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PDF
AES-S6MB-LX9-G_SCH_RevC.PDF
GND 20 02 2 1 O52 O46 CO41 CO60 210.22uF 6.3V010.22uF 6.3V00.22uF 6.3V 20.22uF 6.3V 0201 C GND C +5V_USB_A O13 +5VUSB Route in a similar scheme to the example in the data sheet. PID1302 PID1301 DFLS130L-7 C1CC7 C1CC7 +3.3V C04.7uF 6.3V C24.7uF 6.3V 0402 +5V_USB_B 2 O161 DNP 01O86 0 O91 PID1602
in „Pulse Generator nicht genau genug, brauche Hilfe“ · FPGA, VHDL & Co. ·
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PDF
fs18hd.pdf
1000 (at 115V) Pressure pump: pressure, max.psi at 0 liters 5 8.2 discharge, max. Lpm at 0 psi 20 24 Suction pump: suction, max. psi at 0 liters3.2 5.8 discharge, max. Lpm at 0 psi 14 16 Electrical connections: Computer interface RS232/RS485 Programmer input -100 °C to 400 °C = 0 - 10 V or 0 - 20 mA or 4 - 20 mA Temperature recorder output 0 - 10 V (0 V= -100 °C, 10 V = 400 °C) 0 - 20 mA (0 mA = -100 °C, 20 mA = 400 °C) 4 - 20 mA (4 mA = -100 °C, 20 mA = 400 °C) Stand-by input Alarm output 24 to 0 V DC / max. 25 mA External measurement and control sensor - Pt100
in „Kältekreislauf, komischer Regeleffekt?“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
DAC904_14-Bit_165MSPS_Digital-to-Analog_Converters.pdf
OUT AT 100MSPS SFDR vs IOUTFSand OUT AT 100MSPS, 0dBFS 85 80 80 75 2.1MHz 75 X 70 X Diff (–6dBFS) 5.04MHz * c70 c65 * * 10.1MHz * B B ( X ( 20.2MHz R65 R60 F X IOUT(–6dBFS) F S60 X S55 X Diff (0dBFS) X X 40.4MHz 55 X 50 X X 50 OUT(0dBFS) 45 45 40 0 10.0 20.0 30.0 40.0 50.0 2 5 10 20 Frequency (MHz) IOUTFS
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PDF
lg_eax64905301_lgp42_13pl1_led_tv_sch.pdf
C226 N.C C211 R218 330pF HS3 10 12V_DD C112 C101 2K 4 K +B24 *HEAT-SINK* 0 0 1 0 T101 1W 1KV MODEL C109,C110,C111 T101 1000pF 1000pF R1 2 R 1 2 Q201 1KV 1KV A2 FQPF11P06 C LB202 24V 3 LGP3739-13PL1 68uF
in „LG-TV LED-Treiber defekt, Fehlersuche“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AF143086415692en-000101.pdf
Standard battery protection settings (refer to 101N0xxx Instructions for optional settings) Voltage 12V 24V Cut out VDC 10.4 22.8 Cut in VDC 11.7 24.2 Dimensions Height inch A 5.39 B 5.32 B1 5.04 B2 2.87 Suction connector location/I.D. inch | angle C 0.252-0259 | 40° material | comment Cu-plated steel | Al
in „Kompressor für Campingkühlschrank - elektrischer Anschluss?“ · Fahrzeugelektronik ·
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PDF
Danfoss_Katalog_BLDC_Compressors.pdf
Standard battery protection settings (refer to 101N0xxx Instructions for optional settings) Voltage 12V 24V Cut out VDC 10.4 22.8 Cut in VDC 11.7 24.2 Dimensions Height inch A 5.39 B 5.32 B1 5.04 B2 2.87 Suction connector location/I.D. inch | angle C 0.252-0259 | 40° material | comment Cu-plated steel | Al
in „12V Kompressor Kühlbox - Steuerung defekt - eigenes Thermostat verwenden“ · Haus & Smart Home ·
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PDF
HF_Mifare_Easy_V1_0_User_Manual_03.pdf
be used to access the according sector on the card. Sector Block Login sector 00h 00h 03h 00h 01h 04h 07h 01h 1Fh 7Ch 7Fh 1Fh 20h 80h 8Fh 20h 21h 90h 9Fh 24h 22h A0h AFh 28h 23h B0h BFh 2Ch 24h C0h CFh 30h 25h D0h DFh 34h 26h E0h EFh 38h 27h F0h FFh 3Ch Figure 5-5: Mifare 4k sector index table 5.5 Mifare
in „[V] gebrauchtes ACG/HID RFID Mifare Modul (30x30mm) zum einlöten + 2-3Karten (10€)“ · Markt ·
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PDF
HF_Mifare_Easy_V1_0_User_Manual_03.pdf
be used to access the according sector on the card. Sector Block Login sector 00h 00h 03h 00h 01h 04h 07h 01h 1Fh 7Ch 7Fh 1Fh 20h 80h 8Fh 20h 21h 90h 9Fh 24h 22h A0h AFh 28h 23h B0h BFh 2Ch 24h C0h CFh 30h 25h D0h DFh 34h 26h E0h EFh 38h 27h F0h FFh 3Ch Figure 5-5: Mifare 4k sector index table 5.5 Mifare
in „[V] RFID ISO 14443 Modul ACG/HID Omnikey 25x30mm (17€)“ · Markt ·
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PDF
HF_Mifare_Easy_V1_0_User_Manual_03.pdf
be used to access the according sector on the card. Sector Block Login sector 00h 00h 03h 00h 01h 04h 07h 01h 1Fh 7Ch 7Fh 1Fh 20h 80h 8Fh 20h 21h 90h 9Fh 24h 22h A0h AFh 28h 23h B0h BFh 2Ch 24h C0h CFh 30h 25h D0h DFh 34h 26h E0h EFh 38h 27h F0h FFh 3Ch Figure 5-5: Mifare 4k sector index table 5.5 Mifare
in „[V] RFID ISO 14443 Modul ACG/HID Omnikey 25x30mm (13€)“ · Markt ·
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Datei
Eeprom2.txt
nc,0x008c .data:0000003c 36 04 ld (hl),0x04 .data:0000003e 30 50 jr nc,0x0090 .data:00000040 37 scf .data:00000041 04 inc b .data:00000042 30 50 jr nc,0x0094 .data:00000044 38 04 jr c,0x004a .data:00000046 48
in „Hilfe bei Z80 Opcodes“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ISR.txt
2 & pin 6 133: P1_DATA = (((TXFifo0[TXiterations] << BitsPerByte)& 0x80) >> 4) | (P1_DATA & 0x44); C:0x13A8 7427 MOV A,#TXFifo0(0x27) C:0x13AA 257C ADD A,0x7C C:0x13AC F8 MOV R0,A C:0x13AD E6 MOV A,@R0 C:0x13AE FF MOV R7,A C:0x13AF AE24 MOV R6,BitsPerByte(0x24) C:0x13B1 A806 MOV R0,0x06 C:0x13B3 08
in „Zeitkritische Interrupt-Routine bei XC886“ · Mikrocontroller und Digitale Elektronik ·
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Datei
542W.txt
62 25 01 72 62 01 65 0a ad 9a bd 76 77 07 81 81 c7 82 03 ff 01 01 01 01 04 45 53 59 01 77 07 01 00 01 08 00 ff 01 01 62 1e 52 fc 69 00 00 00 28 df 78 24 6c 01 77 07 01 00 01 08 01 ff 01 01 62 1e 52 01 00 62 00 72 65 00 00 02 01 71 01 63 97 38 00 00
in „Arduino Nano Easymeter Q3BA auslesen und Shuntregler“ · Mikrocontroller und Digitale Elektronik ·
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Datei
heizung_21_01_2011_12_19.txt
00 00 00 00 00 00 00 00 00 00 ED 00 88 00 18 00 40 02 80 4C 35 09 03 25 C0 80 00 80 00 01 BC FF FF FF 00 00 00 00 00 02 18 27 00 88 00 34 00 38 01 AB 02 24 81 00 00 03 00 00 9C 9A 00 43 B9 00 F4 00 88 00 19 00 00 07 80 00 80 00 FF FF 00 36 00 C1 EC 04 B3 D0 00
in „Junkers HT-Bus Heatronic 3 Schnittstelle“ · Haus & Smart Home ·
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PDF
Bavaria_Electric_Katalog_EC_LOG.pdf
Hauptschalter schalter Motorabgang in Ampere B-H-T EC41HS02R02A-FE 1 1 02 02 max. 6 A 400x500x210 mm EC41HS02R04A-FE 1 1 02 04 max. 12 A 400x500x210 mm EC-Control inkl. Reparaturschutzschalter im Stahlblechgehäuse IP 65 RAL 7035 Reparatur- Max. Belasting in Gehäuse maße Artikelnummer Zuleitung Hauptschalter schalter
in „Drezahlregelung EC-Motor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Display_-_NL10276BC30-04D.pdf
Column (171) (512) (853) Line 1 4 (128) 3 (384) 2 5 (640) 18 Data Sheet EN0488EJ1V0DS00 NL10276BC30-04D RELIABILITY TESTS Test item Test condition High temperature/humidity operation Note 1 50 ± 2°C, 85% relative humidity 240 hours Display data is black. Heat cycle (operation) Note 1 <1> 0°C ± 3°C ···
in „VIA Nano Board LVDS Connector“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Display_-_NL10276BC30-04D.pdf
Column (171) (512) (853) Line 1 4 (128) 3 (384) 2 5 (640) 18 Data Sheet EN0488EJ1V0DS00 NL10276BC30-04D RELIABILITY TESTS Test item Test condition High temperature/humidity operation Note 1 50 ± 2°C, 85% relative humidity 240 hours Display data is black. Heat cycle (operation) Note 1 <1> 0°C ± 3°C ···
in „günstiges ITX Mainboard mit LVDS Connector“ · Mikrocontroller und Digitale Elektronik ·
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LT1930.pdf
A ) 70 ( 6.0 ( 60 N LT1930A V1.26 T R 5.5 E E 50 R A R C 5.0 L1.25 C 40 N V I C 4.5 F P 30 LT1930 I LT1930 1.24 D 20 U 4.0 S Q 1.23 10 3.5 0 3.0 1.22 –10 –50 –25 0 25 50 75 100 –50 –25 0 25 50 75 100 0 1 2 3 4 5 6 TEMPERATURE (°C) TEMPERATURE (°C) SHDN PIN
in „Step up UND down DCDC für uC Versorgung - Empfehlung?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
avraes.asm
,$27,$80,$ec,$5f .db $60,$51,$7f,$a9,$19,$b5,$4a,$0d,$2d,$e5,$7a,$9f,$93,$c9,$9c,$ef .db $a0,$e0,$3b,$4d,$ae,$2a,$f5,$b0,$c8,$eb,$bb,$3c,$83,$53,$99,$61 .db $17,$2b,$04,$7e,$ba,$77,$d6,$26,$e1,$69,$14,$63,$55,$21,$0c,$7d xtime: .db $00,$02,$04,$06,$08,$0a,$0c,$0e,$10,$12,$14,$16,$18,$1a,$1c,$1e .db $20,$22,$24,$26,$28,$2a,$2c,$2e,$30,$32,$34,$36,$38,$3a,$3c,$3e .db $40,$42,$44,$46,$48,$4a,$4c,$4e,$50,$52,$54,$56,$58,$5a,$5c,$5e .db $60,$62,$64,$66,$68,$6a,$6c,$6e,$70,$72,$74,$76,$78,$7a
in „Assembler mit C verknüpfen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
dmesg.txt
01.0: WB enabled [ 3.968448] radeon 0000:00:01.0: fence driver on ring 0 use gpu addr 0x0000000020000c00 [ 3.968461] radeon 0000:00:01.0: fence driver on ring 1 use gpu addr 0x0000000020000c04 [ 3.968471] radeon 0000:00:01.0: fence driver on ring 2 use gpu addr 0x0000000020000c08 [ 3.968480] radeon 0000
in „Ubuntu Server: OS noch zu retten?“ · PC Hard- und Software ·
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PDF
LT1161.pdf
12 ( V ≥ 24V ( 14 TJ= –40°C N 10 N 12 + 10 TJ= 25°C R R – R V = 12V R 10 ALL CHANNELS ON T 8 C C G E L 8 V 6 R V = 8V P D 1 U 6 ALL CHANNELS OFF T S 4 G 4 2 2 0 0 0.1 0 10 20 30 40 50 0 10 20 30 40 50 0 2 4 6 8
in „Erfahrungen mit LT1161“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Keyboard-Descriptor.txt
bEndpointAddress: 0x00<\r><\n> bmAttributes: 0x6e<\r><\n> wMaxPacketSize: 0xc700<\r><\n> bInterval: 0x9c<\r><\n> <\r><\n> Endpoint Descriptor 17<\r><\n> bLength: 0xec<\r><\n> bDescriptorType: 0x37<\r><\n> bEndpointAddress: 0xf5<\r><\n> bmAttributes: 0x89<\r><\n> wMaxPacketSize: 0x3d24<\r><\n> bInterval:
in „USB-Host LPC1769“ · Mikrocontroller und Digitale Elektronik ·
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Datei
fonttab.h
0x3D, 0x00 }, // j { 0x7F, 0x10, 0x28, 0x44, 0x00 }, // k { 0x00, 0x41, 0x7F, 0x40, 0x00 }, // l { 0x7C, 0x04, 0x18, 0x04, 0x78 }, // m { 0x7C, 0x08, 0x04, 0x04, 0x78 }, // n { 0x38, 0x44, 0x44, 0x44, 0x38 }, // o { 0x7C, 0x14, 0x14, 0x14, 0x08 }, // p { 0x08, 0x14, 0x14, 0x18, 0x7C }, // q { 0x7C, 0x08, 0x04, 0x04, 0x08 }, // r { 0x48, 0x54, 0x54, 0x54, 0x20 }, // s { 0x04, 0x3F, 0x44, 0x40, 0x20 }, // t { 0x3C, 0x40, 0x40, 0x20, 0x7C }, // u { 0x1C, 0x20, 0x40, 0x20, 0x1C }, // v { 0x3C, 0x40, 0x30, 0x40
in „LED Dot-Matrix 5x7 Mäxle-Würfelspiel / 2er Würfel“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP6562.pdf
Units O O 10% 10% TA= -40°C to 125°C VCM= SS 0% 0% -60 -48 -36 -24 -12 0 12 24 36 48 60 0 2 4 6 8 10 12 14 16 18 20 V OSDrift (µV/°C) VHYSTDrift, TC1 (µV/°C) FIGURE 2-2: Input Offset Voltage Drift. FIGURE 2-5: Input Hysteresis
in „Schmitttrigger mit MCP6562 unklare Abweichung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ac_ac-at_ac-ni.pdf
9 = *10 AC01AT0 = AC01-AT 7 = DK LP 25.4 mm 0 = *10 AC03AT0 = AC03-AT 8 = DK SP 25.4 mm 1 = *10 AC04AT0 = AC04-AT 9 = AC03 / AC03AT / 2 = *10 AC05AT0 = AC05-AT AC03NI-WSZ AC07AT0 = AC07-AT A = EK 22.5 mm AC10AT0 = AC10-AT B = EK 17.8 mm C = EK 25.4 mm AC03NI0 = AC03-NI D = Cu wire 0.8 mm AC04NI0 = AC04
in „Miele Trockner ELP305 Ladekondensator defekt“ · Haus & Smart Home ·
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PDF
USB_geclont.pdf
USB Serial Converter Device Path : \\?\usb#vid_0403&pid_6001#fte3upe2#{a5dcbf10- 6530-11d2-901f-00c04fb951ed} Device ID : USB\VID_0403&PID_6001\FTE3UPE2 Hardware IDs : USB\VID_0403&PID_6001&REV_0600 USB\VID_0403&PID_6001 Driver KeyName : {36fc9e60-c465-11cf-8056-444553540000}\0016 (GUID_DEVCLASS_USB
in „FT232R USB Eeprom clonen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
USB_original.pdf
USB Serial Converter Device Path : \\?\usb#vid_0403&pid_6001#fte3upe2#{a5dcbf10- 6530-11d2-901f-00c04fb951ed} Device ID : USB\VID_0403&PID_6001\FTE3UPE2 Hardware IDs : USB\VID_0403&PID_6001&REV_0600 USB\VID_0403&PID_6001 Driver KeyName : {36fc9e60-c465-11cf-8056-444553540000}\0016 (GUID_DEVCLASS_USB
in „FT232R USB Eeprom clonen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ls020.txt
subi r20,1 sbis sreg , sreg_z rjmp nextbyte3 ret Init1: Data &HFDFD% , &HFDFD% Data &HEF00% Data &HEE04% , &H1B04% Data &HFEFE% , &HFEFE% Data &HEF90% , &H4A04% , &H7F3F% , &HEE04% , &H4306% 'Init2: Data &HEF90% , &H0983% , &H0800% , &H0BAF% , &H0A00% , &H0500% , &H0600% , &H0700% Data &HEF00% Data &HEE0C
in „The Siemens S65 132x176, 65536 color display with AVR“ · Projekte & Code ·
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Datei
log.txt
smsc95xx 1-1.1:1.0 eth0: register 'smsc95xx' at usb-bcm2708_usb-1.1, smsc95xx USB 2.0 Ethernet, b8:27:eb:c5:cf:00 [ 3.699998] usb 1-1.2: new low-speed USB device number 4 using dwc_otg [ 3.861201] usb 1-1.2: New USB device found, idVendor=04d9, idProduct=2517 [ 3.888198] usb 1-1.2: New USB device strings: Mfr=0, Product=0, SerialNumber=0 [ 3.969402] input: HID 04d9:2517 as /devices/platform/bcm2708_usb/usb1/1-1/1-1.2/1-1.2:1.0/0003:04D9:2517.0001/input/input0 [ 4.007278] hid-generic 0003:04D9:2517.0001: input,hidraw0: USB HID v1.10 Keyboard [HID 04d9:2517] on
in „RaspberryPiB+ mit CAN (MCP2515)“ · PC Hard- und Software ·
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PDF
irf7389.pdf
VDS = 15V, D = 5.8A gfs ForwardTransconductance P-Ch 7.7 S V = -15V, I = -4.9A DS D N-Ch 1.0 VDS = 24V, GS = 0V I Drain-to-Source Leakage Current P-Ch -1.0 VDS = -24V, GS= 0V DSS N-Ch 25V µA DS = 24V, GS = 0V, J = 55°C P-Ch -25V = -24V, V = 0V, T = 55°C DS GS J IGSS Gate-to-SourceForwardLeakage N-P ±
in „Treiber für Push-Pull 12V?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
irf7389.pdf
VDS = 15V, D = 5.8A gfs ForwardTransconductance P-Ch 7.7 S V = -15V, I = -4.9A DS D N-Ch 1.0 VDS = 24V, GS = 0V I Drain-to-Source Leakage Current P-Ch -1.0 VDS = -24V, GS= 0V DSS N-Ch 25V µA DS = 24V, GS = 0V, J = 55°C P-Ch -25V = -24V, V = 0V, T = 55°C DS GS J IGSS Gate-to-SourceForwardLeakage N-P ±
in „Brushless DC Motorsteureung Dysfunktion AVR444“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
disassembly.txt
BX LR 000002B6 0000 LSL R0, R0, #0 Next label is a Thumb label memset: 000002B8 0609 LSL R1, R1, #24 000002BA 0E09 LSR R1, R1, #24 000002BC 0003 LSL R3, R0, #0 000002BE 2A00 CMP R2, #0 000002C0 D003 BEQ 0x0002CA 000002C2 7019 STRB R1, [R3, #0] 000002C4 1C5B ADD R3, R3, #1 000002C6 1E52 SUB R2, R2, #1
in „Flash Read and Write in LPC-2148“ · µC & Digital Electronics ·
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Datei
demo.txt
------------------------ DSS1: CONNECT, call=orig,1 Date/time Date 15.07.99, 20:40 63 07 0F 14 28 'c...(' ----- D snd 2890.22 0.00 -------------------------------------------- DSS1: CONNECT ACKNOWLEDGE, call=dest,1 ----- B1 snd 2890.24 0.03 -------------------------------------------- PPP: Link Control
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Datei
main_ohne_if.lst.txt
ldr r0, [pc, #128] ; (8000e98 <main+0xb8>) 8000e18: f000 fdae bl 8001978 <puts> delay_ms(100); 8000e1c: 2064 movs r0, #100 ; 0x64 8000e1e: f7ff ff23 bl 8000c68 <delay_ms> while (1) { // LED an WRITE_REG(GPIOA->BSRR, GPIO_BSRR_BS_5); 8000e22: f04f 4890 mov.w r8, #1207959552 ; 0x48000000 8000e26: f04f 0a20
in „Nutzt gcc/newlib-nano die FPU von Cortex M4F bei double?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MINI_STM32-V3.0_SCH.pdf
GND4 10 DB00 PC0 3 4 PC1 DB01 5V 3V3 P P RTCK 11 RTCK GND5 12 DB02 PC2 5 6 PC3 DB03 3 IN OUT 2 R8 R24 JTDO PB3 13 TDO GND6 14 DB04 PC4 7 8 PC5 DB05 G 10K E R27 R28 0R NRST 15 nSRST GND7 16 DB06 PC6 9 10 PC7 DB07 C1 C12 C2 C13 1 B 22R 22R 17 DBGRQ GND8 18 DB08 PB8 PB9 DB09 104 10u 104 10u J2 R12 R16 R2619
in „ISP Bootloader über USART bei STM32 funktioniert nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
LS50_LCD.txt
Fehlersuche https://www.mikrocontroller.net/topic/173447#new [S] Ersatzlötkolben für LS50 Signal µC-Pin Display-Pin COM0 1 1 COM1 2 2 COM2 3 3 COM3 4 4 SEG00 64 5 SEG01 63 6 SEG02 62 7 SEG03 61 8 SEG04 60 9 SEG05 59 10 SEG06 58 11 SEG07 57 12 SEG08 56 13 SEG09 55 14 SEG10 54 15 SEG11 53 16 SEG12 52
in „Ersa RDS80 Display defekt - Austausch“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ir-detect.pdf
10r 1206 R6 1k 1206 R7 100k 1206 R8 220k 1206 C1 100nF 1206 C2 22µF/16V SMD Q1 2N2222A SOT23 Q2 2N2222A SOT23 Q3 BSS138 SOT23 Q4 SFH3710 1206 IC1 ATTiny25-10 SU SO8 D1 LXHL-PD01 SMD D2 SMD LED green 1206 IR_RX AMN31112J TO05 Bestellliste Anzahl Artikel-Nr
in „Atmega8 an zwei Knopfzellen betreiben (6V)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bso215c.pdf
drain-source-on-resistance (P-Ch.) R = f (I ) R = f (I ) DS(on) D DS(on) D parameter: V GS parameter: V GS BSO 215 C BSO 215 C 0.32 0.32 d e f g h b c d e n 0.24 n 0.24 ( ( S S D 0.20 D 0.20 R R 0.16 0.16 0.12 0.12 f 0.08 0.08 i g j 0.04 VGS [V] = 0.04 VGS [V] = d e f g h i j b c d e f g 3.2 3.5 3.7 4.0 4.2 4.5 5.0
in „H-Brücke am µC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD1937.pdf
DAC1LN DAC4RN 13 36 DAC1LP PD/RST 14 35 ADDR1 DSDATA4 15 34 SCL DGND 16 33 DGND 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 D 3 2 1 K K Y E E 2 1 K K 0 A D NC = NO CONNECT V T T T C C P N I T T C C D S V 2 D A A A B R P E D A A B R D D 4 S S S D D S V V S S A A A 7 D D D V A A 0 Figure4.PinConfiguration
in „Aktives Filter simulieren“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
serielle_Schnittstelle_EPROM_80C31.asm
Initialisierung serielle 02 98 ] Schnittstelle Datenein-/ausgabe 03 50 ] Mode 1,(8 Bit, Receive Enable) 04 75 ]------ MOV TMOD,#10Hex Timer 0 keine Funktion, 05 89 ] Timer 1 Mode 2 C/T=0, Gate=0 06 20 ] 07 75 ]------ MOV PCON,#00Hex SMOD=0, Teiler /2 08 87 ] 09 00 ] 0A 75 ]------ MOV TH1,#100Hex TCON Timer
in „Unsauberes UART Signal“ · Mikrocontroller und Digitale Elektronik ·
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PDF
J174_J175_J176_J177.pdf
Capacitance vs. Gate-Source Voltage Gate Leakage Current 30 100 nA V = 0 V DS D = –1 mA f = 1 MHz 10 nA 24 –10 mA TA= 125_C ) e 1 nA p 18 a e a IGSS@ 125_C n C L 100 pA i iss t c a p 12 G –10 mA C – 10 pA Crss I TA= 25_C I @ 25_C 6 1 pA –1 mA GSS 0 0.1 pA 0 4 8 12 16 20 0 –10 –20 –30 –40 –50 V – Gate-Source
in „P-Kanal J-FET, gibt's den real?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MOT-AN-S-...DE.pdf
Motors schließen. Gewicht Motor Litzen [kg] 0,20 0,38 1,04 1,45 - Stecker [kg] 0,22 0,43 1,12 1,56 3,20 Encoder [kg] 0,27 0,45 1,14 1,58 3,30 Encoder und Bremse [kg] - 0,58 1,36 1,82 3,60 Betriebsdaten Umgebungstemperatur [°C] -10 …+50 Temperaturanstieg max.
in „Igus Schrittmotor mit L298 und Atmega324PA“ · Mikrocontroller und Digitale Elektronik ·
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PDF
com_en.pdf
D2 = ZF 3.9 D3,4,5,6 = 1N4148 Semiconductors IC1 = MAX 232 IC2(N1-N6)= 74HC04 T1 = BC558C LED1 = red LED2 = green LED3 = yellow Capacitors C2 = 220µ C3 = 100n C4,5,6,7 = 1µ Resistors R1,8,9 = 220 R2,3,5,6,13 = 1k R4 = 47 R7 = 220k R10 = 22k R11 = 100 R12 = 4k7 Connections J4,5,6,9
in „Hilfe bei Schaltung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
(0x2b, 165); // SPI_WriteNXP(0x2c, 1); // SPI_WriteNXP(0x2d, 56); // SPI_WriteNXP(0x04, 127); // //delay(100000); // SPI_WriteNXP(0x0c, 80); // // if (SPI_ReadNXP(0x04)==5) // { // SPI_WriteNXP(0x01, 12); // SPI_WriteNXP(0x12, 0); // SPI_WriteNXP(0x13, 0); // SPI_WriteNXP(0x04, 127); // SPI_WriteNXP(0x02, 1); // SPI_WriteNXP(0x0c, 144); // SPI_WriteNXP(0x2a, 128); // SPI_WriteNXP(0x2b, 0); // SPI_WriteNXP(0x2c, 6); // SPI_WriteNXP(0x2d, 243); // SPI_WriteNXP(0x04, 127); //
in „STM32 SPI-Bus Probleme mit Prescaler und delay() Realisierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BF1009S_Appnote__INF.pdf
BB914 Infineon varactor diode VRAC2 BB914 Infineon varactor diode VRAC3 BB914 Infineon chip capacitor C01 4p7 Siemens chip capacitor C02 15p Siemens chip capacitor C03 1n Siemens chip capacitor C04 1n Siemens chip capacitor C05 10n Siemens chip capacitor C06 1n Siemens chip capacitor C07 27p Siemens chip
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Datei
Test_247.elf.lst
;#0x0000 802c: 0f 93 tst r15 802e: 07 24 jz $+16 ;abs 0x803e 8030: 92 42 00 11 mov &0x1100,&0x0120 8034: 20 01 8036: 1f 83 dec r15 8038: cf 43 00 11 mov.b #0, 4352(r15);r3 As==00, 0x1100(r15) 803c: f9 23 jnz $-12
in „MSPGCC: Interruptvetortablle fehlt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Netcom100_26_Grad.txt
00 18 00 98 00 13 00 30 00 b0 00 ff 000000a0: 00 00 03 3c 14 04 00 02 9c 02 46 01 00 00 8e 60 000000b0: f5 00 b0 00 14 00 15 00 10 00 90 00 18 00 98 00 000000c0: 16 00 30 00 b0 00 17 00 20 00 10 00 90 00 18 00 000000d0: 98 00 28 00 30 00 b0 00 38 00 10 00 90
in „Heatronic 3 Adapter (Junkers Heizung) fuer Raspberry Pi“ · Haus & Smart Home ·
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PDF
OVC3860_RevE_PSKeys_Setting_v1.2.pdf
] 0x01 0x05 0x05 0x13 0x01 0x01 led_para[6] 0x06 0x14 0x14 0x04 0x02 0x00 led_para[7] 0x08 0x14 0x1e 0x00 0x03 0x00 led_para[8] 0x09 0x0f 0x0f 0x00 0x05 0x00 led_para[9] 0x0a 0x0a 0x0a 0x00 0x06 0x00 led_para[1 0x0b 0x0a 0x1e 0x3c 0x04 0x00 0] led_para[1 0x0c 0x0a 0x1e 0x3c 0x04 0x00 1] tone_conf[0]~[11] Key Name Key Number Default Value Range(byte) tone_para[x].size_array 281~340 N/A 1 tone_para[x].tone_array[0]~[281~340 N/A 3 tone_para[x].cnt 281~340 N/A 1 The tone_conf
in „A2DP Bluetooth Modul China eBay“ · HF, Funk und Felder ·
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PDF
OVC3860_RevE_PSKeys_Setting_v1.2.pdf
] 0x01 0x05 0x05 0x13 0x01 0x01 led_para[6] 0x06 0x14 0x14 0x04 0x02 0x00 led_para[7] 0x08 0x14 0x1e 0x00 0x03 0x00 led_para[8] 0x09 0x0f 0x0f 0x00 0x05 0x00 led_para[9] 0x0a 0x0a 0x0a 0x00 0x06 0x00 led_para[1 0x0b 0x0a 0x1e 0x3c 0x04 0x00 0] led_para[1 0x0c 0x0a 0x1e 0x3c 0x04 0x00 1] tone_conf[0]~[11] Key Name Key Number Default Value Range(byte) tone_para[x].size_array 281~340 N/A 1 tone_para[x].tone_array[0]~[281~340 N/A 3 tone_para[x].cnt 281~340 N/A 1 The tone_conf
in „OVC3860 RevV Develop Tool - not connected :/“ · HF, Funk und Felder ·
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PDF
Layout.pdf
1 1 X 5 2 Z X 4 X C R 2R R 2 1 2 C L X L RC 42ZX9C C 77 7 5 22ZXCC X X X X X 4 2X 2ZX2C 24 9RR 9 2ZZ2N C 24ZN2N1X61C X R10R R C32C C X 1 3 C C 6ZN2N 04ZZ2NC 1 C Z Z C X X R 2C XC 0 8ZZ2N 63Z22N1 1 C28 C30C C X X X 2ZX2R6ZXC0Z0C
in „TPA3255, Fehler LED nach 1s“ · Analoge Elektronik und Schaltungstechnik ·
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AP2402630_EMC_Guidelines_1.pdf
system with the resulting parallel resonance frequency becoming higher. Application Note 19 V 3.0, 2005-04 AP24026 EMC Design Guidelines Design Measures V V regulator core Vsupply Voltage µC Regulator Cx-1 Cx C1 C2 C3 C.. GND Figure 12 Decoupling of the Power Circuit 3.1.1 Layout Structures Keep power and
in „Logikteil vom Leistungstteil trennen - aber wie?“ · Mikrocontroller und Digitale Elektronik ·