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Datei
gdb_log.txt
(0000ms, 1759ms total) 02-00000000-00-00002592-0050: TBA7FC700 002:593 JLINK_ReadReg(XPSR) returns 0x01000000 (0000ms, 1759ms total) 02-00000000-00-00002592-0054: TBA7FC700 002:593 JLINK_ReadReg(R15 (PC)) returns
in „Problem mit Breakpoints (Eclipse + JLink)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Interfacing_3V_Dataflash_Ap_Note.pdf
DataFlash then the circuit shown in Figure 8 will be more effective. 5 3297A–DFLSH–08/02 Figure 7. Maxim MAX3370 Voltage Level Translator 2.7V - 3.6V 4.5V - 5.5V V V V V CC L CC CC 5V CMOS DATAFLASH MAX3370 DEVICE SO DF I/DF I/OCMOS SICMOS GND GND The Maxim MAX3371 Logic The circuit illustrated in Figure 8
in „chip fehlt :(“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR506.pdf
-02/07 Table 5-1. ESR and load capacitance recommendation for 32.768 kHz crystals. Crystal CL [pF] Max ESR [kΩ] 6.5 60 9 35 Note: 1. The values stated are for an oscillator allowance safety margin of 5. Since the oscillator’s transconductance is temperature compensated one can use a safety margin of 4, thus giving a max ESR of 75 and 45 kΩ respectively. For examples of crystals that comply with the requirements see Appendix A. The startup times are also increased as shown in Table 5-2. Table 5-2. Startup times with
in „Bascom atmega169P“ · Mikrocontroller und Digitale Elektronik ·
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PDF
T2117_zero_switch.pdf
µF/ 1 Ramp 7 16 V VM= 230 V~ 10 V Synchronization Supply generator GND R5 MT2 12 kΩ 3 + 6 100 Ω MT1 max 4 + Full-wave logic - Comparator Pulse R3 100 kΩ amplifier min Reference voltage R 1.4 V T2117 6 18 kΩ N 2. Pin Configuration Figure 2-1. Pinning DIP8/SO8 1 8 VSYNC RAMP CRAMP 2 7 GND T2117 POSIN 3
in „Suche Steuerung für 2kW Heizwendel (230V)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
U2100B_Data_sheet.pdf
reference point pin 1, unless otherwise specified. Parameters Test Conditions Pin Symbol Min. Typ. Max. Unit S = 800 µA –V S 21 23 V Supply-voltage limitation I = 2 mA 2 –V 21.3 24 V S S Current consumption 3 = 0 –S 750 µA Supply-voltage Monitoring 2 ON-threshold –V S 15 V OFF-threshold –V 6.5 V S 8
in „Fehlersuche Steinel Bewegungsmelder“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
U2008b.pdf
see Figure 5-1 on page 7) Charge current Pin 7 Iϕ 1 100 µA Start voltage Pin 2 -V 1.85 1.95 2.05 V max 6 U2008B 4712B–AUTO–10/05 U2008B 5. Electrical Characteristics (Continued) Parameters Test Conditions Symbol Min. Typ. Max. Unit Temperature coefficient of start Pin 2 -TC -0.003 %/K voltage R Rϕ- reference
in „Phase Control IC u2008b“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet.pdf
point ground (–31), amb = 25°C, unless otherwise specified Parameters Test Conditions Symbol Min. Typ. Max. Unit Supply voltage range Pins 2, 6 VS(+49) 9 to 15 V Supply current Dark phase or stand-by, pins 2, 6 S 4.5 8 mA Supply current Bright phase, pins 2, 6 S 7.0 11 mA Saturation voltage Relay output
in „EMV - Blinkerrelais gestört“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
PT1000_500.ino
ADC_wert und R_REF wird der Widerstand PT_x ermittelt. Dabei verhalten sich PT_x/R_REF wie ADC_wert/(MAX_ADC-ADC_wert): PT_x = R_REF*ADC_WERT/(ADC_MAX-ADC_wert). Von PT_x muss noch der Zuleitungswiderstand R_ZULEITUNG abgezogen werden, sofern dieser >= 1 Ohm ist. Die Temperatur zu PT_x wird aus zwei Tabellen
in „PT1000, einfache Auswertung mit AVR (ATmega328)“ · Projekte & Code ·
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PDF
AVR051.pdf
external R and C to the AVR. Another desirable feature of the RC oscillator is short start-up time (max. 4 µs + 10 clock cycles) compared to a crystal oscillator. The drawbacks of an RC oscillator compared to a crystal oscillator are the frequency stability and power consumption (especially at high frequencies
in „AtMega32 mit Quarz betreiben. [siehe Bild]“ · Mikrocontroller und Digitale Elektronik ·
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PDF
u2010b.pdf
Supply 10 detector detector compensation High load voltage G N Automatic D retriggering 100% 70% α A max Output B 9 Phase Programmable Auto- Current control unit - 1 2 + overload start detector ϕ = f (4 ) Full wave protection C rectifier max 16 Pulse Voltage output monitoring U2010B 1 Load current Level
in „U2010B Softstart Funktion“ · Mikrocontroller und Digitale Elektronik ·
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PDF
avr446.pdf
• Linear speed control of stepper motor Microcontrollers - Control of acceleration, deceleration, max speed and number of steps to move • Driven by one timer interrupt • Full- or half-stepping driving mode • Supports all AVR® devices with 16bit timer Application Note • Demo application for ATmega48
in „Schrittmotor Softstart“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR446_Linear_speed_control_of_stepper_motor.pdf
• Linear speed control of stepper motor Microcontrollers - Control of acceleration, deceleration, max speed and number of steps to move • Driven by one timer interrupt • Full- or half-stepping driving mode • Supports all AVR® devices with 16bit timer Application Note • Demo application for ATmega48
in „rampenbrechnung für schrittmotor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
doc8017.pdf
• Linear speed control of stepper motor Microcontrollers - Control of acceleration, deceleration, max speed and number of steps to move • Driven by one timer interrupt • Full- or half-stepping driving mode • Supports all AVR® devices with 16bit timer Application Note • Demo application for ATmega48
in „Atmel Appnote AVR446 Hilfe lineare Geschwindigkeit“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR446.pdf
• Linear speed control of stepper motor Microcontrollers - Control of acceleration, deceleration, max speed and number of steps to move • Driven by one timer interrupt • Full- or half-stepping driving mode • Supports all AVR® devices with 16bit timer Application Note • Demo application for ATmega48
in „Atxmega Timer“ · Mikrocontroller und Digitale Elektronik ·
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PDF
24C32.pdf
Protection 2-Wire 32-Byte Page Write Mode (Partial Page Writes Allowed) Self-Timed Write Cycle (10 ms max) Serial EEPROM High Reliability – Endurance: 1 Million Write Cycles – Data Retention: 100 Years 32K (4096 x 8) Automotive Grade and Extended Temperature Devices Available 8-Pin JEDEC PDIP, 8-Pin JEDEC
in „EEproms 24C32 zu verschenken“ · Mikrocontroller und Digitale Elektronik ·
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Datei
KTY_tiny.c
dummy-ADC-Zyklus startet und die eff. Spannungen an ADC_REF (PB3) und PTC_IN (PB4) einliest. Die Ergebnisse ADC_max und ADC_werden anschliessend in der Funktion 'berechne_celsius()' per Tabelle ausgewertet und umgerechnet. Die Routine 'sende_werte()' erledigt die Ausgabe als ASCII Zeichenkette abgeschlossen mit CR
in „KTY81/PT1000 an Attiny mit ser. Ausgabe“ · Projekte & Code ·
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PDF
AT77C101B.pdf
dimensionsinmm) 0.3 A +0.07 17.51 -0.01 at 0.4height fromBref. 0.89±0.3 5.45±0.30 14 0.35 2.32±0.5 5.90max 2.95±0.50 9±0.5 A 1.66 +0.07 at 0.4height fromBref. -0.01 0.83±0.50 5.20max 0.2min 26.6±0.5 Dam&Fill B A 1.5max 0.2max 0.8 max 0.83±0.11 A Figure 16. Product Reference: AT77C101B-CB01Ι Bottom view (
in „Atmel Fingerchip —> welches Flexkabel?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at24c1024.pdf
, AI CC AC V CC = +2.7V to +5.5V (unless otherwise noted). Symbol Parameter Test Condition Min Typ Max Units V CC Supply Voltage 2.7 5.5 V ICC Supply Current VCC = 5.0V READ at 400 kHz 2.0 mA ICC Supply Current VCC = 5.0V WRITE at 400 kHz 5.0 mA VCC = 2.7V VIN V CCor VSS 3.0 µA ISB Standby Current VCC
in „i2c at24c1024 page P0“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Bildschirmfoto_2026-02-01_um_16.11.33.pdf
soldering, 10 seconds) leads Table 4. Recommended Conditions Of Use Parameter Symbol Comments Min Typ Max Unit Positive supply voltage VCC 3V 3.3V 3.6V V Front plane FPL Must be grounded GND V Digital input voltage CMOS levels V Digital output voltage CMOS levels V Digital load CL 50 pF C pF Analog load
in „Atmel Fingerchip —> welches Flexkabel?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Timer_-_AVR-AN130.pdf
falling edgP /256 CK2 1 1 1 External Pin Tx rising edgeP /1024 CK2 fCK (PCKx ⁄ PVal) PCKx TOV CK = MaxVal- = - -MaxVal - -= (PVal • MaxVal)- - -2) Assume that the CPU is running with CPU = 3.69 MHz and the resolution of the timer is 8 bit (MaxVal = 256). A prescale value of 64 will then cause the timer
in „Timererklärung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RTC_AVR.pdf
from 100 µAs to 7 µAs. Table 1. Current Consumption by the AVR Controller in Each Mode Mode Typical Max Active 4 MHz, 3.3CC 4 mA 6.0 mA Idle 4 MHz, 3.3CC 1.8 mA 2.0 mA Power-down 4 MHz, 3.3 V < 1.0 µA 2.0 µA CC Power-save 4 MHz, 3.3 V < 4.0 µA 6.0 µA CC Calculation Given the frequency of the watch crystal
in „Läuft der Timer während seinem Interrupt weiter?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
doc4834.pdf
otherwise specified, all values refer to GND pins. No. Parameters Test Conditions Pin Symbol Min. Typ. Max. Unit Type* 1 Current Consumption 1.1 Quiescent current VS VVS < 20V, INH = low 3 IVS 1 5 µA A 1.2 Quiescent current VCC 4.75 V < VVCC< 5.25V, 11 VCC 15 25 µA A INH = low 1.3 Supply current VS VVS <
in „DCC Decoder“ · Projekte & Code ·
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PDF
doc8002.pdf
code size and calibration cycles Device Calibration method Calibration Cycles Code size Simple search max 128 ~270 B ATmega3290 Binary search max 14 ~370 B Binary with neighbor search max 22 ~380 B Simple search max 128 ~240 B ATmega32 Binary search max 8 ~280 B Binary with neighbor search max 12 ~290 B
in „Genauigkeit interner Oszillator Mega8 ...“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AT25080A.pdf
Write Disable Instructions for Both Hardware and Software Data Protection Self-timed Write Cycle (5 ms max) EEPROMs High Reliability – Endurance: One Million Write Cycles 8K (1024 x 8) – Data Retention: 100 Years Automotive Grade, Extended Temperature, and Lead-free/Halogen-free 16K (2048 x 8) Devices Available
in „Atmel 25080A - SPI - AT89C51RB2“ · Mikrocontroller und Digitale Elektronik ·
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PDF
doc4779atr2406.pdf
protection ESD_anal V ESD_dig TBD V 5. Operating Range Parameters Symbol Min. Max. Unit Supply voltage VS 2.9 3.6 V Auxiliary regulator supply voltage V S_BATT 3.2 4.6 V Temperature ambient T –10 +60 °C amb Input frequency range RX 2400 2483 MHz 6. Electrical Characteristics VS=
in „Gauss Anpassung Register“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AT28BV16.pdf
100 A 2.0 V 4 AT28BV16 AT28BV16 AC Read Characteristics AT28BV16-25 AT28BV16-30 Symbol Parameter Min Max Min Max Units tACC Address to Output Delay 250 300 ns tCE(1) CE to Output Delay 250 300 ns (2) tOE OE to Output Delay 100 100 ns (3)(4) tDF CE or OE High to Output Float 0 55 0 55 ns t Output Hold from
in „Benötige Hilfe beim Auslesen eines NVRAM DS1742w-120 (Batronix BX48 Batego II)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR120.pdf
conversion curve 111 111 ½ LSB wide, 110 DNL = -½ LSB 110 e e o101 o 101 t100 t 100 t t u011 u 011 O O Max INL = +¾ LSB 010 010 1½ LSB wide, 001 DNL = +½ LSB 001 000 000 0/8 1/8 2/8 3/8 4/8 5/8 6/8 7/8 AREF 0/8 1/8 2/8 3/8 4/8 5/8 6/8 7/8 AREF Analog input Analog input (A) (B) Differential non-linearity
in „ATtiny15 ADC differential“ · Mikrocontroller und Digitale Elektronik ·
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PDF
doc2559.pdf
conversion curve 111 111 110 ½ LSB wide, 110 DNL = -½ LSB d 101 d101 c c u 100 u100 t t u 011 u011 O O Max INL = +¾ LSB 010 010 1½ LSB wide, 001 DNL = +½ LSB 001 000 000 0/8 1/8 2/8 3/8 4/8 5/8 6/8 7/8 AREF 0/8 1/8 2/8 3/8 4/8 5/8 6/8 7/8 AREF Analog input Analog input (A) (B) 2.7.1 Differential non-linearity
in „ADC-Wert nicht linear beim Einlesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at27c512.pdf
Features • Fast Read Access Time - 45 ns • Low-Power CMOS Operation – 100 A max. Standby – 20 mA max. Active at 5 MHz • JEDEC Standard Packages – 28-Lead 600-mil PDIP – 32-Lead PLCC – 28-Lead TSOP and SOIC • 5V ± 10% Supply • High-Reliability CMOS Technology 512K (64K x 8) – 2,000V
in „Eprom Vergleichstyp“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PHI.pdf
KTY81-110 KTY81-120 RESISTANCE RESISTANCE ( ) TEMP. ( ) TEMP. (°C) (°F) (%/K) ERROR ERROR MIN. TYP. MAX. (K) MIN. TYP. MAX. (K) −55 −67 0.99 475 490 505 ±3.02 470 490 510 ±4.02 −50 −58 0.98 500 515 530 ±2.92 495 515 535 ±3.94 −40 −40 0.96 552 567 582 ±2.74 547 567 588 ±3.78 −30 −22 0.93 609 624 638 ±2.55
in „Genauere Messung der Temperatur“ · Mikrocontroller und Digitale Elektronik ·
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PDF
doc4688.pdf
0V, Tamb= –40°C to 85°C unless otherwise specified Parameters Test Conditions Pin Symbol Min. Typ. Max. Unit Power Supply Operating voltage at V V 2.0 6.5 V Batt Batt Operating voltage at DD during V Batt battery supply VDDB V V SD V DD-limiter voltage during coil supply VDDC 2.6 2.9 3.2 V Operating
in „Die I2C Schnittstelle eines PIC16F876A initialisieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR335.pdf
1456C–AVR–04/05 AVR335 This is done by downshifting the whole signal and discarding the part above the “max” value (Figure 5). Figure 2. Time Discrete Signal X(t) n 0 1 2 3 4 5 6 7 8 9 Figure 3. Quantized Signal X(t) 9 8 7 6 5 4 3 2 1 1 2 3 4 5 6 7 8 9 n 0 Figure 4. Digital Signal X(t) 9 8 7 6 5 4 3 2 1 n 0 1 2 3 4 5 6 7 8 9 Figure 5. Bit-reduced Digital Signal X(t) 9 8 7 max 6 5 4 3 2 1 1 2 3 4 5 6 7 8 9 n 0 3 1456C–AVR–04/05 In this application the resulting signal has 8 bits. This signal can now be stored in the DataFlash. The DataFlash does not require a separate erase
in „PWM zur Tonausgabe auf einem Lautsprecher Mega8“ · Mikrocontroller und Digitale Elektronik ·
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PDF
atmel-flash-speicher.pdf
AT49F512 AT49F512 AC Read Characteristics AT49F512-50 AT49F512-70 AT49F512-90 Symbol Parameter Min Max Min Max Min Max Units tACC Address to Output Delay 50 70 90 ns tCE(1) CE to Output Delay 50 70 90 ns (2) tOE OE to Output Delay 30 35 0 40 ns (3)(4) tDF CE or OE to Output Float 0 25 0 25 0 25 ns t
in „Speicher für Messwerte“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR309_doc2556.pdf
PRELIMINARY-AVR-01/04 AVR309 Figure 1. Low Speed Driver Signal Waveforms One Bit Time (1.5Mb/s) V SE(max) Signal pins pass output Driver spec levels Signal Pins reflections and ringing VSE(min) VSS Figure 2. Packet Transaction Voltage Levels VOH (min) VSE (max) V (min) SE VOL (max) V SS Bus Idle SOP First
in „Programmer incl. neuem Code für Atmel AN910“ · Projekte & Code ·
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PDF
28c64.pdf
AT28C64B AT28C64B AC Read Characteristics AT28C64B-15 AT28C64B-20 AT28C64B-25 Symbol Parameter Min Max Min Max Min Max Units tACC Address to Output Delay 150 200 250 ns tCE(1) CE to Output Delay 150 200 250 ns (2) tOE OE to Output Delay 0 70 0 80 0 100 ns (3)(4) tDF CE or OE to Output Float 0 50 0 55
in „Z80/UA880D mit 28C64 startet nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
doc2585.pdf
the requirements on the timing are inverted as well. The minimum times of the master mode are now max- imum times and vice versa. SPI Transmission A write collision occurs if the SPDR is written while a transfer is in progress. Since this Conflicts register is just single buffered in the transmit direction
in „daten via SPI uebertragen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM94022.pdf
to 5.5V ±1.5 °C (max) GS0=0 TA= +0°C to +70°C; V DD = 2.4V to 5.5V ±1.8 °C (max) T = +0°C to +90°C; V = 2.4V to 5.5V ±2.1 °C (max) A DD TA= +0°C to +120°C; V DD = 2.4V to 5.5V ±2.4 °C (max) TA= +0°C to +150°C; V DD = 2.4V to 5.5V ±2.7 °C (max) TA= −50°C to +0°C; V DD = 3.0V to 5.5V ±1.8 °C (max) GS1=1 T = +20°C to +40°C; V = 2.7V to 5.5V ±1.5 °C (max) A DD GS0=1 TA= +0°C to +70°C; V DD = 3.0V to 5.5V ±1.8 °C (max) TA= +0°C to +90°C; V DD
in „Suche nach einem Temperatursensor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at27c256.pdf
AT29C256 AC Read Characteristics AT29C256-70 AT29C256-90 AT29C256-12 AT29C256-15 Symbol Parameter Min Max Min Max Min Max Min Max Units tACC Address to Output Delay 70 90 120 150 ns tCE(1) CE to Output Delay 70 90 120 150 ns (2) tOE OE to Output Delay 0 40 0 40 0 50 0 70 ns (3)(4) tDF CE or OE to Output
in „AT27C256 Was kann man damit Anstellen???“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at29c010.pdf
AT29C010A AC Read Characteristics AT29C010A-70 AT29C010A-90 AT29C010A-12 AT29C010A-15 Symbol Parameter Min Max Min Max Min Max Min Max Units t Address to Output Delay 70 90 120 150 ns ACC t (1) CE to Output Delay 70 90 120 150 ns CE tOE(2) OE to Output Delay 0 35 0 40 0 50 0 70 ns tDF(3)(4) CE or OE to Output
in „Beschaltung AT29C010 /Pulldowns?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
st7565r.pdf
D6 1375 392 69 TEST[1] -1611 392 22 D7 1315 392 70 TEST[2] -1685 392 23 VDD 1255 392 71 TEST[3] -1759 392 24 VDD2 1195 392 72 TEST[4] -1833 392 25 VDD2 1135 392 73 TEST[5] -1907 392 26 VSS 1075 392 74 VDD -1974 392 27 VSS 1015 392 75 MS -2034 392 28 VSS 955 392 76 CLS -2094 392 29 VSS 895 392 77 C86
in „Neue DOG LCD-Grafikmodule SPI ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
db_lcd-controller-ST7565R.pdf
D6 1375 392 69 TEST[1] -1611 392 22 D7 1315 392 70 TEST[2] -1685 392 23 VDD 1255 392 71 TEST[3] -1759 392 24 VDD2 1195 392 72 TEST[4] -1833 392 25 VDD2 1135 392 73 TEST[5] -1907 392 26 VSS 1075 392 74 VDD -1974 392 27 VSS 1015 392 75 MS -2034 392 28 VSS 955 392 76 CLS -2094 392 29 VSS 895 392 77 C86
in „G-LCD ST756-Controller , Schriftart und einzelne Pixel ansteuern.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AT24C01A_02_04_08_16__2001_.pdf
Random Read (* = DON’T CARE bit for 1K) Figure 6. Sequential Read 9 AT24C01A Ordering Information tWR(max) ICC(max) ISB(max) MAX (ms) (µA) (µA) (kHz) Ordering Code Package Operation Range 10 3000 18 400 AT24C01A-10PC 8P3 Commercial AT24C01A-10SC 8S1 (0°C to 70°C) AT24C01A-10TC 8T 3000 18 400 AT24C01A-10PI
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PDF
Datenblatt.pdf
(°C) (°F) (%/K) Resistance ( ) Temperature Resistance ( ) Temperature error (K) error (K) Min Typ Max Min Typ Max −55 −67 0.99 475 490 505 ±3.02 470 490 510 ±4.02 −50 −58 0.98 500 515 530 ±2.92 495 515 535 ±3.94 −40 −40 0.96 552 567 582 ±2.74 547 567 588 ±3.78 −30 −22 0.93 609 624 638 ±2.55 603 624
in „KTY82/120,215“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AT89C2051.pdf
Clock Drive Waveforms External Clock Drive VCC = 2.7V to 6.0V VCC = 4.0V to 6.0V Symbol Parameter Min Max Min Max Units 1/tCLCL Oscillator Frequency 0 12 0 24 MHz tCLCL Clock Period 83.3 41.6 ns t High Time 30 15 ns CHCX t Low Time 30 15 ns CLCX tCLCH Rise Time 20 20 ns tCHCL Fall Time 20 20 ns 10 AT89C2051
in „Hilfe AT89C2051 will nicht !!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
doc7627.pdf
center CMS mount 31 1 U1 AT90USB1287 QFN64 32 2 U2,U3 AT45DB642D CASON8 33 1 U4 LP3982IMM-ADJ Vin Max 6V, 300mA MSOP8 34 1 U6 LM340MP5.0 35 1 Y1 8MHz CRYSTAL H=4mm HC49/4H AT90USBKey Hardware User Guide 6-21 7627A–AVR–04/06 Atmel Corporation Atmel Operations 2325 Orchard Parkway Memory RF/Automotive
in „Problem mit dem TC4469“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR_ISP_USER_GUIDE.PDF
Colorado Springs, CO 80906 TEL (408) 441-0311 TEL (719) 576-3300 FAX (408) 487-2600 FAX (719) 540-1759 Europe Atmel Rousset Atmel SarL Zone Industrielle Route des Arsenaux 41 13106 Rousset Cedex Casa Postale 80 France CH-1705 Fribourg TEL (33) 4-4253-6000 Switzerland FAX (33) 4-4253-6001 TEL (41) 26-
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PDF
doc1921.pdf
Program and Data Memory Characteristics 12 MHz Oscillator Variable Oscillator Symbol Parameter Min Max Min Max Units 1/tCLCL Oscillator Frequency 0 33 MHz tLHLL ALE Pulse Width 127 2tCLCL-40 ns tAVLL Address Valid to ALE Low 43 tCLCL25 ns tLLAX Address Hold After ALE Low 48 tCLCL25 ns tLLIV ALE Low to
in „ne frage zu AT89C55WD“ · Mikrocontroller und Digitale Elektronik ·
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PDF
471D81B8d01.pdf
characteriza- tion of other AVR microcontrollers manufactured on the same process technology. Min and Max values will be available after the device is characterized. 4 ATmega8(L) 2486MS–AVR–12/03 ATmega8(L) Pin Descriptions VCC Digital supply voltage. GND Ground. Port B (PB7..PB0) XTAL1/ Port B is an 8-
in „Motorregelung für Fußballroboter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR450_BattCharger.pdf
voltage: V = 0.5V sat Input voltage: V = 15V I Output voltage: V = 1.5V O Maximum output current: IO,max= 1.5A 8-bit PWM: 510 T = = 69.199ms OSC With duty cycle of 50%: 69.199ms on = = 34.60ms 2 Inductance: VI -VsatV 0 on 15V -0.5V -1.5V 34.m0 s L = = =149.9mH 2Io,max 2×1.5A 9 1659B–AVR–11/02 t = L ×2×
in „Pb-Akku Ladegerät mit µP Selbstgemacht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AT45DB161B.pdf
Features • Single 2.5V - 3.6V or 2.7V - 3.6V Supply Serial Peripheral Interface (SPI) Compatible 20 MHz Max Clock Frequency Page Program Operation – Single Cycle Reprogram (Erase and Program) – 4096 Pages (528 Bytes/Page) Main Memory Supports Page and Block Erase Operations Two 528-byte SRAM Data Buffers