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UDN2981.pdf
available in all package styles. 2981 THRU 2984 8-CHANNEL SOURCE DRIVERS One of Eight Drivers V 5 9 20 K 2983/84 ONLY 7.2 K INPUT 3 K OUTPUT 1.5 K GROUND Dwg. No. A-10,242B 2.5 T A2982SLW and A2984SLW T A 18-PIN DIP,θJA= 60°C/W W 2.0 I N 20-LEAD SOIC, θJA= 70°C/W I 1 20 T 18-LEAD SOIC, θJA= 80°C/W A 2 19 I S 1.5 3 18 D R 17 E 4 W O 5 16 P 1.0 E 6 15 A K 14 C 7 P E 8 13 L 0.5 B +V 9 12 GROUND A S W NO 10 NC 11 NO L CONNECTION NC CONNECTION L A 0 Dwg. PP-064-2 25 50 75 100 125 150 AMBIENT TEMPERATURE IN °C Dwg. GP-022-4 115 Northeast Cutoff, Box 15036
in „Treiber ICs (Datenblatt verstehen)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2981.pdf
available in all package styles. 2981 THRU 2984 8-CHANNEL SOURCE DRIVERS One of Eight Drivers V 5 9 20 K 2983/84 ONLY 7.2 K INPUT 3 K OUTPUT 1.5 K GROUND Dwg. No. A-10,242B 2.5 T A2982SLW and A2984SLW T A 18-PIN DIP,θJA= 60°C/W W 2.0 I N 20-LEAD SOIC, θJA= 70°C/W I 1 20 T 18-LEAD SOIC, θJA= 80°C/W A 2 19 I S 1.5 3 18 D R 17 E 4 W O 5 16 P 1.0 E 6 15 A K 14 C 7 P E 8 13 L 0.5 B +V 9 12 GROUND A S W NO 10 NC 11 NO L CONNECTION NC CONNECTION L A 0 Dwg. PP-064-2 25 50 75 100 125 150 AMBIENT TEMPERATURE IN °C Dwg. GP-022-4 115 Northeast Cutoff, Box 15036
in „100mm 7 Segment Anzeige“ · Mikrocontroller und Digitale Elektronik ·
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029-02463-1-UDN2981A.pdf
www.digchip.com at this page 2981 THRU 2984 8-CHANNEL SOURCE DRIVERS One of Eight Drivers V 5 9 20 K 2983/84 ONLY 7.2 K INPUT 3 K OUTPUT 1.5 K GROUND Dwg. No. A-10,242B 2.5 T A2982SLW and A2984SLW T A 18-PIN DIP,θJA= 60°C/W W 2.0 I N 20-LEAD SOIC, θJA= 70°C/W I 1 20 T 18-LEAD SOIC, θJA= 80°C/W A 2 19 I S 1.5 3 18 D R 17 E 4 W O 5 16 P 1.0 E 6 15 A K 14 C 7 P E 8 13 L 0.5 B +V 9 12 GROUND A S W NO 10 NC 11 NO L CONNECTION NC CONNECTION L A 0 Dwg. PP-064-2 25 50 75 100 125 150 AMBIENT TEMPERATURE IN °C Dwg. GP-022-4 115 Northeast Cutoff, Box 15036
in „ULN2003 Soll Spannung Schalten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Infineon-IPD025N06N-DS-v02_05-EN.pdf
=C5 °C Continuous drain current ID - - 90 A V GS0 V, T =C00 °C - - 26 V GS0 V, T =C5 °C, R thJA=50K/W Pulsed drain current1) ID,pulse - - 360 A T C25 °C Avalanche energy, single pulse 2) E AS - - 210 mJ ID=90 A, R GS5 Gate source voltage V GS -20 - 20 V - Power dissipation P tot - - 167 W T C25 °C
in „N-Channel Mosfet gesucht - IPD025N06N“ · Analoge Elektronik und Schaltungstechnik ·
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ET6622.pdf
generate a single tone. Name Command Code Function TONE OFF 0000-1000-X Turn-off tone output TONE 4k 010X-XXXX-X Turn-off tone output, tone frequency is 4kHz TONE 2k 0110-XXXX-X Turn-off tone output, tone frequency is 2kHz Command format The ET6622 can be configured by the software setting. There are
in „Hilfe bei Fehlersuche auf Platine (Displayanzeige schwach)“ · Mikrocontroller und Digitale Elektronik ·
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datasheet.pdf
MF 5.1 k7 20 V 50 V C3 R15 F1 220 nF 1 k7 3.15 A 275 VAC TOPSwitch-HX U2B U2A RT1 O D M U1 P1-H-A- PS2501- L 10 7 t CONTROL TOP258PN 1-H-A 196 k7 12.4 k7 C 1% 1% E R16 R17 10 k7 10 k7 N S R8 1N4148 90 - 265 C8
in „Verzweifelt: Wie Widerstände und Kapazitäten eines Sperrwandler IC´s auslegen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD8551_8552_8554.pdf
= 2.7V VSY = 5V 50 SY 270 A = –100 CL = 0pF V RL = 2kΩ 40 240 B ) ( 30 (210 N A = –10 E A V N G 20 A180 P D O 10 P150 O A = +1 M - V I E 0 U120 S P AV= 100 O–10 U 90 C O A = 10 –20 60 V AV= 1 –30 30 –40 0 0 2 100 1k 10k 100k 1M 10M 1 100 1k 10k 100k 1M
in „Chopper Verstärker“ · Analoge Elektronik und Schaltungstechnik ·
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rxv396.pdf
DIAGRAM • J,U,C,R,T and A models→RAV205 VDD VDD U1 Key Arrangement 2N3904 Q2 38VDD P17 40NC VBAT 17 K4 K7 K8 + C1 C2 VDD 3 470µF 0.1µF 16VSS P16 41 1 39 K38 K15 K29 K26 K28 K1 2 15VSS 4 6 1.5Vx4 X1 P15 42 K31 K34 K21 K16 K2 K6 5 X1 7 8 4.0MHz P14 43 14X2 K10 K24 K22 K25 K27 K32 9 VBAT VDD 13 IC P13 44 K19 K13 K11 K17 K23 K39 10 11 12 C7 R7 0.1µF R6 470KΩ P12 1 18RESET K18 K14 K30 K34 K9 K3 13 14 15 R9 1KΩ VBAT VDD VBAT P11 2 16 17 18 Q1 K35 K33 K36 K5 K12 K37 220KΩ 2N3904 3 Q3 C6 D3 D4 P10 19 20 21
in „Yamaha RX-V396 RDS Fehlersuche“ · Mikrocontroller und Digitale Elektronik ·
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PDF
0s922lq6p7gwsc2hhzx6z4e3pl3y.pdf
estimate of average stability from lot to lot. http://onsemi.com 2 LM317, NCV317 Vin 310 310 230 120 5.6 k 6.3 V 170 6.7 k 12 k 160 13 k 5.0 pF 125 k 12.4 k 200 135 6.8 k 510 6.3 V 30pF 30pF 2.4 k 105 6.3 V 190 3.6 k 5.8 k 110 5.1 k 12.5 k 4.0 0.1 Vout Adjust This device contains 29 active transistors. Figure
in „LM317 Spannungsregler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM317.PDF
power change in a specified time. http://onsemi.com 2 LM317 Representative Schematic Diagram Vin 5.6k 31 310 230 120 0 6.3V 170 160 6.7k 12k 5.0pF 125k 200 13k 12.4k 6.8k 510 135 6.3V 30 30 pF pF 2.4k 105 6.3V 190 12.5k 3.6k 5.8k 110 5.1k 4.0 0.1 Vout Adjust This device contains 29 active transistors
in „Spannungsregler für Kleinverbraucher bei 1,2V gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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LMC6482.pdf
Phase Margin 50 Deg Gm Gain Margin 15 dB Amp-to-Amp See (8) Isolation 150 dB Input-Referred F = 1 kHz en Voltage Noise V = 1 V 37 nV/√Hz cm Input-Referred F = 1 kHz n Current Noise 0.03 pA/√Hz F = 10 kHz, V = −2 RL= 10 kΩ, 0.01% V = 4.1 V Total O PP T.H.D. Harmonic F = 10 kHz, V = −2 Distortion R =
in „2s Akku Spannungen der Zellen auslesen mit Operationsverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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LTC2418.pdf
3.75V F CIN= 0.001µF + 10 IN = 1.25V ––40 FO = GND C IN= 100pF TA = 25°C C IN= 0pF 0 –50 1 10 100 1k 10k 100k 1 10 100 1k 10k 100k RSOURCE(Ω) R SOURCE(Ω) 2414/18 F13 2414/18 F14 Figure 13. +FS Error vs R at IN or IN (Small C ) Figure 14. –FS Error vs R at IN or IN (Small C ) SOURCE IN SOURCE IN typical
in „4-kanal PT100 Multiplexer 24bit Schaltung, Messbrücke, ratiometrisch, c't lab“ · Analoge Elektronik und Schaltungstechnik ·
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NT7701Ver2.1.pdf
---------->Y1 Y160 ---------------------->Y1 EIO2 EIO1 EIO2 EIO1 EIO2 EIO1 L/R L/R L/R 7 7 7 D D D K 0 K 0 K 0 C P D R D C P D R D C P D R D X L M F X L M F X L M F XCK LP MD FR D0 - D7 /8 VSS 4.2 Case of L/R = “H” VDD D0 - D7 /8 FR MD LP XCK 7 K 7 K 7 K D F M L C D F M L C D F M L C - X - X - X I I
in „Wintek WD-H3224V 320x240“ · Mikrocontroller und Digitale Elektronik ·
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Datei
TB-boot-log.txt
0.000000] Inode-cache hash table entries: 65536 (order: 6, 262144 bytes) [ 0.000000] Memory: 1931672K/2097152K available (11118K kernel code, 814K rw) [ 0.000000] Virtual kernel memory layout: [ 0.000000] vector : 0xffff0000 - 0xffff1000 ( 4 kB) [ 0.000000] fixmap : 0xffc00000 - 0xfff00000 (3072 kB)
in „Asus Tinkerboard startet nicht“ · Mikrocontroller und Digitale Elektronik ·
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STM32_F4VE_SCHEMATIC.PDF
C1C1 3V3 PIR10 PIR201PIR301 PIR401 PIC101 PIC102 R1R1 R2R2 R3OR3 R4R4 P1P1 预留 5V 输入接口,连接器间距 2.54mm 10K 10K 10K 10K 104 PIP101 PIP102 U5U5 3V3 PIR102 PIR20 PIR302 PIRGND PB4/TRSTPIP103 Vref Vsupply PIP104 PIU501IO_D2 R12PIR1201PIR1202 CU1 PA15/TDIPIP105 nTRST GND PIP106 DAT2 PIU502IO_D3 R24PIR2401PIR2402
in „Neues Entwicklungsboard STM32F407“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32_F4VE_SCHEMATIC.PDF
C1C1 3V3 PIR10 PIR201PIR301 PIR401 PIC101 PIC102 R1R1 R2R2 R3OR3 R4R4 P1P1 预留 5V 输入接口,连接器间距 2.54mm 10K 10K 10K 10K 104 PIP101 PIP102 U5U5 3V3 PIR102 PIR20 PIR302 PIRGND PB4/TRSTPIP103 Vref Vsupply PIP104 PIU501IO_D2 R12PIR1201PIR1202 CU1 PA15/TDIPIP105 nTRST GND PIP106 DAT2 PIU502IO_D3 R24PIR2401PIR2402
in „STM32F407 Black und Arduino“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Crumb128_051120.pdf
chip and o microcontroller current Crumb128 modules are not preprogrammed. Please use the native CP210x USB driver for c current modules! The bootloader is still available on the download page. . Connector Kit – Crumb128 is being shipped without pin headers mounted, since everybody has it's own 5 favorates
in „Crumb128 Probleme bei der Inbetriebnahme“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LRS-350-SPEC.PDF
IMMUNITY Compliance tBS EN/EN55035,EACTPTC 020, KS C 9832, KS C 983(for LRS-350-12/24 only) MTBF 2099.9K hrs min. Telcordia SR-332 (Bellcore) ; 328.6Khrs miMIL-HDBK-217F (25℃) OTHERS DIMENSION 215*115*30mm (L*W*H) PACKING 0.76Kg; 15pcs/12.4Kg/0.67CUFT NOTE
in „Strombegrenzung für Solar-Laderegler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DAC014N120Z5.pdf
- VDS1000V - 260 pF Output Capacitance Coss - VGS =0V Reverse Transfer Capacitance C rss Freq.=100kHz - 16 - C ossStored Energy Eoss - 150 - μJ Turn-On Switching Energy E on VDS800V,V GS=-4V/+15V - 1380 - ID=80A,R G(ext).0Ω μJ Turn-Off Switching Energy E off L=100μH - 210 - Switching Characteristics
in „Doppelter Sourceanschluss bei SiC-Mosfets“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
umrech.txt
Scanning-Bus-for-DS18X20 2-DS18X20-Sensor(s)-available: #-in-Bus-:1-:-FC:10-(18S)SN:-8C-79-0B-02-08-00-CRC:5F--CRC-O.K.- #-in-Bus-:2-:-FC:10-(18S)SN:-E0-76-0B-02-08-00-CRC:8E--CRC-O.K.- Sensor#-1-is-a-DS18S20/DS1820-which-is-parasite-powered Sensor#-2-is-a-DS18S20/DS1820-which-is-parasite-powered DS18x20-EEPROM-support-test-for-first-sensor
in „DS18S20 - extended resolution bei Temperaturen um 0°C“ · Mikrocontroller und Digitale Elektronik ·
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PDF
1.5KE400CA.pdf
REVERSE STANDOFF VOLTAGE (V) Fig. 1 Pulse Waveform Fig. 2 Typical Total Capacitance 100 IMPULSE ) k ( SINE WAVE TC= 25ºC E W O E SQ. WAVE S 10 U P A E , PP 1.0 0.1 1.0 10 100 1000 10,000 T ) 5.0 N W E 100 ( Single Phase R N Half-Wave 60Hz U T Resistive or C A Inductive Load R I 3.75 O 75 S R D P R K E A W P 50 O 2.5 % P ( T L = 9.5 mm G T T S A Y E 25 D 1.25 D E E 10 X 1000 Waveform T 40 x 40 x 1 mm Cu L as defined by REA , U Pd P 0 0 A 0 25 50 75 100 125 150 175 200 E 0 25 50 75 100 125 150 175
in „Ersatztypen für Diode“ · Mikrocontroller und Digitale Elektronik ·
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Infineon-IPP_B_I70P04P4_09-DS-v01_03-en.pdf
Unit min. typ. max. Thermal characteristics 2) Thermal resistance, junction - case R thJC - - - 2 K/W Thermal resistance, junction - R thJA - - - 62 ambient, leaded SMD version, device on PCB R thJA minimal footprint - - 62 6 cm cooling area 2) - - 40 Electrical characteristics, at j =25 °C, unless
in „MOSFET als Lastschalter“ · Analoge Elektronik und Schaltungstechnik ·
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P4C165.pdf
P4C165 ULTRA HIGH SPEED 8K x 8 RESETTABLE STATIC CMOS RAM FEATURES Full CMOS, 6T Cell Output Enable and Dual Chip Enable Control Functions High Speed (Equal Access and Cycle Times) – 15/20/25 ns (Commercial) Single 5V±10% Power
in „SRAM gesucht.“ · Mikrocontroller und Digitale Elektronik ·
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RCDN9.pdf
8 8 0 C862 AGND R R 2 1 O H F 8 0 8 0 H 47P 7 7 2 C C T C871 K 5 8 / 7 . D+3.3V R864 10K 4 1 C 5 C 0 4 0.1 K 2 1 R806 10K 1 0 Z 1 1 L Z GND_DRV R807 10K C805 8 R AGND C 1000P R 1 R808 10K 10K R811 8 1SS355T D803 R R809 10K 10K R812 EMI CM_0322 10K R813 C896 0.1
in „Hifi Kompaktanlage mit Bluetooth Sender ausstatten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Dazzle_HW_mb_hsw_ult-3a-reve-0408.pdf
GPIO93 R590 10K_4 TP59 GPIO59 AT5 GPIO58 +3V_S5 +3V GSPI0_MOSI/GPIO86 R7 GPIO87 GPIO86 8 GPIO94 R588 10K_4 TP61 GPIO44 AK4 GPIO59 +3V_S5 GPIO +3V GSPI1_CS/GPIO87 L5 GPIO88 GPIO0 R210 10K_4 TP56 GPIO47 AB6 GPIO44 +3V_S5
in „Notebook Mainboard reparieren Aspire V5-573G, IC iTE IT8587E“ · PC Hard- und Software ·
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TDA8924.pdf
CONDITIONS MIN. TYP. MAX. UNIT Internal oscillator; note 1 osc(typ) typical oscillator frequenROSC = 30.0 k 290 317 344 kHz f oscillator frequency 210 − 600 kHz osc External oscillator or frequency tracking VOSC voltage on pin OSC SGND + 4.5 SGND + 5 SGND + 6 V VOSC(trip) trip level for tracking at pin − SGND + 2.5 − V OSC track frequency range for tracking 210 − 600 kHz V minimum symmetrical 15 − − V P(OSC)(ext) supply voltage for external oscillator application Note 1. Frequency set with OSC, according to the formula in Section 8.2. 2003 Jul 28 12 Philips
in „Schaltregler 24V/15A gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Configuration.h
in ParCan & J-Head)", '501':"100K Zonestar (Tronxy X3A)", '6':"100k / 4.7k EPCOS - Not as accurate as Table 1", '7':"100k / 4.7k Honeywell 135-104LAG-J01", '8':"100k / 4.7k 0603 SMD Vishay NTCS0603E3104FXT", '9':"100k / 4.7k GE Sensing AL03006-58.2K-97-G1", '10':"100k / 4.7k RS 198-961", '11':"100k / 4.7k beta 3950 1%", '12':"100k / 4.7k 0603 SMD Vishay NTCS0603E3104FXT (calibrated for Makibox hot bed)", '13':"100k Hisens 3950 1% up to 300°C for
in „Marlin Firmware mit dem ATMEL STUDIO 7 auf das Arduino Mega 2560 Board flashen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OP07.pdf
6 V– V– - V– R2 2 EO = –EINRF –B RF 3 10kΩ R1 R2 6 R1 0 R3= R4 0 0 Figure26.TypicalOffsetVoltageTestCircuit Figure29.Burn-InCircuit RF R1 EIN SUM MODE BIAS V+ R3 R4 V+ 3kΩ 7 10kΩ 2 – R1 10kΩ 2 7 6 E +15V – OP07C EO 1 R1 A2 R2 6 10kΩ 3 10kΩ 2
in „Spannungsregler für Operationsverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ga1.pdf
the Change in IKA= 10mA mV/V V KA VKA = Cathode Voltage — -0.5 -2.0 36V to 10V IKA= 10mA, R1 = 10kΩ, R2 = REF 5 Reference Current — 0.7 4 µA ∞ Deviation of Reference Current IKA= 10mA, R1 = 10kΩ IREF 5 — 0.4 1.2 µA Over Full Temperature Range R2 = ∞, TA= -40 to +125°C IKA Minimum Cathode Current
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PDF
BC546-D.PDF
VEB = 0.5 VC I = 0, f = 1.0 MHz) Small − Signal Current Gain hfe − (I = 2.0 mA, V = 5.0 V, f = 1.0 kHz) BC546 125 − 500 C CE BC547/548 125 − 900 BC547A 125 220 260 BC546B/547B/548B 240 330 500 BC547C/548C 450 600 900 Noise FigureC(I = 0.2 mACEV= 5.0 V,SR = 2 kW, f = 1.0 kHz, Df = 200 Hz)NF dB BC546
in „5V Solid-State-Relais über 3.3V Logik steuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IL300.pdf
P2I F I . Forward Current lF — 60 mA K3—Transfer Gain Surge Current lpk — 250 mA (Pulse width <10µs) The Transfer Gain is the ratio of the Forward Gain to the Servo gain, i.e., K3 = K2/K1. Reverse Voltage V R — 5.0 V ∆K3—Transfer Gain Linearity
in „Galvanisch getrennten 1-10V Ausgang regeln“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
an-am2.8.pdf
1 1 RB461F-T106 1 -4.4V ~ -4V CD36 1 CD35 2 CD54 SOT323 1U 1 CD52 2 RD14 U4 0 DB5 RD12 1 1U 10U 18k 100pF 1 8 6 CDRH2D11/15uH 82pF CD49 1CD48 2 RB461F-T106 15k 2 2 1 NI 2 SOT323 2 1 S V S 3 1 1U 210U 2 1 FBIN FB2N 5 2 LT3471EDD 2 RD10 RD11 9 7 2 RD6 1 5k 5K SHDN/SS1 SHDN/SS2 1 DC_DC_EN 1 1 CD51 4.7K ENAR1 0.33UF 2 FBIP FB2P 4 2 1 1 F N R 1 RD9 2 G V DC_DC_EN 1 4.7K CD37 1 3 0.33UF 2 1 CD55 0.1U 2 3 Document No.: 1.2 Drive IC CPU interface definition U2 AR_VDD 1 AR_VDD AR_VDD AR_VSS VREG1OUT 2 1 AR_VSS 3 AR_VSS C24 VCI 4 VCI 1 C20 1 C34 VCI1 5 VCI1OUT 10U GND 6
in „C0283QGLH-T nur kurzes Aufleuchten?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OP177.pdf
S20 O C 80 0 70 7 0 - 8 8 0 0 –20 0 60 10 100 1k 10k 100k 1M 10M 0.1 1 10 100 1k 10k FREQUENCY (Hz) FREQUENCY (Hz) Figure14.Closed-LoopResponseforVariousGainConfigurations Figure17.PSRRvs.Frequency Rev. G | Page 7 of 16 OP177 Data Sheet 1000 20 TA=
in „Konstantstromquelle bis 100ma mit OPV auslegung“ · Analoge Elektronik und Schaltungstechnik ·
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TPS40060_TPS40061.pdf
and Equation 26. 1 1 fZ2+ 2p R1 C3 N C3 + 2p 100 kW 3.7 kHz + 430 pF, choose 470 pF (72) fP2+ 1 N R3 + 1 + 4.62 kW, choose 4.64 kW 2p R3 C3 2p 470 pF 73.3 kHz (73) 1 1 fC+ 2p R1 C2 G N C2 + 2p 100 kW 3.29 1.46 kHz+ 109 pF, choose 100 pF (74) fP1+ 1 N R2 + 1 + 21.7 kW, choose 21.5 kW 2p R2 C2 2p 100 pF 73.3 kHz (75) 1 1 fZ1+ 2p R2 C1 N C1 + 2p 21.5 kW 3.7 kHz+ 2000 pF, choose 1800 pF (76) Calculate the value oBIASfrom Equation 23 with R1 = 100 k . 0.7 V R1 0.7 V
in „Parameter-Berechnung für Schaltregler“ · Analoge Elektronik und Schaltungstechnik ·
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1207A_Manual_pdf.pdf
Batteriespannung 16 V (=Unterspannungspunkt) Isolierspannung zu Kühlkörper 500 V ac (minimum) Frequenz 15 kHz Ausgangsstrom * 1207-11XX 1207-21XX 250 A für 1 min 300 A für 30 sec 200 A für 2 min 210 A für 2 min 150 A für 5 min 160 A für 5 min 100 A für 1 h 110 A für 1 h Schützspannung gleich Batteriespannung
in „Elektomotor 24vdc 100A Stufenlos regeln“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LENOVO_THINKPAD_YOGA_900-13ISK_LCFC_NM-A411_BYG40_Rev1.0.pdf
74AUP1G07FW4-7_DFN1010-6_1X1 0_0402_5% +1.00VAUX 1 C210 2 VCC RTC U 0 2 0 R198 _ 10K_0402_1% 2 1 SM_INTRUDER_N V R85 330K_0402_5% 6 1 M VCCST_PWRGD_IN- 2 2 R201 C41 B 1.00V_PWRGD _R @ U9 100K_0402_1% 10.068U_0201_10V6K B 6 VOUT NI 3 1 5 1 VCC VEE 2 4 VCCST_PWRGD_IN
in „Notebook Leistungsteil reparatur“ · Mikrocontroller und Digitale Elektronik ·
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PDF
fn8271_1_.pdf
FREQUENCY SYNCHRONIZATION AND PHASE LOCK LOOP (Note 7) Synchronization Frequency VCC = 5.4V FOSC 1500 kHz PLL Locking Time VCC = 5.4V;SW = 700kHz 210 µs Input Signal Duty Cycle Range 10 90 % PWM (Note 7) Minimum PWM OFF Time MIN_OFF 310 345 410 ns Current Sampling Blanking Time tBLANKING 175 ns OUTPUT
in „Spannungsregler 5V 10A“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DAC80.pdf
may be substituted. Voltage Output Models Current Output Models +VCC +VCC 1 24 1 24 Reference 10M 10k Reference 10M 10k Control 2 Control 23 2 23 to to Circuit 100k 3 Circuit 22 100k 3 22 0.01µF 0.01µF –VCC –VCC 4 21 4 21 12-Bit 3.9M 10k 12-Bit 10k 5 Resistor 5k 20 to 5 Resistor 20 to 100k Ladder 2k
in „Ersatz für DAC80 (12-Bit DIGITAL-TO-ANALOG CONVERTERS)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Vergleichsliste.pdf
2SC1014 D40D11 ECG302 2SC1728 ECG306 2SC1760 ECG307 2SA624 D41011 ECG308P S3901M S3901MF S3901 ECG309K LM309K UA7805KC SG7805K LM340K-5 ECG310P S3900S S3900E S3900 ECG311 2N3866 BF154 ECG312 2N5484 2SK104 2SK168 2SK55 MPF-102 ECG313 2SC605 2SC606 ECG314 2SF248 2N3670 2N3669 ECG315 2SC1973 ECG316 2SC1547
in „ECG45 was ist das?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Sager_D87P_Service_Manual_Part4.pdf
10K(R) 4.7K HSDL-3600 BASE ADDRESS CONFIGURATION R211 R228 6 7 2 1 DTRA# PULL-UP :4E 10K 10K 1 JA1 2 C398 0.1U DTRA# PULL-DOWN :2E (DEFAULT) C399 0.047U SHORT-A C907 4.7U(0805) RTSA# R210 4.7K(R) FIRVCC
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PDF
Display_TC1604A_01.PDF
) MODULE OUTLINE DRAWING E E A B D U N L I E N S E : N N T O D D C E D N / A C C L E O O M S R : V K T C A : D N N O I T 1 C P I F J I F O O R : : P C E T S L E T : E C H N P T D S S U A D E T N 0 Y / E T I G I L O K / A E B D N T M I I C S T I T L CC C I T E C F O0 ° 5 / S I N 7 C~ 7 , N S C A 4 `C
in „Display TC1604A 01 - LED Spannung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DDS20_KM_G_030523.pdf
SMD 22 COM1 5 31 COM1 1u J310 BC848C C37 23 P0.2/SO COM2 6 30 COM2 Tantal SMDn Tantal SMDn SMD 1u K K P0.3/SI COM3 7 29 COM3 IC5 2 M 2 0 SMD 2 K 2 R 1 M R 0 R 0 1 16 R 1 R 1 R 1 R 4 1n R 1 DR1 1 1 24 P1.0/INT0 SEG0 3 1 SEG0 FS ADJ COMP C5 SMD A 25 P1.1/INT1 SEG1 2 2 SEG1 2 REF IN AVDD 15 C6 C7 26 P1.2
in „AD811 Bezug für ELV DDS20“ · Mikrocontroller und Digitale Elektronik ·
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DDS20_KM_G_030523.pdf
SMD 22 COM1 5 31 COM1 1u J310 BC848C C37 23 P0.2/SO COM2 6 30 COM2 Tantal SMDn Tantal SMDn SMD 1u K K P0.3/SI COM3 7 29 COM3 IC5 2 M 2 0 SMD 2 K 2 R 1 M R 0 R 0 1 16 R 1 R 1 R 1 R 4 1n R 1 DR1 1 1 24 P1.0/INT0 SEG0 3 1 SEG0 FS ADJ COMP C5 SMD A 25 P1.1/INT1 SEG1 2 2 SEG1 2 REF IN AVDD 15 C6 C7 26 P1.2
in „Welcher Microcontroller ist das, DSS20 ELV?“ · Mikrocontroller und Digitale Elektronik ·
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Hauptplatine.pdf
Lock D P A & D A C P S V GND GND GND MMZ2012R600 AD9951 CS-M-PLL 10 ADF4351 3 4 5 2 9 8 3 3 1 9 0 3 k 74HC08 R 1 R 1 FB24 3 +3.3V R31 C89 C90 2 k 3 k C91 C92 C93 C94 C95 C96 10k Q2 3 . 3 . 1 BC817 R 3 R 5 MMZ2012R600 2 100n 100n 100n 10p 100n 10p 100n 10p 1 U5D GND GND GND GND GND 12 V GND GND GND GND
in „Oszillator YIG 1,9-4,4 GHz Avantek ASF-9882/7841“ · HF, Funk und Felder ·
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TARGET__HiQTRX_V24S_Circuit.pdf
+5V Ultra-Low-Noise Voltage Source 2 R2 10K +3.3VDAC 2 U2a +3.3V 0 1 - N 2 n1 2 D 0 F T2 1 R 1 3 + E 2 2 MAX4477AUA 3 6 1 R5 2K4 0 1 1 2 L3 0 1 2 9 3 2 1 1 2 C C BLM21AG331SN1D 1 E 2 R n 2 2 K 1 GND GND 0 1 / 1 9 0 C 1 1 C K 1 1 2 3 +5V +5V GND
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Elektronusches_Uhren_Relay-V4.pdf
~~: 7 3 4 324-48.3101.0310 B I. 1 A7 B elegungsplan I . ) 8 4 4 001-48.3101.0310 B1.:1+2 A7 S tü c k lis te CI) 0 c: Ol <1>CI) .c'O~ .o~o1) '" :>(~J:: _ ' - ' 0 .alE0'C I) CI. - 0 < 1)'-'0 ~~~ + A/Ed. I.Mitt./NItDatum/Date IGepr./Ckd.s./Appr. Techn. U n terlag en satz Bl.I Sh. ~ .22 210q f-=\.O-;;L.
in „Polwechselnden Impuls mit Transistoren verstärken“ · Analoge Elektronik und Schaltungstechnik ·
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UCC27201_datasheet.pdf
i 1.0 t 1.0 r r e p -40 C O O - 25 C - O D D -40 C I I 0.1 0.1 10 100 1000 10 100 1000 Frequency - kHz Frequency - kHz Figure 2. UCC27200 IDD Operating Current vs Frequency Figure 3. UCC27201 IDD Operating Current vs Frequency 10.0 1.0 HB = 12 V HB = 12 V No Load on Outputs No Load on Outputs A A m
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Datasheet_ILI9225DS_V022.pdf
ground. Page 27 of 113 Version: 0.22 a-Si TFT LCD Single Chip Driver 176RGBx220 Resolution and 262K color ILI9225 8-bit System Interface (65K colors) TRI=0, DFM[1:0]=00 1st Transfer (Upper bits) 2nd Transfer (Lower bits) DB DB DB DB DB DB DB DB DB DB DB DB DB DB DB DB Input Data 17 16 15 14 13 12 11
in „STM32F103 TFT SPI ILI9225“ · Mikrocontroller und Digitale Elektronik ·
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4735676982003210112259.pdf
110 140 - nit Note 8 L White chromaticity X =0 0.25 0.3 0.35 y =0 0.3 0.35 0.40 Color temperature K L =0 6400 K Note 1. Ambient temperature =25 . And lamp current L =2mArms. Note 2. To be measured in the dark room. Note 3.To be measured on the center area of panel with a viewing cone of 1 by Topcon
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TFT_Color_Modul.pdf
110 140 - nit Note 8 L White chromaticity X =0 0.25 0.3 0.35 y =0 0.3 0.35 0.40 Color temperature K L =0 6400 K Note 1. Ambient temperature =25 . And lamp current L =2mArms. Note 2. To be measured in the dark room. Note 3.To be measured on the center area of panel with a viewing cone of 1 by Topcon
in „Farb TFT Modul UP018D01 (280 x 220 ) zu verkaufen“ · Markt ·