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SAA1057.pdf
separate DLEN or has less clock pulses than the SAA1057 it is not necessary to keep to this busy-time, 5 s will be sufficient. 6. When the bus is in the active mode (see BRM in Control Information), 4,5 mA should be added to the figures given. 7. Open collector output. 8. Measured in Fig.6. Fig.5 Circuit configuration
in „SAA1057 in Bascom Ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
til311.pdf
maintain this temperature. recommended operating conditions MIN NOM MAX UNIT Supply voltage,CC , logic 4.5 5 5.5 V Supply voltage, V , LED 4 5 5.5 V LED Decimal point currenF(DP) 5 mA Pulse duration, t , latch strobe 40 ns w Setup time,su 50 ns Hold time, t 40 ns h POST OFFICE BOX 65530DALLAS, TEXAS 75265
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BettyHHU.pdf
KBDO1 KBDO1 KBDO1 A4 38 AMB_D4 AMB_A5 21 DQ3 1% 4 AMB_A6 20 DQ4 A4 38 AMB_D4 VDD3 1 BM1 A5 40 AMB_D5 AMB_A6 20 DQ4 R3 0R T 5 BM0 AMB_A7 19 DQ5 A5 40 AMB_D5 50MA 2 AMB_OE ICT4 6 SW8 SW6 SW16 A6 42 AMB_D6 AMB_A7 19 DQ5 WUERTH
in „Innenleben von Betty TV“ · Mikrocontroller und Digitale Elektronik ·
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PIRuaa4713.pdf
Voltage ITCI Timer Control Input Current V TCI0 to V+ 1 0 0.5 A TIM On-Timer Counter Duration V TCI 14/4 50 60 Hz (depends on the mains 11/12 V+ 0 0 s frequency and on externally adjustable Timer Control 9/12 V+ 4.48 3.73 s Input Voltage) + 1/2 cicle 7/12 V+ 40 33.3 s precision 5/12 V+ 81 67.5 s 3/12 V+ 163 135.8 s 1/12 V+ 327 272.5 s 0V (GND) Continue D Delay Time Between 50Hz 14/4 40 50 60 ms Window Comparator Input and Timer Start 60Hz 33.3 41.6 50 ms tDR Delay Time Between Timer 50Hz 14/4 500 ms Stop to Retrigger
in „Bewegungsmelder Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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AM26LS32.pdf
Note C 90% 90% 3 V 90% 90% 3 V 1.3 V 1.3 V 1.3 V 1.3 V Enable G Enable G 10% 10% 10% 0 10% 0 tPZH PZL S1 Closed 0.5 V S2 Closed S1 Open VOH ≈1.4 V Output S2 Closed 1.3 V Output 1.3 V tPLZ ≈1.4 V S1 Closed VOL tPHZ S1 Closed S2 Open 0.5 V S2 Closed VOLTAGE WAVEFORMS FOR t , t VOLTAGE WAVEFORMS FOR t , t
in „Bringen nicht aufgelegte Schirme überhaupt was gegen HF?“ · HF, Funk und Felder ·
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AT-64020.pdf
Power)/(RF Input Power +VCEIC). AT-64020TypicalPerformance,T =25°C A 30 15 30 POUT 25 29 12 m ) ) d 20 40 B 28 d T ηT ( B 9 U 15 30 % d27 1 R Y P1 150 mA G E 10 20 N 110 mA O I 26 70 mA 6 P F 150 mA 5 10 E 110 mA 25 3 70 mA 0 0 1.0 2.0 3.0 4.0 1.0 2.0 3.0 4.0 0 5 10 15 20 25 FREQUENCY (GHz) FREQUENCY (GHz
in „[S] RF-Transistor AT-64020 oder einen adäquaten Ersatz“ · Markt ·
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PDF
TIC263_BOU.pdf
noted) (continued) PARAMETER TEST CONDITIONS MIN TYP MAX UNIT V supply +12 V† G = 0 InitT I = 100 mA 20 40 IH Holding current mA V supply -12 V† G = 0 InitT I-100 mA -10 -40 V supply +12 V† 20 IL Latching current (see Note 5) mA V supply -12 V† -20 Critical rate of rise of dv/dt V D Rated V D G = 0
in „Mit welchen Bauteil 230V / 16A über µC regeln?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TIC263_BOU.pdf
noted) (continued) PARAMETER TEST CONDITIONS MIN TYP MAX UNIT V supply +12 V† G = 0 InitT I = 100 mA 20 40 IH Holding current mA V supply -12 V† G = 0 InitT I-100 mA -10 -40 V supply +12 V† 20 IL Latching current (see Note 5) mA V supply -12 V† -20 Critical rate of rise of dv/dt V D Rated V D G = 0
in „Hilfe zum Datenblatt?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pca9545.pdf
4.0 — 0.6 — s SU;STA Set-up time for a repeated START condition 4.7 — 0.6 — s SU;STO Set-up time for STOP condition 4.0 — 0.6 — s 2 2 HD;DAT Data hold time 0 3.45 0 0.9 s t Data set-up time 250 — 100 —
in „Multiplexer I2C programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bat60a.pdf
Semiconductor Groupp 22 Sep-1998-11-01 BAT 60A Forward current I = f (T *;T ) Reverse current I = f (T ) F A S R A * Package mounted on epoxy V R 8V 0 3200 10 A mA 10-1 2400 F 2000 R -2 I TS I 10 1600 10-3 1200 TA 800 10-4 400 -5 0 10 0 20 40 60 80 100 120 °C 150 -20 0 20 40 60 °C 100 TA S T A Permissible Pulse Load R = f(t ) Permissible Pulse Load thJS p I / I = f(t ) Fmax FDC p 2 2 10 10 K/W C D - IF S 1 /x D = 0 J 10 a 0.005 t F 0.01 R I 0.02 10 1 0.05 0.1 0.5 0.2 0.2 0.5 0 0.1 10 0.05 0.02 0.01 0.005 D = 0 -1 0 10 -6 -5 -4 -3 -2 0 10 -6 -5 -4 -3 -2 0 10 10 10 10 10 s 10 10 10 10 10 10 s 10 t t p
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ESP8266-12F_Tronixlabs_Australia.pdf
components, 802.11b mode +20 dBm output power The guard interval • A-MPDU, A-MSDU aggregation and 0.4 s of • WiFi @ 2.4 GHz, supports WPA / WPA2 security mode • Supports remote upgrade and cloud AT OTA upgrade • Support STA / AP / STA + AP mode • Support Smart Config function (including Android and iOS
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PDF
Feinsicherung-522.300-AC-5-x-20-mm-traege-ESKA_01.pdf
characteristics: UN Ud_max Pd_max IBC I t Art. No. IN 2 Bemessungs- Schmelzzeit [V] [mV] [W] [A] [A s] / 522.302 32 mA 250 5.000 1,6 150 0,004 strom-Faktor 522.303 40 mA 250 4.000 1,6 150 0,012 / Melting time: Rated current 522.304 50 mA 250 3.500 1,6 150 0,025 factor 32 mA 125 mA 522.305 63 mA 250 3.000
in „Schmelzverhalten Feinsicherung“ · Analoge Elektronik und Schaltungstechnik ·
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LT1014CN_DN.pdf
137 dB Differential id input resistance 25°C 70 300 70 300 MΩ Common-mode ic input resistance 25°C 4 4 GΩ Supply current 25°C 0.35 0.55 0.35 0.55 CC mA per amplifier Full range 0.6 0.6 †Full range is −40°C to 105°C. ‡ All typical values arA at T = 25°C. POST OFFICE BOX 655•DALLAS, TEXAS 75265 7 SLOS039D
in „Unterschied beim LT1014 ?“ · Mikrocontroller und Digitale Elektronik ·
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NEC_AC08DSMA.pdf
100 MAX. 140 Initial T25˚C ISM A A 0 π 2 π t t 120 N = 1 n e r r u 10 u 100 C e t a 80 60 Hz t s - n 50 Hz O TC= 125˚C 25˚C O 60 - e i 1.0 r S 40 - M I 20 0.1 0 0 1 2 3 4 5 1 5 10 50 100 νT - On-state Voltage - V Cycles - N Figure 3. GATE RATING Figure 4. GATE CHARACTERISTIC 10 2.0 Mode T= −40 to
in „Triac am atmega anstelle MOC3041 und BTA08-400“ · Analoge Elektronik und Schaltungstechnik ·
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DS_AT32F421_V2.01_EN.pdf
channels 9 10 11 11 10 15 n A Comparator 1 1 1 1 1 1 GPIO 15 23 27 27 25 39 Operating temperature -40 C to +105C° TSSOP20 QFN28 QFN32 QFN32 LQFP32 LQFP48 Package 6.5 x 4.4 mm 4 x 4 mm 4 x 4 mm 5 x 5 mm 7 x 7 mm 7 x 7 mm (1) Only SPI1/I S1 exists on TSSOP20. (2) All pins of USART2 are available on TSSOP20
in „Firmware entschlüsseln, Updateprogramm als Hilfe?“ · Softwareentwicklung ·
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PDF
Traco_Power__TMV_2-2403SHI.pdf
2403SHI 3.3 VDC 500 mA 76 % TMV 2-2405SHI 5 VDC 400 mA 77 % TMV 2-2409SHI 9 VDC 222 mA 81 % TMV 2-2412SHI 12 VDC 168 mA 82 % TMV 2-2415SHI 21.6 - 26.4 VDC 15 VDC 132 mA 82 % TMV 2-2405DHI (24 VDC nom.) +5 VDC 200 mA –5 VDC
in „isol. DC/DC-Wandler 3,3V geregelt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HLC-1550A.pdf
.5 0 V3.6 ±. ±. e ± 0 t3.4 1: 300 mA 3. 4. o 1 2 3 2: 600 mA 3 4 V3.2 3: 1000 mA Ø 14.5 +0.2 0.2 0.7±0.02 7.5 Ø 14.5 +0.2 0.2 0.7±0.02 3.0 0.2 0.7 ±0.02 2.8 −50 −35 −20 −5 10 25 40 55 70 85 100 Temperature / °C Voltage Curve at +25 °C 4.0 0 0 ±0 ±0 3.8 37 40 V 3 4 e3.6 a o3.4 0.2 0.7±0.02 7.5 t3.2 0.2 0.7 ±0.02 CAUTION: 7.5 c Fire, explosion, c3.0 and severe burn hazard. n Do not disassemble, heat p2.8 200 mA discharge Available Terminations
in „[V] Tadiran TLP-93111/A LiSoCl Primaerbatterien“ · Markt ·
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LT1638.pdf
500 700 mV VOH Output Voltage Swing High VS= 3V, No Load ● 2.94 2.98 V VS= 3V, SOURCE= 5mA ● 2.25 2.40 V V = 5V, No Load ● 4.94 4.98 V V = 5V, I = 10mA ● 3.8 4.0 V S SOURCE ISC Short-Circuit Current (Note 2) VS= 3V, Short to GND 10 15 mA VS= 3V, Short tCCV 15 25 mA VS= 5V, Short to GND 15 20 mA VS= 5V
in „OPAMP Differenzverstärker - max. Einganggsspannung?“ · Analoge Elektronik und Schaltungstechnik ·
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TL783.pdf
DERATING CURVE 2000 24 W W m 1800 Derating Factor = 16 mW/⋅C – – R θJA ⌠62.5⋅C/W n i 1600 t 20 a p i s i 1400 i 16 D r e 1200 w w o P 1000 s 12 s u o 800 u n t n n 8 o 600 C C m u 400 u Derating Factor = 250 mW/⋅C m i 4 Above 70⋅C x 200 a RθJC ⌠4⋅C/W M M 0 0 25 50 75 100 125 150 25 50 75 100 125 150 TA
in „LM337 mit Zenerdiode hochlegen ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Sensitec_CDS4100_DSE_06__150A-350A_.pdf
Upper cut-off frequency(-1 dB) 200 400 - kHz co Negligible hysteresis T Ambient temperature 3) -40 - +105 °C amb T Busbar temperature 3) -40 - +105 °C Applications B 1) For 1 s in a 60 s interMal; R Ω. Solar power converters 2) Overall accuracy contains ε , ε andat V = 5 V; R = 300 Ω; T = 25 °C.
in „Strommessung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
esp_wroom_32_datasheet_en.pdf
OFDM, 6 Mbps - -93 - dBm OFDM, 54 Mbps - -75 - dBm HT20, MCS0 - -93 - dBm HT20, MCS7 - -73 - dBm HT40, MCS0 - -90 - dBm HT40, MCS7 - -70 - dBm MCS32 - -91 - dBm Adjacent Channel Rejection OFDM, 6 Mbps - 37 - dB OFDM, 54 Mbps - 21 - dB HT20, MCS0 - 37 - dB HT20, MCS7 - 20 - dB 4.5 Bluetooth LE Radio 4.5.1
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TIP120_bis_TIP_127.pdf
300 s, duty cycle < 2 % For PNP types voltage and current values are negative. 2/4 TIP120/TIP121/TIP122/TIP125/TIP126/TIP127 TO-220 MECHANICAL DATA mm inch DIM. MIN. TYP. MAX. MIN. TYP. MAX. A 4.40 4.60 0.173
in „Stromsenke / el. Last“ · Analoge Elektronik und Schaltungstechnik ·
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TDA8375.pdf
9 E 4 T L R R O L R R 3 C O C T L A C T R G C E . H S 4 C N T N R s T N R T I S O 3 M T 4 V A N S A 1 R S A F I U N C 6 C E D V E R F T D 3 N S A S y 4 m 1 o U 3 n 4 H o 6 c full pagewidth 1 e d 1 e S 0 l
in „PAL-Röhren TV auf NTSC umbauen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HT75xx-1.pdf
=80mA ) 5.10 Iout=120mA g3.35 e t a 5.05 v3.30 o 5.00 u3.25 v t u4.95 O3.20 u O 4.90 3.15 3.10 4.85 -40 -30 -20 -10 0 10 20 30 40 50 60 70 80 4.80 Temperature( C) -40 -30 -20 -10 0 10 20 30 40 50 60 70 80 Temperature( C) Output Voltage vs Temperature 3.50 HT7533-1 5.20 HT7550-1 3.45 Vin=5.3V 5.15 Vin=7V Vin=30V Vin=30V ).40 (5.10 e e a.35 t5.05 3.30 o t t5.00 t.25 p4.95 u u 3.20 O4.90 3.15 4.85 3.10 4.80 -40 -30 -20 -10 0 10 Temperature( C)40 50 60 70 80 -40 -30 -20 -10 0 10 20 30 40 50 60 70 80 Temperature( C) Rev. 2.30
in „2xAA + Elektronik -> Batterielebensdauer“ · Analoge Elektronik und Schaltungstechnik ·
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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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2.transceiver_si4468.pdf
for +27 or +30 dBm Automatic gain control (AGC) Low active power consumption Low BOM 10/13 mA RX Low battery detector 18 mA TX at +10 dBm (Si4467) Temperature sensor Ultra low current powerdown mode 20-Pin QFN package 30 nA shutdown, 40 nA standby Sub-GHz 802.15.4 mesh network ready
in „Transceiver Si4467 SPI Transfer PIC24“ · Mikrocontroller und Digitale Elektronik ·
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PDF
16389fg.pdf
3V, Short to GND 10 15 mA SC VS= 3V, Short to V 15 25 mA S CC VS= 5V, Short to GND 15 20 mA VS= 5V, Short tCCV 15 25 mA 16389fg 4 LT1638/LT1639 ELECTRICAL CHARACTERISTICS The l denotes the specifications which apply over the specified
in „Alternative gesucht zu OpAmp“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CD4514BC.PDF
Semiconductor CorporatDS005994 www.fairchildsemi.com C B Truth Table 5 1 Decode Truth Table (Strobe=1) 4 D Data Inputs Selected Output C Inhibit D C B A CD4514 =Logic “1” C CD4515 =Logic “0” B 0 0 0 0 0 S0 4 0 0 0 0 1 S1 1 5 0 0 0 1 0 S2 4 0 0 0 1 1 S3 D C 0 0 1 0 0 S4 0 0 1 0 1 S5 0 0 1 1 0 S6 0 0 1 1
in „Adressierung Porterweiterung mit IC 4514“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT3012.pdf
RELATED PARTS PART NUMBER DESCRIPTION COMMENTS LT1020 125mA, Micropower Regulator and Comparator V IN: 4.5V to 36V,OUT(MIN)= 2.5V, VDO = 0.4V,QI = 40μA, SD= 40μA, Comparator and Reference, Class B Outputs, S16, PDIP14 Packages LT1120/LT1120A 125mA, Micropower Regulator and Comparator V : 4INV to 36V, V OUT(MIN)= 2.5V, VDO = 0.4V,QI = 40μA, SD= 10μA, Comparator and Reference, Logic Shutdown, Ref Sources and Sinks 2/4mA, S8, N8 Packages LT1121/LT1121HV 150mA, Micropower, LDO VIN 4.2V to 30/36V, OUT(MIN) = 3.75V, DO = 0.42V, Q
in „Linear Regler schwingt“ · Analoge Elektronik und Schaltungstechnik ·
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LM311_APPLICATIONS.PDF
25°C 2.0 5.0 mA Output Leakage Current V ≥5 mV, V =35V, T =25°C, IN OUT A 0.2 10 nA ISTROBE=3 mA Input Offset Voltage2) R ≤50 k 4.0 mV S Input Offset Current) 20 nA Input Bias Current 150 nA Input Voltage Range V =15V
in „Nochmal LC-Meter nach AADE: dessen Oszillator“ · HF, Funk und Felder ·
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PDF
AD7376.pdf
1000 V = 2.5V 15 V 900 R = 50kV A – AB V B= 0V R 10 E 800 0.8 CODE = 40H T / C R = 50kV E m 5 A 700 AB M p T VDD = +5V I – 0 S 600 V = 0V B 0.6 N O E SS L E C –5 R 500 – O P V = +15V C L P E–10 DD A 400 I 0.4 T T VSS = –15V N B D–15 VA= +2.5V O300 VDD = +5V W O V = 0V C
in „1-10 V digitales Potentiometer“ · Mikrocontroller und Digitale Elektronik ·
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VN02N.pdf
Breakdown Voltage 60 V OUT Output Current (cont.) 6 A R Reverse Output Current -6 A IN Input Current 〉 10 mA -V CC Reverse Supply Voltage -4 V ISTAT Status Current 〉 10 mA V ESD Electrostatic Discharge (1.5 k , 100 pF) 2000 V o Ptot Power Dissipation at c 25 C 29 W Tj Junction Operating Temperature -40 to
in „Schottky-Diode gegen "reverse supply"“ · Mikrocontroller und Digitale Elektronik ·
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PDF
dog-m.pdf
n Varianten erhältlich: weiss, gelb/grün, blau, rot, amber und eine Connected in parallel 2,2 V 80 mA 14 ohm 35 ohm u l Vollfarb-Version. Connected in series 4,4 V 40 mA - 15 ohm h f BeidenmonochromenBeleuchtungenstehenjeweils2separate Limiting resistor c LED-Pfade zur Verfügung, welche zur optimalen
in „EA DOGM 081 LCD- Initialisierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TLV2462.pdf
DD VIC = 2.5 V, TLV246xI/Q/M Full range 60 VO = 2.5 V, 25°C 1.3 14 R = 50 Ω IB Input bias current S TLV246xC Full range 30 nA TLV246xI/Q/M Full range 60 25°C 4.9 OH = −2.5 mA Full range 4.8 VOH High-level output voltage V 25°C 4.8 OH = −10 mA Full range 4.7 25°C 0.1 VIC = 2.5 V, IOL = 2.5 mA Full range
in „frage zu einfachem uC Ohmmeter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
k2series_ds_10153704.pdf
2.85V Absolute Maximum Current 680 A 930 A 1150 A 1500 A 1900 A Leakage Current at 25C, maximum 3 1.5 mA 2.7 mA 3.0 mA 4.2 mA 5.2 mA TEMPERATURE Operating temperature (Cell case temperature) Minimum -40 C -40 C -40 C -40 C -40 C Maximum 65 C 65 C 65 C 65 C 65 C Storage temperature (Stored uncharged) Minimum
in „(L(C(R) Messgerät für 2 Farad gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
NECCS04393-1.pdf
COM1 24 52 S20 COM2 25 51 S19 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 3 S C C C S 0 1 2 3 4 5 6 7 8 9 1 1 1 1 1 1 1 1 1 M I V V VL V S S S S S S S S S S S S S S S S S S S C B Cautions
in „Anschlussbelegung uP D78P0308GF gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
vish_ILQ2.pdf
1.5 V ILQ2 t 1 μs D ILD5 tD 1.7 μs ILQ5 tD 1.7 μs ILD1 t 1.2 μs r ILQ1 r 1.2 μs Rise time VCE = 0.4 V, L = 1 k, CC = 5 V, ILD2 r 2 μs V TH= 1.5 V ILQ2 r 2 μs ILD5 r 7 μs ILQ5 r 7 μs ILD1 s 7.4 μs ILQ1 s 7.4 μs ILD2 t 5.4 μs Storage VCE = 0.4 V, L = 1 k, CC = 5 V, s V TH= 1.5 V ILQ2 s 5.4 μs ILD5 s 4.6 μs ILQ5 t 4.6 μs s ILD1 f 7.6 μs ILQ1 f 7.6 μs ILD2 t 13.5 μs Fall time VCE = 0.4 V, L = 1 k, CC = 5 V, f V TH= 1.5 V ILQ2 f 13.5 μs ILD5 f 20 μs ILQ5 f 20 μs ILD1 tPHL 1.6 μs ILQ1 tPHL 1.6 μs V
in „Optokoppler SPS 24V zu 5V“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XTR115_-_4-20mA_Stromquelle.pdf
TYP MAX UNITS OUTPUT Output Current Equation IO IO= IIN• 100 Output Current, Linear Range 0.25 25 mA Over-Scale Limit LIM 32 mA Under-Scale Limit MIN REG = 0, REF= 0 0.2 0.25 mA SPAN Span (Current Gain) S 100 A/A (1) Error IIN= 250 A to 25mA ±0.05 ±0.2 ±0.4 % vs Temperature TA = –40°C to +85°C ±3 ±20
in „Fehlersuche XTR116“ · Mikrocontroller und Digitale Elektronik ·
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PDF
info-uiir2156.pdf
CHO =1nF tf Turn-off fall time — 55 100 4 www.irf.com IR2156 ( S&(PbF) BlockDiagram Vcc S1 RT R VB S2 Driver 40K R Logic High- Comp 1 Side HO CT Driver T Q RDT VTH Soft 2.5K Start R Q R VS S3 S4 S6 R RPH R Low- ICPH Schmitt 1 Side LO Driver
in „Leuchtstoffröhren Vorschaltgerät 24V Reparatur-Tipp gesucht“ · Fahrzeugelektronik ·
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PDF
BAR63.pdf
0.005 0.005 101 0.01 10 1 0.01 0.02 0.02 0.05 0.05 0.1 0.1 5 0.2 5 0.2 0.5 0.5 100 10 0 10 -6 10 -5 10-4 10 -3 10 -2 s 100 10-6 10 -5 10 -4 10-3 10 -2 s 100 tP tP 4 Oct-05-1999 BAR 63 ... Forward resistance rf= f (F ) Diode capacitance C T = f(V R ) f = 100MHz f= 1MHz 10 2 EHD07138 0.5 EHD07139 rf Ω C pF T 0.4 1 10 0.3 0.2 10 0 0.1 -1 10 -2 -1 0 1 2 0 0 10 20 V 30 10 10 10 10 mA 10 Ι F VR Forward current IF = f V F ) T A = Parameter 3 BAR 63... EHD07171 10 mA ΙF 102 101 0 10 25 ˚C 40 ˚C -1 85 ˚C 10 10 -2 10
in „Alternative Firmware für Sparmatic Zero Heizungsthermostat“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NXP_BC846_BC546_Series.pdf
Dimensions in mm 04-11-04 Fig 9. Package outline SOT23 (TO-236AB) Fig 10. Package outline SOT323 (SC-70) 1.4 0.60 0.45 4.2 0.38 3 0.45 3.6 0.15 0.48 1.75 0.9 0.40 1.45 0.7 1 4.8 2 4.4 2.54 3 1.27 1 2 0.30 0.25 0.15 0.10 5.2 14.5 1 5.0 12.7 Dimensions in mm 04-11-04 Dimensions in mm 04-11-16 Fig 11. Package outline SOT416 (SC-75) Fig 12. Package outline SOT54 (SC-43A/TO-92) 0.45 0.38 0.45 4.2 0.38 4.2 3.6 3.6 1.27 0.48 0.40 3 max 1 2.5 0.48 max 0.40 1 4.8 2 5.08 2 4.4 4.8 2.54 2.54 4.4 3 1.27 3 5.2 14.5 5.2 14.5 5.0 12.7 5.0 12.7 Dimensions in mm 04-06-28 Dimensions in mm 05-01-10 Fig 13
in „Und wieder eine kleine lustige Teilesucherei Mosfet“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
All.txt
solder JUMPER 3 SIGNAL SMD5 SMD5 SMD PAD 3 S4 DT6 DT6 DT6 ITT SWITCH 3 S4 10-XX B3F-10XX OMRON SWITCH 3 S3 DT6 DT6 DT6 ITT SWITCH 3 S2 DT6 DT6 DT6 ITT SWITCH 3 S1 MA05-2 MA05-2 PIN HEADER 3 S1 M9040P M9040P TOGGLE SWITCH 3 RXD_LED LED5MM LED5MM
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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PDF
dog-m.pdf
n Varianten erhältlich: weiss, gelb/grün, blau, rot, amber und eine Connected in parallel 2,2 V 80 mA 14 ohm 35 ohm u l Vollfarb-Version. Connected in series 4,4 V 40 mA - 15 ohm h f BeidenmonochromenBeleuchtungenstehenjeweils2separate Limiting resistor c LED-Pfade zur Verfügung, welche zur optimalen
in „einfach zu steuerndes (Halbgrafik) LCD“ · Mikrocontroller und Digitale Elektronik ·
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PDF
1510fc.pdf
VBOOST = 24V,SW ≤ 1A 20 35 mA/A Switch OFF Leakage Current VSW = 0V, CC ≤ 20V 2 100 A 20V < VCC≤28V 4 200 A MaximumV BAT with Switch ON VCC – 2 V MinimumI PROG for Switch ON 2 4 20 A MinimumI PROG for Switch OFF atPROG≤ 1V 1 2.4 mA Current Sense Amplifier Inputs (SENSE, BAT) Sense Resistance (S1) 0.08
in „Problem mit LT1510“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TPS2115A.pdf
,I(IN1) 3.3 V, VI(IN2) 5 V, TJ= 125°C, C L 10 μF, I =L500 mA Measure transition time as 10−90% rise time or from 40 60 40 60 μs t Transition time 3.4 V to 4.8 V on VO(OUT)(see Figure 1b). t IN2 to IN1 transition, V = 5 V, V = 3.3 V, I(IN1) I(IN2) TJ= 125°C, C L 10 μF, I =L500 mA 40 60 40 60 μs Measure transition time as 10−90% rise time or from 3.4 V to 4.8 V on VO(OUT)(see Figure 1b). Turn-on propagation VI(IN1) VI(IN2) 5 V, measured from enable to 10% of tPLH1 VO(OUT), J =
in „Speisung umschalten“ · Analoge Elektronik und Schaltungstechnik ·
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TLP250.pdf
= 25°C ― 45 250 pF IF= 10 mA “H” level IOPH 3 V = 4V −0.5 −1.5 ― Output current V CC= 30V 8−6 A (*1) IF= 0 “L” level IOPL 2 V = 2.5V 0.5 2 ― 6−5 V = +15V, V = −15V “H” level V OH 4 CC1 EE1 11 12.8 ― Output voltage R L 200Ω, IF=
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bux87.pdf
I = 0.2 A I = 20 mA 1 V C B (1) Base-emitter saturation VBE(sat) IC= 0.2 A B = 20 mA 1 V voltage I = 50 mA V = 5 V 50 h (1) DC current gain C CE FE IC= 40 mA VCE = 5 V 12 IC= 50 mA V CE= 10 V T Transition frequency f = 1MHz 20 MHz Resistive load V = 250 V I = 200 mA CC C s Storage time IB(on) 40 mA B(off) -80 mA 4.5 µs t Fall time t = 20 µs 0.5 µs f P 1. Pulsed duration = 300 µs, duty cycle ≤ 1.5% Doc ID 4508 Rev 5 3/9 Electrical characteristics BUX87 2.1 Electrical
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AD8253.pdf
4 T = −40°C to +85°C −13.7 +13.6 V Short-Circuit Current 37 mA REFERENCE INPUT R IN 20 kΩ IIN +IN, −IN, REF = 0 1 μA Voltage Range −V S +VS V Gain to Output 1 ± 0.0001 V/V DIGITAL LOGIC Digital GroundVoltage
in „2 Fragen zur Verstärkerschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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ONS21800604.pdf
O U100 C L A L100 M E 80 A U M a = 180° W X T 60 O A A 90 , 40 M TA 20 I a = 180° X 80 0 M 0 0.2 0.4 0.6 0.8 1.0 1.2 1.4 1.6 1.8 2.0 0 0.2 0.4 0.6 0.8 1.0 1.2 1.4 1.6 1.8 2.0 ,C T T(AV) AVERAGE ON-STATE CURRENT (AMPS) T(AV) AVERAGE ON-STATE CURRENT (AMPS) Figure 1. Maximum Case Temperature Figure 2. Maximum Ambient Temperature ) S S P 1.0 A1.25 a = 180° ( 0.8 25°C 125°C ( T N E T1.00 R 0.6 I α U S E D α = Conduction Angle A 0.4 R0.75 TJRated = 125°C S W N 0.3 O O E0.50 U A E 0.2 R N V T M0.25 A U S X , 0.1 A IT 0.8 0.9 1.0 1.1
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Vollbr_cke_VNH3SP30.pdf
Tj=25°C 11 15 m RON On state leg resistance LOAD=12A 90 m I Supply current ON state;INA=VINB=5V 15 mA s OFF state 40 A V High Side Free-wheeling I=12A 0.8 1.1 V f Diode Forward Voltage f Tj25°C; VOUTX=EN X0V; 3 A High Side Off State OutputVCC =13V L(off) Current (per channel) Tj125°C; VOUTX=EN X0V; 5
in „VNH3SP30 auch als Halbbrücke“ · Mikrocontroller und Digitale Elektronik ·