CLKT ⎯ 46 max, CLKCAN ⎯ 46 *8 ⎯ 2000 TA ≤ 85 °C ⎯ 1300 *8 TA ≤ 105
in „LCD Display / Controller eines Schweißgerätes prüfen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IL3829.pdf
VDD: 1.8V, regulate from VCI supply • Gate driving output voltage: ¾ 2 levels output (VGH, VGL) ¾ Max 42Vp-p ¾ VGH: 15V to 22V; ¾ VGL: -20V to -15V ¾ Voltage adjustment in steps of 500mV. • Source / VBD driving output voltage: ¾ 3 levels output (VSH, VSS, VSL) ¾ VSH: 10V to 17V ¾ VSL: -10V to -17V ¾
in „IL3829 - E-Paper Display Treiber“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN10496-NXP.pdf
P89LPC901 9. Appendix D Main Loop Key 1 & Key 2 N pressed together? N Y Key 1 pressed? Key Value = Max Y Key value N exceed? Process Increase or Decrease soft Y switch Increase Key Value Convert Key Value into Phase Value N Key 2 pressed? Phase Value between N 40 and 140 Degree? Y Key Value N Y Negative
in „Controller an 230VAC wie realisieren?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
m202ld08a.pdf
VAC, 50‐60 Hz via a Universal Input power supply VFD DC Power Requirements • 10 VDC to 14VDC (0.8 A max. at 12VDC) LCD AC Power Requirements • No AC P/S available. The LCD receives power from the host via a powered RS‐232 connector. LCD DC Power Requirements • 10.6VDC to 13VDC (160mA max at 12VDC) Operational
in „Hat schon jemand was mit dem FUJITSU VF60 Display gemacht?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TDA8920B.pdf
20 kHz brickwall filter. Maximum limit is guaranteed but may not be 100 % tested. [4] VrippleVripple(max) V (p-p); s = 0 . [5] B = 22 Hz to 20 kHz, using an AES17 20 kHz brickwall filter. [6] B = 22 Hz to 20 kHz, using an AES17 20 kHz brickwall filter; independent of R . s [7] Vi= Vi(max) 1 V (RMS);if =
in „Schaltnetzteil im Audioverstärker defekt?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
stk500_1200.asm
Overflow Handler 6: 18 95 reti ; Analog Comparator Handler ;;; ;;; PD0 is connected to pin 12 of the max202 (R1OUT) and RxD of the 8535. ;;; PD1 is connected to pin 11 of the max202 (T1IN) and TxD of the 8535. ;;; ;;; This seems to imply that the following functions implement a bit banged ;;; uart. ;;;
in „AVRISP => Hex-Datei vom 1200er“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STK500_Schematics.pdf
0R B 12pF TRST 11 23 PCM4 B PD2/INT0 B A PC4 + C214 V12P7 T C C P C C211 2 / / / / / 100nF 10u/16V R218 3 4 5 6 7 C D 0 1 2 3 22K P P P P P V G P P P PC C216 R204 N.M. 100nF 100K 2 3 4 5 6 7 8 9 0 1 2 0 1 6 V12P7 1 1 1 1 1 1 1 1 2 2 2 _ _ 2 Q201A X X NOTE! N.M. = Not Mounted BC847BPN 2 B A U A A C215
in „Schema STK 500 ?!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STK500_Schematics.pdf
0R B 12pF TRST 11 23 PCM4 B PD2/INT0 B A PC4 + C214 V12P7 T C C P C C211 2 / / / / / 100nF 10u/16V R218 3 4 5 6 7 C D 0 1 2 3 22K P P P P P V G P P P PC C216 R204 N.M. 100nF 100K 2 3 4 5 6 7 8 9 0 1 2 0 1 6 V12P7 1 1 1 1 1 1 1 1 2 2 2 _ _ 2 Q201A X X NOTE! N.M. = Not Mounted BC847BPN 2 B A U A A C215
in „STK500 kein VTARGET mehr?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STK500_1_.pdf
0R B 12pF TRST 11 23 PCM4 B PD2/INT0 B A PC4 + C214 V12P7 T C C P C C211 2 / / / / / 100nF 10u/16V R218 3 4 5 6 7 C D 0 1 2 3 22K P P P P P V G P P P PC C216 R204 N.M. 100nF 100K 2 3 4 5 6 7 8 9 0 1 2 0 1 6 V12P7 1 1 1 1 1 1 1 1 2 2 2 _ _ 2 Q201A X X NOTE! N.M. = Not Mounted BC847BPN 2 B A U A A C215
in „STK500 - Analog-Setup für Line-In-Adapter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STK500_Schematics.pdf
0R B 12pF TRST 11 23 PCM4 B PD2/INT0 B A PC4 + C214 V12P7 T C C P C C211 2 / / / / / 100nF 10u/16V R218 3 4 5 6 7 C D 0 1 2 3 22K P P P P P V G P P P PC C216 R204 N.M. 100nF 100K 2 3 4 5 6 7 8 9 0 1 2 0 1 6 V12P7 1 1 1 1 1 1 1 1 2 2 2 _ _ 2 Q201A X X NOTE! N.M. = Not Mounted BC847BPN 2 B A U A A C215
in „Roter Bereich auf STK500 defekt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
PinKlasse_klassisch_toggle.ino.elf.txt
0x280E 15a: 30 91 0f 28 lds r19, 0x280F 15e: 82 0f add r24, r18 160: 93 1f adc r25, r19 if (f >= FRACT_MAX) { 162: 88 3e cpi r24, 0xE8 ; 232 164: 23 e0 ldi r18, 0x03 ; 3 166: 92 07 cpc r25, r18 168: 30 f0 brcs .+12 ; 0x176 <__vector_36+0x64> f -= FRACT_MAX; 16a: 88 5e subi r24, 0xE8 ; 232 16c: 93 40 sbci
in „Buchempfehlung C++ und MCUs“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STK500.pdf
0R B 12pF TRST 11 23 PCM4 B PD2/INT0 B A PC4 + C214 V12P7 T C C P C C211 2 / / / / / 100nF 10u/16V R218 3 4 5 6 7 C D 0 1 2 3 22K P P P P P V G P P P PC C216 R204 N.M. 100nF 100K 2 3 4 5 6 7 8 9 0 1 2 0 1 6 V12P7 1 1 1 1 1 1 1 1 2 2 2 _ _ 2 Q201A X X NOTE! N.M. = Not Mounted BC847BPN 2 B A U A A C215
in „STK500 Transistoren defekt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STK500_Schematics.pdf
0R B 12pF TRST 11 23 PCM4 B PD2/INT0 B A PC4 + C214 V12P7 T C C P C C211 2 / / / / / 100nF 10u/16V R218 3 4 5 6 7 C D 0 1 2 3 22K P P P P P V G P P P PC C216 R204 N.M. 100nF 100K 2 3 4 5 6 7 8 9 0 1 2 0 1 6 V12P7 1 1 1 1 1 1 1 1 2 2 2 _ _ 2 Q201A X X NOTE! N.M. = Not Mounted BC847BPN 2 B A U A A C215
in „STK500 getötet?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STK500_Schematics.pdf
0R B 12pF TRST 11 23 PCM4 B PD2/INT0 B A PC4 + C214 V12P7 T C C P C C211 2 / / / / / 100nF 10u/16V R218 3 4 5 6 7 C D 0 1 2 3 22K P P P P P V G P P P PC C216 R204 N.M. 100nF 100K 2 3 4 5 6 7 8 9 0 1 2 0 1 6 V12P7 1 1 1 1 1 1 1 1 2 2 2 _ _ 2 Q201A X X NOTE! N.M. = Not Mounted BC847BPN 2 B A U A A C215
in „STK500 reparieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SSD1351-Revision_1.5.pdf
description of command C1h – P.46 4 Updated the I SLP VCIleep mode current section of Table 12-1 (Max = 50uA when internal VDD is enabled) – P.49 5 Revised declaimer 1.4 1 P.30 Update Power On/OFF sequence 23-Jul-10 2 P.51 Revise Table 13-2 : 6800-Series MCU Parallel Interface Timing Characteristics
in „OLED128x128 SSD1351 RGB Initialisierung Color Farbe bunt SPI 3.3V AVR ATmega8 ATmega328p Assembler“ · Projekte & Code ·
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PDF
88E1111_DS.pdf
#ns m L Rf_CLLL co DA S V 1zzV. Instantaneous change during internal mIH_NMII (Min.) andvVIL_GMII (Max.)T operation. A u3Figure 47: GMII Receive Timing Se R a M 7v MA l DE * TP_GMII_RX_CLK rveU N d TH_GMIITL_GMII_RX_CaK L, 8 RX_CLK *M I OH_GMII (Min.) e TF_GMII_RX_CLK geTRNGMII_RX_CLKMII (Max.) u RXD
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M7000_US_2003.pdf
ERN 460 ERN 430 Interface TTL/RS422 TTL/RS422 HTL/Push-pull Operating voltage 4…6 10…30 10…30 VDC Max current 150 150 150 MA Max output frequency 300 300 300 kHz Max speed 12,000 12,000 12,000 rpm Ambient temperature -4…+158 -4…+158 -4…+158 °F Ambient temperature -20…+70 -20…+70 -20…+70 °C Enclosure
in „Frequenzumformer“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TPS_Datasheet.pdf
Case (1.20) 3.20 (0.126) 1.60 (0.063)1.20 (0.047) max. 1.20 (0.040.80 (0.031) 1.10 (0.043) T 3528-12 B Case (1.20) 3.50 (0.138) 2.80 (0.110)1.20 (0.047) max. 2.20 (0.080.80 (0.031) 1.40 (0.055) 3.45 ±0.30 V 7361-38 – 7.30 (0.287) 6.10 (0.240) (0.136 ±0.012
in „Was für besondere Kondensatoren sind das??“ · Mikrocontroller und Digitale Elektronik ·
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PDF
cs5460.pdf
V max 2000 -2.0 200 400 600 800 1000 1200 14001600 1800 2000 Frequency (Hertz) 30mV RMS ki= ----I------- = 300 µΩ max Figure 6. Voltage Input Filter Roll-off where k v and k aie the sensor gains for the voltage
in „Leistung messen an 230V von 1W bis 2000W“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
cic.pdf
form to the input sample precision B. As shown in Reference 1, (x/sin(x)) . the most significant bitMAX at the filter output is defined by 10 (7) Compensation Filter BMAX= N log2RM + B−1 0 . -10 where denotes the ceiling operator. The CIC core uses B MAX bits internally for each of the integrator and
in „Probleme mit CIC Filter“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
vestel_17mb95m_r2-1_sch.pdf
220R 5V_VCC _ _ _ _ _ _ T V V V V V V _ R192 1U28 3 3 3 3 3 3 3 2 10k 1 1 10k 2 3V3_VCC_TUNER 3 R712 MAX809LTR 3 T 8 k C562 E 4 5 VCC 1 0 100n 2 2 2 T 2 W RST GND R 1 16V R D B 5V_VCC D 2 1 2 72 7 4 7 P P 10k D 1 41 4 1 4 T BC858B 1 2 R 2 2R 2 1 Q35R191 R195 8 1 14 1 10k 2 1 10k 2 AUX_RESET 2 k 9 k 4 k
in „Vestel TV Board 17MB95M zwei SMD Bauteile finden“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SSD2119.pdf
circuit) • Output Voltages o Gate Driver: VGH-GND = 9V ~ 18V VGL-GND = -6 ~ -15V VGH-VGL = 30Vp-p max. o Source Driver: V0 – V63 = 0 – 6V max. o VCOM drive: VCOMH = 3.0V ~ 5.0V VCOML = -1.0V ~ -3.0V VCOMA = 6V max. • System Interface o 8/ 9/ 16/ 18-bit 6800-series / 8080-series Parallel Interface o
in „Display Module CFAF320240F-TS Ansteuerung --- ATMEGA 128 ---- STK600“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Configuration_adv.h
its usage. */ //#define MAX7219_DEBUG #if ENABLED(MAX7219_DEBUG) #define MAX7219_CLK_PIN 64 #define MAX7219_DIN_PIN 57 #define MAX7219_LOAD_PIN 44 //#define MAX7219_GCODE // Add the M7219 G-code to control the LED matrix #define MAX7219_INIT_TEST 2 // Test pattern at startup: 0=none, 1=sweep, 2=spiral #define MAX7219_NUMBER_UNITS 1 // Number of Max7219 units in chain. #define MAX7219_ROTATE 0 // Rotate the display clockwise (in
in „Ender3 Z-Achse fährt mit Marlin nur nach oben“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
Spektrumanalyse_RuS-Tutorium.pdf
A mindestensdoppeltso A A hoch wie die Bandbreite B edes Eingangssignals sein. Es gilt: f e,max ––– ––– 2 Aliasing 1 A ≥ 2 · B e und A (Gl. 3-1) T A f f f f f 2f 3f f fe,max––– –––,max A A A mit fA Abtastfrequenz, in Hz c) 2 2 B e Signalbandbreite, in Hz Bild 3-1 Abtastung eines Tiefpaßsignals
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PDF
Spektrumanalyse.pdf
A mindestensdoppeltso A A hoch wie die Bandbreite B edes Eingangssignals sein. Es gilt: f e,max ––– ––– 2 Aliasing 1 A ≥ 2 · B e und A (Gl. 3-1) T A f f f f f 2f 3f f fe,max––– –––,max A A A mit fA Abtastfrequenz, in Hz c) 2 2 B e Signalbandbreite, in Hz Bild 3-1 Abtastung eines Tiefpaßsignals
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DSAIH000309343.pdf
circuit frequency is a typ. value, and the max. value indicates the maximum operability. S1D15721 Series Technical Manual (Rev.2.1) EPSON 61 9. DC CHARACTERISTICS Table 9.2 Specified value Applicable Item Symbol Conditions Unit Min. Typ. Max. pin
in „Pollin Display VL-FS-COG-VLGEM1277-01“ · Mikrocontroller und Digitale Elektronik ·
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PDF
155008-da-01-en-8X_DAC_AD7808BRZ_SO24W.pdf
=3.3 V 0.6 0.6 V max Input Leakage Current 10 A max Input Capacitance 10 10 pF max Input Coding Twos Comp/Binary Twos Comp/Binary REFERENCE OUTPUT REF OUT Output Voltage 1.23 1.23 V nom REF OUT Error 8 8 % max REF OUT Temperature
in „DAC AD7808 wie register setzen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
155008-da-01-en-8X_DAC_AD7808BRZ_SO24W.pdf
=3.3 V 0.6 0.6 V max Input Leakage Current 10 A max Input Capacitance 10 10 pF max Input Coding Twos Comp/Binary Twos Comp/Binary REFERENCE OUTPUT REF OUT Output Voltage 1.23 1.23 V nom REF OUT Error 8 8 % max REF OUT Temperature
in „DAC AD7808 Datenübertragung mit ATMega16 klappt nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCD8544_1.pdf
the Absolute Maximum Rating System (IEC 134); see notes 1 and 2. SYMBOL PARAMETER CONDITIONS MIN. MAX. UNIT VDD supply voltage note 3 −0.5 +7 V V supply voltage LCD note 4 −0.5 +10 V LCD Vi all input voltages −0.5 VDD + 0.5 V SS ground supply current −50 +50 mA I,OI DC input or output current −10 +10
in „(Dieser Beitrag wurde geloescht)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pcd8544.pdf
the Absolute Maximum Rating System (IEC 134); see notes 1 and 2. SYMBOL PARAMETER CONDITIONS MIN. MAX. UNIT VDD supply voltage note 3 −0.5 +7 V V supply voltage LCD note 4 −0.5 +10 V LCD Vi all input voltages −0.5 VDD + 0.5 V SS ground supply current −50 +50 mA I,OI DC input or output current −10 +10
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PDF
PCD8544_1.pdf
the Absolute Maximum Rating System (IEC 134); see notes 1 and 2. SYMBOL PARAMETER CONDITIONS MIN. MAX. UNIT VDD supply voltage note 3 −0.5 +7 V V supply voltage LCD note 4 −0.5 +10 V LCD Vi all input voltages −0.5 VDD + 0.5 V SS ground supply current −50 +50 mA I,OI DC input or output current −10 +10
in „MSP430F2013 steuert Nokia-3310-Display an“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCD8544_-_3310_Display_Controler.pdf
the Absolute Maximum Rating System (IEC 134); see notes 1 and 2. SYMBOL PARAMETER CONDITIONS MIN. MAX. UNIT VDD supply voltage note 3 −0.5 +7 V V supply voltage LCD note 4 −0.5 +10 V LCD Vi all input voltages −0.5 VDD + 0.5 V SS ground supply current −50 +50 mA I,OI DC input or output current −10 +10
in „Atmega8 Nokia 3310 Display und AVR-Studio“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Nokia5510LCD_datasheet.pdf
the Absolute Maximum Rating System (IEC 134); see notes 1 and 2. SYMBOL PARAMETER CONDITIONS MIN. MAX. UNIT VDD supply voltage note 3 −0.5 +7 V V supply voltage LCD note 4 −0.5 +10 V LCD Vi all input voltages −0.5 VDD + 0.5 V SS ground supply current −50 +50 mA I,OI DC input or output current −10 +10
in „Probleme mit Taktversorgung auf Steckbrett“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Nokia5510LCD_datasheet.pdf
the Absolute Maximum Rating System (IEC 134); see notes 1 and 2. SYMBOL PARAMETER CONDITIONS MIN. MAX. UNIT VDD supply voltage note 3 −0.5 +7 V V supply voltage LCD note 4 −0.5 +10 V LCD Vi all input voltages −0.5 VDD + 0.5 V SS ground supply current −50 +50 mA I,OI DC input or output current −10 +10
in „[PIC]Probleme bei SPI Übertragung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCD8544_-_3310_Display_Controler.pdf
the Absolute Maximum Rating System (IEC 134); see notes 1 and 2. SYMBOL PARAMETER CONDITIONS MIN. MAX. UNIT VDD supply voltage note 3 −0.5 +7 V V supply voltage LCD note 4 −0.5 +10 V LCD Vi all input voltages −0.5 VDD + 0.5 V SS ground supply current −50 +50 mA I,OI DC input or output current −10 +10
in „Display Nokia 5110“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Nokia5110.pdf
the Absolute Maximum Rating System (IEC 134); see notes 1 and 2. SYMBOL PARAMETER CONDITIONS MIN. MAX. UNIT VDD supply voltage note 3 −0.5 +7 V V supply voltage LCD note 4 −0.5 +10 V LCD Vi all input voltages −0.5 VDD + 0.5 V SS ground supply current −50 +50 mA I,OI DC input or output current −10 +10
in „Nokia 5110 ansteuern für newbie“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD7190.pdf
AV DD − AGND 4.75/5.25 V min/max DV DD − DGND 2.7/5.25 V min/max Power Supply Currents AI Current 1 mA max 0.85 mA typical, gain = 1, buffer off. DD 1.3 mA max 1.1 mA typical, gain = 1, buffer on. 4.5 mA max 3.5 mA typical, gain = 8, buffer off. 4.75 mA max 4 mA typical, gain = 8, buffer on. 6.2 mA max 5 mA typical, gain = 16 to 128, buffer off. 6.75 mA max 5.5 mA typical, gain = 16 to 128, buffer on. DIDD Current 0.4 mA max 0.35 mA typical, DV DD = 3V
in „AD7190 Clock“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DometicColdMachine50-54-55-84-85-86-94-95-96-CS-NC15_IOM_4445100001_EMEA16_20xx-xx-xx.book.pdf
VD-01 VD-02 VD-03 VD-04 Max.cooling area 80litres 30 litres 170 litres 130 litres contentat 35 mm PU insulation: Max.cooling area 100 litres 50 litres 200litres 170 litres contentat 50 mm PU insulation: Power consumption: 35W
in „Schaltsymbol“ · Fahrzeugelektronik ·
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PDF
FT232R.pdf
Feature Pb Free Solder Process Non-Pb Free Solder Process Average Ramp Up Rate (T ts T )p 3°C / second Max. 3°C / Second Max. Preheat - Temperature Min (T sin.) 150°C 100°C - Temperature Max (T Max.) s 200°C 150°C - Time (tsMin to s Max) 60 to 120 seconds 60 to 120 seconds Time Maintained Above Critical
in „AD7190 Clock“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
FT232R.pdf
Feature Pb Free Solder Process Non-Pb Free Solder Process Average Ramp Up Rate (T ts T )p 3°C / second Max. 3°C / Second Max. Preheat - Temperature Min (T sin.) 150°C 100°C - Temperature Max (T Max.) s 200°C 150°C - Time (tsMin to s Max) 60 to 120 seconds 60 to 120 seconds Time Maintained Above Critical
in „Bite um Kontrolle meines Schaltplans und Layoutes“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HX5116_4.3inch.pdf
st VSYNC-1 Data input time T VBP 4 17 - TH VSYNC period T V - 262.5 - TH PARAMETER Symbol Min. Typ. Max. Unit SW pulse width T4 - 123 - T CPH SW-SW non-overlap time T - 37 - T 3 CPH SOUT-SW front time TF - 6 - T CPH SW-SOUT back time TB - 18 - T CPH (For 27MHz) PARAMETER Symbol Min. Typ. Max. Unit DCLK
in „OLED CMEL SPI Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
andilcd_conoled_sheet_de_hx5116.pdf
st VSYNC-1 Data input time T VBP 4 17 - TH VSYNC period T V - 262.5 - TH PARAMETER Symbol Min. Typ. Max. Unit SW pulse width T4 - 123 - T CPH SW-SW non-overlap time T - 37 - T 3 CPH SOUT-SW front time TF - 6 - T CPH SW-SOUT back time TB - 18 - T CPH (For 27MHz) PARAMETER Symbol Min. Typ. Max. Unit DCLK
in „HX 5116 Anschlussbelegung an einem Atmega 644“ · Mikrocontroller und Digitale Elektronik ·
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PDF
D15G14E_14_030526.pdf
258 SEG220 2540 159 COM7 6500 209 SEG269 4500 259 SEG219 2500 160 COM6 6460 210 SEG268 4460 260 SEG218 2460 161 COM5 6420 211 SEG267 4420 261 SEG217 2420 162 COM4 6380 212 SEG266 4380 262 SEG216 2380 163 COM3 6340 213 SEG265 4340 263 SEG215 2340 164 COM2 6300 214 SEG264 4300 264 SEG214 2300 165 COM1
in „Nokia LCD 3510“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RC28F256J3C-125.pdf
2.7 V–3.6 V otherwise noted) Notes Speed Bin -110 -115 -120 -125 -150 # Sym Parameter Density Min Max Min Max Min Max Min Max Min Max 32 Mbit 110 1,2 Read/Write 64 Mbit 115 120 1,2 R1 AVAV Cycle Time 128 Mbit 120 150 1,2 256 Mbit 125 1,2 32 Mbit 110 1,2 64 Mbit 115 120 1,2 R2 AVQV Address to Output
in „Passender Ersatz für Intel RC28F256J3C-125“ · Mikrocontroller und Digitale Elektronik ·