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GH025A_A3__-_090622.pdf
GH025A(A 3)) DATE : 2009.06.22 NO DATE REVISION PAGE 1 2008.05.06 -ADD PART VENDOR 6 D2,3,4,5,: MMDL914 O(SEMI) ZD1,2 :MM3Z5V6 ON(EMI) 2009.06.22 -PCB Vendor Changed 7, 13 WONKYUNG, SOOJOO, RAMI, JOONGWON, SEENDUCK → WONKYUNG, JOONGWON, SEOKANG, SONGDO, BACKSONG -FUSE Vendor Changed 7, 13 KMS20, KE20
in „Display ansteurern“ · Mikrocontroller und Digitale Elektronik ·
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grundig_chassis_t5_19_22vle2000t_22-2010t_22-2940t_22-2942t_19hd_br_wp_cba_16-2941tc_19-2940t.pdf
] TS_MDI4 53 MDI4 MIVAL 19 TS_MIVALID R507 TS_MDI5 54 MDI5 MICLK 20 TS_MICLK 100K TS_MOCLK TS_MOCLK TS_MDI6 55 21 PCM_A12 TS_MOSTART TS_MDI7 56 MDI6 A12 22 PCM_A7 1uF8 100nF TS_MOVAL TS_MOSTART TS_MOCLK R508
in „Grundig Fernseher defekt“ · Analoge Elektronik und Schaltungstechnik ·
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master-slave3.pdf
10k 5 GND R 1 4 R 0 K1 GND 3 4 1JS-M1F-12V-5 GND D 1 NO NC MC3307P haben die gleiche beschaltung wie TS914 2 K1 C GND GND
in „Master-Slave-Schaltung, OpAmp stirbt ständig“ · Analoge Elektronik und Schaltungstechnik ·
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master-slave4.pdf
10k 5 GND R 1 4 R 0 K1 GND 3 4 1JS-M1F-12V-5 GND D 1 NO NC MC3307P haben die gleiche beschaltung wie TS914 2 K1 C GND GND
in „Master-Slave-Schaltung, OpAmp stirbt ständig“ · Analoge Elektronik und Schaltungstechnik ·
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master-slave5.pdf
R GND R17 0 1 GND GND 4 K1 330R P GND D 1 1JS-M1F-12V-5 MC3307P haben die gleiche beschaltung wie TS914 2 GND GND
in „Master-Slave-Schaltung, OpAmp stirbt ständig“ · Analoge Elektronik und Schaltungstechnik ·
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Switch.pdf
914CE18-9 G 1 NC 1 NO Oberer Stößel 22.5 N Kein 785-914CE18-Q 914CE18-Q G 1 NC 1 NO Oberer Stößel 22.5 N Kein 785-914CE1-9 914CE1-9 G 1 NC 1 NO Oberer Stößel 11.8 N Kein 785-914CE1-Q 914CE1-Q G 1 NC 1 NO
in „Ausfallursache Printtaster DeLonghi Kaffeeautomat?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
changes.asm
0002E908 MOV R3, R3,LSL#3 .text:0002E90C RSB R3, R2, R3 .text:0002E910 MOV R3, R3,LSL#2 .text:0002E914 ADD R3, R1, R3 .text:0002E918 ADD R3, R3, R0 .text:0002E91C LDR R3, [R3] .text:0002E920 MOV LR, PC .text:0002E924 BX R3 .text:0002E928 LDR R2, =dword_4052F0 .text:0002E92C MOV R3, #0 .text:0002E930
in „Tekway/Hantek/Voltcraft MSO“ · Mikrocontroller und Digitale Elektronik ·
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BBK-29LEM-5093T2C_MSD308C-1.pdf
33R PCMADR[4]/CI_A[4] PCMCIA TS0_D0 C142 R45 DVDCVBS PCM_A5 T15 PCMADR[5]/CI_A[5] TS0_D1 U10 TS_MDO1 47nF PCM_A6 N15 PCMADR[6]/CI_A[6] TS0_D2 V10 TS_MDO2 R3 PCM_A7 R14 W13 TS_MDO3 CVBS3 PCM_A8 P13 PCMADR[7]/CI_A[7] TS0 TS0_D3 Y13 TS_MDO4
in „Datenblatt zu MSH9010-lf gesucht“ · Mikrocontroller und Digitale Elektronik ·
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lm3915.pdf
Product Folder Links: LM3915 LM3915 www.ti.com SNVS740C –JANUARY 2000–REVISED MARCH 2013 D1, D2: 1N914 or 1N4148 Figure 19. Precision Full-Wave Average Detector D1, D2, D3, D4: 1N914 or 1N4148 Figure 20. Precision Full-Wave Peak Detector CASCADING THE LM3915 To display signals of 60 dB or 90 dB dynamic
in „24 V Wechselstrom messen“ · Analoge Elektronik und Schaltungstechnik ·
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DSA-461964.pdf
COLLECTOR CURRENT (mA) I Figure 9. Turn–On Time Figure 10. Charge Data H Y S U 300 300 T n 200 n 200 ts B E ts E IC B1= 10 S T IC B1= 10 T A A 100 A 100 IC B1= 20 E D 70 D 70 L A 50 A 50 IC B1= 10 G IC B1= 20 G tf M O 30 C B1 = 10 f O 30 I S S ,f 20 , 20 9 T ts LOW TAI= 25⋅CS t HIGHTGA= 25⋅CES 9 J J /
in „Alternative/Vergleichstyp zu 2N5109“ · HF, Funk und Felder ·
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Haier_LT26M1CA__LT26M1C_LCD_TV.pdf
1/16W TS0INSYNC R789 100 OHM 1/16W TS0INCLK 2 30 OHM 1 R790 100 OHM 1/10W C729 FB710 C767 C768 10pF 10pF NC TS0INDATA[0..7] 20 TS0INDATA[0..7] 20 TS0INSYNC TS0INSYNC 20 TS0INVALID TS0INVALID TS0INCLK 20 TS0INCLK
in „Philips LCD TV kein Bild aber Ton [46PFL7655K/02]“ · Haus & Smart Home ·
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715G7312_PSU.pdf
T6.3AH 250V 47pF 250V ! C9902 L9904 2 ! L9903 470NF 275V L9905 18mH BD9901 ! 1 ! 18mH 4 3 1 2 2L9902 3 TS10P06G-04 CN9901 RV9901 C9901 1 2 2 L9901 3 ! ! 680V 470NF 275V ! ! 4 - + 1 AC 2P 1 2 4 3 1 NC/734 174-65-LS 4 3 1 NC/73G 174-65-LS 2 ! ! C9912 BEAD 5R 10uH Vsin 47pF 250V FB9902 C9913 t NR9903 3 1 2 220PF 250V 2 1 t SG9902 1 2 2 1 DV5 NC 1 L N 5R NR9902 2 2 CN9902 ! SW9901 R9299 BD9902 NC 3 NC TS10P06G-04 ! 4 4 - + 1 1 R9903 R9904 2 510K 1/4W 510K 1/4W ! U9901 CAP004DG-TL NC BR_IN 3 1 2 3 4 C9903 C 1 1C 100PF 500V ! N D DN R9906 R9905 NC NC N D D N ! GND1 GND2 100PF 500V 8 7 6 5 1 1 2 R9907 R9908
in „Phillips 55PUS6561/12 keine Hintergrundbeleuchtung“ · Analoge Elektronik und Schaltungstechnik ·
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LT1170.pdf
CURRENTS. C1 ≈ (500 F)(OUT). 1 F LT1170 D2 FOR 5V OUTPUTS, REDUCE R3 TO 1.5k, INCREASE C2 TO R1 1N914 R4 0.3 F, AND REDUCE R6 TO 100 . 10.7k 47 V FB GND C R3 + + † 5k R2 C3 C1 R6 1.24k 2 F 1000 F 470 C2 D1 0.1 F VOUT –12V 2A L1** 50 H 1170/1/2 TA10 High Efficiency Constant Current Charger R3 ICHRG=
in „Bei Schaltregler nur Minimum- und Maximum-PowerSwitchStrom angegeben“ · Analoge Elektronik und Schaltungstechnik ·
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EvalKit7106_an023.pdf
EXTERNAL CLOCK OPTIONS 4 Application Note 023 V+ V+ CD4009 V+ REF HI V+ OSC 1 REF LO 6.8V ZENER OSC 2 IN914 + 10 ICL7106 IZ OSC 3 μF 0.047 - ICL7107 ICL7107 μF GND IN914 V- V- FIGURE 8A. V- = 3.3V V+ FIGURE 9. GENERATING NEGATIVE SUPPLY FROM +5V Input Filters V+ ICL7106 One of the attractive features of the
in „[suche] Labornetzteil“ · Markt ·
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bedienhandbuch__auerswald_ets-4016-fax_4016-fax-plus__2002-07-04.pdf
Türstation A als Funktion V. (V=0: Türöffner-Relais (Kontakte A-TO1 / A-TO2), Türsprech-Relais (Kontakte A-TS1 / A-TS2)) (V=1: Fernschaltrelais 1 (Kontakte A-TO1 / A-TO2), Türsprech- 63 Relais (Kontakte A-TS1 / A-TS2)) (V=2: Fernschaltrelais 1 (Kontakte A-TO1 / A-TO2), Fernschaltrelais 2 (Kontakte A-TS1 / A-TS2
in „Telefonanlage“ · Analoge Elektronik und Schaltungstechnik ·
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lm3916.pdf
applied, rather than adjusting for zero output with zero input. 00797110 *DC Couple 00797112 D1, D2: 1N914 or 1N4148 FIGURE 3. Half-Wave Peak Detector FIGURE 5. Precision Full-Wave Average Detector 00797111 D1, D2: 1N914 or 1N4148 Average Peak R2 1k 100k R3 100k 1k R1 = R2 forVA = 1 00797113 R1 = R2/10 foV A = 10 D1, D2, D3, D4: 1N914 OR 1N4148 C1 = 10/R1 Attack and decay time to DIN PPM spec. Response down 1 dB for 10 ms tone burst. Decays 20 dB in 1.5s. FIGURE 4. Precision Half-Wave Rectifier FIGURE 6. Precision Full-Wave Peak
in „Eingangstufe LCD Stereo VU Meter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
rfm63dw.PDF
1.3mA typ. IDDST 65uA typ. IDDSL 100nA typ. Time Rx time RFM63W can be put in Any other mode Wait TS_RE Receiver is ready : -RSSI sampling is valid after a 1/Fdev period -Received data is valid Wait TS_FS Set RFM63W in Rx mode Wait for Receiver settling Wait TS_OSC Set RFM63W in FS mode Wait for PLL
in „JDY-40 ein neuer Geniestreich aus China?“ · Mikrocontroller und Digitale Elektronik ·
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opa128lm.pdf
FIGURE 5. FET Input Instrumentation Amplifier for Biomedical Applications. ≈10pF 10k (1) 1M 2 8 1N914 Output 2 OPA128 6 3 6 (1) (1) 3 OPA606 Input 1N914 2N4117A 1000µF Droop ≈100µV/s Polystyrene NOTE: (1) Reverse polarity for negative peak detection. FIGURE 6. Low-Droop Positive Peak Detector. ® OPA128
in „Verkaufe 15 x OPA128LM“ · Markt ·
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lt32a1.pdf
B L L 3 4 5 6 7 V CI_INT GPIO_7 FB775 I N I I I I I _ N O D D I N I N I I I I R C N A D D D D D I TS_CLK_OUT R770 47R 1/16W 5% 1 2 R7937 R7877 0R05 1/16W TS0INCLK C G C C C C C T P P P P C G C G C C C C P P G P P P P P P C R715 TS_SYNC_OUT R771 0R05 1/16W 60 OHM 0R05 1/10W R7878 0R05 1/16W TS0INSYNC 0R05 1/10W TS_VALID_OUT R772 0R05 1/16W R7879 0R05 1/16W TS0INVALID U702 2 2 2 2 2 2 2 2 2 1 1 1 1 1 1 1 1 1 1 0 0 0 0 0 0 0 0 0 0 9 8 7 CI_CE# GPIO_0 TS_D0_OUT R773 0R05 1/16W R7880 0R05 1/16W TS0INDATA0 1 1 1 1
in „Philips LCD TV kein Bild aber Ton [46PFL7655K/02]“ · Haus & Smart Home ·
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Datei
DeviceList.txt
(P44) AT87F55WD(Q44) TS8752X2 TS8752X2(P44) TS8752X2(Q44) TS8754X2 TS8754X2(P44) TS8754X2(Q44) TS8758X2 TS8758X2(P44) TS8758X2(Q44) AT89C1051 AT89C1051U AT89C1051-S20 AT89C2051 AT89C2051U AT89C2051U-S20 AT89C4051 AT89C4051-
in „[V] Genius G540 EPROM/Flash/uC Programmer (USB)“ · Markt ·
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hitachi_55hk6t64u_55293dlb_48hk6t64u_48293dlb_chassis_17mb100-r1_17ips20-r9_sm.pdf
PCMA10 AR20 PCM_A[10] 3 TS0_D[7] AN11 TS1_D4 53 19 TS1_VLD TS1_CLK 3V3_NAND VDD1 VDD2 3V3_NAND AE14 NC_9 PCMA11 AR12 PCM_A[11] TS0_CLK AN9 TS0CLK 54 20 NAND128-A AG2 NC_10 NC_73 P3 PCMA12 PCM_A[12] TS0_VALID TS0VLD TS1_D5 13 VSS1
in „Vestel Netzteil“ · Analoge Elektronik und Schaltungstechnik ·
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grundig32zollLedTV.pdf
_D2 W13 TS0-D2 TS0_D1 MDO1 D1 PCM_D1 PCM-D3 V17 PCM_D3 TS0_D3 Y12 TS0-D3 TS0_D2 66 MDO2 L L L L D2 32 PCM_D2 PCM-D4 U17 PCM_D4 TS0_D4 W12 TS0-D4 PCM_CD2_N 67 CD2# I I I I WP 33 PCM-D5 AA15 Y13 TS0-D5 68 GND S S
in „Reparaturbericht LED-TV Grundig 32 VLE 5620 BN Ton gut, aber kein Bild“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
spicemodels_zener_diodes.txt
=1.00 M=0.330 TT=50.1n ) .MODEL DR D ( IS=3.83e-016 RS=74.5 N=3.00 ) .ENDS *SRC=DDZX47TS;DI_DDZX47TS;Diodes;Zener 10V-50V; 47.0V 0.200W Diodes Inc. ZENER *SYM=HZEN .SUBCKT DI_DDZX47TS 1 2 * Terminals A K D1 1 2 DF DZ 3 1 DR VZ 2 3 44.3 .MODEL DF D ( IS=1.75p RS=26.0 N=1.10 + CJO=12.6p VJ
in „SwCad bzw. Pspice Zener Diode“ · Analoge Elektronik und Schaltungstechnik ·
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fn3082.pdf
GND 1N914 and the capacitor is selected from the equation: V- f = - -5 For 48kHz Clock (3 Readings/sec), RC V- = 3.3V C = 100pF. FIGURE 10. GENERATING NEGATIVE SUPPLY FROM +5V 10 FN3082.8 ICL7106, ICL7107, ICL7107S
in „Magnetfeldsensor mit LED Display“ · Mikrocontroller und Digitale Elektronik ·
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fn3082.pdf
GND 1N914 and the capacitor is selected from the equation: V- f = - -5 For 48kHz Clock (3 Readings/sec), RC V- = 3.3V C = 100pF. FIGURE 10. GENERATING NEGATIVE SUPPLY FROM +5V 10 FN3082.8 ICL7106, ICL7107, ICL7107S
in „Muss ich beim ICL 7107 wirklich -5V einspeisen?“ · Analoge Elektronik und Schaltungstechnik ·
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Datenblatt.pdf
VDD 10 kΩ TC9400 TC9400 0.01 µF 33 kΩ 0.01 µF 11 Frequency 33 kΩ 11 FrInputcy DET Input DET +5V IN914 +5V IN914 1.0 1.0 MΩ 0V MΩ 0V GND VSS 0.1 µF 10 kΩ V SS 4 6 4 -5V (a) ±5V Supply (b) Single Supply FIGURE 6-1: Frequency Input Level Shifter. DS21483D-page 14 © 2007 Microchip Technology Inc. TC9400
in „Frequenz-Spannungswandler OP-Verstärkung“ · Mikrocontroller und Digitale Elektronik ·
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REN_icl7106-07-07s_DST_20251218.pdf
mode voltage exists (i.e., the V+ OSC 1 REF LO pin is not at analog COMMON) and a 200mV scale is 1N914 + used, a larger value is required to prevent rollover error. Generally OSC 2 1µF will hold the rollover error to 0.5 count in this instance. 10µF OSC 3 0.047 - Oscillator Components ICL7107 µF For all ranges of frequency a 100kΩ resistor is recommended and GND 1N914 the capacitor is selected as shown in Equation 2: V- f = - - -For 48kHz Clock (3 Readings/sec), RC (EQ. 2) V- = 3.3V C = 100pF. FIGURE 10. GENERATING NEGATIVE SUPPLY FROM +5V FN3082 Rev 10.00 Page 10
in „Panel-Meter KAIFU FR-4“ · Mikrocontroller und Digitale Elektronik ·
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PDF
M27C2001.pdf
55nsoltage in R32d operat32n ■– Active Current 30mA at 5MHz FDIP32W (FPDIP32 (B) – Standby Current 100µA c ts ■Programming time: 100µs/word± 0.25V od u ■– Manufacturer Code: 20h P r – Device Code: 61h PlCt32 (CT8 x 20 mm ■– ECOPACK packages availabbe.o - O (s ) uc t rod te P o l b s O May 2006 Rev 4 1/25 www.st
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17mb70-5-sema_schematics.pdf
C27 CI_TS_IN_D0 8 7 6 5 1 EBI_CS0B 1A1 2OE- C26 EBI_ADDR19 B28 CI_TS_IN_D1 CI_CE2 3 2Y4 1Y1 18 CI_CE1 EBI_ADDR20 CI_TS_IN_D2 1 R196 EBI_ADDR21 B27 CI_TS_IN_D3 3 3 3 3 3 3 4 4 4 4 4 4 4 4 4 4 5 5 5 5 5 5 5 5 5
in „LED TV Medion MD 30630 defekt, nicht einmal standby Lampe“ · Analoge Elektronik und Schaltungstechnik ·
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TI_VCO.pdf
Resistance Oscillator A A1–A3 = ¼ LM3900 A4 = LH0002 A5–A7 = ¼ LF347 T1 = UTC LS-52 All diodes = 1N914 * = low-TC, metal-film types B You can realize digital amplitude control by replacing the LM329 voltage reference with the DAC1287. Figure 5. Generate High-Voltage Sine Waves Using IC-Based Circuits
in „VCO Simulation“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TI_VCO.pdf
Resistance Oscillator A A1–A3 = ¼ LM3900 A4 = LH0002 A5–A7 = ¼ LF347 T1 = UTC LS-52 All diodes = 1N914 * = low-TC, metal-film types B You can realize digital amplitude control by replacing the LM329 voltage reference with the DAC1287. Figure 5. Generate High-Voltage Sine Waves Using IC-Based Circuits
in „VCO Simulation“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SMD-PHILIPS_1999.pdf
DO34) 1PS70SB10 7t0; 7-0 SC-70/SOT323 1N829A 1N829A SOD68 (DO34) 1PS70SB14 7t4; 7-4 SC-70/SOT323 1N914 1N914 PH SOD27 (DO35) 1PS70SB15 7t5; 7-5 SC-70/SOT323 1N4148 1N4148 PH SOD27 (DO35) 1PS70SB16 7t5; 7-5 SC-70/SOT323 1N4150 1N4150 PH SOD27 (DO35) 1PS70SB40 6t3; 6-3 SC-70/SOT323 1N4151 1N4151 PH SOD27
in „Datenbuch Valvo 1977 gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PSpice_LibraryguideOrCAD.pdf
Rectifiers 1N6097 D1N6097 DIODE.OLB Diodes and Rectifiers 1N6098 D1N6098 DIODE.OLB Diodes and Rectifiers 1N914 D1N914 DIODE.OLB Diodes and Rectifiers 1N914 D1N914/-55C DIODE.OLB Diodes and Rectifiers 1N914 D1N914/125C DIODE.OLB Diodes and Rectifiers 1N914 D1N914/27C DIODE.OLB Diodes and Rectifiers 1N914 D1N914
in „pSpice - Bauteil hinzufügen.“ · Analoge Elektronik und Schaltungstechnik ·
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HDLx-2416.pdf
Range, A –40 °C to +85 °C ESDWARNING:StandardCMOShandlingprecautionsshouldbe Storage Temperature, TS –40 °C to 100 °C observedwiththeHDLX-2416. CMOS IC Junction Temperature, TJ(IC) +150 °C Relative Humidity (non-condensing) at 65°C 85% Soldering Temperature [1.59 mm (0.063 in.) Below Body] Solder Dipping
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LM317.PDF
2 Regload V 5.0 V – 20 70 mV O VO ↓ 5.0 V – 0.3 1.5 % V O Temperature Stabilitylow TJ Thigh 3 TS – 0.7 – % V O Minimum Load Current to Maintain RegulationI(VO–V = 40 V) 3 ILmin – 3.5 10 mA Maximum Output Current 3 Imax A VI–VO 15 V, PD P max,T Package 1.5 2.2 – VI–VO= 40 V, PD P max, A = +25⋅
in „Spannungsregler für Kleinverbraucher bei 1,2V gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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HX8352-A.pdf
IFSEL0 DMY_GND DNC_SCL (No. 478 ~ No. 1675) NCS DUMMY DUMMY NISD NISD BURN 4. 106 um x 14 um TE TE TS8 TS8 Staggered LCD output side TS7 TS7 TS6 (No. 1676 ~ No. 1706) TS6 TS5 TS5 DUMMY DUMMY TS4 TS4 TS3 TS3 TS2 TS2 TS1 TS1 TS0 TS0 DMY_GND REGVDD DMY_IOVCC RES_SEL0 DMY_GND RES_SEL1 DMY_IOVCC RS2 RS2 NCS2
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LTC4365.pdf
50mAcurrent VIN MOSFET VTH(MAX) VGS(MAX) VDS(MAX) sink, thus isolating the load fromthe supply. 2.5V SiB914 0.8V 5V 8V 3.3V Si5920 1.0V 5V 8V 5V Si7940 1.5V 8V 12V ≤30V Si4214 3.0V 20V 30V ≤60V Si9945 3.0V 20V 60V 4365fa 10 Formoreinformationwww.linear.com/LTC4365 LTC4365 Applications Information Figure 5
in „LTC4365 - FAULT-Pin current sink?“ · Mikrocontroller und Digitale Elektronik ·
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ili9328.pdf
SDO S6 nRDI 0 5 S7 Source: S1 ~ S720 nWR/SCL S8 RS S9 TESTO14 TESTO15 FMARK 2. 50um x 80um TESTTS8 TS7 TS5 0 6 Input Pads TS4 . TS3 TS1 … Pad 1 to 243. TS0 DIOVCC IOVCC … IOVCC 0 7 IOVCC … IOVCC VDDD … VDDD VDDD VDDD … VDDD 0 8 VDDD … VDDD VDDD … DUMMGND Alignment Marks GND ( … GND B GND 0 9 GND u F
in „VW-Werbebeilage mit Display (vidipri)“ · Mikrocontroller und Digitale Elektronik ·
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ILI9325DS_V0.35.pdf
S4 SDO S6 nRDI S7 Source: S1 ~ S720 nWR/SCL 0 5 S8 RS S9 nCS TESTO15 FMARK 2. 50um x 80um TESTTS8 TS7 TS5 0 6 Input Pads TS4 . TS3 TS1 Pad 1 to 243. TS0 … DIOVCC IOVCC … IOVCC 0 7 IOVCC … IOVCC VDDD … VDDD VDDD … VDDD VDDD 0 8 VDDD … VDDD VDDD … DUMMGND Alignment Marks GND ( … GND B GND 0 9 GND u F
in „[V]erkaufe TFT 2.8" und TFT 2.4" mit adapter PCB“ · Markt ·
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ILI9328DS_V0.1.pdf
SDO S6 nRDI 0 5 S7 Source: S1 ~ S720 nWR/SCL S8 RS S9 TESTO14 TESTO15 FMARK 2. 50um x 80um TESTTS8 TS7 TS5 0 6 Input Pads TS4 . TS3 TS1 … Pad 1 to 243. TS0 DIOVCC IOVCC … IOVCC 0 7 IOVCC … IOVCC VDDD … VDDD VDDD VDDD … VDDD 0 8 VDDD … VDDD VDDD … DUMMGND Alignment Marks GND ( … GND B GND 0 9 GND u F
in „[V]erkaufe TFT 2.8" und TFT 2.4" mit adapter PCB“ · Markt ·
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ICL7660.pdf
correspondingly large value for C in order to 1 achieve maximum efficiency of operation. C2 S3 S4 5 Do’s And Don’ts VOUT = -IN 1. Do not exceed maximum supply voltages. 2. Do not connect LV terminal to GROUND for supply 7 voltages greater than 3.5V. FIGURE 12. IDEALIZED NEGATIVE VOLTAGE CONVERTER 3. Do not short circuit
in „+5V zu -5V wie?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
7660CPA.pdf
correspondingly large value for C in order to 1 achieve maximum efficiency of operation. C2 S3 S4 5 Do’s And Don’ts VOUT = -IN 1. Do not exceed maximum supply voltages. 2. Do not connect LV terminal to GROUND for supply 7 voltages greater than 3.5V. FIGURE 12. IDEALIZED NEGATIVE VOLTAGE CONVERTER 3. Do not short circuit
in „OPV mit +4,5/-4,5V von einer 9V Batterie betreiben“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ICL7660.pdf
large value for C in order to 1 C achieve maximum efficiency of operation. S 2 5 S3 4 Do’s And Don’ts VOUT = -VIN 1. Do not exceed maximum supply voltages. 2. Do not connect LV terminal to GROUND for supply 7 voltages greater than 3.5V. FIGURE 12. IDEALIZED NEGATIVE VOLTAGE CONVERTER 3. Do not short
in „Ladungspumpe“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ICL7660.pdf
correspondingly large value for C in order to 1 achieve maximum efficiency of operation. C2 S3 S4 5 Do’s And Don’ts VOUT = -IN 1. Do not exceed maximum supply voltages. 2. Do not connect LV terminal to GROUND for supply 7 voltages greater than 3.5V. FIGURE 12. IDEALIZED NEGATIVE VOLTAGE CONVERTER 3. Do not short circuit
in „Spannungsabfall durch drei Tl074 :-S“ · Analoge Elektronik und Schaltungstechnik ·
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ILI9325.pdf
TESTO13 S4 SDO S6 nRD S7 Source: S1 ~ S720 nWR/SCL 0 5 S8 RS S9 nCS TESTO15 FMARK 2. 50um x 80um TESTTS8 TS7 TS5 0 6 Input Pads TS4 . TS3 TS1 Pad 1 to 243. TS0 … DUIOVCC IOVCC … IOVCC 0 7 … IOVCC VDDD … VDDD VDDD VDDD … VDDD 0 8 VDDD … VDDD VDDD … DUMGND ( Alignment Marks GND B … GND GND 0 9 u F GND GND m
in „Programmierung von ILI9325 TFT Display“ · Mikrocontroller und Digitale Elektronik ·
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ILI9325DS_V0.28.pdf
TESTO13 S4 SDO S6 nRD S7 Source: S1 ~ S720 nWR/SCL 0 5 S8 RS S9 nCS TESTO15 FMARK 2. 50um x 80um TESTTS8 TS7 TS5 0 6 Input Pads TS4 . TS3 TS1 Pad 1 to 243. TS0 … DUIOVCC IOVCC … IOVCC 0 7 … IOVCC VDDD … VDDD VDDD VDDD … VDDD 0 8 VDDD … VDDD VDDD … DUMGND ( Alignment Marks GND B … GND GND 0 9 u F GND GND m
in „Chinesisches TFT LCD zum Schnäppchenpreis“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lm35.pdf
OPTIONAL 2 k 200 LM35 + 1% 1% VOUT= 10 mV/°AMBIENT0 °C) VOUT FROM J 5 °C TO + 40 °C 2 k 200 1% 1% L 1N914 18 k 10% Figure 18. Temperature Sensor, Single Supply Figure 19. Two-Wire Remote Temperature Sensor (−55° to +150°C) (Output Referred to Ground) 16 Submit Documentation Feedback Copyright © 1999–2015
in „Signalkonverter Ladegerät“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
lm35.pdf
OPTIONAL 2 k 200 LM35 + 1% 1% VOUT= 10 mV/°AMBIENT0 °C) VOUT FROM J 5 °C TO + 40 °C 2 k 200 1% 1% L 1N914 18 k 10% Figure 18. Temperature Sensor, Single Supply Figure 19. Two-Wire Remote Temperature Sensor (−55° to +150°C) (Output Referred to Ground) 16 Submit Documentation Feedback Copyright © 1999–2015
in „Linearisierung NTC und Anpasssung“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Main.pas
TMainForm=class(TForm) ODFlash: TOpenDialog; ODEeprom: TOpenDialog; PBase: TPanel; PC: TPageControl; TS1: TTabSheet; TS2: TTabSheet; TS3: TTabSheet; TS4: TTabSheet; HES: TMPHexEditor; HEE: TMPHexEditor; TS5: TTabSheet; GB1: TGroupBox; LPort: TLabel; CBPort: TComboBox; LBaudrate: TLabel; CBBaudrate: TComboBox
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PDF
TPN15.1E_LA.pdf
diagram Si2166 T I O _ _ Q C _ E E I I I 1.2, 3.3V RESETB P D D G TM DiSEqC DSP & CTRL GPIO 2.0 SYNCHRO TS_ERR/ S_ADC_IP GPIO_1 QPSK / 8PSK S_ADC_IN ADC (I) VITERBI RS E TS_SYNC . Satellite S_ADC_QP T A C ZIF Tuner S_ADC_QN ADC (Q) FRONT QPSK EQUAL- G F TS_VAL o 8PSK E R TS_CLK . END DEMOD IZER P T S MP_x
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