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PDF
AN1040_Freescale.pdf
1.5 0.5 2.3 0.9 2 mil ƒ Mica Ž TO-126 Thermopad 6 2.0 1.3 4.3 3.3 2 mil i 1/4 x 3/8 Mica L ’ TO-220AB Thermowatt 8 1.2 1.0 3.4 1.6 2 mil 1, 2 • Mica ” NOTES: 1. See Figures 3 and 4 for additional data on TO-3 and TO-220 packages. ƒ 2.
in „Lineares Netzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HX8352-A.pdf
................................................. 126 Figure 6. 93 CABC Gain setting Register (R72h)........................................................................... 126 Figure 6. 94 CABC Gain setting Register (R73h)........................................................................... 126 Figure 6. 95 CABC Gain setting Register (R74h)........................................................................... 126 Figure 6. 96 CABC Gain setting Register (R75h)..........................
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PDF
MITSUBISHI_CV-0MW7B51.pdf
of H/U) Digital signal input circuit. (input Audio digital signal of H/U or RSES) DSP circuit. DolbyAC-3/dts DECODER Auto-Loudness, Bass/Treble/Middle, Volume/Fader/Balance Sound Field Fix-EQ Test tone Beep sound Others Control AMP by communication with H/U. DIAG function. (DC-offset detection) SPECIFICATIONS
in „Verstärker reparieren“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
fcntl.lst
r9,r22 54:fcntl.c **** uint8_t i, j; 55:fcntl.c **** 56:fcntl.c **** for(i=0; i<NO_MAXOPEN; i++) { 126 .stabn 68,0,56,.LM6-open 127 .LM6: 128 0030 00E0 ldi r16,lo8(0) 129 0032 80E0 ldi r24,lo8(filetable) 130 0034 90E0 ldi r25,hi8(filetable) 131 0036 282F mov r18,r24 132 0038 392F mov r19,r25 133 003a
in „Compiler-Fehler?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt_Baseband_Processeor_for_Multiband_GSM-GPRS_Application_Skyworks_CX805-30.pdf
; input/output 3.2.1.2 Telephone Line Interface The telephone line interface signals are: • RING 1 AC Coupled (RAC1, pin 21); input • TIP 1 AC Coupled (TAC1, pin 20); input • RING 2 AC Coupled (RAC2, pin 19); input • TIP 2 AC Coupled (TAC2, pin 18); input • TIP and RING DC Measurement (TRDC, pin 12);
in „GSM-Modul (SIM908) nur analoge Ausgänge für Anruf?“ · HF, Funk und Felder ·
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Datei
memory.vhd
560dec3b", 103 => x"c0dafdc1", 104 => x"3213cace", 105 => x"5dc9b404", 106 => x"7a5fa379", 107 => x"82de80ac", 108 => x"8b2b9ffc", 109 => x"41ac3993", 110 => x"118ec79b", 111 => x"5a1c2012", 112 => x"d37bc613", 113 => x"93db8b51", 114 => x"b128cc30", 115 => x"58baf71f", 116 => x"46e0ba9e", 117 => x"a48cbf9a
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PDF
02-ETEK-Modular-Distribution-Electric-2024.pdf
) 500V 500V 500V 500V 500V 500V 500V Tripping curve B,C,D B,C,D B,C,D B,C,D C,D 8-12In 8-12In Type AC AC AC AC AC AC DC Certificate Catalogue page No. 39 40 41 42 43 44 45 www.etek-china.com 02 ETEK MCB Product Selection Table Products Overview of Circuit Breakers S3 Model No. EKM3-63S EKM3-63 EKM3-63H
in „Balkonkraftwerk an alter E-Installation“ · Haus & Smart Home ·
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Datei
out.lst
push r30 19e: ff 93 push r31 /* Test if a string is being sent */ if (pUART_Buffer!=0) 1a0: e0 91 ac 00 lds r30, 0x00AC 1a4: f0 91 ad 00 lds r31, 0x00AD 1a8: 30 97 sbiw r30, 0x00 ; 0 1aa: 79 f0 breq .+30 ; 0x1ca { /* Go to next character in string */ pUART_Buffer++; 1ac: 31 96 adiw r30, 0x01 ; 1 1ae: f0 93 ad 00 sts 0x00AD, r31 1b2: e0 93 ac 00 sts 0x00AC, r30 /* Test if the end of string has been reached */ if (PRG_RDB(pUART_Buffer)==0) 1b6: e4 91 lpm r30, Z 1b8: ee 23 and r30, r30 1ba: 29 f4 brne .+10 ; 0x1c6 { /* String has been sent
in „Multiplikation ist zu schnell...“ · Mikrocontroller und Digitale Elektronik ·
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PDF
M12021PB_SM_PANASONIC_EN.pdf
material. isoperating properly there is nopossibility of X-Radiation 1-4 LEAKAGE CURRENT COLD CHECK (AC problem. The basic precaution which must be exercised power supply model only) is to keep the high voltage at the following factory 1-4-1 Unplug the AC cord and connect a jumper between recommended
in „CRT Monitor gegen VGA Monitor tauschen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
M12021PB_SM_PANASONIC_EN.pdf
material. isoperating properly there is nopossibility of X-Radiation 1-4 LEAKAGE CURRENT COLD CHECK (AC problem. The basic precaution which must be exercised power supply model only) is to keep the high voltage at the following factory 1-4-1 Unplug the AC cord and connect a jumper between recommended
in „Heidenhain Monitor BE 212 für TNC 351“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
PC.txt
ASC: BlAdr: 000c00 Adr: 0aa Val: C0 ASC: À BlAdr: 000c00 Adr: 0ab Val: 0C ASC: BlAdr: 000c00 Adr: 0ac Val: BB ASC: » BlAdr: 000c00 Adr: 0ae Val: 80 ASC: BlAdr: 000c00 Adr: 0af Val: B9 ASC: ¹ BlAdr: 000c00 Adr: 0b0 Val: 01 ASC: BlAdr: 000c00 Adr: 0b2 Val: E8 ASC: è BlAdr: 000c00 Adr: 0b3 Val: 2B ASC:
in „SD-Karte mit PIC18F2685 beschreiben, am PC auslesen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
PIC.txt
ASC: BlAdr: 000c00 Adr: 0aa Val: C0 ASC: À BlAdr: 000c00 Adr: 0ab Val: 0C ASC: BlAdr: 000c00 Adr: 0ac Val: BB ASC: » BlAdr: 000c00 Adr: 0ae Val: 80 ASC: BlAdr: 000c00 Adr: 0af Val: B9 ASC: ¹ BlAdr: 000c00 Adr: 0b0 Val: 01 ASC: BlAdr: 000c00 Adr: 0b2 Val: E8 ASC: è BlAdr: 000c00 Adr: 0b3 Val: 2B ASC:
in „SD-Karte mit PIC18F2685 beschreiben, am PC auslesen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
sine_values.txt
1773a5c8", 121 => x"17a51a79", 122 => x"17d68b82", 123 => x"1807f8dd", 124 => x"18396281", 125 => x"186ac866", 126 => x"189c2a86", 127 => x"18cd88d9", 128 => x"18fee356", 129 => x"193039f7", 130 => x"19618cb3", 131 => x"1992db83", 132 => x"19c42660", 133 => x"19f56d42", 134 => x"1a26b021", 135 => x"1a57eef5
in „DDFS von Lothar Miller ich steh aufm Schlauch“ · FPGA, VHDL & Co. ·
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PDF
LTSpice_XVII__Tutorial.pdf
sieht das anschließend aus, wenn wieder die Zeit von 0….4 Millisekunden dargestellt wird: 31 5.5. AC-Sweep zur Ermittlung des Frequenzganges 1. Schritt: Wir öffnen das Property Menü der Spannungsquelle durch einen Rechtsklick auf das Schaltzeichen und tragen ein: AC Amplitude = 1 AC Phase = 0 Ausserdem
in „Triac selbsterhaltend triggern“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LTSpice_XVII__Tutorial_korr.pdf
sieht das anschließend aus, wenn wieder die Zeit von 0….4 Millisekunden dargestellt wird: 31 5.5. AC-Sweep zur Ermittlung des Frequenzganges 1. Schritt: Wir öffnen das Property Menü der Spannungsquelle durch einen Rechtsklick auf das Schaltzeichen und tragen ein: AC Amplitude = 1 AC Phase = 0 Ausserdem
in „Simulation LT Spice“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Lenovo_Z50-70_NM-A273_ACLUA_MB_Rev0.3_schematic_.pdf
CV5 1 2 .1U_0402_10V6-K PCIE_CRX_C_GTX_N3 AB12 PEX_TX3_N R NC104 AF2 @ 2a GC6@ 0 2 GC6@ AC13 NC89 P 1 0 1 AD14 NC90 X U UV2 CV11 AC14 NC91 E i GPU_EVENT#_R S D1 . GPU_EVENT# 2 .1U_0402_10V6-K AC15 NC93 I 8,37,40,44 PLT_RST# PLT_RST# 1 B VCC 5 OPT@ AB16 NC94 C B7 VGA_CRT_CLK 2N7002KW_SOT323
in „Laptop defekt: Kommunikation EC - PCH - CPU“ · Mikrocontroller und Digitale Elektronik ·
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PDF
te2200.pdf
4 4 4 AB B 21120823 Monolithic IC BA12003BF-E2 1 1 1 AF B 10105416 IC/MOS SN74AHCT08PWR 1 1 1 1 1 AC B 10120128 IC/CMOS SN74AHCT244PWR 1 1 1 1 1 AC B 10120129 IC/CMOS SN74LV04APW R 2 2 2 2 2 AC B 10005659 IC/CMOS SN74LV08APW R 4 4 4 4 4 AB B 10120130 IC/CMOS SN74LV11APW R 1 1 1 AC B 10005669 IC/CMOS
in „LCD identifizieren.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
uPD6126A.PDF
OSC-OUT 9 16 KI0 REM 9 20 K I/O6 OSC-IN 10 15 KI1 VDD 10 19 K I/O7 VSS11 14 KI2 OSC-OUT 11 18 K I0 AC 12 13 KI3 OSC-IN 12 17 K I1 VSS 13 16 K I2 AC 14 15 K I3 2 PD6125A, 6126A BLOCK DIAGRAM ROM × CNTL CNTL D.P. L 1002 10 bit (L) (H) ROM H ROM 32 × 5 bit D.P. MPX (L) SP X RAM PC(L) P ROM M (H) ADD RAM
in „Chinesische IC und ihre Verwandschaft“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TIA-EIA-485.pdf
. ULs may consist of drivers and/or receivers and fail-safe resistors, but they do not include the ac termination resistors. TheexampleinFigure3showsaULcalculationfortheSN75ALS176B.Sincethis device is connected internally as a transceiver (i.e., driver output and receiver input connected to the same
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PDF
R1_und_R2.pdf
with lead (Pb)-free and lead containing soldering processes Metal glaze on high quality ceramic AEC-Q200 qualified Material categorization: For definitions of compliance please see www.vishay.com/doc?99912 STANDARD ELECTRICAL SPECIFICATIONS SIZE RATED LIMITING TEMPERATURE RESISTANCE MODEL DISSIPATION ELEMENT COEFFICIENT TOLERANCE RANGE SERIES INCH METRIC P70 °C VOLTAGE ppm/K % W Umax.AC/DC 0.063 50 ± 100 ± 1 1R0 to 10M E24; E96 D10/CRCW0402 0402 RR 1005M ± 200 ± 5 E24 Zero-Ohm-Resistor: R = 20 m, I at 70 °C = 1.5 A max. max. ± 100 ± 1 E24; E96 D11/CRCW0603 0603 RR 1608M 0.10 75 ± 200
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PDF
TCM8240MD_E150405_REV13.pdf
A2 2+(1+16+12+1+16+162)*2=418 (Byte) +04 00 Table number Y-DC : 00 DHT parameter 10 Table number Y-AC : 10 DHT parameter 01 Table number C-DC : 01 DHT parameter 11 Table number C-AC : 11 DHT parameter 00 Table number Y-DC : 00 DHT parameter 10 Table number Y-AC : 10 DHT parameter 01 Table number C-DC : 01 DHT parameter 11 Table number C-AC : 11 DHT parameter Remark : the current JPEG logic core outputs two sets of Huffmann table. SOS structure Code (Hex) Meaning +00 FF Marker Prefix +01 DA SOS +02 00 Length of field 0C 2+1+3*2+3=12 (Byte
in „Cam-Modul TCM8240MD und ARM-Board per I²C“ · Mikrocontroller und Digitale Elektronik ·
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PDF
amd_functional_datasheet.pdf
M28 MEMDATA[94] N29 MEMDATA[122] AH24 MEMDQS[22] V26 MEMDATA[95] P28 MEMDATA[123] AF23 MEMDQS[23] AC28 MEMDATA[96] U27 MEMDATA[124] AH27 MEMDQS[24] AG28 MEMDATA[97] V27 MEMDATA[125] AG26 MEMDQS[25] AF24 MEMDATA[98] W27 MEMDATA[126] AH25 MEMDQS[26] R28 MEMDATA[99] Y26 MEMDATA[127] AG24 MEMDQS[27] F24
in „Am3 Mainboard Vcore instabil wenn kalt“ · PC Hard- und Software ·
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PDF
Schaltplan.pdf
1.5V X 4 B B D17 Q22 DC JACK R120 1N4001 8550 C140 2 4.7/1.5W 203 LLINE 1 D16 Q27 8550 1N4001 JP5 AC220V 2 D19 C141 1 RLINE 1 C144 4001 D11 U11 203 2 104 SELBATT 4148 LM7809 U JP3 O 1 2 3 D8 B2 R D12 C145 1N4001 8 LOUT SW1 4148 1000uF/25V L20 C142 7 EXIN 203 6 5 CHARGE D13 D7 4 BATT2 4148 C114 C152 1N4001 3 BATT C146 103 104 C151 2 BATT1 1000uF 104 C143 1 GND 203 R126 R124 CON8 Q21 330 1K R125 C164 A 560 2200uF/25V A 8050 Title Size Number Revision B Date: 13-Jul-2006 Sheet of File: H:\delai\2100\2100V03.Ddb Drawn By: 1 2 3 4 5 6 1 2 3 4 5 6 GAIN GAIN R68 VAMVRAD2
in „LCD Anzeige-Inhalt speichern.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
6800_Instruction_Set.PDF
the Accumulator 84 01010100 124 54 LSR B 1 2 Logical Shift Right 85 01010101 125 55 ! 86 01010110 126 56 ROR B 1 2 Rotate Right 87 01010111 127 57 ASR B 1 2 Arithmetic Shift Right 88 01011000 130 58 ASL B 1 2 Arithmetic Shift Left 89 01011001 131 59 ROL B 1 2 Rotate Left 90 01011010 132 5A DEC B 1 2
in „Neues aus der KI“ · Offtopic ·
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PDF
YAMAICHI_TS-Katalog-2017_01_2.pdf
16 14 x 14 38 x 38 OT NP351-19602-1 196 14 x 14 12 x 12 33 x 33 OT IC280-196-126 196 14 x 14 12 x 12 28.40 x 31.35 CS NP351-20881-1-1 208 17 x 17 15 x 15 40 x 40 OT NP351-20890-*-* 208 17 x 17 15 x 15 40 x 40 OT NP351-20897-* 208 17 x 17 15 x 15 40 x 40 OT NP351-20897-* AC-23539
in „TSOP-66 Sockel zum testen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
mul.txt
04 00 .word 0x0004 ; ???? a6: 01 02 muls r16, r17 a8: 03 03 mulsu r16, r19 aa: 01 03 mulsu r16, r17 ac: 02 00 .word 0x0002 ; ???? ae: 01 02 muls r16, r17 b0: 04 00 .word 0x0004 ; ???? b2: 01 02 muls r16, r17 b4: 03 03 mulsu r16, r19 b6: 02 00 .word 0x0002 ; ???? b8: 01 03 mulsu r16, r17 ba: 01 02 muls
in „Array im Flash - Ineffizient?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
23810294.pdf
FEATURES • Low thermal gradient due to the use of nickel conductor and low profile closed ring tongue • AEC-Q200 qualified (grade 1) • UL recognized, file E148885 (UL category XGPU2) • Material categorization: For definitions of compliance please see www.vishay.com/doc?99912 QUICK REFERENCE DATA DIMENSIONS
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Datei
disassebled_original_working.asm
<main+0xbbe> 6aba: 85 e4 ldi r24, 0x45 ; 69 6abc: 0e 94 86 16 call 0x2d0c ; 0x2d0c <_Z8is_sht3xh> 6ac0: 88 23 and r24, r24 6ac2: 09 f4 brne .+2 ; 0x6ac6 <main+0xc08> 6ac4: 07 cd rjmp .-1522 ; 0x64d4 <main+0x616> 6ac6: 6b ee ldi r22, 0xEB ; 235 6ac8: 71 ed ldi r23, 0xD1 ; 209 6aca: 8d eb ldi r24, 0xBD
in „Bizarrer Firmware crash - ATmega4808. Wie Debuggen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RealSimGear.pdf
92 ?? 92h code:0abe ff ?? FFh code:0abe.1 08 ?? 08h code:0abf 10 ?? 10h code:0abf.1 92 ?? 92h code:0ac0 fe ?? FEh code:0ac0.1 08 ?? 08h code:0ac1 10 ?? 10h code:0ac1.1 92 ?? 92h code:0ac2 01 ?? 01h code:0ac2.1 09 ?? 09h code:0ac3 10 ?? 10h code:0ac3.1 92 ?? 92h code:0ac4 00 ?? 00h code:0ac4.1 09 ?? 09h
in „ATmega2560 hex File disassemblieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
apc_smart-ups_1000_1400_sch.pdf
PHAS-REF 1N4005 (Sh. 2) +24V 1 2 (Sh. 2,4) D21 8PINRIB V-STBY J400 D19 D20 C41 7 715-0069 2 R73 1 AC-OUT2 T1 2 1 2 1 2 1 8 22.1K,1%,1/4W (Sh. 1) 1 1N4148 1N4148 0.01UF,50V,20% +12V V-STBY +12V C59 1 V 1 2 1 3 3 +12V +12V D 2 7 1 4 4 / / 0 0.01UF,50V,20% D 1 C U F C 4 1 W IC9 5 % 2 3 3 2 1 2 / 4 14 0
in „Wechselrichter bauen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Sager_D87P_Service_Manual_Part3.pdf
BR3# AB22 VCORE HD59 Y24 D58 TESTHI7/MCLKIO1 AA20 HD60 Y21 D59 等 長 , 誤 差 +/-25mils. TESTHI6/MCLKIO0 AC23 R29 1 2 62 VCORE HD61 AA25 D60 TESTHI5/MCLK3 AC24 HD62 AA22 D61 TESTHI4/MCLK2 AC20 HD63 AA24 D63 TESTHI2/MCLK0 AC21 TESTHI1/ODT AA2 [6] HRS0# HRS0# F1 RS0 C TESTHI0/BYPASSEN# AD24 R3351 2 62 VCORE
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Datei
scan.lst
a4: 81 93 st Z+, r24 a6: 86 b3 in r24, 0x16 ; 22 a8: 81 93 st Z+, r24 aa: 86 b3 in r24, 0x16 ; 22 ac: 81 93 st Z+, r24 ae: 86 b3 in r24, 0x16 ; 22 b0: 81 93 st Z+, r24 b2: 86 b3 in r24, 0x16 ; 22 b4: 81 93 st Z+, r24 b6: 86 b3 in r24, 0x16 ; 22 b8: 81 93 st Z+, r24 ba: 86 b3 in r24, 0x16 ; 22 bc: 81
in „Assembler und gcc“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MaxComm_Protokollbeschreibung_DE.pdf
SolarMax 60SHT 11110 SolarMax 300C 300 SolarMax 660TS-SV ST 20406 SolarMax 50SHT 11105 SolarMax 125 126 SolarMax 330TS-SV ST 20403 SolarMax 30SHT 11100 SolarMax 100 101 SolarMax 300TS MT 20318 SolarMax 28SHT 11095 SolarMax 100C 100 SolarMax 300TS ST 20316 SolarMax 25SHT 11090 SolarMax 80C 80 SOLARMAX
in „Projekt Solarmax RS485 auslesen, mit Modscan 32“ · Mikrocontroller und Digitale Elektronik ·
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Datei
bootloader.asm
leas 7,SP ;$06B6 $1B $87 rts ;$06B8 $3D movb L04CF,L04AB ;$06B9 $18 $0C $04 $CF $04 $AB movb L04D0,L04AC ;$06BF $18 $0C $04 $D0 $04 $AC movb L04D1,L04AD ;$06C5 $18 $0C $04 $D1 $04 $AD ldx #$04AE ;$06CB $CE $04 $AE stx L04B9 ;$06CE $7E $04 $B9 ldd #$0006 ;$06D1 $CC $00 $06 std L04A8 ;$06D4 $7C $04 $A8 ldy
in „HCS12 CPU Disassembler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATGmeo5c.pdf
for Synchronous motor components AC synchronous motors are identical to those in Pacific Scientific step motors except for high Runs cooler than other Longer, more reliable motor life— impedance, serially connected stator AC synchronous
in „Schrittmotor-Treiber Stepper Motor Pacific Scientific Powermax II“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DDS.vhd
x"02CC8F9F", 17 => x"02F95612", 18 => x"03261C11", 19 => x"0352E192", 20 => x"037FA690", 21 => x"03AC6B04", 22 => x"03D92EE7", 23 => x"0405F232", 24 => x"0432B4DE", 25 => x"045F76E4", 26 => x"048C383D", 27 => x"04B8F8E2", 28 => x"04E5B8CD", 29 => x"051277F6", 30 => x"053F3657", 31 => x"056BF3E8", 32
in „DDFS von Lothar Miller ich steh aufm Schlauch“ · FPGA, VHDL & Co. ·
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Datei
DATEN.LST
2749 0ABC D4 .byte 212 2750 0ABD D4 .byte 212 2751 0ABE C0 .byte 192 2752 0ABF C0 .byte 192 2753 0AC0 C0 .byte 192 2754 0AC1 D4 .byte 212 2755 0AC2 D4 .byte 212 2756 0AC3 D4 .byte 212 2757 0AC4 D4 .byte 212 2758 0AC5 D4 .byte 212 2759 0AC6 D4 .byte 212 2760 0AC7 D4 .byte 212 2761 0AC8 F6 .byte 246 2762
in „Daten auf EPROM 27c512LC brennen / ERTEC PGS53 / Adapter ADPL34/35“ · PC Hard- und Software ·
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Datei
bm01.asm
0x2> a6: 00 d0 rcall .+0 ; 0xa8 <main+0x4> a8: cd b7 in r28, 0x3d ; 61 aa: de b7 in r29, 0x3e ; 62 ac: 50 e0 ldi r21, 0x00 ; 0 ae: 40 e0 ldi r20, 0x00 ; 0 b0: 20 91 02 38 lds r18, 0x3802 ; 0x803802 <r1> b4: 30 91 03 38 lds r19, 0x3803 ; 0x803803 <r1+0x1> b8: a0 91 02 38 lds r26, 0x3802 ; 0x803802 <r1
in „FixedPoint in C und C++“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.hex.txt
.sec1:0000022c 41 c0 rjmp .+130 ; 0x000002b0 .sec1:0000022e 00 00 nop .sec1:00000230 3f c0 rjmp .+126 ; 0x000002b0 .sec1:00000232 00 00 nop .sec1:00000234 3d c0 rjmp .+122 ; 0x000002b0 .sec1:00000236 00 00 nop .sec1:00000238 3b c0 rjmp .+118 ; 0x000002b0 .sec1:0000023a 00 00 nop .sec1:0000023c 39 c0
in „warum braucht Blinkbeispiel 780 byte Flash?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Smart_Switch.pdf
milliohms maximum @ 20mV 10mA Insulation Resistance 100 meghohms minimum @100V DC Dielectric Strength 125V AC for 1 minute Mechanical Endurance 1,000,000 operations minimum Electrical Endurance 1,000,000 operations minimum Operating Force 2.2 ± 0.5 Newtons Total Travel 1.8mm Operating Temperature Range 0°C through
in „[V] 4 Stück Smart Switch“ · Markt ·
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PDF
Verfuegbare_Teile.pdf
37 Siemens 3RT1916 - 1EH00 27 108 129.6 38 Siemens 8WD4450 - 5AB 6 156 187.2 39 Siemens 8WD4450 - 5AC 6 156 187.2 40 Siemens 8WD4450 - 5AD 15 390 468 41 Siemens 3RV1031 - 4EA10 1 61 73.2 42 Siemens 3RV1031 - 4FA10 1 71 85.2 43 Siemens 6EP1333 - 2AA00 1 81 97.2 44 Siemens 3RT1044 - 1AL20 1 83 99.6 45
in „[V] Diverses Elektromaterial. Lagerauflösung.“ · Markt ·
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PDF
Elektor83.PDF
.95 zN 427......26.70 LS125 1,10 15641. 4,95 4085 1,20 6821.. .. . .. .. . 5,95914.......,90 zii24 LS126 1,15 1S642. 4,95 4086 1,65 6840..........13,9s LM 3915.......,90 zil28 LS132 1,30 1S643. 4,95 4089 2,80 6843..........49.60 MK 5009.....25,65 1S136 1,-- 1S644. 4,95 4093 1,10 6844..........39,50 MK
in „Das Ende des Z80“ · Mikrocontroller und Digitale Elektronik ·
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Datei
disaess.txt
0x4a002980 0ab0 .word 0x16001bb3 0ab4 .word 0x9d100380 0ab8 .word 0x9c1800a8 0abc .word 0x07800000 0ac0 .word 0x9f1d8010 0ac4 .word 0x9f138612 0ac8 .word 0x9f1f8012 0acc .word 0x98802950 0ad0 .word 0x07800000 0ad4 .word 0x9d0c8118 0ad8 .word 0x04800814 0adc .word 0x9e0e0740 0ae0 .word 0x01000613 0ae4
in „Vermutliches TMS320C6xx-Binary disassemblieren“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
CPC5620_21_R03.pdf
information on RX pins. Negative differential analog signal received 11 RX- from the telephone line. Must be AC coupled with 0.1 µF. Positivedifferentialanalogsignalreceivedfrom 12 RX+ the telephone line. Must be AC coupled with 0.1 µF. 13 SNP+ Positive differential snoop input 14 SNP- Negative differential snoop
in „Phone Line Interface“ · Markt ·
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Datei
lcd_4bit.c
*********************************************** /// \brief Checks the busy flag, see lcd_read_busy_ac() /// // ********************************************************************************* void _lcd_ready(void) { #ifdef LCD_FIX_DELAY delay_ms(1); #else while (lcd_read_busy_ac() & 0x80); #endif //
in „MSP430_RTC_Display_Zeiger“ · Mikrocontroller und Digitale Elektronik ·
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Datei
fft232.asm
reti ;----------------------------------------------------------; ; Initialize peripherals (ATmega8-16AC @16MHz) reset: clr _0 ;Zero reg. ldiw Z, RAMTOP ;Clear all variables ldiw X, RAMEND-RAMTOP+1 ; st Z+, _0 ; sbiw XL, 1 ; brne PC-2 ;/ sbiw ZL, 1 ;SP ú » outw SP, Z ;/ outi PORTB, 0b00101000 ;Port B ú
in „Schnelle FFT in Assembler“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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Datei
fft232.asm
reti ;----------------------------------------------------------; ; Initialize peripherals (ATmega8-16AC @16MHz) reset: clr _0 ;Zero reg. ldiw Z, RAMTOP ;Clear all variables ldiw X, RAMEND-RAMTOP+1 ; st Z+, _0 ; sbiw XL, 1 ; brne PC-2 ;/ sbiw ZL, 1 ;SP ú » outw SP, Z ;/ outi PORTB, 0b00101000 ;Port B ú
in „Schnelle FFT in Assembler“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
mmic_BGA2709.pdf
Rating System (IEC 60134) SYMBOL PARAMETER CONDITIONS MIN. MAX. UNIT VS DC supply voltage RF input AC coupled 6 V S supply current 35 mA Ptot total power dissipation Ts 90 C 200 mW Tstg storage temperature 65 +150 C T operating junction temperature 150 C j PD maximum drive power 10 dBm
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Datei
Startup.lst
PSEL: PLL Divider Selection 124 00000000 ;// <0=> 1 <1=> 2 <2=> 4 <3=> 8 125 00000000 ;// <i> P Value 126 00000000 ;// </e> 127 00000000 00000001 PLL_SETUP EQU 1 128 00000000 00000024 PLLCFG_Val EQU 0x00000024 129 00000000 130 00000000 131 00000000 ; Memory Accelerator Module (MAM) definitions 132 00000000
in „LPC2294 Boot Loader Mode“ · Mikrocontroller und Digitale Elektronik ·
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PDF
APC_Back-Ups_400VA.pdf
6 , 1 R145 2 6 % 2 / 1 , V 7 W 0U/ 1 5 + V+ 1 1 R141 2 1 1 1 , , 3 2 % 3 1 5 C 6 / (S, 6 % U R160 AC-OK R K 150K,1%,1/4W R 1 4 1 1 , R M F 2 1 D7 1 , 1K% 1 , ( 1 2 2 - V- LM324 20.0K,1%,1/4W8 2 1 0 R144 1 0 4 R K R 2 0 1 W 8 2 1 R 1 0., R 2 0 150K,1%,1/4W 11 1 6 2 4 1 2 10 IC14 1 0 1 . 1 1 1 0 2 4 T2
in „Hilfe für eine defekte APC-USV gesucht“ · Analoge Elektronik und Schaltungstechnik ·