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PDF
LM3404.pdf
Following the calculations from the Input Capacitor section, 4 3 Δv IN(MAX)will be 48V x 2% P-P = 960 mV. The minimum re- PO= I F V =O0.5 x 35.2 = 17.6W M quired capacitance is: / 0 Conduction loss, P , in the internal MOSFET: 4 C = (0.5 x 3.3 x 10 ) / 0.96 = 1.7 µF C 3 IN(MIN) M 2 2 L PC= (I F x R
in „Extreme Störungen LM3404“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Transistortester097k.pdf
N-E-MOS,D, 4153mV 922pF 894pF 933pF IRFU9024 P-E-MOS,D, 3525mV P-E-MOS,D, 3525mV P-E-MOS,D, 3534mV 960pF 926pF 965pF ZVP2106A P-E-MOS,D, 3217mV P-E-MOS,D, 3220mV P-E-MOS,D, 3217mV 115pF 114pF 113pF ZVNL120A N-E-MOS,D, 1560mV N-E-MOS,D, 1535mV N-E-MOS,D, 1535mV 140pF 138pF 138pF Tabelle 4.4: Me▯ergebnisse
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PDF
EPJ9_web.pdf
x 7 cm) und funktioniert. Unser schnellster Testrech- Platzierung der Bautei- ner war ein Core i7 960 mit 3,6 GHz, der le (J1-J3 oben, J4-J6 un- jedoch beim Routen nur um den Faktor 1,3 schneller war als ein deutlich langsa- ten) über den Haufen merer Core i3. Als ungefähre Zeit zum geworfen haben.
in „Embedded Projects Journal: 9. Ausgabe erschienen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT1014CN_DN.pdf
MIN TYP MAX MIN TYP MAX MIN TYP MAX 25°C 90 450 90 280 250 950 RS= 50Ω Input Full range 400 1500 400 960 800 2000 VIO offset voltage µV RS= 50Ω, 125°C 200 750 200 480 560 1200 VIC= 0.1 V 25°C 0.2 2 0.2 1.3 0.2 2 I Input IO offset current Full range 10 7 10 nA Input 25°C −15 −50 −15 −35 −15 −50 IB bias
in „Unterschied beim LT1014 ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SIM300_HD_V1.06.pdf
transmit frequency Table 24: SIM300 receive/transmit frequency Frequency Receive Transmit E-GSM900 925 ~ 960MHz 880 ~ 915MHz DCS1800 1805 ~ 1880MHz 1710 ~ 1785MHz PCS1900 1930 ~ 1990MHz 1850 ~ 1910MHz 4.5 Antenna gain Table 25: Antenna gain Item parameter GSM DCS Gain(dBi) 0.5 1 Pattern Omnidirectional antenna
in „GSM sim300 mit SAM7-EX256 kommunizieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NTCLE100E-SERIES_ENG_TDS.pdf
90 1.658 - 2.31 5.38 2.416 - 2.35 5.51 3.339 - 2.44 5.65 95 1.479 - 2.25 5.72 2.151 - 2.30 5.85 2.960 - 2.38 6.00 100 1.323 - 2.20 6.05 1.920 - 2.24 6.19 2.632 - 2.32 6.34 105 1.187 - 2.14 6.36 1.719 - 2.19 6.53 2.347 - 2.27 6.68 110 1.068 - 2.09 6.67 1.543 - 2.13 6.85 2.098 - 2.22 7.00 115 0.9635 -
in „Gaggenau Backofen NTC-Luftfühler defekt“ · Haus & Smart Home ·
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PDF
NTCLE100E-SERIES_ENG_TDS.pdf
90 1.658 - 2.31 5.38 2.416 - 2.35 5.51 3.339 - 2.44 5.65 95 1.479 - 2.25 5.72 2.151 - 2.30 5.85 2.960 - 2.38 6.00 100 1.323 - 2.20 6.05 1.920 - 2.24 6.19 2.632 - 2.32 6.34 105 1.187 - 2.14 6.36 1.719 - 2.19 6.53 2.347 - 2.27 6.68 110 1.068 - 2.09 6.67 1.543 - 2.13 6.85 2.098 - 2.22 7.00 115 0.9635 -
in „Defekt bei Sentiotec Sauna/Infrarotkabinen-Steuerung“ · Haus & Smart Home ·
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PDF
2091702_H_-_BK150FUE-1_Control_Box_Manual__1PH_EU_SMART_START_NXT_Non_UL.pdf
or SystemStack overflowed. • Possible software error due to recursive invocations (e.g. profile). F.960 Wrong parameter checksum • New EPROM version with different parameters. • Controller not yet initialized. F.961 Checksum from calibration • New EPROM version with different EEPROM structure. values
in „Steuerung Schnellauftor BK 150 FUE-H F519 Antrieb“ · Haus & Smart Home ·
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PDF
ADE7758.pdf
measure SAG EVENT RESET LOW WHEN VOLTAGE CHANNEL frequency,thevalueoftheperiodregisterisapproximately960dat SAG INTERRUPT FLAG EXCEEDS SAGLVL[7:0] (BIT 3 TO BIT 5 OF 60Hzand800dat50Hz.Thisisequivalentto0.0625Hz/LSB. STATUS REGISTER) LINE VOLTAGE SAG DETECTION - READ RSTATUS 4 REGISTER 0 The ADE7758 can
in „Energy Meter mit ADE7769 - AVR“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCF8833_1.pdf
handbook, full paSewidth TB P SCE RES SCLK SDIN DC b7 b6 b5 b4 b3 b2 DC b7 b6 b5 b4 b3 b2 b1 b0 MGU960 Fig.44 Serial bus protocol, Write mode, interrupted by reset (RES); (PS[2:0] = XX0). handbook, full pagewidth S TB P SCE RES SCLK SDIN DC b7 b6 b5 b4 b3 b2 DC b7 b6 b5 b4 b3 b2 b1 b0 MGU961 Fig.45 Serial
in „Versorgung einer LCD Anzeige und MC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
rfm63dw.PDF
settings should be programmed into the RF63: Target channel 863- 902- 915- 950- (MHz) 870 915 928 960 Freq_band 10 00 01 10 Table 10: MCParam_Freq_bandSetting 3.2.5.2. Trimming the VCO Tank by Hardware and Software To ensure that the frequency band of operation may be accurately addressed by the R,
in „JDY-40 ein neuer Geniestreich aus China?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
VHF-COMM.1984.3.pdf
Television (SSTV) is, basically speaking, not onterent from facsimile (FAX) transmissions with a speed of 960 lines per Recommendation of a Suitable SSTV minute. However,one advantage of FAX·trans· Standard missions is not used: namely that is is not II would be advisable for88TV to have a Ire necessary for
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PDF
VHF-COMM.1984.3.pdf
Television (SSTV) is, basically speaking, not onterent from facsimile (FAX) transmissions with a speed of 960 lines per Recommendation of a Suitable SSTV minute. However,one advantage of FAX·trans· Standard missions is not used: namely that is is not II would be advisable for88TV to have a Ire necessary for
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Datei
aa.txt
0.050433843674653644 Temp : 959 GradC Utemp: 41.32166249587566 mVdelta :0.05045690666245406 Temp : 960 GradC Utemp: 41.372142489599995 mVdelta :0.050479993724337646 Temp : 961 GradC Utemp: 41.42264559446035 mVdelta :0.05050310486035414 Temp : 962 GradC Utemp: 41.4731718345308 mVdelta :0.05052624007045381
in „Präzisions Temperaturmessung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
test-eeprom.txt
V:247 READ: A: 956 - V:247 READ: A: 957 - V:247 READ: A: 958 - V:247 READ: A: 959 - V:247 READ: A: 960 - V:248 READ: A: 961 - V:248 READ: A: 962 - V:248 READ: A: 963 - V:248 READ: A: 964 - V:248 READ: A: 965 - V:248 READ: A: 966 - V:248 READ: A: 967 - V:248 READ: A: 968 - V:249 READ: A: 969 - V:249 READ
in „I2C Eeprom 24C16 - Speicherproblem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IgorPlug-USB__AVR__firmware.pdf
CRC16 957 cpi temp0,DATA1PID ;ci je DATA1 pole 958 brne CRC16End ;ak nie tak skonci 95ComputeDATACRC: 960 ser temp0 ;inicializacia zvysku LSB na 0xff 961 ser temp1 ;inicializacia zvysku MSB na 0xff 96CRC16Loop: 963 ld temp2,Y+ ;nahraj spravu do temp2 a zvys pointer do buffera 964 ldi temp3,8 ;pocitadlo
in „IGORPLUG-USB“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IgorPlug-USB__AVR__firmware.pdf
CRC16 957 cpi temp0,DATA1PID ;ci je DATA1 pole 958 brne CRC16End ;ak nie tak skonci 95ComputeDATACRC: 960 ser temp0 ;inicializacia zvysku LSB na 0xff 961 ser temp1 ;inicializacia zvysku MSB na 0xff 96CRC16Loop: 963 ld temp2,Y+ ;nahraj spravu do temp2 a zvys pointer do buffera 964 ldi temp3,8 ;pocitadlo
in „90s2343 als usb ir empfänger“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IgorPlug-USB__AVR__firmware.pdf
CRC16 957 cpi temp0,DATA1PID ;ci je DATA1 pole 958 brne CRC16End ;ak nie tak skonci 95ComputeDATACRC: 960 ser temp0 ;inicializacia zvysku LSB na 0xff 961 ser temp1 ;inicializacia zvysku MSB na 0xff 96CRC16Loop: 963 ld temp2,Y+ ;nahraj spravu do temp2 a zvys pointer do buffera 964 ldi temp3,8 ;pocitadlo
in „Per USB mit ATMega32 kommunizieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IgorPlug-USB__AVR__firmware.pdf
CRC16 957 cpi temp0,DATA1PID ;ci je DATA1 pole 958 brne CRC16End ;ak nie tak skonci 95ComputeDATACRC: 960 ser temp0 ;inicializacia zvysku LSB na 0xff 961 ser temp1 ;inicializacia zvysku MSB na 0xff 96CRC16Loop: 963 ld temp2,Y+ ;nahraj spravu do temp2 a zvys pointer do buffera 964 ldi temp3,8 ;pocitadlo
in „Booten auf Knopfdruck mit AT90S23X3“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LP171W01-A4K3.pdf
be used. X Y Stage LCD Module Field = 1 ° TOPCON BM 5A or PR650 400 or 500 mm 10 mm 10 mm 320 640 960 10 mm 13 12 11 10 9 214 8 7 6 427 : test point 5 4 640 3 2 1 10 mm NOTICE OF PROPRIETARY PROPERTY THE INFORMATION CONTAINED HEREIN IS THE PROPRIETARY PROPERTY OF APPLE COMPUTER, INC. THE POSSESSOR AGREES
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PDF
SK-FM3-176PMC-ETHERNET_v11_schematic_v15.pdf
PIJP940P1IJP940PIR1200102 PIX1702828 I_DC_BUS Pin102 AN12 PIJP950P1IJP9502PIR12101 PIX180228 I_DC_BUS Pin114 AN20 PIJP960P1IJP9602PIR12201 PIX19028 I_DC_BUS JP9797 R123 1k PIX1702929 AGND JP9898 R124 [1k] PIX180229 AGND JP999 R125 [1k] PIX19029 AGND Pin95 AN05 PIJP970P1IJP970PIR1230102 PIX17030 Pin103 AN13 PIJP980P1IJP9802PIR12401
in „Problem bei LAN8710A-Inbetriebnahme“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GARMIN-GPS25-xxx.pdf
transmitted per sec Baud characters_transmitted_per_sec 300 30 600 60 1200 120 2400 240 4800 480 9600 960 19200 1920 Sentence max_characters GPGGA 81 GPGSA 66 GPGSV 210 GPRMC 74 GPVTG 42 PGRMB 26 PGRME 35 PGRMT 50 PGRMV 32 PGRMF 82 LCGLL 44 LCVTG 39 The maximum number of fields allowed in a single sentence
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PDF
GPS25LPSeries_TechnicalSpecification.pdf
transmitted per sec Baud characters_transmitted_per_sec 300 30 600 60 1200 120 2400 240 4800 480 9600 960 19200 1920 Sentence max_characters GPGGA 81 GPGSA 66 GPGSV 210 GPRMC 74 GPVTG 42 PGRMB 26 PGRME 35 PGRMT 50 PGRMV 32 PGRMF 82 LCGLL 44 LCVTG 39 The maximum number of fields allowed in a single sentence
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PDF
CD_DS_SCD4x_Datasheet_D1.pdf
per reel 3.000.521 SCD41-D-R1 SCD41 CO2 sensor SMD component as reel, I2C 60 sensors per reel 3.000.960 SCD41-D-R2 SCD41 CO2 sensor SMD component as reel, I2C 600 sensors per reel 3.000.961 SCD43-D-R2 SCD43 CO2 sensor SMD component as reel, I2C 600 sensors per reel 3.001.241 SEK-SCD41-Sensor SEK-SCD41
in „Review: USB→LT1763-3.3 V + SCD41-D-R2 (I²C), Funduino (ATMEGA2560)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
iaqlog_8.txt
14 967 2017-04-25 13:13:15 957 2017-04-25 13:13:16 955 2017-04-25 13:13:17 956 2017-04-25 13:13:18 960 2017-04-25 13:13:20 964 2017-04-25 13:13:21 959 2017-04-25 13:13:22 962 2017-04-25 13:13:23 960 2017-04-25 13:13:24 958 2017-04-25 13:13:25 958 2017-04-25 13:13:27 972 2017-04-25 13:13:28 969 2017-04
in „Gibt es eine eifache Möglichkeit, den Sauerstoffgehalt der Luft zu messen?“ · Offtopic ·
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PDF
nkat20-21.pdf
3.500 2.810 2.550 PL 50 50 17 45 0.2 54 7025/50 2.980 2.530 2.290 PL 57 57 19 8 0.3 AlNi 43 7020/57 3.960 3.170 2.880 PL 70 70 23 8 0.4 AlNi 48 7020/70 3.980 3.260 2.960 MIRA-ELECTRONIC www.MIRA-ELECTRONIC.de Tel. 0911 / 55 59 19 95 Dipl. Ing. (FH) Gerhard Sauerbeck info@MIRA-ELECTRONIC.de Fax. 0911 / 58
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PDF
XBee_Datasheet.pdf
Current (@ 3.0 V) < 10 µA < 10 µA General Operating Frequency ISM 2.4 GHz ISM 2.4 GHz Dimensions 0.960” x 1.087” (2.438cm x 2.761cm) 0.960” x 1.297” (2.438cm x 3.294cm) Operating Temperature -40 to 85º C (industrial) -40 to 85º C (industrial) Antenna Options Integrated Whip, Chip or U.FL Connector Integrated
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PDF
Carel-NTC.pdf
1762,24 -153 384,72 -82 675,22 -11 956,94 60 1232,42 131 1502,08 202 1765,91 -152 388,89 -81 679,24 -10 960,86 61 1236,26 132 1505,83 203 1769,59 -151 393,06 -80 683,25 -9 964,78 62 1240,09 133 1509,59 204 1773,26 -150 397,23 -79 687,27 -8 968,70 63 1243,93 134 1513,34 205 1776,93 -149 401,40 -78 691,29 -
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PDF
vacon-x2c-series-user-s-manual.pdf
to a highervalue can reduce motorlosses at low frequencies. The knee frequency may vary from 26 to 960 Hz. 54-SKBND Default = 1 Hz (Skip Frequency Hysteresis Band) (2 Hz Band) Level = L2 Skip bands are used to avoid mechanical resonances in a drive system. This parameter sets the frequency width above
in „TWIKE - Gedanken zu einem anderen Antriebssystem“ · Offtopic ·
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PDF
KlangPlusTon_2007-01.pdf
Seite 2) 1 x 60,0 x 50,0 cm (Front) Zubehör pro Box Zubehör pro Box: 1 Beutel Dämmwolle 1 Terminal ST-960GM Holzliste Aufbau VorBeginndesZusammenbauswirddasLochindenRahmen Lieferant: Monacor, Bremen Holzstückliste pro Box (22-mm-MDF): des Weichenfachs gesägt, da dieser hinterher nur noch 1 x 21,4 x 100,0
in „Symasym hohe Ausgangsspannung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
2010_05_Stellung_15_erneuerbareStromversorgung.pdf
Elektrizitätserzeugung 0 0,0 0,0 0,0 Speicherverluste 17,2 21 Gesamtnachfrage/-kosten 81 112 509,0 700 45.960 80.656 9,0 11,5 Überkapazität/-produktion 181 209 53,3 45 SRU/Stellungnahme Nr. 15–2010/Tab. 3-1; Datenquelle: DLR 2010 Insgesamt erhöhen sich die jährlichen Gesamtkosten von Kosten pro kWh steigen
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Datei
Program_Memory.TXT
3BB 11F0 BCF 0x70, 0x3 957 3BC 2BBD GOTO 0x3bd 958 3BD 1CF3 BTFSS 0x73, 0x1 959 3BE 2BC0 GOTO 0x3c0 960 3BF 2BC1 GOTO 0x3c1 961 3C0 2BD2 GOTO 0x3d2 962 3C1 3001 MOVLW 0x1 963 3C2 0020 MOVLB 0 964 3C3 07AF ADDWF 0x2f, F 965 3C4 3000 MOVLW 0 966 3C5 3DB0 ADDWFC 0x30, F 967 3C6 3001 MOVLW 0x1 968 3C7 0230
in „Falsche Quelltextposition beim Debuggen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Steu4414.asm
Referenced from offset 0x8ae by rcall ; Referenced from offset 0x8fc by rcall ; Referenced from offset 0x960 by rcall ; Referenced from offset 0x9d8 by rcall ; Referenced from offset 0xa92 by rcall Function37: sts 0x0076, r3 sts 0x0075, r2 ret ; Referenced from offset 0x3a6 by rcall ; Referenced from offset
in „Gerät mit AT90S4414 retten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADC0804_NSC.pdf
1.920 0.120 5 0 1 0 1 5/16 2/256 1.600 0.100 4 0 1 0 0 1/4 1/64 1.280 0.080 3 0 0 1 1 3/16 3/256 0.960 0.060 2 0 0 1 0 1/8 1/128 0.640 0.040 1 0 0 0 1 1/16 1/256 0.320 0.020 0 0 0 0 0 0 0 Note 15: Display Output VMS Group + VLS Group 25 www.national.com 5 8 0 Functional Description (Continued) D A 4
in „Probleme Verständnis ADC 0804-1“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sim300_HD_V3.07.pdf
operating frequencies Table26 : SIM300 operating frequencies Frequency Receive Transmit EGSM900 925 ~ 960MHz 880 ~ 915MHz DCS1800 1805 ~ 1880MHz 1710 ~ 1785MHz PCS1900 1930 ~ 1990MHz 1850 ~ 1910MHz SIM300_HD_V3.07 52 25.10.2007 SIM300 Hardware Design 5 Electrical, reliability and radio characteristics 5.1Absolute
in „GSM sim300 mit SAM7-EX256 kommunizieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
stepping_motor_Mdrive__OM-MD_V06.28.2002__e.pdf
mm) Stack in (mm) 2218 2.632(66.85) 2218 3.088 (78.44) 2222 3.000 (76.20) 2222 3.537 (89.84) 2231 3.960 (100.58) 2231 4.416 (112.17) Differential Encoder L MAX2 2218 3.282 (83.36) 2222 3.741 (95.02) 2231 4.416 (112.17) Figure3.2.1:RotaryMDrive23MechanicalSpecifications 49 I n t e r f a c e O p t i o n
in „Alter Stepper-Treiber über ISP an USB parametrieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Handbuch_SE4942_Eprom_Programmer_pdfa-2b_150dpi.pdf
30 2 6 0 1.2 |. 600 60 3 120 1.3 1200 120 4 0 104 2400 240 24 5 4 8 0 1 5 4800 480 1 6 9 6 0 6 9600 960 SE4942 Handbuch 3.13 EPROM Programmierer SE4Y942 SE Spezial Electronic Einstellungsbeispiel: BAUD Code (1200bps) Anzeige der Baudrate: he — 20] Di0layed 1200bps (diplayed value x 10bps) Anzeige 1200
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PDF
ADC0801_05.pdf
1.920 0.120 5 0 1 0 1 5/16 2/256 1.600 0.100 4 0 1 0 0 1/4 1/64 1.280 0.080 3 0 0 1 1 3/16 3/256 0.960 0.060 2 0 0 1 0 1/8 1/128 0.640 0.040 1 0 0 0 1 1/16 1/256 0.320 0.020 0 0 0 0 0 0 0 Note 15: Display Output VMS Group + VLS Group 25 www.national.com 5 8 0 Functional Description (Continued) D A 4
in „Verständnisfrage zum ADC080x (VIN-MIN/DC-Offset)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
am79c961.pdf
Controller for Ethernet (MACE ) Am79C90 CMOS Local Area Network Controller for Ethernet (CLANCE) Am79C960 PCnetISA SingleChip Ethernet Controller (for ISA bus) Am79C965 PCnet32 SingleChip 32Bit Ethernet Controller (for 386, 486, VL local buses) Am79C970 PCnetPCI SingleChip Ethernet Controller (for PCI bus
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Datei
oe2chl.txt
................| 0000a950 ff ff ff ff ff ff ff ff ff ff ff ff ff ff ff ff |................| 0000a960 ff ff ff ff ff ff ff ff ff ff ff ff ff ff ff ff |................| 0000a970 ff ff ff ff ff ff ff ff ff ff ff ff ff ff ff ff |................| 0000a980 ff ff ff ff ff ff ff ff ff ff ff ff ff ff ff ff
in „LED Laufschrift Software“ · Mikrocontroller und Digitale Elektronik ·
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Datei
dump2.txt
22 90 01 91 12 31 42 90 05 8A 12 31 67 00 c:A950 00 00 00 90 01 BD 12 31 67 00 02 00 00 12 73 9E c:A960 78 31 A6 07 E6 FF 60 01 22 90 01 91 E0 FC A3 E0 c:A970 FD A3 E0 FE A3 E0 FF 90 01 BD 12 31 42 7F 14 12 c:A980 73 A0 78 31 A6 07 E6 FF 60 01 22 90 05 8A 12 31 c:A990 67 00 02 00 00 12 73 87 78 31 A6
in „uC für 0,20€ CH552 / CH554 von WCH Billig Micro mit USB Funktion, Chip vorstellung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
dw_programming_dragon.txt
avrdude: jtagmkII_paged_write(.., flash, 64, 64) avrdude: jtagmkII_paged_write(): block_size at addr 960 is 64 avrdude: jtagmkII_paged_write(): Sending write memory command: avrdude: jtagmkII_send(): sending 74 bytes avrdude: Sent: . [1b] . [1a] . [00] J [4a] . [00] . [00] . [00] . [0e] . [04] . [b0] @
in „avrdude fuses aus debugwire schreiben“ · Mikrocontroller und Digitale Elektronik ·
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Datei
24c16_la_1km.txt
10.475681916666666,958,0xA1,0xFF,Read,NAK 10.497416833333334,959,0xA0,0xE0,Write,ACK 10.497487833333333,960,0xA1,0xFF,Read,ACK 10.497517666666667,960,0xA1,0xFF,Read,ACK 10.497547500000000,960,0xA1,0xFF,Read,ACK 10.497577250000001,960,0xA1,0xFF,Read,ACK 10.497607083333333,960,0xA1,0xFF,Read,ACK 10.497636916666666,960,0xA1,0xFF,Read,ACK 10.497666750000000,960,0xA1,0xFF,Read,ACK 10.497696749999999,960,0xA1,0xFF,Read,NAK 10.519424500000000,961,0xA0,0xE8,Write,ACK 10.519490166666667,962,0xA1,0xFF,Read,ACK 10.519520000000000,962,0xA1,0xFF,Read,ACK 10.519549833333333,962,0xA1,0xFF
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Datei
DDS.vhd
955 => x"50414B76", 956 => x"50523D00", 957 => x"50632B05", 958 => x"50741583", 959 => x"5084FC7B", 960 => x"5095DFEC", 961 => x"50A6BFD4", 962 => x"50B79C33", 963 => x"50C87509", 964 => x"50D94A54", 965 => x"50EA1C14", 966 => x"50FAEA48", 967 => x"510BB4EF", 968 => x"511C7C09", 969 => x"512D3F95", 970
in „DDS mit DE0-Nano Board nur niedrige Frequenzen?“ · FPGA, VHDL & Co. ·
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Datei
down.txt
S1130460801B910B9F938F933F932F938BE890E086 S11304709F938F930E940A031092BB000091BE00C9 S11304801091BF00C091BC00D091BD008DB79EB744 S11304900C960FB6F8949EBF0FBE8DBF86B3282F5F S11304A0332736952795217030704091B900842FF9 S11304B0992728173907B9F08091C1009091C2009B S11304C0A091C300B091C4000196A11DB11D8093F9 S11304D0C1009093C200A093C300B093C40081E014
in „Calibration Byte 8MHz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TTester_096k.pdf
N-E-MOS,D, 4153mV 922pF 894pF 933pF IRFU9024 P-E-MOS,D, 3525mV P-E-MOS,D, 3525mV P-E-MOS,D, 3534mV 960pF 926pF 965pF ZVP2106A P-E-MOS,D, 3217mV P-E-MOS,D, 3220mV P-E-MOS,D, 3217mV 115pF 114pF 113pF ZVNL120A N-E-MOS,D, 1560mV N-E-MOS,D, 1535mV N-E-MOS,D, 1535mV 140pF 138pF 138pF Table 4.4: measurement
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PDF
TTester_096k.pdf
N-E-MOS,D, 4153mV 922pF 894pF 933pF IRFU9024 P-E-MOS,D, 3525mV P-E-MOS,D, 3525mV P-E-MOS,D, 3534mV 960pF 926pF 965pF ZVP2106A P-E-MOS,D, 3217mV P-E-MOS,D, 3220mV P-E-MOS,D, 3217mV 115pF 114pF 113pF ZVNL120A N-E-MOS,D, 1560mV N-E-MOS,D, 1535mV N-E-MOS,D, 1535mV 140pF 138pF 138pF Table 4.4: measurement
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PDF
LF33.pdf
specified) Symbol Parameter Test Conditions Min. Typ. Max. Unit V o OutputVoltage Io= 50 mA, V i 6 V o 3.960 4 4.040 V Io= 50 mA, V i 6 V-25<T a85 C 3.920 4.080 V Vi Operating Input Voltage Io= 500 mA 16 V Iout OutputCurrent Limit 1 A V o LineRegulation V i 5 to16 V, o = 5 mA 4 20 mV V o Load Regulation V
in „LF33 oder TS2950 CT33“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tps79912.pdf
recommendations for the TPS799xx are available from the Texas Instruments' web site at www.ti.com. 0,960 1,427 1,327 (d = 0.30 ±0.05) 0,625 Max NOTES: A. All linear dimensions are in millimeters. B. This drawing is subject to change without notice. C. NanoSäapackage configuration. NanoStar is a trademark
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PDF
51292S.pdf
15: DOUBLE AND TRIPLE-ROW TQFP/PLCC FOOTPRINT 0.028 DIA PLATED-THRU HOLES 0.9601.160 1.360 0.050 0.960 UNLESS OTHERWISE SPECIFIED, 1.160 DIMENSIONS ARE IN INCHES. 1.360 Drawing of device is 64/68-pin, 80/84-pin and 100-pin Header pin-out matches the PLCC package. PLCC will map to TQFP as follows: • Header
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