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PDF
J500.pdf
1.7 3.5 J510 2.900 3.60 4.300 0.15 0.4 0.07 1.9 3.9 J511 3.800 4.70 5.600 0.12 0.3 0.05 2.1 4.2 Linear Integrated Systems • 4042 Clipper Court • Fremont, CA 94538 • Tel: 510 490-9160 • Fax: 510 353-0261 Doc 20112 07/02/13 Rev#A8 ECN# J500 Series V-I CHARACTERISTICS
in „Welches elektronische Bauteil würdet ihr euch wünschen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
OPB900_913-1545441.pdf
, T A 25° C R Reverse Current - - 100 µA V R 2 V, T A 25° C Output Photologic® Sensor (See OPL560 for more information — for reference only) V Operating D.C. Supply Voltage 4.75 - 5.25 V CC Low Level Supply
in „Gabellichtschranke mit Totem-Pole-Output an Arduino anschließen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Tiefentladung.pdf
unterschiedliche Überentladetiefen. e [ 0.15 A 0.1 0.05 0% 5% 20% 0 0 100 200 300 400 500 600 700 800 900 1000 Zyklenzahl 0.35 Abbildung 9: Kapazität 0.3 einer NiCd Batterie über der Zeit für 0.25 unterschiedliche Überentladetiefen. ] 0.2 t [ A 0.15 0.1 0% 0.05 5% 10% 20% 0 0 100 200 300 400 500 600
in „Akkus regenerieren (NiMH)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ENELOOP_P_AA.PDF
500mA,1250mA,2500mA,5000mA(E.V.=1.0V) 25℃ Ambient Temp. : 25°C 1.6 1.3 500mA V 40℃ V e1.5 e 1250mA t t 1.2 V1.4 V 1.1 1.3 Charge : 2500mA (-dV=10mV) 1.2 Ambient Temp. : 0,25,40°C 1.0 5000mA 2500mA 1.1 0.9 0 200 400 600 800 1000 1200 1400 1600 1800 2000 2200 2400 2600 0 200 400 600 800 1000 1200 1400
in „NIMH Akku mit Konstantspannung und strombegrenzung laden“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MAX127-MAX128B.pdf
tHD,STA 0.6 µs Low Period of the SCL Clock tLOW 1.3 µs High Period of the SCL Clock t 0.6 µs HIGH Set-Up Time for a Repeated START Condition tSU,STA 0.6 µs Data Hold Time tHD,DAT 0 0.9 µs Data Setup Time
in „Probleme mit Max127 (i2c adc) und m644p (gcc)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
0900766b80f702e6.pdf
tHD,STA 0.6 µs Low Period of the SCL Clock tLOW 1.3 µs High Period of the SCL Clock t 0.6 µs HIGH Set-Up Time for a Repeated START Condition tSU,STA 0.6 µs Data Hold Time tHD,DAT 0 0.9 µs Data Setup Time
in „MAX127BCAI Bipolar nur in diff mode?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Doku_130816.pdf
die Sensoren an PD.2 und PD.3 ausgelesen. Die Rückgabe der Messwerte erfolgt automatisch (nach ca. 800ms): STARTBYTE, ONEWIRE, Anzahl Bytes, PinMaske, t1_high, t1_low, t2_high, t2_low, ..... 0xA5, 0xE2, 0x05, 0x0C, 0x00, 0xFF, 0x01, 0x04 (Sensor an PD.2: 25.5°, Sensor an PD.3: 26.0°) Wird an einem abgefragten
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PDF
SY8105ADC.pdf
Threshold VUVLO 4.5 V UVLO Hysteresis HYS 0.3 V Min ON Time 80 ns Min OFF Time 160 ns Switching Frequency T 500 kHz Thermal Shutdown SD 150 °C Temperature T Thermal Shutdown HYS 15 °C Hysteresis Note 1: Stresses beyond the “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress
in „Fragen Stromversorgung / Schaltplan“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MT3608.pdf
beyond which the life of a device may be impaired. Note 2: J is calculated from the ambient temperatAre T and power dissipaDion P according to the following formula: T T + (P ) x (250°C/W). J A D Note 3: 100% production test at 25°C. Specifications over the temperature range are guaranteed by design and
in „6-9V auf 12V booster“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Under_the_Hood_of_Flyback_SMPS_Designes_slup261__TI.pdf
built and 1-13 Texas Instruments 13 SLUP261 Current Probe VDD 10 I V6 RW3 W6 W3 W6 R6 1 V AW3 (9T) (9T) 6.8 µF i p o Current T Current Transformer Probe V_prim 100:1 W4 V4 36 W4 300 14T ) 6.8 µF R4 +Vi 5 V W1 W2 21T ) (4T) 1:100rent TransforV_I R clamp 0.1 µF – V sec 15 k + +clamp MURS120 IP
in „Flyback-Wandler Störungen auf Versorgung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
2sc4237.pdf
Silicon NPN Power Transistor 2SC4237 DESCRIPTION ·Collector-Emitter Sustaining Voltage- : CEO(SUS) 800V(Min) ·Fast Switching speed APPLICATIONS ·Color TV horizontal output applications ABSOLUTE MAXIMUM RATINGS(Ta=25 ℃) SYMBOL PARAMETER VALUE UNIT VCBO Collector-Base Voltage 1200 V VCEO Collector-Emitter Voltage 800 V . c n VEBO Emitter-Base Voltage 7 V m i I Collector Current-Continuous10 c A e C . i s CM Collector Current-Peak 20 A w IB Base Current-Continuous 4 A BM Base Current-Peak 8 A PT @ TC=25℃wer Dissipation
in „Transistor schaltet nicht ab“ · Analoge Elektronik und Schaltungstechnik ·
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LQ10D368.pdf
sharp ç ÷ ø ô ÷ Ī ú ĝ ø õ ē ÷ i e a d İ i ç a Ĩ i ĝ a Ķ t Ĭ e ļ V ĕ Ī ĝ 4 õ H ÷ D 9 3 D V T l v i d t T l t o 3 r io D H e t p - o 2 b Ī H u ú D N ÷ ) e 4 d 6 H o D n D m o e 9 e n 6 m l D N 0 ( 4 H 3 s T r Ī Ī Ī o ĝ þ ú e õ ÷ ÷ v l ÷ h H e a T T T T w T D Ī l c s ú a T T ÷ g Ī i " þ 2 t o ÷ D u " p i 4 e s I i 1 T V B C T d - E Ī IJ ċ e . a ĝ ij p g m õ ĭ Ī a i t ÷ Ĺ þ d F b 2 ĩ ÷ p a e Ī C ĕ V n h ú T l y ÷ 2 i O * l e e * Ī C v T V ĝ i Ī Ī õ a þ ĝ c ÷ l ÷ 1 õ T t ÷
in „TFT-LCD zeigt ständig einen Strich“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN1040-D.PDF
Grafoil, .005 (.13) thick.* S N 0.3 (5) R T (7) E T (4) A U 0.4 L U 0.2 M M *Grafoil is not an insulating matMrOal. (6) E O0.2 E O 0.1 (7) T T (8) H T 0 T 0 0 1 2 3 4 5 6 0 1 2 3 4 5 6 MOUNTING SCREW TORQUE (IN-LBS) MOUNTING SCREW TORQUE (IN-LBS
in „Welches Transistorgehäuse ist am besten zu kühlen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN1040-D.PDF
Grafoil, .005 (.13) thick.* S N 0.3 (5) R T (7) E T (4) A U 0.4 L U 0.2 M M *Grafoil is not an insulating matMrOal. (6) E O0.2 E O 0.1 (7) T T (8) H T 0 T 0 0 1 2 3 4 5 6 0 1 2 3 4 5 6 MOUNTING SCREW TORQUE (IN-LBS) MOUNTING SCREW TORQUE (IN-LBS
in „Wärmewiderstand Rthg - Rthgk“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN1040-D.PDF
Grafoil, .005 (.13) thick.* S N 0.3 (5) R T (7) E T (4) A U 0.4 L U 0.2 M M *Grafoil is not an insulating matMrOal. (6) E O0.2 E O 0.1 (7) T T (8) H T 0 T 0 0 1 2 3 4 5 6 0 1 2 3 4 5 6 MOUNTING SCREW TORQUE (IN-LBS) MOUNTING SCREW TORQUE (IN-LBS
in „Gibt es Alternativen zu Silikonpads?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN1040-D.pdf
Grafoil, .005 (.13) thick.* S N 0.3 (5) R T (7) E T (4) A U 0.4 L U 0.2 M M *Grafoil is not an insulating matMrOal. (6) E O0.2 E O 0.1 (7) T T (8) H T 0 T 0 0 1 2 3 4 5 6 0 1 2 3 4 5 6 MOUNTING SCREW TORQUE (IN-LBS) MOUNTING SCREW TORQUE (IN-LBS
in „Kurzschluss durch Kühlörper?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN1040-D.PDF
Grafoil, .005 (.13) thick.* S N 0.3 (5) R T (7) E T (4) A U 0.4 L U 0.2 M M *Grafoil is not an insulating matMrOal. (6) E O0.2 E O 0.1 (7) T T (8) H T 0 T 0 0 1 2 3 4 5 6 0 1 2 3 4 5 6 MOUNTING SCREW TORQUE (IN-LBS) MOUNTING SCREW TORQUE (IN-LBS
in „Reicht das Eloxal als Isolierung?“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
AN1040-D.pdf
Grafoil, .005 (.13) thick.* S N 0.3 (5) R T (7) E T (4) A U 0.4 L U 0.2 M M *Grafoil is not an insulating matMrOal. (6) E O0.2 E O 0.1 (7) T T (8) H T 0 T 0 0 1 2 3 4 5 6 0 1 2 3 4 5 6 MOUNTING SCREW TORQUE (IN-LBS) MOUNTING SCREW TORQUE (IN-LBS
in „MOSFET Power Dissipation“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MTE011N10RFP-CystechElectonics.pdf
On-State Resistance vs Junction Tempearture Voltage 1000 2.4 n ID=11A n O r c 2 VGS=10V, D=11A c ) 800 D a u Ω t it - e( S e1.6 i n 600 d e r t i ta i e a -1.2 t R 400 r O , a N e0.8 o S n u S S S RD 200 D 0.4 R RDS(ON@Tj=25°C : 11mΩ typ. 0 0 -75 -50 -25 0 25 50 75 100 125 150 175 200 0 2 4 6 8 10 V
in „IC identifizieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MAX941-MAX944.pdf
Voltage V+ to GND...................................14-Pin Plastic DIP (derate 10.00mW/°C above +70°C)..800mW Differential Input Voltage..........................-0.3V t14-Pin SO (derate 8.33mW/°C above +70°C)..............667mW X –————–-Mode Input Voltage..................-0.3V to (V+ +Operating Temperature
in „Verstärkung 2V -> 3.3V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
schematics.pdf
R55 DNP SW2 5 O 3D 1T 100PF 62.0 10 0603 11 O 8 6 V D B 7 0603 0603 0603 PF14_CAN_EN N EN V V INH J11 22 7 14 9 PF15_CAN_STB~ STB WAKE 1 33 6 8 PF13_CAN_ERR ERR 2 1 44 5 1 PJ4_CAN_RX 1 13 3 SWT018 TXD CANH DIP4 4 11 4 RXD
in „Versorgung“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
TFT_320x240_05_7Z_LQ057Q3DC02_2x_262k_3_3V_FFC33x0_5mm_separat.pdf
】-5 OH2 - - 100 μ A I 【Note7-1】 3.0V Vcc 3.0V Vcc-turn-on conditions 0.3V data 0 < ≦20ms 0 < ≦50ms t1 t2 t3 0 < ≦1s Vcc Vcc-dip conditions Vcc-dip conditions should also V 0 follow the Vcc-turn-on conditions 2 3 td≦20ms td LCY-99073B-6 【Note7-2】Vcc=3.3V, V/Q= S T Typical current situation : 64-gray-bar
in „[V] 14,5cm (5,7")-TFT-Display 320 x 240 von Sharp“ · Markt ·
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PDF
25RIA-IR.pdf
maximum non- IDRM RRM max. Type number Code peak and off-state voltage (1) repetitive peak voltage (2) @ T J T Jax. V V mA 10 100 150 20 20 200 300 40 400 500 60 600 700 25RIA 80 800 900 10 100 1000 1100 120 1200 1300 140 1400 1500 160 1600 1700 (1) Units may be broken over non-repetitively in the off-state
in „Unbekannter Thyristor dringend gesucht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
system_stm32f4xx.c
StartUpCounter != HSE_STARTUP_TIMEOUT)); if ((RCC->CR & RCC_CR_HSERDY) != RESET) { HSEStatus = (uint32_t)0x01; } else { HSEStatus = (uint32_t)0x00; } if (HSEStatus == (uint32_t)0x01) { /* Select regulator voltage output Scale 1 mode */ RCC->APB1ENR |= RCC_APB1ENR_PWREN; PWR->CR |= PWR_CR_VOS; /* HCLK =
in „STM32F401 Embitz1.1 Toolchain gesucht“ · Mikrocontroller und Digitale Elektronik ·
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DAP8A.pdf
reliability may be affected. http://onsemi.com 3 NCP1203 ELECTRICAL CHARACTERISTICS (For typical valuJs T = 25⋅C, for min/max Jalues T = 0⋅C to +12J⋅C, Max T = 150⋅C, V = 11 V unless otherwise noted.) CC Characteristic Symbol Pin Min Typ Max Unit Supply Section (All frequency versions, otherwise noted) Turn
in „Widerstand gesucht“ · Mikrocontroller und Digitale Elektronik ·
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INA111_BB.pdf
CURRENT vs TEMPERATURE 75 300 10n I b ) ) µ 50 200 µ 1n e e ) IOS n n ( h 25 100 h n 100p C C e O O u t 0 0 t C 10p p G≥10 p a - - B t–25 –100 t u 1p d d n r G=1 r I e–50 –200 e 0.1p R R –75 –300 0.01p 0 1 2 3 4 5 –75 –50 –25 0 25 50 75 100 125 TimeFromPower SupplyTurn-On(Minutes) Temperature (°C) INPUT
in „INA111 als Verstärker für Solarzelle?“ · Analoge Elektronik und Schaltungstechnik ·
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INA114.pdf
TIME vs GAIN OFFSET VOLTAGE WARM-UP vs TIME 1200 6 1000 ) 4 µ ) ( G ≥ 100 µ 800 g 2 ( a m C T 600 e 0 g 0.01% a l o e 400 V –2 S 0.1% e f 200 O –4 0 –6 1 10 100 1000 0 15 30 45 60 75 90 105 120 Gain (V/V) Time from Power Supply Turn-on (s) INPUT BIAS AND INPUT OFFSET CURRENT INPUT BIAS CURRENT vs TEMPERATURE vs DIFFERENTIAL INPUT VOLTAGE ) 2 3 n t e 2 u 1 A C m e t 1 f ±I e O B u u 0 C 0 n I a d OS B a u –1 G = 1 s –1 n i I G = 10 t –2 p G = 100 I G = 1000 –2 –3 –40 –15 10 35 60 85 –45 –30 –15 0 15 30 45 Temperature (°C) Differential Overload
in „Genaue Funktion eines Schaltungsteiles“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ina114.pdf
TIME vs GAIN OFFSET VOLTAGE WARM-UP vs TIME 1200 6 1000 ) 4 µ ) ( G ≥ 100 µ 800 g 2 ( a m C T 600 e 0 g 0.01% a l o e 400 V –2 S 0.1% e f 200 O –4 0 –6 1 10 100 1000 0 15 30 45 60 75 90 105 120 Gain (V/V) Time from Power Supply Turn-on (s) INPUT BIAS AND INPUT OFFSET CURRENT INPUT BIAS CURRENT vs TEMPERATURE vs DIFFERENTIAL INPUT VOLTAGE ) 2 3 n t e 2 u 1 A C m e t 1 f ±I e O B u u 0 C 0 n I a d OS B a u –1 G = 1 s –1 n i I G = 10 t –2 p G = 100 I G = 1000 –2 –3 –40 –15 10 35 60 85 –45 –30 –15 0 15 30 45 Temperature (°C) Differential Overload
in „"Hallsonde für Oszilloskop" im Eigenbau?!“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ina111.pdf
CURRENT vs TEMPERATURE 75 300 10n I b ) ) µ 50 200 µ 1n e e ) IOS n n ( h 25 100 h n 100p C C e O O u t 0 0 t C 10p p G≥10 p a - - B t–25 –100 t u 1p d d n r G=1 r I e–50 –200 e 0.1p R R –75 –300 0.01p 0 1 2 3 4 5 –75 –50 –25 0 25 50 75 100 125 TimeFromPower SupplyTurn-On(Minutes) Temperature (°C) INPUT
in „"Hallsonde für Oszilloskop" im Eigenbau?!“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LED-RGB-SK6812RGBP8.pdf
Name Min. value Max. Unit T Code period 1.20 -- -- µs T0H 0 code, high level time 0.2 0.32 0.4 µs T0L 0 code, low level time 0.8 -- -- µs T1H 1 code, high level time 0.58 0.64 1.0 µs T1L 1 code, low level time 0.2 -- -- µs Reset
in „RGBW Led Stripe 12V LED Typ unbekannt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HCPL-4731.pdf
VCC ≤ 20 V, 1.6 mA ≤ F(ON)≤ 5 mA, 0 V ≤ VF(OFF)≤ 0.8 V, unless otherwise specified. All Typicals at T = 25°C. See note 8. A Device Parameter Symbol HCPL- Min. Typ.* Max. Units Test Conditions Fig. Note Current CTR 800 3500 25k % IF= 40 µA, VO= 0.4 V 4, 5 2 Transfer VCC = 4.5 V Ratio 600 3000 8k I = 0.5
in „High-Side-Strom auf Low-Side spiegeln (Stromspiegel?!)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
UMW-SMBJ.pdf
(T = 25 °C unless otheAwise noted) DEVICE TYPE DEVICE MARKING BREAKDOWN TEST STAND-OFF MAXIMUM MAXIMUM MAXIMUM MODIFIED CODE VVOAT IE(1) CURRENT VOLTAGE LEAKAGE PEAKPULSE CLAMPING “J” BEND LEAD BR (V) T
in „TVS Diode gefälscht?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
3703fc.pdf
Current (Note 5) 0 5 µA RUN/SS = 0V 0 5 µA IBOOST BOOST Supply Current (Note 5) J ≤ 125°C l 360 500 µA T J> 125°C l 360 800 µA RUN/SS = 0V 0 5 µA Main Control Loop VFB Feedback Voltage (Note 4) 0.792 0.800 0.808 V l 0.788 0.812 V ∆V FB(LINE) Feedback Voltage Line Regulation 9V < VCC < 15V (Note 4) l 0.007
in „Längs- oder Querregler 40V 250W als Überspannungsschutz für Tiefstellsetzer“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Agilent__HSMx-C265.pdf
your Agilent representative for information on currently available bins. 4 1.0 GREEN Y I S YELLOW E T I 0.5 V ORANGE HER T A E R 0 500 550 600 650 700 750 WAVELENGTH – nm Figure 1. Relative intensity vs. wavelength. A m – 35 100 1.6 N E 30 A R m ) U T Y A C 25 N HER GREEN I 0 1.2 D E 10 N 2 A 20 R E T W U N A R Rθ J-A= 600°C/W C I E 0.8 F 15 R U I M A O A U 10 Rθ J-A= 800°C/W W 1 I M I R M R 0.4 X F L N M 5 – YELLOW ( – IF X 0 ORANGE A 0 20 40 60 80 100 0.11.5 1.7 1.9 2.1 2.3 00 10 20 30 40 M IF TA
in „Reverse Mount LED in gelb“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN758.pdf
. For two tone operation, a signal from an external audio oscillator is added to a signal from the T-4XB built-in oscillator, which has been adjusted to 800 Hz. During single tone testing, the external oscillator (1200 Hz) is switched off . A calorimeter wattmeter in the output can be used to calibrate
in „Stackpole Ferrit Kerne für RF Verstärker“ · HF, Funk und Felder ·
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PDF
_Motorola_AN758.pdf
. For two tone operation, a signal from an external audio oscillator is added to a signal from the T-4XB built-in oscillator, which has been adjusted to 800 Hz. During single tone testing, the external oscillator (1200 Hz) is switched off . A calorimeter wattmeter in the output can be used to calibrate
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PDF
kazemi-millimeter-wireless-power-transfer-technology.pdf
Loss) Maximum R Gnd R RelLtionship Rectifying Circuit Efficiency for Maximum Efficiency RG Vpsin t RL 20.3% R L R G R G R 20.3% R L R G p sin t L RG p sin t RL 46.1% R L 2.695 R G R G Vpsin t RL 46.1% R L R /2G695 RG 81.1% R L R G Vpsin t RL RG Ant. Vpsin t RL 100% R L R /2G Diode Input Output r R e G t Low-pass Filter Circuit DC Charging p sin t RL 100% R L 2 R G a Filter and Load Load Circuit B match RG Circuit 2 100% R L R G Vpsin t RL 8 Integrated on-wafer as a single chip RG g 2 Vpsin t
in „500W über 500m per Millimeterwelle übertragen?“ · HF, Funk und Felder ·
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PDF
LM202575x-xx_e-Spannungsregler.pdf
Ordering Information table for complete part number.) Straight Leads Bent, Staggered Leads 5–Lead TO-220 (T) 5-Lead TO-220 (T) 01147522 01147523 01147524 Side View Top View Top View LM2575T-XX or LM2575HVT-XX LM2575T-XX Flow LB03 or See NS Package Number T05A LM2575HVT-XX Flow LB03 See NS Package Number T05D
in „12V auf 5V per PWM?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Photodiode.pdf
Short-circuit current ISC 70 µA Kurzschlussstrom (E = 1000 lx, Std. Light A) v Rise and fall time t, t 0.02 µs r f Anstiegs- und Abfallzeit (VR= 5 V, R L 50 Ω, λ = 850 nm, IP= 800 µA) Forward voltage V F 1.3 V Durchlassspannung (F = 100 mA, E = 0) Capacitance C 72 pF 0 Kapazität (VR= 0 V, f = 1 MHz
in „Photodiode Messschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SMDJ12A_TVS_Diode.pdf
Clamping Peak Reverse Agency Number Number Voltage BR Current VoltageV Pulse Leakage I Approval (Volts) @ T I C R (Uni) (Bi) V R T @ I pp Current pp @V R UNI BI (Volts) MIN MAX (mA) (V) (A) (µA) SMDJ5.0A SMDJ5.0CA RDE DDE 5.0 6.40 7.00 10 9.2 326.1 800 X SMDJ6.0A SMDJ6.0CA RDG DDG 6.0 6.67 7.37 10 10.3 291.3
in „Frage zu TVS Diode -> Hält sie einen ESD aus?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX1448E_data.pdf
differential with respect to COM)L C ≈ 15pF at digital outputs (Note 5), f = 83.3MHz (50% duty cycle), T = T to T , unless otherwise noted. Typical values are a+25°C.) X CLK A MIN MAX A 1 PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS 4 IN = 7.47MHz 61 74 4 Spurious-Free Dynamic SFDR IN = 20MHz 61 74 dBc
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PDF
LT3757_Boost-Sepic-Flyback-Invert.pdf
Temperature, V IN 1602 –792 1.8 ) ) V 1600 VIN= 40V V ( V = 24V (–794 VIN= INTVCC= 2.9V ) G IN G A1.7 T 1598 T ( VIN= 40V O O–796 V = 8V N V IN= 24V K 1596 K IN R A A–798 U D VIN= 8V D T1.6 E 1594 E V = 40V E D D–800 VIN = 24V IN S T 1592 T I L L Q1.5 G G–802 VIN= INTVCC= 2.9V R 1590 VIN= INTCC = 2.9V
in „Datenblätter von Linear Technologies“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
system_stm32f4xx.c
StartUpCounter != HSE_STARTUP_TIMEOUT)); if ((RCC->CR & RCC_CR_HSERDY) != RESET) { HSEStatus = (uint32_t)0x01; } else { HSEStatus = (uint32_t)0x00; } if (HSEStatus == (uint32_t)0x01) { /* Select regulator voltage output Scale 1 mode, System frequency up to 168 MHz */ RCC->APB1ENR |= RCC_APB1ENR_PWREN; PWR
in „STM32F103 Bluepill mit 128kb lässt sich nicht flashen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
system_stm32f4xx.c
StartUpCounter != HSE_STARTUP_TIMEOUT)); if ((RCC->CR & RCC_CR_HSERDY) != RESET) { HSEStatus = (uint32_t)0x01; } else { HSEStatus = (uint32_t)0x00; } if (HSEStatus == (uint32_t)0x01) { /* Select regulator voltage output Scale 1 mode, System frequency up to 168 MHz */ RCC->APB1ENR |= RCC_APB1ENR_PWREN; PWR
in „stm32f411re timer clock speed ermitteln?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt_LCD16A4.pdf
time C 500 --- --- ns E E rise time r --- --- 25 ns E E fall time t --- --- 25 ns E f E pulse width tW 220 --- --- ns E R/W and RS set-up time tSU 40 --- --- ns R/W, RS R/W and RS hold time h 10 --- --- ns R/W, RS Data output delay time tD --- --- 120 ns DB 0 DB 7 Data hold time tDH 20 --- --- ns DB 0 DB 7 z Interface mode with ,KS0063B Characteristic Symbol Min. Typ. Max. Unit Test pin Clock pulse width High t 800 --- --- ns CLK CWH Clock pulse width Low tCWL 800 --- --- ns CLK
in „LCD Atmega8535 fehler beim Programm erstellen mit AVR-Studio“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SD_slot.pdf
Interconnect Solutions For technical, sales or ordering information call http://www.3M.com/interconnects/ 800-225-5373 3M™ Card Connector SD ™ Normal Polarization, Push-Push, Surfacemount SD Series Circuit : Write Card Detect Write Card Detect Write Card Detect Indication Protect Indication Protect Indication
in „NXP verschenkt ARM-Chips“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ISC-XVM13.pdf
ISC-XVM13 1 . 3 M e g a P i x e l D i g i t a l V i d e o C a m e r a M o d u l e APPLICATIONS: Handheld instruments (PDA, cell phone) • • Security & Surveillance • Toys FEATURES: • Full resolution SXGA at 15 fps • Best in class low light performance
in „Kamera für TMS320C6713“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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Motor_Neu.pdf
1500 2000 Drehzahl [U/min] Spitzenmoment Nennmoment Wk Nennmoment Lk Drehzahl-Leistungs-Diagramm ] 800 W g 600 u i L 400 h e 200 m 0 0 500 1000 1500 2000 Drehzahl [U/min] Spitzenleistung Nennleistung Wk Nennleistung Lk Strom-Drehmoment-Diagramm 6 ] 5 N t 4 e m 3 m e 2 D 1 0 0 5 10 15 20 25 Strom [A]
in „Drehstrom gleichrichten“ · Analoge Elektronik und Schaltungstechnik ·
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2307271031_Shenzhen-Fuman-Elec-2302P-D_C7495028.pdf
Source Charge Qgs 0.84 nC VGS=4.5V,VDS=10V,ID=2.5 A Gate Drain Charge Qgd 0.75 Turn-on Delay Time tD(on) 7.4 Turn-on Rise Time tr 56 VGS=4.5V,VDD=10V, ns Turn-off Delay Time tD(off) RL=1.5Ω, RGEN=3Ω 17 Turn-off Fall Time tf 55 A. Pulse Test: Pulse Width≤300us,Duty cycle ≤2%. B. Device mounted on FR
in „MosFET schaltet PWM Signal nicht“ · Analoge Elektronik und Schaltungstechnik ·
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2202251530_Shenzhen-Fuman-Elec-2302P_C2834503.pdf
Source Charge Qgs 0.84 nC VGS=4.5V,VDS=10V,ID=2.5 A Gate Drain Charge Qgd 0.75 Turn-on Delay Time tD(on) 7.4 Turn-on Rise Time tr 56 VGS=4.5V,VDD=10V, ns Turn-off Delay Time tD(off) RL=1.5Ω, RGEN=3Ω 17 Turn-off Fall Time tf 55 A. Pulse Test: Pulse Width≤300us,Duty cycle ≤2%. B. Device mounted on FR
in „MosFET schaltet PWM Signal nicht“ · Analoge Elektronik und Schaltungstechnik ·