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PDF
AT90PWM2_2B_3_3B__2_.pdf
DATA (“0” means programmed). 4. Set OE to “0”, BS2 to “1”, and BS1 to “0”. The status of the Extended Fuse bits can now be read at DATA (“0” means programmed). 5. Set OE to “0”, BS2 to “0” and BS1 to “1”. The status of the Lock bits can now be read at DATA (“0” means programmed). 6. Set OE to “1”. 291 4317I–AVR–01/08 Figure 25-6. Mapping Between BS1, BS2 and the Fuse and Lock Bits During Read Fuse Low Byte 0 0 Extended Fuse Byte 1 DATA BS2 Lock Bits 0 1 BS1 Fuse High Byte 1 BS2 25.8.13 Reading the Signature Bytes The algorithm for reading the Signature
in „Interrupt bem Flankenwechsel beim AVR“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at90pwm3.pdf
DATA (“0” means programmed). 4. Set OE to “0”, BS2 to “1”, and BS1 to “0”. The status of the Extended Fuse bits can now be read at DATA (“0” means programmed). 5. Set OE to “0”, BS2 to “0” and BS1 to “1”. The status of the Lock bits can now be read at DATA (“0” means programmed). 6. Set OE to “1”. 291 4317I–AVR–01/08 Figure 25-6. Mapping Between BS1, BS2 and the Fuse and Lock Bits During Read Fuse Low Byte 0 0 Extended Fuse Byte 1 DATA BS2 Lock Bits 0 1 BS1 Fuse High Byte 1 BS2 25.8.13 Reading the Signature Bytes The algorithm for reading the Signature
in „Schrittmotorsteuerung mir 90atPWM3“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATmega8.pdf
Bits on page 222 for details on Command loading): 1. A: Load Command “0000 0100” 2. Set OE to “0”, BS2 to “0”, and BS1 to “0”. The status of the Fuse Low bits can now be read at DATA (“0” means programmed) 3. Set OE to “0”, BS2 to “1”, and BS1 to “1”. The status of the Fuse High bits can now be read at DATA (“0” means programmed) 4. Set OE to “0”, BS2 to “0”, and BS1 to “1”. The status of the Lock Bits can now be read at DATA (“0” means programmed) 5. Set OE to “1” Figure 108. Mapping Between BS1, BS2 and the Fuse- and Lock Bits During Read Fuse
in „Mikrocontroller und 15'' TFT LCD“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Schottky_crossreference.pdf
40CPQ080 DSSK30-01A 30CPQ100 DSSK20-0045A MBR2045CT DSSK20-0045B 20CTQ045 DSSK16-01A 16CTQ100 DSSK28-006BS 30CTQ060S Schottky Cross Reference List MICRO SEMI SENSITRON MICRO SEMI SENSITRON 1N5817 1N5817 FST15145 151CMQ045 1N5818 1N5818 FST153100 153CMQ100 1N5819 1N5819 FST15380 153CMQ080 BAT54 BAT54 FST16135
in „Ersatztyp für Schottky Diode 11dq06“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sihfr014.pdf
- 0.20 0.40 μC Forward turn-on time ton Intrinsic turn-on time is negligible (turn-on is dominated bS L andDL ) Notes a. Repetitive rating; pulse width limited by maximum junction temperature (see fig. 11) b. Pulse width ≤ 300 μs; duty cycle ≤ 2 % S21-0466-Rev. F, 17-May-2021 2 Document Number: 91263
in „Hilfe bei Bauteil identifikation“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Getting_Started_with_the_Micromite.pdf
(n), bh(n), bbc(n), bfc(n), bs(n) CheckBtnDown = 1 ENDIF END FUNCTION SUB WaitBtnUp(n) DO WHILE TOUCH(x) <> -1 : LOOP DrawBtn bx(n), by(n), bw(n), bh(n), bfc(n), bbc(n), bs(n) END SUB NumericKeyPad A more sophisticated usage of buttons
in „Suche Relais-Steuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Atmega128_doc2467.pdf
at DATA (“0” means programmed). 297 2467R–AVR–06/08 4. Set OE to “0”, BS2 to “1”, and BS1 to “0”. The status of the Extended Fuse bits can now be read at DATA (“0” means programmed). 5. Set OE to “0”, BS2 to “0”, and BS1 to “1”. The status of the Lock bits can now be read at DATA (“0” means programmed). 6. Set OE to “1”. Figure 140. Mapping Between BS1, BS2 and the Fuse- and Lock Bits During Read Fuse Low Byte 0 0 Extended Fuse byte 1 DATA BS2 Lock bits 0 1 Fuse high byte BS1 1 BS2 Reading the Signature The algorithm for reading the Signature bytes
in „ATMEGA128 Timer“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Lenovo_Z50-70_NM-A273_ACLUA_MB_Rev0.3_schematic_.pdf
SA_CAS DDRA_CAS# 14 DDRB_DQ33 AK29 SB_DQ16 SB_WE AM33 DDRB_WE# 15 DDRB_DQ3 AK57 SA_DQ18 AU35 DDRA_BS0# 14 DDRB_DQ34 AL28 SB_DQ17 SB_CAS DDRB_CAS# 15 DDRB_DQ4 AL58 SA_DQ20 SA_BA1 AV35 DDRA_BS1# 14 DDRB_DQ35 AK28 SB_DQ19 SB_BA0 AL35 DDRB_BS0# 15 DDRB_DQ6 AR57 SA_DQ21 SA_BA2 AY41 DDRA_BS2# 14 DDRB_DQ37
in „Laptop defekt: Kommunikation EC - PCH - CPU“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ca3080-a.pdf
CA3080, CA3080A E P RO DU CT E NT O BS OL ET D RE PLA CE M er at O M M EN DE up portC ent /tc N O R DatarSheetnical S .ntersilcom August 2004 FN475.6 c ontacto u S I or ww w 1-888-INTE R 2MHz, Operational Transconductance Features Amplifier
in „Dimensionierung eines OTA in CMOS-Technologie“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PBL3717_E.pdf
. Turn-off delay d 3 T a +25°C, dV /Ct ≥ 50 mV/ s. 0.9 1.5 s Thermal shutdown junction temperature 170 °C Logic Inputs Logic HIGH input voltage VIH 2 2.0 V Logic LOW input voltage VIL 2 0.8 V Logic HIGH input current I 2 V = 2.4 V 20 A IH I Logic LOW input current I 2 V = 0.4 V -0.4 mA IL I Reference
in „Schrittmotor Pollin und PBL3717“ · Mikrocontroller und Digitale Elektronik ·
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PDF
doc8209.pdf
DATA (“0” means programmed). 4. Set OE to “0”, BS2 to “1”, and BS1 to “0”. The status of the Extended Fuse bits can now be read at DATA (“0” means programmed). 5. Set OE to “0”, BS2 to “0” and BS1 to “1”. The status of the Lock bits can now be read at DATA (“0” means programmed). 6. Set OE to “1”. Figure 27-6. Mapping between BS1, BS2 and the Fuse and Lock bits during read. Fuse Low byte 0 0 Extended Fuse byte 1 DATA BS2 0 Lock bits 1 Fuse High byte BS1 1 BS2 27.9.13 Reading the Signature bytes The algorithm for reading the
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PDF
DS_OPA657_2008-12.pdf
300 5.80 Unity-Gain Stable CMOS i OPA655 ±5 400 290 6 Unity-Gain Stable FET-Input G OPA656 ±5 500 170 7 Unity-Gain Stable FET-Input e 96 n OPA627 ±15 16 55 4.5 Unity-Gain Stable FET-Input d THS4601 ±15 180 100 5.4 Unity-Gain Stable FET-Input p 86 s a T 76 0.1pF 200kΩ 66 100kHz 1MHz 10MHz 50MHz Frequency
in „Stabilität OPV OPA657“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
pduconv.c
5 enquiry [ENQ] */ NPC7, /* 6 acknowledge [ACK] */ NPC7, /* 7 bell [BEL] */ NPC7, /* 8 backspace [BS] */ NPC7, /* 9 horizontal tab [HT] */ 10, /* 10 line feed [LF] */ NPC7, /* 11 vertical tab [VT] */ 10+256, /* 12 form feed [FF] */ 13, /* 13 carriage return [CR] */ NPC7, /* 14 shift out [SO] */ NPC7
in „HD44780, Mega88@8MHz - komische Zeichen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Transistortester092k.pdf
26637, 1424mV NPN, B=28227, 1423mV BC516 PNP, B=795, 1433mV PNP, B=21410, 1430mV PNP, B=39664, 1413mV BS170 N-E-MOS,D,2217mV,0pF N-E-MOS,D,2628mV, 68pF N-E-MOS,D,2576mV, 66pF N-JFET N-JFET N-JFET J310 BRY55/200 Thyristor Thyristor Thyristor IRFU120N N-E-MOS,D,3314mV,1.07n N-E-MOS,D,4170mV, 913pF N-E-MOS
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Gear_Cutting_101.PDF
addition to the small amount of lead, it contains sulfur and phosphorus. It has a machinability rating of 170, where 1018 CRS is about 70 and lousy stuff (think Chinese provided steel) is below 50. The only steel better than C13L14 is another Leadloy containing tellurium, with a machinability of above 200.
in „Spindel, HF-Spindel Empfehlung?“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
Chip_222_-_alternative_555.pdf
. Shustov http://www.iaras.org/iaras/journals/ijce comparator (Fig.32) is made on a transistor VT1 BS170. The upper limit of the window switching is smoothly regulated by the R2 potentiometer. The width of the switching window is set by the potentiometer R4.The device operates at a frequency of 1 kHz
in „Chip 222 - alternative 555“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ATmega32.pdf
Bits on page 262 for details on Command loading): 1. A: Load Command “0000 0100”. 2. Set OE to “0”, BS2 to “0” and BS1 to “0”. The status of the Fuse Low bits can now be read at DATA (“0” means programmed). 3. Set OE to “0”, BS2 to “1” and BS1 to “1”. The status of the Fuse High bits can now be read at DATA (“0” means programmed). 4. Set OE to “0”, BS2 to “0” and BS1 to “1”. The status of the Lock bits can now be read at DATA (“0” means programmed). 5. Set OE to “1”. Figure 132. Mapping between BS1, BS2 and the Fuse- and Lock Bits during Read Fuse
in „STK500 als ISP“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATM16_doc2466.pdf
Bits on page 265 for details on Command loading): 1. A: Load Command “0000 0100”. 2. Set OE to “0”, BS2 to “0” and BS1 to “0”. The status of the Fuse Low bits can now be read at DATA (“0” means programmed). 3. Set OE to “0”, BS2 to “1” and BS1 to “1”. The status of the Fuse High bits can now be read at DATA (“0” means programmed). 4. Set OE to “0”, BS2 to “0” and BS1 to “1”. The status of the Lock bits can now be read at DATA (“0” means programmed). 5. Set OE to “1”. Figure 132. Mapping between BS1, BS2 and the Fuse- and Lock Bits during Read Fuse
in „ISP - Pinbelegung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Ateme16.pdf
Bits on page 266 for details on Command loading): 1. A: Load Command “0000 0100”. 2. Set OE to “0”, BS2 to “0” and BS1 to “0”. The status of the Fuse Low bits can now be read at DATA (“0” means programmed). 3. Set OE to “0”, BS2 to “1” and BS1 to “1”. The status of the Fuse High bits can now be read at DATA (“0” means programmed). 4. Set OE to “0”, BS2 to “0” and BS1 to “1”. The status of the Lock bits can now be read at DATA (“0” means programmed). 5. Set OE to “1”. 270 2466T–AVR–07/10 ATmega16(L) Figure 132. Mapping between BS1, BS2 and the Fuse
in „Atmega16 und spi bus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Ateme16.pdf
Bits on page 266 for details on Command loading): 1. A: Load Command “0000 0100”. 2. Set OE to “0”, BS2 to “0” and BS1 to “0”. The status of the Fuse Low bits can now be read at DATA (“0” means programmed). 3. Set OE to “0”, BS2 to “1” and BS1 to “1”. The status of the Fuse High bits can now be read at DATA (“0” means programmed). 4. Set OE to “0”, BS2 to “0” and BS1 to “1”. The status of the Lock bits can now be read at DATA (“0” means programmed). 5. Set OE to “1”. 270 2466T–AVR–07/10 ATmega16(L) Figure 132. Mapping between BS1, BS2 and the Fuse
in „Atmega16 und spi bus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Mega32.pdf
DATA (“0” means programmed). 4. Set OE to “0”, BS2 to “0” and BS1 to “1”. The status of the Lock bits can now be read at DATA (“0” means programmed). 5. Set OE to “1”. Figure 132. Mapping between BS1, BS2 and the Fuse- and Lock Bits during Read Fuse
in „AVR Timer/Counter Zeit berechnen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATMega_48_88_168.pdf
DATA (“0” means programmed). 4. Set OE to “0”, BS2 to “1”, and BS1 to “0”. The status of the Extended Fuse bits can now be read at DATA (“0” means programmed). 5. Set OE to “0”, BS2 to “0” and BS1 to “1”. The status of the Lock bits can now be read at DATA (“0” means programmed). 6. Set OE to “1”. Figure 124. Mapping Between BS1, BS2 and the Fuse and Lock Bits During Read Fuse Low Byte 0 0 Extended Fuse Byte 1 DATA BS2 Lock Bits 0 1 BS1 Fuse High Byte 1 BS2 Reading the Signature Bytes The algorithm for reading the Signature
in „I2C/TWI TWBR > 10 warum?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Values.txt
IRF510 8 green 8 ca. 6W 8 BAT54C 8 820 8 680 8 68 8 58R 8 50r 8 47 8 390R 8 3.3nF 8 22R 8 22P 8 200n 8 170 8 12 MHz 8 1,2K 8 10µH 8 0.1 7 TPSQPAD1-20Y 7 TPSPAD1-13Y 7 TLE2062 7 PORTB 7 NEB21R 7 MKDSN1,5/2-5,08 7 MAX232ECWE 7 LCD 20x4 7 IRLML2803 7 ICL3232 7 Green 7 BSS138 7 ALPS_ROTARY_ENCODER 7 8,2K 7 7805TV
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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PDF
Siferrit_materials.pdf
± 25 % ± 25 % ± 25 % ± 25 % Meas. field strength H A/m 5000 2000 1200 5000 1200 Flux density (near BS (25 °C) mT 310 400 420 320 340 saturation) (f = 10 kHz)S (100 °C)mT 280 310 310 240 240 Coercive field strengthH c(25 °C) A/m 380 80 26 40 40 (f = 10 kHz) H c(100 °C) A/m 350 65 19 25 25 Optimum f MHz
in „Schaltregler und EMV?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MP600_DataSheet.pdf
7:4] FD[7:4] SD[7:4] DAT[7:4] DAT[3:0] DAT[3:0] XD[7:4] [11:8] IO FCLE FGPIO[8] FA[0] SCLE CMD CMD BS BS XCLE IO FALE FGPIO[9] FA[1] ALE CLK CLK CLK SCLK SCLK XALE IO FCEx FGPIO[10] SCE1# XCE# IO FRDY/ FRB FGPIO[11] BUSY# SRB XRB IO FOEx FGPIO[12] FOE# SRE# XRE# IO FWEx FGPIO[13] FEW# WE# XWE# IO FSCE0x
in „Datenblatt von Magic Pixel MP600BUCG“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hitachi_55hk6t64u_55293dlb_48hk6t64u_48293dlb_chassis_17mb100-r1_17ips20-r9_sm.pdf
VBY4N/LVA3P 100n TX_V4P/LA3P HDMI1_RX0P MFC_MSDA AH19 I2SM_SDA SPI3_DI/DIM11 AD28 NC R343 SPI_SCL_BS AL14 RB3P VBY4P/LVA3N AD3 C2100n TX_V4N/LA3N NC AK4 HDMI1_RX0N MFC_MSCL AJ20 I2CM_SCL SPI4_CK/DIM8 AF29 22R SPI_SDI_BS AK14 RB4N VBY5N/LVA4P AC2 C100n TX_V5P/LA4P NC AL5 HDMI1_RX1P R103 SPI4_DI/DIM9
in „Vestel Netzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PSpice_LibraryguideOrCAD.pdf
ZTX ZETEX.OLB Zetex, Inc. Bipolar Transistor BFS18 BFS18/PLP PHIL_BJT.OLB Philips Bipolar Transistor BS170 BS170/SIE SIEMPWR.OLB Siemens Bipolar Transistor BS170 BS170/ZTX ZETEX.OLB Zetex, Inc. Bipolar Transistor BSP125 BSP125/SIE SIEMPWR.OLB Siemens Bipolar Transistor BSP149 BSP149/SIE SIEMPWR.OLB Siemens
in „pSpice - Bauteil hinzufügen.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
_ATmega32.pdf
DATA (“0” means programmed). 4. Set OE to “0”, BS2 to “0” and BS1 to “1”. The status of the Lock bits can now be read at DATA (“0” means programmed). 5. Set OE to “1”. Figure 132. Mapping between BS1, BS2 and the Fuse- and Lock Bits during Read Fuse
in „Anschwingvorgang µC & Quarz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATMega16.pdf
DATA (“0” means programmed). 4. Set OE to “0”, BS2 to “0” and BS1 to “1”. The status of the Lock bits can now be read at DATA (“0” means programmed). 5. Set OE to “1”. Figure 132. Mapping between BS1, BS2 and the Fuse- and Lock Bits during Read Fuse
in „DCF auf INT0“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATmega48PA-ATmega88PA-ATmega168PA_Datasheet.pdf
DATA (“0” means programmed). 4. Set OE to “0”, BS2 to “1”, and BS1 to “0”. The status of the extended fuse bits can now be read at DATA (“0” means programmed). 5. Set OE to “0”, BS2 to “0” and BS1 to “1”. The status of the lock bits can now be read
in „Probleme mit Int Capt ISR ATmega48PA“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX1647.PDF
Voltage ChargingCurrent( ) = 0x07F0; 170 185 200 mV MAX1648, V SETI= 1.024V MAX1647, ChargingVoltage( ) = 0x1060, Voltage Accuracy ChargingVoltage( ) = 0x3130; MAX1648, -0.65 0.65 % VSETV = 3.15V, SETV= 1.05V 2 ____________________________
in „Win98 Diagnose Notebook Akku immer 50%“ · PC Hard- und Software ·
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PDF
MAX1647_1_.PDF
Voltage ChargingCurrent( ) = 0x07F0; 170 185 200 mV MAX1648, V SETI= 1.024V MAX1647, ChargingVoltage( ) = 0x1060, Voltage Accuracy ChargingVoltage( ) = 0x3130; MAX1648, -0.65 0.65 % VSETV = 3.15V, SETV= 1.05V 2 ____________________________
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PDF
KS0093.pdf
11: DDRAM line 4 shows at the first line of LCD Determination of bias Bias control 0 0 0 0 1 1 1 - BS BS = 0: 1/5 bias (default ) 1: 1/4 bias LCD power control VC = 0: voltage converter OFF (default) 1: voltage converter ON Power control 0 0 0 1 0 0 VC VR VF VR = 0: voltage regulator OFF (default) 1:
in „LCD seriell ansteuern ST7093/KS0093“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SIM908-C.pdf
Feature Implementation Power supply 3.2V ~ 4.8V Typical power consumption in sleep mode is 1.0mA ( BS-PA-MFRMS=9, GPS Power saving engine is powered down ) Charging Supports charging control for Li-Ion battery z SIM908-C Quad-band: GSM 850, EGSM 900, DCS 1800, PCS 1900. Frequency bands SIM908-C can search
in „GSM-Modul (SIM908) nur analoge Ausgänge für Anruf?“ · HF, Funk und Felder ·
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Datei
Steuern_1.html
jp-mirror-editor-builtin-color: #008000; --jp-mirror-editor-bracket-color: #997; --jp-mirror-editor-tag-color: #170; --jp-mirror-editor-attribute-color: #00c; --jp-mirror-editor-header-color: blue; --jp-mirror-editor-quote-color: #090; --jp-mirror-editor-link-color: #00c; --jp-mirror-editor-error-color: #f00; --jp-mirror-editor-hr-color
in „Strompreis an der Ladesäule beim Arbeitgeber“ · Offtopic ·
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PDF
65013-8_LP_Lernpaket_Experimente_mit_USB.pdf
R-EU_0204/7 R4 10K R-EU_0204/7 R5 10K R-EU_0204/7 S1 20Pin, DIL20 gedrehter Sockel T1 BC557 A TO92 T2 BS170 TO USB 2X05 181 Sachverzeichnis A FT_Close 41, 48 A/D-Wandler 99 FT_ClrDtr 50 Ampelschaltung 63 FT_ClrRts 53 FTD2XX.DLL 39 B FTD2XX.SYS 39 binär 18 FT_GetBitMode 93 Binärzähler 120 FT_GetModemStatus
in „Buderus EMS-"Gateway" mit PIC18F / Sammelbestellung“ · Haus & Smart Home ·
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PDF
038-05058-01-X-MLCC_REVB03_SKIT.pdf
HDMI_DDC_SCL_LS [12] K12 D14 HDMI_DDC_SDA_LS [12] HDMI_RX0_DDC_SDA HDMI_TX0_DDC_SDA STDP4320_SPI_CLK BS_2 SOM_DP_HPD_LS F4 E4 RX0_HPD TX0_HPD HDMI_HPD_IN_LS [12] STDP4320_SPDIF_OUT0 BS_4 E2 STDP4320_SPDIF_OUT0 SPDIF_OUT0 STDP4320_SPDIF_OUT1 BS_6 AVDD12 STDP4320_HOST_IRQ_OUT [11] BS_7 5 5 5 R1 R1 R1 1 1
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PDF
HBIS51V120.pdf
deklarieren */ ucVar = 0xC9; /* Ausgabewert festlegen */ _OPLA1(ucVar); /* Wert ausgeben */ Name: _OPLA1BS (Out Platine 1 Bit setzen ) Ein oder mehrere Bit am Ausgabeport der Ein/Ausgabe-Platine E/A-1 setzen. Aufrufparameter ist die Bitmaske (Kap. 3.9.1(2) S.45) der zu ändernden Bit. Definition: void _OPLA1BS(unsigned char) Beispiel: unsigned char ucVar; ucVar = 0x08; /* Bitmaske Bit 3 */ _OPLA1BS(ucVar); /* Bit setzen */ Name: _OPLA1BR (Out Platine 1 Bit rücksetzen ) Ein oder mehrere Bit am Ausgabeport der Ein/Ausgabe-Platine E/A-1 rücksetzen. Aufrufparameter ist die Bitmaske (Kap. 3.9.1(2) S
in „8051 - Programm und Daten in einem 128kB Chip ohne Overlap“ · Mikrocontroller und Digitale Elektronik ·
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Datei
BASIC.LST
number of dimensions? 2230 1078 CA DE 10 JP Z,FINDEL ; Yes - Find element 2231 107B 1E 10 BSERR: LD E,BS ; ?BS Error 2232 107D C3 C8 04 JP ERROR ; Output error 2233 1080 2234 1080 11 04 00 CREARY: LD DE,4 ; 4 Bytes per entry 2235 1083 F1 POP AF ; Array to save or 0 dim'ns? 2236 1084 CA DA 09 JP Z,FCERR
in „Suche verschiedene BASIC Eprom's für Z80 Rechner.“ · Markt ·
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tp_uart__Siemens.pdf
voltage on low voltage pins TxD, RESn, TSTOUT, X1, -0.5 V IF.5 V X2, RxD ο ϑj junction temperature 170 C ϑS storage temperature -65 170 ο C VESD max. ESD stress voltage ± 1000 V 3) ILATCHUP static current for latchup initialization ± 50 mA R thermal resistance of the SOIC-20 package 58.5 71.5 K/W th
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PDF
EIB_Uart.pdf
voltage on low voltage pins TxD, RESn, TSTOUT, X1, -0.5 V IF.5 V X2, RxD ο ϑj junction temperature 170 C ϑS storage temperature -65 170 ο C VESD max. ESD stress voltage ± 1000 V 3) ILATCHUP static current for latchup initialization ± 50 mA R thermal resistance of the SOIC-20 package 58.5 71.5 K/W th
in „(V) SIEMENS EIB-Uart IC´s“ · Markt ·
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PDF
DELL_VOSTRO_3300__WIstron_Winery13_MB_DIS_.pdf
SA_MA5 V8 M_A_A6 SB_MA3 R1 M_B_A4 SA_MA6 T1 M_A_A7 AB1 SB_MA4 T8 M_B_A5 SA_MA7 Y9 M_A_A8 [19] M_B_BS0 W5 SB_BS0 SB_MA5 R2 M_B_A6 AC3 SA_MA8 U6 M_A_A9 [19] M_B_BS1 R7 SB_BS1 SB_MA6 R6 M_B_A7 [18] M_A_BS0 SA_BS0 SA_MA9 M_A_A10 [19] M_B_BS2 SB_BS2 SB_MA7 M_B_A8 [18] M_A_BS1 AB2 SA_BS1 SA_MA10 AD4 M_A_A11
in „Bios programmieren mit Dual Bios Main.Bin und EC.Bin ?“ · Softwareentwicklung ·
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PDF
MEGA48V_88V_168V.pdf
DATA (“0” means programmed). 4. Set OE to “0”, BS2 to “1”, and BS1 to “0”. The status of the Extended Fuse bits can now be read at DATA (“0” means programmed). 5. Set OE to “0”, BS2 to “0” and BS1 to “1”. The status of the Lock bits can now be read at DATA (“0” means programmed). 6. Set OE to “1”. Figure 28-6. Mapping between BS1, BS2 and the fuse and lock bits during read. Fuse low byte 0 0 Extended fuse byte 1 DATA BS2 Lock bits 0 1 Fuse high byte 1 BS1 BS2 28.7.13 Reading the signature bytes The algorithm for reading the
in „analog comparator interrupt probleme mit atmegas“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LGP42-10LF_EAY60869402_PLHF-L923A.pdf
RES FLAT 240K F 1/8 (2012) RESISTOR-SMD PILKOR SAMSUNG ROHM MM3Z18VST1G 18V, SOD323 ON-SEMI MMSZ5248BS, 18V, SOD323 RECTRON 144 4 1 Pcs ZD205 BZT52C18S,18V, SOD323 DIODE-ZENER-SMD DIODES KDZ18V-RTK/P, SOD323 KEC MM3Z6V8ST1G, SOD323 ON-SEMI MMSZ5235BS, 6.8V, SOD323 RECTRON 145 4 1 Pcs ZD501 BZT52C6V8S,
in „LG Inverter Kapazitator abgebrannt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Vollbr_cke_VNH3SP30.pdf
I Input current (IN and IN pins) +/- 10 mA IN A B EN Enable input current (DIAGA/EN And DIAG /EB piBs) +/- 10 mA pw PWM input current +/- 10 mA Electrostatic discharge (R=1.5k , C=100pF) VESD - Logic pins 4 KV - Output pins: OUTA,OUT VB, CC 5 kV T Junction operating temperature Internally Limited °C
in „VNH3SP30 auch als Halbbrücke“ · Mikrocontroller und Digitale Elektronik ·
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PDF
73d.pdf
external to the laser and k = 2π/λ is the wavenumber. PD1' aux front output bias I Vak dc voltage output BS PD2 laser diode target rear photodiode surface output PD1 front photodiode output Fig. 1. Different pickups of the output signal from a self-mixing interferometer: from rear and front mirror, and from
in „Effekte in Laserdiode bei reflektiertem Strahl“ · Analoge Elektronik und Schaltungstechnik ·
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L200_AppNotes.pdf
current limitation of the L200. The output current is calculated using the following formula : where I Bs the base current of the transistor (– 100 mAat I C4A)andV BE isthebase-emittervolt- VSC 0.45 V age (– 1 V atCI = 4 A) ; with R = 2., REG ≅ 500 Io= RSC ≅ 0.1 = 4.5 A mA. Constant current limitation is
in „Labornetzteil lm200 Brauchbar?“ · Mikrocontroller und Digitale Elektronik ·
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715G7312_PSU.pdf
L9801 1 2 1 2 4 1 FB9801 FB9804 FB 9803 127R ! C9802 R9821 Vsin 10NF 1KV C9803 C9804 C9805 NC 6 3 170uH 2 R9804 68uF 450V 68uF 450V 68uF 450V 1M 1% 1/4W R9803 D9804 R9802 + + + 82 OHM 1/4W 10 OHM 1/4W 1 R9822 PFC_OVP 47PF R9806 NC R9815 SS1060FL 3 C9817 1M 1% 1/4W 30K 1/8W 1% +VCC1 C9806 D9805 Q9801
in „Phillips 55PUS6561/12 keine Hintergrundbeleuchtung“ · Analoge Elektronik und Schaltungstechnik ·
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ITU-R.pdf
Series BO Satellite delivery BR Recording for production, archival and play-out; film for television BS Broadcasting service (sound) BT Broadcasting service (television) F Fixed service M Mobile, radiodetermination, amateur and related satellite services P Radiowave propagation RA Radio astronomy RS Remote
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Computer_Kontakt_1986-08_09_-_21.pdf
00 00 30 a8 a8 88 00 7c £4£10 c5 d5 e5 cd 43 Fc 06 06 c5 06 36 £5200 00 70 46 48 48 00 00 30 48 48 bS 64£20 bF 11 00 40 c3 6b 7a 3c 67 e6 aF £5210 30 00 00 70 48 48 70 40 00 38 42 65220 48 48 38 08 00 70 4B 40 40 00 rr 64 £30 07 20 0b 01 Z0 F8 09 b3 20 04 a3 £4640 7c c£ 07 67 e5 01 20 00 ed b0 d3 65230
in „ZX Spectrum => Upgrade von 16 auf 48 KB RAM“ · Mikrocontroller und Digitale Elektronik ·