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Datei
Servo.c
#include <avr/io.h> #include <avr/signal.h> #include <avr/interrupt.h> volatile unsigned int TimeBase; volatile unsigned int Servo; SIGNAL( SIG_OVERFLOW0 ) /* wird alle 0.032 ms aufgerufen */ { TimeBase++; if( TimeBase == 625 ) /* fuer 20 ms muss also bis 625 gezaehlt werden */ TimeBase = 0; if( TimeBase
in „Servo am Mikrocontroller“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Servo.c
#include <avr/io.h> #include <avr/signal.h> #include <avr/interrupt.h> volatile unsigned int TimeBase; volatile unsigned int Servo; SIGNAL( SIG_OVERFLOW0 ) /* wird alle 0.032 ms aufgerufen */ { TimeBase++; if( TimeBase == 625 ) /* fuer 20 ms muss also bis 625 gezaehlt werden */ TimeBase = 0; if( TimeBase
in „Servo am Mikrocontroller“ · Mikrocontroller und Digitale Elektronik ·
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Datei
t6963c.txt
******************* /* ----- Definitions concerning LCD internal memory ------ */ #define glcd1_G_BASE 0x0200 // base address of graphics memory #define glcd1_T_BASE 0x0000 // base address of text memory #define glcd1_BYTES_PER_ROW 30 // how many bytes per row on screen #define glcd1_wr_high() glcd1_
in „Halbkreisformel verstehe ich nicht!“ · Mikrocontroller und Digitale Elektronik ·
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Datei
t6963c.h
******************* /* ----- Definitions concerning LCD internal memory ------ */ #define glcd1_G_BASE 0x0200 // base address of graphics memory #define glcd1_T_BASE 0x0000 // base address of text memory #define glcd1_BYTES_PER_ROW 30 // how many bytes per row on screen #define glcd1_wr_high() glcd1_
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PDF
2SD1804.pdf
ABSOLUTE MAXIMUM RATING (TA=25°C, unless otherwise specified) PARAMETER SYMBOL RATINGS UNIT Collector-Base Voltage V 60 V CBO Collector-Emitter Voltage V CEO 50 V Emitter-Base Voltage V EBO 6 V Collector Current C 8 A Collector Current(PULSE) IC(PULSE) 12 A TO-220 2 TA=25°C W Collector Dissipation TO-251
in „Green-Cap/Super-Cap 2.7V 500F - fake?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
061219_SPI.txt
---------------------------- void change_speed ( void ) {//* Begin if ( (AT91F_PIO_GetInput(AT91D_BASE_PIO_SW) & AT91B_SW1) == 0 ) { if ( LedSpeed > SPEED ) LedSpeed -=SPEED ; } if ( (AT91F_PIO_GetInput(AT91D_BASE_PIO_SW) & AT91B_SW3) == 0 ) { if ( LedSpeed < AT91B_MAIN_OSC ) LedSpeed +=SPEED ; } }//
in „AT91SAM7X schwächelt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
block-cordic.asm
| MV .L1 x0'',x0 || MV .L2 x1',x1 || SMPY32 .M2 x7,K,x7'' ; |188| || [ blocks] LDDW .D2T2 *+xyPtrB(40),y5:x5 ; |50| SMPY32 .M1X x0,K,x0' ; |181| || STW .D2T2 x5',*+maPtrB(40) ; |209| || SMPY32 .M2 x1,K,x1 ; |182| MV .L1 x2$2,x2$3 || STW .D2T2 phase5,*+maPtrB(44) ; |200| [ blocks] LDDW .D1T1 *xyPtr,y0
in „TMS320 - welche Bedeutung hat der DSP heute noch“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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Datei
sysinit.c
10.000 TimerBaseInitStructure.TIM_ClockDivision = TIM_CKD_DIV1; TimerBaseInitStructure.TIM_RepetitionCounter = 1; TIM_TimeBaseInit(TIM2, &TimerBaseInitStructure); // Timer 2 einstellen /* Interrupt Handler anbinden
in „Timer Interrupt STM32F103“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32F4-BASE.pdf
D D e L r L L L o s e P U s U GND GND GND GND GND GND GND B B C C D D 1 2 3 4 5 6 29.02.2012 17:56:40 C:\Users\SuperK\13-Eagle\1-Projekte\STM32F407Vx_Baseboard\STM32F4-BASE.sch (Sheet: 3/5) 1 2 3 4 5 6 A A B B C C D D 1 2 3 4 5 6 29.02.2012 17:56:40 C:\Users\SuperK\13-Eagle\1-Projekte\STM32F407Vx_Baseboard
in „STM32F407 (100pin) Basisboard - Review bitte“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN11158_Understanding_MOSFET_data_sheet_parameters__NXP.pdf
temperature range of the device. D - the maximum continuous current the device can carry with the mounting base held continuously at 25C with the device fully on. In the example provided in Table 1, ID requires a V of 10 V. GS Ptot- the maximum continuous power the device can dissipate with the mounting base
in „Flyback-Wandler Störungen auf Versorgung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
bd139.pdf
BD140 respectively. ABSOLUTE MAXIMUM RATINGS Symbol Parameter Value Unit BD135 BD139 VCBO Collector-Base Voltage EI = 0) 45 80 V VCEO Collector-Emitter VoltageB(I = 0) 45 80 V VEBO Emitter-Base Voltage CI = 0) 5 V I Collector Current 1.5 A C ICM Collector Peak Current 3 A IB Base Current 0.5 A P tot Total
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PDF
bd138.pdf
and BD139. ABSOLUTE MAXIMUM RATINGS Symbol Parameter Value Unit BD136 BD138 BD140 VCBO Collector-Base VoltageE(I = 0) -45 -60 -80 V VCEO Collector-Emitter VoltagB (I = 0) -45 -60 -80 V VEBO Emitter-Base Voltage CI = 0) -5 V I Collector Current -1.5 A C ICM Collector Peak Current -3 A IB Base Current
in „Kühlkörperberechnung - werde aus Datenblatt nicht schlau“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Touch.c
; //ÑÓʱȥ¶¶¶¯ Pen_Point.Key_Sta=Key_Down;//°ŽŒü°ŽÏ } } #ifdef ADJ_SAVE_ENABLE #define SAVE_ADDR_BASE 40 /***************************************************************************** ** º¯ÊýÃû³Æ: Save_Adjdata ** ¹ŠÄÜÃèÊö: ±£ŽæÐ£×Œ²ÎÊýµœEEPROAMÖÐµÄ µØÖ·40 ŽË²¿·ÖÉæŒ°µœÊ¹ÓÃÍⲿEEPROM,Èç¹ûûÓÐÍⲿEEPROM
in „STM32 Interruptproblem - Interrupt geht, aber Main nicht -“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HN_PDTC114E_SER.pdf
Absolute Maximum Rating System (IEC 60134). Symbol Parameter Conditions Min Max Unit VCBO collector-base voltage open emitter - 50 V V collector-emitter voltage open base - 50 V CEO VEBO emitter-base voltage open collector - 10 V VI input voltage positive - +40 V negative - 10 V O output current - 100
in „AEG Lavatherm IH67680IH schaltet sporadisch ab“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
252039.pdf
Rev. 1.0 FUJITSU LIMITED PRELIMINARY and CONFIDENTIAL L2M (L2 layer Mode) Register address DisplayBaseAddress + 40 H Bit number 31 30 29 28 27 − − 24 23 22 21 20 19 18 17 16 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 0 Bit field nameL2CL2FLP Reserved L2W Reserved L2H R/W RW RW R0 RW R0 RW Initial value 0 00
in „LCD Display / Controller eines Schweißgerätes prüfen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OK.pdf
Circuit Schematics Figure 2. Dual−channel Circuit Schematics (HCPL0500, HCPL0501 (HCPL0531, HCPL0534) *Base Not Connected for HCPL0453) ABSOLUTE MAXIMUM RATINGS (TA= 25°C unless otherwise specified) Symbol Parameter Value Units TSTG Storage Temperature −40 to +125 °C TOPR Operating Temperature −40 to +85
in „Defekte Analoge Strom-Ausgangskarte 0/4-20 mA Bauteilsuche“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IL74.pdf
r 15 25°C P t 85°C d e 10 i NIB-Ta=-20°C l a .1 C 5 r NIb,Ta=25°C - 0 N NIb,Ta=50°C c I 0 10 20 30 40 50 60 NIb,Ta=70°C IF - LED Current - mA .01 .1 1 10 100 If LED Current mA Figure 7. Collector-emitter leakage current versus Figure 11. Normalized non-saturated HFE versus temperature g p base current
in „Hilfe für Schaltung gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IL74_ILD74_ILQ74_SIE.pdf
r 15 25°C P t 85°C d e 10 i NIB-Ta=-20°C l a .1 C 5 r NIb,Ta=25°C - 0 N NIb,Ta=50°C c I 0 10 20 30 40 50 60 NIb,Ta=70°C IF - LED Current - mA .01 .1 1 10 100 If LED Current mA Figure 7. Collector-emitter leakage current versus Figure 11. Normalized non-saturated HFE versus temperature g p base current
in „Eingänge über Optokoppler abfragen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
061221_SPI.txt
-> /SYNC low { SW_abfrage = 1; lock=0; AT91F_PIO_ClearOutput( AT91C_BASE_PIOA, AT91C_PIO_PA11 ) ; // SYNC low wait(); AT91F_PIO_SetOutput( AT91C_BASE_PIOA, AT91C_PIO_PA11 ); // SYNC high // init_SPI(); } DRDY = (*(volatile unsigned int*)0xFFFFF43C); // laut Beschreibung:
in „AT91SAM7X schwächelt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Data_Schottky___HF_Dioden.pdf
55dBm with bias 20µA , RD 14 Ω HSMS - 8202 3,10 3,00 2,90 general purpose detector 2 diodes in series BAS 40 - 04 0,25 0,22 0,20 up to 500MHz , limiter for 2 common cathode diodes 4 40 0.31 RX protection up to BAS 40 - 05 0,25 0,22 0,20 400 MHz 2 diodes not connected BAS 40 - 07 0,30 0,27 0,25 detector and protection on 2 diodes in series BAS 70 - 04 0,40 0,35 0,30 intrumentation and 1.5 70 0.35 receivers up to 2GHz, 2 common anode diodes BAS 70 - 06 0,40 0,35 0,30 SMD version of the famous 5082-2800 2 diodes not connected BAS 70 - 07 0,40
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PDF
MJ2500-3000.pdf
AMPERE DARLINGTON ÎÎÎÎÎCollector–Emitter Voltage V 60 ÎÎ80 Vdc CEO POWER TRANSISTORS ÎÎÎÎÎCollector–Base Voltage V 60 ÎÎ80 Vdc COMPLEMENTARY CB ÎÎÎÎÎEmitter–Base Voltage V 5.0 ÎÎÎ Vdc SILICON EB 60–80 VOLTS ÎÎÎÎÎCollector Current ÎÎ I 10 Adc C 150 WATTS ÎÎÎÎÎBase CurrentÎÎÎÎÎ ÎÎ I 0.2 Adc B ÎÎÎÎÎTotal
in „Netzteilschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Wie_archiviert_ihr_Websites__-_Mikrocontroller.net.html
;vertical-align:top;background-image:/*savepage-url=/images/bg.png*/url(data:image/png;resource=4;base64,);background-color:#F4F4F4;background-repeat:repeat;background-position:0 -40px;border-bottom:1px solid #CACACA}.sidebar .box{width:auto;padding:5px;padding-top:0px;margin:0;margin-top:3px;margin-bottom
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PDF
LAN9354_Fail_Report_2022-03-17_14-03-19.pdf
Warning < 2 % Critical < 0 % Pass # # Test Name Actual Margin Pass Limits Failed Trials Value 100 Base-TX, UTP +Vout Differential Output 1 1 Voltage 909.7 mV -40.3 % 950.0 mV < VALUE < 1.0500 V 0 1 100 Base-TX, UTP -Vout Differential Output -979.8 mV 29.8 % 950.0 mV < |VALUE| < 1.0500 Voltage V 1 1 100 Base-TX, UTP Signal Amplitude Symmetry -928 m -130.0 % 980 m < |VALUE| < 1.020 0 1 100 Base-TX, +Vout Overshoot 1.5 % 70.0 % VALUE < 5.0 % 0 1 100 Base-TX, -Vout Overshoot 900 m% 82.0 % VALUE < 5.0 % 1 1
in „Ethernet Compliance Test failLAN9354“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LAN9354_Pass_Report_2022-03-17_16-16-09.pdf
, UTP Signal Amplitude Symmetry -1.004 40.0 % 980 m < |VALUE| < 1.020 0 1 100 Base-TX, +Vout Overshoot 1.7 % 66.0 % VALUE < 5.0 % 0 1 100 Base-TX, -Vout Overshoot 1.6 % 68.0 % VALUE < 5.0 % 0 1 100 Base-TX, UTP AOI Template 0.000 100.0 % No Mask Failures 0 1 100 Base-TX, AOI +Vout Rise Time 4.060 ns 47.0 % 3.000 ns < VALUE < 5.000 ns 0 1 100 Base-TX, AOI +Vout Fall Time 4.115 ns 44.3 % 3.000 ns < VALUE < 5.000 ns 0 1 100 Base-TX, AOI +Vout Rise/Fall Symmetry 96.30
in „Ethernet Compliance Test failLAN9354“ · Mikrocontroller und Digitale Elektronik ·
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PDF
802.3-2008_section2.pdf
802.3: 22.2.4.3.7 MASTER-SLAVE control register (Register 9) Register 9 provides bit values by 100BASE-T2 (as specified in 32.5) and 1000BASE-T (as specified in 40.5). 22.2.4.3.8 MASTER-SLAVE status register (Register 10) Register 10 provides bit values by 100BASE-T2 (as specified in 32.5) and 1000BASE-T
in „Kommunikation uC mit PHY“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
w5500.h
(_W5500_IO_BASE_ + (0x0031 << 8) + (WIZCHIP_CREG_BLOCK << 3)) // Reserved (_W5500_IO_BASE_ + (0x0032 << 8) + (WIZCHIP_CREG_BLOCK << 3)) // Reserved (_W5500_IO_BASE_ + (0x0033 << 8) + (WIZCHIP_CREG_BLOCK << 3)) // Reserved (_W5500_IO_BASE_ + (0x0034 << 8) + (WIZCHIP_CREG_BLOCK << 3)) // Reserved (_W5500_IO_BASE_ + (0x0035 << 8) + (WIZCHIP_CREG_BLOCK << 3)) // Reserved (_W5500_IO_BASE_ + (0x0036 << 8) + (WIZCHIP_CREG_BLOCK << 3)) // Reserved
in „Wiznet W5500 Datenübertragung via Ethernet“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Motorola_tech_info.pdf
100 70 1.5 10 H11AV2 50 10 10 0.4 20 2 5*/4* 2 10 100 70 1.5 10 Table 2. Transistor Output with No Base Connection Pinout: 1–Anode, 2–Cathode, 3–N.C., 4–Emitter, 5–Collector, 6–Base (Style 3) MOC8106 50–150 10 10 0.4 5 0.5 3.2/4.7 2 10 100 70 1.5 10 MOC8107 100–300 10 10 0.4 5 0.5 3.2/4.7 2 10 100 70
in „Isolationsspannung zwischen Doppel-FETs in einem SO8-Gehäuse“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
NPN_SuperSOT_FMMT6xx_.pdf
ABSOLUTE MAXIMUM RATINGS. FMMT FMMT FMMT FMMT FMMT PARAMETER SYMBOL 617 618 619 624 625 UNIT Collector-Base Voltage V 15 20 50 125 150 V CBO Collector-Emitter Voltage VCEO 15 20 50 125 150 V Emitter-Base Voltage VEBO 5 5 5 5 5 V Peak Pulse Current** ICM 12 6 6 3 3 A Continuous Collector Current IC 3 2.5 2
in „Transistor für hohe Ströme“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
NCP1605-D.PDF
5. COLLECTOR, #3 6. BASE 6. NO CONNECTION 6. BASE, #2 6. COLLECTOR, #3 7. COLLECTOR 7. ANODE 7. EMITTER, #2 7. COLLECTOR, #4 8. COLLECTOR 8. CATHODE 8. COLLECTOR, #2 8. COLLECTOR, #4 9. BASE 9. CATHODE 9. COLLECTOR, #3 9. BASE, #4 10. EMITTER 10. ANODE 10. BASE, #3 10. EMITTER, #4 11. NO CONNECTION 11. NO CONNECTION 11. EMITTER, #3 11. BASE, #3 12. EMITTER 12. CATHODE 12. COLLECTOR, #3 12. EMITTER, #3 13. BASE 13. CATHODE 13. COLLECTOR, #4 13. BASE, #2 14.
in „Hilfe bei der Reparatur eines Schaltnetzteiles erbeten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
KTC2026.pdf
25ᴱ) M L 1.20 J V M 1.30 D D N 2.54 CHARACTERISTIC SYMBOL RATING UNIT O 4.50Ź0.20 P 6.80 Collector-Base Voltage V CBO 60 V Q 2.60Ź0.20 N N R 10Ɓ Collector-Emitter Voltage V CEO 60 V H T T S 25Ş V T 5Ş Emitter-Base Voltage EBO 7 V U 0.5 O V 2.60Ź0.15 Collector Current IC 3 A 1 2 3 Q 1. BASE Base Current
in „E-Magnet mit Transistor schalten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
2N3702.pdf
Amplifier TO−92 Type Package mAbsolute Maximum Ratings: (T = +25AC unless otherwise specified) Collector−Base Voltage, V CBO . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 40V Collector−Emitter Voltage, VCEO . . . . . . . . . . . . . . . . . . .
in „[V] ca. 250-280St 2N3702 (PNP TO92) und 128St. BC320 (PNP TO92)“ · Markt ·
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PDF
2N3702-NTE.pdf
Amplifier TO−92 Type Package mAbsolute Maximum Ratings: (T = +25AC unless otherwise specified) Collector−Base Voltage, V CBO . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 40V Collector−Emitter Voltage, VCEO . . . . . . . . . . . . . . . . . . .
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PDF
700144.pdf
audio equipment ,general amplifier,and analogue switching applications PINNING PIN DESCRIPTION 1 Base 2 Collector;connected to mounting base 3 Emitter Absolute maximum ratings(Ta=25 ¡æ) 导 体 SYMBOL 电 半 PARAMETER CONDITIONS VTLOE R UNIT 固 BD645 U C 80 BD647 O N D 100 VCBO Collector-base voltage OpenMemitIer
in „Informationen über den Transistor BD645AS von Philips“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Datenblatt_VPC3_CLF3_UM300.pdf
base address of Din_Buf 1 20H R_Din_Buf_Ptr2 Segment base address of Din_Buf 2 21H R_Din_Buf_Ptr3 Segment base address of Din_Buf 3 22H R_Len_DXBout_Buf Length of the 3 DXBout_Buf 23H R_DXBout_Buf_Ptr1 Segment base address of DXBout_Buf 1 24H R_Len Diag_Buf1 Length of Diag_Buf 1 25H R_Len Diag_Buf2 Length of Diag_Buf 2 26H R_Diag_Buf_Ptr1 Segment base address of Diag_Buf 1 27H R_Diag_Buf_Ptr2 Segment base address
in „Profibus an Mikrocontroller“ · Mikrocontroller und Digitale Elektronik ·
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Datei
W5500.h
(_W5500_IO_BASE_ + (0x0031 << 8) + (WIZCHIP_CREG_BLOCK << 3)) // Reserved (_W5500_IO_BASE_ + (0x0032 << 8) + (WIZCHIP_CREG_BLOCK << 3)) // Reserved (_W5500_IO_BASE_ + (0x0033 << 8) + (WIZCHIP_CREG_BLOCK << 3)) // Reserved (_W5500_IO_BASE_ + (0x0034 << 8) + (WIZCHIP_CREG_BLOCK << 3)) // Reserved (_W5500_IO_BASE_ + (0x0035 << 8) + (WIZCHIP_CREG_BLOCK << 3)) // Reserved (_W5500_IO_BASE_ + (0x0036 << 8) + (WIZCHIP_CREG_BLOCK << 3)) // Reserved
in „Mit ATmega328PB einen W5500 Ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ULN200xA_data.pdf
Green (RoHS CU NIPDAU Level-1-260C-UNLIM -20 to 70 ULN2003A & no Sb/Br) ULN2003AID ACTIVE SOIC D 16 40 Green (RoHS CU NIPDAU Level-1-260C-UNLIM -40 to 105 ULN2003AI & no Sb/Br) ULN2003AIDE4 ACTIVE SOIC D 16 40 Green (RoHS CU NIPDAU Level-1-260C-UNLIM -40 to 105 ULN2003AI & no Sb/Br) ULN2003AIDG4 ACTIVE SOIC D 16 40 Green (RoHS CU NIPDAU Level-1-260C-UNLIM -40 to 105 ULN2003AI & no Sb/Br) ULN2003AIDR ACTIVE SOIC D 16 2500 Green (RoHS CU NIPDAU | CU SN Level-1-260C-UNLIM -40 to 105 ULN2003AI & no Sb/Br) ULN2003AIDRE4
in „[V] Darlington Transistor Arrays, npn, Relaistreiber“ · Markt ·
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PDF
Slinky_VIII_Oct.2011.pdf
coils 3 Flat stock 3/16”x 1” x 4” Alum. Leg supports. 1 700+ ohms coil Appx. 2500 wraps of 38ga or 40ga copper magnet wire. I target 700 to 1200ohms, using 2500 wraps of 40ga. 1 1” pvc pipe x 1.75”long pvc Coil body, 200 psi, stock 1 Pvc ¼”ring to fit coil body Cut from 1” pvc coupler fitting 1 Pvc ¾
in „Nachbau TC1 Seismometer“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AT-64020.pdf
64020AbsoluteMaximumRatings Absolute ThermalResistance [2,4: Symbol Parameter Units Maximum [1] θjc40°C/W VEBO Emitter-BaseVoltage V 2 Notes: VCBO Collector-BaseVoltage V 40 1. Permanent damage may occur if any of VCEO Collector-EmitterVoltage V 2 0 these limits are exceeded. 2. Tcase = 25°C. IC CollectorCurrent
in „[S] RF-Transistor AT-64020 oder einen adäquaten Ersatz“ · Markt ·
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PDF
XPort_EDGE_PB_A4-2065555.pdf
, ARP, ICMP, Auto-IP, DNS • SNMP v1/v2 • IPv6 Ethernet Specifications • IEEE 802.3 MAC and PHY, 10BaseT and 100BaseT with Auto-MDIX • Auto Negotiation; Full duplex and half duplex support • Link Activity LED Indicators Serial Interface Specifications • 1x UART (Serial) Ports • CMOS (Asynchronous) 3.3V
in „[V] 1St. neu Netzwerkmodul Lantronix XPort-Edge RS232/TTL 3V“ · Markt ·
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PDF
XPort-EDGE_PB_MPB-00058_RevD_Letter.pdf
, ARP, ICMP, Auto-IP, DNS • SNMP v1/v2 • IPv6 Ethernet Specifications • IEEE 802.3 MAC and PHY, 10BaseT and 100BaseT with Auto-MDIX • Auto Negotiation; Full duplex and half duplex support • Link Activity LED Indicators Serial Interface Specifications • 1x UART (Serial) Ports • CMOS (Asynchronous) 3.3V
in „[V] 1Stück gebrauchtes XPORT-EDGE_Seriell- LAN Modul (13€)“ · Markt ·
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PDF
XPort-EDGE_PB_MPB-00058_RevD_Letter.pdf
, ARP, ICMP, Auto-IP, DNS • SNMP v1/v2 • IPv6 Ethernet Specifications • IEEE 802.3 MAC and PHY, 10BaseT and 100BaseT with Auto-MDIX • Auto Negotiation; Full duplex and half duplex support • Link Activity LED Indicators Serial Interface Specifications • 1x UART (Serial) Ports • CMOS (Asynchronous) 3.3V
in „[V] 1Stück gebrauchtes XPORT-EDGE_Seriell- LAN Modul (12€)“ · Markt ·
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PDF
ULTRASCHALL_SENSOR_MURATA_MA40S4R.pdf
45 50 30 35 40 45 50 Frequency (kHz) Frequency (kHz) Fig. 8 Sensitivity Fig. 9 Sound Pressure Frequency 40kHz Frequency 40kHz Distance 30cm InputVoltage 10Vrms(SineWave) Distance 30cm 0 0 MA40E7R MA40E7S 30 B 30 30
in „Ultraschallsensor Murata MA40S4R nieder- oder hochohmig“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
bm40.S
; SP += 1 ; pop __tmp_reg__ pop r29 ; pop r28 ; ret .size main, .-main .section .text._ZN3AVR11getBaseAddrINS_7Series05ClockEEEPT_v,"axG",@progbits,AVR::Series0::Clock* AVR::getBaseAddr<AVR::Series0::Clock>(),comdat .weak AVR::Series0::Clock* AVR::getBaseAddr<AVR::Series0::Clock>() .type AVR::Series0
in „AVR128, CCP und Optimierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
447323-da-01-de-Praezisionswiderstand_PBV.pdf
the resistance base plate warrants for a low temperature rise at nominal value from the soldering quality. The use of the precision loadinthisconfigurationandpermitstransientoverloading resistance material MANGANIN combined
in „Suche Shunt“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
version_1p3_assembler.lst
37 14 SA2: JNB HMODE,S13 ;HEX MODE? 3350: 0D29 12 12 02 CALL FCMP ;SEE IF TOS IS < 0FFFH 3351: 0D2C 40 0F JC S13 ;EXIT IF GREATER 3352: 0D2E 12 13 8F CALL AABS ;GET THE SIGN 3353: 0D31 70 07 JNZ OOPS ;WASTE IF NEGATIVE 3354: 0D33 D1 90 ACALL IFIXL 3355: 0D35 12 19 85 CALL FP_BASE11 ;PRINT HEXMODE 3356
in „Basic für 80C31“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BD137__CDIL-0000.pdf
-Emitter Voltage VCEO 45 60 80 V V 100 Collector -Emitter Voltage BE =1kW) CER 45 60 V Collector -Base Voltage VCBO 45 60 100 V V Emitter Base Voltage EBO 5.0 V Collector Current IC 1.5 A I Collector Peak Current CM 2.0 A Base Current IB 0.5 A Power Dissipation @ Ta=25ºC PD 1.25 W Derate above 25ºC 10
in „High Freq Power Amplifier“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
main.c
(unsigned short)) { *(unsigned short*)((unsigned int)&SDRAM_BASE_ADDR+i) = i; } for (i = 0; i < 0x10000; i+=sizeof(unsigned short)) { if (*(unsigned short*)((unsigned int)&SDRAM_BASE_ADDR+i) != i) { return(0); }*/ // 8 bits access /*for ( i = 0; i < 0x200; i++) { (*(volatile unsigned long *)(SDRAM_BASE_ADDR + i)) = i; // *(unsigned char*)((unsigned int)&SDRAM_BASE_ADDR+i) = i; } for (i = 0; i < 0x200; i++) { if ((*(volatile unsigned long *)(SDRAM_BASE_ADDR + i)) != i) { return(i); } }*/ /* for (i
in „NXP verschenkt ARM-Chips“ · Mikrocontroller und Digitale Elektronik ·
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PDF
nxp_bc875_879-1188767.pdf
Absolute Maximum Rating System (IEC 60134). SYMBOL PARAMETER CONDITIONS MIN. MAX. UNIT VCBO collector-base voltage open emitter BC875 − 60 V BC879 − 100 V V collector-emitter voltage V = 0 V CES BE BC875 − 45 V BC879 − 80 V VEBO emitter-base voltage open collector − 5 V C collector current (DC) − 1 A I peak collector current − 2 A CM B base current (DC) − 0.2 A Ptot total power dissipation Tamb≤ 25 °C; note 1 − 0.83 W Tstg storage temperature −65 +150 °C Tj junction temperature − 150 °C T ambient temperature −65 +150 °C amb Note 1. Transistor
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PDF
LM394.pdf
Most parameters are guaranteed over a current range of Y Emitter-base voltage matched to 50 mV 1 mA to 1 mA and 0V up to 40V collector-base voltage, Y Offset voltage drift less than 0.1 §V/ C ensuring superior performance in nearly all applications. Y Current gain (h
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Datei
main.c
PrescalerValue = (uint16_t) 36000 - 1; // Vorteiler berechnen (36Mhz/36000 = 1khz) TIM_TimeBase_InitStructure.TIM_Prescaler = PrescalerValue; // TIM_TimeBase_InitStructure.TIM_ClockDivision = TIM_CKD_DIV1; // nach Prescaler=1kHz TIM_TimeBase_InitStructure.TIM_CounterMode = TIM_CounterMode_Up; TIM_TimeBase_InitStructure.TIM_Period = 1000; // Eine Sekunde (=1000*1kHz=1s) TIM_TimeBaseInit(TIM2, &TIM_TimeBase_InitStructure); //Timer Vorteiler-Taktkonfiguration // TIM_PrescalerConfig(TIM2, PrescalerValue,
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