-
PDF
BAS70_1PS7XSB70_SER.pdf
diodes 1.4 Quick reference data Table 2. Quick reference data Symbol Parameter Conditions Min Typ Max Unit Per diode IF forward current - - 70 mA V F forward voltage IF= 1 mA [1]- - 410 mV V R reverse voltage - - 70 V [1] Pulse test:pt ≤ 300 μs; δ ≤ 0.02. 2. Pinning information Table 3. Pinning Pin
in „[S] BAT54C Schottky“ · Markt ·
-
PDF
LT3582-12_Datasheet.pdf
noted. (Note 3) A IN SHDN IN Switching Regulator Characteristics SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS TON_MAX MaximumSwitch On-Time Inverting and Boost Switches 10 μs l ILIMIT_P Boost Switch Current Limit 285 350 430 mA ILIMIT_N Inverting Switch Current Limit l 490 600 720 mA R ON_P Boost Switch
in „Stromverbrauch einer Schaltung“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
3703fc.pdf
average inductor current can be calculated from: C2= 1 2π•f•G•R1 I = IO(MAX) =I • VO L(MAX) 1−D MAX O(MAX) VIN(MIN) C1=C2 K(1 ) K R2= Similar to a buck converter, choose the ripple current to 2π•f•C1 be 20% to 40% of IL(MAX). The ripple current amplitude R1 then determines
in „Längs- oder Querregler 40V 250W als Überspannungsschutz für Tiefstellsetzer“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
foo.dwarf-3.txt
: .string "UINT_LEAST16_MAX UINT16_MAX" .LASF1630: .string "pgm_read_word_near(address_short) __LPM_word((uint16_t)(address_short))" .LASF441: .string "UINT16_MAX (__CONCAT(INT16_MAX, U) * 2U + 1U)" .LASF434: .string "__CONCATenate
in „Simple C Frage zum Typ enum“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
h5062_1_.pdf
Ve 2.4V, Te25 §,Figure 1, unless otherwise specified.) CC IN j Symbol Parameter Conditions Min Typ Max Units I Supply Current CC Off VINe 0V 11 23 mA Peak Pin 8e 0V 28 54 mA Hold Pin 8 Open 16 26 mA V Input On Level V e 5.5V 1.4 2.4 V OH CC VCC e 3.0V 1.2 1.6 V VOL Input Off Level VCC e 5.5V 1.0 1.35
in „Einspritzventil mit MOSFET schalten“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Carel-NTC.pdf
NTC 10K@25°C ß 3435 Temp. Valeur de résistance Temp. Valeur de résistance Temp. Valeur de résistance Max. Typique Min. Max. Typique Min. Max. Typique Min. °C KΩ KΩ KΩ °C KΩ KΩ KΩ °C KΩ KΩ KΩ -50 344,60 329,50 314,90 1 26,65 26,13 25,62 56 3,50 3,43 3,35 -49 325,00 310,90 297,30 2 25,52 25,03 24,55 57 3,39
-
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 ·
-
PDF
LT1302_2Cells_to_5V_600mA.pdf
CHARACTERIST DC E IC ICS T A 25°C, V =IN.5V, unless otherwise noted. SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS IQ Quiescent Current VSHDN= 0.5V, FB= 1.3V 200 300 A VSHDN= 1.8V 15 25 A VIN Input Voltage Range 2.0 V 2.2 8 V V Feedback Voltage (LT1302) V = 0.4V 1.22 1.24 1.26 V FB C Feedback Pin Bias Current
in „Welcher DC-DC-Converter“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
lt1302-1605370.pdf
CHARACTERIST DC E IC ICS T A 25°C, V =IN.5V, unless otherwise noted. SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS IQ Quiescent Current VSHDN= 0.5V, FB= 1.3V 200 300 A VSHDN= 1.8V 15 25 A VIN Input Voltage Range 2.0 V 2.2 8 V V Feedback Voltage (LT1302) V = 0.4V 1.22 1.24 1.26 V FB C Feedback Pin Bias Current
in „[V] Konvolut (16) ältere LinearTech StepUps LT1302, 1305, SO8 (10€)“ · Markt ·
-
PDF
lt1302.pdf
CHARACTERIST DC E IC ICS T A 25°C, V =IN.5V, unless otherwise noted. SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS IQ Quiescent Current VSHDN= 0.5V, FB= 1.3V 200 300 A VSHDN= 1.8V 15 25 A VIN Input Voltage Range 2.0 V 2.2 8 V V Feedback Voltage (LT1302) V = 0.4V 1.22 1.24 1.26 V FB C Feedback Pin Bias Current
in „[V] kleines Konvolut ältere DIL / DIP ICs (8€)“ · Markt ·
-
Datei
PowerSDR_database_export_18.09.2010_18.27.xml
CompanderLevel>2</CompanderLevel> <MicGain>5</MicGain> <Lev_On>true</Lev_On> <Lev_Slope>0</Lev_Slope> <Lev_MaxGain>5</Lev_MaxGain> <Lev_Attack>2</Lev_Attack> <Lev_Decay>500</Lev_Decay> <Lev_Hang>500</Lev_Hang> <Lev_HangThreshold>0</Lev_HangThreshold> <ALC_Slope>0</ALC_Slope> <ALC_MaxGain>-20</ALC_MaxGain> <ALC_Attack
-
PDF
recommended.pdf
maintain regulation depends on the load current and output voltage, and is calculated as: V Iin = V O max + I O max× r( DS(on) max + R (L) ) (2) with: IOmax = maximum output current plus inductor ripple current r max = maximum P-channel switch r DS(on) DS(on) R (L) dc resistance of the inductor V Oax =
in „Kurz vorm Verzweifeln“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
TPS6211.pdf
maintain regulation depends on the load current and output voltage, and is calculated as: V Iin = V O max + I O max× r( DS(on) max + R (L) ) (2) with: IOmax = maximum output current plus inductor ripple current r max = maximum P-channel switch r DS(on) DS(on) R (L) dc resistance of the inductor V Oax =
in „DC DC Wandler Pins“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
TPS6211.pdf
maintain regulation depends on the load current and output voltage, and is calculated as: V Iin = V O max + I O max× r( DS(on) max + R (L) ) (2) with: IOmax = maximum output current plus inductor ripple current r max = maximum P-channel switch r DS(on) DS(on) R (L) dc resistance of the inductor V Oax =
-
PDF
TPS6211.pdf
maintain regulation depends on the load current and output voltage, and is calculated as: V Iin = V O max + I O max× r( DS(on) max + R (L) ) (2) with: IOmax = maximum output current plus inductor ripple current r max = maximum P-channel switch r DS(on) DS(on) R (L) dc resistance of the inductor V Oax =
in „QFN Gehäuse.“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
TPS6211.pdf
maintain regulation depends on the load current and output voltage, and is calculated as: V Iin = V O max + I O max× r( DS(on) max + R (L) ) (2) with: IOmax = maximum output current plus inductor ripple current r max = maximum P-channel switch r DS(on) DS(on) R (L) dc resistance of the inductor V Oax =
in „Trennung von analoger und digitaler Spannung“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Voltageinverter.pdf
otherwise specified: V+ = 5V, FC = Open, C1= C 2 47 μF.(Note 4) Symbol Parameter Condition Min Typ Max Units V+ Supply Voltage R L 1k Inverter, LV = Open 3.5 5.5 Inverter, LV = GND 1.5 5.5 V Doubler, LV = OUT 2.5 5.5 IQ Supply Current No Load FC = V+ (LM2662) 1.3 4 LV = Open SD = Ground (LM2663) mA FC
in „Das große ADC Quiz“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
SerialComInstruments.ini
[FormMain] FormVersion=0 ShowCmd=3 Flags=2 PixelsPerInch=96 MinMaxPos(2560x1024)=-1,-1,-1,-1 MinMaxPos=-1,-1,-1,-1 NormPos(2560x1024)=63,160,1217,864 NormPos=63,160,1217,864 [FormMain\C:\Users\Anwender\AppData\Local] ColorBoxShowFarbeVon_Selected=clSilver ComPort1_
in „Projekt: Virtuelle Instrumente an serielle Schnittstelle“ · Projekte & Code ·
-
PDF
AN1010.pdf
14 11 21 PD1 (TX) 22 pF EXTAL 7 TxD 13 12 20 PD0 (RX) + 1 10 M 8 MHz CTS C1 MC68HC11A1 XTAL 8 DSR 3 MAX232 52-PIN PLCC + 4 22 pF DCD DTR C2 5 3 MODA 0 V 15 2 GND MODB V RESET 17 2 + 6 DD 0 V C3 C4 26 4.7 k 1 µF + 0 V 0.1 µF C1, C2, C3, C4 — 22 mF, 25-V aluminum or tantalum CERAMIC +5 V Note: To improve
in „Programm zum MC68HC11 auslesen und programmieren“ · Mikrocontroller und Digitale Elektronik ·
-
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 ·
-
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 ·
-
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 ·
-
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 ·
-
PDF
preis2024.pdf
max. Länge [mm] 200 500 750 1250 ISO Preis [€] 7,23 10,85 14,48 28,95 ISO Artikel-Nr. 1730 1731 1732 1733 3.1.3 Sinuslineale Genauigkeit des PrüflingsDIN 2273 Prüfungsrichtlinie: DIN 2273 max. Länge [mm
in „PeakTech 365eff“ · Analoge Elektronik und Schaltungstechnik ·
-
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 ·
-
PDF
harman_kardon_hkts200-230_hkts210-230_sub.pdf
XNL000003-0002 HOT MELT GLUE #1-286 D11.2mm KG XNL500006-0001 PVC GLUE KG XNJA21206-0011 STAPLE FOR C803/5/7/9 STEEL PLATE ZINC PC 4 DWT000012-0900 GP WIRE TIE GT-90M 90mm PC 2 XTP020300-0001 PE PROTECTIVE SHEET W300xT0.05mm RL XNB000008-0001 THINNER MEK丁酮 18L/PAILFUL L IVHA12002-0001 HKTS30-SEAL PE PAD
in „Überspannung Herman Kardon Subwoofer“ · Analoge Elektronik und Schaltungstechnik ·
-
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 ·
-
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 ·
-
PDF
Gewinde.pdf
1" 25 33,249 30,291 11 2,309 R 1 1/4" Rp 1 1/4" 32 41,910 38,952 11 2,309 R 1 1/2" Rp 1 1/2" 40 47,803 44,845 11 2,309 R 2" Rp 2" 50 59,614 56,656 11 2,309 R 2 1/2" Rp 2 1/2" 65 75,184 72,226 11 2,309 R 3" Rp 3" 80 87,884 84,926 11 2,309 R 4" Rp 4" 100 113,030 110,072 11 2,309 R 5" Rp 5" 125 138,430
-
Datei
dmesg_complete.txt
latency timer to 64 [ 1.073160] scsi0 : ata_piix [ 1.073244] scsi1 : ata_piix [ 1.074293] ata1: SATA max UDMA/133 cmd 0xb000 ctl 0xac00 bmdma 0xa480 irq 19 [ 1.074297] ata2: SATA max UDMA/133 cmd 0xa880 ctl 0xa800 bmdma 0xa488 irq 19 [ 1.074316] ata_piix 0000:00:1f.5: PCI INT B -> GSI 19 (level, low) -
in „Pollin - Receiver-Mainboard mit Twin DVB-[T,C] Tuner, NXP PNX8950EH“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Datenblatt_AT89S52.PDF
4.0V to 5.5V and Load Capacitance = 80 pF. CC 12 MHz Osc Variable Oscillator Symbol Parameter Min Max Min Max Units tXLXL Serial Port Clock Cycle Time 1.0 12 CLCL µs tQVXH Output Data Setup to Clock Rising Edge 700 10 tCLCL-133 ns tXHQX Output Data Hold After Clock Rising Edge 50 2 CLCL-80 ns tXHDX
in „AT89S52 Port 0 als I/0-Port“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Datenblatt_AT89S52.PDF
4.0V to 5.5V and Load Capacitance = 80 pF. CC 12 MHz Osc Variable Oscillator Symbol Parameter Min Max Min Max Units tXLXL Serial Port Clock Cycle Time 1.0 12 CLCL µs tQVXH Output Data Setup to Clock Rising Edge 700 10 tCLCL-133 ns tXHQX Output Data Hold After Clock Rising Edge 50 2 CLCL-80 ns tXHDX
in „serielle Ausgaben auf AT89S52 Baud-Raten-Generator startet nicht“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
kendryte_datasheet_20181011163248_en.pdf
function I input O output I/O input/output S power supply 2.3 Power Supplies Supply Name Voltage( V) Max Current ( mA) I/O 3.3V/1.8V VDDIO0A 3.3/1.8V*1 200 I/O 3.3V/1.8V VDDIO1A 3.3/1.8V 200 I/O 3.3V/1.8V VDDIO2A 3.3/1.8V 200 I/O 3.3V/1.8V VDDIO3B 3.3/1.8V 200 I/O 3.3V/1.8V VDDIO4B 3.3/1.8V 200 I/O 3.3V
in „RiscV Maixduino“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Bluetooth-Modul_PAN1x55__BlueMod_P2xG2__Test-Report-1097464.pdf.pdf
described in detail in the Annex of the testreport Conducted measurements are valid for both types Max. power radiated: 4.5 dBm EIRP (GFSK) internal antenna Max. power radiated: 7.9 dBm EIRP (GFSK) external antenna Max. power conducted: 4.9 dBm (GFSK) FCC ID: T7V-BC06 IC: 216Q-BC06 2009-03-11 Page 6
in „Bluetooth-Modul "BlueMod+P25" von Stollmann - Ersatztyp“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
DDS.vhd
= DIN_CNT_MAX-1) then ROMADDR <= ADDRESS; -- clocked address --> BRAM end if; end if; end process; -- 1 clock cycle latency caused by BROM process begin wait until rising_edge(CLK); if BCK = '1' then if (DIN_CNT = DIN_CNT_MAX-1) then SIGN <= ACCUM(ACCUM'left); end if; end if; end process; QUADRANT <= ACCUM(ACCUM'left-1); RESULT <= signed(sine_LUT(ROMADDR)); ADDRESS <= to_integer(ACCUM(ACCUM'high-2 downto ACCUM'high-11))
in „DDFS von Lothar Miller ich steh aufm Schlauch“ · FPGA, VHDL & Co. ·
-
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
-
PDF
Powermeter.pdf
mechanism is illustrated in Figure 7. 13 2566A-AVR-07/04 Figure 7. Extended Timer/Counter Operation. MAX TCNT1 TC1extREM OCR1B OCR1A MAX ($FFFF) MAX ($FFFF) TC1extREM MAX ($FFFF) TC1ext 0 1 TC1extTOP TC1extTOP+1 0 O(EP) Display Pulse Outputs For each energy pulse emitted, an internal pulse counter is increased
in „230V Leistung erfassen mit ATmega128“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
volt230.pdf
mechanism is illustrated in Figure 7. 13 2566A-AVR-07/04 Figure 7. Extended Timer/Counter Operation. MAX TCNT1 TC1extREM OCR1B OCR1A MAX ($FFFF) MAX ($FFFF) TC1extREM MAX ($FFFF) TC1ext 0 1 TC1extTOP TC1extTOP+1 0 O(EP) Display Pulse Outputs For each energy pulse emitted, an internal pulse counter is increased
in „Netzteil ohne Trafo“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
energymeter.pdf
mechanism is illustrated in Figure 7. 13 2566A-AVR-07/04 Figure 7. Extended Timer/Counter Operation. MAX TCNT1 TC1extREM OCR1B OCR1A MAX ($FFFF) MAX ($FFFF) TC1extREM MAX ($FFFF) TC1ext 0 1 TC1extTOP TC1extTOP+1 0 O(EP) Display Pulse Outputs For each energy pulse emitted, an internal pulse counter is increased
in „Leistungsmessung über Shunt?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
doc2566.pdf
mechanism is illustrated in Figure 7. 13 2566A-AVR-07/04 Figure 7. Extended Timer/Counter Operation. MAX TCNT1 TC1extREM OCR1B OCR1A MAX ($FFFF) MAX ($FFFF) TC1extREM MAX ($FFFF) TC1ext 0 1 TC1extTOP TC1extTOP+1 0 O(EP) Display Pulse Outputs For each energy pulse emitted, an internal pulse counter is increased
in „Cadsoft Eagle“ · Platinen ·
-
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 ·
-
PDF
VotraxEmuf.pdf
========= 0000 ; 0000 PA0 =$03 0000 PA1 =$3E 0000 PA =$800 0000 PAD =$801 0000 PB =$802 0000 PBD =$803 0000 TIHEW =$814 0000 TIMER =$815 0000 0000 *=0 ;ZERO PAGE 0000 BASP *=*+1 0001 PITCH *=*+1 0002 SPELL *=*+1 0003 PHONF *=*+1 0004 CODEF *=*+1 0005 PTB *=*+1 0006 PTB1 *=*+1 0007 PTX *=*+1 0008 PTY
in „UAA1003 Geheimnis lüften“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
20240122_Waasner_Katalog.pdf
aus der nachstehenden For details please refer to the following checklist: Bandbreite: min. 10 mm max. 400 mm Strip width: min. 10 mm max. 400 mm Checkliste: Streifenlänge: min. 20 mm max. 3000 mm Strip length: min. 20 mm max. 3000 mm Lochdurchmesser min. 4,5 max. 28 mm Hole diameter: min. 4.5 mm max. 28 mm Bandbreite: min. 10 mm max. 400 mm Strip width: min. 10 mm max. 400 mm AnzahStreifenlänge: enen Lmin. 20 mm ser: max. 3000 mmmax. 3 NumbStrip length: t diamemin. 20 mm max. 3000 mm max. 3 Materialstärke 0,27 / 0,30 / 0,35 / 0,50
in „Was ist aus dem Transduktor geworden?“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
datei-dmesg.txt
device (0005 -> 0007) [ 0.573199] scsi0 : ata_piix [ 0.573536] scsi1 : ata_piix [ 0.573607] ata1: PATA max UDMA/100 cmd 0x1f0 ctl 0x3f6 bmdma 0x1860 irq 14 [ 0.573611] ata2: PATA max UDMA/100 cmd 0x170 ctl 0x376 bmdma 0x1868 irq 15 [ 0.574328] libphy: Fixed MDIO Bus: probed [ 0.574560] tun: Universal TUN/TAP device driver, 1.6 [ 0.574562] tun: (C) 1999-2004 Max Krasnyansky <maxk@qualcomm.com> [ 0.574786] PPP generic driver version 2.4.2 [ 0.574982] ehci_hcd: USB 2.0 'Enhanced' Host Controller (EHCI) Driver [ 0.575023] ehci-pci: EHCI PCI platform driver [ 0.575349
in „Limux:: Netzwerk und WLAN futsch.“ · PC Hard- und Software ·
-
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 ·
-
PDF
AT89S8252_Datasheet_doc0401.pdf
= 80 pF. External Program and Data Memory Characteristics Variable Oscillator Symbol Parameter Min Max Units 1/CLCL Oscillator Frequency 0 24 MHz LHLL ALE Pulse Width 2CLCL - 40 ns AVLL Address Valid to ALE Low tCLCL- 13 ns LLAX Address Hold after ALE Low tCLCL- 20 ns LLIV ALE Low to Valid Instruction
in „lichtschranke mit zählfunktion einer umdrehung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AT89S8252.pdf
= 80 pF. External Program and Data Memory Characteristics Variable Oscillator Symbol Parameter Min Max Units 1/CLCL Oscillator Frequency 0 24 MHz LHLL ALE Pulse Width 2CLCL - 40 ns AVLL Address Valid to ALE Low tCLCL- 13 ns LLAX Address Hold after ALE Low tCLCL- 20 ns LLIV ALE Low to Valid Instruction
in „UART_ Werte empfangen???“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AT89S8252.pdf
= 80 pF. External Program and Data Memory Characteristics Variable Oscillator Symbol Parameter Min Max Units 1/CLCL Oscillator Frequency 0 24 MHz LHLL ALE Pulse Width 2CLCL - 40 ns AVLL Address Valid to ALE Low tCLCL- 13 ns LLAX Address Hold after ALE Low tCLCL- 20 ns LLIV ALE Low to Valid Instruction
in „I2C Anschluß AT89S8252“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
doc0401.pdf
= 80 pF. External Program and Data Memory Characteristics Variable Oscillator Symbol Parameter Min Max Units 1/CLCL Oscillator Frequency 0 24 MHz LHLL ALE Pulse Width 2CLCL - 40 ns AVLL Address Valid to ALE Low tCLCL- 13 ns LLAX Address Hold after ALE Low tCLCL- 20 ns LLIV ALE Low to Valid Instruction
in „IDE für 8051“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
TE28F128J3D75.pdf
Characteristics (Sheet 1 of 2) VCCQ 2.7 - 3.6V VCC 2.7 - 3.6V Test Conditions Notes Symbol Parameter Typ Max Unit I Input and V Load Current ±1 μA VCC = VCC Max; VCCQ = VCCQ Max 1 LI PEN VIN = VCCQ or SS VCC= V CCMax; V CCQ= V CCQ Max LO Output Leakage Current ±10 μA VIN = VCCQ or SS 1 32, 64, 128 Mbit 50