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DS_L6205N.pdf
VBOOT VCP CHARGE PUMP OVER OCD A CURRENT DETECTION OUT1A OUT2A THERMAL 10V 10V PROTECTION ENA GATE INA LOGIC SENSEA INA VOLTAGE 10V REGULATOR 5V BRIDGE A CURRENT OCD B DETECTION VSB OUT1B GATE OUT2B ENB LOGIC IN1 SENSEB B INB BRIDGE B D99IN1091A April 2002 1/18 L6205 ABSOLUTE MAXIMUM RATINGS Symbol Parameter
in „1. Schaltung Mosfet Treiber“ · Analoge Elektronik und Schaltungstechnik ·
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MCP6V11U_OpAmp.pdf
VDD= 5.5V )155 ( B150 t ( e001n i145 r G VDD= 5.5V u p140 VDD= 1.6V t o135 s100p I - f OS n130 , p125 a O B 10p I C120 u B D p 115 I 110 1p -50 -25 0 25 50 75 100 125 25 35 45 55 65 75 85 95 105 115 125 Ambient Temperature (°C) Ambient Temperature (°C) FIGURE 2-13: DC Open-Loop Gain vs. FIGURE 2-16:
in „OpAmps: Maximale Widerstandswerte“ · Analoge Elektronik und Schaltungstechnik ·
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opa376.pdf
i m o -50 u A h Q 600 10 ) S -75 500 0 -100 2.0 2.5 3.0 3.5 4.0 4.5 5.0 5.5 -50 -25 0 25 50 75 100 125 150 Supply Voltage (V) Temperature (°C) Figure 9. Figure 10. INPUT BIAS CURRENT vs TEMPERATURE OUTPUT VOLTAGE vs OUTPUT CURRENT 1000 3 V = ±2.75 900 S 2 ) 800 ( 700 V t ( 1 e 600 g +150°C +125°C +25
in „technische anforderungen“ · Analoge Elektronik und Schaltungstechnik ·
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opa4376.pdf
cable. AC coupling blocks the different dc voltage levels from each other on each end of the cable. An INA163 instrumentation amplifier provides differential inputs and receives the balanced audio signals from the cable. The INA163 gain may be set from 0 dB to 80 dB by selecting the R value. The INA163 circuiG
in „Operationsverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PSpice_LibraryguideOrCAD.pdf
INA105 INA105/BB BURR_BRN.OLB Burr-Brown Corp. Operational Amplifier INA105 INA105E/BB BURR_BRN.OLB Burr-Brown Corp. Operational Amplifier INA106 INA106/BB BURR_BRN.OLB Burr-Brown Corp. Operational Amplifier
in „pSpice - Bauteil hinzufügen.“ · Analoge Elektronik und Schaltungstechnik ·
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mcp6004.pdf
1 5 VSS PDIP, SOIC, TSSOP VDD 2 + - V IN + V + V – VOUTA 1 14 VOUTD IN 3 4 IN A D MCP6001 V OUT V INA 2 - + + - 13 VIND MCP6001U V + 12 V + - INA 3 IND SOT-23-5 VDD 4 11 VSS V SS VIN 1 + 5 VDD V INB 5 10 VINC V SS 2 - V INB 6 B+ C - 9 VINC R1 VIN 3 4 VOUT V V R 2 OUTB 7 8 OUTC R 1 Gain = 1 + -- V R
in „Nichtinvertierender Operationsverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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isow7841.pdf
ISOW7841FDWE ACTIVE SOIC DWE 16 40 RoHS & Green NIPDAU Level-3-260C-168 HR -40 to 125 ISOW7841F ISOW7841FDWER ACTIVE SOIC DWE 16 2000 RoHS & Green NIPDAU Level-3-260C-168 HR -40 to 125 ISOW7841F ISOW7842DWE ACTIVE SOIC DWE 16 40 RoHS & Green NIPDAU Level-3-260C-168 HR -40 to 125 ISOW7842
in „Problem mit der SPI Datenübertragung zwischen einem Arduino Portenta H7 und einem ADS8684 (ADC)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
opa128lm.pdf
1.5 0.9 1.5 0.9 1.5 0.9 1.5 mA TEMPERATURE RANGE Specification Ambient Temp. 0 +70 0 +70 0 +70 –55 +125 °C Operating Ambient Temp. –55 +125 –55 +125 –55 +125 –55 +125 °C Storage Ambient Temp. –65 +150 –65 +150 –65 +150 –65 +150 °C θ Junction-Ambient 200 200 200 200 °C/W NOTES: (1) Offset voltage, offset
in „Verkaufe 15 x OPA128LM“ · Markt ·
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Technical_Information_Isabellenhuette.pdf
Diameter Resistance Surface Load Surface Load Surface Load Surface Load Surface Load in mm in Ω/m I inA in W/cm² I inA in W/cm² I in in W/cm² I inA in W/cm² I inA in W/cm² 0,020 1560 0,0270 1,82 0,0342 2,92 0,0410 4,20 0,0479 5,69 0,0724 13,0 0,022 1290 0,0305 1,75 0,0381 2,74 0,0450 3,82 0,0534 5,31
in „Temperatur des Heizdrahtes berechnen“ · Analoge Elektronik und Schaltungstechnik ·
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AD8606.pdf
1 −40°C to +125°C 8-Lead MSOP RM-8 B6A# AD8606ARMZ-REEL 1 −40°C to +125°C 8-Lead MSOP RM-8 B6A# AD8606AR −40°C to +125°C 8-Lead SOIC_N R-8 AD8606AR-REEL −40°C to +125°C 8-Lead SOIC_N R-8 AD8606AR-REEL7 −40°C to +125
in „Aktives Filter (Differential), Uref“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ISO124P_datasheet.pdf
MAX UNIT Supply voltage ±18 V V 100 V IN Continuous isolation voltage 1500 Vrms Junction temperature 125 °C Output short to common Continuous Storage temperature,stg –40 125 °C (1) Stresses beyond those listed under Absolute Maximum Ratings may cause permanent damage to the device. These are stress ratings
in „Schaltungsaufbau Isolierverstärker für Analogsignal mit Texas Instr. ISO124“ · Analoge Elektronik und Schaltungstechnik ·
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El_2017_0506_118-125.pdf
R4 R5 C4 3 10 11 7 7 100u 50V RB7 RB6 4 4 100n 5 VSS VCC 8 R9 R6 R1 20 3 VIN+ S1 S2 SDA IC4 0 R 7 4 INA219AIDR 7 1 0 +5V 2 SCL VIN– CHARGE DISCHARGE A1 GND A0 2W 1 6 2 T2 RE1 D2 D3 L1 +5V 5 4 IRF540 1N4007 VIN IC3 VSW 1N4007 100uH R8 K2 2 LT1076CT-5 1 K3 VC FB 1 R7 GND 5 3 C5 1 D4 C6 LED2 C7 220u 50V
in „Ladezustand von Li-Ion-Akku messen“ · Mikrocontroller und Digitale Elektronik ·
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Strombelastbarkeit.pdf
63 80 80 100 80 n 25 z 85 77 80 72 107 94 95 85 119 102 126 107 n 80 63 80 63 100 80 80 80 100 100 125 100 35 z 105 94 98 88 133 117 118 105 146 126 157 134 I 100 80 80 80 125 100 100 100 125 125 125 125 n 50 z 126 114 117 105 160 142 141 125 178 153 191 162 n 125 100 100 100 160 125 125 125 160 125
in „Kleiner Elektromotor wiegt 350g und zeiht 100A im Dauerbetrieb“ · Analoge Elektronik und Schaltungstechnik ·
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Strombelastbarkeit.pdf
63 80 80 100 80 n 25 z 85 77 80 72 107 94 95 85 119 102 126 107 n 80 63 80 63 100 80 80 80 100 100 125 100 35 z 105 94 98 88 133 117 118 105 146 126 157 134 I 100 80 80 80 125 100 100 100 125 125 125 125 n 50 z 126 114 117 105 160 142 141 125 178 153 191 162 n 125 100 100 100 160 125 125 125 160 125
in „32A CEE Steckdose mit 25A absichern?“ · Haus & Smart Home ·
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PDF
ADS1293_3_Kanal_24BIT_EKG_SPI_Dez_2014.pdf
M 2 1 O D S R T L L D 0.1 F D S V 1 F S T 4.096 T D 0.1 F V V C R X MHz X V IN1 + Σ∆ DigitalI CH1 InA ModulatoFilter CLK IN2 DRDYB IN3 + Σ∆ DigitalII SDO RA LA CH2 InA ModulatoFilter IN4 DIGITAL SDI CONTROL AND IN5 + MANAGEMENT SCLK InA Σ∆ Digital IN6 ModulatoFilter CSB + InA L + ALARMB RL LL WCT L
in „Warum soll ADS1293 mit einem 4,096 MHz Quarz betrieben werden?“ · Mikrocontroller und Digitale Elektronik ·
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ADS1293_3_Kanal_24BIT_EKG_SPI_.pdf
electrodes. The maximum differential input voltage range of the Sigma-Delta Modulator (SDM) behind the INA is ±1.4V, and the gain of the INA is 3.5x. Therefore, the maximum differential input voltage of the INA is ±400mV. The input common-mode voltage range (CMVR) of the INA is 0.95V to VDD-0.95V. If the
in „EKG-IS ADS1293 rückt keine Messwerte raus“ · Mikrocontroller und Digitale Elektronik ·
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5_-_STM32F_Connectivity_Line.pdf
32KHz + 4~16MHz ChipLCD Glass Storage Media 14.7456MHz Quartz (USB, SD card): MP3, WMA … S TM 32S em ina rN ov em b er2 01 0 STM32 Connectivity Line Industrial gateway implementation example CAN and Ethernet TCP/IP SW stacks STM32 Connectivity Line CORTEXTM-M3 128kB-256kB 72 MHz Flash Memory 48kB-64kB
in „STM32: Timer funktioniert nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lib-mfv.c
***************** #include <stdio.h> #define __IAR_SYSTEMS_ASM__ //#include <io4414.h> //#include "ina90.h" #define Xtal 8000000 // system clock frequency #define prescaler 1 // timer1 prescaler #define N_samples 128 // Number of samples in lookup table #define Fck Xtal/prescaler // Timer1 working frequency
in „DTMF und ATMEGA 16“ · Mikrocontroller und Digitale Elektronik ·
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rudi_____RX-V4A_TSR-400.pdf
T32A05INB1/T32A05INC0/T32A05INA0/ 143 USB_VBUS_PRT +3.3S_PON I I USB Power Feedback AINA10/PP2 144 T32A05INA1/T32A05INC1/T32A05INB0/ TEST1 +3.3S_PON I I AINA11/PP3 145 T32A06INB1/T32A06INC0/T32A06INA0/ MODE +3.3S_PON I I AINA12/PP4 T32A06INA1/T32A06INC1/T32A06INB0/ 146 AINA13/PP5 TEST2 +3.3S_PON I I T32A07INB1/T32A07INC0/T32A07INA0/ 147 STBY_LED AC O O Standby LED control INT10b/AINA14/PP6 148 T32A07INA1/T32A07INC1/T32A07INB0/ DSP2_NIC
in „Test in der Schaltung STR3A400“ · Analoge Elektronik und Schaltungstechnik ·
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RCV420.pdf
g –70 n 70 a TA= +25°C R T = +25°C R –60 e A e o 60 o M - –50 Max Rating = –40V n o T = –55°C to +125°C o TA= +125°C m –40 A m 50 m o Max Rating = 40V C e e –30 t 40 t +VS= +11.4V to +20V s g –20 P –V = –5V to –20V e S N 30 –10 11 12 13 14 15 16 17 18 19 20 –5 –10 –15 –20 11.4 Positive Power Supply
in „Frage zu 4-20mA Receiver RCV420“ · Mikrocontroller und Digitale Elektronik ·
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Phycomp.pdf
Azimuth beamwidth Omni-directional Impedance 50 W Power dissipation 1 W Operating temperature -55 to +125 C Terminations NiSn Resistance to soldering heat 260 C for 10 s Weight 0.16 g 2002 July 08 Rev.0 2 www.phycomp-components.com Phycomp Product specification Surface-mount ceramic 2.45 GHz ISM-band antenna
in „50Ohm Impedanz PCB?“ · Mikrocontroller und Digitale Elektronik ·
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LT1014.pdf
10M TA= 25°S, V = 15V 140 –55°C V S 15V TA= 25°C N 30 25°C TA= –55°S, V = 15V 120 CL = 100pF A C TA= 125°S, V = 15V ( U 20 125°C 100 N S / B R 10 ( A = –55SC, V = 5V, 0V( U I TA= 25°S, V = 5V, 0V I 80 C G G V S 5V, 0V VS= 15V I 0 E1M E 60 C A A = 125SC, V = 5V, 0VA C –10 125°C L L 40 T V V O I–20 25°C
in „Unterschied beim LT1014 ?“ · Mikrocontroller und Digitale Elektronik ·
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Current_Ref._100uA.pdf
(–3dB) Transfer 5 MHz TEMPERATURE RANGE Specification –25 +85 °C Operating –40 +85 °C Storage –40 +125 °C PIN CONFIGURATION ABSOLUTE MAXIMUM RATINGS Top View DIP/SOIC Applied Voltage .....................................................................–6V to +40V Reverse Current .....................
in „Stromreferenz Beschaltung“ · Mikrocontroller und Digitale Elektronik ·
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155762-da-01-en-LOGIK_IC_M74HC595B1R_STM.pdf
°C -55 to 125°C Unit (V) Min. Typ. Max. Min. Max. Min. Max. VIH High Level Input 2.0 1.5 1.5 1.5 Voltage 4.5 3.15 3.15 3.15 V 6.0 4.2 4.2 4.2 VIL Low Level Input 2.0 0.5 0.5 0.5 Voltage 4.5 1.35 1.35 1.35 V 6.0 1.8
in „uC + 3 Schieberegister + 7-Segmentanzeige“ · Mikrocontroller und Digitale Elektronik ·
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10134fd.pdf
C to 85°C Pin Configuration LT1013 LT1013 LT1013 TOP VIEW TOP VIEW TOP VIEW + – OUTPUT A 1 8 V+ V +INA 1 8 –INA 8 – + –IN A 2 – 7 OUTPUT B OUTPUT A 1 7 OUTPUT B V 2 7 OUTA +A A B + +IN A 3 – 6 –IN B +INB 3 + 6 V – B + –IN A 2 – + + – 6 –IN B –INB 4 – 5 OUTB V 4 5 +IN B +IN A 3 5 +IN B N8 PACKAGE 4 S8
in „LT1013 Unterschied D und P Package“ · Analoge Elektronik und Schaltungstechnik ·
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Last_board.pdf
SQICLK/ERXD2 S R13 MCLR ERXD3 4 D R45 SPI2_SS_DAC_FEIN 50 10 AN11/C2INC/RPG9/PMA2/RG9 SQICS T 11 AN45/C1INA/RPB5/RB5 SQICS A 1k 12 AN4/C1INB/RB4 AERXERR/ETXC B C14 OC4_PWM_1_FEIN-IREG19 50 13 AN3/C2INA/RPB3/RB3 ETXERR/AETX 4 9 OC1_PWM_2_GROB-IREGR12 50 14 AN2/C2INB/RPB2/RB2 EMDIO/AEMD R 3 10nf 15 CPU_PROG_PGC
in „Schaltplankontrolle Last- + HMI-Board“ · Mikrocontroller und Digitale Elektronik ·
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M43T.pdf
ACPL-M43T AutomotiveWideOperatingTemperature1MBdDigitalOptocoupler ina5-PinSurfaceMountPlasticPackage DataSheet Lead (Pb) Free RoHS 6 fully compliant RoHS6fullycompliantoptionsavailable; -xxxEdenotesalead-freeproduct Description Features The ACPL-M43T is a single channel
in „Optokoppler Berechnung max. Übertragungsfrequenz“ · Mikrocontroller und Digitale Elektronik ·
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sboa059.pdf
(with respect to –15 floating ground). With +V = 30V and V = 15V,Zoperation –50 –25 0 25 50 75 100 125 is similar to standard split supply operation. The load current (a) Temperature (°C) in this circuit, however, flows to the floating ground where it will add to the zener diode current (negative load
in „Schalter welcher bei 4 Volt bei einer Spannung von 0.75 -4V schaltet bauen“ · Analoge Elektronik und Schaltungstechnik ·
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Last_board_mixed.pdf
3 = g N P 2 IN- IN+ 7 3 * u G 5 O 3 GND REF1 6 + 2 1 R r A - 4 REF2 VS 5 = t NC OUT 1 2 1 h U e N INA240A2DR 4 O o V G B 4 3 0 v n A , a e 4 3 0 n r t w 3 3 r V V V > i , + p + p - W x n n 0 m a C 0 h 0 h 1 a n C 4 O 4 O b n v R 0 R 0 n e +8V r n ö S p g 3 0 h 0 h r S o V 4 O 4 O a i S +8V + R 0 R 0
in „Schaltplankontrolle Last- + HMI-Board“ · Mikrocontroller und Digitale Elektronik ·
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Datei
dtmf-int-8m.c
<avr/pgmspace.h> #include <stdio.h> #define __IAR_SYSTEMS_ASM__ //#include <m8515def.h> #include "ina90.h" #define Xtal 8000000 // system clock frequency #define prescaler 1 // timer1 prescaler #define N_samples 128 // Number of samples in lookup table #define Fck Xtal/prescaler // Timer1 working frequency
in „Impulswahl zu Tonwahl-Konverter“ · Mikrocontroller und Digitale Elektronik ·
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L6207_AN.pdf
PROGCL A OVER OCD OCD CURRENT A A DETECTION OUT1 A OUT2 A THERMAL 10V 10V PROTECTION ENA GATE LOGIC INA SENSE A INA VOLTAGE 10V REGULATOR 5V BRIDGE A OCDB OVER OCDB CURRENT DETECTION V SB PROGCL B OUT1 B GATE OUT2 B ENB LOGIC SENSE B INB INB BRIDGE B D99IN1088A Figure 3. L6207 block diagram. VBOOT VBOOT
in „Schrittmotor mit L6207“ · Mikrocontroller und Digitale Elektronik ·
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PDF
en.CD00004482.pdf
PROGCL A OVER OCD OCD CURRENT A A DETECTION OUT1 A OUT2 A THERMAL 10V 10V PROTECTION ENA GATE LOGIC INA SENSE A INA VOLTAGE 10V REGULATOR 5V BRIDGE A OCDB OVER OCDB CURRENT DETECTION V SB PROGCL B OUT1 B GATE OUT2 B ENB LOGIC SENSE B INB INB BRIDGE B D99IN1088A Figure 3. L6207 block diagram. VBOOT VBOOT
in „Treiberstufe fuer Faulhaber Schrittmotor“ · Mikrocontroller und Digitale Elektronik ·
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Datei
IMV-DTMF-2313.c
include <avr/io.h> #include <avr/pgmspace.h> #include <stdio.h> #define __IAR_SYSTEMS_ASM__ #include "ina90.h" #define Xtal 8000000 // system clock frequency #define prescaler 1 // timer1 prescaler #define N_samples 128 // Number of samples in lookup table #define Fck Xtal/prescaler // Timer1 working frequency
in „Impulswahl zu Tonwahl-Konverter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TC7920_B080613-1532304.pdf
are desired. Typical Application Circuit V +100V +10V 0.1µF 0.47µF 1.0µF OE VDD VH ENAB OUTA +PULSE INA 1.8 to 5.0V OUTB V NN Logic Imputs -PULSE INB -100V OUTC 1.0µF INC DAMP OUTD IND GND VSS VL Supertex MD1822 10nF Supertex TC7920 Doc.# DSFP-TC7920 Supertex inc. B080613 www.supertex.com TC7920 Ordering
in „Mosfet Gate Treiber MD1822/ TC7920“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
lm393-n.pdf
View Pin Functions PIN NO. I/O DESCRIPTION NAME PDIP/SOIC/ TO-99 DSBGA OUTA 1 A1 O Output, Channel A -INA 2 B1 I Inverting Input, Channel A +INA 3 C1 I Noninverting Input, Channel A GND 4 C2 P Ground +INB 5 C3 I Noninverting Input, Channel B -INB 6 B3 I Inverting Input, Channel B OUTB 7 A3 O Output, Channel
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PDF
tps63020.pdf
Level-1-260C-UNLIM -40 to 125 PS63020 TPS63021DSJR Active Production VSON (DSJ) | 14 3000 | LARGE T&R Yes NIPDAU Level-1-260C-UNLIM -40 to 125 PS63021 TPS63021DSJR.A Active Production VSON (DSJ) | 14 3000 | LARGE T&R Yes NIPDAU
in „ESP32-H2 will nicht schlafen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT3092fb.pdf
SOT-223 –40°C to 125°C LT3092MPST#PBF LT3092MPST#TRPBF 3092MP 3-Lead Plastic SOT-223 –55°C to 125°C LT3092ETS8#PBF LT3092ETS8#TRPBF LTFJW 8-Lead Plastic SOT-23 –40°C to 125°C LT3092ITS8#PBF LT3092ITS8#TRPBF LTFJW 8-Lead
in „Konstantstromquelle LT3092 - Widerstandswahl“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM393.pdf
View Pin Functions PIN NO. I/O DESCRIPTION NAME PDIP/SOIC/ TO-99 DSBGA OUTA 1 A1 O Output, Channel A -INA 2 B1 I Inverting Input, Channel A +INA 3 C1 I Noninverting Input, Channel A GND 4 C2 P Ground +INB 5 C3 I Noninverting Input, Channel B -INB 6 B3 I Inverting Input, Channel B OUTB 7 A3 O Output, Channel
in „Schaltung angucka“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM393.pdf
View Pin Functions PIN NO. I/O DESCRIPTION NAME PDIP/SOIC/ TO-99 DSBGA OUTA 1 A1 O Output, Channel A -INA 2 B1 I Inverting Input, Channel A +INA 3 C1 I Noninverting Input, Channel A GND 4 C2 P Ground +INB 5 C3 I Noninverting Input, Channel B -INB 6 B3 I Inverting Input, Channel B OUTB 7 A3 O Output, Channel
in „Acc-Sensor -> Filter/OPV -> ADC(µC) -> PC -> Filter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM393-N.pdf
View Pin Functions PIN NO. I/O DESCRIPTION NAME PDIP/SOIC/ TO-99 DSBGA OUTA 1 A1 O Output, Channel A -INA 2 B1 I Inverting Input, Channel A +INA 3 C1 I Noninverting Input, Channel A GND 4 C2 P Ground +INB 5 C3 I Noninverting Input, Channel B -INB 6 B3 I Inverting Input, Channel B OUTB 7 A3 O Output, Channel
in „LM393 Komparatorschaltung gescheitert“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
rfid.c
#include <avr/io.h> #include <avr/sfr_defs.h> #include <compat/ina90.h> #include <avr/interrupt.h> #include <stdlib.h> #include <avr/sleep.h> #include <inttypes.h> #ifndef F_CPU #define F_CPU 8000000UL // Systemtakt in Hz - Definition als unsigned long beachten >>
in „mega8 Dip UART != mega8 tqfp UART ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datasheet_LT3433.pdf
Range (Note 5) 16-LEAD PLASTIC TSSOP 3433EFE LT3433E (Note 6)............................ –40°C to 125°C 3433IFE TJMAX= 125°CJA= 40°C/WJC= 10°C/W LT3433I........................................... –40°C to 125°C EXPOSED PAD (PIN 17) Storage Temperature Range................ –65°C to 150°C MUST BE SOLDERED
in „Burst Mode Lt3433“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
1510fc.pdf
...................................... 1.5A LT1510C (Note 7)............................. –40°C to 125°C LT1510I............................................ –40°C to 125°C Switch Current (Peak)............................................... 2A Storage Temperature Range................. –65°C to 150°C
in „Problem mit LT1510“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT3757_Boost-Sepic-Flyback-Invert.pdf
DESCRIPTION TEMPERATURE RANGE LT3757EDD#PBF LT3757EDD#TRPBF LDYW 10-Lead (3mm× 3mm) Plastic DFN –40°C to 125°C LT3757IDD#PBF LT3757IDD#TRPBF LDYW 10-Lead (3mm× 3mm) Plastic DFN –40°C to 125°C LT3757EMSE#PBF LT3757EMSE#TRPBF LTDYX 10-Lead (3mm× 3mm) Plastic MSOP –40°C to 125°C LT3757IMSE #PBF LT3757IMSE#TRPBF
in „Datenblätter von Linear Technologies“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ssm2404.pdf
be slowly charged up to the R SW3 positive rail by the 100 nA current source. The difference in the INA 20 18 discharge and charging times ensures break-before-make SW4 ROUT operation, even from device to device. R INB 10k 14 The voltage on C1 is inverted by P1 to drive the ramp generator V– differential
in „Audio Switch IC gesucht (4066 Alternative)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OP184_284_484.pdf
Conditions Min Typ Max Unit INPUT CHARACTERISTICS OffsetVoltage,OP184/OP284EGrade 1 VOS 65 μV −40°C ≤T A +125°C 165 μV 1 OffsetVoltage,OP184/OP284FGrade VOS 125 μV −40°C ≤T A +125°C 350 μV 1 OffsetVoltage, OP484E Grade VOS 75 μV –40°C ≤T A +125°C 175 μV 1 OffsetVoltage, OP484F Grade VOS 150 μV –40°C ≤T A +125
in „Bestellbezeichnung OP184ESZ / OP184FSZ“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD8551_8552_8554.pdf
+125°C 8-Lead MSOP RM-8 AHA# AD8551ARMZ-REEL 1 −40°C to +125°C 8-Lead MSOP RM-8 AHA# AD8552AR −40°C to +125°C 8-Lead SOIC_N R-8 AD8552AR-REEL −40°C to +125°C 8-Lead SOIC_N R-8 AD8552AR-REEL7 −40°C to +125
in „Chopper Verstärker“ · Analoge Elektronik und Schaltungstechnik ·
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handy_lcd_schaltplan.pdf
L119 L118 L116 L117 L113 2 L 2 10 F L C U 1 1 L132 1 0 2 R 6 5 C149 3 1 6 2 0 0 L127 3 0 C148 U 1 L125 1 C141 1 1 4 C137 C147 L123 3 0 1 1 1 U 2 5 L122 4 F 1 C600 0 L121 L109 C 0 L 0 3 1 0 C100 1 C125 1 2 C 2 1 C110 C530 S C R C C C C C F L404 C444 O 5 1 6 5 5 4 4 1 1 1 C108 C443 0 6 5 1 3 5 6 0 1 0
in „Altes Handy Display zum Basteln“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Devices.txt
JACK-PMSHEBW21 1 J10MM 1 J0026 1 ISP 1 IRFU5305 1 IRFD9110 1 IRF740 1 IR2125 1 IR2109 1 INDUKTIVITÄT 1 INA128P 1 INA105P 1 IL420 1 IIM7000A 1 ICL7660SOIC8 1 ICL7611PA 1 IC_144_TQFP 1 I²C 1 HTB50 1 HE751 1 HD-F101 1 HC49UP 1 HC49TL-H 1 HC18U-V 1 GOLDCAP 1 GMSTBA2 1 GLEICHRICHRER 1 GERTH150 1 G6RS 1 G08R 1
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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PDF
DM-KIT-SSK_for_BF533.pdf
PCMCIA_OE IN1 O1 PCMCIA_PIO_SET 12 A2 11 PCMCIA_IOWR 10K9 IN2 O2 19 A3 8 PCMCIA_IORD IN3 O3 3V3 74AHC125 A S 3V3 U13B 3V3 24 VCCIO C 73 VCCIO 51 C 3V3 76 VCCIO VCCINT 58 3V3 R227 10K 115 VCCIO VCCINT 130 S S A T Y3 144 VCCIO VCCINT E I T _ _ T T S 0 1 A DS E Y S 0.1uF 2 OE/ST VDD 3 R229 125 4 CPLD_TDI