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PDF
HCNR200.pdf
N D R0.025 I 0.01 O E - T 0.9 85°C I S 0.005 H 100°C - 0.02 E P 0.8 N B U N O 0.0 P 0.7 I0.015 T I - I-0.005 – 0.6 T R K E 0.01 – D 0.5 B F-0.01 E NORMALIZED TO K1 CTR – LB L 0.4 B0.005 0 V < PD < 15 V N A AT F= 10 mA, A
in „Energy Meter mit ADE7769 - AVR“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Anleitung.pdf
1.6mm 1 Note:Users can complete the installation according to the PCB silk screen and component list. 4 G5 G4 g c dp d e 7 6 5 4 3 2 1 4 dp dp G dp dp d d d d c e c e c e c e P30 S b g f b g f b g f b g f a a a a P31 S DPY DPY DPY DPY S S d b f a G 4 D 4 1 P32 S 8 9 0 2 3 4 3 T 1 1 1 1 1 U SP30 GND P30
in „Hilfe bei Fehlersuche“ · Platinen ·
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PDF
FSD156MRBN.PDF
275V Box (Pilkor) N — NTC C102 150nF/275V Box (Pilkor) NTC101 5D-9 DSC C103 100F/400V Electrolytic (SamYoung) r e Resistor C104 3.3nF/630V Film (Sehwa) n M R101 1.5MΩ, J 1W C105 15nF/100V Film (Sehwa) o R103 43kΩ, J 1W C106 100nF SMD (2012) d R201 1.5kΩ, F 1/4W, 1% C107 Electrolytic (SamYoung) e 47F/50V F R202 1.0kΩ, F 1/4W, 1% C201 820F/25V Electrolytic (SamYoung) i c R203 18kΩ, F 1/4W, 1% C202 820F/25V Electrolytic (SamYoung) h R204 8kΩ, F 1/4W, 1% C203 2200F/10V Electrolytic (SamYoung) d P R205 8kΩ, F 1/4W, 1% C204
in „Samsung Clicking Netzteil BN44-00635B Relais RL801S bekommt keine Dauerspannung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
QRG-1555.pdf
Speaker Header (Pins 1-3: Power LED, Pins 6-7: Internal 1. Always use DDR3 SO-DIMM modules of the same type, size, and speed. e n - - u i T T Buzzer, Pins 4-7: External Speaker) Mixing memory modules of different types and speeds is not allowed. t , 3 2 o e O JF1 Front Control Panel Header i e 2 Battery
in „Suche: Tipps zur Reparatur eines Mainboards“ · PC Hard- und Software ·
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PDF
ArmAssemblerTutorial.pdf
load certain commonly-used patterns: Any 32bit number that consists of one byte of arbitrary bits (i.e. 8 adjacent arbitrary bits) at any location, and zeros otherwise, e.g. 0x00000045, 0x00045000, 0x7f800000. Any 32bit number that consists of the same byte repeated 2 or 4 times in fixed places, as in
in „ARM-Assembler-Tutorial“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MT48LC16M16A2.PDF
line. Grade Frequency CL = 2 CL = 3 Time Time 3. Contact Micron for availability. -6A 167 MHz – 5.4ns 1.5ns 0.8ns -7E 143 MHz – 5.4ns 1.5ns 0.8ns -75 133 MHz – 5.4ns 1.5ns 0.8ns -7E 133 MHz 5.4ns – 1.5ns 0.8ns -75 100 MHz 6ns – 1.5ns 0.8ns Part Number Example: MT48LC16M16A2TG-75:D 256MSDRAM_1.fm -
in „[Verkaufe] 5xSDRAM (4Meg x 16 x 4 Banks) und 5xFLASH (64Meg 8 o. 16 Bit)“ · Markt ·
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PDF
self-res.pdf
here incidentally, that Sichak , in his study of helically-loaded coaxial lines, comes to the same conclusion in deriving his velocity factors. Ageneral first-order expression for coil self-capacitance was derived earlier as (2.4): C = 4ε ℓ kE 1 L π kH cos ψ We can still retain this general form,
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PDF
AT89S8253-24PU.pdf
CC (Active Mode) Measurements o AT89S8253 I CC Active @ 25 C With Internal Clock Oscillator x1 Mode 4.00 A3.50 ( 3.0V e3.00 t 4.0V c2.50 A 5.0V I2.00 1.50 1 2 3 4 5 6 7 8 9 10 11 12 Frequency(MHz) o AT89S8253 I CC Active @ 90 C With Internal Clock Oscillator x1 Mode 4.00 A3.50 m 3.0V e3.00 i 4.0V c2.50
in „AT89S8253-24PU ersetzen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
40fe8ba21fd51d61eb24f243667167be25ae.pdf
path 1–2–3 combines with 1–3 to form one transmission zero. Simultaneously, the interior path 1–3–4 combines with the innermost path 1–4 to produce a second transmission zero. Both are on the upper skirt. See Table V. In the same way, the circuit of Fig.11 produces two transmis- sion zeros on the lower
in „Topfkreis - Leistungsdimensionierung“ · HF, Funk und Felder ·
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PDF
tps92661-q1.pdf
SLUSBU2 –SEPTEMBER 2014 6.6 Typical Characteristics TA= 25°C free air unless otherwise specified 6 6 ) 5.4 ) 5.4 A A ( 4.8 fPWM = 732 Hz ( 4.8 n fPWM = 146 Hz n r 4.2 r 4.2 u u s 3.6 s 3.6 i i B 3 B 3 i i r 2.4 r 2.4 e 1.8 e 1.8 f = 4185 Hz O O PWM u 1.2 u 1.2 PWM = 523 Hz n n PWM = 209 Hz I 0.6 I 0.6 0 0
in „LED Serienschaltung mittels Transistor schalten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TPS_40210.pdf
) ( t6 DCM CCM DCM CCM e Inductor Inductor RMS = RMS = u4 3 A 2.1 A C t u2 d I0 ) (6 DCM CCM DCM CCM n IDiode IDiode 1 A = 1 A = r4 u e2 d D0 ) t6 DCM CCM DCM CCM n Switch Switch RMS = RMS = r4 2.2 A 1.5 A C h i2 w S0 0 2 4
in „Problem mit dem Hochsetzsteller (TPS 40210)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
evdp610.pdf
other end to the serial port. The pin-out of the null modem cable is shown in the figure 3 below. 1.4CheckingJumperConnections 1. There should be a jumper in the middle position on JP1 (allowing the 11.059MHz clock – the same one Figure 1 - EVDP610 Evaluation Board clocking the micro, to clock the IXDP610
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PDF
SPACE_VECTOR_MODULATION_AND_CONTROL.pdf
of the Figure 4.4, the duty cycle of the positive switching combination (onn) is (4-1) d S0_ pos (1+ m S0 )⋅d S0/ 2, 83 while the duty cycle of the negative switching combination (poo) of the same vector is (4-2) d
in „Literatur für Raumzeigermodulation“ · Mikrocontroller und Digitale Elektronik ·
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PDF
17PW20-1.PDF
SS SG2525A COM P. 9 C 9 3 5 Q803 450V 8 V 0 STPS_3P_10L60CFP u 1 u 3 8 7 8 0 0 3 S2 D2A 6 M TP6N60E/SSP7N60A M TP6N60E/SSP7N60A4 8 2 3 4 F801 +12SV 6 8 6 8 10 R 2 C 1 5 BSH10Q837 C 1 6 V 1 1 C 1 1 C IRF7314 R823 1 0 V 1 u V 0 u V 2 15 4 2 G1 D1 7 15R C 4 1 C 1 1 C 1 1 R970 R852 R861 2 PL802 47k 10k
in „LCD-TV und Netzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
High_Performance_EMI_Filter.pdf
H B E Q G L J K M N C > Components > FN 2080 Dimensions 1A 3A 6A 10A 12A 16A Tolerances A 85 85 113.5 ±1 156 ±1 156 ±1 119 ±1 ±0.5 B 54 54 57.5 ±1 57.5 ±1 57.5 ±1 85.5 ±1 ±0.5 C 30.3 40.3 45.4 ±1 45.4 ±1 45.4 ±1 57.6 ±1 ±0.5 D 64.8 64.8 94 ±1 130.5 ±1 130.5 ±1 98.5 ±1 ±0.5 E 49.8 49.8 56 56 56 84.5 ±0.5 F 75 75 103 143 143 109 ±0.3 G 27 27 25 25 25 40 ±0.2 H 12.3 12.3 12.4 12.4 12.4 15.6 ±0.5 I 20.8 29.8 32.4 32.5 32.5 ±0.5 J 19.9 11.4 15.5 15.5 15.5 42.25 ±0.5 K 5.3 5.3
in „Netzstörungen filtern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
High_Performance_EMI_Filter.pdf
H B E Q G L J K M N C > Components > FN 2080 Dimensions 1A 3A 6A 10A 12A 16A Tolerances A 85 85 113.5 ±1 156 ±1 156 ±1 119 ±1 ±0.5 B 54 54 57.5 ±1 57.5 ±1 57.5 ±1 85.5 ±1 ±0.5 C 30.3 40.3 45.4 ±1 45.4 ±1 45.4 ±1 57.6 ±1 ±0.5 D 64.8 64.8 94 ±1 130.5 ±1 130.5 ±1 98.5 ±1 ±0.5 E 49.8 49.8 56 56 56 84.5 ±0.5 F 75 75 103 143 143 109 ±0.3 G 27 27 25 25 25 40 ±0.2 H 12.3 12.3 12.4 12.4 12.4 15.6 ±0.5 I 20.8 29.8 32.4 32.5 32.5 ±0.5 J 19.9 11.4 15.5 15.5 15.5 42.25 ±0.5 K 5.3 5.3
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PDF
SSA_Cuk_Middlebrook.pdf
power respectively, while the duty r a t i o t o output stage bl = b2 - b. This example wi l lbe l a t e r transfer function i s available a t the final-stage pursued i n d e t a i l along both paths. model (4a or 4b) a s indicated by blocks 7a and 7b. The two f i n a l stage models (4a and 4b) then give
in „Verdammte Regelung eines 200W Buckwandlers!“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HCNR200.pdf
R0.025 I 0.01 O E - T 0.9 85°C I S 0.005 H 100°C - 0.02 E P 0.8 N B U N O 0.0 P 0.7 T0.015 T I - I – 0.6 T R-0.005 K E 0.01 – D 0.5 B F-0.01 E – B I 0.4 NORMALIZED TO K1 CTR B0.005 0 V <PD < 15 V N A AT F = 10 mA, A =
in „Galvanische Trennung Analoger 4-20/0-20 mA Eingänge“ · Mikrocontroller und Digitale Elektronik ·
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STC15F100-en.pdf
Y Y 5 N ¥ ¥ STC15L103 3.6~2.4 3K 128 2 - Y - Y Y 5 N ¥ ¥ ¥ ¥ STC15L103E 3.6~2.4 3K 128 2 - Y 2K Y Y 5 N STC15L104 3.6~2.4 4K 128 2 - Y - Y Y 5 N ¥ ¥ STC15L104E 3.6~2.4 4K 128 2 - Y 1K Y Y 5 N ¥ ¥ STC15L105 3.6~2.4 5K 128 2 - Y -
in „STC15F104W will nicht so recht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
LCD.inc
E low again nop ;wait a bit before strobing E again nop sbi Port, LCD_E ;same as above, now we're reading the low nibble nop in temp, Pin ;get the data andi temp, 0b11110000 ;and again mask off the control
in „Ansteuerung eines LCD Displays 4x27 im 4bit“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pgm-download_media.pdf
i.t.h.........o..........t..................................................................... 12 4 Instal.l.a..t.i.o..n...a..n..d...o..p...t.i........i.t.h..l......o....t.....o..n..n..e............................................................. 12 5 Firmw ....r............a..d..i.n..g...........
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ALD110800-1489.pdf
) T 1.5 E ( VGS(TH)-1.3V, -0.4V, 0.0V, +0.2V, +0.8V, +1.4V L A E V ▯ T A ▯ 0.3 E ▯ 1.0 O T C 25°C V O U E V O 0.5 V GS(th) 0.4V▯ C - ▯ U 0.2 E O A 0.0 - G 55°C V▯ = 0.2V▯ T GS(th) A 0.0 -0.5 ▯ G ▯.1 0▯2 ▯ 0.5▯
in „Radiobasteln - Was hat 2018 noch Aussicht auf Erfolg ?“ · HF, Funk und Felder ·
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PDF
BOSCH_The_config_of_CAN_Bit_Timing_L-1.pdf
Point cannot be shifted far enough; the dominant spike is sampled as actual bus level. . i a Figure 4 : Filtering of Short Dominant Spikes p i o n v g o e u r 4. Oscillator Tolerance Range e e t n The oscillator tolerance range was increased when the CAN protocol was developed from ver- a sion 1.1 to
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applsci-08-01825-v2.pdf
C-rate as ! ▯ C-rate ▯ 3.3 ▯ SOC ▯ b(SOC,C-rate ) = 0.98 + 0.01741 ▯ 2 20 ▯ ▯ ▯ ▯ 3 2 (3) ▯ 0.6045 ▯4 SOC 0.05C-rat▯ 0.35C-ra+e1) 2.4 ▯ 5.512 ▯10 ▯ SOC 20 and the value for the b parameter as function of SOC for different C-rates is presented in Figure 4. Now, using the values calculated from Equations
in „Pedelec: Akku und Controller verklebt - ist das rechtens ?“ · Fahrzeugelektronik ·
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PDF
AVR_8-bit_AppNote_HardwareDesignConsiderations_AVR042.pdf
of 3-5. Equation 5-3. SafetyFactor = R Q R L Where the resonance load R is Letermined by Equation 5-4: Equation 5-4. 2 ⎛ C0 ⎞ R L= R1 ⋅⎜1+ ⎟ ⎝ C L ⎠ 9 2521E-AVR-06/06 Where R a1d C are0obtained from the datasheet of the resonator and C is the L applied capacitive load calculated usingEquation 5-1. In
in „RFM01 Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BT-WiFi-52rf5541.pdf
0XA00 0XA01 0XA02 0XA03 PWM1 0XA04 0XA05 0XA06 0XA07 PWM2 0XA08 0XA09 0XA0A 0XA0B PWM3 0XA0C 0XA0D 0XA0E 0XA0F PWM4 0XA10 0XA11 0XA12 0XA13 Table 31PWM register address All the five PWM have the same operation. Next, we will describe the detail usage of PWM0. register[bit]信号名 ADDR Operation Function [7]
in „JDY-40 ein neuer Geniestreich aus China?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Avalon_A3255Q48-131113-V05-EN.pdf
sequence of Hash Data Segment is shown in Figure 4-2 Figure 4-2 Hash Data Segment Transfer Sequence a2 midstate e0 e1 e2 a0 a1 data Lastword First word All data is sent in LSB, means low bit, low byte and low word is sent first 4.3 Initial Nonce Segment
in „Chips für SHA256 Berechnungen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lcd1.pdf
, so that ‘‘down’’ generates a logic input/output lines are required. microswitch) for the E input (S9). The 0 (low) and ‘‘up’’ provides a logic 1 LCD MODULE D7 D6 D5 D4 D3 D2 D1 D0 E R/W RS Vee Vdd Vss 14 13 12 11 10 9 8 7 6 5 4 3 2 1 +5V R1 R2 R3 R4 R5 R6 R7 R8 R9 R10 4k7 4k7 4k7 4k7 4k7 4k7
in „eigene Zeichen im LCD darstellen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
how_to_use_cdm_1.pdf
, so that ‘‘down’’ generates a logic input/output lines are required. microswitch) for the E input (S9). The 0 (low) and ‘‘up’’ provides a logic 1 LCD MODULE D7 D6 D5 D4 D3 D2 D1 D0 E R/W RS Vee Vdd Vss 14 13 12 11 10 9 8 7 6 5 4 3 2 1 +5V R1 R2 R3 R4 R5 R6 R7 R8 R9 R10 4k7 4k7 4k7 4k7 4k7 4k7
in „Dokumentation gesucht (UC121902-TNARX-A)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
24c04_V2.pdf
Connections Figure 2B. SO Pin Connections ST24x04 ST24x04 ST25x04 ST25x04 PRE 1 8 V CC PRE 1 8 VCC E1 2 7 MODE/WC E1 2 7 MODE/WC E2 3 6 SCL E2 3 6 SCL VSS 4 5 SDA V SS 4 5 SDA AI00852E AI01107E Table 2. Absolute Maximum Ratings (1) Symbol Parameter Value Unit TA Ambient Operating Temperature –40 to
in „I²C - EEPROM's (24C04 ...)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Seiten_aus_IRFD_FINAL_de.pdf
74.5 84.4 92.5 105.1 114.8 6 0.5 53.5 76.7 92.4 104.3 114.0 129.1 7 0.5 64.9 92.0 140.8 110.3 124.2 135.5 153.2 166.8 Sec. 2.7 The All-Pole Low Pass Filter 67 Table 2.2e D.75-dB Chebyshev Filter n 2 3 4 5 6 8
in „Ist ein Filter immer ein Delay dass mit Phasenauslöschung funktioniert ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IGBT_Gate.pdf
the switched as triacs, thyristors and bipolar transistors are currentaredifferent,asshowninfigure4.Attheend “current” controlled, in the same way as a PN diode. of the switching event, the IGBT has a “tail current” which does not exist for the MOSFET. 2.2 Driving a gate As shown in figure 2, driving
in „Abschaltvorgang IGBT - Frage“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Atmel-42005-8-and-16-bit-AVR-Microcontrollers-XMEGA-E_Manual.pdf
different memory sections at the same time. See Figure 4-3 on page 24. XMEGA E MANUAL 23 Atmel–42005E–AVR–XMEGA E–11/2014 Figure 4-3. Bus Access EDMA CPU External programming CH0 CH1 CH2 CH3 AVR core OCD PDI Bus matrix Event Interrupt Flash
in „ATxmega8E5 - ADC Gain Korrektur“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MASM61PROGUIDE.pdf
shown here: ; Real numbers short REAL4 25.23 ; IEEE format double REAL8 2.523E1 ; IEEE format tenbyte REAL10 2523.0E-2 ; 10-byte real format ; Encoded as hexadecimals ieeeshort REAL4 3F800000r ; 1.0 as IEEE short ieeedouble REAL8 3FF0000000000000r
in „SumArray Proc Uses SI, Was heisst bitte das Uses bei MASM?“ · Softwareentwicklung ·
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PDF
irlb3034pbf-Datasheet.pdf
VGS VGS 60µs PULSE WIDTH TOP 10V ≤60µs PULSE WIDTH TOP 15V ≤ ) 8.0V Tj = 25°C 8.0V Tj = 175°C (10000 4.5V A 4.5V t 3.5V t10000 3.5V e 3.0V e 3.0V u 2.7V r 2.7V C 1000 BOTTOM 2.5V C BOTTOM 2.5V c e u r 1000 o o - 100 - - - i i r r 100 , 10 , ID ID 2.5V 2.5V 1 10 0.1 1 10 100 0.1 1 10 100 VDS , Drain-to-Source
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PDF
IRLB3034PbF.pdf
VGS VGS 60µs PULSE WIDTH TOP 10V ≤60µs PULSE WIDTH TOP 15V ≤ ) 8.0V Tj = 25°C 8.0V Tj = 175°C (10000 4.5V A 4.5V t 3.5V t10000 3.5V e 3.0V e 3.0V u 2.7V r 2.7V C 1000 BOTTOM 2.5V C BOTTOM 2.5V c e u r 1000 o o - 100 - - - i i r r 100 , 10 , ID ID 2.5V 2.5V 1 10 0.1 1 10 100 0.1 1 10 100 VDS , Drain-to-Source
in „Aufwärtsschaltregler bauen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IRLB3034.pdf
VGS VGS 60µs PULSE WIDTH TOP 10V ≤60µs PULSE WIDTH TOP 15V ≤ ) 8.0V Tj = 25°C 8.0V Tj = 175°C (10000 4.5V A 4.5V t 3.5V t10000 3.5V e 3.0V e 3.0V u 2.7V r 2.7V C 1000 BOTTOM 2.5V C BOTTOM 2.5V c e u r 1000 o o - 100 - - - i i r r 100 , 10 , ID ID 2.5V 2.5V 1 10 0.1 1 10 100 0.1 1 10 100 VDS , Drain-to-Source
in „Logic Level Mosfet - Welcher "kann mehr"“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Datenblatt_ST24C02.pdf
DIP Pin Connections Figure 2B. SO Pin Connections ST24x02 ST24x02 ST25x02 ST25x02 ST24C02R ST24C02R E0 1 8 VCC E0 1 8 VCC E1 2 7 MODE/WC E1 2 7 MODE/WC E2 3 6 SCL E2 3 6 SCL V 4 5 SDA V 4 5 SDA SS SS AI00789D AI00790E Table 2. Absolute Maximum Ratings (1) Symbol Parameter Value Unit TA Ambient Operating
in „PIC I2C EEPROM beschreiben“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Part_1_Physical_Layer_Specification_Ver3.01_Final_100218.pdf
Version 3.01 c n CLK I DAT[x] 0 bmsb bmsb blsb blsb(CRC (CRC(CRC (CRC (CRC(CRC (CRC(CRC 1 (start)(odd(eFigure 4-44 : CRC16 in DDR50 Modeodd)even) odd)even)odd)even) (end) t o 4DDR50 mode. However the same principles apply for all single or multiple blocks read or writend in accesses with or without stop
in „MicroSD STM32 und Mosfet“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN255_I2C__SMBus_REPEATERS_HUBS_AND_EXPANDERS.pdf
with resistors 10 times the values of R2, R3 and R4. So, if R1 = R3 = R4 = 10 kΩ, and R2 = 1 kΩ , the pull-up load at I 2C 1 is 10kΩ //10kΩ //100kΩ //100kΩ = 4.55 kΩ 2 2 The same calculation applies for I C 2 and I C 3. To calculate the current being
in „SPI oder TWI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN255.pdf
with resistors 10 times the values of R2, R3 and R4. So, if R1 = R3 = R4 = 10 kΩ, and R2 = 1 kΩ , the pull-up load at I 2C 1 is 10kΩ //10kΩ //100kΩ //100kΩ = 4.55 kΩ 2 2 The same calculation applies for I C 2 and I C 3. To calculate the current being
in „50 X LM75 an ATMEGA16?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BUV48AFI_STMicroelectronics.pdf
-5 V IB1 = 2 A o 0.16 s same conditions at Tc= 125 C 0.4 s for BUX48A/V48A/V48AFI VCC = 300 V IC= 8 A LB= 3 H VBE = -5 V IB1 = 1.6 A 0.13 s o 0.4 s same conditions at Tc= 125 C 3/7 BUX48 / BUX48A / BUV48A / BUV48AFI TO-3 MECHANICAL
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PDF
ProdManualIndGradeSDv1.0.pdf
clock periods. <----- Host command ----> <-N cycles-> <---- Host command -----> CC CMD S T content CRC E Z * * * * * Z S T content CRC E Figure 4-15. Timing of Command Sequences (All Modes) 4.11.2. Data Read Note that the DAT line represents the data bus (either 1 or 4 bits). Single Block Read The host
in „Eigenbau Mp3 Player“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM2660_DC_Inverter.pdf
device and reduce the quiescent current g to 0.5 µA. The oscillator frequency for the LM2661 is 80 kHz. e C Basic Application Circuits o n e Voltage Inverter Positive Voltage Doubler r e r DS012911-3 DS012911-4 SplittingINin Half DS012911-26 © 2001 National Semiconductor CorDS012911 www.national.com 1 6
in „Negative Betriebsspannung erzeugen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IE3_5_1_Application_Notes_IC_L297.pdf
motor but gives a less regular torque (figure 4c). For rotation in the opposite direction (counter-clockwise) the same three sequences are used, except of course that the order is reserved. As shown in these diagrams the motor would have a step angle
in „Phase Chopping“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Nokia_6100_LCD_Display_Driver.pdf
,0x00, // 1 0x3C,0x66,0x06,0x1C,0x30,0x66,0x7E,0x00, // 2 0x3C,0x66,0x06,0x1C,0x06,0x66,0x3C,0x00, // 3 0x0E,0x1E,0x36,0x66,0x7F,0x06,0x0F,0x00, // 4 0x7E,0x60,0x7C,0x06,0x06,0x66,0x3C,0x00, // 5 0x1C,0x30,0x60,0x7C,0x66,0x66,0x3C,0x00, // 6 0x7E
in „Alles was man über das Nokia 6100 Display wissen muss“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Varistor_vs._Transil_Protection_-_AN1826.pdf
Transil™ diode and Varistor measured on curve tracer. Both tested components have been chosen in the same power and voltage (14V) ranges in order to make an accurate comparison. VR Fig. 3: Electrical characteristics measured on curve tracer. 200 200 150 150 100 100 A A ( 50 ( 50 t t e 0 Varistor e 0 Transil
in „Supressordiode Tip“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Varistor_vs._Transil_Protection_AN1826.pdf
Transil™ diode and Varistor measured on curve tracer. Both tested components have been chosen in the same power and voltage (14V) ranges in order to make an accurate comparison. VR Fig. 3: Electrical characteristics measured on curve tracer. 200 200 150 150 100 100 A A ( 50 ( 50 t t e 0 Varistor e 0 Transil
in „IGBT brennt durch - Weit unter spezifkation.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
snap.pdf
the complete packet. The name on the fields are chosen to be easy to remember. HDB2 HDB1 Bit 7 6 5 4 3 2 1 0 Bit 7 6 5 4 3 2 1 0 D D S S P P A A C E E E N N N N D S P A C E N A A F C M D D B B B K D M B DAB = Number of Destination Address Bytes SAB = Number of Source Address Bytes PFB = Number of Protocol
in „mehrere Module ueber uart“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IRFB3006_IR.pdf
approximately 90°C. 2 www.irf.com IRFB3006PbF 1000 1000 VGS VGS TOP 15V TOP 15V A 10V A 8.0V t 6.0V t 6.0V e 5.0V e 5.0V r 4.5V r 4.5V C 100 4.0V C 4.0V e BOTTOM 3.5V e BOTTOM 3.5V r r o o 100 - - - - i 10 i r r 3.5V D , ,D I I 3.5V ≤ 60μs PULSE WIDTH ≤ 60μs PULSE WIDTH Tj = 25°C Tj = 175°C 1 10 0.1 1 10 100
in „Motor PWM Steuerung, Mosfet Problem“ · Mikrocontroller und Digitale Elektronik ·