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F9010_orig.txt
00 00 00 00 00 00 00 00 00 F9 D5 A9 D3 2F 96 3C 09 37 C6 0E C5 44 00 86 7D FE 36 1C 12 27 43 01 AE 23 40 02 83 12 20 24 27 53 FE AE 23 41 02 83 56 32 32 31 43 02 AE 23 42 02 83 32 35 83 53 FD AE 23 43 02 83 F9 03 C8 E6 7D F9 D3 38 96 47 AA 09 37 C6 62 BF 08 F7 E6 54 1A 2F AB 2F EF 4D FA 07 96 62 CB FB E7 E7 E7 D9 E3 AB F9 D3 3F 96 7D FA 07 96 7B FB DC C6 7A 86 77 27 90 FB 02 AC 83 23 80 90 83 BC 80 83 00 00
in „8741A Beschreiben“ · Markt ·
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camaro_stand_alone.pdf
LockUp PB4 19 D5 R9 PB5 OK5 GND XTAL1/PB6 9 1N4004 k 1 k 1 10 1 R 1 R XTAL2/PB7 Y1 C1 Crystal 100nF 23 1 0 4 0 6 0 PC0 R 1 R 1 R 1 PWM platine Ausgang PC1 24 Ansteuerung für die Gangwahl X5B PC2 25 U1 26 B ATmega328P-PU PC3 C3 B JP2 X5A PC4 27 22pF +5V GND OUT 1 28 GND PC5 4 FNC 2 FNC RESET/PC6 1 RESET328 0 T1 +5V CLK 3 SCK 4 BC337 4 3 2 1 J4 DAT 4 2 GND 1 1 PC817 V Nextion MOSI D PD0 CH340_TX_Atmega328p Lüfter 1 X2A D 2,2k 5 GND 5 GND N PD1 3 CH340_RX_Atmega328p 3 2 GND + +5V VCC 6 +5V G 4 X2B GND PD2 Lüfter 2 R2 220 2 REF
in „Stn1110 am atmega2560 uart probleme“ · Mikrocontroller und Digitale Elektronik ·
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Butterfly_Schematics.pdf
/3N LCD25 press function LCD11 11 9/6F/6E/6P 3/COL1/S7/7 24 LCD24 LCD12 12 S9/6H/6G/6N S3/4F/4E/4P 23 LCD23 LCD13 13 6K/6J/6L/6M 4/4H/4G/4N 22 LCD22 LCD14 14 21 LCD21 LCD15 15 6A/6B/6C/6D S4/5F/5E/5P 20 LCD20 LCD16 16 10/7F/7E/7P 5/5H/5G/5N 19 LCD19 LCD17 17 S10/7H/7G/7N S5/COL2/S8/8 18 LCD18 7K/7J/7L
in „Mikrocontroller mit Rs232 Schnittstelle“ · Mikrocontroller und Digitale Elektronik ·
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218_12_SmartMeter_Kundenschnittstelle_lektoriert_2803_2_.pdf
1.0.1.8.0.255 OBIS-Kennziffer Unsinged Integer 32 00003289 12937 Wert Integer 8 FF × 10-1 Skalierung Enum 23 35 Einheit Octet String 313831323230303030303039 181220000009 Zählernummer DLMS/COSEM Interpretation Datenfeldbeschreibung <NotificationBody> Start Zählerdatensatz <DataValue> <Structure Qty="23" > <
in „Pegelwandler für Raspberry PI“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Lime_Gen_3_Motor_Controller_Readout_20kmh.c
= v5; v200002A7 = 17; v200002A8 = 0; v200002A9 = 2; v200002AA = v2000015F; v200002AB = v20000160; v23 = sub_80027FC((_BYTE *)0x200002A4, 8); v200002AC = HIBYTE(v23); v200002AD = v23; v20 = 10; break; case 18: v200002A4 = 70; v200002A5 = 67; v200002A6 = v5; v200002A7 = 18; v200002A8 = 0; v200002A9 = 1
in „BLDC Controller mit STM32F103C8T6 Geschwindigkeitsbegrenzer in der .hex“ · Mikrocontroller und Digitale Elektronik ·
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Datum_LPRO-101.pdf
Figure 3-3. Sine-to-TTL Conversion, Using C-MOS Logic, Self-BiasApproach............................ 23 Figure 3-4. Sine-to-TTL Conversion Circuit, Using Positive ECL Converter.................................. 23 Figure 3-5. Sine-to-TTL Conversion Circuit Using a High Speed Comparator.................
in „Ausgangsschaltung 10MHz Referenz“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
wave.h
, 0x7B,0x92,0xA8,0xBC,0xCF,0xDF,0xEC,0xF5,0xFA,0xFA,0xF5,0xED,0xE0,0xD1,0xC0,0xAC, 0x97,0x82,0x6C,0x57,0x42,0x30,0x23,0x1A,0x14,0x10,0x0E,0x0E,0x0E,0x0F,0x0F,0x0E, 0x0B,0x08,0x06,0x06,0x07,0x08,0x0A,0x0C,0x0E,0x11,0x13,0x14,0x15,0x15,0x15,0x15
in „Glühwürmchen in Rotkohlglas gefangen“ · Projekte & Code ·
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Sony_M610__MBX-176_.pdf
AW40 SA_DQ24 SA_DQS#1 BC41 M_A_DQS#2 M_B_DQ24 BJ41 SB_DQ23 SB_DQS#0 BC50 M_B_DQS#1 C M_A_DQ26 AT39 SA_DQ25 M SA_DQS#2 BA37 M_A_DQS#3 M_B_DQ25 BL41 SB_DQ24 O SB_DQS#1 BL45 M_B_DQS#2 M_A_DQ27 AW36 SA_DQ26 E SA_DQS#3 BA16 M_A_DQS
in „Blitzschaden an Sony Vaio Notebook“ · PC Hard- und Software ·
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TTester_096k.pdf
22p 16 8MHz PB2(OC1B) 17 10k 33k 10 PB3(MOSI/OC2) 18 T3 PB7(XTAL2/TOSC2) PB4(MISO) 22p PB5(SCK) 19 BC557C 3 1 GND R 3 2 2 Ubat 27k VCC PD0(RXD) 3 10k 3 +5V T2 PD1(TXD) 4 VEE LED 7 VCC PD2(INT0) 4 RS Test BC547 5 5 R/W IC2 VCC PD3(INT1) 6 6 6 100n PD4(XCK/T0) 7 E 1 IN OUT T1 R8 8 GND PD5(T1) 11 D0 2 GND
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xc164cm_ds_v1.4_2007_03.pdf
0.1 V – AGND SS SS Analog input voltage range VAIN SR V AGND V AREF V 2) 3) Basic clock frequency BC 0.5 20 MHz Conver4)on time for 10-bit C10P CC 52 × tBC + tS+ 6 × tSYS – Post-calibr. on result t CC 40 × t + t + 6 × t – Post-calibr. off C10 BC S SYS Conversion time for 8-bit C8P CC 44 × tBC + tS+
in „xc164cm16ff und cc770“ · Mikrocontroller und Digitale Elektronik ·
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CSR_Bluecore4_Manual.pdf
user can switch the working modes between AT command mode and transparent data mode. ※ Chipset CSR BC417143 (BlueCore4External) ※ Bluetooth version V2.0+EDR ※ Output power Class II ※ Flash 8Mbit ※ Power Supply 3.3V ※ Interface I2C UART PCM USB1.2 ※ Size 26.9mm*13mm*2.2mm ※ Rohs: Yes 1/ 23 info@egochina.cc
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Eurotec.pdf
20 R3 4 16.20 (5-24) EMT-4H 5-1200 DC-1200 6.5 8.0 7.0 9.0 50 40 35 25 30 20 50 40 35 20 30 20 R3 4 23.00 (5-24) EMA-173H 5-1200 DC-1200 6.0 7.0 7.0 8.5 40 35 35 25 35 SO 40 35 35 20 30 20 R1 5.6 20.30 (5-24) Level 23 < 23dBm LO, up to 15dBm RF) EMR-1 5-500 DC-500 6.0 7.5 7.5 8.5 55 45 40 30 30 25 55
in „Distributor für M/A-COM in Deuschland“ · HF, Funk und Felder ·
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iPhone_4_schem.pdf
MEM_CAS* T14 EBU_CAS_N 23 7 5 4 3 2 VSD2_1V8 H1 F_VPP D10 VDD_USB_DIG S U19 OUT 24IN RESET2_N L2 F_RST* D_RAS* P6 EBU_RAS_N IN 23 U MEM_BC0* EBU_BC0_N OUT 23 N6 EBU_CAS_N 1 C5_RF K20 VBAT_HF_SPK_1 B MEM_BC1* W15 EBU_BC1_N OUT 23 23IN EBU_CS0_N G1 F_CE* D_CAS* IN 23 0.1UF J19 Y U20 D_CE* L3 EBU_CS1_N IN 23 10% VBAT_HF_SPK_2 L MEM_BC2* EBU_BC2_N OUT 23 23IN EBU_RD_N D12 F_OE* D_CKE M6 EBU_CKE 23 2 X5RV H19 P MEM_BC3* Y17 EBU_BC3
in „iphone 4 smd abgebrochen“ · Mikrocontroller und Digitale Elektronik ·
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ttester-eps-converted-to.pdf
VCC R10 22p PB2(OC1B) 16 8MHz 17 33k 10 PB3(MOSI/OC2) 10k T3 PB7(XTAL2/TOSC2) PB4(MISO) 18 22p 19 BC557C PB5(SCK) 1 7 3 GND Ubat R 3 2 2 +5V VCC PD0(RXD) 10k 3 T2 27k PD1(TXD) 3 VEE 7 4 4 RS LED Test BC547 VCC PD2(INT0) 5 5 PD3(INT1) R/W IC2 VCC 100n 6 6 E 6 8 PD4(XCK/T0) 11 7 x IN OUT T1 R8 GND PD5(T1) 8 D0 2 12 D1 D GND C2 9 k 27k PD6(AIN0) 13 9 C BC547 R 1 PD7(AIN1) 10 D2 L 100n 100n 10n D3 11 12 D4 D5 ISP VCC 13 D6 14 1 MISO VCC 2 VCC D7 3 4 15 SCK MOSI 16 5 6 120−270 Reset RESET GND
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Datei
backtrace_pool-mgr.txt
Unhandled exception: unimplemented function IPHLPAPI.DLL.if_indextoname called in 64-bit code (0x000000007bc5b50c). Register dump: rip:000000007bc5b50c rsp:000000000032ee10 rbp:0000000000000002 eflags:00000202 ( - -- I - - - ) rax:0000000180000100 rbx:000000000032ee30 rcx:000000000032ee30 rdx:000000006b376f49
in „Horizon EDA [War: Neues, halbfertiges Elektronik-CAD-Programm]“ · Projekte & Code ·
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BC04_Manual.pdf
38.4 19.0 mA Standby Host connection - 38.4 40 µA Function Diagram PDFmyURL.com Schemetic File:BLK-MD-BC04-B DEMO schematic.pdf PDFmyURL.com Dimension PDFmyURL.com BC04-A Basic Connection To computer 1. Convert TTLlevel RS232 2. Module power supply 3.3 V 3. TX and RX connected to RX and TX To other devices
in „HC-06 / HC-05 Bluetooth Modul“ · Mikrocontroller und Digitale Elektronik ·
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Datei
whb.txt
L=56 4b 2d d4 2b 2e 11 7a dd af 2f f6 06 ec 00 74 08 56 00 de 08 33 80 bc 08 3e 00 dc 08 37 00 72 08 56 00 de 08 33 80 b8 08 3d 00 dc 08 37 1a 09 91 53 30 00 00 00 de c2 00 RSSI 86 WHB: Probably unsupported sensor type 11! Please report WHB BAD 14 RSSI 86 (SANITY) #014 1539324525
in „SDR-Dekoder für TFA KlimaLogg Pro/IT+ Temperatursensoren“ · Projekte & Code ·
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Datei
Z80int-jmp.asm
Carry Flag|CY=~CY | ;|CP s |***V1*|Compare |A-s | ;|CPD |****1-|Compare and Decrement|A-[HL],HL=HL-1,BC=BC-1| ;|CPDR |****1-|Compare, Dec., Repeat|CPD till A=[HL]or BC=0| ;|CPI |****1-|Compare and Increment|A-[HL],HL=HL+1,BC=BC-1| ;|CPIR |****1-|Compare, Inc., Repeat|CPI till A=[HL]or BC=0| ;|CPL |--1-
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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Transmitteric.pdf
Typ. Max. Unit Spurious emission f = f /256 CLK 0 Load capacitance at Pin CLK = 10 pF fO$ 1 CLK –52 dBc fO$ 4 CLK –52 dBc other spurious are lower Oscillator frequency XTO fXTO = 0 /64 fXTO –30ppm fXTAL +30ppm (=phase comparator fre- f = resonant frequency XTAL quency) of the XTAL, CM= 10 fF, load capacitance selected accordingly PLL loop bandwidth 250 kHz Phase noise of phase Refered to f = f –116 –110 dBc/Hz PC XT0, comparator 10 kHz distance to carrier In loop phase noise PLL 10 kHz distance to carrier –80 –74 dBc/Hz Phase noise VCO @ 1 MHz –89 –86 dBc/Hz @ 36 MHz –120 –117 dBc/Hz Frequency range of
in „Transceiver IC“ · Mikrocontroller und Digitale Elektronik ·
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ForumLNG_R103.pdf
HYSTERESE) D D? C9 D E1 E2 U1 R26 +12 R17 MINUS PLUS C8 741 7 47uF, 35V 68K Q2 6K8 Q3 47uF, 50V 3 D2 U4 BC237 BC237 CV C1 D1 6V2 7 6 R12 741 1u0 2 3 1N4007? 680R 6 R21 C2 C7 1 SNS+ 2 R33 5 4 D3 6K8 ??? R1 C10 R15 FEIN 1u0 100uF, 50V 6V2 4 1 5 680R J1 3K9 47uF, 35V C4 AC1 31 1u0 -REF R34 AC2 30 -12V ??? AC3
in „puff Peng und Magic smoke, Labornetzteil.“ · Analoge Elektronik und Schaltungstechnik ·
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WC_T440.pdf
1 2 3 4 5 6 12V 12V R 150R 9 R1k5 A BC550 470k A 3 Q1 R6 C15 1k 1 150k 2 150uF R5 R12 5 1 GND 2 3 10k 1M C11 R C12 8 R13 U1B 4 U1A 3 1 Q3 1k 220nF VCC 10 12 4011 6 2 2N5308 22uF U2C 10n C5 C2 3 9 U2D 11 C10 13 4011 C1 100n 1n GND GND m C9
in „Defekte Klospülung T440 / XT94e“ · Analoge Elektronik und Schaltungstechnik ·
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WC_T440.pdf
1 2 3 4 5 6 12V 12V R 150R 9 R1k5 A BC550 470k A 3 Q1 R6 C15 1k 1 150k 2 150uF R5 R12 5 1 GND 2 3 10k 1M C11 R C12 8 R13 U1B 4 U1A 3 1 Q3 1k 220nF VCC 10 12 4011 6 2 2N5308 22uF U2C 10n C5 C2 3 9 U2D 11 C10 13 4011 C1 100n 1n GND GND m C9
in „Defekte Klospülung T440 / XT94e“ · Analoge Elektronik und Schaltungstechnik ·
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WC_T440.pdf
1 2 3 4 5 6 12V 12V R 150R 9 R1k5 A BC550 470k A 3 Q1 R6 C15 1k 1 150k 2 150uF R5 R12 5 1 GND 2 3 10k 1M C11 2 C12 8 R13 U1B 4 U1A 3 1 Q3 Rk 220nF VCC 10 12 4011 6 2 2N5308 22uF U2C 10n C5 C2 3 9 U2D 11 C10 13 4011 C1 100n 1n GND GND m C9
in „Defekte Klospülung T440 / XT94e“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
junkers-9600N1.txt
00,3D,16,00,2F,07 3F,00,26,1D,7C,00,00,00,00,00,13,7F,5C,00,03,00,79,00 EE,00,00,06,00,FB,00,01,00 BC,00,6F,00,2F,00 78,00,F6,00,02,00 77,00,F7,00,03,06,3F 00,3D,44,00,00,06,F0,07,3F,00,94,00,07,40,1F,00,00,00,00,00,00,00,12,00,00,03,00,BB,00 EE,00,00,06 00,FB,00,01,00,76,00 6F,00 2F,00,DD,00,F6,00,02
in „Junkers HT-Bus Heatronic 3 Schnittstelle“ · Haus & Smart Home ·
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MAX1448E_data.pdf
, IN IN IN 4 DIFFERENTIAL INPUT) DIFFERENTIAL INPUT) DIFFERENTIAL INPUT) 0 0 0 0 0 0 4 SFDR = 75.5dBc 8 SFDR = 75.2dBc 8 SFDR = 65.8dBc 8 -10 SNR = 59.3dB A -10 SNR = 59dB X -10 SNR = 58dB A 8 THD = -73.9dBc M THD = -71.8dBc M THD = -65.1dBc M -20 -20 -20 SINAD = 57.2dB SINAD = 59.2dB SINAD = 58.7dB
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Datei
output.txt
There are 23 section headers, starting at offset 0x31cd8: Section Headers: [Nr] Name Type Addr Off Size ES Flg Lk Inf Al [ 0] NULL 00000000 000000 000000 00 0 0 0 [ 1] .isr_vector PROGBITS 08000000 010000 00010c 00 A 0 0 1 [ 2] .text PROGBITS 0800010c 01010c 0014b0 00 AX 0 0 4 [ 3] .rodata PROGBITS 080015bc 020018 000000 00 WA 0 0 1 [ 4] .init_array INIT_ARRAY 080015bc 0115bc 000004 04 WA 0 0 4 [ 5] .fini_array FINI_ARRAY 080015c0 0115c0 000004 04 WA 0 0 4 [ 6] .data PROGBITS 20000000 020000 000018 00 WA
in „ST-Link Integration in TrueStudio Atollic“ · Mikrocontroller und Digitale Elektronik ·
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ttester2.pdf
Ubat VCC VCC Reset C10 10u 3 k serial 1 0 k 1 R 1 ATmega8/168/328 R 1 2 R 1 23 PC6(RESET) PC0(ADC0) TP1 C3 PC1(ADC1) 24 TP2 20 25 9V 100n AVCC PC2(ADC2) 26 TP3 21 PC3(ADC3) 27 LT1004 k k k AREF PC4(ADC4/SDA) R 7 R 7 R 7 C1 1n PC5(ADC5/SCL) 28 R12 2.5V 4 4 4 22 AGND 3k3 1 8 3 8
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Bremsschalter_BR400-25.pdf
V4 ZPY56 1N4007 V8 V2 BZT H2 V19 30TPS12 4 3 2 1 03C27 LED C3V3P C7 C5 V10 C6 V13 gelb V12 100n BZX BC546 R133 12C508A 22m 5V1 100m 10k 50V 50V R105 5 6 7 8 10k V18 R3 V3 R131 BC546 10M420 DB3 10k R10 2 10k R101 C2 10k 100n V16 R132 R104 BC546 10k 10k R10 3 10k L1 Starting logic X4 R12 82k C3 2W 100n X3 Bremsgerät BR 400-25 SO7 V11 K2 PC814 X7 von Peter-electronic NC X5 X2 NC X6 DI. Erich Schnitzer 23.09.2017 1/1
in „Bremsgerät BR400-25L defekt“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
gcd.txt
unsigned int gcd (unsigned int a, unsigned int b) { if( b == 0 ){ 0: 61 15 cp r22, r1 2: 71 05 cpc r23, r1 4: 31 f4 brne .+12 ; 0x12 if( a == 0 ) 6: 00 97 sbiw r24, 0x00 ; 0 8: 11 f4 brne .+4 ; 0xe a = 1; a: 81 e0 ldi r24, 0x01 ; 1 c: 90 e0 ldi r25, 0x00 ; 0 return a; e: bc 01 movw r22, r24 10: 10 c0
in „Vergleich C Compiler“ · Mikrocontroller und Digitale Elektronik ·
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AN2131_datasheet.PDF
transfer IN07VAL 7 6 5 4 3 2 1 0 IN2BUF Endpoint Valid (1=valid) 64 Byte Endpoint USBPAIR o67 o45 o23 i67 i45 i23 Buffer Endpoint Pairing (1=paired) IN07IEN 7 6 5 4 3 2 1 0 IN2BC Interrupt Enable (1=enabled) Byte Count Busy and Stall Interrupt Control IN2CS B S IN07IRQ 7 6 5 4 3 2 1 0 Control & Status
in „Aufrufen von Funktion legt auch vorherigen Teil des Programms lahm“ · Mikrocontroller und Digitale Elektronik ·
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AN2131_datasheet.PDF
transfer IN07VAL 7 6 5 4 3 2 1 0 IN2BUF Endpoint Valid (1=valid) 64 Byte Endpoint USBPAIR o67 o45 o23 i67 i45 i23 Buffer Endpoint Pairing (1=paired) IN07IEN 7 6 5 4 3 2 1 0 IN2BC Interrupt Enable (1=enabled) Byte Count Busy and Stall Interrupt Control IN2CS B S IN07IRQ 7 6 5 4 3 2 1 0 Control & Status
in „Einteilung von data, pdata, xdata, code?“ · Mikrocontroller und Digitale Elektronik ·
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schematic.pdf
1D 5 3 D 7 F 0 100µH_SDR1005-101KL 1 7N N 3 10µ/351µ/35V_cer D * 3 K 4 7 3G 5V G 1 C 1 2 N N S C18 C23C25 2 R 3 T B 2 R G O R C22 + + 3K R25 3 K R19 5 B MBR750 1 1 MBR750 1 1 3 5 D M 1µ/35V_cer0Vµ/_21C50eVµK/_2C5eVr_Cer D10 0 R27Z 2.1k D8 0 R20 2.1k P P 8 R 5 3 U 5 2 U K 0 3 10k BC337 3 10k BC337 . 1
in „Finde Packages von Eagle nicht beim Bestellen“ · Platinen ·
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schematic.pdf
1D 5 3 D 7 F 0 100µH_SDR1005-101KL 1 7N N 3 10µ/351µ/35V_cer D * 3 K 4 7 3G 5V G 1 C 1 2 N N S C18 C23C25 2 R 3 T B 2 R G O R C22 + + 3K R25 3 K R19 5 B MBR750 1 1 MBR750 1 1 3 5 D M 1µ/35V_cer0Vµ/_21C50eVµK/_2C5eVr_Cer D10 0 R27Z 2.1k D8 0 R20 2.1k P P 8 R 5 3 U 5 2 U K 0 3 10k BC337 3 10k BC337 . 1
in „Schematic + Board“ · Mikrocontroller und Digitale Elektronik ·
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stk300full.pdf
T1) D8 Q8 25 A7 D7 51 30 ALE 11 24 A8 PA0 (A0) PD5 RD C A9 WR 1 OC 21 A10 VCC2 52 Vcc2 PD4(IC1) 29 23 A11 A15 2 53 28 74HC573 26 A12 GND2 GND2 PD3(INT3) AD8 1 A13 PB0 VCC 54 27 AD9 A14 ( EXT PORT CONNECTIONS) PF7 (ADC7) PD2(INT2) 20 CE PB1 55 PF6 (ADC6) PD1(INT1) 26 22 OE 3 27 PB0 56 25 3 WE PB1 1 2
in „stk300 LCD Interface Problem“ · Mikrocontroller und Digitale Elektronik ·
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Support-Schematic.PDF
A6 B6 PIIC2014 i P33 PR02 PR01 PIQ402 Q4 3.3V R177 PIIC208 A7 B7 PIIC2013 PIP301 1 2 PIP302 0 100K BC557 RG1G PowerNet i I102 I101 P I I C 2A8 9 B8 PIIC2012 GND PIP303 PIP304 D2D 5V P I R G 1 0 1 P I R G 1 0 2 10K PIIC2010 PIIC2011 PIP305 3 4 PIP306 PR02 PR11 41 IN OUT 3.3VV P I I C 2 0 2 GND PIIC2019
in „Zufällige Ausgangsspannungen bei TXB0108PWR“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Laden.txt
; 0092 in r31, 0x7 ; 0094 andi r25, 0x84 ; 0096 ;cbr r25, 0x84 ; 0096 dc.W 0xFFCF ; 0098 adc r27, r23 ; 009A adc r25, r19 ; 009C adc r11, r1 ; 009E cp r19, r1 ; 00A0 rcall 992 ; 00A2, Dest: 0484 adc r25, r17 ; 00A4 adc r27, r31 ; 00A6 sub r9, r5 ; 00A8 subi r25, 0xFB ; 00AA dc.W 0xFECF ; 00AC adc r11
in „UART Problem (Assembler zu C) III“ · Mikrocontroller und Digitale Elektronik ·
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Acer_Aspire_5742G_Compal_LA-5893P_Rev0.1_Schematic.pdf
PCH_TEMP_ALERT# R297 1 @ 2 33_0402_5% XDP_FN15 BB5 VSS[180] VSS[280] M42 AB5 VSS[20] VSS[99] AM26 BC10 VSS[181] VSS[281] M46 AB8 VSS[21] VSS[100] AM28 18 CRT_DET R313 1 @ 2 33_0402_5% XDP_FN17 BC14 VSS[182] VSS[282] M49 AC2 VSS[22] VSS[101] BA42 BC18 M5 AC52 AM30 BC2 VSS[183] VSS[283] M8 AD11 VSS[23
in „Laptop Akkus ausbauen und mit Netzteil betreiben“ · PC Hard- und Software ·
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ttester.pdf
, 601mV B=9, 597mV B=9, 598mV B=4, 484mV 2N3055 NPN B=20, 557mV B=21, 550mV B=21, 550mV B=6, 442mV BC639 NPN B=148, 636mV B=172, 629mV B=172, 629mV B=158, 605mV BC640 PNP B=226, 650mV B=176, 609mV B=171, 655mV B=177, 608mV BC517 NPN B=23.9k, 1.23V B=24.8k, 1.22V B=25.1k, 1.22V B=764, 1.23V BC516 PNP B=75.9k, 1.21V B=76.2k, 1.20V B=76.2k, 1.20V B=760, 1.23V BC546B NPN B=285, 694mV B=427, 687mV B=427, 687mV B=369, 683mV BC556B PNP B=304, 704mV B=254, 668mV B=235, 709mV B=255, 668mV AC128 (Ge.) PNP B=63, 191mV B=59, 191mV B=57, 193mV B=43, 117mV BUL38D NPNp
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ttester.pdf
, 601mV B=9, 597mV B=9, 598mV B=4, 484mV 2N3055 NPN B=20, 557mV B=21, 550mV B=21, 550mV B=6, 442mV BC639 NPN B=148, 636mV B=172, 629mV B=172, 629mV B=158, 605mV BC640 PNP B=226, 650mV B=176, 609mV B=171, 655mV B=177, 608mV BC517 NPN B=23.9k, 1.23V B=24.8k, 1.22V B=25.1k, 1.22V B=764, 1.23V BC516 PNP B=75.9k, 1.21V B=76.2k, 1.20V B=76.2k, 1.20V B=760, 1.23V BC546B NPN B=285, 694mV B=427, 687mV B=427, 687mV B=369, 683mV BC556B PNP B=304, 704mV B=254, 668mV B=235, 709mV B=255, 668mV AC128 (Ge.) PNP B=63, 191mV B=59, 191mV B=57, 193mV B=43, 117mV BUL38D NPNp
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ttester.pdf
, 601mV B=9, 597mV B=9, 598mV B=4, 484mV 2N3055 NPN B=20, 557mV B=21, 550mV B=21, 550mV B=6, 442mV BC639 NPN B=148, 636mV B=172, 629mV B=172, 629mV B=158, 605mV BC640 PNP B=226, 650mV B=176, 609mV B=171, 655mV B=177, 608mV BC517 NPN B=23.9k, 1.23V B=24.8k, 1.22V B=25.1k, 1.22V B=764, 1.23V BC516 PNP B=75.9k, 1.21V B=76.2k, 1.20V B=76.2k, 1.20V B=760, 1.23V BC546B NPN B=285, 694mV B=427, 687mV B=427, 687mV B=369, 683mV BC556B PNP B=304, 704mV B=254, 668mV B=235, 709mV B=255, 668mV AC128 (Ge.) PNP B=63, 191mV B=59, 191mV B=57, 193mV B=43, 117mV BUL38D NPNp
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M500_Askoll__No_Variations__2018-12-02.PDF
BZT52C2V7 817 BAS16T R25 3 BAS16T PD P0 C O VCC Q3 PPI21 PRP OR LAYY FB PIU103 PC2 R41 PI24C2 PI21 BC846TPI2 4k7 S S 3k3 PD P0 PI23 P PI525 PRP O T X P11 P2 P0 TX C25 R42 817 150R P2 330R P0 R21 VCC R33 B PI22 PR0 PR0 PI01 B P1 2k2 P2 P2 2k2 R20 C12 R32 Uref 1k VCC P2 1k VCC VCC VCC Uref P Uref P2 PI
in „RX und TX Schaltung beim Askoll M505“ · Analoge Elektronik und Schaltungstechnik ·
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DELL_VOSTRO_3300__WIstron_Winery13_MB_DIS_.pdf
3.3V_RUN DY U2101; POP R2104 R2104 0R2J-2-GP F40 AD18 V NV_DQ10/NV_IO10 BB7 C42 AD19 N NV_DQ11/NV_IO11 BC8 unused NV_SLE strap 1 8 DGPU_PWM_SELECT# K46 AD20 NV_DQ12/NV_IO12 BJ8 2 7 EDID_SELECT_R# M51 AD21 NV_DQ13/NV_IO13 BJ6 3 6 PCH_GPIO4 J52 AD22 NV_DQ14/NV_IO14 BG6 4 5 INT_PIRQE# K51 AD23 NV_DQ15/NV_IO15
in „Bios programmieren mit Dual Bios Main.Bin und EC.Bin ?“ · Softwareentwicklung ·
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IRG4BC20U_INR.pdf
PD - 95445 IRG4BC20UPbF UltraFast Speed IGBT INSULATED GATE BIPOLAR TRANSISTOR Features C UltraFast: optimized for high operating V =600V frequencies 8-40 kHz in hard switching, >200 CES kHz in resonant mode Generation
in „LED Stripe über IGBT schalten“ · Analoge Elektronik und Schaltungstechnik ·
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CMAC_Xtal.pdf
Frequency offset from Model Number carrier: 1Hz carrier: 10Hz carrier: 100Hz carrier: 1kHz 5.0MHz 120dBc/Hz 140dBc/Hz 150dBc/Hz 150dBc/Hz CFPO-US1 H1 5.0MHz 115dBc/Hz 135dBc/Hz 145dBc/Hz 155dBc/Hz CFPO-US1 S1 Outline in mm (inches) - (scale 1:3) - Package 138 Outline in mm (inches) - (scale 1:3) - Package
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test.txt
; 14a: 30 91 08 02 lds r19, 0x0208 ; 0x800208 <timer0_fract> m += MILLIS_INC; f += FRACT_INC; 14e: 23 e0 ldi r18, 0x03 ; 3 150: 23 0f add r18, r19 if (f >= FRACT_MAX) { 152: 2d 37 cpi r18, 0x7D ; 125 154: 20 f4 brcc .+8 ; 0x15e <__vector_23+0x3a> // copy these to local variables so they can be stored
in „Arduino Compiler Speicherverwaltung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
web_button8_01.ino
0x5F, 0xE0, 0x27, 0x6D, 0x7A, 0x5B, 0xC1, 0x6E, 0xF3, 0x01, 0x92, 0x2C, 0x36, 0x56, 0x62, 0x61, 0x23, 0xA4, 0xB1, 0x12, 0xF2, 0x64, 0xDF, 0x5A, 0xBC, 0x20, 0x5B, 0x98, 0x3B, 0xC5, 0xC0, 0xBD, 0x73, 0xEF, 0x30, 0x53, 0x74, 0x0E, 0x63, 0x48, 0x01, 0xC2, 0xBD, 0x1B, 0x33, 0xAC, 0x2C, 0xAB, 0x0A, 0x3A,
in „Arduini PRO MINI 5V Ethercard“ · Mikrocontroller und Digitale Elektronik ·
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Brummfreies_Netzteil.pdf
A B C D E F G H I J BD240B,C 350mA A A´ 3 2 AC-Detektion BD240B,C AUX 1 1 T10 BC550C R28 T15 6k8 R36 C41 R29 C48 R38 T11 4k7 T16 330R D23 RX Preamp OUT-R-L 10n R37 D22 R35 B C E 100µ C40 R-01 4k7 100uF:Uon=0,3sec C47 BC549 Rel2 2 100µ D26 33uF:Uon=0,1sec 10µ 4002 S2 C25 C26 Brummunterdrückung
in „Brummfreies Netzteil für Elektronikschaltungen“ · Analoge Elektronik und Schaltungstechnik ·
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Schaltplan_neues_Multimeter.pdf
Int. GND DT-830B 78L06L-T92-B C1 D4 1uF 1N5817 GND 5 R1 R5 Kalibrierung Laenge 10k Q2 D1 C3 R5 LED1 BC547-B 1N5817 470uF R13 1k LED Rot (oder BC547-C) 2.2k C8 1uF 6 GND GND GND B B R14 1k U4 U3 U5 C2 R3 SN74HC00N CD4013BE SN74HC08N 6.8nF 4.7k R2 C5 R6 1 1A VCC 14 4.7k 1 Q1 VDD 14 1 1A VCC 14 1uF 100 2
in „Suche günstiges Multimeter mit Schaltplan“ · Analoge Elektronik und Schaltungstechnik ·
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BFE-Di_230_schematic.pdf
R 6 HLMP-2685 5 BC847 2 LED_RED VCC U1A GND 74HC11 U8A Q1 3 74HC74 1 4} 2 12 R19 1 2 { 5 13 10k BAR_FF_STATE2 D ~ Q 3 C BC847 2 BAR_FF_CLK R 6 B ~ ~{Q} B 1 GND VCC U9C 74HC11 VCC VCC 9 Q4 3 VCC VCC 10 8 R22 1 R9 D2 R13 10k 1 16 11 2 1 120 2 C(a) C(h) 15 120 BC847 2 R 1 A(a) A(h) 3 A(b) A(g) 14 R10 4 13 R14 D3 R29 120 C(b) C(g) 120 4148 100k 120 5 C(c) C(f) 12 120 U9B GND 6 11 74HC11 R11 7 A(c) A(f) 10 R15 BAR_FF_~{RST} R12 A(d) A(e) R16 3 Q5 3 8 9 4 6 R23
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BFE-Di_230_schematic.pdf
R 6 HLMP-2685 5 BC847 2 LED_RED VCC U1A GND 74HC11 U8A Q1 3 74HC74 1 4} 2 12 R19 1 2 { 5 13 10k BAR_FF_STATE2 D ~ Q 3 C BC847 2 BAR_FF_CLK R 6 B ~ ~{Q} B 1 GND VCC U9C 74HC11 VCC VCC 9 Q4 3 VCC VCC 10 8 R22 1 R9 D2 R13 10k 1 16 11 2 1 120 2 C(a) C(h) 15 120 BC847 2 R 1 A(a) A(h) 3 A(b) A(g) 14 R10 4 13 R14 D3 R29 120 C(b) C(g) 120 4148 100k 120 5 C(c) C(f) 12 120 U9B GND 6 11 74HC11 R11 7 A(c) A(f) 10 R15 BAR_FF_~{RST} R12 A(d) A(e) R16 3 Q5 3 8 9 4 6 R23