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PDF
171573-da-01-en-LT_1073_5_DIP_8_STEP_UP_1V_5V.pdf
Step-Up Mode (SW2 Pin Grounded) (SW1 Pin Connected to V IN) MaximumSwitch Current vs R LIM 1.2 1.4 1200 VIN= 1.5V L = 82µH 1100 1.0 1.3 1000 V IN= 3V V = 1.25V V ) IN E 1.2 A 900 0.8 G ( V L N 800 T VIN= 1V O 1.1 R700 S 0.6 VIN= 5V N U V O 1.0 C 600 V = 3V C C 500 VIN= 1.5V 0.4 IN I I V = 2V S 0.9 S 400
in „LT 1073 Spg.schwankungen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
3971fd.pdf
START A RISING THRESHOLD G 4.2 TO START A 5.8 L 1.01 L L V V 4.0 V D 1.00 T T 5.6 O P 3.8 TO RUN P S 0.99 I 3.6 I R 0.98 FALLING THRESHOLD 5.4 T 3.4 0.97 5.2 TO RUN 3.2 0.96 3.0 5.0 0.95 0 200 400 600 800 1000 1200 0 200 400 600 800 1000 1200 –55 –25 5 35 65 95 125 155 LOAD CURRENT (mA) LOAD CURRENT
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PDF
504925-panasonic-aqz202-photomos-relais-1-st-1-schliesser-60-vdc-60-vac-3000-ma-polzahl-4.pdf
Minimum 0.4 mA I= 100 mA Input LED turn off current Foff VL= 10 V Typical 0.9 mA Typical 1.25 V (1.16 V atFI= 10 mA) LED dropout voltage VF IF= 50 mA Maximum 1.5 V IF = 10 mA Typical 0.11 Ω 0.23 Ω 0.7 Ω 2.1 Ω On resistance R on IL=Max. Output Maximum 0.18 Ω 0.34 Ω 1.1 Ω 3.2 Ω Within 1 s on time IF = 0 mA
in „Suche Halbleiterelement als Ersatz für Relai in Radar-Bewegungsmelder“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
504925-panasonic-aqz202-photomos-relais-1-st-1-schliesser-60-vdc-60-vac-3000-ma-polzahl-4.pdf
Minimum 0.4 mA I= 100 mA Input LED turn off current Foff VL= 10 V Typical 0.9 mA Typical 1.25 V (1.16 V atFI= 10 mA) LED dropout voltage VF IF= 50 mA Maximum 1.5 V IF = 10 mA Typical 0.11 Ω 0.23 Ω 0.7 Ω 2.1 Ω On resistance R on IL=Max. Output Maximum 0.18 Ω 0.34 Ω 1.1 Ω 3.2 Ω Within 1 s on time IF = 0 mA
in „Welche Eigenschaften haben Solid State Relais, SSR ?“ · Offtopic ·
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PDF
504925-panasonic-aqz202-photomos-relais-1-st-1-schliesser-60-vdc-60-vac-3000-ma-polzahl-4.pdf
Minimum 0.4 mA I= 100 mA Input LED turn off current Foff VL= 10 V Typical 0.9 mA Typical 1.25 V (1.16 V atFI= 10 mA) LED dropout voltage VF IF= 50 mA Maximum 1.5 V IF = 10 mA Typical 0.11 Ω 0.23 Ω 0.7 Ω 2.1 Ω On resistance R on IL=Max. Output Maximum 0.18 Ω 0.34 Ω 1.1 Ω 3.2 Ω Within 1 s on time IF = 0 mA
in „Kann diese Schaltung den 74HC132 killen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
504925-panasonic-aqz202-photomos-relais-1-st-1-schliesser-60-vdc-60-vac-3000-ma-polzahl-4.pdf
Minimum 0.4 mA I= 100 mA Input LED turn off current Foff VL= 10 V Typical 0.9 mA Typical 1.25 V (1.16 V atFI= 10 mA) LED dropout voltage VF IF= 50 mA Maximum 1.5 V IF = 10 mA Typical 0.11 Ω 0.23 Ω 0.7 Ω 2.1 Ω On resistance R on IL=Max. Output Maximum 0.18 Ω 0.34 Ω 1.1 Ω 3.2 Ω Within 1 s on time IF = 0 mA
in „Relais ersetzen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
4_5902390009465407372.pdf
Minimum 0.4 mA I= 100 mA Input LED turn off current Foff VL= 10 V Typical 0.9 mA Typical 1.25 V (1.16 V atFI= 10 mA) LED dropout voltage VF IF= 50 mA Maximum 1.5 V IF = 10 mA Typical 0.11 Ω 0.23 Ω 0.7 Ω 2.1 Ω On resistance R on IL=Max. Output Maximum 0.18 Ω 0.34 Ω 1.1 Ω 3.2 Ω Within 1 s on time IF = 0 mA
in „CD4066 als Relaisersatz?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PR02.pdf
max. (W) tpt i 1000 2 500 10 200 100 50 20 10 10 5 2 1 -1 10 -6 -5 -4 -3 -2 -1 10 10 10 10 10 10 t(s) 1 i PR01 Pulse on a regular basis; maximum permissible peak pulse power (P max.) as a function of pulse duration it) 1200 U max. (V) 1000 800 600 400 200 0 10-6 10 -5 10-4 10 -3 10-2 10 -1 (s) 1 ti
in „Warum explodiert dieser Widerstand nicht?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ZXLD1362.pdf
input to the comparator is at ground and its output is high. This turns MN on and switches the LX pin low, causing current to flow from V to ground, via R , L1 and the LED(s). The current rises at a rate determined by V IN S IN and
in „MAX16832 v. ZXLD1362 (LED Treiber)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Advanced_Topics_in_EMC_Design.pdf
per cm where d is the height of signal track above GP W is width of GP So, e.g. at 1MHz, a 10mA contaminating current will give around 10µV across two points on the plane (from Ohm’s Law) 14 7 Issue 2: Digital decoupling Outline • The purpose of decoupling • Capacitor selection and
in „Kondensatoren für Betriebsspannung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HT78xx.pdf
BSC — L1 — 0.024 BSC — θ 0° — 8° Dimensions in mm Symbol Min. Nom. Max. A — — 1.45 A1 — — 0.15 A2 0.90 1.15 1.30 b 0.30 — 0.50 C 0.08 — 0.22 D — 2.90 BSC — E — 1.60 BSC — e — 0.95 BSC — e1 — 1.90 BSC — H — 2.80 BSC — L1 — 0.60 BSC — θ 0° — 8° Rev. 1.50 7 April 03, 2019 HT78xx 3-pin SOT89 Outline Dimensions
in „MCP1700-3302 mit ESP8266“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Understanding-Diode-Reverse-Recovery-and-Its-Effect-on-Switching-Losses.pdf
@ dI/dt = 4A 10 45 9 40 8 35 A r 7 30 n ] u 6 Eon @ ISL9R3060 [25 Eon @ ISL9R3060 y Eon @ RHRP8600S s Eon @ RHRP8600S v 5 Eon @ ISL9R860 L Eon @ ISL9R860 e Eon @ ISL9R460 o20 Eon @ ISL9R460 s 4 E v 15 R 3 10 2 1 5 0 0 0 200 400 600 800 1000 1200 1400 1600 0 200 400 600 800 1000 1200 1400 1600 dI/dt
in „Warum sind Brushlessmotoren so klein??“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DBLS201G_DBLS209G_TSC.pdf
205G 206G 207G 208G 209G Maximum repetitive peak reverse voltage VRRM 50 100 200 400 600 800 1000 1200 1400 V Maximum RMS voltage VRMS 35 70 140 280 420 560 700 840 980 V Maximum DC blocking voltage VDC 50 100 200 400 600 800 1000 1200 1400 V Maximum average forward rectified current I 2 A F(AV) Peak
in „Datenblatt Brückengleichrichter“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Wiegand2RS2313.asm
Technical data: ; - Wiegand data format: Wiegand26 or Wiegand37 ; - RS232: full duplex ; - RS232 speed: 1200 bit/s ; - RS232 data format: 8N1 ; ; Target CPU: AT90S1200 ; Fosc: 7.3728MHz ; Version: 1.00 ; ; history: ; 2004.02.21 - start of the project ; 2004.03.19 - final version ;--------------------------
in „Wie löst der Interupt in dem Programm aus?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt_NVSRAM_23LCV1024.pdf
instruction is transmitted to the 23LCV1024 followed by the 24-bit address, with the first seven MSB’s of the address being a “don’t care” bit. After the correct READ instruction and address are sent, the data stored in the memory at the selected address is shifted out on the SO pin. 2012 Microchip
in „Probleme mit SRAM 23LCV1024“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TG322450FNCWA-01.pdf
Ambient Temp 0 50 -20 70 Note (1) Humidity Note (2) Note(2) Without Condensation 2 2 Vibration -- 4.9M/S -- 19.6M/S XYZ Direction 2 2 Shock -- 29.4M/S -- 490M/S XYZ Direction Note(1) Ta = 0°C : 50Hr Max. Note(2) Ta ≤ 40 C : 90% RH Max. Ta ≥40 C : Absolute humidity must be lower than the humidity of 90%
in „Wintek WD-H3224V 320x240“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TG322450FNCWA-01.pdf
Ambient Temp 0 50 -20 70 Note (1) Humidity Note (2) Note(2) Without Condensation 2 2 Vibration -- 4.9M/S -- 19.6M/S XYZ Direction 2 2 Shock -- 29.4M/S -- 490M/S XYZ Direction Note(1) Ta = 0°C : 50Hr Max. Note(2) Ta ≤ 40 C : 90% RH Max. Ta ≥40 C : Absolute humidity must be lower than the humidity of 90%
in „Einfacher Low Cost LCD Controller für 320x240 LCD im Textmodus“ · Projekte & Code ·
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PDF
TG322450.pdf
Ambient Temp 0 50 -20 70 Note (1) Humidity Note (2) Note(2) Without Condensation 2 2 Vibration -- 4.9M/S -- 19.6M/S XYZ Direction 2 2 Shock -- 29.4M/S -- 490M/S XYZ Direction Note(1) Ta = 0°C : 50Hr Max. Note(2) Ta ≤ 40 C : 90% RH Max. Ta ≥40 C : Absolute humidity must be lower than the humidity of 90%
in „NGW100 und STN Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PS817-070WS-C-IPS-46.pdf
1 High Temperature Storage ResPower offt 25℃ e -30℃±2℃ 96H h 2 Low Temperature Storage Restore 2H at 25℃ s 70℃±2℃ 96H a 3 High Temperature Operation Power on t 4 Low Temperature Operation -2Power onH Afelectrical defectsand a 60℃±2℃ should not happen. D 5 High Temperature & Humidity Operation 90%RH 96H -20℃←→25℃←→70℃ y 6 Temperature Cycle 30min 5min 30min a After 10 cycles, restore 2H at 25℃ l 7 Vibration Test 10Hz~150Hz, 100m/s , 120min p 8 Shock Test Half-sinewave, 300m/s , 11ms s i D D C L T F T info@panadisplay.com Page 13 of 16 www.panadisplay.com PS817-070WS-C-IPS-46 12. Precautions
in „Suche ein TFT (smart) mit Frame für Arduino und co.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Infineon-IPD025N06N-DS-v02_05-EN.pdf
Symbol Values Unit Note / Test Condition Min. Typ. Max. Gate to source charge Qgs - 24 - nC VDD30 V, I D90 A, V =GSto 10 V Gate charge at threshold Qg(th) - 14 - nC VDD30 V, I D90 A, V =GSto 10 V Gate to drain charge 2) Qgd - 13 17 nC VDD30 V, I D90 A, V =GSto 10 V Switching charge Qsw - 23 - nC VDD30 V,
in „N-Channel Mosfet gesucht - IPD025N06N“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SO2D4_.pdf
-20°C/output @ 20°C) 10ppm 72 to 88 Sensitivity @ 50°C % (output @ 50°C/output @ 20°C) 10ppm 74 to 90 Zero @ 50°CC ppm equivalent change from 20°C <- 0.5 to 1.5 S l CROSS H2S sensitivity % measured gas @ 20ppm H2S <-350 SENSITIVITY Cl 2 sensitivity % measured gas @ 10ppm Cl 2 <-100 NO2 sensitivity %
in „Suche Schadgas Sensoren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
0704-015.pdf
Sensitivity versus Primary Current V CC = 5 V 110 °C 108 –40 106 –20 25 104 85 ) 150 /102 m (100 n e 98 S 96 94 92 90 –20 –15 –10 –5 0 5 10 15 20 IP(A) 5 ACS704ELC015-DS, Rev. 2 Worcester,Massachusetts01615-0036 (508)853-5000 www.allegromicro.com ACS704ELC-015 Zero Current Output Voltage vs. Ambient Temperature
in „Stromfluss detektor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
0704-015.pdf
Sensitivity versus Primary Current V CC = 5 V 110 °C 108 –40 106 –20 25 104 85 ) 150 /102 m (100 n e 98 S 96 94 92 90 –20 –15 –10 –5 0 5 10 15 20 IP(A) 5 ACS704ELC015-DS, Rev. 2 Worcester,Massachusetts01615-0036 (508)853-5000 www.allegromicro.com ACS704ELC-015 Zero Current Output Voltage vs. Ambient Temperature
in „Gibts eigentlich auch ADCs, die Strom messen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
0704-015.pdf
Sensitivity versus Primary Current V CC = 5 V 110 °C 108 –40 106 –20 25 104 85 ) 150 /102 m (100 n e 98 S 96 94 92 90 –20 –15 –10 –5 0 5 10 15 20 IP(A) 5 ACS704ELC015-DS, Rev. 2 Worcester,Massachusetts01615-0036 (508)853-5000 www.allegromicro.com ACS704ELC-015 Zero Current Output Voltage vs. Ambient Temperature
in „Spule als Stromwandler“ · Mikrocontroller und Digitale Elektronik ·
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Datei
prog.asm
protocoll specified in ; Atmels application note avr910.asm dated May 2000. ; It is coded for the AT90S4433/2333 and uses hardware UART and SPI. ; Currently nothing specific is coded in the main routine. ; ; Flash programming usually writes byte by byte directly to flash. ; If any of the Megas is selected
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PDF
Data_and_signal_line_chokes_Epcos.pdf
V test Ordering code mH nH mA mΩ V DC, 2 s 0.011 40 300 120 250 B82799C0113N001 0.022 60 250 170 250 B82799C0223N001 0.022 1200 250 170 250 B82799S0223N001 0.033 70 200 200 250 B82799C0333N001 0.033 1500 200 200 250 B82799S0333N001 0.051 90 200
in „Welche Gleichtaktdrossel für CAN bus?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GPG320X240-NFNDSCW3_B_.pdf
Corp. GPG320X240- NFNDSCW3 (Vers. B) Page 14 /23 6.2.2 Definition of Viewing Angle Φ θ=180° θ=270° θ=90° θ θ=0° 6.2.3 Definition of Response Time W a e Non-Selected wave Selected wave Non-Selected wave 100% r 90% n m s o n 10% 0% Time Tr Tf [Measuring Conditions] VLCD-VSS = Operating Voltage θX = θY =
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PDF
22070a-53890.pdf
Available sub-1.8V output voltage LDO applications that have Upon Request high current demands. The MCP1824S is a 3-pin fixed Low Dropout Voltage: 200 mV Typical at 300 mA voltage version. Typical Output Voltage Tolerance: 0.4% The MCP1824/MCP1824S is stable using ceramic Stable with 1.0 µF Ceramic Output Capacitor
in „[V] 50St.LowNoise Microchip LDO MCP1824T 3,3V/300mA SOT223-5 mit Shutdown“ · Markt ·
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PDF
Osram_Lx_T67F_20mA_bunt.pdf
50 % rel max (typ.) Δλ 16 19 18 17 18 nm Spectral bandwidth at 50 % Irel max I = 20 mA F Abstrahlwinkel bei 50 %IV (Vollwinkel) (typ.)2 ϕ 120 120 120 120 120 Grad Viewing angle at 50 % I deg. V Durchlassspannung 6)Seite 15 (min.) V 1.90 1.90 1.90 1.90 1.90 V 6)
in „LED Statistik“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DB_CD4052BE.pdf
thus CAS numbers and other limited information may not be available for release. In no event shall TI's liability arising out of such information exceed the total purchase price of the TI part(s) at issue in this document sold by TI to Customer on an annual basis. Addendum-Page 2 MECHANICAL DATA MTSS001C
in „[S] CD4052BE von TI“ · Markt ·
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PDF
SIM300_HD_V1.06.pdf
mode, using AT+CFUN command to query the status of software protocol stack; it will return 0 which indicates that the protocol stack is closed. Then after 90S, SIM300 will power down automatically. However, during
in „GSM sim300 mit SAM7-EX256 kommunizieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
25AA128.pdf
Technology Inc. 25AA128/25LC128 8-Lead Plastic Dual Flat, No Lead Package (MF) – 6x5 mm Body [DFN-S] PUNCH SINGULATED Note: For the most current package drawings, please see the Microchip Packaging Specification located at http://www.microchip.com/packaging D e D1 L b N N K E E2 E1 EXPOSED PAD NOTE
in „SPI EEPROM -> Kein Page read :- O“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hdsp_a103.pdf
Temperature for 3 Seconds (1.60 mm [0.063 in.] 250 °C below seating body) Notes: 1. Derate above 91°C at 0.53 mA/°C. 2. Derate HER/Yellow above 80°C at 0.38 mA/°C and Green above 71°C at 0.31 mA/°C. 12 Electrical/Optical Characteristics at T = 25°C A AlGaAs Red Device Series HDSP- Parameter Symbol Min.
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Datei
usbdrv.h
# define USB_INTR_PENDING_BIT INTF0 #endif /* The defines above don't work for the following chips at90c8534: no ISC0?, no PORTB, can't find a data sheet at86rf401: no PORTB, no MCUCR etc, low clock rate atmega103: no ISC0? (maybe omission in header, can't find data sheet) atmega603: not defined in avr-libc at43usb320, at43usb355, at76c711: have USB anyway at94k: is different... at90s1200, attiny11, attiny12, attiny15, attiny28: these have no RAM */ /* ------------------------------------------------------
in „ATMega48 mit V-USB (AtmelStudio 6)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mc3362.pdf
S 10k 10k –50 –60 0.01 0.01 –60 –70 RFInputtoTransformer –70 –80 –130 –120 –110 –100 –90 –80 –70 –60 –50 –40 –30 –130 –120 –110 –100 –90 –80 –70 –60 –50 –40 –30 RFINPUT(dBm) RFINPUT(dBm) Figure 8. 1st
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PDF
14223_ADI_ADP2108.pdf
PERFORMANCE CHARACTERISTICS V IN3.6 V, T = 2A°C, V = V , uENess otINrwise noted. 24 1400 +85°C 1300 22 ) µ 1200 ( A N 20 m E +25°C T1100 R I U I C 18 L1000 T N E –40°C E C R 900 S 16 U I C Q 800 14 700 12 600 2.5 3.0 3.5 4.0 4.5 5.0 5.5 0 2.7 2.9 3.1 3.3 3.5 3.7 3.9 4.1 4.3 4.5 4.7 4.9 5.1 5.3 5.5 0 7 7 INPUT
in „Reflowlöten - Bastlermethode mit Cerankochfeld und Infrarot-Thermometer (bestes Vorgehen gesucht)“ · Platinen ·
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PDF
14223_ADI_ADP2108.pdf
PERFORMANCE CHARACTERISTICS V IN3.6 V, T = 2A°C, V = V , uENess otINrwise noted. 24 1400 +85°C 1300 22 ) µ 1200 ( A N 20 m E +25°C T1100 R I U I C 18 L1000 T N E –40°C E C R 900 S 16 U I C Q 800 14 700 12 600 2.5 3.0 3.5 4.0 4.5 5.0 5.5 0 2.7 2.9 3.1 3.3 3.5 3.7 3.9 4.1 4.3 4.5 4.7 4.9 5.1 5.3 5.5 0 7 7 INPUT
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PDF
14223_ADI_ADP2108.pdf
PERFORMANCE CHARACTERISTICS V IN3.6 V, T = 2A°C, V = V , uENess otINrwise noted. 24 1400 +85°C 1300 22 ) µ 1200 ( A N 20 m E +25°C T1100 R I U I C 18 L1000 T N E –40°C E C R 900 S 16 U I C Q 800 14 700 12 600 2.5 3.0 3.5 4.0 4.5 5.0 5.5 0 2.7 2.9 3.1 3.3 3.5 3.7 3.9 4.1 4.3 4.5 4.7 4.9 5.1 5.3 5.5 0 7 7 INPUT
in „WLCSP von Analog Devices, Wie erkennt man die PIN-Markierung?“ · Platinen ·
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PDF
PCD3311C_3312C_2.pdf
upward pressure followed by a smooth laminar wave) soldering 14.2 DIP technique should be used. 14.2.1 S OLDERING BY DIPPING OR BY WAVE • The longitudinal axis of the package footprint must be The maximum permissible temperature of the solder is parallel to the solder flow. 260 °C; solder at this temperature
in „Tipsend2 Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RBS17707-SN65HVD230-CAN-Board-Datasheetsiyyp0AhGRhw5g.pdf
CHARACTERISTICS DRIVER LOW-TO-HIGH PROPAGATION DELAY TIME DRIVER HIGH-TO-LOW PROPAGATION DELAY TIME vs vs s FREE-AIR TEMPERATURE n FREE-AIR TEMPERATURE – 55 – 90 e R = 0 e i S V CC = 3 V i R S 0 T 50 T 85 VCC = 3.6 V a l e e D 45 D 80 o i a 40 V = 3.3 V a g CC a 75 VCC = 3.3 V p p r 35 r P V = 3.6 V P 70 g
in „PCB Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SAMSUNG-INR21700-40T-Datasheet.pdf
is as follows. Charge temperature Discharge temperature 0℃ 5℃ 23℃ 45℃ 50℃ Relative capacity 80% 90% 100% 95% 95% 23℃ Note: If charge temperature and discharge temperature is not the same, the interval for temperature change is 3 hours. Percentage as an index of the rated discharge at 23℃ at 10A (=
in „Einweg-Vape erforschen :-)“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Devices.txt
3 BD243 3 BC556 3 BC327_SMD 3 BC327-25 3 BAT19 3 BAS40-04 3 BAS15 3 ATMEGA644A 3 AT90S8515P 3 AT90S4433P 3 AT8C51SND1A-PLCC84 3 AD1857 3 AB9V 3 9450-1 3 93LC46SM 3 90G-2 3 87758-1016 3 78L05Z 3 74HCT373N 3 74HCT244N 3 74HCT125D 3 74AC32N 3 74AC14D 3 733989-55 3 733980-62 3 4700MF 3
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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PDF
Preisliste_2008-09_Stand_Aug08.pdf
62,00 674078 Spitzen, Biohit, 1200 μl, steril, Länge = 71.5 mm 10 Racks à 96 Stück 82,50 674085 Spitzen, Biohit, 1200 μl, Länge = 90 mm 10 Racks à 96 Stück 72,00 674088 Spitzen, Biohit, 1200 μl, steril, Länge = 90 mm 10 Racks à 96 Stück
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PDF
AD8606.pdf
Impedance Z OUT f = 1 MHz, V = 1 1.2 Ω POWER SUPPLY Power Supply Rejection Ratio PSRR AD8605/AD8606 V S 2.7V to 5.5V 80 95 dB AD8605/AD8606WLCSP V S 2.7V to 5.5V 75 92 dB AD8608 V S 2.7V to 5.5V 77 92 dB −40°C <T A +125°C 70 90 dB Supply Current/Amplifier ISY IOUT= 0 mA 1.15 1.4 mA −40°C <T A +125°C 1.5
in „Aktives Filter (Differential), Uref“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MCP9501-2-3-4.pdf
2-1: Temperature Accuracy. FIGURE 2-4: Leakage vs. Temperature. 20% 100% ) 4.0 14.0 ° Y ( 3.5 13.0 S 15% 95% V s T D VOH DD= 5.5V H r 3.0 12.0 V V VOH DD= 4.1V % t 2.5 HYST = SS 11.0 D f VOH DD= 2.7V VOL DD= 5.5V y , o 10% VOL DD= 4.1V 90% f H 2.0 10.0 y ( VOL DD= 2.7V DV S t O D) V 1.5 9.0 r V 5% 85%
in „Thermal Shutdown“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Spannungsregler_XC6902_negative_LDO_200mA.pdf
(ceramic) 2000 Ta=-40℃ ] 1800 m 1600 Ta=25℃ i Ta=85℃ d 1400 : 1200 g l 1000 V 800 u 600 o r 400 D 200 0 0 50 100 150 200 Output Current:OUT[mA] XC6902N331 XC6902N501 0 0 Ta=-40℃ Ta=-40℃ ] -20 -20 A Ta=25℃ A Ta=25℃ μ Ta=85℃ μ -40 Ta=85℃ S -40 [S : :S -60 n n r -60 e -80 u u y -80 y p l -100 u u S -100 S -120 -120 -140 0 -2 -4 -6 -8 -10 -12 -14 -16 0 -2 -4 -6 -8 -10 -12 -14 -16 Input Voltage: V [V] Input Voltage:IN [V] IN 12/23 XC6902 Series ■TYPICAL PERFORMANCE CHARACTERISTICS (Continued) (4)
in „Geregelte negative Spannung mit LM2664 und LP2980 - geht das überhaupt?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BTS_100_High_Side.pdf
— 30 V,V GS= — 10 V, D = — 2.9 A, tr — 60 95 RGS = 50 Turn-off timetofftofftd(off)f) td(off) — 70 90 VCC = — 30 V,V GS= — 10 V, D = — 2.9 A, R = 50 tf — 55 75 GS Semiconductor Group 2 BTS 100 Electrical Characteristics (contÕd) atTj= 25 °C, unless otherwise specified. Parameter Symbol Values Unit min
in „Motorsteuerung mit kollektorschaltung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bts100.pdf
— 30 V,V GS= — 10 V, D = — 2.9 A, tr — 60 95 RGS = 50 Turn-off timetofftofftd(off)f) td(off) — 70 90 VCC = — 30 V,V GS= — 10 V, D = — 2.9 A, R = 50 tf — 55 75 GS Semiconductor Group 2 BTS 100 Electrical Characteristics (contÕd) atTj= 25 °C, unless otherwise specified. Parameter Symbol Values Unit min
in „BTS 100 Ersastzlösung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LP2980.pdf
V –V Dropout Voltage I = 0 1 3 3 mV IN O L (Note 7) 5 5 IL= 1 mA 7 10 10 15 15 IL= 10 mA 40 60 60 90 90 IL= 50 mA 120 150 150 225 225 I Ground Pin Current I = 0 65 95 95 μA GND L 125 125 IL= 1 mA 80 110 110 170 170 IL= 10 mA 140 220 220 460 460 IL= 50 mA 375 600 600 1200 1200 V < 0.18V 0 1 1 ON/OFF
in „LDO LD1117 100nF?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Sinica-GNSS-SR4G008-PS-1.1-838507.pdf
Antenna Placement Whichever the host PCB size used, the antenna should be placed ideally on the host PCB’s longest edge at the centre. Where the centre is not a viable option the antenna can be placed offset on the PCB to within the limits shown below. A minimum of 5mm from either PCB edge should be observed
in „Antennenanpassung LTE und GNSS bei SIM7000“ · HF, Funk und Felder ·