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PDF
pcm1803.pdf
−20 0.0 −30 B B −0.2 d −40 d − − d d −0.4 i −50 i p p m −60 m A A −0.6 −70 −80 −0.8 −90 −100 −1.0 0.0 0.1 0.2 0.3 0.4 0 1 2 3 4 Normalized Frequency [× S /1000] Normalized Frequency [×Sf /1000] G005 G006 Figure 5. Figure 6. 7
in „ADC (PCM1803) rauscht bei hoher Abtastrate“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NMC27C32B.PDF
CC CC 0.5 100 mA CMOS Inputs b VIL Input Low Voltage 0.2 0.8 V V Input High Voltage 2.0 V a 1 V IH CC VOL1 Output Low Voltage OL e 2.1 mA 0.45 V VOH1 Output High Voltage OH e b 400 mA 2.4 V VOL2 Output Low Voltage OL
in „EPROMs löschen mit UV LEDs“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ICM7216.pdf
Leakage Pins 27, 28, 2ILK - - 20 A Input Range of Change, dVlNdt Supplies Well Bypassed - 15 - mV/ s ICM7216A Digit Driver: Pins 15, 16, 17, 19, 20, 21, 22, 23 High Output Current, OH VOUT = V DD -2.0V -140 -180 - mA Low Output Current, OL VOUT = V SS +1.0V - 0.3 - mA Segment Driver: Pins 4, 5, 6, 7
in „[V] 1St. Harris ICM7216AIJI Ceramic DIP28 8-Digit, Multi-Function, Frequency Counters/Timers“ · Markt ·
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PDF
at49f1024.pdf
O0 I/O15 13 28 I/O1 I/O14 14 27 I/O2 I/O13 15 26 I/O3 AT49F1025 VSOP Top View Type 1 I/O12 16 25 I/O4 I/O11 17 24 I/O5 10 x 14 mm I/O10 18 23 I/O6 I/O9 19 22 I/O7 I/O8 20 21 GND A0 1 40 OE A1 2 39 I/O0 A2 3 38 I/O1 A3 4 37 I/O2 PLCC Top View A4 5 36 I/O3 A5 6 35 I/O4 1 1 1 C 5 4 A6 7 34 I/O5 I I OI C
in „Atmel Programmiersoftware“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EP92A2E-Explore.pdf
V0.1 2.2 Pin Diagram y l _ T 2 1 D S C K I 1 E X _ _ D D D _ _ _ R S + - D + - S + - D + - S n I I I M S VD V P V X E I I I I R R R C A T T A T T A T T A T T A o 6 5 4 3 2 1 0 9 8 7 6 5 4 3 2 1 0 9 8 7 6 5 4 3 2 1 0 9 8 7 6 5 9 9 9 9 9
in „HDMI-Audio, wie funktioniert es?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74HC4052.pdf
CONDITIONS UNIT MIN. TYP. MAX. MIN. TYP. MAX. VCC supply voltage see Figs 7 and 8 VCC − GND 2.0 5.0 10.0 4.5 5.0 5.5 V VCC − VEE 2.0 5.0 10.0 2.0 5.0 10.0 V VI input voltage GND − V CC GND − VCC V V switch voltage V − V V − V V S EE CC EE CC Tamb operating ambient see DC and AC −40 +25 +85 −40 +25 +85 °C
in „Audiosignale mischen bzw. mehrere Töne überlagern“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AV02-0314EN.pdf
ADJD-S371-QR999 MiniatureSurface-Mount RGBDigitalColorSensorModule DataSheet Description Features ADJD-S371-QR999 is a cost effective, 4 channel digital • Four channel integrated light to digital converter
in „Avago ADJD s371 q999 Farbsensor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ACTEL_1020B.pdf
Commercial Industrial Military Symbol Parameter Min. Max. Min. Max. Min. Max. Units (OH = –10 mA)2 2.4 V 1 VOH (OH = –6 mA) 3.84 V (OH = –4 mA) 3.7 3.7 V 2 1 (OL = 10 mA) 0.5 V VOL (I = 6 mA) 0.33 0.40 0.40 V OL V –0.3 0.8 –0.3 0.8 –0.3 0.8 V IL VIH 2.0 VCC + 0.3 2.0 V CC + 0.3 2.0 VCC + 0.3 V Input Transition
in „Reparatur eines Hamlet Vector Scope 301“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
83c185.pdf
29 RXD3 -8 mA +8 mA +0.4 V VDD – +0.4 V 35 RX_ER/RXD4 -8 mA +8 mA +0.4 V VDD – +0.4 V 33 RX_DV -8 mA +8 mA +0.4 V VDD – +0.4 V 34 RX_CLK -8 mA +8 mA +0.4 V VDD – +0.4 V 48 CRS -8 mA +8 mA +0.4 V VDD – +0.4 V 47 COL
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PDF
83c185.pdf
29 RXD3 -8 mA +8 mA +0.4 V VDD – +0.4 V 35 RX_ER/RXD4 -8 mA +8 mA +0.4 V VDD – +0.4 V 33 RX_DV -8 mA +8 mA +0.4 V VDD – +0.4 V 34 RX_CLK -8 mA +8 mA +0.4 V VDD – +0.4 V 48 CRS -8 mA +8 mA +0.4 V VDD – +0.4 V 47 COL
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PDF
Transmitteric.pdf
Min. Typ. Max. Unit Supply current Power down, S_Off 350 nA V < 0.3 V, ENABLE VPA_ ENABLE < 0.3 V Supply current Power up, PA off, S = 3 V, IS 3.6 4.6 mA V > 1.7 V, ENABLE VPA_ ENABLE < 0.3 V Supply current Power up, V = 3.0 V, I 8.5 11 mA S S_Trans
in „Transceiver IC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
4560.pdf
- Parameter Symbol Min. Typ. Max. Units Test Conditions Luminous Intensity/Segment1,2] 250 420 F = 4 mA (Digit Average) IV mcd 1300 F = 10 mA 1.7 F = 4 mA Forward Voltage/Segment or DP VF 1.8 V F = 5 mA A80X 2.1 2.5 F = 20 mA Pk Peak Wavelength λ PEAK 583 nm Dominant Wavelength [3,5] λd 581.5 585 592.5
in „7 Segment LED datenblatt suche für EAGLE“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tca8418.pdf
2. Standby Supply Current vs Temperature 11 60 10 VCC= 1.65 V 50 9 TA= -40°C ) 8 ) u A (C 7 (40 T A 25°C C K t S TA= 85°C n 6 , r n30 u 5 e C u l C p 4 k u i20 S 3 S 2 10 1 0 0 1.6 2.0 2.4 2.8 3.2 3.6 0.0 0.1 0.2 0.3 0.4 0.5 0.6 Supply Voltage, VCC(V) Output Low Voltage, VOL
in „Keypad 3x4 (am Tasmota o.ä.)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX6603.pdf
3 A T = +125°C 6 6 3.5 A M ) M M m 10 A TA= +85°C T ( 3.2 I N T A +25°C D E G U 2.9 T 0 Y O L TA= -40°C T U 2.6 P S TA= 0°C U-10 O 2.3 2.0 -20 3.0 3.5 4.0 4.5 5.0 5.5 -40 -10 20 50 80 110 SUPPLY VOLTAGE (V) TEMPERATURE ( °) POWER-SUPPLY REJECTION RATIO OUTPUT VOLTAGE vs. FREQUENCY vs. RTD RESISTANCE 0 0 5 0 3 TA= 25°C 3 -10 6 6 M M -20 4 -30 V E B -40 A 3 ( L R -50 V P T -60 T 2 U -70 O -80 1 -90 -100 0 0.01 0.10 1.00 10.00 100.00 1000.00 100 300 500 700 900 FREQUENCY (kHz) RTD RESISTANCE (Ω) 4 _______________________________________
in „Temperaturmessung mit Mikrocontroller im Batteriebetrieb“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet_HIP_4081A.pdf
I DDSUPPLY CURRENT vs SUPPLY VOLTAGE FREQUENCY (kHz) ) 30.0 5.0 A 125°C ( T 25.0 75°C E ) 4.0 R m R ( 25°C C 20.0 N S E 3.0 0°C I R B 15.0 U -40°C Y C P L P P 2.0 S 10.0 U G S I C T 5.0 I 1.0 O L F 0.0 0 100 200 300 400 500 600 700 800 900 1000 0.0 0 100 200 300 400 500 600 700 800 900 1000
in „HIP 4081 Verständnisprobleme“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PB137.pdf
mV ΔVO Load regulation IO= 5 to 1500 mA, T J 25 °C 65 100 mV d Quiescent current TJ= 25 °C 4 8 mA ΔI Delta quiescent current vs.V = 16 to 28.7 V 4 mA d line I Delta quiescent current vs. ΔId load IO = 5 to 1000 mA 1.2 mA V d Dropout voltage IO= 1 A, TJ= 25 °C 2.1 2.6 V Isc Short circuit current
in „BleiGelakku Ladeschaltung so OK?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PB137.pdf
mV ΔVO Load regulation IO= 5 to 1500 mA, T J 25 °C 65 100 mV d Quiescent current TJ= 25 °C 4 8 mA ΔI Delta quiescent current vs.V = 16 to 28.7 V 4 mA d line I Delta quiescent current vs. ΔId load IO = 5 to 1000 mA 1.2 mA V d Dropout voltage IO= 1 A, TJ= 25 °C 2.1 2.6 V Isc Short circuit current
in „12v 1,2Ah Bleiakku Ladereglung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PR4403.pdf
Applications L1 The inductance L1 determines the LED current: Inductance L1 Mean current Vcc LS 14.7 µH 14 mA RLS Vout White 10 µH 22 mA LED 1.2V Gnd 6.8 µH 32 mA Solar PR4403 4.7 µH 40 mA Cells measured with inductor Murata type LQH32CN series 10-22µH: one white LED 4.7-6.8µH: two white LEDs in parallel For
in „3V Relai Timer“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
04_TLV272CDR.pdf
10 pF c TA= 70°C o 8 TA= 25°C A 0.7 V 7 THD = 5% m u t 0.6 u 6 e O VDD = 5 V u 0.5 T = 25°C k 5 C 0.4 A e 4 l T = 0°C - p 0.3 A - 3 VDD = 2.7 V u TA= -40 C a S 0.2 e 2 P 1 0.1 0 0 10 100 1 k 10 k 100 k 1 M 10 M 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 Frequency (Hz) Supply Voltage (V) Figure 9. Peak-to-Peak
in „TLV272 Rail to Rail Problem DIODES“ · Analoge Elektronik und Schaltungstechnik ·
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MAX481_422.pdf
7 and 9L C = 15pF, S1 closed 40 70 ns 4 Driver Disable Time from High HZ Figures 7 and 9L C = 15pF, S2 closed 40 70 ns 9 Figures 6 and 10,AX481, MAX485, MAX1487 20 90 200 1 Receiver Input to Output PLH PHL RDIFF= 54Ω, MAX490C
in „Problem mit MAX481 Transmitter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX485.pdf
7 and 9L C = 15pF, S1 closed 40 70 ns 4 Driver Disable Time from High HZ Figures 7 and 9L C = 15pF, S2 closed 40 70 ns 9 Figures 6 and 10,AX481, MAX485, MAX1487 20 90 200 1 Receiver Input to Output PLH PHL RDIFF= 54Ω, MAX490C
in „STM32 UART Kommunikation -> Langsamer uC Tod“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
/enabled whenever part is active, SBOREN disabled #pragma config BORV = 42 // Reset if Vcc smaller 4,2V #pragma config WDT = ON //Watchdog ON #pragma config WDTPS = 4096 //after 16,384 s reset #pragma config PBADEN = ON //Pins are configured as analog input channels on Reset #pragma config LPT1OSC =
in „Deklaration von Zahlen und Wo im C Programm“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PL560-XX.pdf
51.47 270 23.08 275 15.76 550 5.78 110 42.67 220 15.71 110 49.38 275 22.02 280 15.11 560 5.41 112 40.92 224 14.96 112 47.40 280 21.02 285 14.49 570 5.06 114 39.26 228 14.25 114 45.53 285 20.07 290 13.90 580 4.72 116 37.69 232 13.58 116 43.75 290 19.16 295 13.34 590 4.41 118 36.19 236 12.94 118 42.06
in „Suche Analog Frequency Multiplier IC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RP152N001A-TR-F.pdf
=30m A t 1.0 IOU=50m A u O 0.5 0 0 1 2 3 4 5 Input VoltageI(V) 3) Supply Current vs. Input Voltage 0.8V(VR1/VR2) 2.5V(VR1/VR2) 40 40 ) ) A A ( 30 ( 30 I I n n e e u 20 u 20 C C l l p 10 p 10 u u S S 0 0 0 1 2 3 4 5 0 1 2 3 4 5 Input VoltageI(
in „Such SMD Bauteil im SOT-23-6 Gehäuse mit Markingcode "DJC"“ · Mikrocontroller und Digitale Elektronik ·
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PDF
msm82c55a_2rs.pdf
CHARACTERISTICS MSM82C55A-2 Parameter Symbol Conditions Unit Min. Typ. Max. "L" Output Voltage VOL OL = 2.5 mA Ñ Ñ 0.4 V OH = —40 mA 4.2 Ñ Ñ V "H" Output Voltage VOH IOH= —2.5 mA 3.7 Ñ Ñ V Input Leak Current I 0 £ V £ V —1 Ñ 1 mA LI IN CC VCC= 4.5 V to 5.5 V Output Leak Current ILO 0 £ OUT £ VCC Ta= —40°C to
in „8255 - wie programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lm2731.pdf
−40°C ≤ TJ≤ 125°C 4 R L 15 Ω(3) VIN= 3.3 V 7 Y Option −40°C ≤ TJ≤ 125°C 5.5 VIN= 5 V 10 TJ= 25°C 1.8 2 (4) SW Switch Current Limit See −40°C ≤ TJ≤ 1.4 A 125°C TJ= 25°C 260 400 ISW = 100 mA Vin = 5 V −40°
in „[V] 13St. LM2731 0.6/1.6-MHz Boost Converters With 22-V Internal FET Switch in SOT-23 (8€)“ · Markt ·
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PDF
lm2731.pdf
−40°C ≤ TJ≤ 125°C 4 R L 15 Ω(3) VIN= 3.3 V 7 Y Option −40°C ≤ TJ≤ 125°C 5.5 VIN= 5 V 10 TJ= 25°C 1.8 2 (4) SW Switch Current Limit See −40°C ≤ TJ≤ 1.4 A 125°C TJ= 25°C 260 400 ISW = 100 mA Vin = 5 V −40°
in „[V] 13St. LM2731 0.6/1.6-MHz Boost Converters With 22-V Internal FET Switch in SOT-23 (15€)“ · Markt ·
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PDF
nrf.pdf
Register Bit Dn – Data Bit (note: LSByte to MSByte, MSBit in each byte first) CSN SCK MOSI C7 C6 C5 C4 C3 C2 C1 C0 S7 S6 S5 S4 S3 S2 S1 S0 D7 D6 D5 D4 D3 D2 D1 D0 D15 D14 D13 D12 D11 D10 D9 D8 MISO Figure 8 SPI read operation. CSN SCK MOSI C7 C6 C5 C4 C3 C2 C1 C0 D7 D6 D5 D4 D3 D2 D1 D0 D15 D14 D13 D12 D11 D10 D9 D8 S7 S6 S5 S4 S3 S2 S1 S0 MISO Figure 9 SPI write operation. Nordic Semiconductor ASA - Vestre Rosten 81, N-7075 Tiller, Norway - Phone +4772898900 - Fax +4772898989 Revision: 1.0 Page 21 of 43 September
in „NRF24L01 und Atmega328P“ · Mikrocontroller und Digitale Elektronik ·
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PDF
24C16.pdf
10 3000 18 400 AT24C164-10PC 8P3 Commercial AT24C164-10SC 8S1 (0°C to 70°C) 3000 18 400 AT24C164-10PI 8P3 Industrial AT24C164-10SI 8S1 (-40°C to 85°C) 10 1500 4 100 AT24C164-10PC-2.7 8P3 Commercial AT24C164-10SC-2.7 8S1 (0°C to 70°C) 1500 4 100 AT24C164-10PI-2.7 8P3 Industrial AT24C164-10SI-2.7 8S1 (-40°C to 85°C) 10 1000 4 100 AT24C164-10PC-2.5 8P3 Commercial AT24C164-10SC-2.5 8S1 (0°C to 70°C) 1000 4 100 AT24C164-10PI-2.5 8P3 Industrial AT24C164-10SI-2.5 8S1 (-40°C to 85°C) 10 800 4 100 AT24C164
in „Erstellen eines 24C16 Eeproms in Multisim“ · Mikrocontroller und Digitale Elektronik ·
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PDF
rpc_f_2.pdf
Radiometrix Limited Issue 4, 04 February 2001 RPC-UHF Radio Packet Controller Modules: RPC-418-40: IC+BiM, UK version RPC-433-40: IC+BiM, Euro version IC s: RPC-000-DIL: 18 pin DIL IC RPC-000-SO: 18 pin SO IC The RPC-418-40 and
in „Problem mit BIM2 und RPC Funkübertragung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AV02-1132EN_DS_HEDS-9x40_2014-03-17__3_.pdf
C P 2.4V φ 0.4V CH.A E S1 S2 S3 S4 U L 2.4V M 0.4V A t CH.B t1 2 2.4V 0.4V CH.I P0 ROTATION 3 Definitions Count(N):Thenumberofbarandwindowpairsorcounts neighboring transition in the output of channel B.There
in „Incremental Encoder läuft nicht an 2 µC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STAC9721T.pdf
Supply Current 28 mA PR1 +5V Analog Supply Current 37 mA PR2 +5V Analog Supply Current 28 mA PR3 +5V Analog Supply Current 1.1 mA PR0,1,2,3 +5V Analog Supply Current 0.6 mA PR4 +3.3V Digital Supply Current 0.1 mA PR4 +5V
in „[S] günstige Möglichkeit, zwei DC-Spannungen über mehrere Stunden zu überwachen“ · Markt ·
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PDF
bq24070.pdf
Product Folder Link(s): bq24070 bq24071 bq24070 bq24071 www.ti.com SLUS694F –MARCH 2006–REVISED DECEMBER 2009 FUNCTIONAL DESCRIPTIONS SIGMA 4.44 V , V = 5.5 V OUT AC II= 100 A +3 Sigma 4.42 4.4 V - g Mean l 4.38 o V 4.36 4.34 -3 Sigma 4.32 -60 -40 -20 0 20 40 60 80 100 120 140 o T - Temperatures - C Figure 1. Typical OUT Voltage Regulation, bq24070 CHARGE CONTROL The bq24070/1 supports a precision Li-ion or Li-polymer
in „Akku-Typ Entscheidung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
uTracer3plus_con_man.pdf
testing 1. Connect the uTracer to a power supply ca. 19V, if possible limit the current to ca. 100 mA (see also “Tips and Tricks”) 2. Switch the power supply on (supply current ≈ 30 mA @ 19 V) 4. Led L2 should be on, if not switch off and check circuit 5. check +15 V on pin 7 IC5 with respect to
in „Röhrenprüfer/ Kennlinienschreiber utracer kaputt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DCL9G_ds300.pdf
DC Operating Conditions Symbol Description Conditions Min Max Units V Bus USB Port Supply Voltage 4.00 5.25 V V REF Target Reference Voltage 1.5 5.00 V REF Target Supply Current V REF= 3.30V 1 18 mA o TA Operating Temperature 0 70 C T Storage Temperature –40 +85 oC SIG V High-Level Output Voltage V = 3.3V; I = –8 mA 3.0 V OH REF OH VOL Low-Level Output Voltage V REF= 3.3V;OH = 8 mA 0.4 V VOH High-Level Output Voltage V REF= 1.5V;OH = –8 mA 1.3 V VOL Low-Level Output Voltage V REF= 1.5V;OH = 8 mA 0.4 V VIH High-Level
in „USBprog CPLD Starterkit Wie bauen?“ · FPGA, VHDL & Co. ·
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PDF
STM103.pdf
- VSS_4 S VSS_4 F4 - D2 19 28 - VDD_4 S VDD_4 (8) SPI1_NSS / G3 14 H3 20 29 11 PA4 I/O PA4 USART2_CK (/) ADC12_IN4 SPI1_SCK (/) H3 15 F4 21 30 12 PA5 I/O PA5 ADC12_IN5 SPI1_MISO (8/ J3 16 G4 22 31 13 PA6 I/O
in „STM32 2 Versorgungsspannungen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IL485_2.pdf
Voltage VID +12/-7 V High-Level Output Current (Driver) I -60 mA OH High-Level Digital Output Current (Receiver) I 8 mA OH Low-Level Output Current (Driver) IOL 60 mA Low-Level Digital Output Current (Receiver) IOL 8 mA Operating Free Air Temperature T A -40 85 °C
in „RS485 isoliert“ · Mikrocontroller und Digitale Elektronik ·
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PDF
25AA640A_25LC640A-MIC.pdf
Vcc 5.5V 40 — ns 2.5V Vcc 4.5V 50 — ns 1.8V Vcc 2.5V 7 T R CLK rise time — 100 ns (Note 1) 8 T F CLK fall time — 100 ns (Note 1) 9 T HI Clock high time 50 — ns 4.5V Vcc 5.5V 100 — ns 2.5V Vcc 4.5V
in „Atmega 328p uint16_t auf EEPROM per SPI geht nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XPort_DS.pdf
Operating range: Commercial Temp RoHS product: 0°C to +70°C (32°F to 158°F) Extended Temp RoHS product: -40°C to +85°C (-40°F to 185°F) Storage range: -40°C to +85°C (-40°F to 185°F) Relative Humidity Operating: 5% to 95% non-condensing Shock/Vibration Non-operational shock: 500 g's, Non-operational vibration
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PDF
70687A-1.pdf
resources. • “MRF24J40MA 2.4 GHz IEEE Std. 802.15.4 RF Transceiver Module” (DS70329) • “MRF89XAM8A Data Sheet 868 MHz Ultra-Low Power Sub-GHz Transceiver Module” (DS70651) • “MRF89XAM9A Data Sheet 915 MHz Ultra-Low Power Sub-GHz
in „Was darf man von einer PCB-Antenne erwarten?“ · HF, Funk und Felder ·
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PDF
AV02-3563EN_DS_ACPL-C87x_04Mar2013.pdf
specification, refer to the respective Electrical Specifications section. 5 2 4 1.5 3 1 2 V ) 0.5 ( 1 m s 0 t 0 O-1 ff O-0.5 -2 -1 -3 -1.5 -4 -5 -2 4.5 5 5.5 3 3.5 4 4.5 5 5.5 Vdd1(V) Vdd2(V) Figure3.InputOffsetvsSupplyVDD1 Figure4.InputOffsetvsSupplyVDD2 10 1.003 8 M+3 Mean 1.002 6 4 M- 3 V )1.001 ( 2 / s 0 n1.000 O -2 a G0.999 -4 -6 0.998 -8 -10 0.997 -55 -35 -15 5 25 45 65 85 105 125 4.5 5 5.5 Temp(°C) Vdd1(V) Figure5.InputOffsetvsTemperature Figure6.GainvsSupplyVDD1 1.003 1.00300
in „Hochspannung galvanisch getrennt messen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IL715.pdf
Conditions DC Specifications Min. Typ. Max. Min. Typ. Max. Input Quiescent Supply Current IL715 I 17 27 22 40 µA DD1 IL716 IDD1 2.4 3.3 4 5 mA IL717 IDD1 1.5 1.7 2.2 2.5 mA Output Quiescent Supply Current IL715 I 4.8 7 8 10 mA DD2 IL716 IDD2 2.4 3.3 4 5 mA IL717 IDD2 2 5.3 7 8 mA Logic Input Current II -10 10
in „Suche Leitungstreiberbaustein (galvanisch getrennt)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IL717.pdf
Conditions DC Specifications Min. Typ. Max. Min. Typ. Max. Input Quiescent Supply Current IL715 I 17 27 22 40 µA DD1 IL716 IDD1 2.4 3.3 4 5 mA IL717 IDD1 1.5 1.7 2.2 2.5 mA Output Quiescent Supply Current IL715 I 4.8 7 8 10 mA DD2 IL716 IDD2 2.4 3.3 4 5 mA IL717 IDD2 2 5.3 7 8 mA Logic Input Current II -10 10
in „Optokoppler Logigausgang oder Digitalübertrager“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BDX53F.pdf
Voltage hfe Small Signal Current IC= 0.5 A Gain f = 1MHz V CE = 2 V 20 ∗ Pulsed: Pulse duration = 300 s, duty cycle 1.5 % For PNP types voltage and current values are negative. 2/4 BDX53F / BDX54F TO-220 MECHANICAL DATA DIM. mm inch MIN. TYP. MAX. MIN. TYP. MAX. A 4.40 4.60 0.173 0.181 C 1.23 1.32 0.048 0.052 D 2.40 2.72 0.094 0.107 E 0.49 0.70 0.019 0.027 F 0.61 0.88 0.024 0.034 F1 1.14 1.70 0.044 0.067 F2 1.14 1.70 0.044 0.067 G 4.95 5.15 0.194 0.202 G1 2.40 2.70 0.094 0.106 H2 10.00 10.40 0.394 0.409 L2 16.40
in „BDX53 Transistor“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
philips_chassis_qfu2.1e_la.pdf
N4 13 0 B4 M1-MD0 M1-MA7 DB49 M3 7 DM 3J1N 3J1P 2 1 3 1 M1-MA14 DB34 N8 14 1 C8 M1-MD5 M1-MA8 N9 8 A M1-MA8 100R 100R C3 DB40 M1-MD6 M1-MA9 M4 C4 DB90 M1-DQS1 3J1Y 3J1R BC 2 C9 M1-MD1 M1-MA10 DB52 H8 9
in „Netzteil Philips LED TV reparieren??“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MB510.pdf
Max. Supply Voltage V CC 4.5 5.0 5.5 V Output Current IO 1.2 mA Ambient Temperature TA –40 +85 ⋅C Load Capacitance C 8 pF L ELECTRICAL CHARACTERISTICS (Recommended Operating Conditions unless otherwise noted) Value Parameter Symbol
in „Reziproker Frequenzzähler+ Optimierte 64bit uint Routinen“ · Projekte & Code ·
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PDF
008-0256-0_F.pdf
Load 10 0.9*V a VOH CC - - r TTL LOAD VCC0.6V V P CMOS TTL 0.1*VCC m Logic '0' Level VOL - - r Load 0.4 f Output Current v Logic '1' Level I V = 3.9V/2.2V V = 4.5V/3.0V - - -16/-8 a OH OH CC mA W Logic '0' Level IOL V OL= 0.4V VCC = 4.5V/3.0V - - +16/+8 n Output Duty Cycle SYM @ 50% Level 45 - 55 % a @
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PDF
Ldiode.pdf
640 nm Po=5mW Threshold current Ith - 24 30 mA Operating current Iop - 33 40 mA Po=5mW Operating voltage Vop - 2.2 2.5 V Po=5mW η Differential efficiency 0.4 0.6 0.8 mW/mA Po=3-5mW Monitor current Im 0.1 0.15 0.3 mA Po=5mW, RD=5V Parallel divergence
in „[Laserdiode] Schaltung und Dimensionierung zweier Transistoren“ · Analoge Elektronik und Schaltungstechnik ·
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ths6012.pdf
2 5 G = 1 VCC = ±15 V G = 1 R F 1 k IB+ 1 RF= 1 k V 4 m A − 0 VCC = ±5 V VCC = ±5 V e t IIB+ a n o r 3 V −1 u e s f i O −2 B u V = ±15 V u 2 p CC n I I − −3 − I I 1 VCC = ±5 V VCC = ±15 V V IIB− IIB− −4 −5 0 −40 −20 0 20 40 60 80 100 −40 −20 0 20 40 60
in „DDS Endstufe DC-50 Mhz“ · Analoge Elektronik und Schaltungstechnik ·
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IKSdrehzahl_IL8190_datasheet.pdf
1.0 2.1 3.0 V VH Input Hysteresis 200 470 – mV IIB1 Input Bias Current (Note 1) 0 V ≤ VIN 8.0 V – -4 -80 A FIN Input Frequency Range 0 - 20 kHz VIN Input Voltage Range in series with1.0 k -1.0 - V CC V V SAT Output VSAT IO= 10 mA – 0.10 0.40 V ISING Output Leakage V O 7.0 V – 0.02 10 A V CC-TH Low
in „Brauche Hilfe bei der Suche nach einem IC. Bin kein Fachmann.“ · Fahrzeugelektronik ·