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PDF
LCD162C_DIS.pdf
VDD+0.3 V Input voltage VI -0.3 VDD+0.3 V Operating temperature TOP 0 50 °C Storage temperature TST -10 60 °C ELECTRICAL CHARACTERISTICS ( VDD = +5V±10% , VSS = 0V, Ta = 25°C ) ◆ DC Characteristics Parameter Symbol Condition Min Typ Max Unit Supply voltage for logic VDD --- 4.5 5.0 5.5 V Supply current
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PDF
LCD162C_DIS.pdf
VDD+0.3 V Input voltage VI -0.3 VDD+0.3 V Operating temperature TOP 0 50 °C Storage temperature TST -10 60 °C ELECTRICAL CHARACTERISTICS ( VDD = +5V±10% , VSS = 0V, Ta = 25°C ) ◆ DC Characteristics Parameter Symbol Condition Min Typ Max Unit Supply voltage for logic VDD --- 4.5 5.0 5.5 V Supply current
in „mit AVR zählen -> 7-Segmentanzeige“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LCD162C_DIS.pdf
VDD+0.3 V Input voltage VI -0.3 VDD+0.3 V Operating temperature TOP 0 50 °C Storage temperature TST -10 60 °C ELECTRICAL CHARACTERISTICS ( VDD = +5V±10% , VSS = 0V, Ta = 25°C ) ◆ DC Characteristics Parameter Symbol Condition Min Typ Max Unit Supply voltage for logic VDD --- 4.5 5.0 5.5 V Supply current
in „lcd in asm kriegs nicht gebacken....“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DIS.pdf
VDD+0.3 V Input voltage VI -0.3 VDD+0.3 V Operating temperature TOP 0 50 °C Storage temperature TST -10 60 °C ELECTRICAL CHARACTERISTICS ( VDD = +5V±10% , VSS = 0V, Ta = 25°C ) ◆ DC Characteristics Parameter Symbol Condition Min Typ Max Unit Supply voltage for logic VDD --- 4.5 5.0 5.5 V Supply current
in „PIC16F690 init vom LCD funzt nich“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LCD16x2.pdf
VDD+0.3 V Input voltage VI -0.3 VDD+0.3 V Operating temperature TOP 0 50 °C Storage temperature TST -10 60 °C ELECTRICAL CHARACTERISTICS ( VDD = +5V±10% , VSS = 0V, Ta = 25°C ) ◆ DC Characteristics Parameter Symbol Condition Min Typ Max Unit Supply voltage for logic VDD --- 4.5 5.0 5.5 V Supply current
in „LCD Ansteuerung im 4bit-Modus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DIS.pdf
VDD+0.3 V Input voltage VI -0.3 VDD+0.3 V Operating temperature TOP 0 50 °C Storage temperature TST -10 60 °C ELECTRICAL CHARACTERISTICS ( VDD = +5V±10% , VSS = 0V, Ta = 25°C ) ◆ DC Characteristics Parameter Symbol Condition Min Typ Max Unit Supply voltage for logic VDD --- 4.5 5.0 5.5 V Supply current
in „Welches LCD an STK 500 anschliessen ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LCD162C_DIS.pdf
VDD+0.3 V Input voltage VI -0.3 VDD+0.3 V Operating temperature TOP 0 50 °C Storage temperature TST -10 60 °C ELECTRICAL CHARACTERISTICS ( VDD = +5V±10% , VSS = 0V, Ta = 25°C ) ◆ DC Characteristics Parameter Symbol Condition Min Typ Max Unit Supply voltage for logic VDD --- 4.5 5.0 5.5 V Supply current
in „Datenblatt zu HD44780 1602 LCD Modul Display Anzeigen 2X16 Zeichen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LCD_162C_data.PDF
VDD+0.3 V Input voltage VI -0.3 VDD+0.3 V Operating temperature TOP 0 50 °C Storage temperature TST -10 60 °C ELECTRICAL CHARACTERISTICS ( VDD = +5V±10% , VSS = 0V, Ta = 25°C ) ◆ DC Characteristics Parameter Symbol Condition Min Typ Max Unit Supply voltage for logic VDD --- 4.5 5.0 5.5 V Supply current
in „Universeller RC5-Fernbedienungsempfänger“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LCD162C_DIS.pdf
VDD+0.3 V Input voltage VI -0.3 VDD+0.3 V Operating temperature TOP 0 50 °C Storage temperature TST -10 60 °C ELECTRICAL CHARACTERISTICS ( VDD = +5V±10% , VSS = 0V, Ta = 25°C ) ◆ DC Characteristics Parameter Symbol Condition Min Typ Max Unit Supply voltage for logic VDD --- 4.5 5.0 5.5 V Supply current
in „LC-Display per Transistor zuschalten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DataSheetLCD.pdf
VDD+0.3 V Input voltage VI -0.3 VDD+0.3 V Operating temperature TOP 0 50 °C Storage temperature TST -10 60 °C ELECTRICAL CHARACTERISTICS ( VDD = +5V±10% , VSS = 0V, Ta = 25°C ) ◆ DC Characteristics Parameter Symbol Condition Min Typ Max Unit Supply voltage for logic VDD --- 4.5 5.0 5.5 V Supply current
in „Probleme mit DCF77-Decodierprogramm“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Displaytech_162.pdf
VDD+0.3 V Input voltage VI -0.3 VDD+0.3 V Operating temperature TOP 0 50 °C Storage temperature TST -10 60 °C ELECTRICAL CHARACTERISTICS ( VDD = +5V±10% , VSS = 0V, Ta = 25°C ) ◆ DC Characteristics Parameter Symbol Condition Min Typ Max Unit Supply voltage for logic VDD --- 4.5 5.0 5.5 V Supply current
in „Displaytech 162C Init fehlgeschlagen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DIS.pdf
VDD+0.3 V Input voltage VI -0.3 VDD+0.3 V Operating temperature TOP 0 50 °C Storage temperature TST -10 60 °C ELECTRICAL CHARACTERISTICS ( VDD = +5V±10% , VSS = 0V, Ta = 25°C ) ◆ DC Characteristics Parameter Symbol Condition Min Typ Max Unit Supply voltage for logic VDD --- 4.5 5.0 5.5 V Supply current
in „LCD (HD44780, Displaytech 162C) macht Probleme“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Displaytech_162_DS_LCD.pdf
VDD+0.3 V Input voltage VI -0.3 VDD+0.3 V Operating temperature TOP 0 50 °C Storage temperature TST -10 60 °C ELECTRICAL CHARACTERISTICS ( VDD = +5V±10% , VSS = 0V, Ta = 25°C ) ◆ DC Characteristics Parameter Symbol Condition Min Typ Max Unit Supply voltage for logic VDD --- 4.5 5.0 5.5 V Supply current
in „[S] 16x2 LCDs 112x44“ · Markt ·
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Taiwan-Semiconductor-SMCJ.pdf
Derating Curve 100 ) 125 NON-REPETITIVE I T ) PULSE N W WAVEFORM R %100 ( SHOWN in FIG.3 R ( R U G E 10 C A W O N 75 P ) E E P C L ( E U R P P E I 50 A 1 W G E P I , E T P S R 25 PP U E P D K 0.1 E 0 P 0 25 50 75 100 125 150 175 200 0.1 1 10 100 1000 10000 ° tp, PULSE WIDTH, (μs) TA, AMBIENT TEMPERATURE
in „Bezeichnung Diode“ · Analoge Elektronik und Schaltungstechnik ·
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Hantek_Tekway_DSO_v1.03.pdf
LDATA10 PIJ90327 28 PIJ903028A12 C C Q 1E C E S S S S S DATA0 PIC1201LDATA1 UART 22R R10_111 RA10_101 I7CO10_70k P06C10_6065C10_505 LDATA9 PIJ90329 30 PIJ903030A11 A A R D B B G G G G G DATA1 PIU10010E11A2 LLnSCPIR1010PIR10101AS
in „TEKWAY DST1xx2B Oszilloskop“ · Mikrocontroller und Digitale Elektronik ·
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ncp1200.pdf
5.00 0.189 0.197 PLANE B 3.80 4.00 0.150 0.157 −Z− C 1.35 1.75 0.053 0.069 D 0.33 0.51 0.013 0.020 0.10 (0.004) G 1.27 BSC 0.050 BSC H M J H 0.10 0.25 0.004 0.010 D J 0.19 0.25 0.007 0.010 K 0.40 1.27 0.016 0.050 M 0▯ 8▯ 0▯ 8 ▯ 0.25 (0.010) Z Y S X S N 0.25 0.50 0.010 0.020 S 5.80 6.20 0.228 0.244 SOLDERING
in „NCP1200D6 Schaltnetzteil IC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NCP1200.pdf
5.00 0.189 0.197 PLANE B 3.80 4.00 0.150 0.157 −Z− C 1.35 1.75 0.053 0.069 D 0.33 0.51 0.013 0.020 0.10 (0.004) G 1.27 BSC 0.050 BSC H M J H 0.10 0.25 0.004 0.010 D J 0.19 0.25 0.007 0.010 K 0.40 1.27 0.016 0.050 M 0▯ 8▯ 0▯ 8 ▯ 0.25 (0.010) Z Y S X S N 0.25 0.50 0.010 0.020 S 5.80 6.20 0.228 0.244 SOLDERING
in „Datenblatt gesucht DAP07“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LCD161A_DIS.pdf
VDD+0.3 V Input voltage VI -0.3 VDD+0.3 V Operating temperature TOP 0 50 °C Storage temperature TST -10 60 °C ELECTRICAL CHARACTERISTICS ( VDD = +5V±10% , VSS = 0V, Ta = 25°C ) ◆ DC Characteristics Parameter Symbol Condition Min Typ Max Unit Supply voltage for logic VDD --- 4.5 5.0 5.5 V Supply current
in „AVR + LCD => weiß keinen Rat mehr“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LCD161A.pdf
VDD+0.3 V Input voltage VI -0.3 VDD+0.3 V Operating temperature TOP 0 50 °C Storage temperature TST -10 60 °C ELECTRICAL CHARACTERISTICS ( VDD = +5V±10% , VSS = 0V, Ta = 25°C ) ◆ DC Characteristics Parameter Symbol Condition Min Typ Max Unit Supply voltage for logic VDD --- 4.5 5.0 5.5 V Supply current
in „LCD-ansteuerung mit µ-controller“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Startup.lst
00000000 00000400 00000000 Command Line: --debug --xref --device=DARMP --apcs=interwork -oStartup.o -IC:\K eil\ARM\INC\Philips --predefine="REMAP SETA 1" --list=.\lst\Startup.lst Startup .s ARM Macro Assembler Page 1 Alphabetic symbol ordering Relocatable symbols STACK 00000000 Symbol: STACK Definitions At
in „LPC2294 Boot Loader Mode“ · Mikrocontroller und Digitale Elektronik ·
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23810294.pdf
L D3 Maximum dissipation at 25 °C 100 mW 1 L3 T 90294 a Thermal time constant 5 s Dissipation factor 10 mW/K L1 L2 Ø D 1 Ø D 2 Ø D3 L3 T 45 ± 3 6 ± 1 3.7 8.5 4.1 16.8 0.8 Thermal gradient < 0.05 K/K Min. dielectric withstanding voltage between terminals and lug 1500 VAC DESCRIPTION
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Switch.pdf
PEC11S-929K-H0015 G Y 2 652-PEC11S929K-N0015 PEC11S-929K-N0015 G N 2 1 2 652-PEC11S929K-S0015 PEC11S-929K-S0015 G Y 2 Shaft Style C Shaft Style E 14MM OPTISCHER DREHGEBER MIT SCHALTER 7.94 9.53 10.03 (.313)
in „Ausfallursache Printtaster DeLonghi Kaffeeautomat?“ · Mikrocontroller und Digitale Elektronik ·
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sn75452b.pdf
MEASUREMENT INFORMATION 5 ns 10 ns 3 V Input 2.4 V 10 V 90% 90% Input RL= 50 ’451B 1.5 V 1.5 V ’451B ’453B 10% 10% ’452B 0 V Pulse Output 0.5 s Generator 5 ns 10 ns Circuit 3 V (see Note A) Input 90% 90% Under ’452B Test ’454B
in „Suche Datenblatt“ · Mikrocontroller und Digitale Elektronik ·
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HV9910.pdf
PWM_D input high voltage 2.4 - - V V = 8 – 450V EN(hi) IN R Pin PWM_D pull-down resistance 50 100 150 kΩ V = 5V EN EN V Current sense pull-in threshold 225 250 275 mV @TA = -40°C to +85°C CS(hi) voltage V GATE(hi) GATE high output voltage VDD0.3 - V DD V IOUT= 10mA V GATE(lo) GATE low output voltage 0
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PDF
16389fg.pdf
Distortion + Noise Total Harmonic Distortion + Noise vs Frequency vs Load Resistance vs Output Voltage 10 10 10 V = 3V, 0V VS= 3V TOTAL RL= 10k, f = 1kHz S A = 1 V = HALF SUPPLY VOUT = 2P-P V CM VCM = 1.2V VIN= 2VP-PAT 1kHz AV = –1, S = ±1.5V 1 RL = 20k 1 1 AV = –1, S = 3V, 0V ) ) ) AV = 1, S = ±1.5V ( (
in „Alternative gesucht zu OpAmp“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
NASA_Technical_Note_D-822.pdf
.6_ 3_o 7.9_T5 7.98o00 8.0_9 8.0689_ 8.11_6_ 8.158_7 8._o_7 8.L_65 8._959_ 8._9_9 e._ s._m _._e 8._ _._ s._z_ s._z_ s_ s._ s,_o_z &10 8.8_9_5 8.89687 8.9_ 8.99196 9.0_97k 9,0_768 9.1_78 _:_ 9.E_ 9.L_102 k_o 9.8=2_599_1 9.876__ 9-9_70_9 9.&97791 I90.50_5928 i90.,507850l9O.6l2_5I_k190:_'_
in „Komplexe Berechnung auf µC - geschickte Annäherung?“ · Mikrocontroller und Digitale Elektronik ·
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HM812.pdf
I [ill] rr - i (Alte n.O,1IlS/cm)1 2/10p rtJ5kHz or DC 4k7 100 ~ (:w:Jcm::Jn~ Channel I Gain Trace Pos 1k 22k taT' Y_ n l ,,-,V'em) Y-ATTENUATOR Channel I and II A: O,9V from ChP 11 to ChP 10 B' O,9V from ChP 12 to ChP 10 I(Turn
in „Hameg HM 812 Unterlagen gesucht und Frage zur Justierung“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
xTalk_10-01-2022_225401_MYL7K01616.txt
xTalk Version 6.7.0.0 Log File Start Time: 10/01/2022 22:54:01 Computer Name: TESTPC Operating System: MS Windows Sever 2012 or Windows 8 Version 6.2 (Build 9200) ____________________________________________________________ Start: 10/01/2022 22:
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PDF
456-06183-0-LD1117D.pdf
Test Conditions Min. Typ. Max. Unit Vref Reference Voltage Vin V O 2 V O = 10 mA TJ= 25±C 1.238 1.25 1.262 V Vref Reference Voltage IO= 10 to 800 mA Vin V O 1.4 to 10 V 1.225 1.275 V V Line Regulation V - V = 1.5 to 13.75 V I = 10 mA 0.035 0.2 % O in O O VO Load Regulation Vin
in „Von 9V auf 3-3,3V mit einem Spannungsregler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CMX865A_datasheet.pdf
R t I t r p r B + - u f u f V I p O u x m T B A U C R A C G A L O P A O l N O vo A L en i l xo a t S TC G o S R C V D S V E T R ER R EG/N R E I & E NT E M& E NO T O V S RL /A E ER L TR R C N TA FE C DT A FL E E D R IU MN E MI U ML W E V T FE DG R F E DC N D A S I V R R O R T A M YO K L K L E R C F U
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Bourns_221_50.pdf
.010) OLERANCE: ± (0.015) UNLESS OTHERWISE NOTED Pulse Power Rating How to Order 100 PWR 221 T - 50 - 10R0 F Model PWR = Power Resistor 10 Package 221 = TO-220 Style s l Pin Style o T = Through-hole J Power i 1 50 = 50 W y r Resistance Value n <100 ohms....“R” represents decimal E point (examples: 7R50
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PDF
SRR5028-101Y_Bourns_unpw.pdf
0.20 SRR5028-681Y 680 ±30 11 0.796 3 4300 0.13 0.14 (.110 ± .008) 1.90 Soldering Profile (.075) TYP. 275 <1+255°C and +260°Ceconds between 260°C peak <1> 255°C 225 220°C TYP. 190°C Ramp Down 2.00 C seconds maximumond (.079) ( 175 1.90 u 150°C (.075) r TYP. p 125 T 120 - 150 seconds 10 seconds minimum Recommended
in „Pollin SMD-Induktivitäten identifizieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DS_K4B8G1646Q-MY_Rev10.pdf
S C D S S K D D D D C T E T E O C Z C O C Z C T E Q S T E Q S O C Z C O C Z C Figure 1. Stacked / Dual -die DDR3 SDRAM x16 rank association - 7 - Rev. 1.0 K4B8G1646Q datasheet DDPDDR3LSDRAM 3.3FBGAPackageDimension
in „Orange Pi - 15$ Quadcore SBC“ · Mikrocontroller und Digitale Elektronik ·
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Datei
schemath.txt
NICADLADER: KENWOOD ST1+2 HEATHKIT IP-2715 ICOM: IC-PS15 IC-3PU BC-20 BC-30 DC-DC LADER 12V ONTVANGER's: AR10 ARAC: 102 BARLOW-WADLEY:XCR-30MK2 BC652A COLLINS: 75A-2 R388/URR R392URR DRAKE 2B R-4B EDDYSTONE: EC10 680X 730/4 770S 830 840A GRUNDIG:SATELLIT 1000 HAGENUK:E75 UE12 HA5K39B HALLICRAFTER:SX-28A
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THS4061-4062.PDF
a t R a –60 o R t 80 i j c –50 e j e R d 60 l –40 M p n u o r –30 m 40 e o o C P –20 – – R 20 R M S –10 C P VCC = 〉 15 V, 〉 5 V 0 0 10k 100k 1M 10M 100M 1k 10k 100k 1M 10M 100M f – Frequency – Hz f – Frequency – Hz Figure 14 Figure 15 POWER SUPPLY REJECTION RATIO OUTPUT VOLTAGE SWING vs vs FREE-AIR
in „Verstärker für DC bis hohe Frequenz“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
fcntl.lst
GAS LISTING c:\windows\TEMP\ccTDIigb.s page 1 1 .file "fcntl.c" 2 .arch at90s8535 3 __SREG__ = 0x3f 4 __SP_H__ = 0x3e 5 __SP_L__ = 0x3d 6 __tmp_reg__ = 0 7 __zero_reg__ = 1 8 _PC_ = 2 9 .stabs "D:\\Projects\\miconox/",100,0,0,.Ltext0 10 .
in „Compiler-Fehler?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX196-MAX198.pdf
NUMBER OF BITS vs. DIGITAL CODE FFT PLOT vs. INPUT FREQUENCY A 0.250 - 0 - 12.0 - 9 1 9 ) M fTONE= 10kHz M SAMPLE = 100kHz M M B 0.200 -20 fSAMPLE = 100kHz S / ( I Y 0.150 F 11.5 6 I B -40 O A 0.100 ( E 9 I D B L 0.050 T -60 U 11.0 1 O L N L 0 M I X A A -80 C G E A T-0.050 E 10.5 I -100 -0.100 M -0.150
in „12 bit AD- und DA-Wandler (parallel) gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
max5056.pdf
5000pF) (CL = 5000pF) (CL = 5000pF) 60 1 60 0 60 3 t t t 5 5 TA= +125 C 5 50 M 50 M 50 A TA= +125 C s M TA= +125 C ( s 40 s 40 A 40 ( ( E M TA= +25 C M N T A +25 C T 30 T 30 T = +25 C I 30 I L A A R F A 20 20 O 20 P T = -40 C 10 10 10 A TA= -40 C TA= -40 C 0 0 0 4 6 8 10 12 14 16 4 6 8 10 12 14 16 4
in „Dual Mosfet Treiber“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
NCP5104-D.PDF
CURVES ) 25 ) 40 A C = 1 nF/Q = 15 nC A CLOAD = 2.2 nF/Q = 33 nC R GATE= 0 R ( LOAD ( 35 Y 20 Y R GATE= 10 R P P 30 P P S S T 15 T 25 RGATE = 22 R N N R R 20 R 10 R C U 15 T T O O 10 I 5.0 I + R GATE= 0 R to 22 R + C C 5.0 I I 0 0 0 100 200 300 400 500 600 0 100 200 300 400 500 600 SWITCHING FREQUENCY (kHz
in „Suche SMD Bauteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
uwe-100-120.pdf
120W.C05 Page 31 of 35 UWE-100-120W Series Wide Input, Isolated Eighth-Brick DC-DC Converters r m uat o s +VOUT +VIN r m p r m ow +SENSE . o t utput 1MΩ ON/OFF TRIM 5-20 LOAD CONTROL TURNS 13.3(V O 1.226) 16.31 R TUP(kΩ) = 10.2 R TDOWN(kΩ) = 10.2 –SENSE V O 3.3 3.3 V O o t utput –VIN –VOUT 20.4(V O 1.226) 10.2 R T (kΩ) = 25.01 10.2 Figure 6. Trim Connections Using a Trimpot R TUP(kΩ) = V O 5 DOWN 5 V O o t utput I R T (kΩ) = 49.6(V O 1.226) 10.2 R T (kΩ) = 60.45 10.2 UP V O 12 DOWN 12 V O E E C I D A single
in „DC DC Konverter schwingt auf PWM-Frequenz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LTC3490.pdf
C to 125°C Output Voltages (CAP, LED, SW)................ –0.3V to 6V Lead Temperature (Soldering, 10 sec, S8) .......... 300°C U W U PACKAGE /O RDER I FOR ATIO TOP VIEW TOP VIEW CELLS 1 8 CTRL/SHDN CELLS 1 8 CTRL/SHDN VIN 2 9 7 LOBAT VIN 2 7 LOBAT SW 3 6 CAP GND 4 5 LED SW 3 6 CAP GND 4 5 LED DD PACKAGE
in „Step Up Wandler 1.5V -> 3.2 V“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ST7735S.pdf
Command transter V 1.1 Page 132 of 201 2011-11-21 ST7735S 10.1.23 RGBSET (2Dh): Color Setting for 4K, 65K and 262K 2DH RGBSET (Color Set for 4K, 65K, 262K and 16.7M) Inst / Para D/CX WRX RDX D17-8 D7 D6 D5 D4 D3 D2 D1 D0 HEX RGBSET 0 ↑ 1 - 0 0 1 0 1 1 0 1 (
in „[STM32/HAL] Treiber für ST7735 160 x 80 TFT“ · Projekte & Code ·
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PDF
slyt441.pdf
To PE Mains PE VS2 ISO VS2 Slave 1 kΩ 0.1 µF 0.1 µF1 kΩ 1 kΩ 0.1 µF Node VS2 DE VCC VCC1 EN1 EN2 VCC2 0.1 µF 100 Ω 1A R F 1R IA OUT A 1B C VCC F CLKIN A0 100 Ω 2A R F IN OUT 2B 2R B B SDI ADC C F 1Y SDO A0 R F OUTC IN GND 1Z 1 C CF 2Y 2D
in „SPI über Distanz (3,5m)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LCD_Dislpay_Treiber_NT7534_132_x_65_Pixel.pdf
terminals must be connected. This is the liquid crystal alternating current signal I/O terminal M/S = “H”: Output 10 FR I/O M/S = “L”: Input When the NT7534 chip is used in master/slave mode, the various FR terminals must be connected. This is the liquid crystal display blanking control terminal. M
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PDF
K4B4G1646Q-Samsung.pdf
,ID-LEVEL. 2. DQ signals are MID-LEVEL. - 36 - Preliminary Rev. 0.5 K4B4G1646Q datasheet DDR3LSDRAM 1) [ Table 37 ] IDD1 Measurement - Loop Pattern p d ] K o e e a : 1 ] ] ] ] 2 / K - c b m S A A E D [ 5 1 9 6 2 t K C b C u m C R C W O A [ A A A A D C S N C B A 0 0 ACT
in „Orange Pi - 15$ Quadcore SBC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
78f9116.pdf
Symbol Conditions MIN. TYP. MAX. Unit Cycle time (minimuminstruction T CY VDD = 2.7 to 5.5 V 0.4 8 s execution time) 1.6 8 s TI80 input high/low tTI, VDD = 2.7 to 5.5 V 0.1 s level width tTIL 1.8 s TI80 input fTI VDD = 2.7 to 5.5 V 0 4 MHz frequency 0 275 kHz Interrupt input tINT, INTP0-INTP2 V DD=
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AD811.pdf
N E S VOLTAGE NOISE V =S±15V L GAIN = –2 C R FB= 649Ω VOLTAGE NOISE V S = ±5V 0.01 5 1 1 8 - - 10k 100k 1M 10M 100M 6 10 100 1k 10k 100k 6 8 8 FREQUENCY (Hz) 0 FREQUENCY (Hz) 0 Figure15.Closed-LoopOutputResistancevs.Frequency
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PDF
NPX-35TFR-product-data-sheet.pdf
Terminal M6 Threaded Receptacle JST No. VHR-2N INCH = MM INCH = MM INCH = MM INCH = MM I 0.860 21.84 J K 1.100 27.94 L 0.870 22.01 1.024 26.01 0.530 13.46 0.910 23.11 0.910 23.11 0.550 13.97 0.430 10.92 0.430 10.92 0.510 12.95 0.430 10.92 0.295 7.49 0.335 8.51 0.390 9.91 0.230 5.84 0.315 8.00 0.330 8.38
in „[S] Polschutzkappen für 5.5mm Anschlüsse von Akkus“ · Markt ·
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PDF
HWSC_S_A0014431442_1-3073393.pdf
Dual radial 016MD ±16 mbar 1.6KD ±1.6 kPa 010ND ±10 i2H O JJ same sideports, JJ same sideports, 025MD ±25 mbar 2.5KD ±2.5 kPa 020ND ±20 i2H 010BD -10 10 bar — 17 17 17 ±0.75 ±0.25 ±0.25 17 040MD ±40 mbar 004KD ±4 kPa 030ND ±30 i2H O Gage 060MD
in „ESP32 Wroom mit Honeywell Drucksensor verbinden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Thermoelement.pdf
x t oder ±2,5K Dies bedeutet, dass ein Fe-CuNi-Thermoele- Pt10Rh-Pt „S“ Klasse 1 0…+1600 °C: ±[1+(t-1100) x 0,003] oder ±1,0K und Klasse 2 - 40…+1600 °C: ±0,0025 x t oder ±1,5K ment vom Typ „J“ beispielsweise durch
in „Wie funktioniert Thermosensor in Heizofen“ · Haus & Smart Home ·