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02-ETEK-Modular-Distribution-Electric-2024.pdf
10,000 Cycles Contact position indicator Yes Protection degree IP20 Ambient temperature -5℃ to +40℃, Max.95% humidity Terminal connection type Cable/Pin-type busbar/Fork-type busbar 2 Max.terminal size for cable 25mm Max.tightening torque 2.5N.m Installation Mounting on 35mm DIN rail Connection From top
in „Balkonkraftwerk an alter E-Installation“ · Haus & Smart Home ·
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PDF
SAF_C515C-LM.pdf
Current Calculation Formulas Parameter Symbol Formula Active mode I 1.72 f + 1.72 CC typ * OSC ICC max 2.33 * OSC + 2.15 Idle mode I 0.9 f + 1.5 CC typ * OSC ICC max 1.3 * OSC + 2.0 Active mode with ICC typ TBD slow-down enabled ICC max TBD Idle mode with ICC typ TBD slow-down enabled ICC max TBD Note
in „SAF C515C LM auslesen verzweiflung :(“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Data_Schottky___HF_Dioden.pdf
typically 0.1 pF, allows the use this diodes up to 25-50 GHz Low barrier @ 1 mA 0.3 V typ. 0.33 V max Forward current max 20 mA Vb @ 10µA 5 V typ. 3 V min RF CW incident power max +20 dBm Cj @ 0V 0.1 pF typ. 0.12 pF max Dissipation power max 50 mW Series inductance max 0.8 nH Rs 12.8 Ω R.F. elettronica
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Modbus_RTU___Kommunikationshandbuch_fuer_EATON_DC1.pdf
-19 RO1 obere Grenze rw RUN 100 ≙ 10.0 % 0 - 2 U16 148 P-20 f-Fix1 rw RUN 3000 ≙ 50.0 Hz f-min - f-max U16 149 P-21 f-Fix2 rw RUN 3000 ≙ 50.0 Hz f-min - f-max U16 150 P-22 f-Fix3 rw RUN 3000 ≙ 50.0 Hz f-min - f-max U16 151 P-23 f-Fix4 rw RUN 3000 ≙ 50.0 Hz f-min - f-max U16 152 P-24 t-Schnellstopp rw
in „ich bitte um Mitt-Hilfe in Sachen RS485; Modbus; Frquenzumrichter; qModMaster“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS_S6B1713_R42.pdf
15.0V → 17.0V 3.1 Power consumption: 100μA → 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.) Modified Y-axis values of “Pad Center Coordinates” 3.3 Modified the contents of “Referential Instruction Setup Flow
in „Frage zu static indicator glcd“ · 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
slau049f.pdf
Used Baud Rates, Baud Rate Data, and Errors Divide by A: BRCLK = 32,768 Hz B: BRCLK = 1,048,576 Hz Max. Max. Synchr. Max. Max. Baud TX RX RX TX RX Rate A: B: UxBR1 UxBR0 UxMCTL Error % Error % Error % UxBR1 UxBR0 UxMCTL Error % Error % 1200 27.31 873.81 0 1B 03 −4/3 −4/3 ±2 03 69 FF 0/0.3 ±2 2400 13.65 436.91 0 0D 6B −6/3 −6/3 ±4 01 B4 FF 0/0.3 ±2 4800 6.83 218.45 0 06 6F −9/11 −9/11 ±7 0 DA 55 0/0.4 ±2 9600 3.41 109.23 0 03 4A −21/12 −21/12 ±15 0 6D 03 −0.4/1 ±2 19,200 54.61 0 36 6B −0.2/2 ±2 38,400 27.31 0 1B 03 −4/3 ±2 76,800 13.65 0 0D 6B −6/3 ±4 115,200
in „MSP430: UART Verständnis/Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RDR-158.pdf
5 V, 1 A, LNK616PG CV/CC Charger 25-Nov-08 2 Power Supply Specification Description Symbol Min Typ Max Units Comment Input Voltage VIN 85 265 VAC 2 Wire – no P.E. Frequency f 47 50/60 64 Hz LINE No-load Input Power P NL 50 mW Measured atIN = 230 VAC Output All measured at end of cable Output Voltage
in „Trafo oder schaltnetzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TI-AN032_Regulations2_4GHz_SRD.pdf
Indoor use without restrictions. Outdoor use limited to 10mW EIRP within 2454 to 2483.5 MHz. 11a: Max EIRP 500mW. Iceland: 4a: Not applicable. Italy: 3a: If used outside of own premises general authorization is required. 4a: Not implemented. 11a: Not implemented. Luxembourg: 3a: General authorization
in „2.4GHz: Was gilt bei FCC Spurious > 1GHz“ · HF, Funk und Felder ·
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PDF
k9gag08u0e.pdf
(Ta=25°c,V cc=3.3v,F=1.0mhz) K9GAG08U0E K9LBG08U0E K9HCG08U1E Item Symbol Test Condition Unit Min Max Min Max Min Max CI/O - 8 - 13 - 23 pF Input/Output Capacitance VIL=0V C I/O(W)* - 5 - 10 - 20 pF CIN - 8 - 13 - 23 pF Input Capacitance VIN=0V CIN(W)* - 5 - 10 - 20 pF NOTE : 1) Capacitance is periodically
in „Handydummy (Attrappe)mit richtigem Display 10Zoll - u.a.Motorola Xoom“ · Mikrocontroller und Digitale Elektronik ·
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PDF
app162__Interfacing_DS1820_in_a_MC_environment_.pdf
ms < X “0” < 120 ms > 1 ms VPU 1-WIRE BUS GND DS18x20/DS1822 Samples DS18x20/DS1822 Samples MIN TYP MAX MIN TYP MAX 15 ms 15 ms 30 ms 15 ms 15 ms 30 ms READ “0” SLOT READ “1” SLOT 1 ms < REC<¥ VPU 1-WIRE BUS GND Master samples > 1 ms Master samples > 1 ms 15 ms 45 ms 15 ms SOFTWARE CONTROL Delay Example
in „DS18B20 zu komplizierte Ansteuerung?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
app162__Interfacing_DS1820_in_a_MC_environment_.pdf
ms < X “0” < 120 ms > 1 ms VPU 1-WIRE BUS GND DS18x20/DS1822 Samples DS18x20/DS1822 Samples MIN TYP MAX MIN TYP MAX 15 ms 15 ms 30 ms 15 ms 15 ms 30 ms READ “0” SLOT READ “1” SLOT 1 ms < REC<¥ VPU 1-WIRE BUS GND Master samples > 1 ms Master samples > 1 ms 15 ms 45 ms 15 ms SOFTWARE CONTROL Delay Example
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PDF
6614C_ProgrammingGuide.pdf
20.475 51.188 102.38 and [SOUR:]VOLT[:LEV]:TRIG MAX *RST Voltage Value 0 V for all models [SOUR:]VOLT:PROT[:LEV] MAX 22 22 12 22 55 110 *RST OVP Value MAX for all models OUTP:PROT:DEL MAX 2,147,483.647 seconds for all models *RST Protection Delay Value
in „GPIB - Queries (?-Befehle: *IDN? z.B.) gehen nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Helvetica_12.C
Grafik-Font "Helvetica" 12 Pixels */ const char Helvetica_12[] = { /* HCap Height Ascent Descnt Min Max */ 8, 12, 10, 2, 31, 252, /* OffHi OffLo DeltaX DeltaY */ 3, 126, 6, 12, /* CH_1F "nix" cnt= 9 ab 894*/ 3, 135, 4, 12, /* CH_20 "space" cnt= 6 ab 903*/ 3, 141, 4, 12, /* CH_21 "exclam" cnt= 6 ab 909
in „C -> Zeichen aus Font suchen / rechnen?!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GH79L4N_FEB2002_.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 „GPS Receiver Furuno / Tecsys GH-79“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TDA8375.pdf
NTSC TV-processors SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT VBW(max)(p-p) maximum signal amplitude note 45 − 2.6 − V (black-to-white) VWP(max)(p-p) maximum signal amplitude at − 3.6 − V maximum white point setting (peak-to-peak value) Vred(p-p) output
in „PAL-Röhren TV auf NTSC umbauen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CMAC_Xtal.pdf
°C/55 to 70 seconds max. n Reflow: 180°C/40 to 60 seconds max., 200°C/40 sec- onds max., 220°C ±5°C/5 to 15 seconds max. Marking n Model number n Frequency Stability Code /Temperature Range Code n Frequency n Date code (Year
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UC1698u_Revision__1.5.pdf
<241> n TST2 SEG<238> ID0 SEG<234> SEG<231> ID1 VDDX0 SEG<228> ID1 SEG<225> e VSS SEG<221> VSS SEG<218> VSS SEG<215> VSS SEG<211> VSS SEG<208> d VSS SEG<205> VSS SEG<201> i VSS VSS SEG<198> VSS2 SEG<195> VSS2 SEG<191> f VSS2 SEG<188> VSS2 SEG<185> VSS2 SEG<181> VSS2 SEG<178> VSS2 SEG<175> n VDD2 SEG<
in „Defekte Heizungsregelung RC310 Display leuchtet“ · Haus & Smart Home ·
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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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Datei
lwip-1.4.0-rc2.patch
elements. + */ +#ifndef SNMP_MAX_TREE_DEPTH +#define SNMP_MAX_TREE_DEPTH 15 +#endif + +/** + * The size of the MEMP_SNMP_VALUE elements, normally calculated from + * SNMP_MAX_OCTET_STRING_LEN and SNMP_MAX_TREE_DEPTH. + */ +#ifndef SNMP_MAX_VALUE_SIZE +#define SNMP_MAX_VALUE_SIZE LWIP_MAX((SNMP_MAX_OCTET_STRING_LEN)+1, sizeof(s32_t)*(SNMP_MAX_TREE_DEPTH)) +#endif + +/* + ---------------------------------- + ---------- IGMP options ----
in „ESP8266 OpenSrc LWIP implementation“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DCC_Laborbooster.pdf
http://greuphone.magnetmotor.ch/#ibm 67 68 69 noch zu Machen: 70 -Stringlänge über RS232 ist (STRING_MAX_LENGTH =) 21 Zeichen, wird aber nicht abgefangen 71 -Programm säubern/vereinheitlichen und dokumentieren 72 1 'Define für PIC16F1933 2 'jetzt neu für PIC16F1936 (gleich) 3 Define CONFIG1 = 0x0fc2 4 Define CONFIG2 = 0x1dff 5 Define CLOCK_FREQUENCY = 32 'MHz 6 7 Define STRING_MAX_LENGTH = 21 8 9 'DCC-Laborbooster 10 11 'noch nicht implementiert: 12 'Stringlänge über RS232 ist STRING_MAX_LENGTH = 21 Zeichen, wird aber nicht abgefangen 13 14 'PIC-Register: LCD-Modul: Funktion:
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PDF
haupt.pdf
Temperaturkompensati- on. Wenn man in einem geschlossenen Raum von einer Temperaturschwankung von max. 2 C ausgeht, verbleibt nach einer erfolgten Temperaturkompensation zumin- dest noch eine max. Restabweichung von 0.35 %, welche bereits bei der Bestimmung der reinen Signallaufzeit vorhanden ist. †
in „Verstaerker mit inverser charakteristik“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HX8340-B_T__DS_preliminary_v01_080313.pdf
is determined by BT3-0 bits. Connect to a capacitor stabilizing capacitor between GND and VGH. VGH=max 15.3V A negative power output from the step-up circuit 2 for the gate line drive circuit. VGL O 1 Stabilizing The step-up rate is determined by BT(3-0)its. Connect to a capacitor stabilizing capacitor
in „SAMMELBESTELLUNG: 2"2 TFT Display mit 16bit digital interface“ · Markt ·
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Datei
DOGM162W-A.asm
---------------------------+ ; FOC2 = 0 (for future use) ; WGM21 WGM20 ; 0 0 Normal, TOV2 Flag Set MAX ; 0 1 PWM, Phase Correct ; 1 0 CTC, Top OCR2 ; 1 1 Fast PWM, Top 0xFF ; ; COM21 COM20 Non PWM Mode ; 0 0 Normal Port Operation ; 0 1 Toggle B.3 Pin17 On Compare Match ; 1 0 Clear B.3 Pin17 On Compare
in „DVM mit DOGM162W-A, ATMEGA8A, AVRASM“ · Projekte & Code ·
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PDF
SSD1305.pdf
3980.5 -18.4 217 SEG62 155.9 479.1 297 COM35 -3980.5 296.6 58 VDD -357.5 -536.0 138 COM9 3980.5 26.6 218 SEG63 103.9 479.1 298 COM36 -3980.5 251.6 59 VDDIO -292.5 -536.0 139 COM8 3980.5 71.6 219 SEG64 52.0 479.1 299 COM37 -3980.5 206.6 60 VDDIO -227.5 -536.0 140 COM7 3980.5 116.6 220 SEG65 0.0 479.1 300
in „i2c lese problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DSASW00146882.pdf
3980.5 -18.4 217 SEG62 155.9 479.1 297 COM35 -3980.5 296.6 58 VDD -357.5 -536.0 138 COM9 3980.5 26.6 218 SEG63 103.9 479.1 298 COM36 -3980.5 251.6 59 VDDIO -292.5 -536.0 139 COM8 3980.5 71.6 219 SEG64 52.0 479.1 299 COM37 -3980.5 206.6 60 VDDIO -227.5 -536.0 140 COM7 3980.5 116.6 220 SEG65 0.0 479.1 300
in „OLED Display mit ssd1305 Chip“ · 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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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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PDF
SSD1325_Salomon.pdf
oscillator and DC- DC voltage converter reduce the number of external components. 2 FEATURES Support max. 128 x 80 matrix panel Power supply: V DD=2.4V - 3.5V V =8.0V - 16.0V CC For matrix display: o Can output maximum segment source current: 300uA o Common maximum sink current: 40mA Embedded 128 x 80
in „OLED VGY12864Z-S005 über LPT Port ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SSD1327-datasheet.pdf
COM33 135 SEG69 215 COM10 56 COM31 136 SEG68 216 COM12 57 COM29 137 SEG67 217 COM14 58 COM27 138 SEG66 218 COM16 59 COM25 139 SEG65 219 COM18 60 COM23 140 SEG64 220 COM20 61 COM21 141 SEG63 221 COM22 62 COM19 142 SEG62 222 COM24 63 COM17 143 SEG61 223 COM26 64 COM15 144 SEG60 224 COM28 65 COM13 145 SEG59
in „OLED-Display SPI Psoc4“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SSD1327-datasheet.pdf
COM33 135 SEG69 215 COM10 56 COM31 136 SEG68 216 COM12 57 COM29 137 SEG67 217 COM14 58 COM27 138 SEG66 218 COM16 59 COM25 139 SEG65 219 COM18 60 COM23 140 SEG64 220 COM20 61 COM21 141 SEG63 221 COM22 62 COM19 142 SEG62 222 COM24 63 COM17 143 SEG61 223 COM26 64 COM15 144 SEG60 224 COM28 65 COM13 145 SEG59
in „OLED Stromverbrauch“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ON_Semiconductor_LSTTL_Data_DL121-D.pdf
HIGH 20 A VCC = MAX, VOUT = 2.4 V OZL Output Off Current LOW –20 A VCC = MAX, VOUT = 0.4 V 20 A VCC = MAX, VIN = 2.7 V IH Input HIGH Current 0.1 mA VCC = MAX, VIN = 7.0 V IL Input LOW Current –0.4 mA VCC = MAX, VIN = 0.4
in „Tasterentprellung nach microcontroller.net“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
debug_okay.asm
5fe: 80 93 02 01 sts 0x0102, r24 602: 08 95 ret 00000604 <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) { 604: ff
in „Fehler bei einfacher Integer-Division?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HBD855-D_Thyristor_Theory.pdf
–a max) c (1–max ) e–a max L 5.2 dV I 0 when I 0 dt 0 C 1 I p tan CE w0 APPENDIX D 5.3 tPK w dI 0 SNUBBER DISCHARGE DERIVATIONS dt 5.4 V E E2 I PK w 2C2 OVERDAMPED 0 V VC S –at 5.5 dV PK 1.0 i w L a sinh (
in „Ansteuerschaltung Thyristor und Triac“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DELL_VOSTRO_3300__WIstron_Winery13_MB_DIS_.pdf
Date: Wednesday, January 13, 2010 Sheet 33 of 88 5 4 3 2 1 5 4 3 2 1 SSID = ExpressCard D +1.5V_CARD Max. 650mA, Average 500mA. D +3.3V_CARD Max. 1300mA, Average 1000mA +3.3V_CARDAUX Max. 275mA SB-26 NEW1 27 1 USB12_N 2 USB12_P 3 NEWCARD_OC# TP3401 CPUSB# 4 PM_SLP_S3# [22,37,42,50,51,86] 5 6 [23] PCH_SMB_CLK
in „Bios programmieren mit Dual Bios Main.Bin und EC.Bin ?“ · Softwareentwicklung ·
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Datei
main.c
eeprom_write_byte(&eeFooByte, nKeyPress); dauer = 0; Warte (100); } } } else{ bPortB = 1; } } return 0; int maxValue(int a[1998], int cnt) { int max; for(int i=0 ; i<cnt ; i++) { if(a[i] > a[i-1]) { 1998 = a[i]; } } return max; } int Array [1998]; Array [ 0 ] = 1999 ; Array [ 1 ] = 1998 ; Array [ 2 ] = 1997 ;
in „Geschwindigkeit durch Taster aus einem Array anwählen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SSD1331_v1.2.pdf
1905.0 -712.5 137 TR3 4191.0 -712.5 217 SC6 5024.1 643.6 58 GPIO1 -1828.8 -712.5 138 TR2 4267.2 -712.5 218 SA7 4983.9 643.6 59 VDDIO -1752.6 -712.5 139 TR1 4343.4 -712.5 219 SB7 4943.7 643.6 60 VCIR -1676.4 -712.5 140 TR0 4419.6 -712.5 220 SC7 4903.5 643.6 61 VCIR -1600.2 -712.5 141 VSS 4495.8 -712.5 221
in „Spannungsreglerproblem durch Frequenzen bei Arduino Adafruit“ · Mikrocontroller und Digitale Elektronik ·
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Datei
test.ino.asm
+= MILLIS_INC; f += FRACT_INC; 212: 23 e0 ldi r18, 0x03 ; 3 214: 23 0f add r18, r19 if (f >= FRACT_MAX) { 216: 2d 37 cpi r18, 0x7D ; 125 218: 58 f5 brcc .+86 ; 0x270 <__vector_16+0x88> // copy these to local variables so they can be stored in registers // (volatile variables must be read from memory
in „Atmega328 1-Wire mit Timer CTC/PWM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADNS-2700.pdf
DataSignalRiseandFallTimes 11 OneBitTime(1.5MB/s) MinimalReflectance andRinging VOH (min) V IHin) V (max) IL VOLmax) GND tLST Figure11.DataSignalVoltageLevels DifferentialInputVoltageRange DifferentialOutput Crossover VoltageRange -1.0 0.0 0.2 0.4 0.6 0.8 1.0 1.2 1.4 1.6 1.8 2.0 2.2 2.4 2.6 2.8 3.0 3.2 4.6
in „USB Maus mit USART auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MS-17631_2.0.pdf
▯ } I ( ▯ 2 › 2 LED Driver IC ▯ D O ▯ î C ▯ +12V_FAN LED Forward Voltage E 2 2 1 1 SDICS ▯ +15V R_Max 2.4V x 4 pcs = 9.6V L L L L SDI_CLKL ) For EMI ▯ 3 3 3 2 2 2 1 1 1 G_Max 3.3V x 4 pcs = 13.2V C227 C100p50N0402 LED1_G L L L L L L L L L Pin Definerd 6 5 4 3 2 1 O ▯ C567 C100p50N04N2 LED1_R B_Max 3.3V
in „In Circuit Programmierer für 8-pin 150mil SOIC PM25LD512“ · Mikrocontroller und Digitale Elektronik ·
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PDF
wr2_rcm_revb.pdf
equation>’ Functionequationas definedbelow LENGTH <length> Number of points tousefrom first waveform MAX_EVENTS <max_values> Maximum number of values inhistogram MAXBINS <bins> Number of bins in histogram MAXPTS <max_points> Maximum number of points tocompute 1 06 ISSUED: January2002 LTXXX-RCM-E Rev B
in „Oszi einstellen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Model_List_for_LiPO_and_Li-ion.pdf
110.0±0.8 76,5 50↓ 3,7 4 32.0±0.8 217 506066 2000 4.8±0.2 60.0±0.8 65.0±0.8 38 60↓ 3,7 4 34.5±0.8 218 6066 606066 2400 5.9±0.2 60.0±0.8 65.0±0.8 46 50↓ 3,7 4 34.5±0.8 219 466066 1900 4.6±0.2 60.0±0.8 65.0±0.8 36,3 50↓ 3,7 4 34.5±0.8 220 456580 2600 4.5±0.2 64.0±0.8 78.5±0.8 50 40↓ 3,7 4 32.5±0.8 6580
in „suche LiIon Akku in Wunschmaß (schmaler Streifen)“ · Markt ·
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PDF
AN98030.pdf
100 mA (zero signal) C Single tone 1.6 − 30 MHz PL 25 W 400 W Gain (mid band) 15.8 dB 13.4 dB (min., max.) 15.7 dB, 16.4 dB 13.4 dB, 15.8 dB Input VSWR (mid band) 1.35 : 1 1.1 : 1 (max) 1.36 :1 1.45 : 1 Two tone 1.6 − 30 MHz PL(PEP) 25 W 400 W Efficiency 37.7% (min) 3rd order intermodulation (mid band) −46 dB −28 dB (max) −39 dB −27 dB 4.1 GAIN, VSWR and INTERMODULATION The overall performance of the two stage amplifier is shown in Figs 16 to 20. Figure 16 shows gain and input VSWR under single tone drive with 50 V
in „Stackpole Ferrit Kerne für RF Verstärker“ · HF, Funk und Felder ·
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PDF
A20_user_manual_v1.3_20141010.pdf
Security System Register Description..................................................................218 1.17. Security JTAG .....................................................................................................................225 1.17.1. Overview.........................................
in „DDR3 RAM Datenleitung beliebig anschliessen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lm5163_DC-DC-3V3.pdf
recommended operating junction temperature range of –40°C to +150°C (unless otherwise noted) (1) MIN MAX UNIT VIN to GND –0.3 100 Input voltage EN to GND –0.3 100 V FB to GND –0.3 5.5 RON to GND –0.3 5.5 Bootstrap External BST to SW capacitance 1.5 2.5 nF capacitor BST to GND –0.3 105.5 BST to SW –0.3
in „DC/DC Spannungsdrops während Bootvorgang uC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BBK-29LEM-5093T2C_MSD308C-1.pdf
Digital Color system PAL/NTSC/SECAM AV Video 1Vp-p@75ohm Audio 500mV rms HDMI Audio 500mVrms Format Max. 1080P Antenna Impedance 75 Ohm Unbalanced Power Supply Power supply: AC 100V-240V, 50/60Hz Back Panel Viewing TV KEY STANDBY,SOURCE,CH+/CH-, VOL +/-, MENU USB2.0 Socket Front Panel Viewing LED Indicators
in „Datenblatt zu MSH9010-lf gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32F107.pdf
below 1/4 of LSB. Here N = 12 (from 12-bit resolution). (1) Table 51. R AIN max for f ADC = 14 MHz Ts(cycles) tS(µs) RAIN max (k) 1.5 0.11 1.2 7.5 0.54 10 13.5 0.96 19 28.5 2.04 41 41.5 2.96 60 55.5 3.96 80 71.5 5.11 104 239.5 17.1 350 1. Based on characterization, not tested
in „STM32-comStick USB-Bootloader“ · Mikrocontroller und Digitale Elektronik ·
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PDF
APT_Communications_Protocol.pdf
35 Data Part No/Axis Serial Number Counts per Unit 36 37 38 39 40 41 42 43 44 45 46 47 Data MinPos Max Pos Max Accn 48 49 50 51 52 53 54 55 56 57 58 59 Data Max Dec Max Vel Reserved Reserved 60 61 62 63 64 65 66 67 68 69 70 71 Data Reserved Reserved Reserved Reserved 72 73 74 75 76 77 78 79 Data Reserved
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ProASICPlus_DS.pdf
±1% –40°C ±2.5% ±3.5% ±1% –55°C ±2.5% ±3.5% ±1% Acquisition Time from Cold Start Acquisition Time (max.) 30 µs fVCO ≤ 40 MHz Acquisition Time (max.) 80 µs fVCO > 40 MHz Power Consumption Analog Supply Power (max.*) 6.9 mW per PLL Digital Supply Current (max.) 7 µW/MHz Duty Cycle 50% ±0.5% 5% input period
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Book_of_Knowledge_german.pdf
Minimale Eingangsspannung 2 V I,NOM IOUTMI O2 I V V Maximale Eingangsspannung 3 V I,NOM OU TMAX O3 IN,MAX 4 V I V IN,IN OUT,NOM O4 IOUT,NOM Nennausgangsstrom 5 V I V IN,IN OUTMI O5 Minimaler Ausgangsstrom 6 V I V IOUT,MIN IN,IN OU TMAX O6 7 V I V I Maximaler Ausgangsstrom I,MAX OUT,NOM O7 OUT,MAX 8 V I
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