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Siemens_B4110.pdf
IJÄ beachten. (Standardwert: 0,05 n= 1,5 m Leitung) ±(2% v.MW + 3 Dig~) O,3...2A 0,300 ...2,999A 1 mA Uneanseruoq fü Ft1 (Mo): Spennungsabfall: ca.O,5V I A Meßbereich Anzeigebereich Auflösung Fehlergrenzen Einstellzoo: 1 s biszumersten Meßwert Meßfolge: 4 Messungen I s -50...+200°C -273,1...+299,9° C
in „Reparaturversuch: Norma Unilap 701 X“ · Analoge Elektronik und Schaltungstechnik ·
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Siemens_B4110_TOC.pdf
IJÄ beachten. (Standardwert: 0,05 n= 1,5 m Leitung) ±(2% v.MW + 3 Dig~) O,3...2A 0,300 ...2,999A 1 mA Uneanseruoq fü Ft1 (Mo): Spennungsabfall: ca.O,5V I A Meßbereich Anzeigebereich Auflösung Fehlergrenzen Einstellzoo: 1 s biszumersten Meßwert Meßfolge: 4 Messungen I s -50...+200°C -273,1...+299,9° C
in „Reparaturversuch: Norma Unilap 701 X“ · Analoge Elektronik und Schaltungstechnik ·
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cy7c199n_8.pdf
SUPPLY CURRENT OUTPUT SOURCE CURRENT vs. SUPPLY VOLTAGE vs. AMBIENT TEMPERATURE ) vs. OUTPUT VOLTAGE 1.4 1.4 m120 ICC ( IS1.2 I 1.2 N , , E100 I 1.0 ICC I 1.0 R D D U 80 E E C I 0.8 I0.8 E VCC = 5.0V A A C 60 T = 25°C M 0.6 VIN= 5.0V M0.6 U A R TA= 25°C R O 40 N 0.4 N0.4 VCC = 5.0V S VIN= 5.0V U 0.2 0.2
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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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tsop752w.pdf
specified) PARAMETER TEST CONDITION SYMBOL MIN. TYP. MAX. UNIT Supply voltage VS 2.5 5.5 V E v 0, V S 3.3 V SD 0.27 0.35 0.45 mA Supply current Ev= 40 klx, sunlight SH 0.45 mA E = 0, test signal see fig. 1, v Transmission distance IR diode TSAL6200, d 30 m IF= 250 mA 2 Output voltage low OSL = 0.5 mA
in „Startzeit IR Empfänger“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74HC4049_74HC4050_SMDHC4049_SMDHC4050.pdf
VIH V 6.0 or 5.9 6.0 5.9 5.9 4.5 V IL I =-6.0 mA 4.18 4.31 4.13 4.10 O 6.0 IO=-7.8 mA 5.68 5.8 5.63 5.60 V OL Low Level Output 2.0 VI= 0.0 0.1 0.1 0.1 Voltage 4.5 IO= 20 A 0.0 0.1 0.1 0.1 VIH V 6.0 or 0.0 0.1 0.1 0.1 4.5 V IL I = 6.0 mA 0.17 0.26 0.33 0.40 O 6.0 IO= 7.8 mA 0.18 0.26 0.33 0.40 II Input Leakage 6.0 V I V CC or GND 〉 0.1 〉 1 〉 1 A Current VI= 15 V 〉 0.5 〉 5 I Quiescent Supply 6.0 V = V or GND 1 10 20 A CC I CC Current
in „Ausgänge über Widerstände zusammenschalten (Statischer Fa“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datenblatt_74hc4050.pdf
VIH V 6.0 or 5.9 6.0 5.9 5.9 4.5 V IL I =-6.0 mA 4.18 4.31 4.13 4.10 O 6.0 IO=-7.8 mA 5.68 5.8 5.63 5.60 V OL Low Level Output 2.0 VI= 0.0 0.1 0.1 0.1 Voltage 4.5 IO= 20 A 0.0 0.1 0.1 0.1 VIH V 6.0 or 0.0 0.1 0.1 0.1 4.5 V IL I = 6.0 mA 0.17 0.26 0.33 0.40 O 6.0 IO= 7.8 mA 0.18 0.26 0.33 0.40 II Input Leakage 6.0 V I V CC or GND 〉 0.1 〉 1 〉 1 A Current VI= 15 V 〉 0.5 〉 5 I Quiescent Supply 6.0 V = V or GND 1 10 20 A CC I CC Current
in „Bustreiber-Ersatz zum 74LS244/245 - brauche Tipp“ · Mikrocontroller und Digitale Elektronik ·
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DB_DCT532_D.pdf
Messgröße relativ D C 0 absolut 1 D C 1 Eingang [bar] 1 0,10 1 0 0 0 0,16 1 1 6 0 0 0,25 1 2 5 0 0 0,40 4 0 0 0 0,60 6 0 0 0 1,0 1 0 0 1 1,6 1 6 0 1 o 2,5 2 5 0 1 s 4,0 4 0 0 1 u i 6,0 6 0 0 1 w 10 1 0 0 2 l 16 1 6 0 2 h b 25 2 5 0 2 n 40 4 0 0 2 f s 60 6 0 0 2 r 100 1 0 0 3 W 160 1 6 0 3 n v 250 2 5 0
in „Drucksensor (Druckmessumformer) - welche Signalart für Arduino: Spannung oder I2C“ · Mikrocontroller und Digitale Elektronik ·
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PCA82C250_PHI.pdf
. SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT Supply 3 supply current dominant; 1 = 1 V − − 70 mA recessive; 1 = 4 V; − − 14 mA R8= 47 k recessive; 1 = 4 V; − − 18 mA V8= 1 V standby; amb < 90 °C; − 100 170 A note 1 DC bus transmitter VIH HIGH-level input voltage output recessive 0.7VCC − VCC + 0.3
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82C250.pdf
. SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT Supply 3 supply current dominant; 1 = 1 V − − 70 mA recessive; 1 = 4 V; − − 14 mA R8= 47 k recessive; 1 = 4 V; − − 18 mA V8= 1 V standby; amb < 90 °C; − 100 170 A note 1 DC bus transmitter VIH HIGH-level input voltage output recessive 0.7VCC − VCC + 0.3
in „I2C vs CAN vs Ethernet“ · Mikrocontroller und Digitale Elektronik ·
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fn3082.pdf
All other trademarks mentioned are the property of their respective owners. ICL7106, ICL7107, ICL7107S Pinouts ICL7106, ICL7107 (PDIP) ICL7107R (PDIP) TOP VIEW TOP VIEW V+ 1 40 OSC 1 OSC 1 1 40 V+ D1 2 39 OSC 2 3 38 OSC 3 OSC 2 2 39 D1 C1 OSC 3 3 38 B1 4 37 TEST C1 TEST 4 37 B1 (1’s) A1 5 36 REF HI 6
in „Magnetfeldsensor mit LED Display“ · Mikrocontroller und Digitale Elektronik ·
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fn3082.pdf
All other trademarks mentioned are the property of their respective owners. ICL7106, ICL7107, ICL7107S Pinouts ICL7106, ICL7107 (PDIP) ICL7107R (PDIP) TOP VIEW TOP VIEW V+ 1 40 OSC 1 OSC 1 1 40 V+ D1 2 39 OSC 2 3 38 OSC 3 OSC 2 2 39 D1 C1 OSC 3 3 38 B1 4 37 TEST C1 TEST 4 37 B1 (1’s) A1 5 36 REF HI 6
in „Muss ich beim ICL 7107 wirklich -5V einspeisen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
W83627HF_HGb.pdf
ERR# GPY1/GP15 123 44 INIT# GPY2/P16/GP14 124 43 SLIN# GPX2/P15/GP13 125 42 PD0 GPX1/P14/GP12 127 40 PD2 GPSA1/P12/GP10 128 39 PD3 1 2 3 4 567 8 9 0112 34 5 6 7 89 01 2 3 4 5 6 7 9 0 1 23 4 56 3 3 78 D D I MDD M D SWW V TWRH D C P VP L S L L L L V LS P B AP PP P R R N OSS O I T DE C RPDE S L M SC DE
in „Pullups für nicht verwendete Open-Drain-Outputs?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
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
2BZX84C3V3-DIO.pdf
ND 5.2 6 < 40 -1...+4 2 1 50 2BZX84C6V2 NE 5.8 6.6 < 10 +2...+5 4 3 45 2BZX84C6V8/-AQ NF 6.4 7.2 < 15 +3...+6 4 2 42 2BZX84C7V5/-Q NH 7 7.9 < 15 +3...+6 5 1 38 2BZX84C8V2 NJ 7.7 8.7 < 15 +4...+7 5 0.7 34 2BZX84C9V1
in „Jalousie Steuerung mit Kleinspannung+ESP32“ · 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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TS80C51U2_ATMELCorporation.pdf
XXX0 P0 SP DPL DPH PCON 80h 1111 1111 0000 0111 0000 0000 0000 0000 00X1 0000 87h 0/8 1/9 2/A 3/B 4/C 5/D 6/E 7/F reserved 4 Rev. D - 15 January, 2001 TS80C51U2 TS83C51U2 TS87C51U2 6. Pin Configuration s P1.0 / T2 1 40 VCC _ _ * D D E I 0 1 2 D P1.1 / T2EX 2 39 P0.0 / A0 / R / T/ / 1 / A / / / P1.2/RxD_1 3 38 P0.1 / A1 . . . . . S C . . . . P P P P P V V P P P 0 0 0 P P1.3/TxD_1 4 37 P0.2 / A2 P1.4 5 36 P0.3 / A3 6 5 4 3 2 1 44 43 42 41 40 P0.4 / A4 P1.5 6 35 P1.5 7 39 P0.4/AD4 P1.6/RxD_1 7 34 P0.5 / A5 P1.6/RxD_1 8 38 P0.5/AD5
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PDF
3RM13023AA04_datasheet_en.pdf
3.5 mm — downwards 50 mm Ambient conditions installation altitude at height above sea level maximum 4 000 m; For derating see manual ambient temperature ● during operation -25 ... +60 °C ● during storage -40 ... +70 °C ● during transport -40 ... +70 °C environmental category during operation according
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bq2060a.pdf
90% — a6 95% — a1 0x4d Charge Efficiency Li-ion, Nickel 97% — el 100% — ff Current Taper Threshold Li-ion — — — 200 mA — 12 0x4e DeltaT Time Nickel 180 s — 07 — — — 0x4f Holdoff Time Nickel 240 s — 04 — — — Current Taper
in „Verstehe dieses Datenblatt nicht (BQ2060A)“ · Mikrocontroller und Digitale Elektronik ·
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LED-Dot.pdf
(HER) Units Power Dissipation per Dot P D 65 65 mW Peak Forward Current per Dot [1, 2] IPEAK 80 80 mA Average Forward Current per Dot I AVG 25[3] 25[4] mA F Reverse Voltage per Dot V R 5 5 V Operating Temperature T O –35 to +85 –35 to +85 °C Storage Temperature T –35 to +85 –35 to +85 °C S Soldering
in „V : Grosse LED Dot-Matrix Anzeigen 5mm Leuchtpunkt DUO !!“ · Markt ·
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PDF
BT-145-800R_800V_16A_300A_Pk_Thyristor___PHI.pdf
exponential waveform; gate open circuit tgt Gate controlled turn-on TM = 40 A; VD= V DRM(max)G = 0.1 A; - 2 - s time dIG/dt = 5 A/ s t Circuit commutated V = 67% V ; T = 125 ˚C; - 70 - s q turn-off time ID = 50 A; V = 25 V; dI /dt = 30 A/ s; TM R TM dV Ddt = 50 V/ s May 1997
in „Thyristor DC On Off Steuerung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PCA9685.pdf
voltage 0.5 - +0.3VDD V V IH HIGH-level input voltage 0.7VDD - 5.5 V I LOW-level output current V = 0.4 V; V = 2.3 V 20 28 - mA OL OL DD V OL= 0.4 V; VDD= 5.0 V 30 40 - mA IL leakage current V I V DD or VSS 1 - +1 A C i input capacitance V I V SS - 6 10 pF LED driver outputs IOL LOW-level output current
in „LED-Streifen dimmen“ · Mikrocontroller und Digitale Elektronik ·
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EM6580.pdf
:0] RdRegPA 1 PA[5:4] Qdeb CkDeb IRQPA[0/5] Debounce Q I0 to Interrupt Logic Z IRQPA[3/4] PA[3] I0 QB I1 Z S PA[4] I1 debouncerYesPA[3/4] EdgeFallingPA[3/4] S irqPA[3l/4h] WakeUp on change WakeUp on Change In Sleep Out WUchEnPA
in „Was ist aus dem Thread der MeteoData geworden?“ · Mikrocontroller und Digitale Elektronik ·
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A300_25AA640A_25LC640A-MIC.pdf
protection: > 4000V CS 1 8 VCC CS 1 8 VCC • Temperature Ranges Supported: SO 2 7 HOLD - Industrial (I): -40°C to +85°C WP 3 6 SCK SO 2 7 HOLD VSS 4 5 SI WP 3 6 SCK - Automotive (E): -40°C to +125°C VSS 4 5 SI DFN/TDFN (MF/MNY) X-Rotated TSSOP (X/ST) 1 HOLD 1 8 SCK CS 8 VCC VCC 2 7 SI SO 2 7 HOLD CS 4 5 VSS
in „SPI funktioniert nicht“ · Mikrocontroller und Digitale Elektronik ·
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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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MAX7219-MAX7221.pdf
unless otherwise noted.) PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS Operating Supply Voltage V+ 4.0 5.5 V Shutdown Supply Current I+ All digital inputs at V+ or GND, T = +25°C 150 µA A RSET = open circuit 8 Operating Supply Current I+ All segments and decimal point on, 330 mA ISEG_ = -40mA Display
in „[V] 2x MAX7219CNG“ · Markt ·
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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
PDIUSBD11_N_3.pdf
V V O CC Tamb Operating ambient temperature range in freeSee DC and AC characteristics per device –40 85 ⋅C 1 ABSOLUTE MAXIMUM RATINGS SYMBOL PARAMETER TEST CONDITIONS MIN MAX UNIT V DC supply voltage –0.5 +4.6 V CC IK DC input diode current V I 0 –50 mA VI DC input voltage Note 2 –0.5 +5.5 V VI/O DC
in „AVR - USB - Interface“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PDIUSBD11.pdf
V V O CC Tamb Operating ambient temperature range in freeSee DC and AC characteristics per device –40 85 ⋅C 1 ABSOLUTE MAXIMUM RATINGS SYMBOL PARAMETER TEST CONDITIONS MIN MAX UNIT V DC supply voltage –0.5 +4.6 V CC IK DC input diode current V I 0 –50 mA VI DC input voltage Note 2 –0.5 +5.5 V VI/O DC
in „PDIUSBD11... jemand schon mal was gemacht damit?“ · Mikrocontroller und Digitale Elektronik ·
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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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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
MAR-6__Amp.pdf
061031 Page 1 of 2 MMIC Amplifier MAR-6+ Typical Performance Curves Gain ISOLATION 24 13 22 Gain @ 16 mA 14 Isolation @ 16 mA 20 15 18 ) 16 ) d ( 16 n 17 n i a 14 l 18 G 12 s 19 I 10 20 8 21 6 22 4 23 0 500 1000 1500 2000 2500 3000 3500 4000 0 500 1000 1500 2000 2500 3000 3500 4000 Frequency (MHz) Frequency (MHz) Return Loss In Return Loss Out 0 10 5 Return Loss In @ 16 mA 12 Return Loss Out @ 16 mA ) 10 ) 14 d ( ( 15 t 16 I O s 20 s 18 L 25 o 20 n L u 30 r 22 e t R 35 R 24 40 26 45 28 50 30 0 500 1000 1500 2000 2500 3000 3500 4000 0 500 1000 1500 2000 2500 3000 3500 4000
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rtc8564.pdf
VDD V + 0.5 V "L" output voltage IL (SDA) SDA V OL=0.4 V, VD=5 V −3 mA "L" output current IL (/INT) / INT V OL=0.4 V, VD=5 V −1 mA IL "L" output current CLKOUT V OL=0.4 V, VD=5 V −1 mA (CLKOUT) "H" output current IOH CLKOUT VOH =4.6 V, VD=5 V 1 mA (CLKOUT
in „Frage zu RTC8564 / Genaue RTC mit integr. Quarz gesucht“ · Mikrocontroller und Digitale Elektronik ·
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pd24xx.pdf
V =2.0 V) 3)Data out voltages are measured with 100 pF on the data bus and the ability to source=–40 µA and sink=1.6 mA The rise and fall times aOL=0.4 V,OH=2.4 V. 2000 Infineon Technologies Corp. • Optoelectronics Division • San Jose, CA PD2535/6/7, PD3535/6/7, PD4435/6/7 www.infineon.com/opto • 1-
in „HP 2118/SLR 2016 - Ich werde Irre!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
L9473.pdf
at 100°C). 3/9 L9473 Figure 4. Set-Point Voltage vs. Mounting Tab Temperature (10kΩ between V GO & TS) 15.4 15.3 15.17 15.2 15.08 15 15.01 14.86 14.77 l 14.8 V 14.84 14.69 14.59 14.6 14.41 14.4 14.3 14.2 -40 -20 0 20 40 60 80 100
in „Suche Bauteil L9473“ · Mikrocontroller und Digitale Elektronik ·
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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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doc4688.pdf
> 1.8V V 2.3 2.5 2.9 V DD FDon Field-off detection voltage VDD > 1.8V VFDoff 0.8 V Voltage drop at S = 0.5 mA, power-supply switch VBatt 2 V V SD 150 mV Coil Inputs: Coil 1 and Coil 2 Coil input current ICI 20 mA Input capacitance CIN 30 pF Coil voltage stroke during V > 5V CU VCMS 1.8 2.3 4.0 V modulation
in „Die I2C Schnittstelle eines PIC16F876A initialisieren“ · Mikrocontroller und Digitale Elektronik ·
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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
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
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
74f595.pdf
latches (3-State) 74F595 LOGIC DIAGRAM OE 13 12 STCP SHCP 11 10 SHR Ds 14 D Q R Q 15Q0 CP CP CLR Q S S 1 Q R Q Q1 R CP CP CLR Q S S Q R Q 2 Q2 R CP CP Q S CLR S 3 Q R Q Q3 R CP CP CLR Q S S Q R Q 4 Q4 R CP CP Q S CLR S 5 Q R Q Q5 R CP CP Q CLR S S Q R Q 6 Q6 R CP CP Q S CLR S 7 Q R Q Q7 R CP CP Q CLR
in „Schnelleres IC als STPIC6C595“ · Mikrocontroller und Digitale Elektronik ·
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PDF
esp32_s2_datasheet_en.pdf
(mm) ESP32-S2 No –40 ▯ 85 –40 ▯ 125 QFN56 (7*7) ESP32-S2FH2 2 MB –40 ▯ 105 –40 ▯ 105 QFN56 (7*7) ESP32-S2FH4 4 MB –40 ▯ 105 –40 ▯ 105 QFN56 (7*7) Note: ESP32-S2FH4 is not mass produced yet. Espressif Systems 10 ESP32
in „Frage zu ESP32-S2 und dem Clock“ · Mikrocontroller und Digitale Elektronik ·
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PDF
5988-7313EN.pdf
20 mA λpeak(nm) λd[1](nm) (degrees)[2] ηV Color Min. Typ. Typ. Typ. Typ. (lm/W)[3] High 1.6 5.0 639 626 155 145 Efficiency Red Orange 1.6 4.0 606 604 155 380 Yellow 1.6 5.0 584 586 155 500 Green 4.0 9.0 570
in „Verk. LED HSMF-C655“ · Markt ·
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PDF
bs208.pdf
scale DIMENSIONS (mm are the original dimensions) UNIT A b b1 c D d E e e1 L L1(1) 5.2 0.48 0.66 0.45 4.8 1.7 4.2 14.5 mm 5.0 0.40 0.56 0.40 4.4 1.4 3.6 2.54 1.27 12.7 2.5 Note 1. Terminal dimensions within this zone are uncontrolled to allow for flow of plastic and terminal irregularities. OUTLINE REFERENCES
in „Mosfet BS208 sperrt nicht bei >3V“ · Analoge Elektronik und Schaltungstechnik ·
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irlz24n.pdf
±FJunctionFanf -°°FFtoF(F8w° F= ktoda±eF=eb4edatudeFRan±e /C STG koGfedin±F=eb4edatude F0odF85Fseconfs 355F)8S2bbF0dobFcaseM qountin±Ftod ue F2-3IFodFq3FscdepS 85FG60NinF)8S8BNbM Thermal Resistance Parameter MinT ypxT MaUT snitO RθJC Junction-to-Case
in „IR2127 Beschaltung als Low Side Schalter + Mosfet“ · 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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tantprecautions.pdf
other momentary current flows, it is recommended that the operating frequency. (See Table 2 and Fig. 4.) operating voltage be 30-% or less of the rating, with a resistor connected in series tolimit the current to 300 mA or less. (See section 4 for details.) (3)Whenthetantalumcapacitorsaretobeusedatanambient
in „Tantals "Heute"“ · Mikrocontroller und Digitale Elektronik ·
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4_5_stelliges_LED_ELV_DMM7001.pdf
schluß des FET's T 1 steht dann der während R 51 bis R 55 die unterschiedli ebenfallsüber die Sicherung Si 1 und an Konstantstrom zur Verfügung. chen Ströme für die Widerstandsmeßbe schließend über S4d, je nach eingeschal
in „Projekt DVM 4,5 Digit aus Standardbauteilen mit automatischer Bereichsumschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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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. ·