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Datei
voltcraft_FSP.txt
C8 101 R1 1k 1K R11 220 R2 1K R5 1K R3 5.1K R13 5.1K R4 5.1K R3 5.1K R5 220 R4 220 R6 220 R1 220 R7 20K R7 20K R7 20K R8 5.1K R2 5.1K R9 5.1K R8 5.1K R10 27K R11? 27K R10 27K R11 1.8K R6 1.8K R12 2K R9 R9 2K R13 6.2K R12 6.2K R14 sollte es geben, weil es 14Rs sind R14 1K R15 R16 R17 RP1 4.7k W 4K7 S1A S1B T1 V17 1N5402 D2 1N5404 V18 1N4002 D9 4002 D3 1N4007 V19 1N5402 D1 1N5404 V20 BS62-3.6A D4 4A2 V21 1N4148 D6 1N4148 V22 V23 V24 V25 V26 2N3055 Q 2N3055 V27 D313 Q1 D313/800 Q1 8050 V28 9014 V.9014C Q2 S9014 V29 1N4148 1N4148 D5 1N4148 V30 9014 V.9014C Q3 9014 V31 9014 V.9014C
in „Voltcraft FSP 11330 Spannung bricht zusammen“ · Analoge Elektronik und Schaltungstechnik ·
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Dazzle_HW_mb_hsw_ult-3a-reve-0408.pdf
M_B_WE# 15 M_A_DQ18 AM57 SA_DQ18 M_B_DQ17 AK29 SB_DQ17 SB_CAS AM33 M_B_CAS# 15 M_A_DQ19 AK57 AU35 M_A_BS#0 14 M_B_DQ18 AL28 M_A_DQ20 AL58 SA_DQ19 SA_BA0 AV35 M_A_BS#1 14 M_B_DQ19 AK28 SB_DQ18 AL35 M_B_BS#0 15 M_A_DQ21 AK58 SA_DQ20 SA_BA1 AY41 M_A_BS#2 14 M_B_DQ20 AR29 SB_DQ19 SB_BA0 AM36 M_B_BS#1 15 M_A_DQ22 AR57 SA_DQ21 SA_BA2 M_B_DQ21 AN29 SB_DQ20 SB_BA1 AU49 M_A_DQ23 AN57 SA_DQ22 AU36M_A_A0 M_A_A[15:0] 14 M_B_DQ22 AR28 SB_DQ21 SB_BA2 M_B_BS#2 15 M_A_DQ24 AP55 SA_DQ23 SA_MA0 AY37M_A_A1 M_B_DQ23 AP28 SB_DQ22 AP40 M_B_A0 M_B_A[15:0] 15 M_A_DQ25
in „Notebook Mainboard reparieren Aspire V5-573G, IC iTE IT8587E“ · PC Hard- und Software ·
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Bild
Schaltplan eines Audio-Verstärkers mit ATmega328P
R21 4.7K, R20 +5V, U2 LT6231-1, ATMEGA328P, LCD1602, U4 2402, U3 LT6231-2, U1 74AC04, U5 74AC04, BS170, BS170, Q1, Q2, Q3, Q4, ANTENNA, 10k, 10nF, 20nF, 470, 10uH, 100uH, 10k, 10k, 10k, 10k
in „uSDX+ mit FW 4.00e und die CW Tastung“ · HF, Funk und Felder · · Schaltpläne
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Atiny2313.pdf
Information (3) (1) Speed (MHz) Power Supply Ordering Code Package Operation Range ATtiny2313V-10PI 20P3 (2) ATtiny2313V-10PU 20P3 Industrial 10 1.8 - 5.5V ATtiny2313V-10SI 20S ATtiny2313V-10SU (2) 20S (-4°C to 85°C) ATtiny2313V-10MU (2) 20M1 ATtiny2313-20PI 20P3 ATtiny2313-20PU(2) 20P3 Industrial 20 2.7 - 5.5V ATtiny2313-20SI(2) 20S (-4°C to 85°C) ATtiny2313-20SU 20S ATtiny2313-20MU (2) 20M1 Note: 1. This device can also be supplied in wafer form. Please contact your local Atmel sales office for detailed ordering information
in „Suche tutorial“ · Mikrocontroller und Digitale Elektronik ·
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Datei
LCD_Driver.txt
REG_AC_DRIVE_CTRL 0x02 // LCD-Driving-Waveform Control #define REG_POWER_CTRL_1 0x03 // Power Control 1 (BS, BT, DC, AP, SLP) #define REG_CONTRAST_CTRL 0x04 // Contrast Control (VR, CT) #define REG_ENTRY_MODE 0x05 // Entry Mode (AM, I/D, SPR, HWM, LG) -> MADCTL equivalent #define REG_DISPLAY_CTRL 0x07 // Display
in „LCD-Modul F51661GNCJU-MLW-AA * Info *“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Defektfused.txt
Using Port : COM3 Using Programmer : stk500v1 Overriding Baud Rate : 19200 avrdude: Send: 0 [30] [20] avrdude: Send: 0 [30] [20] avrdude: Send: 0 [30] [20] avrdude: Recv: . [14] avrdude: Recv: . [10] AVR Part : ATtiny85 Chip Erase delay : 400000 us PAGEL : P00 BS2 : P00 RESET disposition : possible
in „Projekt fertiggestellt: MP3 Player für Kinder auf ATTiny-Basis“ · Projekte & Code ·
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ssd1803a.pdf
DB6 DB5 DB4 DB3 DB2 DB1 DB0 Description UD2~1: Assign different doubt height format (POR=11) Double BS1:BS0 = “00”: 1/5 bias (POR) height(4- BS1:BS0 = “01”: 1/4 bias line)/ Bias/ 0 1 0 0 0 0 0 1 UD2 UD1 BS1 DH’ BS1:BS0 = “10”: 1/7 bias Display-dot BS1:BS0 = “11”: 1/6 bias shift DH’ = "1": display shift
in „Probleme mit EADOGM204-4 und ATMEGA32“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ssd1803a_2_0.pdf
DB6 DB5 DB4 DB3 DB2 DB1 DB0 Description UD2~1: Assign different doubt height format (POR=11) Double BS1:BS0 = “00”: 1/5 bias (POR) height(4- BS1:BS0 = “01”: 1/4 bias line)/ Bias/ 0 1 0 0 0 0 0 1 UD2 UD1 BS1 DH’ BS1:BS0 = “10”: 1/7 bias Display-dot BS1:BS0 = “11”: 1/6 bias shift DH’ = "1": display shift
in „Display DOGM-204A/SSD1803A mit I2C - ROM Auswahl“ · Mikrocontroller und Digitale Elektronik ·
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SSD1327_1.2.pdf
VCI -2927 -385 98 D1 2567 -385 178 COM9 2156 350 19 VDD -2867 -385 99 D2 2627 -385 179 COM8 2128 350 20 VDD -2807 -385 100 D3 2687 -385 180 COM7 2100 350 21 VCI -2747 -385 101 D4 2747 -385 181 COM6 2072 350 22 BS0 -2687 -385 102 D5 2807 -385 182 COM5 2044 350 23 VSS -2627 -385 103 D6 2867 -385 183 COM4
in „OLED Display mit SSD1327 Controller ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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LNG_BG_v2.11.a.pdf
7 7 4 0 1 1 D D 4 S 5 S V+ Q 2 Q 2 1 x 12-24V~ X4-4 X4-X1 JP1=1 / JP2=JP3=0 ohne K1 20-40V DC 2 x 12V~ Reihensch. JP1=1 JP2=0 ohne K1 X3-1X3-2 2 x 12V~ Relaisumschaltung JP1=JP2=0 1J1 2 2 x 18V~ Parallel JP1=JP2=1 J5MM 1 + + V V X4-4 8 GND X4-3 1 U 1 4 5 AC In O K B+ B W 2 W 2 12V~ P AC1
in „Labornetzgerät - Fragen zum Schaltplan“ · Analoge Elektronik und Schaltungstechnik ·
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NFAQ1560R43T-D.PDF
www.onsemi.com 11 NFAQ1560R43T TEST CIRCUITS • ICES 34 ICE VBS=15V U+ V+ W+ U− V− W− 32 A A A 38 38 38 32 26 20 VBS=15V 28 B 32 26 20 17 18 19 26 VCE U+, V+, W+ : High side phase VBS=15V 22 U−, V−, W− : Low side phase 20 VDD=15V 2,9,11,12 B 1,10,17,18,19 Figure 16. Test Circuit for I CE • VCE(sat) (Test by pulse) U+ V+ W+ U− V− W− A 38 38 38 32 26 20 VBS=15V 34 32 A B 32 26 20 17 18 19 28 C 3 4 5 6 7 8 VBS=15V 26 V IC VBS=15V 22 VCE(sat) 20 VDD=15V 2,9,11,12 5V C B 1,10,17,18,19 Figure 17. Test Circuit for CE(SAT) • VF (Test by pulse) U+ V+ W+ U−
in „Ersatz für ON-Semi STK5Q4U362J-E / STK5Q4U363J-E bzw. passt da NFAQ1060L33T / NFAQ1060L36T“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
MON8052.asm
fixed ; irqs are revectored to EXPAN , which is in the RAM ; workspace for monitor ; ; Konstanten .equ bs , h'08 .equ ht , h'09 .equ lf , h'0a .equ cr , h'0d .equ blank , h'20 .equ esc , h'1b .equ del , h'7f ; Hardware Definitionen .EQU ACC,H'E0 .EQU B,H'F0 .EQU PSW,H'D0 .EQU SP,H'81 .EQU DPL,H'82 .EQU DPH
in „80C535 Board“ · Mikrocontroller und Digitale Elektronik ·
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Datei
MON8052.asm
fixed ; irqs are revectored to EXPAN , which is in the RAM ; workspace for monitor ; ; Konstanten .equ bs , h'08 .equ ht , h'09 .equ lf , h'0a .equ cr , h'0d .equ blank , h'20 .equ esc , h'1b .equ del , h'7f ; Hardware Definitionen .EQU ACC,H'E0 .EQU B,H'F0 .EQU PSW,H'D0 .EQU SP,H'81 .EQU DPL,H'82 .EQU DPH
in „ARM: kompliziert?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
MON8052.asm
fixed ; irqs are revectored to EXPAN , which is in the RAM ; workspace for monitor ; ; Konstanten .equ bs , h'08 .equ ht , h'09 .equ lf , h'0a .equ cr , h'0d .equ blank , h'20 .equ esc , h'1b .equ del , h'7f ; Hardware Definitionen .EQU ACC,H'E0 .EQU B,H'F0 .EQU PSW,H'D0 .EQU SP,H'81 .EQU DPL,H'82 .EQU DPH
in „Basic für 80C31“ · Mikrocontroller und Digitale Elektronik ·
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xminilab-schematics-2.1.pdf
CON2 K4 C2 +2.048V 1-5V J11 J12 J13 J14 D CON1 CON1 CON1 CON1 J6 R6 3.00k 330p 1u C3 +5V CON1 K3 R7 20.0k R8 180k C4 +2.048V 1 1 1 1 4 +5V CH2 +2.048V R9 20.0k +5V 4 U3A 1 U3C + 10 1 K2 330p 3 2 8 R11 3.00k 1 + 3 - 9 C6 D1 2 R10 CHANNEL 2 TL064 LM4040D20 R13 3.00k TL064 - 820k CON3 1 0.1u K1 R12 1-5V
in „Stromversorgung mit LM7805 (Xminilab)“ · Mikrocontroller und Digitale Elektronik ·
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xminilab-schematics-2.1.pdf
CON2 K4 C2 +2.048V 1-5V J11 J12 J13 J14 D CON1 CON1 CON1 CON1 J6 R6 3.00k 330p 1u C3 +5V CON1 K3 R7 20.0k R8 180k C4 +2.048V 1 1 1 1 4 +5V CH2 +2.048V R9 20.0k +5V 4 U3A 1 U3C + 10 1 K2 330p 3 2 8 R11 3.00k 1 + 3 - 9 C6 D1 2 R10 CHANNEL 2 TL064 LM4040D20 R13 3.00k TL064 - 820k CON3 1 0.1u K1 R12 1-5V
in „Auswerten symmetrischer potentialfreier Leitungen“ · Mikrocontroller und Digitale Elektronik ·
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xminilab-schematics-2.1.pdf
CON2 K4 C2 +2.048V 1-5V J11 J12 J13 J14 D CON1 CON1 CON1 CON1 J6 R6 3.00k 330p 1u C3 +5V CON1 K3 R7 20.0k R8 180k C4 +2.048V 1 1 1 1 4 +5V CH2 +2.048V R9 20.0k +5V 4 U3A 1 U3C + 10 1 K2 330p 3 2 8 R11 3.00k 1 + 3 - 9 C6 D1 2 R10 CHANNEL 2 TL064 LM4040D20 R13 3.00k TL064 - 820k CON3 1 0.1u K1 R12 1-5V
in „ATXmega - Pin Eingang oder Ausgang“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ff.c
Number of special hidden sectors (4) */ #define BPB_TotSec32 32 /* Volume size [sector] (4) */ #define BS_DrvNum 36 /* Physical drive number (1) */ #define BS_NTres 37 /* Error flag (1) */ #define BS_BootSig 38 /* Extended boot signature (1) */ #define BS_VolID 39 /* Volume serial number (4) */ #define BS_VolLab
in „Problem mit VS1053“ · Mikrocontroller und Digitale Elektronik ·
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TRIACS_FOR_MICROWAVE_OVEN.pdf
TRANFORMER CONTROL BY TRIAC Triggering at voltage peak ---> peak current = 22 A CURRENT 5 A / div 20 ms / div (unloaded transformer) TRIAC VOLTAGE 100 V / div 20 ms / div 7/8 APPLICATION NOTE Triggering at zero voltage ---> peak current reaches 130 A ! TRIAC VOLTAGE 100 V / div 20 ms / div (line voltage = 220 VAC) CURRENT 50 A / div 20 ms / div (unloaded transformer) Steady state (without load) TRIAC CURRENT 50 A / div 10 ms / div Information furnished is believed to be accurate and reliable. However, SGS-THOMSON Microelectronics assumes
in „Optokoppler + Triac = Rauch?“ · Mikrocontroller und Digitale Elektronik ·
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SSD1306-Revision_1.1__Charge_Pump__1_.pdf
NC 15 D/C# 95 SEG76 175 NC 16 RES# 96 SEG75 176 NC 17 CS# 97 SEG74 177 NC 18 NC 98 SEG73 178 NC 19 BS2 99 SEG72 179 NC 20 BS1 100 SEG71 180 NC 21 VDD 101 SEG70 181 NC 22 NC 102 SEG69 182 COM0 23 NC 103 SEG68 183 COM2 24 NC 104 SEG67 184 COM4 25 NC 105 SEG66 185 COM6 26 NC 106 SEG65 186 COM8 27 NC 107
in „5V an den Datenleitungen?“ · Mikrocontroller und Digitale Elektronik ·
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SSD1306.pdf
NC 15 D/C# 95 SEG76 175 NC 16 RES# 96 SEG75 176 NC 17 CS# 97 SEG74 177 NC 18 NC 98 SEG73 178 NC 19 BS2 99 SEG72 179 NC 20 BS1 100 SEG71 180 NC 21 VDD 101 SEG70 181 NC 22 NC 102 SEG69 182 COM0 23 NC 103 SEG68 183 COM2 24 NC 104 SEG67 184 COM4 25 NC 105 SEG66 185 COM6 26 NC 106 SEG65 186 COM8 27 NC 107
in „OLED Grafik Anzeige“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ff.c
sectors */ n = get_fattime (); /* Use current time as a VSN */ if (fmt != FS_FAT32) { ST_DWORD(tbl+BS_VolID, n); /* Volume serial number */ ST_WORD(tbl+BPB_FATSz16, n_fat); /* Number of secters per FAT */ tbl[BS_DrvNum] = 0x80; /* Drive number */ tbl[BS_BootSig] = 0x29; /* Extended boot signature */
in „HC8SX Filestruktur in RAM“ · Mikrocontroller und Digitale Elektronik ·
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HD66766R.PDF
Control 2 (R0Ch) R/W RS DB15 DB14 DB13 DB12 DB11 DB10 DB9 DB8 DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0 w 1 BS3 BS2 BS1 BS0 BT3 BT2 BT1 BT0 0 DC2 DC1 DC0 AP1 AP2 SLP STB w 1 0 0 0 0 0 0 0 0 0 0 0 0 0 VC2 VC1 VC0 Figure 9 Power Control Instruction BS3-0: The LCD drive bias value is set. The LCD drive bias value
in „LCD-Modul F51661GNCJU-MLW-AA * Info *“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stm32f10x_can.c
CAN_InitStruct->CAN_Mode << 30) | ((uint32_t)CAN_InitStruct->CAN_SJW << 24) | ((uint32_t)CAN_InitStruct->CAN_BS1 << 16) | ((uint32_t)CAN_InitStruct->CAN_BS2 << 20) | ((uint32_t)CAN_InitStruct->CAN_Prescaler - 1); /* Request leave initialisation */ CANx->MCR &= ~MCR_INRQ; /* Wait the acknowledge */ wait_ack = 0x00
in „CAN mit STM32“ · Mikrocontroller und Digitale Elektronik ·
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doc7707.pdf
when OE is low). Table 25-7. BS2 and BS1 Encoding Flash Data Flash / EEPROM Loading / Fuse Reading Fuse BS2 BS1 Address Reading Programming and Lock Bits 0 0 Low Byte Low Byte Low Byte Fuse Low Byte 0 1 High Byte High Byte High Byte
in „AVR (AT90USB162) - Sleep Mode und PCINT“ · Mikrocontroller und Digitale Elektronik ·
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dds_ds558.pdf
Supports Spurious Free Dynamic many digital communication systems. Quadrature syn- Range (SFDR) from 18 dBs to 150 dBs thesizers are used for constructing digital down and up • Support for 1 to 16 independent time-multiplexed converters, demodulators, and implementing various channels types of modulation schemes
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MTA_u._TXT_ohne_par._Port_MP2703_04-09-2013.pdf
Zentrierung) „0“ = 30h Standschrift „1“ = 34h Blinkschrift „5“ = 39h Laufschrift Daten „" bis „DEL“ = 20h bis 7Fh (ISO/IEC 8859 ASCII) Optionszeichen „ACK“ = 06h Feldnummerkennung „BEL“ = 07h Maskenkennung „BS“ = 08h Rückantwortkennung Farbdaten „D“ = 41h dunkel „R“ = 52h rot „G“ = 47h grün „O“ = 4Fh orange
in „Ansteuerung einer Wibond-Anzeige“ · PC Hard- und Software ·
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Software_Guide_1.3_125kHz_OEM.pdf
for EM4x02 (40h / 41h)..........................................................................19 3.20 HTRC110 CFG Page Settings 2 for HITAG1 (42h / 43h)...........................................................................20 3.21 HTRC110 CFG Page Settings 2 for HITAGS (44h / 45h)................
in „[V] USB LF-125KHz RFID Leser Kronegger on Bord Antenne (70x45mm) + SW Tool (13€)“ · Markt ·
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Datei
keycodes.h
CTRL_F 0x06 // ASCII [ACKNOWLEGE] #define CTRL_G 0x07 // ASCII [BELL] #define CTRL_H 0x08 #define BS 0x08 // ASCII [BACKSPACE] #define CTRL_I 0x09 #define TAB 0x09 // ASCII [HORIZONTAL TAB] #define CTRL_J 0x0a // ASCII [LINE FEED] #define CTRL_K 0x0b // ASCII [VERTICAL TAB] #define CTRL_L 0x0c // ASCII
in „Atmega32 - PS/2 Keyboard - LCD“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Sp3A-DSP-1800A-Starter-Schematic-Rev1.pdf
_0 EXP1_DIFF_n19 IO_L20n_0_VREF_0 E15 EXP1_DIFF_p11 IO_L21p_0 D17 EXP1_SE_IO_30 Vcco_0 EXP1_DIFF_p12 IO_L21n_O C16 EXP1_SE_IO_32 EXP1_DIFF_p13 D16 EXP1_DIFF_p20 EXP1_DIFF_p14 IO_L22p_0 C15 EXP1_DIFF_n20 EXP1_DIFF_p15 IO_L22n
in „Schematics von Spartan 3A-DSP 1800 Board“ · FPGA, VHDL & Co. ·
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fsp_technology_fsp202-4fs01_runtkb074wjqz_psu.pdf
GATE1 102 R 1 9 K 9 9 9 24 REG90 CS1 3 C0 R 220K C932A 115K 1 910K R940A 105 R941A 13 14 R942A RT OVP 20 2.2K 2.2K LM3588 3.9K 140K R943A R971A R970A G 33K 6 - 4.7K R944A I 9 ADIM DIMOUT1 6 LED4- LED3- 100K R947A 7 R946A R945A A D908A MDD4N20 20 D907A MDD4N20 R949A 5 + C946A 15 7 R948A DIM 4U902:3 104 SS
in „Welche Diode ist das?“ · Analoge Elektronik und Schaltungstechnik ·
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KWB_RS485_Protokoll.pdf
) Temperatur 20 21 Puffer 1 (oben) Temperatur 22 23 Außen Temperatur 24 25 Rauchgas Temperatur 26 27 28 Kesselsteuergerät Temperatur 29 HK1 Fernverstellung Temperatur 30 31 HK2 Fernverstellung Temperatur 32 33 34 HK2
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REX0128128B-datasheet.pdf
r L A 0 o 3( 0 1 c 2 3 5 0 9 4 6 3 3 3 Pull tape n n I n n 5 IC , R6 1 NBBBVCDDCVV Silicon s Tape 20.00±0.2 c 5 0 0.235 ± 05 i 2 2 . 10.50±0.1 08±0. 0 0 0.210 2 1.00 2-Ø 0.35 Stiffener n . Contact side 1 24 7 0.50 0.30±0.05 o P0.5*23=11.50 3 4. SCALE 1:20 3.75 12.50±0.2 r Feature Mechanical Data p 2
in „OLED-Display SPI Psoc4“ · Mikrocontroller und Digitale Elektronik ·
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ATmega16M1_ISP.pdf
Action when XTAL1 is pulsed 0 0 Load Flash or EEPROM Address (High or Low address byte determined by BS1) 0 1 Load Data (High or Low data byte for Flash determined by BS1) 1 0 Load Command 1 1 No Action, Idle Table 27-14. Command byte bit coding. Command byte Command executed 1000 0000 Chip Erase 0100
in „ISP Pins am ATMega16M1“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EUP3482.pdf
Protection can operate with an input range 4.5V to 30V and the output can be externally set from 0.923V to 20V with a● Integrated 160m /110m DMOS Switches resistor divider. ● 4.5V to 30V Input Operating Range Fault condition protection includes cycle-by-cycle ● Output Adjustable from 0.923V to 20V current limiting
in „Sony Soundbar HT-CT260H nicht mehr einschaltbar - EUP3482A defekt“ · Analoge Elektronik und Schaltungstechnik ·
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Display.pdf
External clock from EXA pin 36 LH155BA D 7 D6 D5 D 4 D 3 D2 D1 D 0 CSB RS WRB RDB RE 1 1 1 0 DU1 DU0 BS1 BS0 0 1 0 1 1 (At the time of reset : (DU1, DU0, BS1, BS0H , read address H ) (1) BS Command (2) DUTY Command Command for bias setting. Command for duty setting. Select boost voltage level below. Select duty ratio below. BOOSTED DU1 DU0 DUTY RATIO BS1 BS0 VOLTAGE LEVEL 0 0 1/64 0 0 4 times 0 1 1/48 0 1 3 times 1 0 1/32 1 0 2 times 1 1 1/16 1 1 Prohibition Do not set BS1 = "1", BS0 = "0". 4.15. RE Register Set D 7 D6 D5 D 4 D 3 D2 D1 D 0 CSB RS WRB
in „LC-Display Sharp M078CKA ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lh155.pdf
External clock from EXA pin 36 LH155BA D 7 D6 D5 D 4 D 3 D2 D1 D 0 CSB RS WRB RDB RE 1 1 1 0 DU1 DU0 BS1 BS0 0 1 0 1 1 (At the time of reset : (DU1, DU0, BS1, BS0H , read address H ) (1) BS Command (2) DUTY Command Command for bias setting. Command for duty setting. Select boost voltage level below. Select duty ratio below. BOOSTED DU1 DU0 DUTY RATIO BS1 BS0 VOLTAGE LEVEL 0 0 1/64 0 0 4 times 0 1 1/48 0 1 3 times 1 0 1/32 1 0 2 times 1 1 1/16 1 1 Prohibition Do not set BS1 = "1", BS0 = "0". 4.15. RE Register Set D 7 D6 D5 D 4 D 3 D2 D1 D 0 CSB RS WRB
in „Suche sehr dünnes Grafikdisplay“ · Mikrocontroller und Digitale Elektronik ·
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lh155.pdf
External clock from EXA pin 36 LH155BA D 7 D6 D5 D 4 D 3 D2 D1 D 0 CSB RS WRB RDB RE 1 1 1 0 DU1 DU0 BS1 BS0 0 1 0 1 1 (At the time of reset : (DU1, DU0, BS1, BS0H , read address H ) (1) BS Command (2) DUTY Command Command for bias setting. Command for duty setting. Select boost voltage level below. Select duty ratio below. BOOSTED DU1 DU0 DUTY RATIO BS1 BS0 VOLTAGE LEVEL 0 0 1/64 0 0 4 times 0 1 1/48 0 1 3 times 1 0 1/32 1 0 2 times 1 1 1/16 1 1 Prohibition Do not set BS1 = "1", BS0 = "0". 4.15. RE Register Set D 7 D6 D5 D 4 D 3 D2 D1 D 0 CSB RS WRB
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tfcf_ser.pdf
Receiving frequency range AM 530KHz to 1710KHz FM 87.5MHz to 108MHz AM Input impedance ʔ FM 75Њ AM ˏSN20dB 51dBЖ Receive sensitivity FM ˏSN50dB 15dBЖ Stereo separation FM 45dB AM ʵ7.5dBs Output level FM 2.5dBs AM 1.2% Total harmonic distortion FM 0.25% Power consumption 9V / 500mW Volume 60ml ˙ Dimensions Unit:mm ) / T E 20max. 5 A I . M P 12.5 60max. 0.85 ( F T ( x 5 . m . 1 GND . 3 4 2 5 . AM ANT . 1 8 ( 5.3 Terminal Terminal Name (9.9) (9.4) 5 No. . 1 GND ( 2 FM DET 3 VSM 4 Rch OUT 1 ! 5 Vcc 7 2 6 Lch OUT 1 7 GND 2 0
in „FM/AM Combination Tuner“ · Mikrocontroller und Digitale Elektronik ·
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ALW.pdf
5 4 3 2 1 D D B+ OK PU904 PJ302 0 V 2 2 1 1 1.5A 1 20, 5 V +3V_VIN 7 EN2 PG 2 +3V_PWRGD 1 5 1 6 5 _ X JUMP_43X79 4 _ 4 2 3 0 8 0 6, 95+3VBS 1 PC1248 +3VALW 2 1 4 2 1 0 P _ IN N BS 4A @ P U P _ 2 1 9 _ 10 V +3VLX 0.1U_0603_25V7-M 1 PL303 2 +3VALW_P 2 PJ303
in „Laptop defekt: Kommunikation EC - PCH - CPU“ · Mikrocontroller und Digitale Elektronik ·
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DA_Martin_Gohlke.pdf
f˜r den Abstand ¢ = 2d der Strahlen und den Winkel µ = 2fi, in dem sie auseinanderlaufen. ¢ 1 = (4:20 § 0:02)mm µf1= (0 § 10)„rad ¢ 2 = (4:23 § 0:02)mm µf2= (20 § 10)„rad: Die Fehlerwerte wurden aus den Unsicherheiten der Positionsauslese auf dem Chip abgesch˜tzt. 4.3.5 Der Strahlengang im Interferometer
in „LLR Experiment“ · Offtopic ·
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PH128128C-024-LY1Q.pdf
Voltage VOUT VOUT = VCC - VEE -0.3 19.8 V Input Voltage VIN - -0.3 VDD V Operating Temperature TOP - -20 70 °C Storage Temperature TST - -30 80 °C Storage Humidity H D Ta < 40 °C 20 90 %RH 1.4 DC Electrical Characteristics VDD = 2.8V , GND = 0V , Ta = 25°C Item Symbol Condition Min. Typ. Max. Unit Logic
in „[V]Color LCD CSTN 2.4" 128xR'G'B'x128 Typ PH128128C-024-L“ · Markt ·
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Datei
ssd1803a_spi.c
DDRAM-Basisadressen der 4 Zeilen (5-Dot-Font, Standard) */ static const uint8_t row_offset[4] = {0x00, 0x20, 0x40, 0x60}; static const uint8_t row_offset_invers[4] = {0x0A, 0x2A, 0x4A, 0x6A}; unsigned int ui_x,ui_y,ui_cursormode,ui_oldcursormode,DHMode,LCD_180GRAD,LCD_ROWS; // ---------- SPI-Basis --------
in „Initialisierung EADOGS 204-N via SPI“ · Mikrocontroller und Digitale Elektronik ·
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Encoder_E9.pdf
Characteristics at 22ºC Number of lines available 100, 144, 200, 500 typical mA 10 Supply current max mA 20 stand-by µA 50 Output signal CMOS compatible Electrical phase shift between A and B degree 90 ± 20 Duty cycle % 50 ± 10 Max. count frequency kHz 200 Operating temperature range at 90% humidity ºC -40
in „mini Multimeter für PC“ · Mikrocontroller und Digitale Elektronik ·
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F10392.pdf
– 2006/05 11 8. Radiant pattern for White 1.0 0.8 y s0.6 e n I i0.4 l e R0.2 0.0 -100 -80 -60 -40 -20 0 20 40 60 80 100 Directional angle (deg.) 9. Radiant pattern for Red 1.0 0.8 y s0.6 e n I i0.4 a e R 0.2 0.0 -100 -80 -60 -40 -20 0 20 40 60 80 100 Directional angle (deg.) SEOUL SEMICONDUCTOR CO.,
in „LED dynamic resistance“ · Mikrocontroller und Digitale Elektronik ·
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PDF
F10392.pdf
– 2006/05 11 8. Radiant pattern for White 1.0 0.8 y s0.6 e n I i0.4 l e R0.2 0.0 -100 -80 -60 -40 -20 0 20 40 60 80 100 Directional angle (deg.) 9. Radiant pattern for Red 1.0 0.8 y s0.6 e n I i0.4 a e R 0.2 0.0 -100 -80 -60 -40 -20 0 20 40 60 80 100 Directional angle (deg.) SEOUL SEMICONDUCTOR CO.,
in „[V] 6 X Power RGB LED 3W Seoul Semiconductor F10392 Star“ · Markt ·
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st7036.pdf
5.5V Rating Rating Item Signal Symbol Condition Units Min. Max. Min. Max. Address hold time RS AH6 20 - 20 - — ns Address setup time RS tAW6 20 - 20 - System cycle time RS tCYC6 — 400 - 280 - ns Data setup time D0 to D7 DS6 100 - 80 - — ns Data hold time D0 to D7 DH6 40 - 20 - Access time D0 to D7 tACC6
in „DOG-M-Display/ST7036 Initialisierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LCD-Controller_ST7036.pdf
5.5V Rating Rating Item Signal Symbol Condition Units Min. Max. Min. Max. Address hold time RS AH6 20 - 20 - — ns Address setup time RS tAW6 20 - 20 - System cycle time RS tCYC6 — 400 - 280 - ns Data setup time D0 to D7 DS6 100 - 80 - — ns Data hold time D0 to D7 DH6 40 - 20 - Access time D0 to D7 tACC6
in „DOG-M mit ATmega8 in Assembler ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
st7036.pdf
5.5V Rating Rating Item Signal Symbol Condition Units Min. Max. Min. Max. Address hold time RS AH6 20 - 20 - — ns Address setup time RS tAW6 20 - 20 - System cycle time RS tCYC6 — 400 - 280 - ns Data setup time D0 to D7 DS6 100 - 80 - — ns Data hold time D0 to D7 DH6 40 - 20 - Access time D0 to D7 tACC6
in „Initialisierungsfolge fuer EA DOGM 163 SPI 3.3V“ · Mikrocontroller und Digitale Elektronik ·
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PDF
st7036.pdf
5.5V Rating Rating Item Signal Symbol Condition Units Min. Max. Min. Max. Address hold time RS AH6 20 - 20 - — ns Address setup time RS tAW6 20 - 20 - System cycle time RS tCYC6 — 400 - 280 - ns Data setup time D0 to D7 DS6 100 - 80 - — ns Data hold time D0 to D7 DH6 40 - 20 - Access time D0 to D7 tACC6
in „DOG-M Display über SPI“ · Mikrocontroller und Digitale Elektronik ·