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PDF
LT1014CN_DN.pdf
range Full range −15 −15 to 13 to 13 Maximum peak output 25°C ±12.5 ±14 ±12.5 ±14 VOM voltage swing RL= 2 kΩ Full range ±12 ±12 V VO = ±10 V, RL= 600 Ω 25°C 0.5 2 0.5 2 Large-signal differential AVD voltage amplification 25°C 1.2 8 1.2 8 V/µV VO = ±10 V, RL= 2 kΩ Full range 0.7 0.7 Common-mode VIC = −
in „Unterschied beim LT1014 ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt_THS4531.pdf
= V + 0.5 V 0.5 2 µA A S– Turn-on time delay Time from PD = high to OUT = 90% of final 650 value, RL= 200 Ω ns C Time from PD = low to OUT = 10% of original Turn-off time delay value, RL= 200 Ω 20 OUTPUT COMMON-MODE VOLTAGE CONTROL (V OCM) Small-signal bandwidth V OCM input = 100 mPP 23 MHz C Slew rate
in „Symmetrischer Filter, FilterPro, THS4531“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN1819.pdf
Bourns PWR220-2FD15R0F R10, R11 10k 1206 SMT Yaego RC1206JR-0710KL R15 390 1206 SMT Yaego RC1206JR-07390RL R16 20 1206 SMT Yaego RC1206JR-0720RL R17 2.2k 1206 SMT Yaego RC1206JR-072k2RL R18 1k 1206 SMT Yaego RC1206JR-071KL T1 See text FairRite 2661375102 T2 See text FairRite 5961004901 T3 See text FairRite 5961001801 U1 78L05 TO-92 ON Semi MC78L05ACPG U2 LM358 8p SOIC ON Semi LM358DR2G The printed circuit board layout in ExpressPCB 11format, can be obtained here. 7 1 Norm Dye and Helge Granberg, Radio Frequency Transistors
in „Stackpole Ferrit Kerne für RF Verstärker“ · HF, Funk und Felder ·
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PDF
datasheet.pdf
bias current VO = 0 50 50 nA −12 −12 Common-mode input VICR voltage range 25°C ±11 to ±11 to V 15 15 RL= 10 kΩ 25°C ±12 ±13.5 ±12 ±13.5 V Maximum peak output R ≥ 10 kΩ ±12 ±12 V OM voltage swing L Full range RL≥ 2 kΩ ±10 ±10 Large-signal differential 25°C 35 200 35 200 AVD voltage amplification VO = ±10
in „Experimentieren mit tl071cp“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
opa1632.pdf
Out RL= 2 kΩ 0.000043% Differential Input/Output RL= 600 Ω 0.00008% Intermodulation Differential Input/Output G = +1, SMPTE/DIN, RL= 2 kΩ 0.00005% Distortion Single-Ended In/Differential Out V O 2 V PP R =
in „Frage bezüglich einer Analog-Schaltung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
140271-da-01-en-IR_SENSOR_HSDL_9100_021.pdf
DO Refer Note 1 - 5 - mm Operating CrossTalk Current FD Refer to Fig 3 - - 200 nA RiseTime (LED) T RL R L 50W - 50 - ns FallTime (LED) T FL R L 50W - 50 - ns RiseTime (Photodiode) TRD RL= 5.1KW - 6 - ms FallTime (Photodiode) TFD RL= 5.1KW - 6 - ms ** L = 0 (zero light condition) Note: 1. Led 300mA Pulse
in „LED Strom und Spannung?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
TLV3201.txt
R356 0 62 1E6 R357 0 63 1E6 R358 64 62 1E4 R359 64 63 1E4 E57 65 66 67 13 -10 E58 68 12 67 13 10 M78 12 69 66 70 MNSW M79 66 71 12 72 MPSW R364 13 72 1E12 R365 70 13 1E12 V78 69 65 5 V79 71 68 -5 R366 13 68 1E12 R367 13 65 1E12 C124 66 0 0.669E-12 R368 0 66 1E9 M80 67 73 13 13 MCN M81 67 74 13 13 MCN
in „LTSpice - Problem mit neuem Bauteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CNY17-2.pdf
BE (Black Package) (White Package) 5.0 5.0 n p4.5 V CC =0 V n 4.5 VCC =10 V ( C = 2 mA p C = 2 mA t RL = 100 Ω n 4.0 RL = 100 Ω )4.0 t B ) 3.5 (3.5 B t n - ( 3.0 o3.0 - t t 2.5 E2.5 D I E 2.0 A2.0 L M A 1.5 O M N1.5 O N 1.0 1.0 0.5 10 100 1000 10000 100000 10 100 1000 10000 100000 RBE- BASE RESISTANCE
in „Optokoppler CNY17“ · Mikrocontroller und Digitale Elektronik ·
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HX5116_4.3inch.pdf
pull high) RL I MPU RL=H: S1 (1st data) S160 RL=L: S160 (1st data) S1 When OTP_W =L, writing/programming OTP memory disable. OTP_W I MPU (Normal operation) (Normally pull low) When OTP_W =H, writing/programming OTP
in „OLED CMEL SPI Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
andilcd_conoled_sheet_de_hx5116.pdf
pull high) RL I MPU RL=H: S1 (1st data) S160 RL=L: S160 (1st data) S1 When OTP_W =L, writing/programming OTP memory disable. OTP_W I MPU (Normal operation) (Normally pull low) When OTP_W =H, writing/programming OTP
in „HX 5116 Anschlussbelegung an einem Atmega 644“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM229_MC3302_LM2901.pdf
Common Mode Voltage Range V 0 − V 0 − V 0 − V V ICMR CC CC CC −1.5 −1.5 −1.5 Supply Current ICC mA RL= ∞ (For All Comparators) − 0.8 2.0 − 0.8 2.0 − 0.8 2.0 RL= ∞, VCC = 30 Vdc − 1.0 2.5 − 1.0 2.5 − 1.0 2.5 Voltage Gain AVOL 50 200 − 25 100 − 25 100 − V/mV RL≥ 15 kW, VCC= 15 Vdc Large Signal Response Time − − 300 − − 300 − − 300 − ns VI= TTL Logic Swing, Vref 1.4 Vdc, RL = 5.0 Vdc, RL= 5.1 kW Response Time (Note 6) − − 1.3 − − 1.3 − − 1.3 − ms VRL = 5.0 Vdc,LR = 5.1 kW Output Sink Current I 6.0 16 − 6.0 16 − 6.0 16 − mA Sink V (−) ≥ +1.0 Vdc, V (+) = 0, I I VO≤ 1.5 Vdc
in „Eingangssignal Verstärken (mit MC1458P?)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM229_MC3302_LM2901.pdf
Common Mode Voltage Range V 0 − V 0 − V 0 − V V ICMR CC CC CC −1.5 −1.5 −1.5 Supply Current ICC mA RL= ∞ (For All Comparators) − 0.8 2.0 − 0.8 2.0 − 0.8 2.0 RL= ∞, VCC = 30 Vdc − 1.0 2.5 − 1.0 2.5 − 1.0 2.5 Voltage Gain AVOL 50 200 − 25 100 − 25 100 − V/mV RL≥ 15 kW, VCC= 15 Vdc Large Signal Response Time − − 300 − − 300 − − 300 − ns VI= TTL Logic Swing, Vref 1.4 Vdc, RL = 5.0 Vdc, RL= 5.1 kW Response Time (Note 6) − − 1.3 − − 1.3 − − 1.3 − ms VRL = 5.0 Vdc,LR = 5.1 kW Output Sink Current I 6.0 16 − 6.0 16 − 6.0 16 − mA Sink V (−) ≥ +1.0 Vdc, V (+) = 0, I I VO≤ 1.5 Vdc
in „Auslegung Optokoppler“ · Analoge Elektronik und Schaltungstechnik ·
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TDA7294S.PDF
45 V G Closed Loop Gain 26 40 dB LOOP Output Power VS= 〉0V; R =L8 ; THD = 10% 100 W Ptot VS= 〉 30V; RL = 4 ; THD = 10% 100 W SVR Supply Voltage Rejection 75 dB ABSOLUTE MAXIMUM RATINGS Symbol Parameter Value Unit VS Supply Voltage (No Signal) 〉50 V V VSTAND-BY GND Voltage Referred to -V S(pin 8) 90 V
in „TDA7294 tiefes lautes Brummen wenn kein Audiosignal“ · Analoge Elektronik und Schaltungstechnik ·
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DATASHEET_ADG333A-AD-EN.pdf
Current IINLor INH ±0.005 µA typ VIN 0 V or V DD ±0.5 µA max DYNAMIC CHARACTERISTICS 2 tON 110 ns typ RL= 300 Ω, C L 35 pF; 200 ns max VS= 8 V; Figure 17 tOFF 100 ns typ RL= 300 Ω, C L 35 pF; 180 ns max VS= 8 V; Figure 17 Break-Before-Make Delay, t OPEN 10 ns min RL= 300 Ω, C L 35 pF; ns min VS= 5 V; Figure
in „IC Analog Audio Schalter“ · Analoge Elektronik und Schaltungstechnik ·
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___Voltcraft_PSP1405__SCHALTNETZTEIL_Schaltplan.pdf
Shinde 00 5 4 3 2 1 5 4 3 2 1 U9 D22 LM7812 HV+ 1 D 2 IN NOUT + 0 UF5408 G D19 1 C77 C73 C61 E 3 C78 6 100nF 1206 12V D P 470uF/25V D D18 UF4003 - HV- 100uF/25V 100n 1206 ~ D23 _ + UF4003 D17 1N4007 C74 R86 3K3 1206 470uF/25V 5 6 - 7 D21 FB2 U7 8 + C 4 UF 5408 C FSDL0365 D20 UF4003 C75 15n 1206 C72
in „Labor Schaltnetzteil PSP1405 (Voltcraft) haut es immer die beiden IRF840 durch.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
000512411-qs-01-en-SCHALTPLAN_PROGRAM__SCHALTNETZTEIL_PSP_1.pdf
Shinde 00 5 4 3 2 1 5 4 3 2 1 U9 D22 LM7812 HV+ 1 D 2 IN NOUT + 0 UF5408 G D19 1 C77 C73 C61 E 3 C78 6 100nF 1206 12V D P 470uF/25V D D18 UF4003 - HV- 100uF/25V 100n 1206 ~ D23 _ + UF4003 D17 1N4007 C74 R86 3K3 1206 470uF/25V 5 6 - 7 D21 FB2 U7 8 + C 4 UF 5408 C FSDL0365 D20 UF4003 C75 15n 1206 C72
in „Labor Schaltnetzteil PSP1405 (Voltcraft) haut es immer die beiden IRF840 durch.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
smp04.pdf
Curre1t ISOURCE VIN = 6 V 1.2 mA Output Sink Current ISINK VIN = 6 V 0.5 mA Output Voltage Range OVR RL = 20 k 0.06 10.0 V RL= 10 k 0.06 9.5 V LOGIC CHARACTERISTICS Logic Input High Voltage V INH 2.4 V Logic Input Low Voltage V INL 0.8 V Logic Input Current I 0.5 1 A IN DYNAMIC PERFORMANCE 2 Acquisition
in „Power Supply Bypassing - wie ist es richtig??“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
smp04.pdf
Curre1t ISOURCE VIN = 6 V 1.2 mA Output Sink Current ISINK VIN = 6 V 0.5 mA Output Voltage Range OVR RL = 20 k 0.06 10.0 V RL= 10 k 0.06 9.5 V LOGIC CHARACTERISTICS Logic Input High Voltage V INH 2.4 V Logic Input Low Voltage V INL 0.8 V Logic Input Current I 0.5 1 A IN DYNAMIC PERFORMANCE 2 Acquisition
in „Sample-and-Hold-Verstärker - wie richtig beschalten??“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
smp04.pdf
Curre1t ISOURCE VIN = 6 V 1.2 mA Output Sink Current ISINK VIN = 6 V 0.5 mA Output Voltage Range OVR RL = 20 k 0.06 10.0 V RL= 10 k 0.06 9.5 V LOGIC CHARACTERISTICS Logic Input High Voltage V INH 2.4 V Logic Input Low Voltage V INL 0.8 V Logic Input Current I 0.5 1 A IN DYNAMIC PERFORMANCE 2 Acquisition
in „Umgang mit Hold-Step bei Sample-and-Hold-Versärkern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EMS_PIC.pdf
6 7 8 EMS_5V 1 1 1 1 IC6 B 4 7 2 R R R R EMS_TX 8 VIN VOUT 1 EMS_5V 8 B 1 k 4 R C16 R 4 5 IC1B C10 78L05SMD C11 7 GND 100n EMS_232_TX 6 330n 2 3 6 7 10n 4 LM393D T1 BC847 EMS_GND 1 7 EMS_GND EMS_GND R 4 EMS_GND V + 1 VDD1 VDD2 8 EMS_5V RC7 2 VOA VIA 7 EMS_232_RX RC6 3 VIB VOB 6 EMS_232_TX USB_VCC IC4
in „Buderus EMS-"Gateway" mit PIC18F / Sammelbestellung“ · Haus & Smart Home ·
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Datei
safari.txt
61 67 6d 61 3a 20 6e 6f 2d 63 61 63 ..Pragma: no-cac 0060 68 65 0d 0a 41 63 63 65 70 74 3a 20 74 65 78 74 he..Accept: text 0070 2f 78 6d 6c 2c 20 61 70 70 6c 69 63 61 74 69 6f /xml, applicatio 0080 6e 2f 78 6d 6c 0d 0a 48 6f 73 74 3a 20 31 39 32 n/xml..Host: 192 0090 2e 31 36 38 2e 31 37 38 2e 31 3a 34
in „AVR Net IO Dropdown Liste“ · Mikrocontroller und Digitale Elektronik ·
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BOCDC185_Service_Manual.pdf
01-01 26 35mm female socket 2 R-40-160810-01-00 R-40-160810-01-00 27 Bottom panel 1 R-51-PZ01-005-W-RL Available on request 28 Bottom windbreak board 1 R-52-GT-50-B-RL Available on request 29 Silicon bridge 10 1 R-52-QL-01-F-RL Available on request 30 Silicon bridge 13 1 R-52-QL-01-H-RL Available on request 31 Aviation socket 1 R-52-ZH-02-B-RL Available on request 32 EMC board 1 R-51-PH02-112-A R-51-PH02-112-A 33 Boat shaped switch 1 R-07-020000-03-00 07-020000-03-00 34 Top board 1 R-51-PM01-046-G1 PMB-46-D 35 Middle board 1 R-51-PD01-065-
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MC1489.pdf
SWITCHING CHARACTERISTICS (V = 5.0 Vdc ± 1%, T = + 25°C, See Figure 3.) CC A Propagation Delay Time (RL= 3.9 kW) tPLH − 25 85 ns Rise Time (RL= 3.9 kW) tTLH − 120 175 ns Propagation Delay Time (RL= 390 kW) tPHL − 25 50 ns Fall Time (RL= 390 kW) tTHL − 10 20 ns http://onsemi.com 3 MC1489, MC1489A TEST CIRCUITS 5.0Vdc RL All diodes V 1N3064 R or equivalent Ein E o R C L 3.0 V 50% 50% C E in TLHand tTHL PLH measured 1/4 Response Node E 10% − 90% O V MC1489A VO tTLH in t THL 1.5 V 1.5 V C L 15 pF = total parasitic capacitance
in „USB/RS232 Konverter, einige Fragen“ · Mikrocontroller und Digitale Elektronik ·
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4N25.pdf
Package) 5.0 5.0 VCC = 10 V 4.5 V 10 V ))4.5 I = 2 mA ) CC = p RC = 100 Ω p C = 2 mA (4.0 L ( 4.0 RL = 100 Ω o o / / E3.5 )E3.5 R RB n n 3.0 (o3.0 ( - - to t 2.5 D 2.5 D E E I I 2.0 A 2.0 A M M 1.5 R R N 1.5 N 1.0 1.0 0.5 10 100 1000 10000 100000 10 100 1000 10000 100000 R BE - BASE RESISTANCE (k Ω)
in „optocoupler beschaltung“ · Mikrocontroller und Digitale Elektronik ·
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GL9540_ServiceManual.pdf
' Resfstor R20,34, 35 RV205-208-100 s 1 300-20050 Reslstor R27 RVz05-208-500 S I Varfable Resfstor Rl7 RVl240W-100 Vfshay S 799-LLO76 Reelstor R33 L208-222J S I 158-01160 Heatsl-nk 680-1 Eplrek I 150-09072 Hardware lfountfng KiÈ .25' a. IRC S I 782-01335 RegLstor Rl 4725 Keys tone S 1 782-01540 Resfstor
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Atmel_8051__Cs.pdf
56 78 00 XCH A,2BH 00 00 34 56 78 12 XCH A,2CH 00 00 12 56 78 34 XCH A,2DH 00 00 12 34 78 56 XCH A,2EH 00 00 12 34 56 78 Note: Using XCHs: 9 bytes, 5 µs Table 1-6. Shifting a BCD Number One Digit to the Right 2A 2B 2C 2D 2E ACC MOV R1,# 2EH 00 12 34 56 78 XX MOV R0, # 2DH 00 12 34 56 78 XX loop for R1 = 2EH: LOOP: MOV A, @R1 00 12 34 56 78 78 XCHD A, @R0 00 12 34 58 78 76 SWAP A 00 12 34 58 78 67 MOV @R1, A 00 12 34 58 67 67 DEC R1 00 12 34 58 67 67 DEC
in „serielle Ausgaben auf AT89S52 Baud-Raten-Generator startet nicht“ · Mikrocontroller und Digitale Elektronik ·
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A200_DS_ADM3053_Isolated_CAN_Tranceiver.pdf
Typ Max Unit Test Conditions SUPPLY CURRENT Logic Side isoPower Current Recessive State ICC 29 36 mA RL= 60 Ω, RS= low, see Figure 25 Dominant State ICC 195 232 mA RL= 60 Ω, RS= low, see Figure 25 TxD/RxD Data Rate 1 Mbps ICC 139 170 mA RL= 60 Ω, RS= low, see Figure 25 Logic Side iCoupler Current TxD/RxD
in „Eagle Neue Bibliothek bitte mal prüfen CAN-Tranceiver“ · Platinen ·
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PDF
HFBR-14XX_Optolink.pdf
Description HFBR-0400 Series Reliability Data Transmitter & Receiver Reliability Data Application Bulletin 78 Low Cost Fiber Optic Links for Digital Applications up to 155 MBd Application Note 1038 Complete Fiber Solutions for IEEE 802.3 FOIRL, 10Base-FB and 10Base-FL Application Note 1065 Complete Solutions
in „Debuggen bei EMV-Tests“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FN8222.pdf
, X9C104, X9C503 PIN CONFIGURATION DIP/SOIC INC 1 8 VCC U/D 2 7 CS X9C102/103/104/503 VH/RH 3 6 VL/RL VSS 4 5 VW/R W ORDERING INFORMATION PART NUMBER PART MARKING RTOTAL (kΩ) TEMPERATURE RANGE (°C) PACKAGE X9C102P X9C102P 1 0 to 70 8 Ld PDIP X9C102PZ (Note) X9C102P Z 0 to 70 8 Ld PDIP (Pb-free) X9C102PI
in „digitales Poti gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TDA8425.pdf
gain setting; THD = −60 dB; f = 1 kHzS R = 600 ; RL= 10 k ; bass/treble = 0 dB; V CC = 12 V. Fig.11 Output signal handling capability; gain = 6 dB; S = 600 ; RL= 10 k , bass/treble = 0 dB, VCC = 12 V. October 1988 15 Philips Semiconductors Product specification
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Verkaufsangebot für FT232RL USB zu TTL Adapter
€ 39.82 Zusätzlicher 2 % Rabatt €0.78 off over €26.12 3,3/5,5 pcs ft232rl ftdi usb v zu ttl seriales arduino ft232 pro mini usb zu ttl 22 verkauft Farbe: Mini USB X100 Mini USB Type-C USB Mini USB
in „Funktioniert das für einen RS232 Sniffer?“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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PDF
Hantek_Tekway_Voltcraft_DSO_hw1007.pdf
Input Circuit.SchDoc B SoCADIN_CH1 CPLDBUS AD9288 Self Cal Signal CH1 04-ADC.SchDoc 1GSs/500MSs CH1 RL1+ 1GSs/500MSs CH1 RL1+ 1GSs/500MSs CH1 RL1- 1GSs/500MSs CH1 RL1- OFFSET3-CH1 1GSs/500MSs CH1 RL2+ 1GSs/500MSs CH1 RL2+ OFFSET2-CH1 1GSs/500MSs CH1 RL2- 1GSs/500MSs CH1 RL2- 7 8 9 3 2 1 OFFSET1-CH1 1GSs
in „TEKWAY DST1xx2B Oszilloskop“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Schaltplan USB-Abschirmung mit EMI-Spule und ESD-Schutzdioden
RX6xx/RX2xx/RX1xx/R8C3xx/RL78 USBx_DP(UDPx) USBx_DM(UDMx) EMI workaround coil ESD workaround zener diodes USB connector D+ D- Digital ground (GND) When the components for the EMI/ESD workarounds are mounted, they should be allocated
in „USB-A Shield und Ground verbinden?“ · HF, Funk und Felder · · Schaltpläne
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PDF
4067B_4097B.pdf
Output for 4097 35 Feedthrough 0.2 CONTROL VIL Input Low = VDD V EE SS 5 1.5 1.5 1.5 Voltage thru RL=1K 10 3 3 3 V 1K to V SS 15 4 4 4 VIH Input High IIS< 2 A 5 3.5 3.5 3.5 (onallOFF Voltage channels) 10 7 7 7 V 15 11 11 11 IH IIL Input HCC V = 0/18V 18 〉 0.1 〉 103 〉 0.1 〉 1 Leackage types I Current
in „Analog Mux - Demux“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ASSR-1611-High-Current-1-Form-A-Solid-State-Relay-MOSFET-60V25A01____-.pdf
Rejection CM =1000pF,TA=25°C Input-Output dVI-Odt 1 ≥10 kV/μs VDD=5V, ΔVI-O1000V, 6 Transient Rejection RL=1kΩ, CL=25pF,T A25°C Notes: 1. For derating, refer to Figure 1 and 2. 2. The voltage across the output terminals of the relay should not exceed this rated withstand voltage. Over-voltage protection circuits
in „Bidirektionaler DC-Schalter“ · Analoge Elektronik und Schaltungstechnik ·
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Class-D_PWM_Amplifier_V2_0.pdf
1 1 R4 C_Sens J1 RV1 2 V_Ref_T 4 - V_Ref_T 3 + C8 Conn_01x02_Female 10R 6 k 3 R 6 C_Small 4 3k 7 8 RL1 R8 C9 R G2RL-2-ASI-DC12 100nF GND GND GND GND GND GND GND 9 k R 6 5 72V-108V Maximum Output Voltage GND GND 6 1 7 2 B B +5V_1 +5V_1 4 2 2 U2A 470R 3 OPA1656 2 R10 +12V D3 3 3 D4 0 1 J2 BAT54S BAT54S
in „Class D Amp. Schaltplan überprüfen“ · Analoge Elektronik und Schaltungstechnik ·
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SSD2119.pdf
and right gate interlaced) 1 G1, G3, ……G239, G2, G4, ……G240 See “Scan mode setting” on next page. RL: Selects the output shift direction of the source driver. When RL = “1”, S1 shifts to S960 and <R><G><B> color is assigned from S1. When RL = “0”, S960 shifts to S1 and <R><G><B> color is assigned from
in „Display Module CFAF320240F-TS Ansteuerung --- ATMEGA 128 ---- STK600“ · Mikrocontroller und Digitale Elektronik ·
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a30adjustLocations.pdf
Driver Board Adjustment Locations ocu enef R8c aj 8hv g R5 sren R80 adj +21 R18 ie hors R17 s rfcu 78v R1 fous hrz L40 re hof rtie rl R32 20ve37ve R R se rpha 0ho R4 n rtt o nss st tce vrp bih cnta R401 R02 R43 R44
in „Tektronix TDS744A Netzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PL560-XX.pdf
74 116.97 185 56.03 190 35.76 380 17.13 76 96.72 152 38.54 76 110.56 190 52.81 195 33.83 390 16.03 78 91.49 156 36.34 78 104.63 195 49.84 200 32.04 400 15.02 80 86.64 160 34.30 80 99.15 200 47.08 205 30.38 410 14.07 82 82.15 164 32.41 82 94.06 205 44.53 210 28.84 420 13.20 84 77.97 168 30.65 84 89.33
in „Suche Analog Frequency Multiplier IC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Cambridge_Technology_MicroMax_Series_670_Single_Axis_Board_Level_Mirror_Positioning_System.pdf
application requiring it. Twomethods are available onthe 670board. Thefirstis an on-board adjustment pot, Rl. Rl is a 15-tum Cermet potentiometer whose output voltage ranges from -5V to +5V. Its offsetting contribution is contiolled byRIO. Thenominal offset contribution is +/-20%ofthe inputrange. The second
in „3D Scanner von 3D Digital Corp - zu irgendwas zu gebrauchen?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
EMS_Adapter.xml
99X7QmK3yvCg1w/a5EPF61sd99azO+Wzs1k4xUmdlttSp0vTzP7ba3Zn9pFPHcreoHKqzL1P+mAbr7Wvr0eH17R7vt1089nHMLkt78q/qTCdpd55XRW0v6pNJ7oGsy7v3o39Lt5YKrsMUfdNzeIwOqq0Yij47qvxn/zjf78FkCfRX/cy7/ek0KViS28NlwHc8/kTHSna7UMndx/qqu1euzuSfk62UHvrHN3SakA5fp25XfQX7ae93H4vjdlWBBNbp7e+wjAlNDVFyLYpeEeoid/8MgXapnQ6FF9DXSd69jhtd/
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Datei
EMS_Adapter.xml
99X7QmK3yvCg1w/a5EPF61sd99azO+Wzs1k4xUmdlttSp0vTzP7ba3Zn9pFPHcreoHKqzL1P+mAbr7Wvr0eH17R7vt1089nHMLkt78q/qTCdpd55XRW0v6pNJ7oGsy7v3o39Lt5YKrsMUfdNzeIwOqq0Yij47qvxn/zjf78FkCfRX/cy7/ek0KViS28NlwHc8/kTHSna7UMndx/qqu1euzuSfk62UHvrHN3SakA5fp25XfQX7ae93H4vjdlWBBNbp7e+wjAlNDVFyLYpeEeoid/8MgXapnQ6FF9DXSd69jhtd/
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Schaltplan mit Spannungsregler und USB-zu-Seriell-Wandler
J10+, AC-IN, J11+, AC-OUT, D5, D4+, DF1501S+, C1+, 470uF, SS34, D3, D2, SS34, C2, 10uF, PS1, 78E3.3-1.0, +VIN, +VOUT, GND, C4, 100uF, C3, 10uF, C5, 100uF, VCC, VCCIO, RESET, OSCI, OSCO, RXD, CTS, DTR, DCD, RI, ESP32_RX, ESP32_TX, FTDI_NRTS, FTDI_NDTR, C9, 100nF, USBCon+, SHIELD, GND, D+, D-, VBUS, USBDP, USBDM, C10, 100nF, 10uF, CBUS0, CBUS1, CBUS2, CBUS3, CBUS4, TEST, GND, FT232RL
in „Mal wieder ESP32 und Spannungsversorgung (FT232)“ · Mikrocontroller und Digitale Elektronik · · Schaltpläne
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PDF
LM7372MR-NOPB-Texas-Instruments.pdf
hd2 Second Harmonic Distortion V OUT= 2VP-P, L = 100Ω −80 dBc F = 1MHz, A = +2 IN V V OUT= 16.8VP-P RL= 100Ω −73 dBc hd3 Third Harmonic Distortion V OUT= 2VP-P, L = 100Ω −91 dBc FIN 1MHz, A V +2 V OUT= 16.8VP-P RL= 100Ω −67 dBc IMD Intermodulation Distortion Fin 1 = 75kHz, −87 dBc Fin 2 = 85kHz V = 16.8V
in „Gleichspannungsquelle mit µC genau steuern“ · Analoge Elektronik und Schaltungstechnik ·
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TTester_096k.pdf
0 0 best value: 0 Test 6 RH1+ RH2+ RH3+ 470k isolation 4995 4995 4995 best value: 5001 Test 7 TP1- RL1+ TP2- RL2+ TP3- RL3+ Pin resistance Low 132 132 137 Test 8 TP1+ RL1- TP2+ RL2- TP3+ RL3- Pin resistance High 151 151 151 Table 4.5: Selftest Mega8 @ 8MHz, Signature 1E9307, WITH AUTOREF 34 Test No. 1. Result 2. Result 3. Result Test 1 band gap Ref 1090 Reference RHfakt 865 RLfakt. 5649 Test 2 RL1+ RL2- RL1+ RL3- RL2+ RL3- comparison 680 2493 2493 2493 best value: 2493 Test 3 RH1+ RH2- RH1+ RH3- RH2+ RH3- comparison 470k 2497 2498 2498 best value: 2500 test 4 isolate probe test 5 RH1- RH2- RH3
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X9C103.pdf
ONE- In(INC)nt Coandol HUNDRED Memory RW W DECODER TRANSFER RESISTOR Device Select GATES ARRAY (CS) RL/L 2 STORE AND RECALL 1 VSSGround) VCC CONTROL GND CIRCUITRY 0 General R L L RW W Detailed 2 ™ E POT is a trademark of Xicor, Inc.11/5/98 ©Xicor, Inc. 1994, 1995 Patents Pending Characteristics subject
in „Präzisionsspannungsquelle mit mindestens 100 Abstufungen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM2574.pdf
Renco NPI Value (Note 1) (Note 2) (Note 3) Note 2: Renco Electronics Inc., (516) 586-5566 68 µH * RL-1284-68-43 NP5915 60 Jeffryn Blvd. East, Deer Park, NY 11729 100 µH * RL-1284-100-43 NP5916 *Contact Manufacturer 150 µH 52625 RL-1284-150-43 NP5917 220 µH 52626 RL-1284-220-43 NP5918/5919 European Source Note 3: NPI/APC +44 (0) 634 290588 330 µH 52627 RL-1284-330-43 NP5920/5921 470 µH 52628 RL-1284-470-43 NP5922 47 Riverside, Medway City Estate 680 µH 52629 RL-1283-680-43 NP5923 Strood, Rochester, Kent ME2 4DP. UK 1000 µH 52631 RL-1283-1000-43 * 1500
in „Ersatz für 7805 gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM2574.pdf
Renco NPI Value (Note 1) (Note 2) (Note 3) Note 2: Renco Electronics Inc., (516) 586-5566 68 µH * RL-1284-68-43 NP5915 60 Jeffryn Blvd. East, Deer Park, NY 11729 100 µH * RL-1284-100-43 NP5916 *Contact Manufacturer 150 µH 52625 RL-1284-150-43 NP5917 220 µH 52626 RL-1284-220-43 NP5918/5919 European Source Note 3: NPI/APC +44 (0) 634 290588 330 µH 52627 RL-1284-330-43 NP5920/5921 470 µH 52628 RL-1284-470-43 NP5922 47 Riverside, Medway City Estate 680 µH 52629 RL-1283-680-43 NP5923 Strood, Rochester, Kent ME2 4DP. UK 1000 µH 52631 RL-1283-1000-43 * 1500
in „Iverting Buck Boost -5V“ · Analoge Elektronik und Schaltungstechnik ·
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Sicherheitshandbuch.pdf
, nicht falls Abweichungen gegen- aber der MaschRL über der nationalen Vorschrift vorhanden ab 01.01.1995 der MaschRL; EG-Konformi- ohne zeitliche Begrenzung enfällt täts-Erklärung liegt vor, CE-Kennzeichnung ist vorhanden 1)ohne Übergangsregelung für
in „Frequenzumrichter für Seilzuganlage“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
partlist.txt
rcl (22.5425 100.0125) MR180 C15 100n C025-024X044 rcl (22.5425 51.435) R180 C16 100n C0805 rcl (17.78 100.0125) MR180 C17 10µ E2-4 rcl (42.8625 106.045) R270 C18 100µ E2,5-6 rcl (50.165 117.475) R90 C19 100n C0805 rcl (37.7825 108.585) MR180 C20 100n C0805 rcl (31.4325 111.125) MR90 C21 100n C0805 rcl
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·