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Datei
myfirst168.s
GPIOB_BASE + 0x00 @<<<<< .equ GPIOB_AFRL , GPIOB_BASE + 0x20 @<<<<< .equ GPIOB_AFRH , GPIOB_BASE + 0x24 .equ GPIOA_BASE , 0x40020000 .equ GPIOA_MODER , GPIOA_BASE + 0x00 .equ GPIOA_OTYPER , GPIOA_BASE + 0x04 .
in „STM32CubeIDE - kann man dem gdb server einen Schalter mitgeben?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BC856BDW1T1-D.PDF
Collector−Emitter Voltage VCEO V BC856, SBC856 −65 3x MG BC857, SBC857 −45 G BC858 −30 Collector−Base Voltage VCBO V 1 BC856, SBC856 −80 BC857, SBC857 −50 3x = Specific Device Code BC858 −30 x = B, F, G, or L Emitter−Base Voltage VEBO −5.0 V (See Ordering Information) Collector Current −Continuous IC
in „SunLike LEDs mit TRI-R-Technologie ( Seoul Semiconductors )“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
9808035.pdf
range from a per- sweep for maximum span. As the span is division maximum of 7 MHz to about Time Base reduced with the SPAN control, the sweep 50 kHz. The center frequency can be ad- Figure 2 shows the analyzer time base, expands on (or zeroes in on) whatever ap- justed over the entire 70 MHz range.
in „Oszilloskop als Spectrum analyzer“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PartNumberBreakdown_ds.pdf
Numbers for Proprietary Parts Most Maxim parts use our own part numbering system which consists of a base part number followed by a suffix, plus optional additional designators. Example: (A) Base Part Number The base part number identifies the product type, independent of package, temperature, and other
in „SMD Bauteil identifizieren "4313"“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2SC3858_3.pdf
Complement to type 2SA1494 APPLICATIONS ·Audio and general purpose PINNING(see Fig.2) PIN DESCRIPTION 1 Base 2 Collector;connected to mounting base 3 Emitter Fig.1 simplified outline (MT-200) and symbol Absolute maximum ratings (Ta=25°C) SYMBOL PARAMETER CONDITIONS VALUE UNIT VCBO Collector-base voltage Open emitter 200 V VCEO Collector-emitter voltage Open base 200 V VEBO Emitter-base voltage Open collector 6 V IC Collector current 17 A IB Base current 5 A PC Collector power dissipatioTC=25 200 W Tj Junction temperature 150 Tstg Storage temperature -55~150
in „Aus einem Verstärker mehr Leistung rausholen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
1MA98_4E_dB_or_not_dB.pdf
generators extends typically from -140 dBm to +20 dBm or 0.01 fW (femto Watt) to 0.1 W. Mobile radio base stations transmit at +43 dBm or 20 W. Mobile phones transmit at +10 dBm to +33 dBm or 10 mW to 2 W. Broadcast transmitters operate at +70 dBm to +90 dBm or 10 kW to 1 MW. 5 What’s the difference between
in „Wie stehen dBm und Volt zueinander?“ · HF, Funk und Felder ·
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PDF
LC72130.pdf
f 1 400 1500 mVrms IN IN VIN-1 FMIN f = 10 to 130 MHz 40 1500 mVrms VIN-2 FMIN f = 130 to 160 MHz 70 1500 mVrms Input amplitude V IN AMIN IN3 , SNS = 1 40 1500 mVrms V 4 AMIN f 4 , SNS = 0 40 1500 mVrms IN IN V IN IFIN IN5, IFS = 1 40 1500 mVrms V IN IFIN IN6, IFS = 0 70 1500 mVrms Oscillation-guaranteed
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Datei
main.c
include "lcd.h" #include "board.h" #include "bits.h" #include "gps.h" volatile AT91PS_PIO mPIOB = AT91C_BASE_PIOB; volatile AT91PS_PMC mPMC = AT91C_BASE_PMC; AT91PS_PIO v_pPioA = AT91C_BASE_PIOA; extern void LowLevelInit(void); void config_switch(void); void blink_if_char_(); char *gps_char, ch3; volatile
in „Data aus USART vom SAM7-EX256 lesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BC107.pdf
18 INTERNAL SCHEMATIC DIAGRAM ABSOLUTE MAXIMUM RATINGS Symbol Parameter Value Unit VCBO Collector-Base Voltage EI = 0) 50 V VCEO Collector-Emitter VoltageB(I = 0) 45 V VEBO Emitter-Base Voltage CI = 0) 6 V I Collector Current 100 mA C Ptot Total Dissipation aamb ≤ 25 C 0.3 W at T ≤ 25 C 0.75 W C o T
in „Berechnung Transistorschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BC107.pdf
18 INTERNAL SCHEMATIC DIAGRAM ABSOLUTE MAXIMUM RATINGS Symbol Parameter Value Unit VCBO Collector-Base Voltage EI = 0) 50 V VCEO Collector-Emitter VoltageB(I = 0) 45 V VEBO Emitter-Base Voltage CI = 0) 6 V I Collector Current 100 mA C Ptot Total Dissipation aamb ≤ 25 C 0.3 W at T ≤ 25 C 0.75 W C o T
in „Transistor ; Definition von r(BE)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LAN9354_Fail_Report_2022-03-17_14-03-19.pdf
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 1 100 Base-TX, UTP AOI Template 9.453000 k -945E+03 No Mask Failures % 0 1 100 Base-TX, AOI +Vout Rise Time 4.254 ns 37.3 % 3.000 ns < VALUE < 5.000 ns 0 1 100 Base-TX, AOI +Vout Fall Time 4.144 ns 42.8 % 3.000
in „Ethernet Compliance Test failLAN9354“ · Mikrocontroller und Digitale Elektronik ·
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PDF
The_International_System_of_Units_sp330.pdf
and that has a radiant intensity in that direction of 1/683 watt per steradian. 2.1.2 Symbols for base units The base units of the International System are listed in Table l which relates the base quantity to the unit name and unit symbol [10th CGPM (1954, Resolution 6; CR, 80); 11th CGPM (1960, Resolution
in „Stromangabe in der Einheit At?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
WW23N3SWT4-W.pdf
should be taken after due consideration when using LEDs. (1) Lead Forming a. At least 3mm from the base of the epoxy bulb should be keep when forming leads. b. Do not use the base of the leadframe as a fulcrum during lead forming. Lead forming should be done before soldering. c. Because the stress to the base may damage the characteristics or it may break the LEDs, do not apply any bending stress to the base of the lead d. When mounting the LEDs onto a PCB, the holes on the circuit board should be exactly
in „LEDs: Konstantstrom-Multiplexing. Schaltung & Teile so ok?“ · Mikrocontroller und Digitale Elektronik ·
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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 mA 2 00
in „[S] RF-Transistor AT-64020 oder einen adäquaten Ersatz“ · Markt ·
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PDF
NTS4409N-D.pdf
NTS4409N, NVS4409N MOSFET – Single, N-Channel, Small Signal, ESD Protection, SC-70/SOT-323 25 V, 0.75 A http://onsemi.com Features V(BR)DSS R DS(on)yp IDMax • Advance Planar Technology for Fast Switching, Low R DS(on) 249 mW @ 4.5 V 25 V 0.75 A • Higher Efficiency Extending Battery
in „SMD Identifizieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SL560.pdf
■ Noise Figures less than 2dB (Rs 200 ohm) GROUND 1 8 INPUT 50 OHMS APPLICATIONS 2 7 INPUT COMMON BASE ■ Bandwidth 300MHz OUTPUT CURRENT SET SL OUTPUT 3 560 6 INPUT COMMON EMITTER ■ Supply Voltage 2-15V (Depending on Configuration) GAIN SET Vcc 4 5 ■ Low Power Consumption Top view DP8 APPLICATIONS ■
in „Vergleichstyp zu SL560C“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
include "lcd.h" #include "board.h" #include "bits.h" #include "gps.h" volatile AT91PS_PIO mPIOB = AT91C_BASE_PIOB; volatile AT91PS_PMC mPMC = AT91C_BASE_PMC; AT91PS_PIO v_pPioA = AT91C_BASE_PIOA; extern void LowLevelInit(void); void config_switch(void); void blink_if_char_(); char *gga_msg1, ch1; nmea_GGA_tp
in „Data aus USART vom SAM7-EX256 lesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
S9018.pdf
CO., LTD TO-92 Plastic-Encapsulate Transistors TO – 92 S9018 TRANSISTOR (NPN) 1.EMITTER FEATURES 2.BASE z High Current Gain Bandwidth Product 3.COLLECTOR MAXIMUM RATINGS (T a25℃ unless otherwise noted) Symbol Parameter Value Unit VCBO Collector-Base Voltage 25 V VCEO Collector-Emitter Voltage 18 V VEBO
in „Suche Infos zum Eigenbau eines Dip Meter“ · HF, Funk und Felder ·
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PDF
optokoppler-siemens-datasheet.pdf
• High CurrentTransfer Ratios Pin One ID SFH601-1, 40 to 80% 3 2 1 SFH601-2, 63 to 125% Anode 1 6 Base SFH601-3 ,100 to 200% .248 (6.30) SFH601-4, 160 to 320% .256 (6.50) Cathode 2 5 Collector • IsolationTestVoltage (1 Sec.), 5300VAC RMS • VCEsat 0.25 ( 0.4)V, IF=10 mA, IC=2.5 mA 4 NC 5 6 3 4 Emitter
in „welches relais fuer mega16?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Aluminum_Electrolytic_Capacitors_EPCOS.pdf
can-type capacitors produced by EPCOS have a thermal bridge between the capacitor winding and the base. As a large amount of heat is dissipated through the base of the case, the use of a heat sink connected to the capacitor base is the most efficient cooling method. In order to ensure an optimal heat
in „Wie lange halten sich verpackte Elkos?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
deh6400bt_2.pdf
microfono senza utilizzare verde e verde/nero. la clip del microfono. In questo caso, scollegare la base del microfono dalla clip. Per scollegare la base del microfono dalla clip, far scorrere la base del mi- crofono. 12 It Sezione Installazione del microfono 03 2 Installare la clip del microfono sul pianto
in „Autoradio an Netzteil, Verständnis von Dauerplus“ · PC Hard- und Software ·
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PDF
Beiers_Quarze1957.pdf
Durchm. Soclielari hr. x10 mlx 5. 15 52,s QBS 22 wtj Bieg![]gs- 6..-40 A) l l Ll(, +.14,2i Uornax--.'.70 V rvak. Glask. Q I schlvittger B) 1 i(l 31,5...33,0 (] m. ,\1k* c)* l; BiegtIti3s- 4...6 A) +10r) 5. 15 64.1 ll,2; Uartrax:...70 V dito Q1 QBS 23 B)+10 i11,5...33,6 (] sclrrvinger c)+ 5 l5 74-i.14,2; Uarnax:.-.70 V dito QBS 24 WF llitilrurgs- 2,5-..4 A) +100 3r,5...113,60 Qr ricll\vilr!,ct B)+10 c)+ 5 5...15 25 WF Bie.lurre:- r...2,5 A) +100 118+14,2; Uarlax:...70 V dito Ql QBS sallwillqer B)+10 31,5.-.33,6 0
in „NARVA Quarz Datenblatt“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Touch_LCD.txt
B11111111 'all pull-up-Resistors turned on Enable Urxc Enable Interrupts $include Init21_display3000.bas '############################################################################################ 'Main program, demo program Bluebild: V1 = 0 Orientation = Landscape Call Lcd_box(0 , 0 , 175 , 131 , Blue
in „nach Print Aufruf, Programm läuft in Zeitlupe!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
1_AMD_BKDG_Family__15h_Mod_00h-0Fh_BKDG.pdf
Range 0 D18F1x48 Range 1 D18F1x50 Range 2 D18F1x58 Range 3 D18F1x60 Range 4 D18F1x68 Range 5 D18F1x70 Range 6 D18F1x78 Range 7 Bits Description 31:16 DramBase[39:24]: DRAM base address register bits[39:24]. DramBase[47:24] = {D18F1x[178,170,168,160,158,150,148,140][DramBase[47:40]], D18F1x[78,70,68,60,58,50,48,40
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PDF
BC548.pdf
CHARACTERISTICS / V(BR)CEO Collector-Emitter Breakdown VoltagIC= 10 mA, B = 0 30 V B C V(BR)CBO Collector-Base Breakdown Voltage IC= 10 A, E = 0 30 V 5 V(BR)CES Collector-Base Breakdown Voltage IC= 10 A, E = 0 30 V 4 8 V(BR)EBO Emitter-Base Breakdown Voltage IE= 10 A, C = 0 5.0 V B I Collector Cutoff Current
in „BC548 im Grenzbereich ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PDTA143E-Series.pdf
SYMBOL AND PINNING PINNING TYPE NUMBER SIMPLIFIED OUTLINE AND SYMBOL PIN DESCRIPTION PDTA143ES 1 base 2 collector handbook, halfpage 2 R1 3 emitter 1 1 2 3 R2 3 MAM338 PDTA143EE 1 base PDTA143EEF 2 emitter handbook, half3age PDTA143EK R1 3 3 collector PDTA143ET 1 PDTA143EU R2 1 2 2 Top view MDB271 PDTA143EM
in „Transistor Freecom HDD Gehäuse“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BUV48AFI_STMicroelectronics.pdf
Collector-Emitter VoltageBE= 0) 850 1000 V VCEO Collector-Emitter VoltagB (I = 0) 400 450 V VEBO Emitter-Base Voltage CI = 0) 7 V IC Collector Current 15 A ICM Collector Peak Current 30 A CP Collector Peak Current non repetitipe (t <20 s) 55 A IB Base Current 4 A I Base Peak Current 20 A BM TO-3 TO-218 ISOWATT218
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PDF
lmt70_appnote.pdf
2015, Texas Instruments Incorporated Introduction www.ti.com The LMT70 temperature sensing circuitry is based on the transistor base emitter diode junction thermal properties. The diode voltage is then amplified and buffered as shown in Figure 1. The sensing element of the LMT70 consists of stacked BJT base emitter junctions that are biased by a current source. The output of the sensing element is buffered by a precision amplifier whose class AB push-pull output stage can easily
in „Temperatursensor 35-43°C Fieberthermometer“ · Mikrocontroller und Digitale Elektronik ·
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PDF
YAMAICHI_TS-Katalog-2017_01_2.pdf
1.80 x 19 = 34.20 IC70-2313**-G4 23 1.27 44.0 38.0 32.0 1.27 x 22 = 27.94 IC70-2418**-G4 24 2.00 63.0 57.0 51.0 2.00 x 23 = 46.00 IC70-3011**-G4 30 1.80 77.0 67.0 57.0 1.80 x 29 = 52.20 IC70-3015**-G4 30 1.27 57.0 49.0 41.0
in „TSOP-66 Sockel zum testen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2SA1494-ISC.pdf
Complement to type 2SC3858 APPLICATIONS ¡⁄Audio and general purpose PINNING(see Fig.2) PIN DESCRIPTION 1 Base 2 Collector;connected to mounting base Fig.1 simplified outline (MT-200) and symbol 3 Emitter Absolute maximum ratings (Ta=25) SYMBOL PARAMETER CONDITIONS VALUE UNIT 电 半 T O R V CBO Collector-base voltage Open emitter D U C -200 V O N V CEO Collector-emitter voltage OEen baseC -200 V G E S V EBO Emitter-HasA voltage Open collector -6 V I N C C Collector current -17 A B Base current -5 A P Collectorl power dissipationT =25¡æ 200 W C C j Junction temperature 150 ¡æ Tstg Storage
in „Aus einem Verstärker mehr Leistung rausholen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CD4528.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 „Unterschied CD4528 zu CD4538 ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
VAR-DT6CUSTOMBOARD_SCH_V1_1_Doc_V1_2.pdf
By> Date: Monday, June 15, 2015 Sheet 5 of 8 5 4 3 2 1 5 4 3 2 1 06. Peripherals, Exp. Connectors BASE_PER_3V3 UART3-RS232 BASE_PER_3V3 BASE_PER_3V3 BASE_PER_3V3 BASE_PER_3V3 U117 U114 MAX3232D 5 VDD RST 1 1 c1+ C178 C177 uSD CARD R134 R133 D R122 C164 4 C188 2 10K 1uF 100nF 10K D 10K MR V+ 1uF 2 3 100nF
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PDF
BU208A.pdf
VCES Collector-Emitter VoltageBE= 0) 1500 V VCEO Collector-Emitter VoltagB (I = 0) 700 V V Emitter-Base Voltage (I = 0) 10 V EBO C IC Collector Current 8 A ICM Collector Peak Currentp(t < 5 ms) 15 A BU208A BU508A BU508AFI TO - 3 TO - 218 ISOWATT218 P Total Dissipation at T = 25 C 150 125 50 W tot c Visol
in „Qualität heutiger Transistoren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IP113A_Datasheet.pdf
IP113A LF Preliminary Data Sheet 10 /100Base-Tx/Fx Media Converter Features General Description A 10/100BASE-TX/ 100BASE-FX converter Built in a 10/100BASE-TX transceiver IP113A LF can be a 10/100BASE-TX to Built in a PHY for 100BASE-FX 100BASE-FX
in „Umsetzer Ethernet Glasfaser“ · Mikrocontroller und Digitale Elektronik ·
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PDF
vitrohm_series_bws_-_201702.pdf
Tol. Pack-Code TCR Forming type R Value Special Alternative Energy Power Supply J = ±5% T = Tape - Base on 73- Inner Taping AA = Standard K = ±10% (ammo pack) spec. dimension HomeAppliances Industrial ZB- Z version Historical VTM PartNr.: BW234 – 0 10 T 150R FEATURES Type Tol. Pack-Code R Value ±10% =
in „Derating Kurve“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
vitrohm_series_bwf_-_201703.pdf
Tol. Pack-Code TCR Forming type R Value Special Alternative Energy Power Supply J = ±5% T = Tape - Base on 73- Inner Taping AA = Standard K = ±10% (ammo pack) spec. dimension HomeAppliances Industrial ZB- Z version Historical VTM PartNr.: BWF237 – 0 10 T 150R FEATURES Type Tol. Pack-Code R Value ±10%
in „Was für ein Bauteil ist das?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
EEPROM_Programmer.ino
1) + digitalRead(pin); } digitalWrite(OUTPUT_ENABLE, HIGH); return data; } void dump() { for (int base = 0; base <= 255; base += 16) { byte data[16]; for (int offset = 0; offset <= 15; offset += 1) { data[offset] = readData(base + offset); } char buf[80]; sprintf(buf, "%03x: %02x %02x %02x %02x %02x %02x %02x %02x %02x %02x %02x %02x %02x %02x %02x %02x", base, data[0], data[1], data[2], data[3], data[4], data[5], data[6], data[7], data[8], data[9], data[10], data[11], data[12], data[13], data[14], data[15]); Serial.println(buf); } } void setAddress(int address
in „Arduino EEPROM Programmer, kann zwar lesen, aber nicht schreiben“ · Mikrocontroller und Digitale Elektronik ·
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Datei
nm-ohne-f_mount.txt
0000016b B memp_memory_FRAG_PBUF_base 2000ca88 00000083 B memp_memory_TCPIP_MSG_API_base 2000cb0c 00000103 B memp_memory_PBUF_base 2000cc10 000000e3 B memp_memory_TCP_PCB_LISTEN_base 2000ccf4 000000a3 B memp_memory_REASSDATA_base 2000cd98 00000083 B memp_memory_UDP_PCB_base 2000ce1c 000000b3 B memp_memory_NETCONN_base 2000ced0 000002fb B memp_memory_TCP_PCB_base 2000d1cc 00000063 B memp_memory_SYS_TIMEOUT_base 2000d230 00000004 B netif_list 2000d234 00000004 B netif_default
in „stm32 FatFS stranges Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HMC8205BF10.pdf
Power amplifier stage for wirelessinfrastructure GG Testand measurement equipment NC VDD1 5 6 PACKAGE BASE 1 GND 0 1 Figure1. GENERALDESCRIPTION The HMC8205BF10 is a gallium nitride (GaN) broadband The HMC8205BF10 is ideal for pulsed or continuous wave power amplifier delivering 45.5 dBm (35 W) with 38%
in „HF Breitbandverstärker Positiv/Negativ Betriebsspannung“ · HF, Funk und Felder ·
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PDF
S8050_J3Y.pdf
SOT-23 MAXIMUM RATING @ Ta=25℃ unless otherwise specified Symbol Parameter Value Units V Collector-Base Voltage 40 V CBO VCEO Collector-Emitter Voltage 25 V VEBO Emitter-Base Voltage 5 V I Collector Current -Continuous 500 mA C PC Collector Dissipation 300 mW Tj, stg Junction and Storage Temperature -
in „ESP LED PWM Ansteuerung mit Transistor“ · Mikrocontroller und Digitale Elektronik ·
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Datei
system.h
5.5 #define SDRAM_CTRL_T_MRD 3 #define SDRAM_CTRL_T_RCD 20.0 #define SDRAM_CTRL_T_RFC 70.0 #define SDRAM_CTRL_T_RP 20.0 #define SDRAM_CTRL_T_WR 14.0 /* * System configuration * */ #define ALT_DEVICE_FAMILY "Cyclone IV E" #define ALT_ENHANCED_INTERRUPT_API_PRESENT #define ALT_IRQ_BASE NULL
in „Altera Cyclone IV - Registeradressen finden“ · FPGA, VHDL & Co. ·
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Datei
cDCF77.h
newtimedate.second == 59 ) { //*************************************** _synchronize = 0xFF; // TimeBase::sync_sec(); // reload timer0 //******************************************************************* cClock<Display,TimeBase>::_timedate.second = 0; cClock<Display,TimeBase>::_timedate.minute = _newtimedate.minute; cClock<Display,TimeBase>::_timedate.hour = _newtimedate.hour; cClock<Display,TimeBase>::_timedate.wday = _newtimedate.wday; cClock<Display,TimeBase>::_timedate.day = _newtimedate.day; cClock<Display,TimeBase>::_timedate.month
in „Frage zu Interrupts in C++“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AL5801.pdf
The R TH resistance of the NTC thermistor at room temperature is recommended as 10kΩ. The value of base resistor R base is set to be 470Ω. Q2’s base current is obtained as IB(Q2)= ( VRSET - VBE(Q2))/ R base- VBE(Q2)/ RTH = ( 0.62V - 0.56 )/ 470Ω - 0.56V/ 10kΩ = 72µA When V BE(Q2) is changed to V BET as
in „Suche Konstantstromquelle effizient, klein und günstig.“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
version_1p3_assembler.lst
#ASTKAH 4462: 122B E2 MOVX A,@R0 ;READ EXPONENT 4463: 122C C3 CLR C 4464: 122D 94 81 SUBB A,#81H ;BASE EXPONENT 4465: 122F FC MOV R4,A ;SAVE IT 4466: 1230 18 DEC R0 ;POINT AT SIGN 4467: 1231 E2 MOVX A,@R0 ;GET THE SIGN 4468: 1232 70 56 JNZ SQ_ERR ;ERROR IF NEGATIVE 4469: 1234 40 19 JC INC_ASTKA ;EXIT
in „Basic für 80C31“ · Mikrocontroller und Digitale Elektronik ·
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Datei
PinKlasse_klassisch_toggle.ino.elf.txt
constexpr Register8 regPinCtrl(const uint8_t pin) { using namespace Pins::Addr; return (Register8) (baseAddr[pin].port + baseAddr[pin].pinCtrl); } */ // Pin Bitmaske constexpr uint8_t getMask(const uint8_t pin) { using namespace Pins::Addr; return (baseAddr[pin].mask); } f6: e0 91 16 28 lds r30, 0x2816
in „Buchempfehlung C++ und MCUs“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datenblatt_transistor.pdf
VOLTAGE INTERNAL SCHEMATIC DIAGRAM ABSOLUTE MAXIMUM RATINGS Symbol Parameter Value Unit VCBO Collector-Base VoltageE(I = 0) 50 V VCEO Collector-Emitter VoltagB (I = 0) 45 V VEBO Emitter-Base VoltageC(I = 0) 5 V IC Collector Current 0.5 A ICM Collector Peak Current 1 A o P tot Total Dissipation aC T = 25 C
in „PWM und Transistor“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HFBR-14XX_Optolink.pdf
receiver pair up to provide Video Links Conductive Port Option a duplex solution optimized for 100 Base-SX. 100Base-SX is a Modems and Multiplexers Fast Ethernet Standard (100 Suitable for Tempest Systems Mbps) at 850 nm on multimode Industrial Control Links fiber. Complete evaluation kits are available
in „Debuggen bei EMV-Tests“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Orange Pi CM5 Modul und Base Board Werbebild
orange pi Compact Orange Pi CM5 4GB/8GB/16GB Start at 70 USD$ Rockchip orangepi CM5 V1.1 CM5 Base Board Start at 20 USD$ Powerful orangepixunlong Announcing the release of the new #OrangePi CM5 ! The CM5 baseboard is also being released simultaneously. Welcome to explore and purchase!! $70 with 4GB RAM $90 with 8GB RAM $119 with 16GB RAM $20 with CM5 Base Board http://www.orangepi.org/.../details/Orange-Pi-CM5.html 4d 35 likes 4 days ago
in „CubeMX- und Raspberry Pi OS-Updates, neuer OrangePi uvm“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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Datei
e3d_tools.inc
#local Cos=0; #local MyAxis=<0,0,0>; #else #local MyAxis=vnormalize(vcross((C-A),(B-A))); #local Base1=vnormalize(C-A); #local Base2=vnormalize(vcross(MyAxis,Base1)); #local VB=<0.5*vlength(C-A),0,0>; #local VA=vcross(VB,z); #local VD=.5*<vdot(B-A,Base1),vdot(B-A,Base2),0>; #local VC=vcross(VD,z); #local Beta=((VD-VB).y*VA.x-(VD-VB).x*VA.y)/(VC.x*VA.y-VC.y*VA.x); #local Center=A+VD.x*Base1+VD.y*Base2+Beta*(VC.x*Base1+VC.y*Base2); #local Radius=vlength(Center-A); #local Cos=1; #local V=vcross( MyAxis,Center-A ); #end #local B=C; #local Cur=Cur+1; #else #local C=vcross((B-A),V); // fbleikamp
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Datei
e3d_tools.inc
#local Cos=0; #local MyAxis=<0,0,0>; #else #local MyAxis=vnormalize(vcross((C-A),(B-A))); #local Base1=vnormalize(C-A); #local Base2=vnormalize(vcross(MyAxis,Base1)); #local VB=<0.5*vlength(C-A),0,0>; #local VA=vcross(VB,z); #local VD=.5*<vdot(B-A,Base1),vdot(B-A,Base2),0>; #local VC=vcross(VD,z); #local Beta=((VD-VB).y*VA.x-(VD-VB).x*VA.y)/(VC.x*VA.y-VC.y*VA.x); #local Center=A+VD.x*Base1+VD.y*Base2+Beta*(VC.x*Base1+VC.y*Base2); #local Radius=vlength(Center-A); #local Cos=1; #local V=vcross( MyAxis,Center-A ); #end #local B=C; #local Cur=Cur+1; #else #local C=vcross((B-A),V); // fbleikamp