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EP22_10BaseT1L.pdf
kBit 300m, bei 500 kBit 200 m IO-Link IO-Link 40 m Max 230,4 kBit/s, Nein M12 Nein Halb-Duplex 4-20 mA Analog-Schnitt- 200 m und mehr -/- Ja, circa 36 mA Schraubklemme Ja stelle HART® Digital moduliert 200 m und mehr 1200 bit/s, Halb- Ja, circa 36 mA Schraubklemme Ja über 4-20 mA Duplex 10BASET1L Ethernet 1000m (2,4 V) mit 10MBit, full Duplex Ja, bis 54 W abhän- Schraub- oder Ja (1,0 V Mode, bis zu 10 Stoßstel- gig vom Kabel und Schneidklemme, max
in „Power und Ethernet über zwei Drähte“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
webench_design_1688335_26_232377900.pdf
WEBENCH ® Design Cin IRMS M2 PdSw 1.00 0.95 0.11 0.90 0.85 0.10 0.80 0.75 0.09 0.70 )0.65 )0.08 A W S0.60 (0.07 M0.55 S R0.50 d0.06 I0.45 P i0.40 20.05 C0.35 M 0.04 0.30 0.25 0.03 0.20 0.15 0.02 0.10 0.05 0.01 0.00 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1.0 1.1 1.2 1.3 1.4 1.5 1.6 1.7 1.8 1.9 2.0 0.2 0.3 0.4
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2243913.pdf
DNL 0.2 R ( 220 INL ( 220 INL c DNL 0.1 b c 4 b n s180 S a 180 S s m ( s m ( s h 0 o s 140 2 o e (o40 r R ( RW r r RW -0.1 E r 100 E p 100 125°C p 0 i 85°C -0.2 i -40°C W 60 25°C W 60 25°C DNL -40°C 125°C 85°C 20 -0.3 20 -2 0 32 64 96 128 160 192
in „[V] 11St. SMD Dual Digital Poti - I2C Microchip MCP4561-103 10kOhm 256Steps Nonvolatile (8€)“ · Markt ·
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22107B-1180063.pdf
DNL 0.2 R ( 220 INL ( 220 INL c DNL 0.1 b c 4 b n s180 S a 180 S s m ( s m ( s h 0 o s 140 2 o e (o40 r R ( RW r r RW -0.1 E r 100 E p 100 125°C p 0 i 85°C -0.2 i -40°C W 60 25°C W 60 25°C DNL -40°C 125°C 85°C 20 -0.3 20 -2 0 32 64 96 128 160 192
in „[V] 24St SMD Digital I2C / 256 Steps 5K Dual Poti Microchip MCP4561- 502E/MS (MSOP8) (alle 15€)“ · Markt ·
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PDF
2243913.pdf
DNL 0.2 R ( 220 INL ( 220 INL c DNL 0.1 b c 4 b n s180 S a 180 S s m ( s m ( s h 0 o s 140 2 o e (o40 r R ( RW r r RW -0.1 E r 100 E p 100 125°C p 0 i 85°C -0.2 i -40°C W 60 25°C W 60 25°C DNL -40°C 125°C 85°C 20 -0.3 20 -2 0 32 64 96 128 160 192
in „[V] 44St. SMD Digital I2C / 256 Steps 10K Poti Microchip MCP4561- 103E/MS (MSOP8 Gehäuse)“ · Markt ·
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PDF
2243913.pdf
DNL 0.2 R ( 220 INL ( 220 INL c DNL 0.1 b c 4 b n s180 S a 180 S s m ( s m ( s h 0 o s 140 2 o e (o40 r R ( RW r r RW -0.1 E r 100 E p 100 125°C p 0 i 85°C -0.2 i -40°C W 60 25°C W 60 25°C DNL -40°C 125°C 85°C 20 -0.3 20 -2 0 32 64 96 128 160 192
in „[V] 10St. Digitalpoti MCP4561-103E/MS 8MSOP orginalverpackt. (9€)“ · Markt ·
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PDF
10002896-1.pdf
200 V 100 mV +/- (1.2% +/- 10 dgts) 600 V 1 V +/- (1.2% +/- 10 dgts) Frequenz der Wechselspannung 40 Hz bis 400 Hz Gleichstrom 20 A 0.01 A +/- (1% +/- 2 dgts) 200 A 0.1 A +/- (1% +/- 2 dgts) 2 mA 1 A +/- (1% +/- 2 dgts) 20 mA 10 A +/- (1% +/- 2 dgts) 200 mA 100 A +/- (1.5% +/- 2 dgts) 10 A 10 mA +/-
in „Multimeter Sicherungen wo kaufen“ · Analoge Elektronik und Schaltungstechnik ·
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M27C256B_10f1.pdf
LCC Pin Connections P C VPP 1 28 VCC 7 1 P U C 1 1 A12 2 27 A14 A A V D V A A A7 3 26 A13 1 32 A6 4 25 A8 A6 A8 A5 5 24 A9 A5 A9 A4 A11 A4 6 23 A11 A3 7 22 G A3 NC M27C256B A2 9 M27C256B 25 G A2 8 21 A10 A1 A10 A1 9 20 E A0 10 19 Q7 A0 E NC Q7 Q0 11 18 Q6 Q1 12 17 Q5 Q0 Q6 17 Q2 13 16 Q4 1 2 S U 3
in „M27C256B zu verkaufen“ · Markt ·
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PDF
25AA128.pdf
Automotive (E): T = -40°C to +125°C VCC = 2.5V to 5.5V Param. No. Sym. Characteristic Min. Max. Units Test Conditions 17 THH HOLD Hold Time 20 — ns 4.5V ≤ Vcc ≤ 5.5V 40 — ns 2.5V ≤ Vcc < 4.5V 80 — ns 1.8V ≤ Vcc < 2.5V 18 THZ
in „SPI EEPROM -> Kein Page read :- O“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MG24065G-SBLWU_240x64_Display.pdf
0.25 V I T E M SYMBOL CONDITION MIN. TYP. MAX. UNIT POWER SUPPLY VOLTAGE FOR V -V SS --------------- 4.75 5.0 5.25 V CIRCUIT INPUT VOLTAGE V IH H LEVEL 2.0 ------- V DD V NOTE (1) V IL L LEVEL 0 ------- 0.8 V OUTPUT VOLTAGE V OH IH = -0.3 mA 2.4 ------- ------- V NOTE (2) V OL IH = 3.0 mA ------- ----
in „Display MG24065G-SBLWU Spannungs-Versorgung Fragen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet_1_.pdf
IO= 400mA* 0.4 0.7 V IO = 150mA 0.2 0.4 V Iq Quiescent Current IO= 0mA 0.8 2 mA I = 150mA 25 45 mA O IO = 400mA* 65 90 mA V O Temperature Output Voltage 0.1 mV T V O Drift ⋅C V Supply Voltage Rejection IO = 350mA; f = 320Hz; 60 dB SVR C = 100 F; V = V +3V+2V O I O pp IO Max Output Current 800 mA SC Output Short Circuit Current 350 500 mA (fold back condition) * only for L4892 the currenttestOonditions is I = 300mA ELECTRICAL CHARACTERISTICS (V = 14.4V; I O = 100 F; T =j-40 to 125⋅C (note 1)
in „L4812 - ein Heizelement bei Unterspannung?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
stp16cpc26.pdf
0.020 c1 45°(typ.) D 15.20 15.60 0.598 0.614 E 10.00 10.65 0.393 0.419 e 1.27 0.050 e3 13.97 0.550 F 7.40 7.60 0.291 0.300 L 0.50 1.27 0.020 0.050 S 8°(max.) 24/31 DocID18469 Rev 5 STP16CPC26 Package mechanical data 11.4 TSSOP24 exposed pad Figure 20. TSSOP24 exposed pad dimensions 7100778_D DocID18469 Rev
in „[S] 12fach LED IC gesucht (ähnlich 74HC595)“ · Analoge Elektronik und Schaltungstechnik ·
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ths7316.pdf
CAPACITIVE LOADING OUTPUT VOLTAGE 10 -20 VS=−5−V F−=−8−MHz B 0 ! -30 Load−=−150 W ||−13−pF B n d !10 t -40 n V =−5−V t F−=−16−MHz a S i − !20 VO=−200−mV PP − -50 a Load−=−150 W ||−C n i !30 L o -60 - C =−13−pF r a L H m !40 r -70 S C L−5−pF r !50 − d -80 CL=−20−pF 2 F−=−4−MHz F−=−2−MHz F−=−1−MHz !60 -90 1
in „Videopfad - LM1881 -Sync-Problem“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TIL-311-hexdisplay.pdf
maintain this temperature. recommended operating conditions MIN NOM MAX UNIT Supply voltage,CC , logic 4.5 5 5.5 V Supply voltage,LED , LED 4 5 5.5 V Decimal point current, I 5 mA F(DP) Pulse durationw t , latch strobe 40 ns Setup time,su 50 ns Hold time,ht 40 ns POST OFFICE BOX 65530DALLAS, TEXAS 75265
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LMD18200_-_HBr__cke.pdf
the entire operating s s S temperature range,b 40§C TJ a 125 §, all other limits are Aor TJ e 25§C. (Note 5) Symbol Parameter Conditions Typ Limit Units R DS(ON) Switch ON Resistance Output Currente 3A (Note 6) 0.33 0.4/0.6
in „LMD18200 current sense Charakteristik. Erfahrung?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM2991.pdf
−26V 0.004 0.04 %/V Load Regulation 50 mA ≤ IO≤ 1A 0.04 0.4 % Dropout Voltage O = 0.1A, V ≤O100 mV 0.1 0.2 V 0.3 O = 1A, V ≤O100 mV 0.6 0.8 V 1 Quiescent Current I ≤ 1A 0.7 5 mA O Dropout Quiescent VIN = VO, O ≤ 1A 16 50 mA Current Ripple Rejection Vripple 1 Vrms, fripple 1 kHz, 60 50 dB I = 5 mA O Output Noise 10 Hz − 100 kHz, IO= 5 mA 200 450 µV ON /OFF Input (VOUT: ON) 1.2 0.8 V Voltage (V : OFF) 1.3 2.4 OUT ON /OFF Input VON/OFF = 0.8V (VOUT : ON) 0.1 10 µA Current VON/OFF = 2.4V (VOUT :
in „Negative Low Dropout Adjustable Regulator gesucht“ · Mikrocontroller und Digitale Elektronik ·
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Infineon_BTS442E2-2271374.pdf
see page 3) Vbb 63 V ) Load dump protection V LoadDump= U A V ,sU A 13.5 V VLoad dump 80 V R I 2 Ω, R L 1.1 Ω, td= 200 ms, IN= low or high Load current (Short-circuit current, see page 4) L self-limited A Operating temperature range Tj -40 ...+150 °C Storage temperature
in „ITS436L2 Verfügbarkeit oder Alternative“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
datenblatt.pdf
Ω 0.4 0.6 1 V GT tp(g) 20 µs RGK = 1 kΩ V AA= 12 V RL= 100 Ω TC= 110°C 0.2 tp(g) 20 µs RGK = 1 kΩ V AA= 12 V RGK = 1 kΩ TC= - 40°C Initiating I10 mA 8 IH Holding current T mA V AA= 12 V RGK = 1 kΩ 5 InitiatinT
in „Wer kennt dieses Bauteil?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SFH4544-Datasheet.pdf
f(TA), R thJA= 430 K / W F = f(VF), single pulse, t p 100 µs, T = 2A°C OHR00880 3 OHF05642 125 10 mA ΙF mA IF 100 2 10 75 50 1 10 25 0 100 0 20 40 60 80 ˚C 100 0 1 2 3 V 4 T V F Permissible Pulse Handling Capability Permissible Pulse Handling Capability Zulässige Pulsbelastbarkeit Zulässige Pulsbelastbarkeit
in „Max. Strom für IR-LED für NEC-Code“ · Analoge Elektronik und Schaltungstechnik ·
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ISl6298.pdf
THE 3X3 Ω 730 ( 900 DFN PACKAGE m MEASURED AT 250mA E ( 690 N C A 800 N 650 S T S I 3X3 PACKAGE E 700 E 610 R R O N 570 T 600 O E E 530 S F 4X4 PACKAGE O 500 O M M 490 400 450 0 20 40 60 80 100 120 3.0 3.1 3.2 3.3 3.4 3.5 3.6 3.7 3.8 3.9 4.0 4.1 TEMPERATURE ( C) BATTERY VOLTAGE
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INN3977CQ.pdf
S2 (MOSFET Switching at f SW 0.85 2.00 TJ= 25 °C -1.75 -1.35 -0.88 ICH1 V BP= 0 V -1.93 -0.75 BPP Pin Charge Current VDS= 30 VDC mA TJ= 25 °C -5.98 -4.65 -3.32 ICH2 V BP= 4 V -6.87 -2.49 BPP Pin Voltage
in „Frage zu PowerInc INN3977CQ“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
KMI16_1.pdf
otherwise specified. SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT CC supply current (pin 1) Tamb= −40 to +150 °C 4 10 14 mA Vout (high)C output voltage high OC = off stateamb = −40 to +150 °C 4.7 4.9 − V V OC saturation voltage OC = on state; I = 20 mA − 0.4 1 V CE sat out r output signal rise time 10% to 90% 5 12 20 s f output signal fall time 10% to 90% 0.1 0.4 10 s δ duty cycle Tamb= −40 to +150 °C 30 50 70 % dmin minimum sensing distance Tamb= −40 to +150 °C − 0.3 0.5 mm dmax maximum sensing distance T amb= −40
in „Datenblätter Kfz-Hallsensoren wo?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SS8050_D-2320098.pdf
Cut-Off Current V EB= 6 V,CI = 0 100 nA h V = 1 V, I = 5 mA 45 FE1 CE C hFE2 DC Current Gain V CE= 1 V,CI = 100 mA 85 300 hFE3 V CE= 1 V,CI = 800 mA 40 VCE (sat) Collector-Emitter Saturation VoltIC= 800 mA, B = 80 mA 0.5 V VBE (sat) Base-Emitter Saturation Voltage
in „LED Ansteuerung für Lazertag Projekt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CP2103.pdf
Voltage OH) OH = –10 µA VIO – 0.1 — — V IOH= –1 mA VIO – 0.4 — — Output Low Voltage OL) IOL = 10 µA — — 0.1 I = 3 mA — — 0.4 V OL Input High Voltage (V ) V x 0.7 — — V IH IO Input Low Voltage (V — — V x 0.3 V IL IO Input Leakage Current Weak pull-ups
in „Verständnisfrage: CP2103 USB-Uart Bridge“ · FPGA, VHDL & Co. ·
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PDF
DAC8562_3.pdf
Glitch Impulse, Rising Edge, 4-LSB Step Figure 40. Glitch Impulse, Falling Edge, 4-LSB Step LDAC Trigger (5 V/div) LDAC Trigger (5 V/div) Glitch Impulse » 0.1 nV s VOUT (500 V/div) LDAC Feedthrough LDAC Feedthrough VOUT (500 V/div
in „Problem mit Positionsrückmeldung bei GRBL“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sht4x.pdf
is <0.04 °C/y. And please note that it is different for the SHT43. www.sensirion.com / D1 Version 6.4 – November 2023 6 / 24 DT (°C) DT (°C) ±1.0 ±1.0 SHT40 typ SHT41 typ ±0.8 SHT40 max ±0.8 SHT41 max ±0.6 ±0.6 ±0.4 ±0.4 ±0.2 ±0.2 ±0.0 ±0.0 -40 -20 0 20 40 60 80 100 120 -40 -20 0 20 40 60 80 100 120
in „Trockenschrank für Elektronik wie funktioniert es?“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
sht4x.pdf
is <0.04 °C/y. And please note that it is different for the SHT43. www.sensirion.com / D1 Version 6.4 – November 2023 6 / 24 DT (°C) DT (°C) ±1.0 ±1.0 SHT40 typ SHT41 typ ±0.8 SHT40 max ±0.8 SHT41 max ±0.6 ±0.6 ±0.4 ±0.4 ±0.2 ±0.2 ±0.0 ±0.0 -40 -20 0 20 40 60 80 100 120 -40 -20 0 20 40 60 80 100 120
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traco_tmv-en.pdf
Order code Input voltage Output voltage Output current max. Efficiency typ. TMV 0505 EN 5 VDC 200 mA 66 % TMV 0512 EN 12 VDC 80 mA 66 % TMV 0515 EN 5 VDC ±10 % 15 VDC 65 mA 66 % TMV 0505D EN ±5 VDC ±100 mA 66 % TMV 0512D EN ±12 VDC ±40 mA 72 % TMV 0515D EN ±15 VDC ±30 mA 73 % TMV 1205 EN 5 VDC 200 mA 66 % TMV 1212 EN 12 VDC 80 mA 66 % TMV 1215 EN 12 VDC ±10 % 15 VDC 65 mA 66 % TMV 1205D EN ±5 VDC ±100 mA 66 % TMV 1212D EN ±12 VDC ±40 mA 74 % TMV 1215D EN ±15 VDC ±30 mA 75 % http://www.tracopower.com Page 1 of 3 DC/DC Converters
in „DC/DC Wandler Isolation“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SCT2024V01_03.pdf
1V<V OUT<4V A 40 m (T O30 I 20 10 0 0 0.5 1 1.5 2 2.5 3 3.5 4 REXT(KΩ) According to SCT2024’ I V curve, the output voltage should be larger than 1V to get 45 mA constant current. By applying proper output voltage
in „riesige LED-Matrix“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SCT2024V01_03.pdf
1V<V OUT<4V A 40 m (T O30 I 20 10 0 0 0.5 1 1.5 2 2.5 3 3.5 4 REXT(KΩ) According to SCT2024’ I V curve, the output voltage should be larger than 1V to get 45 mA constant current. By applying proper output voltage
in „16Segmentanzeige mit MAX7219 o.ä. steuern?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SCT2024CSSG.pdf
1V<V OUT<4V A 40 m (T O30 I 20 10 0 0 0.5 1 1.5 2 2.5 3 3.5 4 REXT(KΩ) According to SCT2024’ I V curve, the output voltage should be larger than 1V to get 45 mA constant current. By applying proper output voltage
in „LEDs flackern unregelmäßig bei geringer Helligkeit“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD7606_7606-6_7606-4.pdf
INTERNAL REFERENCE F = 200kSPS –20 ±5V RANGE 0.8 T = 25°C A F SAMPLE = 200kSPS 0.6 INTERNAL REFERENCE –40 F IN= 1kHz ±10V RANGE 16,384 POINT FFT ) –60 SNR = 89.48dB 0.4 B THD = –108.65dB ( ) 0.2 E –80 S U ( I L 0 L –100 N P D –0.2 A –120 –0.4 –140 –0.6 –160 –0.8 –180 2 –1.0 4 0 10k 20k 30k 40k 50k 60k 70k
in „STM32 Parallel Bus ADC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
0900766b8065a805.pdf
on any I/O Pin or RST with respect to GND –0.3 — 5.8 V Voltage onDD with respect to GND –0.3 — 4.2 V Maximum Total current throuDD and GND — — 500 mA Maximum output current sunk by RST or any I/O pin — — 100 mA Note: Stresses above those listed may cause permanent damage to the device. This is a
in „Footprint - USB Uart Bridge“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
0900766b8065a805.pdf
on any I/O Pin or RST with respect to GND –0.3 — 5.8 V Voltage onDD with respect to GND –0.3 — 4.2 V Maximum Total current throuDD and GND — — 500 mA Maximum output current sunk by RST or any I/O pin — — 100 mA Note: Stresses above those listed may cause permanent damage to the device. This is a
in „DC DC Wandler Pins“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
0900766b8065a805.pdf
on any I/O Pin or RST with respect to GND –0.3 — 5.8 V Voltage onDD with respect to GND –0.3 — 4.2 V Maximum Total current throuDD and GND — — 500 mA Maximum output current sunk by RST or any I/O pin — — 100 mA Note: Stresses above those listed may cause permanent damage to the device. This is a
in „DC DC Wandler Pins“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
vnh2sp30.pdf
- logic pins 4 kV - output pins: OUA, OUT B V CC 5 kV Tj Junction Operating Temperature Internally Limited °C Tc Case Operating Temperature -40 to 150 °C T Storage Temperature -55 to 150 °C STG Figure 4. Current and
in „25A Regler per PWM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mcp23008.pdf
11 GP0 of the input port data N/C 10 N/C External reset input Low standby current: 1 µA (max.) MCP23S08 PDIP/SOIC Operating voltage: - 1.8V to 5.5V @ -40°C to +85°C (I-Temp) SCK 1 18 V DD - 2.7V to 5.5V @ -40°C to +85°C (I-Temp) SI 2 17 GP7 SO 3 8 16 GP6 - 4.5V to 5.5V @ -40°C to +125°C (E-Temp) 4 0
in „MCP23008 Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RTC-58321.pdf
V = 0V -1 Input capacity C I f = 1MHz 5 pF Current consumption IP VDD = 5V *4 100 500 mA *5 20 40 VDD = 3V *4 15 30 *5 7 20 Oscillation start time *6 tosc VDD = 5V 1.5 3.0 sec. Ta = 25ºCºC *1 Pins CS , WRITE, READ, ADDRESS WRITE, STOP, TEST and D to D 3 *2 CS 1 *3 Pins CS , CS
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PDF
ADC78H90.pdf
Voltage 0V to AV Voltage on Any Pin to GND −0.3V to AVDD DD +0.3V Input Current at Any Pin (Note 3) ± 10 mA Package Thermal Resistance Package Input Current(Note 3) ± 20 mA Package θJA Power Dissipation at A = 25˚C See (Note 4) 16-lead TSSOP on ESD Susceptibility (Note 5) 4-layer, 2 oz. PCB 96˚C / W Human
in „Probleme mit ADC78H90 von National“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS14C232.pdf
V Voltage VCC = 5.0V ±10 % 1.9 2.6 V V Input Low Threshold 0.8 1.5 V TL Voltage V Hysteresis 0.2 0.4 1.0 V HY RIN Input Resistance −15V ≤ VIN≤ 3.0 4.7 7.0 k +15V IN Input Current VIN= +15V +2.14 +3.75 +5.0 mA VIN= +3V +0.43 +0.64 +1.0 mA V = −3V −1.0 −0.64 −0.43 mA IN VIN= −15V −5.0 −3.75 −2.14 mA VOH High Level Output Voltage VIN= −3V, IO = −3.2 mA 3.5 4.5 V V = −3V, I = −20 µA 4.0 4.9 V IN O VOL Low Level Output Voltage VIN= +3V, IO = +3.2 mA 0.15 0.4 V www.national.com 2 S 1 Switching Characteristics 4 C Over recommended operating conditions,
in „Schnittstellentreiber IC DS14C232“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EKG_usw_Informationformedicalapplications_von_TI.pdf
G>5 I2 S 0.1 0.4 10 5.6 80 135 ±4.5 to ±18 7.5 $12.25 OPA627 Very low THD+N, low offset I2 S 0.1 0.4 10 5.6 16 55 ±4.5 to ±18 7.5 $12.25 OPA130 Low power I S, D, Q 1 2 20 16 1 2 4.5 to 36 0.65 $1.40 OPA132 THD
in „EKG Schaltung Neuling“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PCA8574-rev02.pdf
IOL LOW-level output current VOL = 0.5 V; DD = 2.3 V 12 26 - mA [2] VOL = 0.5 V; DD = 3.0 V 17 33 - mA V = 0.5 V; V = 4.5 V [2]25 40 - mA OL DD IOL(tot) total LOW-level output current VOL = 0.5 V; DD = 4.5 V [2]- - 200 mA IOH HIGH-level output current VOH = V SS
in „NXP PCA8574 hat Phänomen mit 2 Adressen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
28c64.pdf
= V - 0.3V to V + 1V Com., Ind. 100 µA SB1 CC CC CC I V Standby Current TTL CE = 2.0V to V + 1V 2 mA SB2 CC CC I V Active Current f = 5 MHz; I = 0 mA 40 mA CC CC OUT V Input Low Voltage 0.8 V IL V Input High Voltage 2.0 V IH V Output Low Voltage I = 2.1 mA 0.40 V OL OL V Output High Voltage I = -400
in „Z80/UA880D mit 28C64 startet nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ICL7116-ICL7117.pdf
(Ext. Ref. 0ppm/°C) V+ Supply Current (Does Not Include LED Current for ICL7117) VIN = 0V 0.8 1.8 mA V- Supply Current for ICL7117 Only 0.6 1.8 mA Analog Common Voltage (With Respect to Positive Supply) 25Ω Between Common and Positive Supply 2.4 2.8 3.2 V Temperature Coefficient of Analog Common 25Ω
in „Erfahrungwerte zum Maxim ICL7117RCPL und verwande ADC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD8132.pdf
SmallSignalFrequencyResponsevs.R F(SeeFigure57) Rev. I | Page 12 of 32 AD8132 25 –30 R = 800Ω G = +10, R = 4.99kΩ L, dm HD3 (VS= +5V) 20 F –40 VO, dm= 2V p-p G = +5, F = 2.49kΩ –50 15 c HD2 (V = ±5V) B S ) 10 (–60 B G = +2, F = 1kΩ N ( I HD3 (V = ±5V) I 5 T–70 S A R G G = +1, F = 499Ω T HD2 (V S +5V) 0 I –80
in „Schutzbeschaltung für ADC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FARNELL_STM25P40.pdf
= V CCV INV SS or VCC 50 µA ICC2 Deep Power-down Current S = V CCV INV SS or VCC 5 µA C = 0.1VCC / 0.9.CC at 25 MHz, ICC3 Operating Current (READ) 4 mA Q = open ICC4 Operating Current (PP) S = V CC 15 mA ICC5 Operating Current (WRSR) S = V CC 15 mA ICC6 Operating Current (SE) S = V CC 15 mA ICC7 Operating Current (BE) S = V CC 15 mA VIL Input Low Voltage – 0.5 0.3VCC V V Input High Voltage 0.7V V +0.4 V IH CC CC VOL Output Low Voltage IOL= 1.6 mA 0.4 V V OH Output High Voltage
in „SPI Flash Speicher beschreiben“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2N4416.pdf
V 2 c Drain-Source On-Resistance rDS(on) VGS = 0 V,DI = 300 mA 150 W Gate-Source Forward Voltage V GS(F) IG= 1 mA , DS = 0 V 0.7 V Dynamic Common-Source b gfs 6 4.5 7.5 4.5 7.5 4.5 7.5 mS Forward Transconductance VDS = 15 V, GS = 0 V Common-Source f = 1 kHz Output
in „OP-Amp schützen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TJA1020.pdf
mode; bus recessi100 400 1000 A supply current on pin BAT in normal slope mode; bus dominan1 3.5 8.0 mA VLIN DC voltage on pin LIN −27 − +40 V Tvj virtual junction temperature −40 − +150 °C Vesd(HBM) electrostatic discharge voltage; human body model; −4 − +4 kV pins NWAKE, LIN and BAT ORDERING INFORMATION
in „[S] MCP2004 LIN Tranceiver oder andere gesucht“ · Markt ·
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pvn012apbf.pdf
International Rectifier Power MOSFETs) www.irf.com 1 SeriesPVN012APbF Electrical Specifications (-40°C ≤ T A +85°C unless otherwise specified) INPUTCHARACTERISTICS Limits Units Minimum Control Current (see figure 1) 5.0 mA Maximum Control Current for Off-State Resistance @ A = +25°C 0.4 mA Control Current Range (Caution: current limit input LED, see figure 6) 5.0 to 25.0 mA Maximum Reverse Voltage 6.0 V OUTPUTCHARACTERISTICS Limits Units Operating Voltage Range 0 to ±20 V(DC orACpeak) Maximum Continuous Load Current @ 40°C, 10mA Control (see figure 1) A Connection 4.0 A
in „MOSFET antiseriell als analoger Wechselstromschalter“ · Analoge Elektronik und Schaltungstechnik ·
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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 „PCM1803 Audio ADC ewige Einschwingzeit“ · Mikrocontroller und Digitale Elektronik ·