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PDF
Heiz702.pdf
Maximale Vorlauftemp. Mischer 1 0005 | 04INC | S_FAKT Faktor Schnellaufheizung VTR1 0006 | 15 °C | SH_max maximale Schnellaufheizung VTR1 0007 | 10 °C | Absenk Schnellabsenkung VTR1 0008 | 60 s | Mi_per Mischerperiode in Sekunden 0008 | 20 s | Mi_max max. Mischeransteuerung/Periode 0010 | 25 °C | TKmin
in „Heizungssteuerung elektor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
isco_3700.pdf
FIRSTGROUPSAMPLE Display#12 Display#23 [TIME,FLOW,STORM] Storm TAKE--TIMED PACEDSAMPLING SAMPLEEVENTS (1-MAX) Display#24 SAMPLEINTERVALSOF --MINUTES (1-999) Display#30 __BOTTLESPER SAMPLEEVENT (1-MAX) Display#31 __SAMPLESPER BOTTLE (1-MAX) Display#50 SAMPLEVOLUMESOF ---mlEACH (10-MAX) SecondBottleGroup --BOTTLES
in „Reparatur Motorsteuerung, Probennehmer“ · Mikrocontroller und Digitale Elektronik ·
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PDF
A300_ATMEGA8xxx.pdf
to eight bits. In phase correct PWM mode the counter is incremented until the counter value matches MAX. When the counter reaches MAX, it changes the count direction. The TCNT2 value will be equal to MAX for one timer clock cycle. The timing diagram for the phase correct PWM mode is shown on Figure 51
in „atMega8-16 Au beschreiben“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATmega8.pdf
contains timing data for basic Timer/Counter operation. The figure shows the count sequence close to the MAX value. 70 ATmega8(L) 2486Z–AVR–02/11 ATmega8(L) Figure 28. Timer/Counter Timing Diagram, No Prescaling clkI/O clkTn (clI/O1) TCNTn MAX - 1 MAX BOTTOM BOTTOM + 1 TOVn Figure 29 shows the same timing
in „Mikrocontroller und 15'' TFT LCD“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TRC103_Transceiver_RFM_121129.pdf
0.5 0.8 863 - 870 Frequency Range 902 - 928 MHz 950 - 960 Table 51 SPI TIMING PARAMETER SYM MIN TYP MAX UNITS DESCRIPTION SCK for SPI_CONFIG - - 6 MHz Max clock freq SCK for SPI_DATA - - 1 MHz Max clock freq ns SPI_CONFIG setup time SPI_CONFIG T SU_SDI 250 - - SPI_DATA T SU_SDI 312 - - ns SPI_DATA setup
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PDF
KS0713.pdf
→ 17.0V 3.1 Power consumption: 100 μA → 80μA Oscillator frequency (1): 19 ( Min.) →17 (Min.), 25 ( Max.) →27 (Max.) 3.2 Oscillator frequency (2): 22 ( Min.) →20 (Min.), 28 ( Max.) →30 (Max.) 3.3 Modified Y-axis values of “Pad Center Coordinates” Modified the contents of “Referential Instruction Setup
in „Dbox LCD HT12538“ · Mikrocontroller und Digitale Elektronik ·
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PDF
S6D0154X_Data_Sheet_Rev1.00.pdf
range for VGL to AVSS Note. 1. AVDD Min: When VCI1 = 2.25V, AVDD Max: When VCI1=3.0V 2. |VGH| & |VGL| Min : When VCI1 = 2.25V, |VGL| Max : When VCI1=2.75V, |VGH - VGL| Max : 30.0V 3. |VGH| max. should be lower than or equal to 16.5V in normal operating condition, regardless
in „Nokia N95-Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MLX90640-Datasheet-Melexis.pdf
Figure 2 MLX90640 Overview and pin description 7. Absolute Maximum Ratings Parameter Symbol Min. Typ. Max. Unit Remark Supply Voltage (over voltage) V 5 V DD Supply Voltage (operating max voltage) V 3.6 DD Reverse Voltage (each pin) -0.3 V Operating Temperature TAMB -40 +85 °C Storage Temperature TST -40
in „MLX90640 IR-Array 32x24 pixel“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MLX90640-Datasheet-Melexis.pdf
Figure 2 MLX90640 Overview and pin description 7. Absolute Maximum Ratings Parameter Symbol Min. Typ. Max. Unit Remark Supply Voltage (over voltage) V 5 V DD Supply Voltage (operating max voltage) V 3.6 DD Reverse Voltage (each pin) -0.3 V Operating Temperature TAMB -40 +85 °C Storage Temperature TST -40
in „Wärmebildkamera mit dem MLX90640 und Arduino Due“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCS8140_DataSheet_Rev1.1.pdf
on the GPIO interface. The serial mode of operation is selected through boot strap options. An RS-232 Line driver is required in order to achieve standard RS-232 levels. The registers in the UART are compatible with the 16550 and can support baud rates from 1200 bps to 115.2 Kbps. 8.5 GPIO Interface
in „Moschip Programierbarer Ethernet und USB Controller“ · Mikrocontroller und Digitale Elektronik ·
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PDF
xbee.pdf
more than one sample per 20mS is not recommended. The IT parameter sets or reads how many samples (max) will be transmitted per packet. Its value is in the range 1 to 0xff, with 1 as the default. When sleep modes are enabled and a sample rate (IR) is set, the module will remain awake until IT samples
in „Xbee Pro 868: Hat jemand ein gutes Datenblatt/Infos?“ · Mikrocontroller und Digitale Elektronik ·
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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
HAMEG_HM1507-3_150MHZ_Oszilloskop_-_Service_Manual.pdf
RXD -_ RS232 0A_L0 [Z] 55 PA7/BACK PA1/Qiâ 53 131 I 10111/T0112 [6] 511F11__4 f cL1<_cAL ' ÜPA11/DPHu/0PL PA3/C57 54 I cs_F1=cA PA4 WRLM 56 15 4 01 I W +sv +5v HZV C7155 CA > PA5 WRH LBS 1 107002 a CLK†CAL D [B]
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PDF
Fixe_und_regelbare_Kompensationsdrosselspule_fuer_Spannungsniveaus_bis_zu_72_5kV__Fehim_Music_.pdf
BESCHREIBUNG: 1 Kurzschlussfestigkeitsdauer UERR 5/20 60 65 BESCHREIBUNG: 5/20 5 % Übererregung bei 20 kV 60 Max. Ölübertemperatur bei Übererregung in K 65 Max. Wicklungsübertemperatur bei Übererregung in K ALUC (Durch die Vorgabe des Parameters ALUC wird Aluminium als Wickelmaterial be- rücksichtigt.) Kern Bei
in „Frage zur Netzspannung und Blindleistung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
1763fh.pdf
power dissipated by the device will be equal to: batteries which can be plugged in backward. I OUT(MAX)(VIN(MAX) – VOUT) + GND (VIN(MAX)) The output of the LT1763-X can be pulled below ground where, withoutdamagingthedevice.Iftheinputisleftopen-circuit I = 250mA or grounded, the output can be pulled below ground by OUT(MAX) 20V. For fixed voltage versions, the output will act like a V IN(MAX) = 6V largeresistor,typically500korhigher,limitingcurrentflow I GND at (OUT = 250mA, V IN6V) = 5mA So, to less than 100µA. For adjustable
in „Review: USB→LT1763-3.3 V + SCD41-D-R2 (I²C), Funduino (ATMEGA2560)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
console.txt
Zeichen Zeile 229 enthaelt 8 Zeichen Zeile 230 enthaelt 25 Zeichen Zeile 231 enthaelt 11 Zeichen Zeile 232 enthaelt 34 Zeichen Zeile 233 enthaelt 58 Zeichen Zeile 234 enthaelt 33 Zeichen Zeile 235 enthaelt 11 Zeichen Zeile 236 enthaelt 11 Zeichen Zeile 237 enthaelt 23 Zeichen Zeile 238 enthaelt 78 Zeichen
in „alle .htm-Dateien im Verzeichnis nacheinander öffnen“ · Softwareentwicklung ·
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PDF
MV.pdf
packaging and reflow soldering conditions, refer to the beginning of the Surface Mount section. 0.3 MAX. B Case and Solder Pad Dimensions Case ØD L A B C W P a b c Code % 0.5 % 0.2 % 0.2 % 0.2 B55 Ø3 5.2 0.3 3.3 3.3 3.7 0.45-0.7 0.8 0.8 2.2 1.6 D55 Ø4 5.2 0.3 4.3 4.3 5.1 0.5-0.8 1.0 1.0 2.6 1.6 A E55
in „Identifizierung von SMD Kondensator“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
pm2519ocr.pdf
button “zero set on/off” 1.6. D C C U R R E N T M E A S U R E M E N T S Ranges :20mA,20mA,2.4,208 (max, input current in highest range) #10 A (20 A for max, 20 sec.) Resolution 510HAin20mArange Number of representation units £2200 Acuracy ++(0.5%ofreading+0.1%offulscale) Temperature coefficient +0.05%
in „Pjilips PM2519“ · Markt ·
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PDF
sony_str-de485_service_brazil.pdf
3 2 #1 3 #1 2 #1 #1 Ref. No. Part No. Description Remark Ref. No. Part No. Description Remark 1 4-232-118-31 TAMPA SUPERIOR 2 4-232-236-11 ANEL ORNAMENTAL 3 4-210-291-11 SCREW (CASE3 TP2) (SILVER). 2-1 4-232-237-01 PE #1 7-685-646-79 SCREW +BVTP 3X8 TYPE2 IT-3 STR-DE485 5-2. SEÇÃO PAINEL FRONTAL 56
in „Reparaturanleitung Sony STR-DE585 FM STEREO/FM-AM RECEIVER Surround“ · Mikrocontroller und Digitale Elektronik ·
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PDF
iso_c99.pdf
positive_sign; // "" char *negative_sign; // "" char *currency_symbol; // "" char frac_digits; // CHAR_MAX char p_cs_precedes; // CHAR_MAX char n_cs_precedes; // CHAR_MAX char p_sep_by_space; // CHAR_MAX char n_sep_by_space; // CHAR_MAX char p_sign_posn; // CHAR_MAX char n_sign_posn; // CHAR_MAX char *int_curr_symbol; // "" char int_frac_digits; // CHAR_MAX char int_p_cs_precedes; // CHAR_MAX char int_n_cs_precedes; // CHAR_MAX char int_p_sep_by_space; // CHAR_MAX char int_n_sep_by_space; // CHAR_MAX char int_p_sign_posn; // CHAR_MAX char int_n_sign_posn
in „Zeichenkette auffriemeln“ · Mikrocontroller und Digitale Elektronik ·
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Datei
iobox.asm
Dann folgen evtl. weitere Bytes. ; Weil der Kommando-Code auf ein Nibble begrenzt ist, gibt es nur max.16 ; Codes! ; Legende: bb: die zwei LSBits von 10 Bits cblock 0 ;Kommandocode ;Dazugehöriges Packet-Format: ;lnib rnib cmd2 cmd3/4 ;Kommentar x_error:0x10 ;0 ;Fehler x_change:0x10 ;1 val ;Änderung an
in „serielle Datenübertragung - Problem !“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Metex_M3610D-3650D_text.pdf
DIMENSION UNIT Q'TY PART NO. REMARKS 1 c p u KS57C2016 ea 1 ICl SAMSUNG ELECTRONICS kOREA. . . . 1 MAX130CPL MAXIM INTEGRATED PRODUCTS ea 1 1C2 LTD, U.S.A. 1 GOLDSTAR ELECTRON. kOREA 3 I . C , GD4027BD/MC14027BD ea 1 IC3 MOTOROLA SDIICON U.S.A. 4 I . C . TL062 ea 1 IC4 JRC. TI. GOLDSTAR ELECTRON. KOREA
in „Voltcraft M-3610D (Metex) reparieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
esp32_datasheet_en.pdf
Data Rate Table 13: Transmitter Characteristics – Enhanced Data Rate Parameter Conditions Min Typ Max Unit RF transmit power - - 0 - dBm Gain control step - - ±3 - dBm RF power control range - -12 - +12 dBm ▯/4 DQPSK max w0 - - -0.72 - kHz ▯/4 DQPSK max wi - - -6 - kHz ▯/4 DQPSK max |wi + w0| - - -7.42 - kHz 8DPSK max w0 - - 0.7 - kHz 8DPSK max wi - - -9.6 - kHz 8DPSK max |wi + w0| - - -10 - kHz RMS DEVM - 4.28 - % ▯/4 DQPSK modulation accuracy 99% DEVM - - 30 % Peak DEVM - 13.3 - % RMS DEVM - 5.8 - % 8 DPSK modulation
in „esp32: Stromaufnahme im deepsleep Modus veringern?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Service_5962-8119.pdf
Scope, or DC Load RMSvoltmeter Ammeter resistor 400 ohm (for CV tests) - - b. + DVM or -+ 240 VDC MAX RMSvoltmeter Current +S + - -S monitor (for CC tests) - + - + Electronic DC Load resistor Load Ammeter 1 k ohm (see note) - Note: Use dc supply with same polarity + - connections for - CC tests. Replace
in „Wachsende Unterstützung der Selbstreparatur“ · Mikrocontroller und Digitale Elektronik ·
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Datei
hardware_t.cpp
Buffer_UI2Plane); Display::DRAWSTATUS(Active_Menu, 1); } switch(MenuStatus[0][2]) { case 74 : Average_Max = 1; break; case 75 : Average_Max = 2; break; case 76 : Average_Max = 4; break; case 77 : Average_Max = 8; break; case 78 : Average_Max = 16; break; case 79 : Average_Max = 32; break; case 80 : Average_Max = 64; break; case 81 : Average_Max = 128; break; case 82 : Average_Max = 256; break; case 83 : Average_Max = 512; break; case 84 : Average_Max = 1024; break; case 85 : Average_Max = 2048; break; case 86 : Average_Max = 4096; break; case
in „Wittig(welec) DSO W20xxA Open Source Firmware“ · Mikrocontroller und Digitale Elektronik ·
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PDF
UC1701.pdf
impedance. When (V -90)/10 10 is too small, image contrast will In addition, please limit the min-max spread of RC become too strong, and crosstalk will increase. decay to be: For the best result, it is recommended the LC | RCMAX – RC MIN| < 2.76µS material has the following characteristics: so that
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Datei
debug_error.asm
604: 80 93 02 01 sts 0x0102, r24 608: 08 95 ret 0000060a <lib_nRF24L01_get_data>: // Read at most maxBytes bytes from received packet data into array payload. // Note that the nRF24L01+ deletes the whole FIFO slot afterwards. void lib_nRF24L01_get_data( uint8_t * payload, uint8_t maxBytes) { 60a: ff
in „Fehler bei einfacher Integer-Division?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
systemhandbuch_isr.pdf
Verdichterlaufzeit Minimum 2842 nicht verfügbar Verdichtersillstandszeit Min 2843 nicht verfügbar Ausschalttemp. max 2844 nicht verfügbar Reduktion Ausschaltemp Max 2845 nicht verfügbar Heissgastemp Max 2846 nicht verfügbar ND-Verzögerung beim Start 2852 nicht verfügbar 38 System-Handbuch ISR-Plus Version 01.09 Parameter
in „Brötje ISR Plus Kommunikation / LPB“ · Haus & Smart Home ·
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PDF
TMS320F2812_Datasheet.pdf
Modes at 150-MHz SYSCLKOUT (TMS320F281x) IDD DDIO † DD3VFL DDA ‡ MODE TEST CONDITIONS § § § § TYP MAX TYP MAX TYP MAX TYP MAX All peripheral clocks are enabled. All PWM pins are toggled at 100 kHz. Data is continuously transmitted out of Operational the SCIA, SCIB, and CAN ports. The 195 mA¶ 230 mA
in „Wieder eine Elektronik-Anfängerfrage“ · Mikrocontroller und Digitale Elektronik ·
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PDF
S29GL512N.pdf
Max 25 25 35 35 ns C t t Output Enable to Output Delay Max 25 25 35 35 ns GLQV OE EHQZ DF Chip Enable to Output High Z (Note 1) Max 20 ns tGHQZ DF OutputEnabletoOutput HighZ(Note1) Max 20 ns t t Output
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Schaltungskonzepte_zum_Betrieb_von_Leuchtdioden_fuer_die_Allgemeinbeleuchtung.pdf
Schranke von 5.4 kHz. Für eine zeitlich periodisch sich ändernde Leuchtdichte mit einem Maximalwert 𝐿 v,max und einem Minimalwert 𝐿 v,minist die Modulation [68] 𝐿 − 𝐿 𝑀 = v,max v,min (2.1) 𝐿 v,max+ 𝐿v,min einegebräuchlicheKenngröße,derenWertmaßgebendfürdieWahrnehmbarkeitvonFli- ckerist. Erliegt zwischen
in „PFC? Wozu diese Ladekondensatorschaltung im Schaltnetzteil?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
am26lv32.pdf
operating free-air temperature ranges (unless otherwise noted) PARAMETER TEST CONDITIONS MIN TYP † MAX UNIT VIT+ Differential input high-threshold voltage 0.2 V V Differential input low-threshold voltage −0.2 V IT− VIK Enable input clamp voltage II= −18 mA −0.8 −1.5 V VOH High-level output voltage VID
in „Maßnahmen zum ausfallsicheren Busreceiververhalten, wie geht das?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
am26lv32.pdf
operating free-air temperature ranges (unless otherwise noted) PARAMETER TEST CONDITIONS MIN TYP † MAX UNIT VIT+ Differential input high-threshold voltage 0.2 V V Differential input low-threshold voltage −0.2 V IT− VIK Enable input clamp voltage II= −18 mA −0.8 −1.5 V VOH High-level output voltage VID
in „Stromaufnahme eines RS422-Receivers anhand von Datenblatt ermitteln“ · Mikrocontroller und Digitale Elektronik ·
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PDF
A200_DS_ADM3053_Isolated_CAN_Tranceiver.pdf
specifications are at A = 25°C, V CC= 5 V, VIO 5 V unless otherwise noted. Table 1. Parameter Symbol Min Typ Max Unit Test Conditions SUPPLY CURRENT Logic Side isoPower Current Recessive State ICC 29 36 mA RL= 60 Ω, RS= low, see Figure 25 Dominant State ICC 195 232 mA RL= 60 Ω, RS= low, see Figure 25 TxD/RxD Data
in „Eagle Neue Bibliothek bitte mal prüfen CAN-Tranceiver“ · Platinen ·
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PDF
Designing_a_digital_compass.pdf
value is applied to an equation to determine how much the with a PC’s HyperTerminal is handled by a MAX3232 pitch and roll values should be compensated based on transceiver. Refer to “References” for information on the components used in this design. a change in temperature. In order to derive an equation
in „Kompassmodul HDMM01 von Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IQmath_Quickstart.pdf
the _iqN data type. A, B Input operand to IQmath function or Macro F Floating point input : Ex: -1.232, +22.433, 0.4343, -0.32 S Floating point string: “+1.32”, “0.232”, “-2.343” etc P Positive Saturation value N Negative Saturation value Texas Instruments Inc., 2002-2011 27 5.2. IQmath Function Overview
in „PID Regler in Q15 Format“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CY7C68016A.pdf
0.05 100 81 1 80 0.30±0.08 . . ± ± 0 0 2 0 2 2 0.65 12°±1° SEE DETAIL A TYP. (8X) 30 51 31 50 0.20 MAX. 1.60 MAX. R 0.08 MIN. 0 0.20 MAX. 0° MIN. 0 SEATING PLANE STAND-OFF 0.25 0.05 MIN. NOTE: 0.15 MAX. E 1.JEDECSTDREFMS-026 2.BODYLENGTHDIMENSIONDOESNOTINCLUDEMOLDPROTRUSION/ENDFLASH R 0.08 MIN. MOLDPROTRUSION
in „CY7C68013A-56pins“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IS2200E_V1.61.pdf
230 O96 1482.00 487.05 A 160 O26 5122.00 487.05 A 231 O97 1430.00 487.05 A 161 O27 5070.00 487.05 A 232 O98 1378.00 487.05 A 162 O28 5018.00 487.05 A 233 O99 1326.00 487.05 A 163 O29 4966.00 487.05 A 234 O100 1274.00 487.05 A 164 O30 4914.00 487.05 A 235 O101 1222.00 487.05 A 165 O31 4862.00 487.05 A
in „LCD-Modul OPTREX 351570AG“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Spezifikation.pdf
Table 7 Characteristics of the SDAH, SCLH, SDA and SCL bus lines for Hs-mode Is devices(1) C = 100 pF MAX. C = 400 pF (2) PARAMETER SYMBOL b b UNIT MIN. MAX. MIN. MAX. SCLH clock frequency SCLH 0 3.4 0 1.7 MHz Set-up time (repeated) START condition SU;STA 160 − 160 − ns Hold time (repeated) START condition
in „SPI, ISP, USI, TWI, I2C“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Spezifikation.pdf
Table 7 Characteristics of the SDAH, SCLH, SDA and SCL bus lines for Hs-mode Is devices(1) C = 100 pF MAX. C = 400 pF (2) PARAMETER SYMBOL b b UNIT MIN. MAX. MIN. MAX. SCLH clock frequency SCLH 0 3.4 0 1.7 MHz Set-up time (repeated) START condition SU;STA 160 − 160 − ns Hold time (repeated) START condition
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PDF
Spezifikation.pdf
Table 7 Characteristics of the SDAH, SCLH, SDA and SCL bus lines for Hs-mode Is devices(1) C = 100 pF MAX. C = 400 pF (2) PARAMETER SYMBOL b b UNIT MIN. MAX. MIN. MAX. SCLH clock frequency SCLH 0 3.4 0 1.7 MHz Set-up time (repeated) START condition SU;STA 160 − 160 − ns Hold time (repeated) START condition
in „I²c mit Bascom und ATmega“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Spezifikation.pdf
Table 7 Characteristics of the SDAH, SCLH, SDA and SCL bus lines for Hs-mode Is devices(1) C = 100 pF MAX. C = 400 pF (2) PARAMETER SYMBOL b b UNIT MIN. MAX. MIN. MAX. SCLH clock frequency SCLH 0 3.4 0 1.7 MHz Set-up time (repeated) START condition SU;STA 160 − 160 − ns Hold time (repeated) START condition
in „Reset auf I2C-Bus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Philips_Semiconductors_-_I2C_Bus_Specification_v2.1.pdf
Table 7 Characteristics of the SDAH, SCLH, SDA and SCL bus lines for Hs-mode Is devices(1) C = 100 pF MAX. C = 400 pF (2) PARAMETER SYMBOL b b UNIT MIN. MAX. MIN. MAX. SCLH clock frequency SCLH 0 3.4 0 1.7 MHz Set-up time (repeated) START condition SU;STA 160 − 160 − ns Hold time (repeated) START condition
in „GND-Fäche sinnvoll???“ · Platinen ·
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PDF
Spezifikation.pdf
Table 7 Characteristics of the SDAH, SCLH, SDA and SCL bus lines for Hs-mode Is devices(1) C = 100 pF MAX. C = 400 pF (2) PARAMETER SYMBOL b b UNIT MIN. MAX. MIN. MAX. SCLH clock frequency SCLH 0 3.4 0 1.7 MHz Set-up time (repeated) START condition SU;STA 160 − 160 − ns Hold time (repeated) START condition
in „i2c und Takt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Spezifikation.pdf
Table 7 Characteristics of the SDAH, SCLH, SDA and SCL bus lines for Hs-mode Is devices(1) C = 100 pF MAX. C = 400 pF (2) PARAMETER SYMBOL b b UNIT MIN. MAX. MIN. MAX. SCLH clock frequency SCLH 0 3.4 0 1.7 MHz Set-up time (repeated) START condition SU;STA 160 − 160 − ns Hold time (repeated) START condition
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PDF
Spezifikation.pdf
Table 7 Characteristics of the SDAH, SCLH, SDA and SCL bus lines for Hs-mode Is devices(1) C = 100 pF MAX. C = 400 pF (2) PARAMETER SYMBOL b b UNIT MIN. MAX. MIN. MAX. SCLH clock frequency SCLH 0 3.4 0 1.7 MHz Set-up time (repeated) START condition SU;STA 160 − 160 − ns Hold time (repeated) START condition
in „I2C Speicher HotSwap?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Spezifikation.pdf
Table 7 Characteristics of the SDAH, SCLH, SDA and SCL bus lines for Hs-mode Is devices(1) C = 100 pF MAX. C = 400 pF (2) PARAMETER SYMBOL b b UNIT MIN. MAX. MIN. MAX. SCLH clock frequency SCLH 0 3.4 0 1.7 MHz Set-up time (repeated) START condition SU;STA 160 − 160 − ns Hold time (repeated) START condition
in „I²C Bus Schnittstelle extern ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
I2C_BUS_SPECIFICATION_3.pdf
Table 7 Characteristics of the SDAH, SCLH, SDA and SCL bus lines for Hs-mode Is devices(1) C = 100 pF MAX. C = 400 pF (2) PARAMETER SYMBOL b b UNIT MIN. MAX. MIN. MAX. SCLH clock frequency SCLH 0 3.4 0 1.7 MHz Set-up time (repeated) START condition SU;STA 160 − 160 − ns Hold time (repeated) START condition
in „SPI oder TWI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Spezifikation.pdf
Table 7 Characteristics of the SDAH, SCLH, SDA and SCL bus lines for Hs-mode Is devices(1) C = 100 pF MAX. C = 400 pF (2) PARAMETER SYMBOL b b UNIT MIN. MAX. MIN. MAX. SCLH clock frequency SCLH 0 3.4 0 1.7 MHz Set-up time (repeated) START condition SU;STA 160 − 160 − ns Hold time (repeated) START condition
in „Unterschied Defintion I²C und SPI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
i2c_bus_specification_3.pdf
Table 7 Characteristics of the SDAH, SCLH, SDA and SCL bus lines for Hs-mode Is devices(1) C = 100 pF MAX. C = 400 pF (2) PARAMETER SYMBOL b b UNIT MIN. MAX. MIN. MAX. SCLH clock frequency SCLH 0 3.4 0 1.7 MHz Set-up time (repeated) START condition SU;STA 160 − 160 − ns Hold time (repeated) START condition
in „IIC-Bus Verständnisfrage“ · Mikrocontroller und Digitale Elektronik ·