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TMPA910_Rev.1.0_Schematic.pdf
D16 18 SD0 6k8 1% R1106 46 SD 160R A[25..0] A10 32 SD TP1100 A[25..0] CE 37 CMD 39 LED1 CE OE 35 CS# LED1 38 LED2 OE IOR# LED2 WE WE 36 IOW# RST RST 40 RST# TEST 41 GND U1100 INT INT 34 INT 1 CS VDD 8 VDD3V3 21 2 7 X1 44 EECS 20 3 SK NC 6 C1109 10pF 43 X1 N N N EECK 19 4 DI NC 5 X1100 25MHz X2 X2
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lm2841.pdf
Current Figure 2. Efficiency vs Load Current 100 VIN 12V 90 80 V IN24V ) 70 ( 60 Y N 50 I F 40 F E 30 20 10 0 0 20 40 60 80 100 120 LOAD CURRENT (mA) LM2840X V = 8 V X option OUT Figure 3. Efficiency vs Load Current Figure 4. Switching Frequency vs Temperature 800 ) A ( I 600 M L T N
in „LM2841 stirbt bei steilem Anstieg der Eingangsspannung auf 26V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
182128_1.pdf
e A2 n p n DQ0 A3 m I m Sense Amplifier/ DQ1 o o Write Control Logic I A10 C C t DQ2 D DQ3 n m DQ4 Address m DQ5 Change Clock C Detector Generator DQ6 DQ7 E2 V CC V SS W G 1 E1 Truth Table Operating Mode E1
in „[V] 8Stangen a25 SRAM ZMD U6264 ASC SMD 8Kx8 5V“ · Markt ·
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PDF
AIC1563CS.pdf
=1.0A; VCE(SAT) 1.5 1.8 V Follower Connection V BOOST=V DC = VCC Saturation Voltage I =1.0A; I V 0.4 V DC BOOST CE (SAT) 0.7 =50mA, (Forced β≅20) DC Current Gain ISC=1.0A; VCE5.0V hFE 35 120 Collector Off-State Current V CE0V C(OFF) 10 nA Comparactor Threshold Voltage Ta=25°C VFB 1.225 1.25 1.275 V
in „MC34063 = AIC1563 Konstantatromquelle“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
C462925.pdf
Dropout Voltage vs. Figure 17. Maximum Output Current vs. Output Current Input Voltage 60 1.6 ) ) A m 1.4 ( 50 ( N O VI= 13.5 V I T 1.2 TJ= 25°C P 40 V I 13.5 V P M TJ= 25°C M 1.0 S S N 30 N 0.8 O C T T 0.6 N 20 N E R R R 0.4 U 10 U , , 0.2 I Iq 0 0 0 100 200 300 400 500 600 0 10 20 30 40 50 60 Q , OUTPUT
in „Verpolungsschutz“ · Analoge Elektronik und Schaltungstechnik ·
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STM86312.pdf
output (VDD – 35V max) ■ LED ports (4 chs, 20mA max) ■ General purpose input port (4 bits) ■ No external resistor necessary for driver output PQFP44 (P-channel open drain + pull down resistor output) ■ Serial interface
in „STM86312 Funzt nicht“ · Mikrocontroller und Digitale Elektronik ·
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MAX3095-MAX3096.pdf
TEMPERATURE SUPPLY CURRENT vs. TEMPERATURE vs. TEMPERATURE 5 5 3.0 - 20 - MAX3095 3 3 3 M M A A ) 4 2.8 ( M ( A N 15 G ( E T T U O 3 E 2.6 C H R L I MAX3096 C MAX3095/MAX3096 P 10 T 2 L 2.4 S MAX3095 P P N U S O MAX3096 O T 5 1 2.2 H S I = -8mA 0 OUT 2.0 0 -40 -15 10 35 60 85 -40 -15 10 35 60 85 -40
in „Hilfe mit RS485-Receiver-Dattenblatt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX3095-MAX3096.pdf
TEMPERATURE SUPPLY CURRENT vs. TEMPERATURE vs. TEMPERATURE 5 5 3.0 - 20 - MAX3095 3 3 3 M M A A ) 4 2.8 ( M ( A N 15 G ( E T T U O 3 E 2.6 C H R L I MAX3096 C MAX3095/MAX3096 P 10 T 2 L 2.4 S MAX3095 P P N U S O MAX3096 O T 5 1 2.2 H S I = -8mA 0 OUT 2.0 0 -40 -15 10 35 60 85 -40 -15 10 35 60 85 -40
in „SPI mit RS485-Übertragung: Problem mit zu langen Propagation-Delays“ · Mikrocontroller und Digitale Elektronik ·
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C300_QSH4218_manual.pdf
RATED Rated Phase Current IRMS_RATED A 1.0 1.0 1.0 Phase Resistance at 20°C RCOIL Ω 5.3 4.5 5.0 Phase Inductance (typ.) mH 6.6 7.5 8.0 Holding Torque (typ.) Ncm 27 35 49 oz in 38 50 69 Detent Torque Ncm 2 Rotor Inertia g cm 35 54 68 Weight (Mass) Kg 0.22 0.28 0.35 Insulation Class B B B Insulation
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SG6841V2.1.pdf
(I ) vs RT Temperature 14 12 101.5 10 101.0 ) 8 u 100.5 ( 6 A n u 100.0 T 4 (T IR 2 99.5 0 99.0 -2 98.5 0.620 0.628 0.636 0.644 0.652 0.660 -40 -25 -10 5 20 35 50 65 80 95 110 125 TEMPERATURE ( ℃ ) RT VOLTAGE (V) V vs Temperature OTP, STOP V SENSE vs I VIN 0.63 0.84
in „SNT fiept im Leerlauf“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
main.c
(uint64_t);} if(was==35){p=mers35;n[0]=sizeof(mers35)/sizeof(uint64_t);} if(was==37){p=mers37;n[0]=sizeof(mers37)/sizeof(uint64_t);} if(was==39){p=mers39;n[0]=sizeof(mers39)/sizeof(uint64_t);} if(was==41){p=mers41;n[0]=sizeof
in „Pseudozufallsgenerator rückwärts, Funktionswert ohne Interation?“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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LTC1174.pdf
INDICATOR IS SET TO TRIP AT V = 4.4V VINV) IOUT MAX(mA) IN 4 110 6 + 10 F** **AVX TPSD106K035 6 140 4.7K V 0.1 F 35V ***AVX TPSD105K010 8 170 *LOW- IN 8 2 D1 = MBRS130LT3 (SURFACE MOUNT) 7 IPGM SHUTDOWN † 1N5818 10 200 BATTERY L1 SELECTION
in „DC/DC Wandler LTC1174 Verhalten bei Shutdown?“ · Mikrocontroller und Digitale Elektronik ·
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HCPL7800_appl.pdf
G 0.38 8.03 A A vs. DD2 L L V O 0.6 O 0.37 V V V –8.025 E E I S 0.5 S 0.36 A F F G 8.02 O O – T 0.4 T 0.35 G P P I I 8.015 – 0.3 – 0.34 S S VO 0.2 VO0.33 8.01 -55 -25 5 35 65 95 125 4.5 4.75 5.0 5.25 5.5 -55 -35-15 5 25 45 65 85 105 125 TA– TEMPERATURE – °C VDD – SUPPLY VOLTAGE – V TA– TEMPERATURE
in „Galvanisch getrennten 1-10V Ausgang regeln“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HCPL7800_appl.pdf
G 0.38 8.03 A A vs. DD2 L L V O 0.6 O 0.37 V V V –8.025 E E I S 0.5 S 0.36 A F F G 8.02 O O – T 0.4 T 0.35 G P P I I 8.015 – 0.3 – 0.34 S S VO 0.2 VO0.33 8.01 -55 -25 5 35 65 95 125 4.5 4.75 5.0 5.25 5.5 -55 -35-15 5 25 45 65 85 105 125 TA– TEMPERATURE – °C VDD – SUPPLY VOLTAGE – V TA– TEMPERATURE
in „8fach Trennverstärker 0..10V - wie realisieren?“ · Analoge Elektronik und Schaltungstechnik ·
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MCP1640.pdf
1.5V z VOUT = 3.3V H 520 3.36 ( 515 IOUT= 5 mA y 3.34 n 510 V e T q 505 U 3.32 r 500 V F 3.30 n 495 OUT= 15 mA h t 490 3.28 w OUT = 50 mA S 485 3.26 480 -40 -25 -10 5 20 35 50 65 80 -40 -25 -10 5 20 35 50 65 80 Ambient Temperature (°C) Ambient Temperature
in „ESP32-C6 an 18650 Akku betreiben“ · Mikrocontroller und Digitale Elektronik ·
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DAT-31R5A-PP_.pdf
0.25 dB 2.4-4 0.15 0.35 DC-1 — 0.07 0.2 Accuracy @ 4 dB Attenuation Setting 1-2.4 — 0.15 0.25 dB 2.4-4 0.23 0.5 DC-1 — 0.03 0.2 Accuracy @ 8 dB Attenuation Setting 1-2.4 — 0.15 0.5 dB 2.4-4 0.6 0.8
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B156XW03_V.2.pdf
Item Symbol Conditions Min. Typ. Max. Unit Note White Luminance 2 5 points average 170 200 - cd/m 1,4,5 LED=20mA θ Horizontal (Right) 40 45 - R degree θL CR = 10 (Left) 40 45 - Viewing Angle 4,9 ψH Vertical (Upper) 10 15 - ψL CR = 10 (Lower) 30 35 - Luminance Uniformity δ5P 5 Points - - 1.25 1,3,4 Luminance
in „Pollin LVDS-Board an B156XW03 Display“ · Mikrocontroller und Digitale Elektronik ·
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NECCS04393-1.pdf
SCK3 tSIKm tKSIm SI0, SI2, SI3 Input data tKSOm SO0, SO2, SO3 Output data m = 1, 2, 9, 10, 12, 13 n = 2, 10, 13 SBI mode (bus release signal transfer, µPD78P0308 only): tKCY3, 4 tKL3, 4 tKH3, 4 tR4 tF4 SCK0 tKSB tSBL tSBH tSBK tSIK3, 4 tKSI3, 4 SB0, SB1 tKSO3, 4 SBI mode (command signal transfer, µPD78P0308
in „Anschlussbelegung uP D78P0308GF gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
mainboardalone.sch.pdf
(ADC7)PA7 33 T7 G (ADC6)PA6 34 (ADC5)PA5 35 R7 D C9 Q1 12 36 GND G XTAL2 (ADC4)PA4 37 D 13 (ADC3)PA3 38 N XTAL1 (ADC2)PA2 39 GND G C10 32 (ADC1)PA1 40 T6 30 AREF (ADC0)PA0 X3-9 31 AVCC 8 R6 V+ AGND (SCK)PB7 7 X3-8 (MISO)PB6 10 VCC (MOSI)PB5 6
in „Wie Board erstellen“ · Mikrocontroller und Digitale Elektronik ·
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TSynth_Schematic_V1_1.pdf
N Headphone Jack (Opt.) S G S G To pads beneath To pads beneath C1 5 4 5 4 T3.6 USB 0.1uF Pitch LFO Wave Audio Board Pitch LFO Rate Pitch LFO Amt Osc Mix Decay Filter GND GND 4 Noise Detune Attack Filter
in „Electrotechnic T-Synth DIY Synthesizer - Platinenanalyse“ · Mikrocontroller und Digitale Elektronik ·
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eGC.pdf
I/O14 AM3505-ZER A1 PC9C20AIO_L33N_0 PIIC50I/O15 B PIIC20CIO_L34P_GCLK19_0 R0 B A2 PIIC20AIO_L34N_GCLK18_0 NANDFlash16 COR1 A3 BPIIC20BIO_L35P_GCLK17_0 R1 A[0..10] A4 APIIC20AIO_L35N_GCLK16_0 Resistor IC1K1 A5 PIIC20E7 R2.7 kOhm W5 A1
in „[Suche] Interessierte(n) an Projekt (ARM/FPGA)“ · Mikrocontroller und Digitale Elektronik ·
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ucn5833_datasheet.pdf
II smart power ICs an interface flexibility beyond the U C T O E G U L E U U C O N S P S L S C S O O N reach of standard buffers and power driver circuits. 4 3 2 1 0 6 5 4 3 2 1 4 4 4 4 4 S V L E OUT 2 7 C O 39 OUT31 These 32-bit drivers have bipolar open-collector npn Darlington OUT
in „AT89C2051 und das UART Rätsel“ · Mikrocontroller und Digitale Elektronik ·
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PDF
000202020-qs-01-en-SCHALTPLAN_MAIN_AKKULADESTATION_CHARGE_M.pdf
56k/1% 27k/1% K6 R30 R33 R35 D9 R37 R38 30k/1% 10R0/1% 220k 1N4148 R1 C4 R2 R3 C1 K4 Batt. Minus 10k 27k 100R 10k 10k R39 10n 0µ1 R9 VDD 56k/1% R10 47k Slot GND OP1 27k/1% P-GND C6 A-GND S1C P-GND P-GND R25 current +C/-D S10CD 100pF
in „Charge Manager 2020 Fehler beheben - wie?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
L7900ST.pdf
150 °C THERMAL DATA TO-3 TO-220 ISOWATT220 o Rthj-caseermal Resistance Junction-Case Max 4 3 4 C/W Rthj-ambhermal Resistance Junction-Ambient Max 35 50 60 C/W CONNECTION DIAGRAM AND ORDERING NUMBERS (top views) TYPE TO-3 TO-220 ISOWATT220 OUTPUT VOLTAGE L7905C L7905CT L7905CV L7905CP -5 V
in „Spannungsregelung“ · Analoge Elektronik und Schaltungstechnik ·
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mmbt4401-d.pdf
Min. Max. Unit M M V Collector-Emitter Breakdown I = 1.0 mA, I = 0 40 V B (BR)CEO Voltage(5) C B T 4 V Collector-Base Breakdown I = 0.1 mA, I = 0 60 V 0 (BR)CBO Voltage C E 1 — V(BR)EBO Emitter-Base Breakdown Voltage IE= 0.1 mA, C = 0 6.0 V BL Base Cut-Off Current VCE = 35 V, EB = 0.4 V 0.1 μA N N ICEX
in „moderner Ersatztyp für BC550 Audio low noise gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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INFINEON-BFP620_.pdf
0.35 nH CI RLI= 0.13 Ω To avoid high complexity of the package equivalent cirKBI-EI -0.05 - both emitter leTSFP-4are combined in one electrical connectiRLxIare series resistors for theLxIductances KBI-CI
in „H - Detektor mit vorspannen von Dioden?“ · HF, Funk und Felder ·
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Datei
version_1p3_assembler.lst
PORT 406: ; 1 = LINE PRINTER 407: N 1C COUB BIT 28 ;35.4-USER CONSOLE OUT BIT 408: ; 0 = SERIAL PORT 409: ; 1 = USER DRIVER 410: N 1D INBIT BIT 29 ;35.5-INITIALIZATION BIT 411: N 1E CIUB BIT 30 ;35.6-USER CONSOLE IN BIT 412: ; 0 = SERIAL
in „Basic für 80C31“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SM8952AC25.PDF
/o bit 5 of port 0 & data/address bit 5 of external memory 35 33 39 P0.4/AD4 i/o bit 4 of port 0 & data/address bit 4 of external memory 36 34 40 P0.3/AD3 i/o bit 3 of port 0 & data/address bit 3 of external memory 37 35 41 P0.2/AD2 i/o bit 2 of port 0 & data/address
in „SM8952A Programm auslesen von RFID Reader“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SM8952AC25.pdf
/o bit 5 of port 0 & data/address bit 5 of external memory 35 33 39 P0.4/AD4 i/o bit 4 of port 0 & data/address bit 4 of external memory 36 34 40 P0.3/AD3 i/o bit 3 of port 0 & data/address bit 3 of external memory 37 35 41 P0.2/AD2 i/o bit 2 of port 0 & data/address
in „Whirlpool-Steuerung Manipulieren / Fernsteuern: Welches Protokoll?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IRLML6244TRPBF_Datenblatt.pdf
= 100A/μs 2 www.irf.com IRLML6244TRPbF 100 100 TOP 10V TOP 10V 4.5V 4.5V ) 3.0V ) 3.0V ( 2.5V ( 2.5V n 2.3V n 2.3V r 10 1.8V r 10 1.8V u BOTTOM 1.5V u BOTTOM 1.5V C C r r u u S S 1.5V t t i 1 n 1 r r D 1.5V D ID ,D I 60μs PULSE WIDTH 60μs PULSE WIDTH Tj = 25°C Tj
in „passender FET wie beschalten?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Datenblatt.pdf
Temperature error (K) error (K) Min Typ Max Min Typ Max −55 −67 0.99 475 490 505 ±3.02 470 490 510 ±4.02 −50 −58 0.98 500 515 530 ±2.92 495 515 535 ±3.94 −40 −40 0.96 552 567 582 ±2.74 547 567 588 ±3.78 −30 −22 0.93 609 624 638 ±2.55 603 624 645 ±3.62 −20 −4 0.91 669 684 698 ±2.35 662 684 705 ±3.45 −
in „KTY82/120,215“ · Analoge Elektronik und Schaltungstechnik ·
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SSD1332_R1.61.pdf
853 151 VDD 3886.2 -853 211 COM22 7127.6 840 32 VCOMH -5181.6 -853 92 VSS -609.6 -853 152 VDD 3962.4 -853 212 COM21 7086.4 840 33 VCOMH -5105.4 -853 93 VREF -533.4 -853 153 VDD 4038.6 -853 213 COM20 7045.2 840 34 TR8 -5029.2 -853 94 VCC -457.2 -853 154 VDD 4114.8 -853 214 COM19 7004 840 35 TR7 -4953
in „OLED und 8051“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RF02_code_en.pdf
initialization, Open transmitter and use nIRQ as data rate clock. MCU write data bit on FSK pin at nIRQ falling edge. Tel: +86-755-82973805 Fax: +86-755-82973550 E-mail: sales@hoperf.com 5 http://www.hoperf.com RF02 V1.3 4. Example 2(for PIC
in „Datenübertragung mit Funkmodul RFM01-RFM02“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PH320240T023-IHC06_005.pdf
to human life and where extremely high levels of reliability are required. PH320240T023-IHC06 Page35 SAMPLE Ver.01 SPEC Edi.005 0 0 0 0 0 0 0 1 2 3 4 5 6 7 N U E P W DA R E A A D I R G W N G R E V Y B E n T I l r C E s y R 0 0 D 7 7 T 0 1 E 1 2 4 1 C T L R H R D E M W 3 T M : D G 0 O D O P N 2 : D H
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lt1153.pdf
7 DRAIN SENSE TIMING CAP 2 7 DRAIN SENSE LTC1153CN8 LTC1153CS8 STATUS 3 6 GATE STATUS 3 6 GATE GND 4 5 SHUTDOWN GND 4 5 SHUTDOWN N8 PACKAGE S8 PACKAGE 8-LEAD PLASTIC DIP 8-LEAD PLASTIC SOIC LTC1154 • PO02 LTC1153 • PO01 S8 PART MARKING TJMAX 100°C,JA = 130°C/W(N8) TJMAX 100°C,JA = 150°C/W 1153 ELECTRICAL
in „TPS61175 Overccurent Protection Mode“ · Analoge Elektronik und Schaltungstechnik ·
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DS_S6B1713_R42.pdf
21H COM34 DB1 DB2 22H COM35 DB3 Page4 23H COM36 0 1 0 0 DB4 24H COM37 DB5 25H COM38 DB6 26H COM39 DB7 27H COM40 DB0 28H COM41 DB1 29H COM42 DB2 2AH COM43 DB3 2BH COM44 0 1 0 1 DB4 Page5 2CH COM45 DB5 2DH COM46 DB6 2EH COM47 DB7
in „Frage zu static indicator glcd“ · Mikrocontroller und Digitale Elektronik ·
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msp430g2553_MIXED_SIGNAL_MICROCONTROLLER.pdf
OSCILLATING FREQUENCY vs vs LOAD CAPACITANCE LOAD CAPACITANCE 1.50 1.50 VCC = 3.0 V VCC = 2.2 V z 1.35 z 1.35 H H − − y 1.20 y 1.20 n n u 1.05 u 1.05 q P1.y q P1.y F 0.90 F 0.90 n n t 0.75 P2.0 ... P2.5 t 0.75 P2.0 ... P2.5 l l c P2.6, P2.7 c P2.6, P2.7 O 0.60 O 0.60 l l i 0.45 i 0.45 y y T 0.30 T 0.30
in „LiPo-Akku+LowPower: 5V Controller oder Spannungswandler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS_SJEP120R100_rev2.1.pdf
Characteristics Figure 4. Typical Transfer Characteristics ID= f(VDS; Tj= 150 °C; parameter: GS D = f(GS); DS = 5 V 15 35 ) ) ( 3.0 V ( 30 n 12 n e e 25 u 2.5 V u C 9 C 20 c c u 2.0 V u o 6 o 15 - - i i 10 r r , 3 , I 1.5 V
in „Siliziumkarbid-JFETS“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Hewlett_Packard_Operating_and_Service_Manuals_for_HP361XA_30W_Bench_Series_DC_Power_Supplies.pdf
N rm.s / 2 mV p p(10 Hz 10 MHz) "14 E36I0A: ¥.'.45 V V.'^=8 V I.N^2 A Ii.^-3 A E.3611A: V".-35 V V"--20 V I"i=0.85 A W^\.b A •y4-n- - 200 iu.\ rms / I mA p-p(10 Hz-10 MHz)"l';V E3612A: V";-.120 V V"-=60
in „Gebrauchtes Labornetzteil HP Agilent“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
LM3914.pdf
/ VIN IL(REF)= 2 mA, LED = 10 mA 3 8 mA/mV Input Bias Current (at Pin 5) 0V ≤ V ≤ V − 1.5V 25 100 nA IN Input Signal Overvoltage No Change in Display −35 35 V VOLTAGE-DIVIDER Divider Resistance Total, Pin 6 to 4 8 12 17 k Accuracy (Note 3) 0.5 2 % VOLTAGE REFERENCE Output Voltage 0.1 mA ≤ IL(REF)≤
in „Frage zu LM3914“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM3914.pdf
/ VIN IL(REF)= 2 mA, LED = 10 mA 3 8 mA/mV Input Bias Current (at Pin 5) 0V ≤ V ≤ V − 1.5V 25 100 nA IN Input Signal Overvoltage No Change in Display −35 35 V VOLTAGE-DIVIDER Divider Resistance Total, Pin 6 to 4 8 12 17 k Accuracy (Note 3) 0.5 2 % VOLTAGE REFERENCE Output Voltage 0.1 mA ≤ IL(REF)≤
in „Drehzahlerfassung und Ausgabe“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM3914.pdf
/ VIN IL(REF)= 2 mA, LED = 10 mA 3 8 mA/mV Input Bias Current (at Pin 5) 0V ≤ V ≤ V − 1.5V 25 100 nA IN Input Signal Overvoltage No Change in Display −35 35 V VOLTAGE-DIVIDER Divider Resistance Total, Pin 6 to 4 8 12 17 k Accuracy (Note 3) 0.5 2 % VOLTAGE REFERENCE Output Voltage 0.1 mA ≤ IL(REF)≤
in „LM 3914 Kaskade“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM3914.pdf
/ VIN IL(REF)= 2 mA, LED = 10 mA 3 8 mA/mV Input Bias Current (at Pin 5) 0V ≤ V ≤ V − 1.5V 25 100 nA IN Input Signal Overvoltage No Change in Display −35 35 V VOLTAGE-DIVIDER Divider Resistance Total, Pin 6 to 4 8 12 17 k Accuracy (Note 3) 0.5 2 % VOLTAGE REFERENCE Output Voltage 0.1 mA ≤ IL(REF)≤
in „LM3914 Display-Driver“ · Mikrocontroller und Digitale Elektronik ·
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PDF
VitoMirrorCtrl_V1.0.pdf
: 02_CPU.kicad_sch Title: Control Modul Test 1 Size: A4 Date: 2026-07-14 Rev: A KiCad E.D.A. 10.0.4 Id: 3/7 1 2 3 4 5 6 1 2 3 4 5 6 V 2 V _ 2 K V 1 C 2 K O 1 C GND L GND _ GND O N N A L U I A C20 C21 C22 R20 10 nF R23 10 nF R26 10 nF 33 kΩ D20 33 kΩ D21 33
in „Hilfe beim KiCad-Layout gesucht: 2-Fach Motorsteuerung (KFZ-Bereich)“ · Platinen ·
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PDF
VitoMirrorCtrl_V1.0_B.pdf
D File: 02_CPU.kicad_sch Title: Control Modul Test 1 Size: A4 Date: 2026-07-14 Rev: B KiCad E.D.A. 10.0.4 Id: 3/7 1 2 3 4 5 6 1 2 3 4 5 6 V 2 V _ 2 K V 1 C 2 K O 1 C L _ O N N A L U I A GND GND C20 GND C21 C22 R20 10 nF R23 10 nF R26 10 nF 33 kΩ D20 33 kΩ D21 33
in „Hilfe beim KiCad-Layout gesucht: 2-Fach Motorsteuerung (KFZ-Bereich)“ · Platinen ·
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PDF
Schaltplan_DMS_Messverstaerker.pdf
C39 LTC4067 NSR30CM3 TPS73601 3 10nF 6 OVI OUT 11 IN OUT 5V_USB 7 OVP GATE 9 Q13 C19 EN NNR/FB R28 C26 10µF G 44.2kΩ 10nF F Q12 12 R35 C31 C20 F IN 10 150kΩ 100nF 4.7µF C28 C18 R39 4 BAT R29 5 Ilim1 LiPo 100nF 10µF 10kΩ 34.8kΩ 3 NTC C30
in „Analog- und Digital-Teil bestmöglich trennen“ · Platinen ·
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PDF
PK566-NB.pdf
Double Shaft PK543-NB PK544-NB PK545-NB Maximum Holding Nm 0.13 0.18 0.24 Torque* (kgcm) (1.3) (1.8) (2.4) kgm 2 35 x10-7 54 x10 -7 68 x10 -7 Rotor Inertia (gcm ) (35) (54) (68) Resistance per Phase Њ/phase 2.2 2.5 2.8 Step Angle 0.72˃ i 100MЊ or more under normal ambient n r temperature and humidity when
in „Hitzeprobleme beim L298 !?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
schaltung.pdf
GND 2 27 OSCI RI# 26 3 USB-BUCHSE 28 OSCO CBUS0 23 VCC D D A 17 22 R T DMX A GND 3V3OUT CBUS1 13 C4 N D D D T CBUS2 14 C5 100nF G N N N E CBUS3 12 100nF A G G G T CBUS4 2 7 1 2 2 GND GND +8V VCC GND +8V 4 U7A VCC C1 3 TL084CN 100nF C9 + 1 100nF 2 out1 C3 - 100nF U2 1 1 GND -8V AD7945BNZ 1 U1 16 CS
in „Schaltgeschwindigkeit BUZ73L => Spannung fällt zusammen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
CT0889_Mini-DOS.asm
ES DOS25E: POP AX IRET ; ; AH = 35h Hole Interrupt-Vektor ; Entry AL : Interrupt-Nummer ; Exit ES:BX : Interrupt-Routine ; DOS35: PUSH AX PUSH DS PUSH SI SAL AX,1 ; Nr. * 4 SAL AX,1 AND AX,3FCH ; Adresse in INT-Table MOV SI,AX XOR AX,
in „[S] 8086 oder 8088“ · Markt ·
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PDF
TI74HC244.pdf
2Y4 3 18 1Y1 (DB), Thin Shrink Small-Outline (PW), and 1A2 2A4 4 17 Ceramic Flat (W) Packages, Ceramic Chip 2Y3 5 16 1Y2 Carriers (FK), and Standard Plastic (N) and 1A3 6 15 2A3 Ceramic (J) 300-mil DIPs
in „SN74HCT244?“ · Mikrocontroller und Digitale Elektronik ·