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431000.pdf
OE A7 13 20 A0 A2 10 23 A10 A6 14 19 A1 A5 15 18 A2 A1 11 22 CE1 A4 16 17 A3 A0 12 21 I/O8 I/O1 13 20 I/O7 I/O2 14 19 I/O6 I/O3 15 18 I/O5 GND 16 17 I/O4 32-pin Plastic TSOP (I) (8 × 20mm) (Reverse bent) [ PD431000AGZ-KKH] OE 32 1 A11
in „SRAM Ansteuern (Zeitdiagramm)“ · Mikrocontroller und Digitale Elektronik ·
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bd7690fj-e.pdf
...................................................................................................14 Application Example ..................................................................................................................................................................14 Attention in the
in „Modulierung eines Hochsetzstellers mit PFC-Steuerung in PLECS – Hilfe bei Grundlagen der Steuerung g“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Si823x_-_AMP_ISOdriver.pdf
. . . . . . . . .49 13. Package Outline: 14 LD LGA with Thermal Pad (5 x 5 mm) . . . . . . . . . . . . . . . . . . . . .50 14. Land Pattern: 14 LD LGA with Thermal Pad . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .51 15. Top
in „Si8223 - Highside/Lowside Treiber - normales Verhalten?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LTC1407CMSE.pdf
LTC1407/LTC1407A Serial 12-Bit/14-Bit, 3Msps Simultaneous Sampling ADCs with Shutdown U FEATURES DESCRIPTIO ® 3Msps Sampling ADC with Two Simultaneous TheLTC 1407/LTC1407Aare12-bit/14-bit,3MspsADCs Differential Inputs with two 1.5Msps
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Ausschnitt aus einem Datenblatt eines Messgeräts
50°C; storage and operation at reduced accuracy. HEATING LIMITATION: Prolonged operation above 200A ac or 1 kHz can cause damage to the Y8100. WORKING VOLTAGE RATING: Core to output; 600V dc or 480V ac Max output to ground; 42V dc or 30V ac Max APERTURE SIZE: 3/4" (19 mm) diameter SIZE-OVERALL: 9" x 4 1/2" x 1-7/16" (230 mm x 115 mm x 37 mm) WEIGHT: 14 ounces (0.4 kg), with batteries POWER: 4; "AA" cells BATTERY LIFE: Alkaline-20 hours continuous CAUTION The Y8100 is not to be used at circuit voltages above 600V dc or 480V ac. 1-4
in „[V] 3x Fluke Y8100 Strommesszange 0-20/0-200A AC DC“ · Markt · · Fotos
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AD725.pdf
chip when not in use. TTL Logic Levels. 6 RIN Red Component Video Input. Circuit B 0 mV to 714 mV AC-Coupled. 7 GIN Green Component Video Input. Circuit B 0 mV to 714 mV AC-Coupled. 8 BIN Blue Component Video Input. Circuit B 0 mV to 714 mV AC-Coupled. 9 CRMA Chrominance Output.* Circuit C Approximately
in „(F)UZE-Box Zusatzmodul für AVR NET-IO“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DDS.pdf
properties of DSSV type ܗɹɹ໊ DSSV–301L–YD, DSSV–401M–YD, DSSV–301L–T5, DSSV–401M–T5 Part number ҹՃ݅ AC600V–40A–1.50sec. AC600V–7A–5sec. AC600V–2.2A–30min. Applied conditions ൃՐ Rateofignition O▯▯▯▯ 0 0 0 ిػͷ҆શن֨ɺ6-▯▯▯▯ɺ$4"–C22.2 No.225–M90ʹ͓͍ͯɺ্هͷΑ Overvoltage testing is required in both UL1459 and
in „Hilfe Bauteilidentifizierung für Reparatur“ · Analoge Elektronik und Schaltungstechnik ·
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156346062-STi7105.pdf
Net name AB28 PIO1[3] AB29 PIO1[2] AC3 EMIADDR[9] AC4 EMIADDR[18] AC5 NOTEMIBE[0] AC6 EMIADDR[17] AC10 DGND ) n AC11 DGND t AC12 DGND i b AC21 VDD1V2 r AC22 DGND f g AC23 HDMI_GND3V3 p s l AC27 HDMIPLL_AVDD1V2 l a AC28 PIO1[0] e t ( AC29
in „Motorola Vip19x0 (Big brother of Vip1710)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Aluminum_Electrolytic_Capacitors_EPCOS.pdf
operation. 25 10/02 Aluminum Electrolytic Capacitors General Technical Information 3.2 Capacitance 3.2.1 AC and DC capacitance The capacitance of a capacitor can be determined by measuring its ac impedance (taking into account amplitude and phase) or by measuring the charge it will hold when a direct voltage
in „Wie lange halten sich verpackte Elkos?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IntegratedMagneticsBo.pdf
In the structure, there exist two sets of ideal transformer and three inductors. R1 R2 R1= lgap m ⋅ Ac lgap2 n1*i1 n2*i2 R2 = R0 m ⋅Ac l R0 = gap0 n3*i3 n4*i4 m ⋅ Ac Fig. 12 Flux density simulation result for Design A Fig. 9 Reluctance model of general integrated magnetic structurIt can be seen from the
in „Trafo: Streuinduktivität für LCC Regler berechnen“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
disassembly.txt
LSL R0, R2, #0 if (n >= (0x30000 >> 13)) { 0000011E 2818 CMP R0, #24 00000120 D301 BCC 0x000126 n -= 14; // High Small 8kB Sectors 00000122 380E SUB R0, #14 00000124 E003 B 0x00012E else if (n >= (0x10000 >> 13)) { 00000126 2808 CMP R0, #8 00000128 D301 BCC 0x00012E n = 7 + (n >> 3); // Large 64kB Sectors
in „Flash Read and Write in LPC-2148“ · µC & Digital Electronics ·
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EtherBoardSch.pdf
28 26 A13 25 I2CCLK A4 10 75 VCC 14 VCC A13 1 A14 20 1 /RD 34 PD0/INT0/SCL 26 I2CDAT A5 11 SA4 BCS 60 GND A14 VCC 10 VCC OC 11 GND /WR 33 RD/PG1 PD1/INT1/SDA 27 RXD1 A6 12 SA5 LEDBNC 65 GND 62256 GND GND G ALE 43 WR/PG0 PD2/INT2/RXD1 28
in „Elektronik über ein Ethernet Netzwerk steuern?“ · Mikrocontroller und Digitale Elektronik ·
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Bauteilliste einer Elektronikkomponente
Electrolytic Capacitors 6,3mm C2 865060643005 Small Signal Diode D1 SOD-80 FDLL914B Schottky Diode D2 DO-214AC B260A-13-F Schottky Diode D3 DO-214AC B260A-13-F Transistor (BJT) - Nexperia BC850CW,115 Q1 SOT-323-3 BC850CW,115 MOSFET IRFR9024PBF Q2 DPAK-3 (TO-252-3) IRFR9024PBF Resistor 110k R1 R0805 RK73H2ATTD1103F
in „CD74HC14M Schmitt-Trigger Schaltung funktioniert nicht“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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HV9308.pdf
HV OUT29 12 HVOUT6 34 HV OUT28 7 8 9 10 11 12 13 14 15 16 17 13 HVOUT5 35 HV OUT27 14 HVOUT4 36 HV OUT26 top view 15 HV 3 37 HV 25 OUT OUT 44-pin J-Lead Package 16 HVOUT2 38 HV OUT24 17 HV 1 39 HV 23 OUT OUT 18 Data Out 40 HV OUT22 19 N/C 41 HV OUT21
in „128x32 Display mit welchen Micro-Controller ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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Datei
asm_optimiert.asm
debug_abbrev 00000137 00000000 00000000 000005c8 2**0 CONTENTS, READONLY, DEBUGGING 7 .debug_line 000001ac 00000000 00000000 000006ff 2**0 CONTENTS, READONLY, DEBUGGING 8 .debug_frame 00000040 00000000 00000000 000008ac 2**2 CONTENTS, READONLY, DEBUGGING 9 .debug_str 00000187 00000000 00000000 000008ec 2*
in „compiler optimierung zuviel :/“ · Mikrocontroller und Digitale Elektronik ·
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CD4514BC.PDF
Output Voltage |O| < 1 µA VDD = 5V 4.95 4.95 5.0 4.95 V V = 10V 9.95 9.95 10.0 9.95 V DD VDD = 15V 14.95 14.95 15.0 14.95 V VIL LOW Level |O | < 1 µA Input Voltage VDD = 5V, O = 0.5V or 4.5V 1.5 2.25 1.5 1.5 V VDD = 10V, O = 1.0V or 9.0V 3.0 4.50 3.0 3.0 V V = 15V, V = 1.5V or 13.5V 4.0 6.75 4.0 4.0
in „Adressierung Porterweiterung mit IC 4514“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lcd_manual.pdf
display shift takes place, the addresses High-order Lower-order Bits Bits shift as follows: AC AC6AC5 AC4 AC3 AC2AC1AC0 Left 01H02H03 H4 H5 H6 H7 0H 4H 4H 43H44H45H46 H7 H8 H H Shift HEX HEX Digit Digit Right Shift27H00H01 H2 H3 H4 H5 0H 6H 4H 41H42H43H44 H5 H6 H H Example: DD RAM address '4E'
in „Fehler bei 4Bit LCD Init?“ · Mikrocontroller und Digitale Elektronik ·
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lcd-spec.pdf
display shift takes place, the addresses High-order Lower-order Bits Bits shift as follows: AC AC6AC5 AC4 AC3 AC2AC1AC0 Left 01H02H03 H4 H5 H6 H7 0H 4H 4H 43H44H45H46 H7 H8 H H Shift HEX HEX Digit Digit Right Shift27H00H01 H2 H3 H4 H5 0H 6H 4H 41H42H43H44 H5 H6 H H Example: DD RAM address '4E'
in „LCD Tutorial“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lcd_manual.pdf
display shift takes place, the addresses High-order Lower-order Bits Bits shift as follows: AC AC6AC5 AC4 AC3 AC2AC1AC0 Left 01H02H03 H4 H5 H6 H7 0H 4H 4H 43H44H45H46 H7 H8 H H Shift HEX HEX Digit Digit Right Shift27H00H01 H2 H3 H4 H5 0H 6H 4H 41H42H43H44 H5 H6 H H Example: DD RAM address '4E'
in „LCD will nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
device2007.txt
32PLCC, AT49LW080*32PLCC, AT49LL020*32PLCC, AT49LL040*32PLCC, AT49LL080*32PLCC, ____EEPROM-ACTRANS AC39LV512, AC39LV010, AC39LV020, AC39LV040, ____EEPROM-WINBOND W27E257, W27E512, W27E010, W27E020, W27E040, W27C257, W27C512, W27C010, W27C020, W27C040, W27F257, W27F512, W27F010, W27F020, W27F040, W28F256
in „24C04 beschreiben und auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Schematic_Scope_1014D_2023-01-06.pdf
18 2 12 LCD_D7 19 GND 4 HPCOMFB PD6/LCD_D10/TWI1_SDA 13 LCD_D10 20 19 80 HPVCC PD7/LCD_D11/DA_MCLK 14 LCD_D11 LCD_D15 21 20 3V3 82 AVCC PD8/LCD_D12/DA_BCLK 15 LCD_D12 LCD_D14 22 21 m AGND PD9/LCD_D13/DA_LRCK 16 LCD_D13 LCD_D13 23 22 m PD10/LCD_D14/DA_IN 17 LCD_D14 LCD_D12 24 23 . 78 PD11/LCD_D15/DA_OUT
in „Fnirsi 1014d defekt“ · Mikrocontroller und Digitale Elektronik ·
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hy62256a.pdf
°C) HY62256A 5.0 55/70/85 50 1mA 100 25 0~70(Normal) Note 1. Current value is max. PIN CONNECTION A14 1 28 Vcc A14 1 28 Vcc A12 2 27 /WE A12 2 27 /WE A6 4 25 A83 A7 3 26 A13 A11 2 27 /CS A4 13 16 A1 A5 5 24 A9 A5 4 25 A9 A9 3 26 I/O8 A5 12 17 A0 A4 6 23 A11 A4 6 23 A11 A13 5 24 I/O6 A7 10 19 I/O2 A3
in „70ns SRAM an ATmega128 ?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.lss.txt
r24, r24 698: 99 1f adc r25, r25 69a: 4a 95 dec r20 69c: e1 f7 brne .-8 ; 0x696 <usbFunctionSetup+0x14e> 69e: 83 0f add r24, r19 6a0: 91 1d adc r25, r1 6a2: 90 93 6a 00 sts 0x006A, r25 6a6: 80 93 69 00 sts 0x0069, r24 if (prog_blockflags & PROG_BLOCKFLAG_FIRST) { 6aa: 20 ff sbrs r18, 0 6ac: 02 c0 rjmp
in „2 Programme in einem AVR“ · Mikrocontroller und Digitale Elektronik ·
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PDF
3108fb.pdf
9501/031/030 B 9501/071/040 B 9500/097/090 B 9500/127/100 B Fujitaka FPH13106NC FPH17106NC FPH17108AC FPH112708AC Kryotherm TGM-127-1.0-0.8 LCB-127-1.4-1.15 Laird Technology PT6.7.F2.3030.W6 PT8.12.F2.4040.TA.W6 Marlow Industries RC3-8-01 RC6-6-01 RC12-8-01LS Tellurex C2-15-0405 C2-20-0409 C2-30-1505
in „Blink LED mit Ladungspumpe für sehr niedrige Eingangsspannung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MCP3911_Eval_1901A.pdf
1 2 3 4 1 2 X2 1.5VA Total U1 +3.3V +3.3V X3 D2 1 3 0 T1 3 1 IN OUT 0 AC V+ GND X4 A V C1 C2 D3 A 1 1 3 5 4 AC V- 2 100uF 2 EXT_CLK X5 1 1 2 2 X6 MOSI 2 1 10u LED RST X7 3 3 4 4 X8 MISO Phoenix Contact 1711026 15VAC MDB10S LM2937ET-3.3/NOPB MDAT1 X9 5 5 6 6 X10 CS R1 SCK
in „[V] MCP3911 EVAL Board und EA Smart-Display TFT 4.3"“ · Markt ·
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PDF
MCP6V11U_OpAmp.pdf
Example Device Code MCP6V12-E/MNY ABV ABV MCP6V12T-E/MNY ABV 410 Note: Applies to 8-Lead 2x3 TDFN. 25 14-Lead TSSOP (4.4 mm)(MCP6V14) Example XXXXXXXX 6V14E/ST 1410 YYWW 256 NNN DS20005124B-page 30 2012-2014 Microchip Technology Inc. MCP6V11/1U/2/4 D b 3 2 1 E1 E 4 5 e e A A2 c A1 L 2012-2014 Microchip
in „OpAmps: Maximale Widerstandswerte“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
CMD_bm002_bm201.lst
,H 2926 149A 32 22 80 LD (8022H),A 2927 149D C9 RET 2928 149E E5 PUSH HL 2929 149F D5 PUSH DE 2930 14A0 C5 PUSH BC 2931 14A1 CD 0C 20 CALL L0421 2932 14A4 18 D0 JR L0414 2933 14A6 E5 L0111: PUSH HL 2934 14A7 D5 PUSH DE 2935 14A8 C5 PUSH BC 2936 14A9 CD 0C 20 CALL L0421 2937 14AC FD 7E 28 LD A,(IY+28H
in „DDR Schach-Computer Chess Master Diamond reparieren (Dauerton)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Infineon-BFP650-DS-v02_00-EN.pdf
pointatoutput OIP3 31 IC= 70mA, Z SZ =5LΩ • 1 dB gain compression pointatoutput OP 17 1dB Table 9 AC characteristics, CE =3V,f =1.5GHz Parameter Symbol Values Unit Note or testcondition Min. Typ. Max. Power gain – – dB • Maximum powergain Gms 22.5 IC= 70mA • Transducer gain |S212 19.5 Noise figure •
in „keysight ads bjt transistor (Bipolartransistor) Parameter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Infineon-BFP650-DS-v02_00-EN.pdf
pointatoutput OIP3 31 IC= 70mA, Z SZ =5LΩ • 1 dB gain compression pointatoutput OP 17 1dB Table 9 AC characteristics, CE =3V,f =1.5GHz Parameter Symbol Values Unit Note or testcondition Min. Typ. Max. Power gain – – dB • Maximum powergain Gms 22.5 IC= 70mA • Transducer gain |S212 19.5 Noise figure •
in „Clapp Oszillator mit oder ohne Bandpassfilter“ · HF, Funk und Felder ·
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PDF
DS1220Y.pdf
ofCC . 12. WR1 , DH1 are measured from WE going high. 13. WR2 , DH2 are measured from CE going high. 14. DS1220Y modules are recognized by Underwriters Laboratories (UL) under file E99151 (R). DC TEST CONDITIONS AC TEST CONDITIONS Outputs open. Output Load: 100pF + 1TTL Gate All voltages are referenced
in „[S] DALLAS DS1220Y-150 NVRAM (NOS)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TLP281.pdf
No. 8143, 8144 Unit in mm Pin Configuration (top view) TLP281 TLP281-4 1 4 1 16 2 3 2 15 1:ANODE 3 14 2:CATHODE 3:EMITTER 4 13 4:COLLECTOR 5 12 6 11 TOSHIBA ― 7 10 Weight: 0.19 g 8 9 1,3,5,7 :ANODE 2,4,6,8 :CATHODE 9,11,13,15 :EMITTER 10,12,14,16 :COLLECTOR 1 2007-10-01 TLP281,TLP281-4 Current Transfer
in „Arduino ProMini galvanisch getrennt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
nano_os_OPT3.txt
2S); TIMER_ENABLE |= _BV(TOIE0); sei(); if (qp->queueDepth == 0) return 0; while (qp->number == 0) 14a8: 80 91 15 02 lds r24, 0x0215 14ac: 88 23 and r24, r24 14ae: d9 f3 breq .-10 ; 0x14a6 <display_minutes+0xb0> //* * //*********************************************************************** unsigned
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PDF
max5056.pdf
TDFN-EP* AGR T833-1 DC-DC Converters Typical Operating Circuit MAX5055AASA -40°C to 8 SO-EP* — S8E-14 +125°C MAX5055BASA -40°C to 8 SO — S8-4 IN VOUT +125°C -40°C to MAX5056AASA +125°C 8 SO-EP* — S8E-14 MAX5056BASA -40°C to 8 SO — S8-4 +125°C MAX5057AASA -40°C to 8 SO-EP* — S8E-14 MAX5054 +125°C DD -
in „Dual Mosfet Treiber“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
t.txt
02a6 DF91 pop r29 740 02a8 CF91 pop r28 741 02aa 1F91 pop r17 742 02ac 0F91 pop r16 743 02ae FF90 pop r15 744 02b0 EF90 pop r14 745 02b2 DF90 pop r13 746 02b4 CF90 pop r12 747 02b6 BF90 pop r11 748 02b8 AF90 pop r10 749 02ba 0895 ret 750 /* epilogue end (size=11) */ Die
in „Frage zur Parameterübergabe im Stack“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TCA0372-D-116057.pdf
Voltage Gain AVOL 30 100 − V/mV VO = ±10 V, L = 2.0 k Output Voltage SwingL(I = 100 mA) V OH V TA= +25°C 14.0 14.2 − T = T to T 13.9 − − A low high TA= +25°C V OL − −14.2 −14.0 TA= Tlowto high − − −13.9 Output Voltage SwingL(I = 1.0 A) V OH V VCC = +24 V, EE= 0 V, A = +25°C 22.5 22.7 − V = +24 V, V = 0 V,
in „Audio-Verstäker mit Motortreiber TCA0372, auch für Kopfhörer“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
system.ucf
IOSTANDARD=LVCMOS18 | PULLDOWN | SLEW=SLOW | DRIVE=2; Net fpga_0_DIP_Switches_8Bit_GPIO_IO_pin<6> LOC=AC25 | IOSTANDARD=LVCMOS18 | PULLDOWN | SLEW=SLOW | DRIVE=2; Net fpga_0_DIP_Switches_8Bit_GPIO_IO_pin<7> LOC=AC24 | IOSTANDARD=LVCMOS18 | PULLDOWN | SLEW=SLOW | DRIVE=2; Net fpga_0_IIC_EEPROM_Sda_pin LOC
in „Xilinx ML07 PowerPC GPIO Interrupt“ · FPGA, VHDL & Co. ·
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Aufkleber mit Spezifikationen eines Schaltnetzteils
CMP SWITCHING POWER SUPPLY AC INPUT 115/230V, 50/60Hz AC OUTPUT 230V, 0.5/1A, 50/60Hz DC OUTPUT KY-250ATX (MAX. 150W) 11A 4.5A 0.3A 1A 10A 2A KY-280ATX (MAX. 180W) 14A 5.5A 0.3A 1A 10A 2A KY-300ATX (MAX. 200W) 14A 6A 0.3A 1A 10A 2A KY-330ATX (MAX. 230W) 14A 8A 0.3A 1A 15A 2A KY-350ATX (MAX. 250W) 15A 10A 0.3A 1A 15A 2A KY-400ATX (MAX. 300W) 20A 12A 0.3A 1A 16A 2A KY-450ATX (MAX. 350W) 30A 15A 0.5A 0.8A 28A 2A KY-500ATX (MAX. 400W) 40A 16A 0.5A 0.8A 35A
in „ATX Netzteil Mod zu wenig Leistung“ · Analoge Elektronik und Schaltungstechnik · · Fotos
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PDF
Prema_4000_SH10_.pdf
1 DG308-2 Zum Prema IC "CG" 3 R27 from Pin6U3 10 11 2 to Pin12U9 9 1 C17 0,47µ 68R Pin20U9 DG308-1 AC ranges R24 DG308-2 6 7 6 7 from Pin10U5 8 8 C18 100 Pin19U9 10n C16 2,2µ R29 R28 10K 4K7 DG308-3 DG308-2 DG308-3 3 2 15 14 10 11 3 DG308-1 -15V 1 16 9 R26 LM399 6 2 3 22µ Pin17U9 22µ Pin18U9 1 Pin16U9 2 10K Tant. Tant. 5 K DG308-3 DG308-3 DG308-2 U8 2 0 6 7 10 11 15 14 OP07 R 1 U7 DG308-1 OP07 Integrator 8 9 16 15 14 Pin16U9 Pin17U9 Pin1U9 16 Pin15U9 Pin2U10 DG308-1 U6 U7 OP07 OP07 toggle AC / DC range DG308-2 U9 - Prema CG - 0 3 G Chip Locations D C a m r P - 1 U
in „Prema 4000 defekt?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
flash_dump_sect0.asm
$1494 L1495: bbs 7,X00FF,$1497 L1498: bbs 7,X00FF,$149A L149B: bbs 7,X00FF,$149D L149E: bbs 7,X00FF,$14A0 L14A1: bbs 7,X00FF,$14A3 L14A4: bbs 7,X00FF,$14A6 L14A7: bbs 7,X00FF,$14A9 L14AA: bbs 7,X00FF,$14AC L14AD: bbs 7,X00FF,$14AF L14B0: bbs 7,X00FF,$14B2 L14B3: bbs 7,X00FF,$14B5 L14B6: bbs 7,X00FF,$14B8
in „Mini-Farbdisplay (+mehr) für 1 Euro“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tl431.pdf
0.080 (2,03) 0.020 (0,51) 0.010 (0,25) 0.064 (1,63) 0.020 (0,51) 0.010 (0,25) 0.055 (1,40) 0.045 (1,14) 0.045 (1,14) 0.035 (0,89) 0.028 (0,71) 0.045 (1,14) 0.022 (0,54) 0.035 (0,89) 0.050 (1,27) 4040140/D 10/96 NOTES: A. All linear dimensions are in inches (millimeters). B. This drawing is subject to
in „Spannungsteiler hohe oder niedrige Widerstände besser?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ths0842.pdf
TRANSFORM 0 Q Input Channel –20 AIN = 1.1 MHz S –40 F d –60 – e –80 w P –100 –120 –140 0 2 4 6 8 10 12 14 16 18 20 f – Frequency – MHz Figure 9 FAST FOURIER TRANSFORM 0 I Input Channel –20 AIN = 15.1 MHz S –40 B d –60 r e –80 o P–100 –120 –140 0 2 4 6 8 10 12 14 16 18 20 f – Frequency – MHz Figure 10 FAST
in „ADC - Wie schnell aktualisiert der? Ist ein Oszi möglich?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Artikel_EN.pdf
OSC1 RD3 27 11 -5V 9V 100n 100n 15 5 16 RD4 PIC16F877 RD5 28 12 R29 29 13 LC DISPLAY 0 RD6 1 7 RD7 30 14 RA5/AN4 15 6 RA4/T0CK RC2 17 5 18 16 RA3/AN3 RC3 4 RA2/AN2 RC4 23 3 24 RA1/AN1 RC5 R21 +5V 2 RA0/AN0 TX/RC6 25 1 R26 OSC2 OSC1 0 12 14 13 31 T1 1 X1 C17 100n 1 BC557 3 2 C3 20MHz C4 P3 P4 P2 4 8 C x +5V 22p 27p S1 1k 200Ω 1M 2 R 4 TR 6 R18 R19 R17 IC5 14 C14 8 Ω 2 7 3 5 IC3 7 2 8 DIS OUT 1 TLC555 7 100n 6 THR CV 5 1 IC3.C C2 R1 11 10 R12 1% P6 R22 56Ω 1M 82k 47n sense + R10 C1 100k R3 R5 12 signal + 56Ω 2k2 1k IC3.B 1n 6 2x R7 R11 1% R20 +VBAT 1N4007
in „ESR Kondensatortester; nur welchen der beiden!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
p6ke68-2635878.pdf
Spannungs-Begrenzer-Dioden Version 2021-10-06 ~DO-15 Typical Applications Typische Anwendungen ~DO-204AC Over-voltage protection Schutz gegen Überspannung ESD protection ESD-Schutz Free-wheeling diodes Freilauf-Dioden Commercial grade Standardausführung 1 1 Suffix -Q: AEC-Q101 compliant ) Suffix -Q: AEC-Q101 konform ) Suffix -AQ: in AEC-Q101 qualification ) Suffix -AQ: in AEC-Q101 Qualifikation ) Features Besonderheiten Uni- and Bidirectional versions Uni- und Bidirektionale Versionen Peak pulse power of 600 W 600 W Impuls-Verlustleistung
in „Schaltung für Umpolung Gleichstrommotor“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
MM_04-Jun-2020.txt
$2D 00 6D B7 19:25:53 RX> >Msg$2D 0A 6D 8B 19:25:55 RX> >Msg$F5 02 68 56 19:26:06 RX> >Msg$2D 04 ED AC 19:26:18 RX> >Msg$2D 01 ED B2 19:26:18 RX> >Msg$F5 04 68 42 19:26:21 RX> >Msg$F5 07 68 48 19:26:40 RX> >Msg$F5 01 68 5C 19:26:43 RX> >Msg$2D 06 6D A3 19:26:49 RX> >Msg$2D 02 ED B8 19:26:49 RX> >Msg$F5
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619273-an-01-de-STARTER_ST171.pdf
SAFETY ........................................................................................... 14 Starter DEOS St 171 SAFETY für Leuchtstofflampen in Einzelschaltung........................................... 14 ® 10.7 Starter DEOS ST 172 SAFETY....................................................
in „Seltsames Problem mit Leuchtstoffröhre“ · Haus & Smart Home ·
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REN_71V124_DST_20200630.pdf
(High). 3. fMAX= 1RC (all address inputs are cMA);f = 0 means no address input lines are changing. AC Test Conditions Input Pulse Levels GND to 3.0V Input Rise/Fall Times 3ns Input Timing Reference Levels 1.5V Output Reference Levels 1.5V AC Test Load See Figure 1 and 2 3873 tbl 07 3.3V 320Ω +1.5V DATA OUT 50Ω I/O Z 0= 50Ω 5pF* 350Ω 30pF 3873 drw 03 3873 drw 04 . Figure 1. AC Test Load *Includingjigandscopecapacitance. Figure 2. AC Test Load (foCLZ,OLZ,CHZ,OHZ,OW,and WHZ) 6.42 Jun.30.20 71V124SA, 3.3V CMOS Static RAM 1 Meg (128K x 8-Bit) Center Power & Ground Pinout Commercial
in „[V] 5St SRAM 128Kx8 3V Renesas 71V124SA12PHG8“ · Markt ·
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dip203-6.pdf
LP=0: normal mode; LP=1: low power mode CG RAM Setsthe CG RAM address. CG RAM data issent 0 0 0 0 1 AC and received after thissetting. 39µs Address Set SEG RAM Setsthe SEG RAM address. SEG RAM data is Address Set 1 0 0 0 1 * * AC sent and received after thissetting. 39µs DDRAM 0 0 0 1 AC Setsthe DD RAM
in „DIP203 LCD mit TMS320F28335 per SPI“ · Mikrocontroller und Digitale Elektronik ·
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Schaltplan.pdf
) SMPS CIRCUIT H 15 16 17 18 19 20 21 22 23 24 25 26 27 28 160 19.2.3. SMPS / AC INLET P.C.B. J SMPS P.C.B. (REP4527C-P...GN) (REP4527D-P...GS) H BLK RED ZA5701 ZA5702 TL2* TL1* F1 L5702 T2AH 250V 2 3 1 7 Z 1 D 7 C G CAUTION RISK OF ELECTRIC SHOCK R5701 R5700 1 4 AC VOLTAGE LINE.
in „Schaltnetzteil Komplettausfall“ · Analoge Elektronik und Schaltungstechnik ·
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tl497a.pdf
1.33 1.55 1.33 1.75 O O = 500 A Full range 30 Diode reverse voltage V O = 200 A Full range 30 25⋅C 11 14 11 14 On-state supply current mA Full range 15 16 Off-state supply current 25⋅C 6 9 6 9 mA Full range 10 11 † Full range is 0⋅C to 70⋅C for the TL497AC and –40⋅C to 85⋅C for the TL497AI. ‡ All typical
in „Negative Spannung...“ · Analoge Elektronik und Schaltungstechnik ·
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schaltplan.pdf
PC5(ADC5/SCL) 28 0 1 5K 1 3 1 + 3 1 4 9 - 1 0 SIGNAL P$2 AD_ODER_DC1 12V PB6(XTAL1/TOSC1) 2 R9 C15 C14 C13 R 1 N AC_ODER_DC_IN1 V+ 10 2 0 P$1 B P$1 PB7(XTAL2/TOSC2) PD0(RXD) 3 D Netzteil 12V 420mA PD1(TXD) 4 D PD2(INT0) 8 GND PD3(INT1) 5 5 0 AC_ODER_DC_IN2 AC_ODER_DC2 GND 0V PD4(XCK/T0) 6 R 1 7 VCC PD5(T1) 11 C1 PD6(AIN0) 12 PD7(AIN1) 13 IN OUT XµF 14 0 C4 ADJ C16 PB0(ICP) 15 B PB1(OC1A) 16 10µF IC1 5µF PB2(SS/OC1B) 17 VI_GND LM1117 PB3(MOSI/OC2) B PB4(MISO) 18 PB5(SCK) 19 6 5 1 GND IC2 4 IN 2 CATH L 3 VCC Tx 8 C MIC4452 U1 TOGGEL_CH 1 8 9 VS VS1
in „Displaytech 162 und 162A geht nicht“ · Mikrocontroller und Digitale Elektronik ·