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I-BOTT.PDF
(DS1991 to DS1996) should not be stored or operated below –40⋅C or above +70⋅C (–40⋅F or The through–mount system can also be used to mount 158⋅F). At –55⋅C the electrolyte of the lithium cell iButtons on
in „Design eines hotplugfähigen I2C-Bussystems und Auswahl des Steckverbinders“ · Mikrocontroller und Digitale Elektronik ·
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VisiLogic_-_Communications.pdf
port. No U90 Ladder software settings are required. The M90-19-R4 RS485 port is isolated. Note that since the M90-19-R4 is an external converter, it is also compatible with other devices, such as PCs. Vision / M91
in „USB-Host / industrielle SPS / Frequency Counter“ · Mikrocontroller und Digitale Elektronik ·
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S29GL512N.pdf
93 A d v a n c e I n f o r m a t i o n AC Characteristics Erase and Program Operations–S29GL256N Only Parameter Speed Options JEDEC Std. Description 80 90 90 100 Unit AVAV tWC Write Cycle Time (Note 1) Min 80 90 90
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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Thread
Transistortester mit AVR Gesperrt
283 // .. und ist neu : #define H_CAPACITY_FACTOR 241 #define L_CAPACITY_FACTOR 167[/c]Wen wunderts, der Kommentar dazu im originalen Code sagt ja genug. Die oben (28.11.2009 12:15) erwähnten, seltsamen Effekte mit Meldungen zu antiparallelen Dioden
D124;GROUPID=4024;ARTICLE=81766;START=0;SORT=artnr;OFFSET=16;SID=25gU7hPawQARkAAEh0jbw060f3737100156c9c51cc4d1d265c6b7 Gruß, m
Projekte & Code ·Markus F. · ·944 Antworten
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Bachelor_EDM_Freyermuth_Oliver_2010-pdf.pdf
Temperaturbereich „Commercial“ erhältlich, was bedeutet, dass die Betriebstemperatur im Bereich von (0... 85)°C liegen darf (im anderen Bereich „Industrial“ wären (−40... 100)°C möglich). Entscheidend für die vorliegende Arbeit war die Anordnung der Logikgatter. Diese sind in den CLBs noch einmal in Slices unterteilt
in „Laser-FPGA-Entfernungsmesser-Bastelarbeit - Blödsinn?“ · FPGA, VHDL & Co. ·
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UC1701.pdf
Control. For UltraChip only. Do NOT use. APC0 [7] : TC, V temperature compensation coefficient (%-per- C) BIAS o 0b : TC curve definition = -0.05% /oC APC0 8 90H 1b : TC curve definition = -0.11% / C APC1 8 -- APC0 [1:0] : WA, automatic column/row Wrap Around. WA[0] : 0: PA wrap around disable 1: PA wrap
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SED1520.pdf
G G G G G G G G G G G G G G G B BS /R( L SO E E E E E E E E E E E E E E E E E E E E E E D D V R E C C A S S S S S S S S S S S S S S S S S S S S S S DB2 80 75 70 65 60 55 SEG22 DB3 50 SEG23 DB4 SEG24 DB5 SEG25 DB6 85 SEG26 DB7 45 SEG27 VDD SEG28 RES SEG29 FR SEG30 V5 90 SEG31 V3 SED1520/SED1521 40 SEG32
in „SED1520: Lesen vom Display“ · Mikrocontroller und Digitale Elektronik ·
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DM-KIT-SSK_for_BF533.pdf
_D2 EXP_PPI0_CLK /SMS 74 73 72 71 B 76 75 BF_PPI0_D3 R14 C1 L 76 75 74 73 80 79 I 80 79 78 77 82 81 0 22pFND P /SRAS 82 81 SCKE 80 79 86 85 X /SWE 86 85 I CLK_OUT_EXP2 84 83 /BG 88 87 E 88 87 86 85 /BGH 90 89 90 89 88 87 90 89 M GND GND GND PPI0_D[15:0] D[15
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pic18f2320.pdf
0.83 46 1.20 0.16 25 1.20 0.16 12 — — — 2.4 2.43 1.32 22 2.40 0.16 12 2.23 -6.99 6 — — — 9.6 9.32 -2.90 5 10.42 8.51 2 7.81 -18.62 1 — — — 19.2 18.64 -2.90 2 15.63 -18.62 1 15.63 -18.62 0 — — — 38.4 — — — 31.25 -18.62 0 — — — — — — 57.6 55.93 -2.90 0 — — — — — — — — — 2003 Microchip Technology Inc. DS39599C-page
in „I2C-Bus Collision“ · Mikrocontroller und Digitale Elektronik ·
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DS_S6B1713_R42.pdf
Pulse Read tPWH80 (R) 245 - - ns /WR, /RD High width Write tPWH80 (W) 315 - - ns Data setup time tDS80 35 Data hold time DB7 tDH80 13 - - ns To Read access time DB0 ACC80 - - 125 ns C L= 100 pF Output disable time tOD80 10 90 (VDD = 4.5 to 5.5V, Ta = -40 to +85°C) Item Signal Symbol Min. Typ. Max. Unit
in „Frage zu static indicator glcd“ · Mikrocontroller und Digitale Elektronik ·
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version_1p3_assembler.lst
;CHECK FOR ERROR 4007: 103A 60 F3 JZ C2C ;EXIT IF ZERO 4008: ; 4009: ; Handle the error condition 4010: ; 4011: 103C 90 17 51 MOV DPTR,#E2X ;DIVIDE BY ZERO 4012: 103F 30 E0 03 JNB ACC.0,FPTST1 ;UNDERFLOW 4013: 1042 90 18 04 MOV DPTR,#E7X
in „Basic für 80C31“ · Mikrocontroller und Digitale Elektronik ·
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PIC_32_MX_110_F_016_-_I-SO__11-2-3___SO_28_.pdf
history feature • Built-in support for Bugzilla issue tracker © 2011-2014 Microchip Technology Inc. DS60001168F-page 241 PIC32MX1XX/2XX 28.2 MPLAB XC Compilers 28.4 MPLINK Object Linker/ The MPLAB XC Compilers are complete ANSI C MPLIB Object Librarian compilers for all of Microchip’s 8, 16, and 32-bit
in „pic32 flash und i/o speed“ · Mikrocontroller und Digitale Elektronik ·
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PIC_32M_X_220_F_032_B-50I-SP_____DIP_28_.pdf
history feature • Built-in support for Bugzilla issue tracker © 2011-2014 Microchip Technology Inc. DS60001168F-page 241 PIC32MX1XX/2XX 28.2 MPLAB XC Compilers 28.4 MPLINK Object Linker/ The MPLAB XC Compilers are complete ANSI C MPLIB Object Librarian compilers for all of Microchip’s 8, 16, and 32-bit
in „PIC32MX flash access time“ · Mikrocontroller und Digitale Elektronik ·
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f_2320312311226304479081.pdf
4494 45 CAP1– 338 85 CLS –3298 6 TEST0 4375 46 CAP1– 249 86 V SS –3418 7 VSS 4255 47 CAP2– 160 87 C86 –3538 8 CS1 4136 48 CAP2– 71 88 P/S –3657 9 CS2 4016 49 CAP2+ –18 89 V DD –3777 10 VDD 3896 50 CAP2+ –107 90 HPM –3896 11 RES 3777 51 V SS –196 91 V SS –4016 12 A0 3657 52 V SS –285 92 IRS –4136 13
in „Philips GLCD Modul“ · Mikrocontroller und Digitale Elektronik ·
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HAP-CU-TechDok-20080319.pdf
°C 1111 1111 0101 1110 FF5E -25,0625 °C 1111 1110 0110 1111 FE6F -55 °C 1111 1100 1001 0000 FC90 Tabelle 4.9: Temperaturcodierung beim digitalen Thermometer (DS18B20) Der DS18S20 hat eine Auflösung von
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HM17CM4096.pdf
1396 288 COM40 9831 180 187 VSSH(R) 5310 -1396 238 DMY104 8370 -1396 289 COM39 9831 225 188 DMY90 5370 -1396 239 DMY105 8430 -1396 290 COM38 9831 270 189 DMY91 5430 -1396 240 DMY106 8490 -1396 291 COM37 9831 315 190 C1+(L) 5490 -1396 241 DMY107 8550 -1396 292 COM36 9831 360 191 C1+(C) 5550 -1396
in „LCD Graphik Display mit µController ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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VDO-Druckgeber-Pressure_Sensors.pdf
081-030-152C A5 MA5 x A l ±V59z J 592 AR9z A5 = 05360-081-030-106C A5 MA5 x A l ±VA90z J 59Az AR9z A5 J 05 360-081-030-112C A5 MA2 x A9z ±V59z J 59Az 259z A2 8 360-0851-030-022C A5 MA2 x A9z ±VA9z J 59Az 259z A2
in „Druckgeber auswerten“ · Mikrocontroller und Digitale Elektronik ·
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MAX1630-MAX1635.pdf
0 3 1 V+ = 6V 1 ) VDD > 13V 1 M M A 5V REGULATING M 0 90 90 ( N 600 – ) V+ = 15V ) E 5V LOAD = 0A M ( ( U Y 80 C 80 C N N V+ = 15V U A C C T 400 I 70 F 70 O 5V LOAD = 3A X E E M U ON5 = 5V X 200 1 60 ON3 = 0V 60 ON3 = ON5 = 5V A f = 300kHz f = 300kHz M 6 MAX1631
in „Steuerung für Elektrochrom-Spiegel (BMW 5er)“ · Mikrocontroller und Digitale Elektronik ·
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Ergebnisse einer FFT zusammen fassen
Board von Texas Instruments. EK-TM4C123GXL mit einem ARM® Cortex®-M4F Based MCU TM4C123G. Der hat 2 ADC's. Der ADC hat folgende Daten: [c] -ADC resolution = 12BIT -ADC conversion clock frequency = 16Mhz -ADC conversion rate = 1Msps
+) { // do this from 0 Sample to N - 1 sample stateA = x[i] + a1 * stateB + a2 * stateC; stateC = stateB; stateB = stateA; } // do this once with the N - 1 sample // power from |X(m)|2 of output y_power = (stateB * stateB) + (stateC * stateC) - (stateB * a1 * stateC
Digitale Signalverarbeitung / DSP / Machine Learning ·Kevin Hinrichs · ·115 Antworten
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A4979-Datasheet.pdf
135 145 ºC Hot Temperature Warning Hysteresis T JWHhys – 15 – ºC Overtemperature Shutdown Threshold T Temperature increasing 155 170 – ºC JF Overtemperature Hysteresis TJhys Recovery = TJF– TJhys – 15 – ºC 1For
in „Schrittmotor-Treiber-IC mit umfangreichen Programmiermöglichkeiten und Diagnose-Funktionen“ · Mikrocontroller und Digitale Elektronik ·
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TMC262_datasheet.pdf
240 247 22 34 81 126 165 198 223 240 248 23 36 83 127 166 199 224 240 248 24 37 84 128 167 200 225 241 248 25 39 86 129 168 201 225 241 248 26 40 87 131 169 201 226 241 248 27 42 89 132 170 202 226 242 248 28 43 90 133 172 203 227 242 248 29 45 91 135 173 204 228 242 248 30 46 93 136 174 205 228 243
in „Wärmeentwicklung Mosfet“ · Mikrocontroller und Digitale Elektronik ·
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2117592.pdf
Output Voltage -0.5 4.6 V 4.2 Operating Conditions Parameter Min Max Units Operating Temperature 0 +70 °C Operating Humidity 10 90 (non condensing) %RH Storage Temperature -10 +75 °C Storage Humidity 10 95 (non condensing) %RH Storage Temperature Cycle Test 24 hrs -10 +75 °C SMSC CX Module 14 Revision 2.8
in „CX870-31B Jukeblox SMCS Microchip Firmware Update“ · Mikrocontroller und Digitale Elektronik ·
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Datei
debug_error.asm
.-6 ; 0x364 <acquire_DHT+0x1f0> 36a: 90 91 07 01 lds r25, 0x0107 36e: 98 2b or r25, r24 370: 90 93 07 01 sts 0x0107, r25 374: 1d c0 rjmp .+58 ; 0x3b0 <acquire_DHT+0x23c> 376: 90 93 04 01 sts 0x0104, r25 37a: 1a c0 rjmp .+52 ; 0x3b0 <acquire_DHT
in „Fehler bei einfacher Integer-Division?“ · Mikrocontroller und Digitale Elektronik ·
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technical.pdf
converted into S-parameters. Y + −Y −Y −Y GS GD GS GB YGD + YGB gm− Y GD YGD + YBD + YDS −Y DS − gm− g mb −Y BD + gmb Y = −gm− Y GS −Y DS Y GS+ Y DS+ −YBS − gmb (11.228) YBS + gm+ g mb −Y GB −YBD −YBS YBD + YBS + YGB 154 with Y = jω(C + C ) (11.229) GS GS GS OV L YGD = jω(C GD + C GDOV L) (11.230) Y GB = jω(C GB + C GBOV L) (11.231) YBD = gbd+ jω C BD dep+ CBDS dep+ CBD diff (11.232) YBS = gbs+ jω C BSdep+ C BSSdep+ C BSdiff (11.233) Y = g (11.234) DS ds 11.5.4 Noise model The thermal noise generated by the
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PIC16F18344.pdf
See Table 1 for location of all peripheral functions. 2015 Microchip Technology Inc. Preliminary DS40001800A-page 3 PIC16(L)F18324/18344 FIGURE 2: 16-PIN UQFN (4x4) D C C S V N N V 1 1 1 1 RA5 1 12 RA0/ICSPDAT RA4 2 11 RA1/ICSPCLK RA3/MCLR /PP 3PIC16(L)F18324 10 RA2 RC5 4 9 RC0 5 6 7 8 4 3 2 1 C C
in „EEPROM Verständnisproblem beim PIC 16F18344“ · Mikrocontroller und Digitale Elektronik ·
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Datei
life.lst
------------ 87 ; code 88 ;-------------------------------------------------------- 89 .area _CODE 90 ;life.c:47: uint8_t get_rreg() 91 ; --------------------------------- 92 ; Function get_rreg 93 ; --------------------------------- 0000 94 _get_rreg_start:: 0000 95 _get_rreg: 96 ;life.c:52: __endasm
in „Conways Game of Live zu langsam auf Z80“ · Softwareentwicklung ·
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Datenblatt_PIC12F1822.pdf
— D0Ch — D8Ch — E0Ch — E8Ch — F0Ch — F8Ch P C0Dh — C8Dh — D0Dh — D8Dh — E0Dh — E8Dh — F0Dh — F8Dh C0Eh — C8Eh — D0Eh — D8Eh — E0Eh — E8Eh — F0Eh — F8Eh I C C0Fh — C8Fh — D0Fh — D8Fh — E0Fh — E8Fh — F0Fh — F8Fh C10h — C90h — D10h — D90h — E10h — E90h — F10h — F90h 1 C11h — C91h — D11h — D91h — E11h — E91h — F11h — F91h 2 P C12h — C92h — D12h — D92h — E12h — E92h — F12h — F92h e F i C13h — C93h — D13h — D93h — E13h — E93h — F13h — F93h / m C14h —
in „PIC12F1822-PWM Mode“ · Mikrocontroller und Digitale Elektronik ·
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Datenblatt_PIC12F1822.pdf
— D0Ch — D8Ch — E0Ch — E8Ch — F0Ch — F8Ch P C0Dh — C8Dh — D0Dh — D8Dh — E0Dh — E8Dh — F0Dh — F8Dh C0Eh — C8Eh — D0Eh — D8Eh — E0Eh — E8Eh — F0Eh — F8Eh I C C0Fh — C8Fh — D0Fh — D8Fh — E0Fh — E8Fh — F0Fh — F8Fh C10h — C90h — D10h — D90h — E10h — E90h — F10h — F90h 1 C11h — C91h — D11h — D91h — E11h — E91h — F11h — F91h 2 P C12h — C92h — D12h — D92h — E12h — E92h — F12h — F92h e F i C13h — C93h — D13h — D93h — E13h — E93h — F13h — F93h / m C14h —
in „Interrupt-PIC12F1822“ · Mikrocontroller und Digitale Elektronik ·
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12F1822_1823.pdf
— D0Ch — D8Ch — E0Ch — E8Ch — F0Ch — F8Ch P C0Dh — C8Dh — D0Dh — D8Dh — E0Dh — E8Dh — F0Dh — F8Dh C0Eh — C8Eh — D0Eh — D8Eh — E0Eh — E8Eh — F0Eh — F8Eh I C C0Fh — C8Fh — D0Fh — D8Fh — E0Fh — E8Fh — F0Fh — F8Fh C10h — C90h — D10h — D90h — E10h — E90h — F10h — F90h 1 C11h — C91h — D11h — D91h — E11h — E91h — F11h — F91h 2 P C12h — C92h — D12h — D92h — E12h — E92h — F12h — F92h e F i C13h — C93h — D13h — D93h — E13h — E93h — F13h — F93h / m C14h —
in „Auflösung PWM-Mode“ · Mikrocontroller und Digitale Elektronik ·
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12F1822_1823.pdf
— D0Ch — D8Ch — E0Ch — E8Ch — F0Ch — F8Ch P C0Dh — C8Dh — D0Dh — D8Dh — E0Dh — E8Dh — F0Dh — F8Dh C0Eh — C8Eh — D0Eh — D8Eh — E0Eh — E8Eh — F0Eh — F8Eh I C C0Fh — C8Fh — D0Fh — D8Fh — E0Fh — E8Fh — F0Fh — F8Fh C10h — C90h — D10h — D90h — E10h — E90h — F10h — F90h 1 C11h — C91h — D11h — D91h — E11h — E91h — F11h — F91h 2 P C12h — C92h — D12h — D92h — E12h — E92h — F12h — F92h e F i C13h — C93h — D13h — D93h — E13h — E93h — F13h — F93h / m C14h —
in „8Bits und 2Bits in eine Integer-Variable“ · Mikrocontroller und Digitale Elektronik ·
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12F1822_1823.pdf
— D0Ch — D8Ch — E0Ch — E8Ch — F0Ch — F8Ch P C0Dh — C8Dh — D0Dh — D8Dh — E0Dh — E8Dh — F0Dh — F8Dh C0Eh — C8Eh — D0Eh — D8Eh — E0Eh — E8Eh — F0Eh — F8Eh I C C0Fh — C8Fh — D0Fh — D8Fh — E0Fh — E8Fh — F0Fh — F8Fh C10h — C90h — D10h — D90h — E10h — E90h — F10h — F90h 1 C11h — C91h — D11h — D91h — E11h — E91h — F11h — F91h 2 P C12h — C92h — D12h — D92h — E12h — E92h — F12h — F92h e F i C13h — C93h — D13h — D93h — E13h — E93h — F13h — F93h / m C14h —
in „Timer2 auf 10bit einstellen“ · Mikrocontroller und Digitale Elektronik ·
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PIC12FLF1822PIC16FLF1823.pdf
— D0Ch — D8Ch — E0Ch — E8Ch — F0Ch — F8Ch P C0Dh — C8Dh — D0Dh — D8Dh — E0Dh — E8Dh — F0Dh — F8Dh C0Eh — C8Eh — D0Eh — D8Eh — E0Eh — E8Eh — F0Eh — F8Eh I C C0Fh — C8Fh — D0Fh — D8Fh — E0Fh — E8Fh — F0Fh — F8Fh C10h — C90h — D10h — D90h — E10h — E90h — F10h — F90h 1 C11h — C91h — D11h — D91h — E11h — E91h — F11h — F91h 2 P C12h — C92h — D12h — D92h — E12h — E92h — F12h — F92h e F i C13h — C93h — D13h — D93h — E13h — E93h — F13h — F93h / m C14h —
in „PIC16lf1823 General purpose I/Os mit Schmitt Trigger ?“ · Mikrocontroller und Digitale Elektronik ·
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Ansteuer-IS_UC1698__Vers._1.21_fuer_DEM_240160AFGH-PW___240x160.pdf
Bus = idle 2468 3455 None Reset (stand-by current) <1 5 Revision C1.21 59 U LTRA C HIP High-Voltage Mixed-Signal IC ©1999 ~ 2008 AC C HARACTERISTICS CD tAS80 AH80 CS0 CS1 tCSSA80 tCY80 CSH80 tPWR80,PWW80 HPW80 WR0 WR1 tDS80 tDH80 Write D[7:0] tACC80 OD80 Read D[7:0]
in „LCD DEM240160 mit UC1698 wie Bildspeicher auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Master-thesis_Wenzel-Maier_final-version.pdf
to the microcontroller and their label names are shown in Table 11 and Table 12. Figure 64 { 16-bit dsPIC33EP128GM304 microcontroller 3V3 3V3 C76 GND ledG TmpA 4.7nF ledR TmpB TmpC a485-en a485-rx C77 mpin a485-tx 4 4 4 4 4 3 3 3 3 3 3 100nF 8 7 6 5D S 5 4 39 4 R R R RD V R R R R R C78 ldor 1 RB9 V RB4 33 sI2C-scl isnk 2 RC6 RA8 32 sI2C-sda 3V3 chrg 3 RC7 RA3 31 osc2 4.7nF 4 RC8 RA2 30 vccc 5 RC9 U1 VSS 29 osc1 C92 vddc 6 dsPIC33EP 28 7 VSS 128GM304 VDD 27 1.80V 8 VCAP RC2 26 Uvzk 10µF pp3t-A 9 RB10 RC1 25
in „Platinfuchs IIa: Isolierter, bidirektionaler 45W DC/DC Wandler zum Laden/Entladen eines Liion-Akkus“ · Projekte & Code ·
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Arduino_Project_Handbook_25_Practical_Projects_to_Get_You_Started.pdf
from Abdullah Alhazmy www.Alhazmy13.net #include <Tone.h> Tone speakerpin; int starttune[] = {NOTE_C4, NOTE_F4, NOTE_C4, NOTE_F4, NOTE_C4, NOTE_F4, NOTE_C4, NOTE_F4, NOTE_G4, NOTE_F4, NOTE_E4, NOTE_F4, NOTE_G4}; int duration2[] = {100, 200, 100, 200, 100, 400, 100, 100, 100, 100, 200, 100, 500}; int note[] = {NOTE_C4, NOTE_C4, NOTE_G4, NOTE_C5, NOTE_G4, NOTE_C5}; int duration[] = {100, 100, 100, 300, 100, 300}; boolean button[] = {2, 3, 4, 5}; // Pins connected to // pushbutton inputs boolean ledpin[] = {8, 9, 10
in „LED Driver mit µC“ · Analoge Elektronik und Schaltungstechnik ·
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PIC32MX3XX_Data_Sheet.pdf
A / T U L 1 C S A M M G M A O A N T P P 2 P P M E M / 1 C P R P A U G C M P / L A P DS61143E-page 4 Preliminary © 2008 Microchip Technology Inc. PIC32MX3XX/4XX Pin Diagram (64-Pin USB) 64-Pin TQFP (USB) 4 D / D 1
in „PIC32 und Assembler“ · Mikrocontroller und Digitale Elektronik ·
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174505-da-01-en-adc_08041.pdf
temperature range ADC0803/04-1 LCD -40 to +85 ⋅C ADC0803/04-1 LCN -40 to +85 ⋅C ADC0803/04-1 CD 0 to +70 ⋅C ADC0803/04-1 CN 0 to +70 ⋅C T Storage temperature -65 to +150 ⋅C STG TSOLD Lead soldering temperature (10 seconds) 300 ⋅C P Maximum power dissipation
in „A/D Wandler“ · Mikrocontroller und Digitale Elektronik ·
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ADC0803_4.pdf
temperature range ADC0803/04-1 LCD -40 to +85 ⋅C ADC0803/04-1 LCN -40 to +85 ⋅C ADC0803/04-1 CD 0 to +70 ⋅C ADC0803/04-1 CN 0 to +70 ⋅C T Storage temperature -65 to +150 ⋅C STG TSOLD Lead soldering temperature (10 seconds) 300 ⋅C P Maximum power dissipation
in „Verständnisfrage zum ADC080x (VIN-MIN/DC-Offset)“ · Analoge Elektronik und Schaltungstechnik ·
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Thread
Card12 mit EVAL-AD5781 verbinden
!E C:\Programme\iccv712\EIGENE~1\DACfktFS.c(5): missing identifier !E C:\Programme\iccv712\EIGENE~1\DACfktFS.c(5): syntax error; found `5' expecting `;' !E C:\Programme\iccv712\EIGENE~1\DACfktFS.c(5): unrecognized
!E C:\Programme\iccv712\EIGENE~1\DACfktFS.c(5): syntax error; found `5' expecting `;' !E C:\Programme\iccv712\EIGENE~1\DACfktFS.c(5): unrecognized declaration !W C:\Programme\iccv712\EIGENE~1\DACfktFS.c
Mikrocontroller und Digitale Elektronik ·J. R. · ·384 Antworten
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HAMEG_HM1507-3_150MHZ_Oszilloskop_-_Service_Manual.pdf
2 e g_ 90 ceoos SP2 ¦ C8006 C9007 U5 C90N9 129037 +65V š_EE1< 3301-1 802 90 390R 4 U AmK L2 08 77 1RF _ 2?? E804 ¦ 10;, EW 0_10r C9010 43 C u :.1 ____ <3 R9_ ' 09041 Q 3 6BR OOR L? L? (_) U U vR9010 I ° GRE _›
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harman_kardon_hkts200-230_hkts210-230_sub.pdf
100uF P0R6901P0R6902 P0T901 IC8 0 470k 0 CN4 7 0 T IC9 LM1117-5.0 0 R70 1 P BC846B R71 VCC 1 1M 0 C90 STA516B 3 P0IC803 P0IC804 +5N0+5V R77 0 C P0R7101P0R7102 4 +5V 1 0 P 10nF 0 1 1 SPK- P0R7702P0R7701 2 P 10 0 0 C + 2 1 RR72 10 + 9 9 P C C 0 P 0 0 1 9 9 C91 0470k R73 9 9 C93 C92 0 0 100nF 7 D 0 -N007V
in „Überspannung Herman Kardon Subwoofer“ · Analoge Elektronik und Schaltungstechnik ·
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Roland_G-70_Service_Notes_.pdf
1 0 0 0 0 0 0 0 81A MWP 31B MQDL D 42A 0KCS 51 41A 34 QDDV MQDU 93 9A CNYS 1KCS 41B 9 QDDV 2KCS 41C 94 QDDV KLC 83 11C TUOVI D D + 3.3 3 QDDV EKC 73 J @T50CPR 0DS 81B 72 DDV 1DS 81D C136 NIU GRM31@ 41 DDV E W 61 6D E WE 2DS 71A C135 NIU GRM39@ . 1 DDV SAC 71 E WEX 33 521R 4A SACE 3DS 81C C134 NIU GRM39@ + SAR SACEX 33 421R SARE 4DS . D SC 81 SAREX 33 321R 4B EOE/ SCE 5DS 71B + ] ] C133 NIU GRM39@ 0 QD 91 SCEX 33 221R 5C 6DS 61B K . K . C132 NIU GRM39@ ▯&' 2 1 QD 7DS 61C 9 9 D J C [ C [ ▯&' 4 2 QD 0A 0DE 61D 8 M 9 M 0 0 @ T T N
in „Roland G-70 fährt nicht hoch.“ · Analoge Elektronik und Schaltungstechnik ·
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Roland-G-70-Service-Manual.pdf
2KCS 9 QDDV KLC TUOVI D 41C + 94 QDDV EKC 83 11C 0DS D 3.3 3 DDV 73 J @T50CPR 1DS 81B C136 NIU GRM31@ 72 DDV E W E WE 2DS 81D C135 NIU GRM39@ 3 41 DDV SAC 61 E WEX 33 521R 6D SACE 3DS 71A 3 1 SAR 71 SACEX 33 421R 4A SARE 4DS 81C 3 C134 NIU GRM39@ + 81 SAREX 33 321R 4B 71B 3 C133 NIU GRM39@ D SC 91 SCEX 33 221R 5C EOE/ SCE 5DS 61B + 5 5 C132 NIU GRM39@ ▯&' 2 0 QD 6DS 61C @ @ D C [ C [ ▯&' 4 1 QD 7DS 61D 3 3 kJ N N D D ▯&' 5 2 QD
in „Roland G-70 fährt nicht hoch.“ · Analoge Elektronik und Schaltungstechnik ·
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UC1698u_Revision__1.5.pdf
bus LC[7:6]=10b 50 / 40 – nS LC[7:C]=01b / 45 Low pulse width 16-bit bus 85 / 65 – nS LPW68 8-bit bus p LC[7:6]=01b 50 / 45 tDS68 D15~D0 Data setup time i 30 – nS tDH68 Data hold time h 10 tOD68 Output disable time c C L= 100pF 15 30 nS
in „Defekte Heizungsregelung RC310 Display leuchtet“ · Haus & Smart Home ·
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board_schematic2.pdf
GNDDC3VS GNDDC3VS GNDDC3VS R29 Vout=(1+ R90/R91)*0.8 C24 np R1%31k6S03 +12V D13 DBAT54A Do Not Stuff 2 1 C27 L5 VCC15 C C30 C220nS03V10X L15UH1A3_WEPD2M 3 C 1.5V/1.6A R37 C10uS05V16X 2 1 R1%15k0S03 U7 i T V O D17 + C35 5 O 3 C10uS05V16X SHDN BSW
in „USB 2.0 Beschaltung“ · Mikrocontroller und Digitale Elektronik ·
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3986pfd.pdf
designed to operate 2-phase bipolar formula: stepper motors in full-, half-, quarter, and sixteenth-step C REG > C BOOT × 3 × PWM , modes. The current in each of the two external power full- bridges, all N-channel MOSFETs, is independently regulated where C REG and C BOOT are in nF, and PWM is the maximum
in „Bitte Hilfe in Englisch“ · Mikrocontroller und Digitale Elektronik ·
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A4989-Datasheet-1.pdf
designed to operate 2-phase bipolar formula: stepper motors in full-, half-, quarter, and sixteenth-step C REG > C BOOT × 3 × PWM , modes. The current in each of the two external power full- bridges, all N-channel MOSFETs, is independently regulated where C REG and C BOOT are in nF, and PWM is the maximum
in „Masseflächen?“ · Platinen ·
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3986.pdf
designed to operate 2-phase bipolar formula: stepper motors in full-, half-, quarter, and sixteenth-step C REG > C BOOT × 3 × PWM , modes. The current in each of the two external power full- bridges, all N-channel MOSFETs, is independently regulated where C REG and C BOOT are in nF, and PWM is the maximum
in „Schrittmotorsteuerung“ · Mikrocontroller und Digitale Elektronik ·
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DSPIC33EP512GM710_datasheet.pdf
°C, up to 70 MIPS • 21 General Purpose Timers: • 3.0V to 3.6V, -40°C to +125°C, up to 60 MIPS - Nine 16-bit and up to four 32-bit timers/counters Core: 16-Bit dsPIC33E CPU - Eight output capture modules
in „Probleme mit SRAM 23LCV1024“ · Mikrocontroller und Digitale Elektronik ·
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038-05058-01-X-MLCC_REVB03_SKIT.pdf
DMN26D0UFB4-7 Lower Boundary (Twdl max) = 920 ms Upper Boundary (Twdu min) = 1360 ms [6] PWRGD_FPD_M2C 1 Reset Delay time (Trst min) = 635 ms R158 DS2 261 2 3 1 2 C 1 2 C Q7 DMN26D0UFB4-7 [4,8] CC_PS_PGOOD 1 R159 DS3 261 2 3 1 2 1 2 Q8 DMN26D0UFB4-7 [6] PWRGD_PL_M2C 1 R160 DS4 261 EEPROM 2 3 1 2 1 2 R255