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viper50a-e-974425.pdf
) 0 1.1 -1 -2 1.05 -3 1 -4 -5 0.950 20 40 60 80 100 120 0 20 40 60 80 100 120 140 Temperature (°C) Temperature (°C) 15/31 5 Operation Description VIPer50A-E/ASP-E Figure 11. Behaviour of the high voltage current source at start-up VDD 2 mA 3 mA DRAIN
in „Schaltnetzteil - Viper50A-E 45W“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BST-BMP180-DS000-07.pdf
world market leader for pressure sensors in automotive applications. Based on the experience of over 400 million pressure sensors in the field, the BMP180 continues a new generation of micro-machined pressure sensors. BST-BMP180-DS000-07 | Revision 2.3 | May 2011 Bosch Sensortec © Bosch Sensortec GmbH
in „Suche Projektpartner für Kalmanfilter-Implementierung“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
AND8391-D.pdf
mW R 100 mm 1 oz E1000 100 mm 1 oz Cu 494 mW O P 800 ,D 2 P 600 100 mm 2 oz 400 −40 −20 0 20 40 60 80 TA , AMBIENT TEMPERATURE (°C) Figure 3. Power Dissipation vs. Ambient Temperature (SOT−223) @ T = 1505C J 180 1.5 160 Power Curve 2.0 oz Cu qJA1.0 oz Cu 1.4 140 Power Curve 1.0 oz Cu 1.3 120 ) 1.2 / 100 ( 1.1 A 80 qJA 2.0 oz Cu q 1 60 0.9 40 0.8 20 T = 25°C A 0 0.7 0 100 200 300 400 500 600 700 COPPER HEAT SPREADER AREA (mm 2) Figure 4. SOT−223 q and P vs. Cu Area JA D PC board design and the use of multilayer
in „12 Kanäle a 12 x 1W LEDs dimmen /steuern“ · Mikrocontroller und Digitale Elektronik ·
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at49f1024.pdf
Operating Range AT49F1024/1025-45 AT49F1024/1025-55 AT49F1024/1025-70 AT49F1024/1025-90 Operating Com. 0°C - 70°C 0°C - 70°C 0°C - 70°C 0°C - 70°C Temperature (Case) Ind. -40°C - 85°C -40°C - 85°C -40°C - 85°C V Power Supply 5V ±10% 5V ± 10% 5V ± 10% 5V ± 10% CC Operating Modes Mode CE OE WE Ai I/O Read V
in „Atmel Programmiersoftware“ · Mikrocontroller und Digitale Elektronik ·
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MAX1776.pdf
EFFICIENCY vs. I LOAD , CIRCUIT 1, V = 3.3V EFFICIENCY vs. V , IN LOAD = 500mA OUTPUT V OUTPUT = 3.3V 100 c 100 c 100 c V IN6V 6 6 6 95 X 95 1 95 CIRCUIT 5, 5V X M V = 6V M 90 CIRCUIT 1, 5V M 90 V = 12V 90 IN 85 IN 85 ) ) 85 % ( 80 ( 80 ( 80 C C C CIRCUIT 1, 3.3V I 75 V = 15V V = 24V E 75 V = 24V V IN12V I
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FIN1002.pdf
Temperature (T ) −40 °C to +85 °C A ESD (Human Body Model) All Pins 8kV LVDS pins to GND 10kV ESD (Machine Model) 400V Note 1: The “Absolute Maximum Ratings”: are those values beyond which damage to the device may occur. The
in „Was für einen Buffer hinter DDS?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
5005cpe.pdf
OPTREX CORPORATION Page 3/17 2.3.AC Characteristics VCC=5.0V±10% Parameter Symbol Min. Max. Units C/D Setup Time CDS 100 - ns C/D Hold Time CDH 10 - ns CE, RD, WR Pulse Width tCE,tRD,tWR 80 - ns Data Setup Time tDS 80 - ns Data Hold Time tDH 40 - ns Access Time ACC - 150 ns Output Hold Time tOH 10
in „Anschluss eines LCD-Displays“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SeikoLCD.pdf
Characteristics 1/240duty, 1/12duty, f FLM =70Hz Item Symbol Conditions Temp. Min. Typ. Max. Unit = 0° Contrast C ø = 270° 25°C (3.0) (6.5) - V opr= (15.2)V 1 - - (-40) C < 2 Viewing Angle 2 ø = 270° 25°C (40) - - deg. 2 - 1 V opr= (15.2)V (80) - - on = 0° - 200 400 ø = 270° 25°C off Vopr = (15.2)V - 300 600 Response
in „Game Boy Classic Display mit 8051 oder Z80 ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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Amp-30W-25-110MHz-BLF244-1.pdf
Semiconductors A wideband 30 W push-pull amplifier with two MOS Application Note transistors BLF244 (V DS = 28 V); range 25 − 110 MHz NCO8701 handbook, halfpage L5 RL C o C12 R = 25 transistor load output MGH992 Fig.2 2 V DS R L = 2 ⋅ P (1) O For V DS = 28 V and P O 15 W we get: R = L6.1 . The output impedance
in „20MHz - 200MHz Isolator bzw. Zirkulator“ · HF, Funk und Felder ·
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PDF
BMP280_2018.pdf
between BMP180 and BMP280 Parameter BMP180 BMP280 Footprint 3.6 × 3.8 mm 2.0 × 2.5 mm Minimum V 1.80 V 1.71 V DD Minimum V DDIO 1.62 V 1.20 V Current consumption @3 Pa RMS noise 12 µA 2.7 µA RMS Noise 3 Pa 1.3 Pa Pressure resolution 1 Pa 0.16 Pa Temperature resolution 0.1°C 0.01°C I²C & SPI (3 and 4
in „BME680 Berechnung Temperatur Luftfeuchtigkeit Druck Gas Fragen Initialisierung Assembler ASM ATmega8“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FSD156MRBN.PDF
1.15 t h 1.10 1.10 F d 1.05 d1.05 P l 1.00 i1.00 S a a ™ r 0.95 r0.95 ) N N 0.90 0.90 0.85 0.85 0.80 0.80 ‐40'C ‐20'C0'C 25'C 50'C 75'C 90'C 110'C 120'C 125'C ‐40'C ‐20'C0'C 25'C 50'C 75'C 90'C 110'C 120'C 125'C Temperature[ °C] Temperature[ °C] Figure 7. Startup Charging Current (I ) CH. T A Figure
in „Samsung Clicking Netzteil BN44-00635B Relais RL801S bekommt keine Dauerspannung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MSM486SE-DIGITAL-LOGIC.pdf
°C 50°C 55°C 60°C n.a. no Heat Sink vert. 65°C 50°C 55°C 60°C n.a. CPU: ELAN400 Clock: 66Mhz T (case) = 110°C Powerconsumption: 3W Temp. Measured temp. T ambient T ambient T ambient ambient by Ta=20°C no
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ISL6545-Renesas.pdf
) SEE DETAIL "X" (10x 0.25) 0.10 C X . A 0 M BASE PLANE C 8 0.20 SEATING PLANE . 0.08 C 2 SIDE VIEW (8x 0.50) 1.64 2.80 TYP 0.20 REF 4 C TYPICAL RECOMMENDED LAND PATTERN 0.05 DETAIL "X" NOTES: 1. Dimensions are in millimeters. Dimensions
in „Synchronwandler ISL6545A wird heiss“ · Analoge Elektronik und Schaltungstechnik ·
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Viper12A.pdf
DRAIN SO-8 DIP8 2/15 VIPer12ADIP / VIPer12AS ABSOLUTE MAXIMUM RATINGS Symbol Parameter Value Unit V DS(sw) Switching Drain Source Voltage (j=25 ... 125°C) (See note 1) -0.3 ... 730 V VDS(st) Start Up Drain Source Voltage jT=25 ... 125°C) (See note 2) -0.3 ... 400 V D Continuous Drain Current Internally
in „LiIon 18650 Ladegerät für zwei Parallel“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX603-MAX604.pdf
-15 5 25 45 65 85 105 125 0 100 200 300 400 500 600 700 TEMPERATURE (°C) TEMPERATURE (°C) LOAD CURRENT (mA) 10Hz TO 10kHz OUTPUT NOISE LINE-TRANSIENT RESPONSE ) A i V m ( S O B N U T O MAX603 MAX603 VOUT= 5V VOUT= 5V tR= 10 s,Ft = 70 s 10ms/div
in „Logikanalzyer mit FT232BL“ · Mikrocontroller und Digitale Elektronik ·
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tps65131.pdf
VOLTAGE INPUT VOLTAGE 100 100 95 95 90 O = 100 mA 90 85 IO= 50 mA 85 I = 50 mA O = 100 mA % % O − 80 − 80 c c e 75 e 75 c c f 70 IO= 5 mA f 70 E E IO= 5 mA 65 65 60 60 55 VPOS = 12 V 55 V NEG= −4 V In Power−Save Mode In Power−Save Mode 50 50 2.5 2.9 3.3 3.7 4.1 4.5 4.9 5.3 2.5 2.9 3.3 3.7 4.1 4.5 4.9
in „OLED Sammelbestellung“ · Markt ·
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PDF
BTS555_DS_v11.pdf
°C: 200 400 620 T =+150°C: 300 480 650 c Short circuit shutdown delay after input current positive slope, V ON> V ON(SC) td(SC) 80 -- 300 µs min. value valid only if input "off-signal" time exceeds 30 µs
in „P-Kanal MOSFET mit viel Leistung??“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DCDC-Konverter.pdf
VOLTAGE INPUT VOLTAGE 100 100 95 95 90 O = 100 mA 90 85 IO= 50 mA 85 I = 50 mA O = 100 mA % % O − 80 − 80 c c e 75 e 75 c c f 70 IO= 5 mA f 70 E E IO= 5 mA 65 65 60 60 55 VPOS = 12 V 55 V NEG= −4 V In Power−Save Mode In Power−Save Mode 50 50 2.5 2.9 3.3 3.7 4.1 4.5 4.9 5.3 2.5 2.9 3.3 3.7 4.1 4.5 4.9
in „DC-DC-Konverter Tps65131 Funktionalität“ · Mikrocontroller und Digitale Elektronik ·
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RL78-Toolchain-Prefix-File-List.txt
--r-- 1 root root 184 Jan 8 18:07 version.h ./lib64/gcc/rl78-elf/4.9-GNURL78_v15.02/plugin/include/c-family: total 80 -rw-r--r-- 1 root root 3032 Jan 8 18:07 c-common.def -rw-r--r-- 1 root root 50201 Jan 8 18:07 c-common.h -rw-r--r-- 1 root root 5193 Jan 8 18:07 c-objc.h -rw-r--r-- 1 root root 6656
in „RL78/G14 Renesas - Free Linux Toolchain“ · Mikrocontroller und Digitale Elektronik ·
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Datenblatt_NVSRAM_23LCV1024.pdf
AC Waveform: Input pulse level 0.1 CC to 0.9CC Input rise/fall time 5 ns Operating temperature -40°C to +85°C C L= 30 pF — Timing Measurement Reference Level: Input 0.5 VCC Output 0.5 VCC 2012 Microchip Technology Inc. Preliminary DS25156A-page 3 23LCV1024 FIGURE 1-1: SERIAL INPUT TIMING (SPI MODE
in „Probleme mit SRAM 23LCV1024“ · Mikrocontroller und Digitale Elektronik ·
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NTS4409N-D.pdf
Voltage VGS(TH) VGS = VDS, D = 250 mA 0.65 1.5 V Negative Threshold Temperature V GS(TH)TJ −2.0 mV/°C Coefficient Drain−to−Source On Resistance RDS(on) V GS= 4.5 V,DI = 0.6 A 249 350 mW V GS= 2.7 V,DI = 0.2 A 299 400 V GS= 4.5 V,DI = 1.2 A 260 Forward Transconductance g FS V DS= 5.0 V,DI = 0.5 A 0.5
in „SMD Identifizieren“ · Analoge Elektronik und Schaltungstechnik ·
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UHP-1000_Netzteil.pdf
CONTROL ON-OFF DC OK FUNCTION STATIC CHARACTERISTIC EFFICIENCY VS LOAD (48V MODEL) 100 100 95 90 % 90 80 ( 85 C ) 70 N 80 % I 115VAC D 60 F 75 A F 70 230VAC O E L 50 65 60 40 10% 20% 30% 40% 50% 60% 70% 80% 90% 100% 90 100 110 120 140 160 180 200 220 240 264 LOAD INPUT VOLTAGE (V) 60Hz DERATING CURVE 230VAC
in „Wie mit einem attiny/atxmega eine analoge Ausgansspannung erzeugen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX1700-MAX1701.pdf
VOLTAGE (V) (VOUT = 3.3V) (VOUT = 5V) 100 - 100 - 7.0 0 X VIN 3.6V X A 90 IN= 2.4V M 90 M 6.0 T = 25°C M V = 2.4V A ) 80 IN T 5.0 ( 80 ( E C C 70 U 4.0 I 70 VIN 1.2V I C T = 85°C I I 60 VIN 1.2V W 3.0 E E T 60 VIN 0.9V 50 H 2.0 T = -40°C S 50 40 PFM 1.0 PWM PWM 30 40 0 0.1 1 10 100 1000 0.1 1 10 100 1000
in „5V Spannung aus Lipo?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STR-W6253D_PWMswitschRegulator.pdf
OperatingArea Figure 2 – MOSFET Safe OperatingArea Derating Curve Drain Current versus Voltage at T = 25°C, Single Pulse A 100 100.00 ) %80 t 10.00 i 0. a f A 1m r e D 1m s g C60 t it s t g e tl (o) r t r 1.00 rr R DS p e C Cu et O D40 i du f r r S a D e 0.10 p e20 T Refer to figure 1 for MOSFET SOA temperature
in „suche Diode aus Schaltnetzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
STR-W6253D_PWMswitschRegulator.pdf
OperatingArea Figure 2 – MOSFET Safe OperatingArea Derating Curve Drain Current versus Voltage at T = 25°C, Single Pulse A 100 100.00 ) %80 t 10.00 i 0. a f A 1m r e D 1m s g C60 t it s t g e tl (o) r t r 1.00 rr R DS p e C Cu et O D40 i du f r r S a D e 0.10 p e20 T Refer to figure 1 for MOSFET SOA temperature
in „Reparatur Audio-Schaltnetzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LYT4321E.pdf
= 100 °C 3.9 4.5 ON-State Resistance R J W DS(ON) T = 65 °C 2.5 2.9 LYT4x15 J I = 200 mA D TJ= 100 °C 3.0 3.4 LYT4x16 TJ= 65 °C 1.9 2.2 ID= 250 mA TJ= 100 °C 2.3 2.7 T = 65 °C 1.7 2.0 LYT4x17 J ID= 350 mA T =
in „PI LYTSwitch, wofuer diese Diode“ · Analoge Elektronik und Schaltungstechnik ·
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S_110_MOC3063_SERIES-596570.pdf
n t r n u r c u 30 t c s r n0.05 w 20 o r , F I 10 0 0 -40 -20 0 20 40 60 80 100 120 -40 -20 0 20 40 60 80 100 120 o Ambient temperature Ta ( C) Ambient temperature Ta ( C) Fig.3 Minimum Trigger Current Fig.4 Forward Current vs. Forward vs. Ambient Temperature Voltage 10 100 ) VP= 6V A ( RL= 100 T 8 A I m o n F 80 C 60 C e t o o u 6 n 100 C 40 o r r 20 C e u 10 g 4 c t r w u o m 2 F i M 0 1 20 40 60 80 100 0.4 0.8 1.2 1.6 2.0 Ambient temperature ( C) Forward voltage VF (V) Fig.5 On-state Voltage vs. Ambient Fig
in „Ansteuerung von ElTako (Stromstoßschalter)“ · Haus & Smart Home ·
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REN_r01ds0145ej0102_v850e2fe4l_DST_20140421.pdf
voltage VRO 1.35 1.50 1.65 V System supply voltaRAVS 0V to VPOC 0.5 150 V/ms slope Capacitance on REG0C 2.31 6.11 µF REG0C R01DS0145EJ0102 17 Data Sheet Chapter 3 Powersupplyspecification 3.4.2 ISO Regulator characteristics Table 3-5 ISO regulator characteristics Parameter Symbol Condition Ratings Unit
in „Renesas V850 (3572 (A2) FE4-L) auslesen / programmieren?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
bootloaderV2.a51
for first serial else DBIT 1 endif bReqError: DBIT 1 ; 1 on request Errors dseg at 0x21 wValueLo: ds 1 ; 0x21 BootKey: ds 8 ; 0x22 Marker0: ds 1 ; 0x2A rlen: ds 1 ; 0x2B reqlen: ds 1 ; 0x2C cmdbuffer: ds 64 ; 0x2D ds 2 ; 0x6d spare bRequest: ds 1 ; 0x6F SnSum: ds 1 ; 0x70 DescAddr: ds 2 ; 0x71 CAddr: ds 2 ; 0x73 Marker1: ds 1 STACK: xseg at 0 EP0_BUFFER: ds 8 ; 0x0000 the control endpoint ds 4 ; spare EP2_OUT_BUFFER: ds 64 ; 0x000C bulk out EP2_IN_BUFFER: ds 64 ; 0x004C bulk in cseg at StartAddress
in „uC für 0,20€ CH552 / CH554 von WCH Billig Micro mit USB Funktion, Chip vorstellung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MachXO2FamilyDataSheet.pdf
7000HC-5BG332C 6864 2.5 V / 3.3 V –5 Halogen-Free caBGA 332 COM LCMXO2-7000HC-6BG332C 6864 2.5 V / 3.3 V –6 Halogen-Free caBGA 332 COM LCMXO2-7000HC-4FG400C 6864 2.5 V / 3.3 V –4 Halogen-Free fpBGA 400 COM LCMXO2-7000HC-5FG400C 6864 2.5 V / 3.3 V –5 Halogen-Free fpBGA 400 COM LCMXO2-7000HC-6FG400C 6864 2.5 V / 3.3 V –6 Halogen-Free fpBGA 400 COM LCMXO2-7000HC-4FG484C 6864 2.5 V / 3.3 V –4 Halogen-Free fpBGA 484 COM LCMXO2
in „Statemachine springt in falsche "states" warum?“ · FPGA, VHDL & Co. ·
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PDF
CY8C4147AZI.pdf
– 25 µs – Usable Deep Sleep Mode 2 is lowest current range. Mode Mode 1 has higher GBW. I – – SID_DS_1 DD_HI_M1 Mode 1, High current 1400 25 °C I – – SID_DS_2 DD_MED_M1 Mode 1, Medium current 700 25 °C SID_DS_3 I Mode 1, Low current – 200 – 25 °C DD_LOW_M1 µA SID_DS_4 IDD_HI_M2 Mode 2, High current – 120 – 25 °C SID_DS_5 IDD_MED_M2 Mode 2, Medium current – 60 – 25 °C SID_DS_6 IDD_LOW_M2 Mode 2, Low current – 15 – 25 °C – – 20-pF load, no DC load SID_DS_7 G BW_HI_M1 Mode 1, High current 4 0.2 V to DDA-0.2 V 20
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PDF
MCP73871-Data-Sheet-20002090E__2_.pdf
(Fast Charge Constant Current Mode) AC-Adapter REG 90 100 110 mA PROG1 = 10 k Fast Charge TA= -5°C to +55°C, SEL = High Current 900 1000 1100 mA PROG1 = 1 k T = -5°C to +55°C, SEL = High A USB Fast Charge I 80 90 100 mA PROG2 = Low, SEL = Low, REG Current (Note 2) TA= -5°C to +55°C 400 450 500 mA PROG2 = High, SEL = Low, (Note 2) TA= -5°C to +55°C Input Current Limit Control (ICLC) USB-Port Supply ILIMIT_USB 80 90 100 mA PROG2 = Low, SEL = Low Current Limit T = -5°C to +55°C A 400 450 500 mA PROG2 = High, SEL = Low TA= -5°C to +55°C AC-DC
in „Fehlersuche beim MCP73871“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MPLINK_TUTORIAL.pdf
not be included in other MPLINK published documentation. MPASM User’s Guide with MPLINK and MPLIB (DS33014) This guide explains how to use MPLINK and MPLIB with the MPASM assembler. MPLAB-C17 Compiler User’s Guide (DS51112) This guide explains how to use the MPLAB-C17 compiler. Includes an example of
in „Anfängerfrage zu Assembler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DG441-DG442.pdf
UNITS (Note 2) SWITCH Analog-Signal Range V (Note 3) -15 15 V ANALOG V+ = 13.5V, V- = -13.5VTA= +25°C 50 85 Drain-Source On-Resistance DS(ON) S = -10mA, Ω VD= 8.5V or -8.5V TA= T MIN to MAX 100 On-Resistance Match V+ = 15V, V- = -15V, TA= +25°C 4 ΔrDS(ON) VD= ±10V, Ω Between Channels (Note 4) S = -10mA
in „Was bedeutet normaly closed switch“ · Mikrocontroller und Digitale Elektronik ·
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PDF
L6207.pdf
S[V] V [V] S Figure 27. Normalized typical quiescent current Figure 28. Normalized R vs. junction DS(ON) vs. switching frequency temperature (typical value) Iq / (Iq @ 1 kHz) 1.7 RDS(ON) (DS(ON)@ 25 °C) 1.8 1.6 1.5 1.6 1.4 1.4 1.3 1.2 1.2 1.1 1.0 1.0 0.9 0.8 0 20 40 60 80 100 0 20 40 60 80 100 120 140 f [kHz] SW Tj [°C] Figure 29. Typical low-side R vs. supply Figure 30. Typical drain-source diode forward DS(ON) voltage ON characteristic R DS(ON)[] ISD[A] 0.300 3.0 Tj= 25 °C 0.296 2.5 Tj= 25 °C 0.292 2.0 0.288 1.5
in „Schrittmotor mit L6207“ · Mikrocontroller und Digitale Elektronik ·
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PDF
1822670.pdf
S[V] V [V] S Figure 27. Normalized typical quiescent current Figure 28. Normalized R vs. junction DS(ON) vs. switching frequency temperature (typical value) Iq / (Iq @ 1 kHz) 1.7 RDS(ON) (DS(ON)@ 25 °C) 1.8 1.6 1.5 1.6 1.4 1.4 1.3 1.2 1.2 1.1 1.0 1.0 0.9 0.8 0 20 40 60 80 100 0 20 40 60 80 100 120 140 f [kHz] SW Tj [°C] Figure 29. Typical low-side R vs. supply Figure 30. Typical drain-source diode forward DS(ON) voltage ON characteristic R DS(ON)[] ISD[A] 0.300 3.0 Tj= 25 °C 0.296 2.5 Tj= 25 °C 0.292 2.0 0.288 1.5
in „Treiberstufe fuer Faulhaber Schrittmotor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
drv8825.pdf
current –40 40 µA IN Internal pullup resistance RPU (to 3.3 V) 130 kΩ RPD Internal pulldown resistance 80 kΩ H-BRIDGE FETS HS FET on resistance V (VMx) 24 V, O = 1 A, J = 25°C 0.2 V = 24 V, I = 1 A, T = 85°C 0.25 0.32 RDS(ON) (VMx) O J Ω V (VMx) 24 V, O = 1 A, J = 25°C 0.2 LS FET on resistance V (VMx) 24
in „Suche passenden Treiber für Stepper.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NFAQ1560R43T-D.PDF
versus ICfor Different Temperatures Figure 5. VFversus IFfor Different Temperatures (VDD = 15 V) 1,400 1,400 VPN = 300 V VPN = 300 V )1,200 V = 15 V ) 1,200 V = 15 V m DD m DD ( s s1,000 s 1,000 L L g 800 g 800 i TJ= 100°C i c 600 c 600 i i S S TJ= 100°C , 400 ,F 400 O TJ= 25°C O TJ= 25°C E 200 E 200
in „Ersatz für ON-Semi STK5Q4U362J-E / STK5Q4U363J-E bzw. passt da NFAQ1060L33T / NFAQ1060L36T“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CS5560_PP2.pdf
-1.5 LSB FF FF FE 80 00 00 (VREF/2)-0.5 LSB 7F FF FF 00 00 01 +0.5 LSB 00 00 00 <(+0.5 LSB) 00 00 00 NOTE: VREF = (VREF+) - (VREF-) 16 DS713PP2 5/4/09 CS5560 3.6 Typical Connection Diagrams The following figure depicts the
in „Bipolare Eingänge ADC“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
KiCadLib.py
Version 2.2 Date: 01/06/2010-18:05:26 # # DIL16 # DEF DIL16 U 0 40 Y Y 1 0 N F0 "U" 0 -100 49STS H V C C F1 "DIL16" 0 100 49STS H V C C DRAW S -500 -600 500 600 0 0 0 N X PIN1 1 -800 400 300 R 50 50 1 1 I X PIN2 2 800 -400 300 L 50 50 1 1 I X PIN3 3 0 -900 300 U 50 50 1 1 I X PIN4 4 0 900 300 D 50 50
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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PDF
xminilab-manual.pdf
Inputs -30 30 V Digital Inputs -0.5 3.8 V External Trigger -2.2 5.5 V Operating Temperature -40 70 °C Storage Temperature -40 80 °C Table 2: Absolute Maximum Ratings DS-Xminilab-1.6 - February, 2012 Page | 7 Xminilab User’s Manual 1.3 Specifications General Specifications: - ATXMEGA32A4U 36KB Flash,
in „USART - xmodem (Xminilab) - Bildübertragung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
xminilab-manual.pdf
Inputs -30 30 V Digital Inputs -0.5 3.8 V External Trigger -2.2 5.5 V Operating Temperature -40 70 °C Storage Temperature -40 80 °C Table 2: Absolute Maximum Ratings DS-Xminilab-1.6 - February, 2012 Page | 7 Xminilab User’s Manual 1.3 Specifications General Specifications: - ATXMEGA32A4U 36KB Flash,
in „ATXmega32 flashen mit ATMEL Flip (Xminilab)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet.pdf
62 — mV/⋅C Zero Gate Voltage Drain Current IDSS Adc (V = 60 Vdc, V = 0 Vdc) — — 10 DS GS (VDS = 60 Vdc,GS = 0 Vdc,JT = 150⋅C) — — 100 Gate–Body Leakage Current (V = 〉 15 Vdc, V = 0 Vdc) I — — 100 nAdc GS DS GSS
in „verstärkerschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BME280_Datasheet.pdf
parameter specification Parameter Symbol Condition Min Typ Max Unit 3 For temperatures -40 25 85 °C Operating range RH < 0 °C and > 60 °C see Figure 1 0 100 %RH 1 Hz forced mode, Supply current IDD,H humidity and 1.8 2.8 µA temperature 20…80 %RH, Absolute accuracy AH 25 °C, including ±3 %RH tolerance
in „PIC18F, Sensor auslesen I2C“ · Mikrocontroller und Digitale Elektronik ·
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PDF
vt6k1.pdf
=D00A - 2.5 3.5 ID=100mA, V =GS5V - 3.0 4.2 I =100mA, V =2.5V Static drain-source on-state D GS R DS (on) - 3.8 5.3 ID=50mA, V =GS8V resistance - 4.5 9.0 ID=20mA, V =GS5V - 6.0 18.0 ID=10mA, V =GS2V Forward transfer admittance l Y l * 180 - - mS V =10V, I =100mA fs DS D Input capacitance C iss - 7.1
in „Bitte um Hilfe Bauteilsuche“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Ultraschallotrungssystem_Lego_Mindstorms.pdf
T = 938 ➦C − n · 1000 ➦C (8.5) 818 116 Auswertung der Meßdaten Daraus ergibt sich ein Codefragment fu¨ brickOS, das die Temperatur in Zehntelgrad berechnen kann. T = 938-((long)ds_scale(SENSOR_1)*1000)/818; Es
in „Ortung mittels Ultraschall - Projektvorstellung / Hilfegesuch“ · Mikrocontroller und Digitale Elektronik ·
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mindstorms.pdf
T = 938 ➦C − n · 1000 ➦C (8.5) 818 116 Auswertung der Meßdaten Daraus ergibt sich ein Codefragment fu¨ brickOS, das die Temperatur in Zehntelgrad berechnen kann. T = 938-((long)ds_scale(SENSOR_1)*1000)/818; Es
in „Suche Transreceiver Ultraschallkapseln mit 80° Detektionswinkel“ · Mikrocontroller und Digitale Elektronik ·
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J500.pdf
WIDE CURRENT RANGE 0.192 to 5.6mA BIASING NOT REQUIRED VGS = 0V A A ABSOLUTE MAXIMUM RATINGS 1 @ 25 °C (unless otherwise stated) Maximum Temperatures Storage Temperature -55 to 150°C Junction Operating Temperature -55 to 150°C Maximum Power Dissipation Continuous Power Dissipation @25°C 350mW K K Maximum
in „Welches elektronische Bauteil würdet ihr euch wünschen?“ · Analoge Elektronik und Schaltungstechnik ·
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SMD_Catalog.pdf
BSV52 Phi N SOT23 BSX20 12V fT 400MHz sw B2p BSV52 Phi N SOT23 BSX20 12V fT 400MHz sw B2t BSV52 Phi N SOT23 BSX20 12V fT 400MHz sw B2 HSMS-2812 HP D SOT23 dual HP2810 schottky B2 HSMS-281C HP D SOT323 dual HP2810 schottky BZX399C2V2
in „Hilfe bei Bauteilsuche für Mainboard“ · PC Hard- und Software ·
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BST-BMP180-DS000-09-2.pdf
6.0 -1.0* +4.5 hPa pressure 0.01 hPa Resolution of output data temperature 0.1 °C Noise in pressure see table on page 12-13 Absolute accuracy @ 25 °C -1.5 ±0.5 +1.5 °C temperature VDD = 3.3V 0 . . . +65 °C -2.0 ±1.0 +2.0 °C 1 at 85°C BST-BMP180-DS000-09 | Revision 2.5 | April 2013
in „BMP180 Luftdruck Sensor“ · Mikrocontroller und Digitale Elektronik ·