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PDF
STM.pdf
Current ON MODE V i= 2.5to 16 V o = 0 mA 0.5 1 mA V i= 2.6to 16 V o = 500mA 12 mA OFF MODE V i= 6 V 50 100 A SVR Supply Voltage Rejection Io= 5 mA V i 3.5V 〉 1V f = 120Hz 82 dB f = 1KHz 77 dB f = 10KHz 65 dB eN OutputNoise Voltage B = 10Hz to 100KHz 50 V V d Dropout Voltage Io= 200 mA 1.25 V V il Control
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PDF
SA5.0CA.pdf
Seconds: Bi-directional <5x10 Seconds. Operating and Storage Temperature: -55 to°+175 C ° ∅.107 [2.72] max. TYPICAL CHARACTERISTIC CURVES S O 100 .205 POLARITY U G [5.21] Mark {cathode} T T I p Peak Value Ipp MAX. N A N I100 Pulse Time Duration O R 75 E F (tp) is Defined as that C ° Peak Power R T point
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TECHFUSE.pdf
Performance Specification Maximum V I I I P Time To Trip Resistance Agency Approval Model Marking max max hold trip d @25°C @25°C Max. Current Time Rimin R1max UL TUV (Vdc) (A) (A) (A) (W) (A) (Sec) () () nSMD005 αZ 60.0 100 0.05 0.15 0.4 0.25 1.50 3.600 50.000 nSMD010 αN 60.0 100 0.10 0.25 0.4 0.50
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Datei
irmp.c
: pulse: %3d - %3d, pause: %3d - %3d or pulse: %3d - %3d, pause: %3d - %3d\n", S100_START_BIT_LEN_MIN, S100_START_BIT_LEN_MAX, 2 * S100_START_BIT_LEN_MIN, 2 * S100_START_BIT_LEN_MAX, S100_START_BIT_LEN_MIN, S100_START_BIT_LEN_MAX, 2 * S100_START_BIT_LEN_MIN, 2 * S100_START_BIT_LEN_MAX); #endif // ANALYZE irmp_param_p = (IRMP_PARAMETER *) &s100_param; last_pause = irmp_pause_time; if ((irmp_pulse_time > S100_START_BIT_LEN_MAX && irmp_pulse_time <= 2 * S100_START_BIT_LEN_MAX) || (irmp_pause_time > S100_START_BIT_LEN_MAX && irmp_pause_time <
in „IRMP - Infrared Multi Protocol Decoder“ · Projekte & Code ·
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Datei
irmp.c
: pulse: %3d - %3d, pause: %3d - %3d or pulse: %3d - %3d, pause: %3d - %3d\n", S100_START_BIT_LEN_MIN, S100_START_BIT_LEN_MAX, 2 * S100_START_BIT_LEN_MIN, 2 * S100_START_BIT_LEN_MAX, S100_START_BIT_LEN_MIN, S100_START_BIT_LEN_MAX, 2 * S100_START_BIT_LEN_MIN, 2 * S100_START_BIT_LEN_MAX); #endif // ANALYZE irmp_param_p = (IRMP_PARAMETER *) &s100_param; last_pause = irmp_pause_time; if ((irmp_pulse_time > S100_START_BIT_LEN_MAX && irmp_pulse_time <= 2 * S100_START_BIT_LEN_MAX) || (irmp_pause_time > S100_START_BIT_LEN_MAX && irmp_pause_time <
in „IRMP - Infrared Multi Protocol Decoder“ · Projekte & Code ·
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PDF
BTB16-600C.pdf
- Standard Triac (4 quadrants) Value Symbol Parameter Quadrant Unit C B I - II - III 25 50 IGT (1) Max. mA V D 12 V, R L 30 Ω IV 50 100 VGT All Max. 1.3 V V V = V , R = 33 kΩ, T = 125 °C GD D DRM L j All Min. 0.2 V (2) H IT= 500 mA I - II - III Max. 25 50 mA I - III - IV 40 50 IL IG= 1.2 GT Max. mA II
in „Leistung für Gatewiderstand Triac“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
593d.pdf
doc?91000 Upgrade for High Reliability With T83 593D www.vishay.com Vishay Sprague STANDARD RATINGS MAX. DCL MAX. DF MAX. ESR MAX. RIPPLE CAPACITANCE CASE CODE PART NUMBER AT +25 °C AT +25 °C AT +25 °C 100 kHz (μF) (μA) 120 Hz 100 kHz IRMS (%) (Ω) (A) 4 V AT +85 °C; 2.7 V AT +125 °C DC DC 15 A 593D156
in „Wo bekomm ich dieses Bauteil her?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
lm4041-n.pdf
total over-temperature tolerance for the different grades in the extended temperature range where max ΔT = 100 °C is shown below: B-grade: ±1.2% = ±0.2% ±100 ppm/°C × 100°C C-grade: ±1.5% = ±0.5% ±100 ppm/°C × 100°C D-grade: ±2.5% = ±1.0% ±150 ppm/°C × 100°C E-grade: ±4.5% = ±2.0% ±150 ppm/°C × 100°
in „KSQ mit Diode oder Transistor temperaturkompensieren?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
datenblatt-1184984-stmicroelectronics-le50abz-ap-spannungsregler-linear-to-92-3-positiv-fest-100-ma.pdf
for LE30C Symbol Parameter Test conditions Min. Typ. Max. Unit IO= 10 mA, V I 5 V 2.940 3 3.060 V O Output voltage V IO= 10 mA, V I 5 V, TJ= -25 to 85°C 2.880 3.120 VI Operating input voltage IO= 100 mA 18 V I Output current limit 150 mA O ΔV Line regulation
in „Spannungsregler Schaltung funzt nit?!“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MCU.pdf
the input/output alternate function characteristics (SDA and SCL) . 62/88 Doc ID 16455 Rev 7 STM32F100x4, STM32F100x6, STM32F100x8, STM32F100xB Electrical characteristics 2 Table 39. I C characteristics 2 (1) 2 (1)(2) Standard mode I C Fast mode I C Symbol Parameter Unit Min Max Min Max t SCL clock low
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PDF
IGD_1_424_P1N4_DL_FA_08800445.pdf
Description IGD-1-424-P1N4-DL-FA VBUS Rated DC voltage applied to the caps bank without switching 1 100 VDC Option 0C 0N 0P K - 0X - 1F2 Max DC voltage applied to the caps bank (max 30% of LTE) VDC CAPACITOR 1 100 VDC without switching Features τ Discharge time of the capacitors (5%) 285 s d5% CDC Capacitor
in „Such nach High Level shifter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BT131.PDF
temperature T lead. 1000 ITSM / A BT132D IT(RMS) / A BT132D 3 I ITSM T 2.5 T time 2.0 Tj initial = 25 C max 100 1.5 dIT/dt limit 1 T2- G+ quadrant 0.5 10 0 10us 100us 1ms 10ms 100ms 0.01 0.1 1 10 T / s surge duration / s Fig.2. Maximum permissible non-repetitive peak Fig.5. Maximum permissible repetitive
in „µC 5V -> Triac 16VAC schalten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
semi_eng_ge2a_aqw21_e.pdf
) Ambient temperature (Storage) Tstg -40 to +100°C Junction temperature Tj 125°C Electrical characteristics (Ambient temperature: 25°C) Item Symbol AQW212EH(A) AQW210EH(A) AQW214EH(A) AQW216EH(A) Condition LED operate Typical 1.2 mA Fon IL= Max. current
in „China-PC817 Optokoppler PCBs“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CD287.pdf
Current (µA) C: Nominal Capacitance (µF) V: Rated Voltage (V) Rated Voltage (V) 6,3 10 16 25 35 50 63 100 l Dissipation Factor (20°C, 120Hz) Tanδ(max) 0,22 0,19 0,16 0,14 0,12 0,10 0,09 0,08 i d When nominal capacitance is more than 1 000µF add 0,02 on tanδvalue for each 1 000µF more. a R Stability at Low
in „Empfehlung für Low-ESR LONG LIFE Elkos?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Configuration.h
table * * Temperature sensors available: * * -4 : thermocouple with AD8495 * -3 : thermocouple with MAX31855 (only for sensor 0) * -2 : thermocouple with MAX6675 (only for sensor 0) * -1 : thermocouple with AD595 * 0 : not used * 1 : 100k thermistor - best choice for EPCOS 100k (4.7k pullup) * 2 : 200k
in „Marlin 2.0.72 lässt sich nicht compilieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
m7000b.pdf
Logic Device Data Sheet Table 3. MAX 7000B Maximum User I/O Pins Note (1) Device 44-Pin 44-Pin 48-Pin 49-Pin 100- 100-Pin 144- 169-Pin 208- 256- 256-Pin PLCC TQFP TQFP 0.8-mm Pin FineLine Pin 0.8-mm Pin Pin FineLine (2) Ultra TQFP BGA
in „verkauf von Altera“ · Markt ·
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PDF
Ten8.pdf
mA typ. 48 Vin; 3.3 VDC models: 180 mA typ. 48 Vin; other output models: 200 mA typ. Surge voltage (100 msec. max.) 12 Vin models: 36 V max.. 24 Vin models: 50 V max.. 48 Vin models: 100 V max. Conducted noise (input) EN 55022 level A, FCC part 15, level A For 12 Vin models with external input capacitor
in „DC/DC Converter TEN8“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
2CDC420009D0101.pdf
Hilfsschalter Signalkontakt/Hilfsschalter (umschaltbar) nachträglich rechts anbaubar an F 200 (bis 100 A, max. 2) 1 Wechsler S 2C-S/H6R 2CDS 200 922 R0001 56381 9 ➀ 5 0,04 1 Hilfsschalter nachträglich rechts anbaubar an F 200 (bis 100 A, max. 2) 1 Wechsler S 2C-H6R 2CDS 200 912 R0001 56382 6 ➀ 5 0,04
in „FI- Schutzschalter löst bei Erschütterung aus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX768.pdf
The MAX768 has two preset switching frequencies Pin Configuration appears at end of data sheet. (25kHz or 100kHz), or can be synchronized by an exter- nal clock from 20kHz to 240kHz. This flexibility permits
in „Spannugnswandlung + Inverter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STD5NM50.pdf
Junction-case Max 1.25 °C/W Rthj-amb Thermal Resistance Junction-ambient Max 100 °C/W T l Maximum Lead Temperature For Soldering Purpose 300 °C AVALANCHE CHARACTERISTICS Symbol Parameter Max Value Unit AR Avalanche Current
in „Dynamischer Wärmewiderstand => Cth Rth“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LT1014.pdf
noted LT1013AM/AC LT1013C/D/I/M SYMBOL PARAMETER CONDITIONS LT1014AM/AC LT1014C/D/I/M UNITS MIN TYP MAX MIN TYP MAX Input Resistance – Differenti(Note 1) 100 400 — 70 300 — M Common-Mode — 5 — — 4 — G AVOL Large Signal Voltage Gain VO=±10V, R L 2k 1.5 8.0 — 1.2 7.0 — V/ V VO=±10V, R L 600 0.8 2.5 — 0.5
in „Unterschied beim LT1014 ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BTA08-400.pdf
BTB08 Symbol Test Conditions rant Unit T810 T835 TW SW CW BW I (1) GT V = 12 V R = 30 Ω I - II - III MAX10 35 5 10 35 50 mA V D L GT I - II - III MAX. 1.3 V V = V R = 3.3 kΩ VGD D DRM L I - II - MIN. 0.2 V Tj= 125°C IH(2) T = 100 mA MAX. 15 35 10 15 35 50 mA I - III 25 50 10 25 50 70 L G = 1.2 GT MAX.
in „Triac am atmega anstelle MOC3041 und BTA08-400“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ts912.pdf
L= 100 1400 T T T R = 10k 150 min. amb max. L 750 R L= 600 Output Short Circuit Current (id= 〉 1V) Source (V o V CC) 45 65 o + 45 65 mA Sink (Vo = VCC ) GBP Gain Bandwith Product 1 MHz (AVCL = 100, RL=
in „"Hallsonde für Oszilloskop" im Eigenbau?!“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
VISH-S-A0008073360-1.pdf
specified) between pin 1 to pin 3 or pin 2 to pin 3 PARAMETER TEST CONDITIONS/REMARKS SYMBOL MIN. TYP. MAX. UNIT Protection paths Number of lines which can be protected N channel - - 2 lines Reverse stand-off voltage Max. reverse working voltage VRWM - - 3.3 V Reverse voltage at R = 100 μA V R 3.3 - - V
in „Diode, heil oder defekt?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MAX3095-MAX3096.pdf
Enable Time to High Level ZH Figure 3 600 800 ns Output Disable Time from Low Level LZ Figure 3 60 100 ns Output Disable Time from High Level HZ Figure 3 60 100 ns Maximum Data Rate fMAX 10 Mbps DC ELECTRICAL CHARACTERISTICS—MAX3096 (VCC = 3.0V to 3.6VA T MINto TMAX, unless otherwise noted. Typical valuesCCr
in „Hilfe mit RS485-Receiver-Dattenblatt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX3095-MAX3096.pdf
Enable Time to High Level ZH Figure 3 600 800 ns Output Disable Time from Low Level LZ Figure 3 60 100 ns Output Disable Time from High Level HZ Figure 3 60 100 ns Maximum Data Rate fMAX 10 Mbps DC ELECTRICAL CHARACTERISTICS—MAX3096 (VCC = 3.0V to 3.6VA T MINto TMAX, unless otherwise noted. Typical valuesCCr
in „SPI mit RS485-Übertragung: Problem mit zu langen Propagation-Delays“ · Mikrocontroller und Digitale Elektronik ·
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PDF
btb04-600sldatasheet.pdf
otherwise specified) Symbol Test conditions Quadrant Value Unit IGT(1) VD= 12V R L 30 I - II - III MAX. 10 mA IV MAX. 25 VGT VD= 12V RL= 30 ALL MAX. 1.3 V VGD VD= VDRM R L 3.3k Tj = 125°C ALL MIN. 0.2 V H(2) T = 100mA MAX. 15 mA L G = 1.2GT I - III - IV MAX. 15 mA II 25 dV/dt(2) VD= 67% V DRM gate open
in „BTB04-600A ersetzen durch BTB600SL“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
datasheet.pdf
Symbol Test Conditions Quadrant BTA/BTB16 Unit C B GT (1) I - II - III 25 50 mA V = 12 V R = 33 IV MAX. 50 100 D L VGT ALL MAX. 1.3 V V GD V D V DRM RL= 3.3 k Tj = 125°C ALL MIN. 0.2 V IH(2) IT= 500 mA MAX. 25 50 mA I I = 1.2 I I - III - IV MAX. 40 60 mA L G GT II 80 120 dV/dt (2)V D= 67 % V DRM gate
in „Kühlkörper für Triac auswählen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BTA_16-600B.pdf
Symbol Test Conditions Quadrant BTA/BTB16 Unit C B GT (1) I - II - III 25 50 mA V = 12 V R = 33 IV MAX. 50 100 D L VGT ALL MAX. 1.3 V V GD V D V DRM RL= 3.3 k Tj = 125°C ALL MIN. 0.2 V IH(2) IT= 500 mA MAX. 25 50 mA I I = 1.2 I I - III - IV MAX. 40 60 mA L G GT II 80 120 dV/dt (2)V D= 67 % V DRM gate
in „BTA 16-600B Triacs“ · Markt ·
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PDF
Logic_Level_Translation.pdf
- 0.4) 1.65 to 3.6 Yes 100M MAX3370/1 1 Bi, 1 1.65 to 5.5 2.5 to 5.5 No/Yes 2M MAX3372/3 2 Bi, 2 1.2 to 5.5 1.65 to 5.5 Yes 230k MAX3374 Uni, 2/0 MAX3375 2 Uni, 1/1 1.2 to 5.5 1.65 to 5.5 Yes 16M MAX3376 Uni, 0/2 MAX3377/8 4
in „BlueNiceCom UART 89C51“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lmh6642.pdf
UNIT AT TEMPERATURE V CM = VO= V /2, VID PARAMETER TEST CONDITIONS EXTREMES R = 2kΩ to V /2 L MIN TYP MAX MIN (1) TYP (2) MAX (1) VO Output Swing R L 2kΩ to V /2, VID = 200mV 4.90 4.98 High + V R L 150Ω to V /2, V ID= 200mV 4.65 4.90 + Output Swing R L 2kΩ to V /2, VID = −200mV 25 100 Low R = 150Ω to V
in „Funkentstörung mobiler Kopfhörerverstärker“ · HF, Funk und Felder ·
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PDF
B824xx.pdf
Value Tolerance Q min. Test Freq. SRF min. Rdc max. Idc max. Manf. Part No. & (µH) (MHz) (MHz) (Ω) (mA) Order Code 0.001 ±0.0003µH 7 100 6000 0.05 500 B82496C3109A 0.0012 ±0.0003µH 7 100 6000 0.06 500 B82496C3129A 0.0015 ±0.0003µH 8 100 6000 0.07 500
in „Welches SMD Bauteil“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Configuration.h
, using correct resistor and table // //// Temperature sensor settings: // -2 is thermocouple with MAX6675 (only for sensor 0) // -1 is thermocouple with AD595 // 0 is not used // 1 is 100k thermistor - best choice for EPCOS 100k (4.7k pullup) // 2 is 200k thermistor - ATC Semitec 204GT-2 (4.7k pullup
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PDF
93506.pdf
Current V I 2.5 to 16V,OI = 0mA ON MODE 0.5 1 mA V I 2.6 to 16V,OI = 500mA 12 V I= 6 V OFF MODE 50 100 µA SVR Supply Voltage Rejection IO = 5 mA f = 120 Hz 82 dB V I 3.5 ² 1 V f = 1 KHz 77 f = 10 KHz 65 eN Output Noise Voltage B = 10 Hz to 100 KHz 50 µV V d Dropout Voltage IO= 200 mA 1.25 V VIL Control
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PDF
sv-ic5.pdf
Voltage) H73 User display selection 1(Watt)0 Yes 2(Torque) H74 Gainformotorspeeddisplay 1to1000[%] 100 Yes H79 Softwareversion x.xx x.xx * H81 2ndaccelerationtime 0to6000[sec] 5 Yes H82 2nddecelerationtime 0to6000[sec] 10 Yes H83 2ndaccelerationtime 30toMax.frequency[Hz] 60 No 0(Linear) H84 2nd V/F pattern
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PDF
lme49600.pdf
min) OUT EE EE OUT Output Current ±250 mA I Short Circuit Output Current BW pin: No Connect ±490 mA (max) OUT-SC BW pin: Connected to V EEpin ±490 ±550 mA (max) VIN = 0V B Input Bias Current BW pin: No Connect ±1.0 ±2.5 μA (max) BW pin: Connected to V EEpin ±3.0 ±5.0 μA (max) R L 100Ω ZIN Input Impedance BW pin: No Connect 7.5 MΩ BW pin: Connected to V EEpin 5.5 MΩ VOS Offset Voltage ±17 ±60 mV (max) VOS/°C Offset Voltage vs Temperature 40°C ≤ TA≤ +125°C ±100 μV/°C (1) Typical specifications are specified at 25°C and represent the parametric norm. (2) Tested limits are guaranteed to National's
in „Kopfhörerverstärker in Studioqualität gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD623.pdf
> 1) 25 ppm Gain Drift (G = 1) 200 mV Max Input Offset Voltage (AD623A) 2 mV/8C Max Input Offset Drift (AD623A) 100 mV Max Input Offset Voltage (AD623B) 1 mV/8C Max Input Offset Drift (AD623B) common-mode range and can amplify signals that
in „Op - Messbereich - Strom - ACS 750LCA-050“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BZX79.pdf
BZX79- at Ztest 5 mA at Ztest= 5 mA at f = 1 MHz; IZSM (A) r n Bxxx (see Figs 5 and 6) VR= 0 V at p= 100 s; T amb = 25 °C g u Tol. approx. u o Cxxx Tol. ±2% (B) ±5% (C) at Ztest= 1 mA at Ztest 5 mA a s o MIN. MAX. MIN. MAX. TYP. MAX. TYP. MAX. MIN. TYP. MAX. MAX. MAX. r d 2V4 2.35 2.45 2.2 2.6 275 600
in „Z Dioden mit hoher Impulsfestigkeit“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
XLampXBD.pdf
XBDBLU-00-0000-000000201 Dominant Wavelength Range Base Order Codes Min. Luminous Flux Color Min. Max. (lm) @ 350 mA Order Code DWL DWL Group (nm) Group (nm) Group Flux (lm) P4 80.6 XBDGRN-00-0000-000000901 Q2 87.4 XBDGRN-00-0000-000000A01 Green G2 520 G4 535 Q3 93.9 XBDGRN-00-0000-000000B01 Q4 100
in „Keine angaben über erforderliche Kühlung bei 100W LED“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SEMIKRON_DataSheet_SKT_100_01236311.pdf
SKT 100 I = 175 A (maximum value for continuous operation) VRSM V RRM,V DRM TRMS V V TAV= 100 A (sin. 180;cT = 85 °C) 500 400 SKT 100/04 D 900 800 SKT 100/08 D 1300 1200 SKT 100/12 E 1500 1400 SKT 100/14 E
in „Thyristor Steuerung mit Teensy 4.0“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IR_SD241.pdf
T = 125 °C R R J C T Max. Junction Capacitance (PerLeg) 1400 pF VR= 5V DC(test signal range 100Khz to 1Mhz) 25°C LS Typical Series Inductance (PerLeg) 10.0 nH Measuredmountingplanetolead5mmfrom packagebody dv/dt Max. Voltage
in „Ersatz für obsolete Schottky Gleichrichterdiode VARO VSK231 verifizieren“ · Analoge Elektronik und Schaltungstechnik ·
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VishayPrecRes.pdf
MOQ WAFFLE PACK TAPE AND REEL WIDTH top of each other and closed by one single cover. 2" × 2" MIN. MAX. To get “not stacked up” waffle pack in case of ordered quantity > maximum number of pieces per package: 0302 Please consult Vishay Sfernice for specific ordering 0402 0505 5000 code. 100 Tape and Reel
in „Auswahl Widerstände für Temp-Messung mit OP“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
lm35.pdf
I = 0 1.5 2 1.5 2 °C for rate accuracy Long term stability T = T , for 1000 hours ±0.08 ±0.08 °C J MAX (1) Tested Limits are ensured and 100% tested in production. (2) Design Limits are ensured (but not 100% production tested) over the indicated temperature and supply voltage ranges. These limits are
in „Signalkonverter Ladegerät“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
lm35.pdf
I = 0 1.5 2 1.5 2 °C for rate accuracy Long term stability T = T , for 1000 hours ±0.08 ±0.08 °C J MAX (1) Tested Limits are ensured and 100% tested in production. (2) Design Limits are ensured (but not 100% production tested) over the indicated temperature and supply voltage ranges. These limits are
in „Linearisierung NTC und Anpasssung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
NCP1271-D.PDF
Rating Symbol Value Unit VCC Pin (Pin 6) Maximum Voltage Range Vmax −0.3 to +20 V Maximum Current max 100 mA Skip/Latch, FB, CS Pin (Pins 1−3) Maximum Voltage Range V −0.3 to +10 V max Maximum Current max 100 mA Drv Pin (Pin 5) Maximum Voltage Range Vmax −0.3 to +20 V Maximum Current I −800 to +500 mA max HV Pin (Pin 8) Maximum Voltage Range Vmax −0.3 to +500 V Maximum Current max 100 mA Power Dissipation and Thermal Characteristics Thermal Resistance, Junction−to−Air, PDIP−7, Low Conductivity PCB (Note
in „Behringer B112D Funktionsweise Netzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TSL220.PDF
NOTE 1: All voltage values are with respect to GND (pin 5). recommended operating conditions MIN NOM MAX UNIT Supply voltage,CC 4 5 10 V Output frequency, f (C 100 pF) 750 kHz o Operating free-air temperature raAge, T –25 70 ⋅C electrical characteristics at V = 5 V, T = 25 ⋅C (see Figure 1) CC A PARAMETER TEST CONDITIONS MIN TYP MAX UNIT VOM Peak output voltage R L 50 k 3 4 V I Supply current C = 100 pF, E = 0 7.5 10 mA CC e operating characteristics at V CC = 5 V, T A 25 ⋅C (see Figure 1) PARAMETER TEST CONDITIONS MIN TYP MAX
in „timer 2 interrupt?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
100W_LED_Driver_Series.pdf
www.sure-electronics.com Tel: 025-68154891-861 Fax: 025-68154891-832 60W: 60W Output voltage range: Max. input ~ 60V Decided by LED Max. output power 12V: 30W 24V: 60W Max. input current 3A Output current range 0.3~ 3A(Limited by Max. input power) 100W Output voltage range: Decided by LED Max. input ~ 60V Max. output power 12V: 50W 24V: 100W Max. input current 5A Output current range 0.3~ 5A(Limited by Max. input power) Others Type DCCP40 DCCP60 DCCP100 Ambient Temp. -40℃ ~ +65℃ Storage Temp. -40℃ ~ +85℃
in „Frage zu Datenblatt 100W KSQ“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SG615PC_-_Oscillator.pdf
Max. 1.5 V Max. 0.8V Max. II=-100µAMin.(OE=GNDI=-500µAMin.(OE=GND)PTJ Output disable curC-MOS level IOE 12 mA Max. a 28 mA—Max. 20 mA Max. C-MOS load: 20ND%→ 80 % VDD Output rise time TTL level tTLH t 5
in „die schaltung zu den Oszillator SG615-PC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX3355E.pdf
Phones MP3 Players PDAs Digital Cameras Functional Diagram VCC C+ C- CURRENT VCC SOURCE LOGIC SUPPLY VL MAX3355E +1.65V CC V ESD OFFVBUS ON/OFF CHARGE VBUS PUMP VBUS SHDN 5V AT 8mA 40kΩ TO STATUS1 LEVEL STATUS1 100kΩ GND SHIFTER VBUS T GND DUAL-ROLE STATUS2 STATUS2 COMPARATORS E ASIC ID_OUT ID_IN O B ID ESD
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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irf840_und_irf840fi.pdf
starting j = 25 C, D = AR, DD = 25 V) E Repetitive Avalanche Energy 13 mJ AR (pulse width limited byjT max, δ < 1%) I Avalanche Current, Repetitive or Not-Repetitive 5.1 A AR o (Tc= 100 C, pulse width limited by j max, δ < 1%) o ELECTRICAL CHARACTERISTICS (T case= 25 C unless otherwise specified) OFF Symbol
in „Unterschied zw. IRF840 und IRF840FI“ · Mikrocontroller und Digitale Elektronik ·