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OPA128KM.pdf
ORDERING INFORMATION TEMPERATURE BIAS CURRENT, Top View MODEL PACKAGE RANGE max (fA) Substrate and Case OPA128JM TO-99 0°C to +70°C ±300 8 OPA128KM TO-99 0°C to +70°C ±150 Offset +V Trim 1 7 CC OPA128LM TO-99 0°C to +70°C ±75 OPA128SM TO-99 –55°C to +125°C ±150 –In 2 OPA128 6 Output PACKAGE INFORMATION 3 5 Offset PACKAGE DRAWING +In Trim (1) 4 MODEL PACKAGE NUMBER –VCC OPA128JM TO-99 001 OPA128KM TO-99 001 OPA128LM TO-99 001 ABSOLUTE MAXIMUM RATINGS OPA128SM TO-99 001 NOTE: (1) For detailed drawing and dimension table, please see end of data Supply ...................
in „OPA 128 KM - veraltet?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
opa128lm.pdf
BURR-BROWNdoesnotauthorizeorwarrant any BURR-BROWN product for use in life support devices and/or systems. ® OPA128 2 ELECTRICAL (FULL TEMPERATURE RANGE SPECIFICATIONS) At VCC= ±15VDC and TA= TMINnd TMAX, unless otherwise noted. OPA128JM OPA128KM OPA128LM OPA128SM PARAMETER CONDITIONS MIN TYP MAX MIN TYP MAX MIN
in „Verkaufe 15 x OPA128LM“ · Markt ·
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PDF
Designing_Photodiode_Amplifier_Circuits.pdf
® DESIGNING PHOTODIODE AMPLIFIER CIRCUITS WITH OPA128 The OPA128 ultra-low bias current operational amplifier RS achieves its 75fA maximum bias current without compro- mise. Using standard design techniques, serious perfor- C mance trade-offs were required
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PDF
Fotodiode_applications.pdf
® DESIGNING PHOTODIODE AMPLIFIER CIRCUITS WITH OPA128 The OPA128 ultra-low bias current operational amplifier RS achieves its 75fA maximum bias current without compro- mise. Using standard design techniques, serious perfor- C mance trade-offs were required
in „Beschaltung von Photodioden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Fotodiode_applications.pdf
® DESIGNING PHOTODIODE AMPLIFIER CIRCUITS WITH OPA128 The OPA128 ultra-low bias current operational amplifier RS achieves its 75fA maximum bias current without compro- mise. Using standard design techniques, serious perfor- C mance trade-offs were required
in „Suche Strom-Widerstandswandler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Photodiode2.pdf
for the basic current-to- o 125 OPA128 voltage converter of Figure 1b including the effects of the N OPA111/OPA2111 p 100 Resistor noise gain represented in Figure 2b. Plotted are total output u 75 (for OPA111 Bandwidth) noises for three
in „Beschaltung von Photodioden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EKG_usw_Informationformedicalapplications_von_TI.pdf
channels. OPA380 Digital OPA380 Output Multiplexer ADS8383 OPA380 CT scanner application using the OPA380 and the ADS8383. The DDC112 is a complete two-channel solution for measuring photo- from 50 pC to 1000 pC.
in „EKG Schaltung Neuling“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
OPA847.lib.txt
Supply * | | | | | Negative Supply * | | | | | | * | | | | | | * | | | | | | * | | | | | | .SUBCKT OPA847_Model + - Dis Out V+ V- .PARAM x1 = 0.25 .PARAM x2 = {x1*2} .PARAM x6 = {x2*3} .PARAM x24 = 3 .PARAM x30 = {x2*15} .PARAM x60 = {x30*2} .PARAM x128 = 16 Q_Q1 11 $N_0001 $N_0002 PNP8 {x24} Q_Q47 10
in „Ltspice Model einbinden?“ · Analoge Elektronik und Schaltungstechnik ·
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ina128.pdf
− Constantan − Figure 6. Thermocouple Amplifier with RTD VO Cold-Junction Compensation V IN RG INA128 + Ref R C 1 1 V IN 1M Ω − R1 I + @ G 0.1µF O R 1 VIN RG INA128 + Ref IB −3dB= 1 OPA130 2 R 1 1 = 1.59Hz A 1 O A I ERROR Load 1 B OPA177 ± 1.5nA OPA131 ± 50pA Figure 5. AC-Coupled Instrumentation Amplifier OPA602 ± 1pA OPA128 ± 75fA Figure 7. Differential Voltage to Current Converter RG= 5.6kΩ 2.8kΩ G = 10 VO LA R G/2 INA128 RA Ref 2.8kΩ 390kΩ V VG G 1/2 1/2 OPA2131 NOTE: Due to the INA128’s current-feedback
in „Probleme Spannungsmessung mit INA 128“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ina105.pdf
dominate the noise performance. For these applications, using the OPA111 or dual OPA2111 FIGURE 2. Offset Adjustment. FET input op amp will provide lower noise performance. For lower cost use the OPA121 plastic. To construct an electrometer use the OPA128. R R GAIN CMRR MAX NOISE AT 1kHz INA105BM 1 2 A1, 2 ( ) ( ) (V/V) (dB) B (nV/√HZ) R R OPA27A 50.5 2.5k 100 128 40nA 4 –In 2 1 2 5 OPA111B 202 10k 100 110 1pA 10 V2 OPA128LM 202 10k 100 118 75fA 38 25k 25k 6 FIGURE 4. Precision Instrumentation Amplifier. V 0 R R +In 3 3 4 1 V3 INA105 25k
in „"Hallsonde für Oszilloskop" im Eigenbau?!“ · Analoge Elektronik und Schaltungstechnik ·
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Current_Ref._100uA.pdf
N • 100. FIGURE 9. Op Amp Offset Adjustment Circuits. ® REF200 8 R2 +VS 100µA NOTE: (1) Burr Brown OPA602 or OPA128 EXAMPLES 0.01µF (1) R 1 R 2 IOUT OUT = N • 100µA R 1 100 10M 1nA Use OPA128 (N • 2 ) 10k 1M 1 A R 1 10k 1k 1mA I = N • 100µA (N • R2) OUT (1) 0.01µF 100µA R 2 –V S (a) (b) FEATURES: (1)
in „Stromreferenz Beschaltung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADS830E_8Bit_60MHz__BB.pdf
from the Internal Top (REFT) and Bottom Reference (REFB). The OPA680 can be used in place of the OPA681 if a voltage feedback amplifier is preferred. +5V 1k +5V R REFT RSEL +VS V 24.9 0.1 F +3.0V IN OPA642 IN 47pF –5V ADS830 R F 402 1k CM IN RG 0.1µF REFB 402 +2.0V
in „Oszilloskop mit AVR“ · Mikrocontroller und Digitale Elektronik ·
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ina105.pdf
dominate the noise performance. For these applications, using the OPA111 or dual OPA2111 FIGURE 2. Offset Adjustment. FET input op amp will provide lower noise performance. For lower cost use the OPA121 plastic. To construct an electrometer use the OPA128. R R GAIN CMRR MAX NOISE AT 1kHz INA105BM 1 2 A1, 2 ( ) ( ) (V/V) (dB) B (nV/√HZ) R R OPA27A 50.5 2.5k 100 128 40nA 4 –In 2 1 2 5 OPA111B 202 10k 100 110 1pA 10 V2 OPA128LM 202 10k 100 118 75fA 38 25k 25k 6 FIGURE 4. Precision Instrumentation Amplifier. V 0 R R +In 3 3 4 1 V3 INA105 25k
in „Spannungs / Strom Wandler mit Offset versehen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ads830.pdf
from the Internal Top (REFT) and Bottom Reference (REFB). The OPA680 can be used in place of the OPA681 if a voltage feedback amplifier is preferred. +5V 1kΩ +5V R REFT RSEL +V S V 24.9Ω 0.1µF +3.0V IN OPA642 IN 47pF –5V ADS830 R F 1kΩ 402Ω CM IN RG 0.1µF REFB 402Ω
in „USB Speicher-Oszilloskop (Anfängerhilfe)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Vergleich.pdf
polling, supports single or dual resistor scheme. - Multi-input channel, optional multi-stage gain OPA - Support high-speed mode to increase slew rate - 2 output channels, optional ADC pin 1 group of OPA and comparator: PGA 2-group analog voltage comparator CMP: - P-side supports 3-channel polling connected
in „CH32V006 und CH32V007 von WCH“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AB-064.pdf
a 100V step. Dielectric ) 200 Sample C ( VDS= 0V n 100V i r Step Input C 100 VOUT= 1/C ∫ idt g 90 OPA k 80 L 70 t 60 G Thermal and STANDARD DIELECTRIC-EVALUATION SCHEMES can prove disas- Noise Threshold trous to the op amp they employ. If the dielectric under test shorts, the 10 resulting high voltage
in „Ersatz für BAV45“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ads830.pdf
from the Internal Top (REFT) and Bottom Reference (REFB). The OPA680 can be used in place of the OPA681 if a voltage feedback amplifier is preferred. +5V 1kΩ +5V R REFT RSEL +V S V 24.9Ω 0.1µF +3.0V IN OPA642 IN 47pF –5V ADS830 R F 1kΩ 402Ω CM IN RG 0.1µF REFB 402Ω
in „ads830 ad wandler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ads831.pdf
From the Internal Top (REFT) and Bottom Reference (REFB). The OPA680 can be used in place of the OPA681 if a voltage feedback amplifier is preferred. +5V 1kΩ +5V REFT RSEL +VS RS +3.0V VIN 24.9Ω 0.1µF OPA642 IN 47pF –5V ADS831 RF 402Ω 1kΩ CM IN 0.1µF RG REFB 402Ω
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Texas_Instruments_INA105_Precision_Unity_Gain_Differential_Amplifier.pdf
dominate the noise performance. For these applications, using the OPA111 or dual OPA2111 FIGURE 2. Offset Adjustment. FET input op amp will provide lower noise performance. For lower cost use the OPA121 plastic. To construct an electrometer use the OPA128. R R GAIN CMRR MAX NOISE AT 1kHz INA105BM 1 2 A1, 2 ( ) ( ) (V/V) (dB) B (nV/√HZ) R R OPA27A 50.5 2.5k 100 128 40nA 4 –In 2 1 2 5 OPA111B 202 10k 100 110 1pA 10 V2 OPA128LM 202 10k 100 118 75fA 38 25k 25k 6 FIGURE 4. Precision Instrumentation Amplifier. V 0 R R +In 3 3 4 1 V3 INA105 25k
in „INA105 Invertierungsproblem“ · Analoge Elektronik und Schaltungstechnik ·
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Class-D_PWM_Amplifier_V2_0.pdf
80V - 2 U15 D11 1 1k OPA1655 680R V_Fb 1 D10 R57 5 k 3 3 R55 R56 3 SN74LV+5V17DBV 100k 1N4148WS R 2 3 + R61 U16A Q9 + U12A 5 10R GND D12 S LM358 1 BC848 1 V_Ref R58 2 V 4 BAT42W-V D13 D14 W CLIP1 4 OPA1656 10k 690k N R63 R64
in „Class D Amp. Schaltplan überprüfen“ · Analoge Elektronik und Schaltungstechnik ·
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opa2134.pdf
Documentation Feedback Copyright © 1997–2015, Texas Instruments Incorporated Product Folder Links: OPA134 OPA2134 OPA4134 OPA134,OPA2134,OPA4134 www.ti.com SBOS058A –DECEMBER 1997–REVISED OCTOBER 2015 5 Pin Configuration and Functions OPA134: P and D Packages 8-Pin PDIP and 8-Pin SOIC OPA2134: P and
in „Unerwünschtes Rauschen bei Allpassfiltern“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Devices.txt
1XRJ45_MM_JACK 5 Z80PIO 5 Z80CTC 5 XO-14 5 UDN2981AN 5 TRIM_EU-LI10 5 TPPAD1-20 5 TLC5921DAP 5 S1D13506_128 5 R-TRIMM64P 5 R-SMD1206 5 R-EU_M5923 5 RESEU-10@2 5 POT-TRIM 5 PN61729-S 5 PINHD-2X2 5 PINHD-1X9 5 NPN-TRANSISTOR_SOT89 5 NME 5 ML40 5 ML10E 5 MEGA8515-P 5 MEGA16-A 5 MEGA128-A 5 M02 5 LSG 5 JP2QE
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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Datei
Values.txt
1,0µF 6 0R47/2W 6 0R1 6 0.1µF 6 0,1µ 6 ? 5 UDN2981AN 5 TPPAD1-20 5 TLC5921DAP 5 TIC236M 5 S1D13506_128 5 Power 5 PORTD 5 PN61729-S 5 MEGA8515-P 5 MEGA16-A 5 MEGA128-A 5 JTAG 5 FERRIT0805 5 Err 5 Display 5 BC517 5 BC516 5 BC237 5 BAT85 5 BAS70 5 BAS16 5 AT90S8535P 5 8,8k 5 8,87k 5 860 5 8,2k 5 820 Ohm
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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PDF
Tame_Photodiodes_with_OP-Amp_Bootstrap_-_Burr_Brown.pdf
diode. If the load imped- age. (Request PDS-653.) IP R1 P R1 R1 100M 1M 1M CD R3 44BH05M 270pF CD 20.5 OPA128 OPA128 44BH05M 270pF C1 0.068µF R2 R2 IO 100k O 100k IO= R1IP R1+R 2 R1 R2 O = 1 + (2R3 ) R IP EL ZL R1 EL ZL 2 CB CB> R CD CB 1 2 for f2R C 3 1 FIGURE 1. Basic Photodiode Circuit. FIGURE 2. Bootstrapped
in „Strom- Spannungswandlerschaltung Verständnisfrage“ · Analoge Elektronik und Schaltungstechnik ·
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kicad_8450_dcm_liste_neu_v3.pdf
-20PU PDIP14, 2k Flash, 128B SRAM, 128B EEPROM, dW ATTINY24-20SSU SO14, 2k Flash, 128B SRAM, 128B EEPROM, dW ATTINY24A-MMH VQFN20, 2k Flash, 128B SRAM, 128B EEPROM, dW ATTINY24A-MU QFN/MLF20, 2k Flash, 128B SRAM, 128B EEPROM,
in „KiCAD Eeschema, Bibliotheksdokumentation *.dcm als PDF-Datei“ · Platinen ·
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PDF
AD8610_8620.pdf
of 200 kHz. The AD8610/AD8620 have much less ringing than the OPA627 with heavy capacitive loads. VS= ±5V ) RL= 10kΩ I CL= 10,000pF / m 0 ) ( I E / A V T 0 O ( V E G T L VS= ±5V 7 O RL= 10kΩ - V CL= 2µF 7 0 TIME (20µs/DIV) 0 3 Figure47.OPA627CapacitiveLoadDrive,A
in „Regelbare Stromqulle verstehen“ · Analoge Elektronik und Schaltungstechnik ·
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INA114.pdf
With Cold Junction Compensation. ® 11 INA114 2.8k V LA R INA114 O RA G/2 Ref 2.8k G = 10 390k 1/2 OPA2604 1/2 10k RL OPA2604 390k FIGURE 10. ECG Amplifier With Right-Leg Drive. – +10V V O VIN R G INA114 + Ref R 1 G = 500 C 1 1M Bridge 0.1µF R VO G INA114 100 Ref 1 –3dB= OPA602 2πR1C 1 = 1.59Hz FIGURE
in „Genaue Funktion eines Schaltungsteiles“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ina114.pdf
With Cold Junction Compensation. ® 11 INA114 2.8k V LA R INA114 O RA G/2 Ref 2.8k G = 10 390k 1/2 OPA2604 1/2 10k RL OPA2604 390k FIGURE 10. ECG Amplifier With Right-Leg Drive. – +10V V O VIN R G INA114 + Ref R 1 G = 500 C 1 1M Bridge 0.1µF R VO G INA114 100 Ref 1 –3dB= OPA602 2πR1C 1 = 1.59Hz FIGURE
in „"Hallsonde für Oszilloskop" im Eigenbau?!“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
combined_comparison.pdf
are abbreviated. Example:A:ADC,A7 (ADC_IN7) T: TIME, T2CH4 (TIM2_CH4) U: USART, URX (USART_RX) OP: OPA, OPO (OPA_OUT), OPP1 (OPA_P1) OSCI (OSCIN) OSCO (OSCOUT) SDA(I2C_SDA) SCL(I2C_SCL) SCK (SPI_SCK) NSS (SPI_NSS) MOSI (SPI_MOSI) MISO (SPI_MISO) AETR(ADC_ETR) 2.2 Pin description Table 2-1 Pin definitions
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Datei
WCU_Kilobot_Schematic.txt
134 -402 -90 -424 -144 -360 -134 T-500 -300 0 3 140 -90 0 1 -20 -40 0 9 PINVRTS P-310 10 0 1 0 0 0 0 128 T-500 300 0 1 140 -80 0 1 -20 -40 0 9 PINVRTS P-1140 20 0 0 0 0 0 0 128 T0 0 0 1 88 40 0 1 230 0 0 8 PIN P-500 10 0 1 0 0 0 0 128 NPN-H 32000 32000 100 10 100 10 4 6 0 3 0 0 TIMESTAMP 2016.02.26.19.17.50
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PDF
waldbreitbach.pdf
Schluchzen? näher. »Hallo!« Das Christkind f ü r 'sC h r i s t k i n d Anton. »Ja, wer mag das wohlOpa auf. In seinen Augen standen sein?«, wollte Flo wissen. »SchauTränen. Der kleine Leon faßte Florian und Leon rannten um die Wette zur Tür. »Opa, Opa«, mal, es kommt von dort«, stellte sich ein Herz
in „Trafo für mein nächstes Netzteil: Auf die Dauer hilft nur Power“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Platinfuchs_IIa_Schematic-and-Layout.pdf
aGND a3V3 ADA4522 ADA4522 a3V3 5 3 Icel 7 C46 C47 1 Ucel 6 22nF 220pF 2 Replacement: Replacement: OPA2188 OPA2188 OPA2180 OPA2180 I-Shunt2 U-Line2 % % % % aGND aGND R48 % C49 R50 R51 R52 R53 C48 % R49 aGND 82K 100pF 680R 220R 22K 68K 100pF 82K U8B R54 30K for V=33,333 => 15Amax R55 U8C 56K % % 56K -
in „Platinfuchs IIa: Isolierter, bidirektionaler 45W DC/DC Wandler zum Laden/Entladen eines Liion-Akkus“ · Projekte & Code ·
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PDF
INA114.pdf
With Cold Junction Compensation. ® 11 INA114 2.8k V LA R INA114 O RA G/2 Ref 2.8k G = 10 390k 1/2 OPA2604 1/2 10k RL OPA2604 390k FIGURE 10. ECG Amplifier With Right-Leg Drive. – +10V V O VIN R G INA114 + Ref R 1 G = 500 C 1 1M Bridge 0.1µF R VO G INA114 100 Ref 1 –3dB= OPA602 2πR1C 1 = 1.59Hz FIGURE
in „Differnezverstärker für Strommessung?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
INA114.pdf
With Cold Junction Compensation. ® 11 INA114 2.8k V LA R INA114 O RA G/2 Ref 2.8k G = 10 390k 1/2 OPA2604 1/2 10k RL OPA2604 390k FIGURE 10. ECG Amplifier With Right-Leg Drive. – +10V V O VIN R G INA114 + Ref R 1 G = 500 C 1 1M Bridge 0.1µF R VO G INA114 100 Ref 1 –3dB= OPA602 2πR1C 1 = 1.59Hz FIGURE
in „Messen von Mikrofonpegeln“ · Mikrocontroller und Digitale Elektronik ·
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Datei
02_INIT_LiIon.INC
S.128 bcf WPUB,VREF ;RB3/AN9 (09) All weak pullups are DISABLED ; BANKSEL PORTA ;ADC_PORT, SPI_PORT,KEY_PORT clrf PORTA BANKSEL LATA clrf LATA BANKSEL TRISA bcf TRISA,RA7 ;RA7(16) n.c OUT bcf TRISA,RA6 ;RA6
in „PIC16F1827-MCP4151 TMR0-Interrupt wird immer wieder nicht ausgefuehrt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PSpice_LibraryguideOrCAD.pdf
OPA124 OPA124/BB BURR_BRN.OLB Burr-Brown Corp. Operational Amplifier OPA124 OPA124E/BB BURR_BRN.OLB Burr-Brown Corp. Operational Amplifier OPA128 OPA128/BB BURR_BRN.OLB Burr-Brown Corp. Operational Amplifier OPA128 OPA128E/BB BURR_BRN.OLB Burr-Brown Corp. Operational Amplifier OPA129 OPA129/BB BURR_BRN.OLB Burr-Brown Corp. Operational Amplifier OPA129 OPA129E/BB BURR_BRN.OLB Burr-Brown Corp. Operational Amplifier
in „pSpice - Bauteil hinzufügen.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ina114.pdf
With Cold Junction Compensation. ® 11 INA114 2.8k V LA R INA114 O RA G/2 Ref 2.8k G = 10 390k 1/2 OPA2604 1/2 10k RL OPA2604 390k FIGURE 10. ECG Amplifier With Right-Leg Drive. – +10V V O VIN R G INA114 + Ref R 1 G = 500 C 1 1M Bridge 0.1µF R VO G INA114 100 Ref 1 –3dB= OPA602 2πR1C 1 = 1.59Hz FIGURE
in „OP INA114 Regelt nur bis 2,25V am Ausgang“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MC51F7424_V1.2.2.pdf
数字全 功能符号 /QFN32 /SSOP24 /SOP20 引脚名 属性 映射 A1 A1 A1 非全映射数字功能 模拟功能 AIN4 1 1 20 P2.6 I/O √ INT11 CMP03 OPA03 AIN3 2 2 1 P2.7 I/O √ INT10 CMP02 OPA02 3 3 2 VDD VDD - - - 4 4 3 GND GND - - - 5 - - NC - - - - 6 - - NC - - - - INT02 AIN1 7 5 4 P3.2 I/O √ (nRST) 注 1 CMP00 OPA00 INT03 8 6 5 P3.3 I/O √ AIN0 [CLK0
in „Lidl kann auch anders (Lötstation)“ · Mechanik, Gehäuse, Werkzeug ·
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Datei
Serial_Plot.txt
= 7 Calibration run 2 Channel 0: ADC average value = 127 Diff = -1 Channel 1: ADC average value = 128 Diff = 0 Channel 2: ADC average value = 128 Diff = 0 Channel 3: ADC average value = 128 Diff = 0 Calibration run 3 Channel 0: ADC average value = 128 Diff = 0 Range 10 calibration complete *********
in „Wittig(welec) DSO W20xxA Open Source Firmware (Teil5)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
INA121.pdf
FIGURE 7. High-Pass Input Filter. FIGURE 8. Galvanically Isolated Instrumentation Amplifier. V IN OPA277 C – 1 V O 50nF V IN RG INA121 + Ref R 1 C1 1M R 1 0.1µF 10k INA121 R R G 2 1 –3dB= Ref OPA277 2πR 1 1 VIN IL= • = 1.59Hz G R 2 Load 50k Make G ≤ 10 where G = 1 +R G FIGURE 9. AC-Coupled Instrumentation
in „Instrumentenverstärker INA121 hat zu hohe Verstärkung“ · Analoge Elektronik und Schaltungstechnik ·
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MSP430F2xxx_ppt.pdf
Price F2001 1KB 128B WDT+/A2 Comp_A $0.55 F2011 2KB 128B WDT+/A2 Comp_A 0.70 F2002 1KB 128B WDT+/A2 ADC10 9 0.99 F2012 2KB 128B WDT+/A2 ADC10 9 1.15 F2003 1KB 128B WDT+/A2 SD16_A 9 1.49 F2013 2KB 128B WDT+/A2 SD16_A 9
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PDF
WOMA_WM8040-XL_Mooardskiste_-Schaltplang.pdf
GD +5V 10uF 5V 20mA GND 1 Relais 3 2 GND 1 e GND 6 s 0 3 R f 2 PTC 2 5 V o 50mA 1 Uvar(U+ bis U-) 2 OPA548 6 F102 1 4 3 C612 + i 7 3 R . 0 000 110 o 4 C613 7 cΩk 0 1 +5V USP2 (27VAC) C611 + 10uF P + S/E - 1 C 0.47uF 1 1uF D611 - OPV701 BC337 4 +Uin (5V) PB B AG7 E Uvar(U+ bis U-) 1 0 6 0 1 100K LED- Sp1
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40001722A.pdf
Bank 9 i T 48Ch c to — Unimplemented — — n 49Fh o Bank 10 y n 5—Ch — Unimplemented — — . 510h 511h OPA1CON OPA1EN OPA1SP — OPA1UG — — OPA1PCH<1:0> 00-0 --00 00-0 --00 512h — — Unimplemented — — 514h 515h OPA2CON OPA2EN OPA2SP — OPA2UG — — OPA2PCH<1:0> 00-0 --00 00-0 --00 516h r 51Fh — Unimplemented —
in „PIC16(L)F1703 low voltage Programmierung?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
board.pdf
-46 dBm = 1.1 mVrms 4 3 1 6 1 NC DIS 8 HM1522 2 EN Vcc 7 L? 149 MHz L? G V1 7 J2 F C J3 7 V2 2 IN- OPA695 V+ 7 5 3 3 6 1 5 1 3 5 ? 9 2 1 2 9 ? 5 3 6 GND OUT+ IN+ U? OUT+ SEC2 PRI2 IF_RAW IF_RAW F ? IF_FILTERED IF_FILTERED F ? RFIN RFOUT F ? IF_AFTER_PREAMP IF_AFTER_PREAMP F ? J1 U 6GND GND 6 U J1 F ?
in „HI-Empfänger: Könnte das so funktionieren?“ · HF, Funk und Felder ·
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PDF
board.pdf
dBm = 0.6mVrms G V1 7 J2 F ? J3 7 V2 2 7 5 HM1522 3 3 EN Vcc 6 L? 1 5 L? 1 3 5 9 2 1 C 2 9 5 3 IN- OPA695 V+ 6 GND OUT+ IN+ U? OUT+ SEC2 PRI2 IF_RAW IF_RAW F ? IF_FILTERED IF_FILTERED F ? RFIN RFOUT F ? IF_AFTER_PREAMP IF_AFTER_PREAMP F ? J1 U 6ND GND 6 U J1 F ? IF_AFTER_ATT1 IF_AFTER_ATT1 F ? IN+ U?
in „HI-Empfänger: Könnte das so funktionieren?“ · HF, Funk und Felder ·
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Bild
Frequenzgang Messung
180dB 160dB 140dB 120dB 100dB 80dB 60dB 40dB 20dB 0dB -20dB -40dB -60dB -80dB Test_Netzwerk_OPA189.esc Cursor 1 Freq: 3,015873MHz Mag: -125,75691dB Phase: -128,40373° Group Delay: 21,40391ns Cursor 2 Mag: -60° Freq: - Mag: - Phase: - Group Delay: - 100Hz 1kHz 10kHz 100kHz 1MHz 10MHz
in „Netzteil-Regelung Stabilitätsanalyse "Loop Gain"“ · Analoge Elektronik und Schaltungstechnik · · Oszi-Bilder
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Bild
Blockschaltbild des CH32H417 Mikrocontrollers
CH32H417 960KB Flash 896KB SRAM ITCM 128KB DTCM 256KB RISC-V F5 400MHz RISC-V F3 144MHz PDUSB USB 3.0 Host/Device 5Gbps PHY USB 2.0 Host/Device HS 480Mbps PHY USB 2.0 OTG FS Host/Device PD Type-C DRP Source Sink GPIO 95 MAC Ethernet 10/100M PHY 12bit ADC 2 TouchKey 16 12bit DAC 2 10bit HSADC 1 OPA 3 CMP 1 GPHA 1 LTDC 1 FMC 1 U(S)ART 8 I2C 4 I2C 1 SPI 4 DFSDM 1 ECDC 1 RNG 1 QuadSPI 2 I2S 2 SAI 1 CAN 3 UHSIF 1 DVP 1 SDMMC 1 SDIO 1 SWPMI 1 PIOC 1 SerDes 1 GPTM 8 Advanced TM 2 Basic TM 2 LPTIM 2
in „ESP32-E22, schneller Chip aus dem Hause WCH, ressourcensparendes WiFi 7 uvam“ · Mikrocontroller und Digitale Elektronik · · Diagramme
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ina121.pdf
FIGURE 7. High-Pass Input Filter. FIGURE 8. Galvanically Isolated Instrumentation Amplifier. V IN OPA277 C – 1 V O 50nF V IN RG INA121 + Ref R 1 C1 1M R 1 0.1µF 10k INA121 R R G 2 1 –3dB= Ref OPA277 2πR 1 1 VIN IL= • = 1.59Hz G R 2 Load 50k Make G ≤ 10 where G = 1 +R G FIGURE 9. AC-Coupled Instrumentation
in „Pulsmessung über Kontaktflächen“ · Mikrocontroller und Digitale Elektronik ·
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KSGER_STM32_Ver2_1S_schematic_rev__1_floobydust.pdf
L D C 27 PB14 VDD_2 36 D7 RS1M RS1M S S G V OLED_SCL 26 PB13 VDD_3 48 C6 SD103AWS OLED_SDA 25 PB12 128x64 22 9 Q4 5 6 7 8 Q3 5 6 7 8 1.3" OLED 21 PB11 VDDA D6 Si4800 Si4800 46 PB10 SD103AWS R20 R14 Rear view 45 PB9 1 CR2032 PUMP_SOL 470R 4 PUMP_MOT 470R 4 PB8 VBAT PUMP_SOL 43 7 +3.3V PUMP_MOT 42 PB7
in „Lötstation Quikko / Ksger T12 dtl Vorteil?“ · Mechanik, Gehäuse, Werkzeug ·
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ads1115.pdf
otherwise noted) 12 35 FSR = ±2.048 V 10 30 860 SPS ) ) 25 V 8 V ( DR = 860 SPS ( s i 20 o 6 o N DR = 128 SPS N 15 S M R 4 R 128 SPS DR = 8 SPS 10 2 5 8 SPS 0 0 -0.5 -0.4 -0.3 -0.2 -0.1 0 0.1 0.2 0.3 0.4 0.5 2.0 2.5 3.0 3.5 4.0 4.5 5.0 5.5 Input Voltage (V) Supply Voltage(V) FSR = ±0.512 V FSR = ±2.048
in „Raspberry ADC 0-5V Input“ · Mikrocontroller und Digitale Elektronik ·