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GT07_GPS_Tracker_Communication_Protocol_v1.4neutral.pdf
the12 and 3/4th time zone(west),GMT-12:45. Computing method: 12.45*100=1246,changed to hexadecimal: 0X04,0XDD. 5.1.2 Server Response Eg: Device to server(here the device ID is 123456789012345) U0x01 0x23 0x45 0x67 0x10 0x32 0x00 0x71 0x0D 0x78 0x78 0x11 0x01 U0x89 0x01 0x23 0x45 0x0B 0x01 0x01 0x93 0x0A
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NTC.pdf
line Product specification 2001 Sep 27 Supersedes data of 4th September 1998 File under BCcomponents, BC02 BCcomponents Product specification NTC thermistors, accuracy line 2322 640 5.... FEATURES QUICK REFERENCE DATA • Accurate over a wide temperature PARAMETER VALUE range (tolerance on B-value Resistance
in „NTC berechnen“ · Analoge Elektronik und Schaltungstechnik ·
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8051_Instructions.pdf
03 RR A 23 RL A 43 ORL dadr,#c8 63 XRL dadr,#c8 83 MOVC A,@A+PC A3 INC DPTR C3 CLR A E3 MOVX A,@R1 04 INC A 24 ADD A,#c8 44 ORL A,#c8 64 XRL A,#c8 84 DIV AB A4 MUL AB C4 SWAP A E4 CLR A 05 INC dadr 25 ADD A,dadr 45 ORL A,dadr 65 XRL A,dadr 85 MOV dadr,dadr A5 - C5 XCH a,dadr E5 MOV A,dadr 06 INC @R0
in „Wieviel Zyklen pro Befehl??“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DMXmega8.ASM
********************** ;* ;* Title : DMX-512 PC-Interface ;* Version : 0.1 ;* Last updated : 26.06.04 ;* Target : ATMega8 ;**** includes **** .include "m8def.inc" ; r2 Aktueller Befehl ; r3 Command Buffer ; r4 DMX-BLOCKSET Pointer Bit 1-8 Bit 0 wird immer als 1 betrachtet ; r5 DMX-BLOCKSET Counter ;
in „Atmel Controller Probleme mit Slot 1 und 2 bei DMX-512“ · Mikrocontroller und Digitale Elektronik ·
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AD603.pdf
IFAGCamplifiers Video gain controls harmonic distortion for a ±1 V sinusoidal output at 10 MHz is typically−60dBc.Thepeakspecifiedoutputis±2.5Vminimum A/Drange extensions Signalmeasurements into a 500 Ω load. The AD603 uses a patented proprietary circuit topology—the X-AMP®. The X-AMP comprises a variable attenuator
in „AD603 Output matching“ · Analoge Elektronik und Schaltungstechnik ·
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EDN_DI_6594092.pdf
voltage. Equation 6R 1 R 2 IR13=I R2 +I DS4404, IDS4404 = Equation 6 �V FB � V FB . (7) DSOR04 SDAEquation 4 TO I C MASTER OR R 1 R 2 VIN DC/DC- VOUT DS4402 SCL MICROPROCESSOR I = V OUTMAX V FB ; I = V FB , CONVERTER R1 R1 Equation 45DETERMINES I C Equation 8R1ifyquationR71ysolv-
in „Einstellbarer Step-Up Regler“ · Analoge Elektronik und Schaltungstechnik ·
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EDN_DI_6594092.pdf
voltage. Equation 6R 1 R 2 IR13=I R2 +I DS4404, IDS4404 = Equation 6 �V FB � V FB . (7) DSOR04 SDAEquation 4 TO I C MASTER OR R 1 R 2 VIN DC/DC- VOUT DS4402 SCL MICROPROCESSOR I = V OUTMAX V FB ; I = V FB , CONVERTER R1 R1 Equation 45DETERMINES I C Equation 8R1ifyquationR71ysolv-
in „mit µc einstellbarer Spannungsregler“ · Mikrocontroller und Digitale Elektronik ·
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Datei
startup.cpp
0x044 PVD through EXTI Line ISR_RTC_TAMPER_CSSLSE, // 0x048 RTC Tamper, CSS LSE ISR_RTC_WAKEUP, // 0x04C RTC Wakeup ISR_FLASH, // 0x050 Flash ISR_RCC, // 0x054 RCC ISR_EXTI_0, // 0x058 External Interrupt 0 ISR_EXTI_1, // 0x05C External Interrupt 1 ISR_EXTI_2, // 0x060 External Interrupt 2 ISR_EXTI_3, /
in „GCC Discarded Section in Disassembly“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stm32h753bit6.cpp
EXTI Line (uint32) ISR_RTC_TAMPER_CSSLSE, // 0x048 RTC Tamper, CSS LSE (uint32) ISR_RTC_WAKEUP, // 0x04C RTC Wakeup (uint32) ISR_FLASH, // 0x050 Flash (uint32) ISR_RCC, // 0x054 RCC (uint32) ISR_EXTI_0, // 0x058 External Interrupt 0 (uint32) ISR_EXTI_1, // 0x05C External Interrupt 1 (uint32) ISR_EXTI_2
in „Virtual Function Elimination ARM GCC“ · Mikrocontroller und Digitale Elektronik ·
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ATmega48PA-ATmega88PA-ATmega168PA_Datasheet.pdf
0x005F 160 Ext I/O Registers0x0060 - 0x00FF 0x0100 Internal SRAM (512/1024/1024/2048 x 8) 0x02FF/0x04FF/0x4FF/0x08FF ATmega48PA/88PA/168PA [DATASHEET] 17 9223F–AVR–04/14 8.3.1 Data Memory Access Times This section describes the general access timing concepts for internal memory access. The internal data
in „Probleme mit Int Capt ISR ATmega48PA“ · Mikrocontroller und Digitale Elektronik ·
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Datei
BinHex.h
0x00 #define 0b00000001 0x01 #define 0b00000010 0x02 #define 0b00000011 0x03 #define 0b00000100 0x04 #define 0b00000101 0x05 #define 0b00000110 0x06 #define 0b00000111 0x07 #define 0b00001000 0x08 #define 0b00001001 0x09 #define 0b00001010 0x0A #define 0b00001011 0x0B #define 0b00001100 0x0C #define
in „bitmasken in C“ · Mikrocontroller und Digitale Elektronik ·
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Datei
RFM70_init.c
!!!!!!!!!!!!!!!!!!!!! const unsigned long Bank1_Reg0_13[]={ //latest config txt 0xE2014B40, 0x00004BC0, 0x028CFCD0, 0x41390099, 0x0B869Ef9, 0xA67F0624, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00127300, 0x36B48000, }; const UINT8 Bank1_Reg14[]= { 0x41,0x20,0x08,0x04,0x81,0x20,0xCF
in „Hat jemand Erfahrung mit dem 2,4GHz-Transceiver RFM70?“ · HF, Funk und Felder ·
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Datei
circuitjs-Statron_3201.txt
zCk6Qz0CBeRATZkjKWhjltNwvDyvwlpzlIlmXqg3jKJg6AEBiepgC2WgmPI5oQNoyh6RAmAEO25jwDgxAKGUJhsMJ1jOK4tSGm6ICGkKJX+j5piVTwpKlaYho2ue5r1S0ny1F5vhtc0PVOV1rUWg1H5dU6pVOoBC62j5TqsJ13RTa6yk2k6lgnJ663TWtXSWltq2lEcvnPoNwhud1bmsoaggGvZPq6ndAGmHg7rtVaTSkpdJqmDd5ViL0VSec9u1OuBKTSIFwVYGFEXaNFCJnA4+QQOFQhoOFZiXmlFD2Nge7iIW1GwC46DXJa803BTwjSU8ywJmsVOelNdaIOoJPsxzWAMAQ6lcXwfAECQwnILi04YwAXowAB2jBSsw2YATw6m2AQ61uhQiD4cw
in „Frage zum Statron 3201“ · Analoge Elektronik und Schaltungstechnik ·
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pc847.pdf
µs ■ Rank Table (IF=5mA, V =CE, T =25aC) Model No. Rank mark IC(mA) PC8❇7AB A or B 4.0 to 13.0 PC8❇7BC B or C 6.5 to 20.0 PC8❇7CD C or D 10.0 to 30.0 PC8❇7AC A, B or C 4.0 to 20.0 PC8❇7BD B, C or D 6.5 to 30.0 PC8❇7AD A, B, C or D 4.0 to 30.0 PC8❇7 A,B,C,Dornomark 2.5 to 30.0 ❇:2 or 4 Fig.1 Forward Current
in „Motorensteuerung Raspberry PI“ · Mikrocontroller und Digitale Elektronik ·
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ISD2360_DE.pdf
Startadresse der Sprachmakro-Befehlsdaten verweist. ● VM-Befehlsdaten Beispiel: Eine VM mit dem Index 0x04 kann ab 0x1000 die folgenden Daten im Speicher gespeichert haben: 0x1000: B8 02 44 B8 03 00 A6 00 06 12 Die Bedeutung dieses Skripts ist: ● Schreiben Sie 0x44 in das Register Reg0x02, um Decoder und
in „Alternative zu ISD2360/DFPlayer“ · Mikrocontroller und Digitale Elektronik ·
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W83627HF_HGb.pdf
and data correction. ~ 100 2.23 07/07/04 20,24,84,100 Data correction. 2.24 10/28/04 48,79 Data correction. 2.25 11/02/04 98 Data correction. 2.26 01/11/05 24, 76,77,120 Add part No.to Section 13 Ordering Instruction and data correction. 2.27
in „Pullups für nicht verwendete Open-Drain-Outputs?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Z80Mem.asm
0x44, 0x18 .db 0xF6, 0xFE, 0x09, 0x28 .db 0x0E, 0xFE, 0x0A, 0x20 .db 0x06, 0x05, 0x28, 0xBB .db 0x04, 0x18, 0x04, 0xFE .db 0x20, 0x38, 0xBD, 0x4F .db 0x78, 0xFE, 0xFD, 0x3E .db 0x07, 0x30, 0x04, 0x79 .db 0x77, 0x23, 0x04, 0xCD .db 0x66, 0x44, 0x18, 0xAC .db 0x3E, 0x20, 0xFE, 0x0A .db 0x20, 0x08, 0xCD
in „ZAtmel: ein minimalistisches Z80-System“ · Projekte & Code ·
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RFM22B.pdf
bandwidth — 2 4 kHz RMS RMS (500 Hz lower bound of integration) Phase Noise Lφ(f ) ΔF = 10 kHz — –80 — dBc/Hz M ΔF = 100 kHz — –90 — dBc/Hz ΔF = 1 MHz — –115 — dBc/Hz ΔF = 10 MHz — –130 — dBc/Hz Tel: +86-755-82973805 Fax: +86-755-82973550 E-mail: sales@hoperf.com http://www.hoperf.com 5 RFM22B/23B Table 3
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PDF
RFM22B.pdf
bandwidth — 2 4 kHz RMS RMS (500 Hz lower bound of integration) Phase Noise Lφ(f ) ΔF = 10 kHz — –80 — dBc/Hz M ΔF = 100 kHz — –90 — dBc/Hz ΔF = 1 MHz — –115 — dBc/Hz ΔF = 10 MHz — –130 — dBc/Hz Tel: +86-755-82973805 Fax: +86-755-82973550 E-mail: sales@hoperf.com http://www.hoperf.com 5 RFM22B/23B Table 3
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Vergleichsliste.pdf
1N5054 V03J 20D10 IR ECG126A 2N2258 2SA440 ECG127 2SB411TV 2SB468 2SB491 2N3731 ECG128 2N3053 2N4239 BC300 ECG128P 2SC1384 ECG129 2N4036 2N4037 BC303 ECG129P 2SA684 ECG130 2N3055 2N3715 2SD878 2SD492 2N3716 ECG131 AD162 AD156 ECG132 A5T3823 ECG133 2N3819 TIS74 ECG134A 1N4729A ECG135A 1N4733A EQB01-05 RD6.2F
in „ECG45 was ist das?“ · Analoge Elektronik und Schaltungstechnik ·
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OTM3225A.pdf
) (0) (0) (0) (0) (0) (0) (0) 80h Display Position - 0 0 0 0 0 0 0 PTDP08 PTDP07 PTDP06 PTDP05 PTDP04 PTDP03 PTDP02 PTDP01 PTDP00 Partial Display 1 (0) (0) (0) (0) (0) (0) (0) (0) (0) 81h RAM Address Start - 0 0 0 0 0 0 0 PTSA08 PTSA07 PTSA06 PTSA05 PTSA04 PTSA03 PTSA02 PTSA01 PTSA00 Partial Display
in „[V]erkaufe TFT 2.8" und TFT 2.4" mit adapter PCB“ · Markt ·
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SerProg.pdf
PCDSR 1 16 15 J4 VCC GND R3 R4 VCC 1k 1k CAN9Z90 GND 100n MAX232A GND R2 10k MD0 R9 R2 10k 10k T6 BC858 MD1 GND MD2 J6 T6 BC858 R5 1k B VCC B VCC GND 10k R8 P00 T6 BC858 VCC 10k R8 GND P01 T6 BC858 GND A A Title Serial interface logic recommendation Size Number Revision A4 2 (version with transistors
in „Fujitsu MB91F011 internal flash read/write“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SerProg.pdf
PCDSR 1 16 15 J4 VCC GND R3 R4 VCC 1k 1k CAN9Z90 GND 100n MAX232A GND R2 10k MD0 R9 R2 10k 10k T6 BC858 MD1 GND MD2 J6 T6 BC858 R5 1k B VCC B VCC GND 10k R8 P00 T6 BC858 VCC 10k R8 GND P01 T6 BC858 GND A A Title Serial interface logic recommendation Size Number Revision A4 2 (version with transistors
in „Fujitsu MB91F011 internal flash read/write“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Littelfuse_PTC_SMD_Catalog_Datasheet.pdf-1021736.pdf
°C 80°C 85°C 125°C femtoSMDC Series; Size 1608mm/0603mils femtoSMDC005F 0.08 0.07 0.06 0.05 0.05 0.04 0.04 0.03 0.03 0.02 0.02 — femtoSMDC008F 0.13 0.11 0.10 0.08 0.08 0.07 0.06 0.06 0.05 0.04 0.04 — femtoSMDC010F 0.16 0.14 0.12 0.11 0.10 0.09 0.08 0.07 0.06 0.05 0.04 — femtoSMDC012F 0.18 0.16 0.14 0.12
in „[V] 24 St. Selbstrückstellende Polyswitch SMD Littlefuse SMD200F-2 2A/15V“ · Markt ·
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HSMP3864_datasheet.pdf
Resistance Capacitance Distortion [1] HSMP- Code Code Configuration 5082- VBR (V) R S ) C TpF) Hmd (dBc) 3820 F0 0 Single 3188 50 0.6* 0.8* — 3822 F2 2 Series 3823 F3 3 Common Anode 3824 F4 4 Common Cathode 3880 S0 0 Single — 100 6.5 0.40 –55 3890 G0 0 Single — 100 2.5 0.30** — 3892 G2 2 Series 3893 G3
in „Diskretes Bauteil für HSMP3864 PIN Diode“ · Mikrocontroller und Digitale Elektronik ·
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FT6x06_AN_public_ver0.1.3.pdf
Number of touch R points [7:6]1t [3:0] 1 Touch 0x03 P1_XH 0xFF Event Flag X Position[11:8] R st 0x04 P1_XL 0xFF [7:0] 1 Touch X Position st R 0x05 P1_YH 0xFF [7:4] 1 Touch ID [3:0] 1 Touch R Y Position[11:8] 0x06 P1_YL 0xFF [7:0] 1 Touch Y Position R 0x07 P1_WEIGHT 0xFF [7:0] 1 Touch Weight R st 0x08
in „Suche Datenblatt: TF6206 (capacitive touch controller)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
mclock8.asm
--- org 0x00 ;Start of code space goto Start ;-------- ; INTERRUPT SERVICE ROUTINE ;-------- org 0x04 ;interrupt vector Intsvc movwf safe_w ;save w swapf STATUS,w ;swap status, w movwf safe_s ;save status(nibble swap, remember) ;-------- ; done saving, now start working ;-------- ; clear watchdog timer
in „programm für pic16f84 auf 16f88 umstellen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ZXTN19060CG.pdf
BV CEO 60 75 V IC= 10mA (*) breakdown voltage Emitter-Collector BV 6 7 V I = 100A, R < 1kΩ ECX E BC Breakdown Voltage or (Reverse Blocking) 0.25V > VBC > -0.25V Emitter-Collector BV ECO 6 7 V IE= 100A breakdown voltage (reverse blocking) Emitter-Base breakdown BV EBO 7 8.3 V IE= 100A voltage Collector-Base
in „5-12V bis 2A schalten, aber wie?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
xc164_um_v2.1_2004_03_per.pdf
Type Function ADCTC [15:14] rw ADC Conversion Time Control (Defines the ADC basic conversion clockfBC) 00 f = f /4 BC ADC 01 BC = fADC/2 10 BC = fADC/16 11 f = f /8 BC ADC ADSTC [13:12] rw ADC Sample Time Control (Defines the ADC sample time in a certain range) 00 BC × 8 01 BC × 16 10 BC × 32 11 BC ×
in „Unterschied Compare match und Period Match“ · Mikrocontroller und Digitale Elektronik ·
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PDF
P6201_x10_900MHz_FET_Probe.pdf
Instruction Manual P6201 900 MHz FET Probe 070-1306-04 Warning The servicing instructions are for use by qualified personnel only. To avoid personal injury, do not perform any servicing unless you are qualified to performing service. safety summaries prior
in „Eigenbautastköpfe“ · Analoge Elektronik und Schaltungstechnik ·
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app162__Interfacing_DS1820_in_a_MC_environment_.pdf
--------------------------------------------*/ #define IDL_ 0x01 #define STOP_ 0x02 #define EWT_ 0x04 #define EPFW_ 0x08 #define WTR_ 0x10 #define PFW_ 0x20 #define POR_ 0x40 #define SMOD_ 0x80 /*------------------------------------------------ DS5000 TCON Bit Registers ------------------------------
in „DS18B20 zu komplizierte Ansteuerung?“ · Mikrocontroller und Digitale Elektronik ·
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RGB16_Trend_ScreenKeys_Datasheet.pdf
b2 | b3 b4 | b5 | b6 | b7 b0| b1 | b2 | b3 b4 | b5 | b6 | b7 b0 | b1 | b2 | b3 b4 | b5 | b6 | b7 B04 B05 B06 B07 b0 | b1 | b2 | b3 b4 | b5 | b6 | b7 b0 | b1 | b2 | b3 b4 | b5 | b6 | b7 b0| b1 | b2 | b3 b4 | b5 | b6 | b7 b0 | b1 | b2 | b3 b4 | b5 | b6 | b7 B08 B09 B10 B11 b0 | b1 | b2 | b3 b4 | b5 |
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app162__Interfacing_DS1820_in_a_MC_environment_.pdf
--------------------------------------------*/ #define IDL_ 0x01 #define STOP_ 0x02 #define EWT_ 0x04 #define EPFW_ 0x08 #define WTR_ 0x10 #define PFW_ 0x20 #define POR_ 0x40 #define SMOD_ 0x80 /*------------------------------------------------ DS5000 TCON Bit Registers ------------------------------
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AN162.pdf
--------------------------------------------*/ #define IDL_ 0x01 #define STOP_ 0x02 #define EWT_ 0x04 #define EPFW_ 0x08 #define WTR_ 0x10 #define PFW_ 0x20 #define POR_ 0x40 #define SMOD_ 0x80 /*------------------------------------------------ DS5000 TCON Bit Registers ------------------------------
in „Temperaturfühler identifizieren“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
iom324pb.h
SFR_MEM8(0xB8) #define TWSR0 _SFR_MEM8(0xB9) #define TWPS00 0 #define TWPS01 1 #define TWS03 3 #define TWS04 4 #define TWS05 5 #define TWS06 6 #define TWS07 7 #define TWAR0 _SFR_MEM8(0xBA) #define TWGCE0 0 #define TWA00 1 #define TWA01 2 #define TWA02 3 #define TWA03 4 #define TWA04 5 #define TWA05 6 #define
in „ATMega324PB: Header?“ · Mikrocontroller und Digitale Elektronik ·
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CSR_Bluecore4_Manual.pdf
BlueCore4- External chipsets. It embeds 8Mbit flash for software storage, and supports 3.3V power supply. BC04 is a muti-function module. It can be used in different products according to the embedded firmware settings. It is especially targeted for data transfer. The second generation Bluetooth UART module
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Weidezaun_S03_4093.pdf
#2 1000uF+470R -80Vs@20ms +100Vs@110ms 6V+6V/230Vac=2k1 Trafo 2,3VA 10mA@9Vub A 8 GND 8NAND 1,9V B1 BC817 R7 1kTHR1 Rl=500R ~9000Vs 21-67% 1400-6200V Tab1 KABELQ2_VDE0100 t Z E22 2 GND e ( HEF4093BE -3VnoT2/T3 T3 15R=Fet THR1_T1+KK1 KK1_T1_IRF Kabelquerschnitte DIN57100 l 4 IC1e NAND_TABELLE IC1D B1 3
in „Weidezaun gegen Schnecken mit Netztrafo und Rohr DN160 für Hobbygärtner“ · Projekte & Code ·
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T6963C.pdf
CMD 77 : 78 : LD A, AWRON ; SET DATA AUTO WRITE 2001-02-28 39/46 T6963C 79 : CALL CMD ; 80 : 81 : LD BC, 00A0H ; 20 Columns × 8Lines (160 = A0H) 82 : TXCR: 83 : LD A, 00H ; WRITE DATA 00H 84 : CALL ADT ; (WRITE BLANK CODE) 85 : 86 : DEC BC 87 : LD A, B 88 : OR C 89 : JR NZ, TXCR 90 : 91 : LD A, AWROFF
in „[V] Grafikdisplay 240x128“ · Markt ·
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GL9540_ServiceManual.pdf
cD4066BCN Natl-ona1 S 1 '200-25293 IC Dtgftal 50 YI MM-l8N lfonltor Prod S 1 059-87025 tJz4 cD4051BC Natlonal S 1 0s9-87030 Connector J2 22032L0L Molex S Connector J1 22032L5L MoIex S 3 200-40165 IC LLnear A1,A3, A4 0P07cJ PMI 2 200-40268 IC Lfnear A5,A6 LM3OlAN NatLonal S I 200-65133 IC Llnear vRI
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T6963C.pdf
CMD 77 : 78 : LD A, AWRON ; SET DATA AUTO WRITE 40 2002-01-07 T6963C 79 : CALL CMD ; 80 : 81 : LD BC, 00A0H ; 20 Columns × 8Lines (160 = A0H) 82 : TXCR: 83 : LD A, 00H ; WRITE DATA 00H 84 : CALL ADT ; (WRITE BLANK CODE) 85 : 86 : DEC BC 87 : LD A, B 88 : OR C 89 : JR NZ, TXCR 90 : 91 : LD A, AWROFF
in „altes Phytec MCB-51 Monitor/Basic Befehle?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
logFile.txt
0934 rev 03 class 06,00,00 hdr 00 (II) PCI: 00:01:0: chip 8086,2591 card 0000,0000 rev 03 class 06,04,00 hdr 01 (II) PCI: 00:1c:0: chip 8086,2660 card 0000,0000 rev 03 class 06,04,00 hdr 81 (II) PCI: 00:1c:1: chip 8086,2662 card 0000,0000 rev 03 class 06,04,00 hdr 81 (II) PCI: 00:1d:0: chip 8086,2658
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Datei
88DDS.txt
************************************************************ ldi TEMP,0xFF out SPL,TEMP ldi TEMP,0x04 out SPH,TEMP ; TWI initialization ; TWI TWBR ldi TEMP, 65 sts TWBR,TEMP ; TWI TWCR control-register ldi TEMP, 1<<TWINT|1<<TWEA|0<<TWSTA|0<<TWSTO|0<<TWWC|1<<TWEN|1<<TWIE sts TWCR,TEMP ; TWI TWAR (only
in „DDS Sinus erzeugung“ · Mikrocontroller und Digitale Elektronik ·
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AD811.pdf
Figure6.FrequencyResponse ) R L 150Ω R ( 0.07 0.14 G N D A ( G 0.06 0.12 S L A T 0.05 0.10 P N L E 0.04 PHASE 0.08 I E T F E D 0.03 0.06 R F 0.02 0.04 I GAIN D 0.01 0.02 0 0 0 5 6 7 8 9 10 11 12 13 14 15 - 8 SUPPLY VOLTAGE (±V) 0 Figure5.DifferentialGainandPhase Rev. E | Page 3 of 20 AD811 SPECIFICATIONS
in „2 Spannungen in einer Schaltung“ · Analoge Elektronik und Schaltungstechnik ·
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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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Datei
ISP.txt
B700n2800+B700n2000-B800n2800+B800n2000-B900n2800+B900n2000-BA00n2800+BA00n2000-BB00n2800+BB00n2000-BC00n2800+BC00n2000-BD00n2800+BD00n2000-BE00n2800+BE00n2000-BF00n2800+BF00n2000-C000n2800+C000n2000-C100n2800+C100n2000-C200n2800+C200n2000-C300n2800+C300n2000-C400n2800+C400n2000-C500n2800+C500n2000-C600n2800
in „Warum ließt AtmelStudio vor Programmieren?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Laptop.txt
0086 Port 0088-0088 Port 008C-008E Port 0090-009F Port 00A2-00BF Port 00E0-00EF Port 0400-047F Port 04D0-04D1 Port 0500-053F [ Systemgeräte / Intel(R) 82801DB LPC Interface Controller - 24C0 ] Geräteeigenschaften: Gerätebeschreibung Intel(R) 82801DB LPC Interface Controller - 24C0 Treiberdatum 02.07.2001
in „Woher Treiber und Manual für Comtrade PC?“ · Softwareentwicklung ·
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PDF
Infineon-Evaluation_Board_EVAL-1EDx20H12AH-SIC-ApplicationNotes-v01_00-EN.pdf
PAR14 PA0 PT0PPAP P7P P0 COT CO301TAP PA21 CJ COP15 COC42 PAR15 PAR18 CO11PC4C7 101DAP P11 P9P9PT0P P04 PAR16 PAR17 PPA0PC0 2P04P1D01DAP PA0 PT0P1P24 P0 2P PC2RPEP P1 COT PA C1 30 1 COP14 COTP6 COLE4 CTR C PDCO44PR2EP P2 PA22 CPPA1P P0 203TAP RAP19CTP5OLD6 P12 PA23 CPP PAPA1 30P3OT COIC PA0 PA5 CO10 P11
in „H-Brücke funktioniert nur mit Tastkopf“ · Mikrocontroller und Digitale Elektronik ·
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Alto_D1__D2__D3__D4_Power_Amp_Service_Manual.pdf
Combo MIC jack LA1117 90° 2 25 HC00945 terminal block 2ESDCR-02P 2 26 HC00946 terminal block 2ESDCR-04P 1 27 HC00947 terminal block 2ESDCR-05P 2 28 NB05129 cardboard D1 ALTO_V1.0 2 29 NB05130 inner case D1 ALTO_V1.0 1 30 NB05133 carton D1 ALTO_V1.0 1 31 NE17034 ZC-bar code D1 bar code_V1.0 1 32 HA04967
in „Endstufe reparieren, Bauteil identifizieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TUA6100.pdf
R-counter divide ratio R 2 1023 10-Bit, CMOS P-counter divide ratio P 32/33 64/65 5/6-Bit, Bipolar dBc -164 /Hz Fref = 30 kHz Equivalent phase noise at phase -159 dBc/ Fref = 100 kHz detector input, Hz -158 dBc/Hz Fref = 125 kHz @ 1 kHz offset, within loop band dBc width, 6 kHz loop BW, SSB -155 /Hz Fref
in „Pollin - Receiver-Mainboard mit Twin DVB-[T,C] Tuner, NXP PNX8950EH“ · Mikrocontroller und Digitale Elektronik ·
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Datei
display_t.cpp
UI3 Address MOVI %r5,%lo(0x00972600) PFX %xhi(0x00972600) MOVHI %r5,%xlo(0x00972600) PFX %hi(0x0097BC00) ; Set UI4 Address MOVI %r6,%lo(0x0097BC00) PFX %xhi(0x0097BC00) MOVHI %r6,%xlo(0x0097BC00) PFX %hi(0x00985200) ; Set UI5 Address MOVI %r7,%lo(0x00985200) PFX %xhi(0x00985200) MOVHI %r7,%xlo(0x00985200
in „Wittig(welec) DSO W20xxA Open Source Firmware (Teil4)“ · Mikrocontroller und Digitale Elektronik ·