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PDF
switec_X15.xxx.02.SP.E.pdf
resistance Rb 260 290 320 Ω Operating current m @ fz= 200 Hz 15 20 mA Magnetic saturation voltage U bs 9 V Start-Stop Frequency f -6 2 200 Hz ss @ JL= 0,2x10 kgm Maximum driving frequency fm @ JL= 0,2x10 kgm 2 600 Hz Dynamic torque M @ f = 200 Hz 1.0 1.3 mNm 200 z M600 @ fz= 600 Hz 0.35 mNm Static torque
in „M-S Motor X15.xxx“ · Mikrocontroller und Digitale Elektronik ·
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PDF
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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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
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PDF
srf02doku_dr.pdf
leuchtet blinkt beim Anlegen der Spannung einige mal. Aus dem Blinkien kann man die eingestellte I2C-Bs Slave ID ersehen, siehe unten. Zudem blinkt diese bei jedem Messvorgang. Änderung der I2C Slave ID Die Slave ID muss nur geändert werden wenn mehrere SRF02 an einem I2C Bus betrieben werden sollen oder
in „Berechnung der Entfernung mit SRF02“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATM16_doc2466.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 „ISP - Pinbelegung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Ateme16.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”. 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
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
PCA9532-1127723.pdf
Package reflow temperature (C) Volume (mm ) 3 < 350 350 to 2000 > 2000 < 1.6 260 260 260 1.6 to 2.5 260 250 245 > 2.5 250 245 245 Moisture sensitivity precautions, as indicated on the packing, must be respected at all times. Studies have shown that small packages reach higher temperatures during reflow soldering
in „[V] 3St. 16 Bit I2C/SM Bus LED Treiber PCA9532BS (HVQFN24)“ · Markt ·
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PDF
AT90PWM2_2B_3_3B__2_.pdf
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
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
LGP42-10LF_EAY60869402_PLHF-L923A.pdf
SHINDENGEN 1N5408 , 20mm RECTRON 55 3 2 Pcs D600 D606 DIODE 1N5408 , 20mm TSC 30PDA60, 20mm NI T5A H 250V, 215, LEAD RED (1 LINE) LITTEL FUSE 56 3 1 Pcs F100 T5A H 250V, 50CT, LEAD RED (1 LINE) FUSE DAIN 57 3 1 Pcs F501 F3.15A H 250V, 216, LEAD VIOLET (2 LINE) FUSE LITTEL FUSE F3.15A H 250V, 50CF, LEAD
in „LG Inverter Kapazitator abgebrannt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
715G7312_PSU.pdf
PSU 10-4-1 AC input AC input A01 A01 HS9901 HEAT SINK 1 2 3 4 2 FB9901 ! F9901 ! BEAD C9914 220PF 250V NR9901 3 4 1 2 1 2 ! ! ! C9911 NC9901 1.5R t T6.3AH 250V 47pF 250V ! C9902 L9904 2 ! L9903 470NF 275V L9905 18mH BD9901 ! 1 ! 18mH 4 3 1 2 2L9902 3 TS10P06G-04 CN9901 RV9901 C9901 1 2 2 L9901 3 ! !
in „Phillips 55PUS6561/12 keine Hintergrundbeleuchtung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Arcam-FMJ-P7.pdf
Capacitor Radial Electrolytic Dia 5mm Pitch 5mm 100UF 25V C205 2D110W2 Capacitor Boxed Polyprop 5mm Pitch 250V 5% 100P C207 2D110W2 Capacitor Boxed Polyprop 5mm Pitch 250V 5% 100P C208 2C410A Capacitor SM 1812 X7R Ceramic 500V 10% 100N C209 2C410A Capacitor SM 1812 X7R Ceramic 500V 10% 100N C210 2D147W Capacitor
in „Bandbreite von analogen Audioschaltungen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Arcam-FMJ-P7.pdf
Capacitor Radial Electrolytic Dia 5mm Pitch 5mm 100UF 25V C205 2D110W2 Capacitor Boxed Polyprop 5mm Pitch 250V 5% 100P C207 2D110W2 Capacitor Boxed Polyprop 5mm Pitch 250V 5% 100P C208 2C410A Capacitor SM 1812 X7R Ceramic 500V 10% 100N C209 2C410A Capacitor SM 1812 X7R Ceramic 500V 10% 100N C210 2D147W Capacitor
in „Bester Audio OPV“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SSD1305.pdf
-18.4 65 VDDIO 97.5 -536.0 145 COM2 3980.5 341.6 225 SEG70 -259.8 479.1 305 COM43 -3980.5 -63.4 66 BS0 162.5 -536.0 146 COM1 3980.5 386.6 226 SEG71 -311.8 479.1 306 COM44 -3980.5 -108.4 67 VSS 227.5 -536.0 147 COM0 3980.5 431.6 227 SEG72 -363.7 479.1 307 COM45 -3980.5 -153.4 68 BS1 292.5 -536.0 148 NC
in „i2c lese problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DSASW00146882.pdf
-18.4 65 VDDIO 97.5 -536.0 145 COM2 3980.5 341.6 225 SEG70 -259.8 479.1 305 COM43 -3980.5 -63.4 66 BS0 162.5 -536.0 146 COM1 3980.5 386.6 226 SEG71 -311.8 479.1 306 COM44 -3980.5 -108.4 67 VSS 227.5 -536.0 147 COM0 3980.5 431.6 227 SEG72 -363.7 479.1 307 COM45 -3980.5 -153.4 68 BS1 292.5 -536.0 148 NC
in „OLED Display mit ssd1305 Chip“ · Mikrocontroller und Digitale Elektronik ·
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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 „STK500 als ISP“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hs_sed1375.pdf
C SH-3 BUS CSn# CS# A[16:0] AB[16:0] D[15:0] DB[15:0] FPDAT[7:4] D[3:0] FPSHIFT FPSHIFT WE1# WE1# BS# BS# S1D13705 4-bit FPFRAME FPFRAME RD/WR# RD/WR# LCD RD# FPLINE FPLINE RD# DRDY MOD Display WE0# WE0# WAIT# WAIT# LCDPWR CKIO BCLK RESET# RESET# Figure 3-2: Typical System Diagram (SH-3 Bus) S1D13705
in „TFT an M16C62“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SSD1327_1.2.pdf
r . COM63 RES# i . COM62 r . CS# e D . | D/C# o o . E(RD#) e m . | R/W# (WR#) M D o . A l C . COM1 BS0 c D c . COM0 BS1 C r D y . BS2 M t G r I G D7 D6 . D5 e . D4 i . SEG0 D3 D . SEG1 D2 t D1 e . D0 m . | e . | S . V . SEG126 CC . SEG127 V SS . V LSS GPIO VSL i r . r i v . COM64 t a g t D k r . d l
in „OLED Display mit SSD1327 Controller ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Switch.pdf
Breite (W) Stückpreis s LAGER-NR. Abb. (Zoll) Typ Schaltung 1 50 100 500 1000 .244 W p .3.41 .32 p 108-2BS1T1T45-EVX H 0.244 SPDT Ein-Ein i K J K ABGEDICHTETE SUB-MINIATUR-KIPPSCHALTER – ZUR PANELMONTAGE .40 .40 .162 Technische Daten: .162 .165 • Belastbarkeit: 1A/250, 3A/120VAC oder 28VDC .165 • Kontaktwiderstand
in „Ausfallursache Printtaster DeLonghi Kaffeeautomat?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCTV75P60E1.pdf
Semiconductor MCTV75P60E1, N NS D RA W DE SIG MCTA75P60E1 R T W I H N O N EW P A L ET E - 75A, 600V O BS O April 1999 OC ES S P-Type MOS Controlled Thyristor (MCT) PR Features Package JEDEC STYLE TO-247 5-LEAD • 75A, -600V o ANODE ANODE • VTM = -1.3V(Maximum) at I = 75A and +150 C CATHODE • 2000A Surge
in „Projekt: Leistungsstarkes Blitzgerät aus 12 Volt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
2648_Counting_Electrons1.pdf
1000, difference. This method is still applicable series of readings representing the current 500, 250, …, etc. As expected, the standard even if there is no way to generate a nega- shape produced by the source. deviations of the collections dropped as the tive signal by taking the difference between
in „Operationsverstärker - Die-Bilder“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AW9364.pdf
DESCRIPTION l a t i n e i d f USymbol Min DFTypL Max n A2 0.000.203( Ref.)0 o D1 0.500 0.600 0.700 C Lk 0.250.200 ( MIN.) c E 1.900 2.000BS2.100 n i E1 1.100 1.200 1.300 i w a www.awinic.com.cn 13 Copyright © 2018 SHANGHAI AWINIC TECHNOLOGY CO., LTD Feb 2018 V2.3 LAND PATTERN 2.0.60 0.50 l 1.40 OUTtINE 1.202n
in „Arduino Custom Firmware für Fitness Armband mit NRF52“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2N7000.pdf
states Symbol Parameter Test conditions Min. Typ. Max. Unit Drain-source V(BR)DSS breakdown voltage ID= 250 µA, GS =0 60 V V = max rating DSS Zero gate voltage V DS= max rating, 1 µA drain currenGS(V 0) TC = 125 °C 10 )µA Gate-body leakage (s GSS current DS= 0) VGS = ± 18 V c±100 nA V Gate threshold voltageV = V , I = 250 µA 1 2.1 3 V GS(th) DS GS D o d RDS(on) Static drain-source onVGS = 10 V,DI = 0.5 A P r 1.8 5 Ω resistance VGS = 4.5 VD I = 0.5eA 2 5.3 Ω e t Table 5. Dynamic o l Symbol Parameter Test conditions Min
in „Schaltung mit 2 N-Kanal Mosfet“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
preis2024.pdf
Preis [€] 48,26 ISO Artikel-Nr. 1929 2.1.9 Endmaßzubehör Endmaßgrundplatte Genauigkeit des PrüflingsBS 4311 Prüfungsrichtlinie: Calpro QMA 1025-0 max. Nennmaß [mm] 100 ISO Preis [€] 16,88 ISO Artikel-Nr. 1069 Endmaßschenkel Genauigkeit des PrüflingsBS 4311 Prüfungsrichtlinie: Calpro QMA 1025-0 max. Nennmaß
in „PeakTech 365eff“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ATMega_48_88_168.pdf
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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PDF
vnh2sp30.pdf
-30 A IN Input Current (IA and INBpins) +/- 10 mA EN Enable Input Current (DIAGA/EN And DIAG /EB piBs) +/- 10 mA I PWM Input Current +/- 10 mA pw V CS Current Sense Maximum Voltage -3/+15 V Electrostatic Discharge (R=1.5kΩ, C=100pF) - CS pin 2 kV VESD - logic pins 4 kV - output pins: OUA, OUT B V CC
in „25A Regler per PWM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SSD1331_v1.2.pdf
X-Axis Y-Axis P ad no. P ad Name X-Axis Y-Axis P ad no. P ad Name X-Axis Y-Axis 1 NC -6319.4 -712.5 81 BS2 -76.2 -712.5 161 NC 6167.0 -712.5 2 NC -6243.2 -712.5 82 VSS 0.0 -712.5 162 NC 6243.2 -712.5 3 NC -6167.0 -712.5 83 BS3 76.2 -712.5 163 NC 6319.4 -712.5 4 NC -6090.8 -712.5 84 VDDIO 152.4 -712.5 164
in „Spannungsreglerproblem durch Frequenzen bei Arduino Adafruit“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XLampXML2.pdf
-00-0000-000LT60E4 T2 200 227 275 386 485 XMLBWT-00-0000-000LT20E7 Warm White 2600 K 3700 K T3 220 250 302 425 534 XMLBWT-00-0000-000LT30E7 T4 240 273 330 464 582 XMLBWT-00-0000-000LT40E7 T5 260 296 357 502 631 XMLBWT-00-0000-000BT50E3 70-CRI White 3700 K 5000 K T6 280 318 385 541 679 XMLBWT-00-0000-
in „Li Akku effizient in WLED endladen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Ledanzeigen1986_s.pdf
Zeilenlänge Max.Stromaufnahme, Sichtwinkel Einzel- Bedingungen Bestell-N仁 Segment/Stelle baustein bei 250C IDA 1414・16・1 2.8 mm 16 Stellen Icc= 40 0mA (mitBu行er) rot DL 1414 T Vcc= 5V :t40 Grad 10 Segmente/Stelle 068000- 17 A6380-F114 16 plus Dezimal- punkt IDA 1414-16・2 (ohneBuffer) Vcc= 5V 10 Segmente
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PDF
sihfr014.pdf
PARAMETER SYMBOL TEST CONDITIONS MIN. TYP. MAX. UNIT Static Drain-source breakdown voltage V V = 0 V, I = 250 μA 60 - - V DS GS D VDS temperature coefficient ΔV DS/TJ Reference to 25 °C, D = 1 mA - 0.068 - V/°C Gate-source threshold voltage V GS(th) V DS= V GS, D = 250 μA 2.0 - 4.0 V Gate-source leakage I V
in „Hilfe bei Bauteil identifikation“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
eadog-new.c
(*string !=0) { LCD_out_char(*string); *string++; } } void LCD_init(void) { Delay10KTCYx(10);//ms(250); // mehr als 40ms warten LCD_put_Data_Port_out(0x30);//(0x33) Delay10TCYx(200); //(2 ms) //ST7036(FUNCTION_SET_INIT_0); // Function set; 8 bit Datenlänge, 2 Zeilen LCD_put_Data_Port_out(0x30);//(0x33
in „EA Dog 162 - 4 Bit- LCD initialisierung mit PIC18F2522 unter MPLAB“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ASCIANSI.TXT
ö 0247 ÷ 0248 ø 0249 ù 0250 ú 0251 û 0252 ü 0253 ý 0254 þ 0255 ÿ 0 . 1 . 2 . 3 . 4 . 5 . 6 . 7 . 8bs 9 10nl 11 . 12 . 13nl 14 . 15 € 16 . 17 . 18 . 19 . 20 ¶ 21 § 22 . 23 . 24 . 25 . 26 . 27 . 28 . 29 . 30 . 31 . 32 33 ! 34 " 35 # 36 $ 37 % 38 & 39 ' 40 ( 41 ) 42 * 43 + 44 , 45 - 46 . 47 / 48 0 49 1
in „O-LED Display von SMI“ · 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
LED_Display_driver_chip_SSD1306_DataSheet.pdf
wire Serial 3-wire Serial Pin Name Interface interface (8 bit) interface(8 bit) interface interface BS0 0 0 0 0 1 BS1 1 0 1 0 0 BS2 0 1 1 0 0 Note (10 is connected to VSS (21 is connected to V DD SSD1306 Rev 1.5 P 15/64 Aug 2010 Solomon Systech 8 FUNCTIONAL BLOCK DESCRIPTIONS 8.1 MCU Interface selection
in „Spannungsversorgung Arduino läuft nicht über Vin oder 5V-Pin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LED_Display_driver_chip_SSD1306_DataSheet.pdf
wire Serial 3-wire Serial Pin Name Interface interface (8 bit) interface(8 bit) interface interface BS0 0 0 0 0 1 BS1 1 0 1 0 0 BS2 0 1 1 0 0 Note (10 is connected to VSS (21 is connected to V DD SSD1306 Rev 1.5 P 15/64 Aug 2010 Solomon Systech 8 FUNCTIONAL BLOCK DESCRIPTIONS 8.1 MCU Interface selection
in „SSD1306/1309 Library zum Darstellen von Text auf OLED Displays“ · Projekte & Code ·
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PDF
SSD1306.pdf
wire Serial 3-wire Serial Pin Name Interface interface (8 bit) interface(8 bit) interface interface BS0 0 0 0 0 1 BS1 1 0 1 0 0 BS2 0 1 1 0 0 Note (10 is connected to VSS (21 is connected to V DD SSD1306 Rev 1.5 P 15/64 Aug 2010 Solomon Systech 8 FUNCTIONAL BLOCK DESCRIPTIONS 8.1 MCU Interface selection
in „SH1106 Init-Sequenz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Solomon_Systech_LED_Display_driver_chip_SSD1306.pdf
wire Serial 3-wire Serial Pin Name Interface interface (8 bit) interface(8 bit) interface interface BS0 0 0 0 0 1 BS1 1 0 1 0 0 BS2 0 1 1 0 0 Note (10 is connected to VSS (21 is connected to V DD SSD1306 Rev 1.5 P 15/64 Aug 2010 Solomon Systech 8 FUNCTIONAL BLOCK DESCRIPTIONS 8.1 MCU Interface selection
in „Mit Wire.h über I2C auf LCD-Display 1602 zugreifen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ssd1309.pdf
COM62 RES# r n . COM60 D/C# t ) l m . . R/W# (WR#) D M r m . . E(RD#) y A n o . . p DR C C . COM2 BS0 c i D y . COM0 BS1 U f D ( p . BS2 C t h M i M I a A D G R D7 D6 D5 . D4 e . D3 i . SEG0 D2 r . SEG1 D1 t . . D0 e . . m . . e . SEG126 V DD S . SEG127 V CC . V . SS VLSS VSS1 l l . t r r . o y g t
in „Display EA OLED L128-6“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Solomon_Systech_LED_Display_driver_chip_SSD1306.pdf
wire Serial 3-wire Serial Pin Name Interface interface (8 bit) interface(8 bit) interface interface BS0 0 0 0 0 1 BS1 1 0 1 0 0 BS2 0 1 1 0 0 Note (10 is connected to VSS (21 is connected to V DD SSD1306 Rev 1.5 P 15/64 Aug 2010 Solomon Systech 8 FUNCTIONAL BLOCK DESCRIPTIONS 8.1 MCU Interface selection
in „SSD1306/1309 Library zum Darstellen von Text auf OLED Displays“ · Projekte & Code ·
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PDF
Transistoren_cht.pdf
Toshiba 2SK3128 30 0.011 60 TO-3P(N) 2SK3128 A Toshiba 2SK3176 200 0.052 30 TO-3P(N) 2SK3176 A Toshiba BS107 200 26 0.13 TO-92 Siemens BS170 60 5 0.5 0.83 TO-92 Fairchild BS170 60 5 0.3 TO-92 Siemens BS270 60 2 0.4 0.625 TO-92 Fairchild BSO307N 30 0.075 4.2 SOP-8(Single) TPC8004 A Siemens BSO615N 60 0.15
in „Frage Mosfet“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Power_MOSET_Cross_reference.pdf
Toshiba 2SK3128 30 0.011 60 TO-3P(N) 2SK3128 A Toshiba 2SK3176 200 0.052 30 TO-3P(N) 2SK3176 A Toshiba BS107 200 26 0.13 TO-92 Siemens BS170 60 5 0.5 0.83 TO-92 Fairchild BS170 60 5 0.3 TO-92 Siemens BS270 60 2 0.4 0.625 TO-92 Fairchild BSO307N 30 0.075 4.2 SOP-8(Single) TPC8004 A Siemens BSO615N 60 0.15
in „Schaltregler Fragen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
01_Sicherungsautomaten.pdf
2 S 800 S-UC Grafik Kurzschluss Erdschluss zwischen Abgangsklemmen zwischen Abgangsklemme und - A 250 V DC 250 V DC B 500 V DC 250 V DC 500 V DC 500 V DC C D 250 V DC 250 V DC E 750 VDC 750 V DC F 500 V DC 250 V DC (Doppelfehler) G 750 V DC 500 V DC (Doppelfehler) S 800 S, S 800 N, S 800 C Grafik Kurzschluss Erdschluss zwischen Abgangsklemmen zwischen Abgangsklemme und - A 125 V DC 125 V DC B 250 V DC 125 V DC C 250 V DC 250 V DC D 125 V DC 125 V DC E 375 V DC 375 V DC F 250 V DC 125 V DC (Doppelfehler) 125 V DC (Doppelfehler) G 500 V DC 1/131 Hochleistungs-Sicherungsautomaten 1 Baureihe S 800
in „Kurzschlussstrom“ · Offtopic ·
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PDF
Atmega128_doc2467.pdf
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
_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
str-x6759n_ds_en.pdf
–390 μA Normal Operation Bottom-Skip Operation Threshold Voltage 1 V –0.720 –0.665 –0.605 V OCPBD(BS1) Bottom-Skip Operation Threshold Voltage 2 V OCPBD(BS2) –0.485 –0.435 –0.385 V Overcurrent Detection Threshold Voltage V OCPBD(LIM)V OCP/BDfalling –0.995 –0.940 –0.895 V OCP/BD Terminal Outflow Current IOCPBD V OCP/BD= –0.95 V –250 –100 –40 μA Quasi-Resonant Operation Threshold Voltage 1 V OCPBD(TH1)V OCP/BDfalling 0.28 0.40 0.52 V Quasi-Resonant Operation Threshold Voltage 2 V V rising 0.67 0.80 0.93 V OCPBD(TH2) OCP/BD FB Terminal
in „Reparatur Netzteil PHILIPS HTS 8140/12“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SSD1315.pdf
capacitor; Connect to each other with a capacitor. LS I Reserved pin. It should be connected to V SS BS[2:0] I MCU bus interface selection pins. Select appropriate logic setting as described in the following table. BS2, BS1 and BS0 are pin select. Table 5-2: Bus Interface selection BS[2:0] Interface 000
in „I2C Display einfache Frage“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SSD1315.pdf
capacitor; Connect to each other with a capacitor. LS I Reserved pin. It should be connected to V SS BS[2:0] I MCU bus interface selection pins. Select appropriate logic setting as described in the following table. BS2, BS1 and BS0 are pin select. Table 5-2: Bus Interface selection BS[2:0] Interface 000
in „I2C Display einfache Frage“ · Mikrocontroller und Digitale Elektronik ·