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kl2 r4

Catalog Datasheet MFG & Type PDF Document Tags

STR30110

Abstract: STR30030 ., Cl R3 2.2a, Cz 33pF, GOPF, kO t R3 kL2, R.4 Rs 4x2, - - _.-_
Sanken Electric
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OM345

Abstract: philips om345 . 2) C1 R2 -O 5 R3 1 O- -ÃTR1 \ R1 R4 R5 I â  C2 II 2 II !> O 3 4 Fig. 1 Circuit , typ. 22 dB f = 860 MHz kl2 typ. 19 dB Output voltage at â'"60 dB intermodulation distortion , lift! ® kl2 (dB) 15 12,5 10 7,5 75Ã2 track top view / + I j I
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BU9768AKV

Abstract: kl4 diode supply. ·Block diagram Kl1 Kl2 Kl3 Kl4 Kl5 KO1 (S41) Key scan buffer DO KO2 , 29 S29 Kl4 53 S4(EP4) 30 S30 Kl3 52 S3(EP3) 31 S31 Kl2 51 S2(EP2) 32 S32 , VDD2 R4 C3 R3 GND CS CK DI DO KI1 KI2 KI3 KI4 KI5 R1, C1 : Constants , : The constant should be set to match the panel, through testing or other means. C3 : 0.047µF R4 , KO4 KO5 KO6 VDD2 R4 C3 C3 R3 GND CS CK DI DO KI1 KI2 KI3 KI4 KI5
ROHM
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OM320

Abstract: D1N4500 DIAGRAM 4 0- C4 IR3 R1 R7 O C5 R6 , â'"J Jâ'"Qj -[tri -TtR2 1 \ R4 2,3,5,6 O C1 T , ) typ. typ. 2,2 2,5 * * Back attenuation f = 100 MHz f = 860 MHz kl2 lsr I2 typ. typ. 30 24 dB dB
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kl4 transistor

Abstract: smd transistor kl4 % Littelfuse Nano BANANA ILC4LOCK CONN_SMA_V BANANA KL4/DETBASE POWER JACK RJ11-6 ILC6LOCK KL2/DETBASE , J1 LED1 L1 L2,L3 R1,R2,R10,R13,R15,R16,R 24,R26,R28,R29,R30,R31,R 32,R33,R47 R3 R4,R17,R22
ON Semiconductor
Original
kl4 transistor smd transistor kl4 NCV786XXAR10GEVK F/50V C1206C104K1RACTU C1206C224K1RACTU C1206F105K5RACTU
Abstract: ¡ â¡ â¡ â¡ â¡ â¡ SDA SCL ADDR R1 R2 R3 R4 R5 ROUT4 LOUT4 ROUT4 LOUT4 , Distortion V in = V out = 1Vrms Clipping Level d VcL d = 0.3% 2 % V rmS kl2 2 -
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TEA6420

siliconix dg211

Abstract: DG211DY Figure 4 1 1 N iL=50C Ì \ > \ s rl = 1 kQ Rl = 10 kQ 1 Kl= 1U J kL2 1 1 nun 1 , â O-1 sw4 â'"a-p1- DG211 or DG212 V- GND Ri 90 k£2 R2 5kQ R3 4kQ R4 1 k£2 vqut Gain error , . Vqut _ Ri + R2 + R3 + R4 VlN ~ R4 (with SW4 closed) ¿-15 V _ Figure 6. Precision-Weighted Resistor
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siliconix dg211 DG211DY SILICONIX DG212CJ 15-V DG211CJ DG212CJ PLUS-40 DG211B/212B TL081 E-76363 2S473S 0DE14S1
Abstract: ; bit 5 Vssm 6 digital supply ground 1 V dddi R4 7 digital supply voltage 1 8 , SSA1 R7 El El El 33] v REF ID R6 [ T EE V SSD1 EE VDDD1 El R4 EE R3 EE R2 [ o T , 1 kL2 output load); see Fig.4 *d input to 50% output delay time full-scale change - 12 -
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TDA8771 SA693

kl4 transistor

Abstract: transistor KL3 + IV25 -V241) + â'" (2S Vcc + IV23 -V221) Ri R2 + (2SVcc + IV21-V201) + (2SVcc+IVi9-Vi8I) R3 R4 (5 , (PVcci-IV6-V7l) x k-ll k.l2 IV8-V9I IVio-Vnl + (PVcc2-IV8-V9I) x -â'"- +(PVcc2-IVio-Vnl) x Rv- 1u 11 / - d , R2 + ^-(2SVcc+IV8-V9I)+ ^i(2SVcc+IVio-Vul) R3 R4 (5) Dissipation increase inside the IC during
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AN8812SC AN8812SCR transistor KL3 CD 8403 Transistor kl4 TA 8403 K 8Q transistor HSQP028-P-0450 SQP028-P-0450 IV10-V IV4-V51

cd-rom motor driver

Abstract: CD-ROM pin diagram â'"V201) + (2SVCc+ IVu-Vigl) R3 R4 (5) Dissipation increase inside the IC during driver running is APd , -R- + -R- K Kl2 (2) Load current, Ipj flowing in loads Rl3 and Rl4 is supplied through Pin 13
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cd-rom motor driver CD-ROM pin diagram TA 8403 A cd player circuit diagram ic DPD IV10-VUI

MP7524JN

Abstract: P7524 -p, sinewave DBO - DB7 = 0 V .C S = W R ^ 0 V REFERENCE INPUT Input Resistance H im 5 20 5 20 kL2 , the system address decoding logic. Note that pull-up resistors R3 and R4 are required to ensure that
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P7524 MP7524JN MP7524 MP7524/8080A

ZMD31050

Abstract: 1N4001 RELAY IC Schematics L-934LD-rt R4 ZMD31020 SENSOR BOARD KS5V 2 1 1 2 1k K 5 D1 K1 5 , terminal. 2.2 ZMD31030 USB Evaluation Board ­ Schematics L-934LD-rt 2 R4 1 1 D1 , VTN 2 GND 1 2 3 4 KL1 KL2 1 2 R 10k 3 1 2 5P GND 2 R
ZMD
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ZMD31XXX ZMD31050 1N4001 RELAY IC L-934ld ZMD31050 Functional kl2 r4

TCA770D

Abstract: TCA220 76 7F K75 K74 K71 K76 7C K73 K73 K74 K75 K76 K73 S7 S7 S8/L3 S8 KL1/L4/L4P/LV3 KL2 , R2 R3 R4 R6 A B C D E 2 3 4 6 X2 X3 X4 X6 K 78L05F 78L06F 78L08F 78L09F 78L12F
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TCA220 TEA1016 TCA770A TCA770D TCA680 TDA072 triac pulse train triggering tba915 TCA520B TBA673 TCA240 TBA915G

smd j3y

Abstract: SOT89 MARKING CODE C 1 Ci C ? 1 18 â¡ R4 C2C 2 17 â¡ Rii C3C 3 16 â¡ R2 C4C 4 15 â¡ Ã , ¡ VDD HFI C 11 HT9302A - 1 8 DIP 22 â¡ HDO 21 â¡ R4 C ÏC 1 20 â¡ R4 20 â¡ R3 , C 4C 5 LOCK C 6 X1 C 7 X2 C 8 XMUTE C 9 V SSC lu HFI C 11 DOUTC 12 24 â¡ HDO 23 â¡ R4 , HT9302XT/XLT version 1 18 â¡ R4 C2C 2 17 â¡ R3 C ÏC C3C 3 16 â¡ R2 C4C 4 15 , â¡ R4 CÏ C 1 C2 C 3 C3 C 4 20 â¡ R3 C 2C 2 19 â¡ R3 19 â¡ R2 C 3C 3 18
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smd j3y SOT89 MARKING CODE SMD MARKING CODE j3y SOT-23 J3Y j3y smd smd code marking wl sot23 1N4148W 1N4148WX 1N4148X 1N4448W 1N4448WX 1N4448X
Abstract: 15 ä « I K CO SR + SR- vcc :± = ± i V riL = «C KL2 â , one percent tolerance. The matching between R4, R5, R6, and R7 controls the CMRR of this application , VI02 -V [o+ ») MM o R3 (_BZ_) (ì + Eli R1 \H5 + R7j \ R4/ R6\ , R2/R6\ R4/ R1 \R4/ B6fi + R2Ì R4\ R1/ + V I03 Ay = 2 to 100 L 10 MQ 2 k£i S R1 82 kU NOTE: u1 and U2 = TL052A; Vqc±-  , voltage from the diode is compared to a temperature-stable voltage reference set by IC2. R4 should be -
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HT9302 HT381XX HT3810 HT16XX

TL0521

Abstract: TL052 (°C) 100 Rl (ii) 1000 ±5V Typical Performance (Av = +2, Rf = 1 kl2, Rl = 1000, Vcc = s 5V, unless , parasitics. Inverting gain applications: â  Connect R3 directly to ground. â  Make the resistors R4, R6
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TL052 TL052Y TL072 TL082 TL0521 ci tl072 LT1009 Series TL052ACD TL052CD SLOSQ36C LT1004

kl SOT23-5

Abstract: CLC450 Bit 3 Bit 2 Bit 1 BitO 8 RTEST Read/Write R7 R6 R5 R4 R3 R2 R1 RO 9 GTEST Read G7 G6 G5 G4 G3 G2 G1 GO , G4 G5 P0 P1 P2 P3 P4 P5 P6 P7 G6 G7 R3 R4 R5 R6 R7 C = X G6 G7 R3 R4 R5 R6 R7 C = 0 X X X X X X X C = , T B3 B4 B5 B6 B7 G2 G3 G4 G5 G6 G7 R3 R4 R5 R6 R7 4 5 0100 8-bit 2 clocks T î P0 P1 P2 P3 X X X X , R3 R4 R5 R6 R7 GO G1 G2 G3 G4 G5 G6 G7 XXXXXXXX 6 5 0110 16-bit 5/6/5 2 clocks î T B3 B4 B5 B6 B7 G2 G3 G4 G5 G6 G7 R3 R4 R5 R6 R7 XXXXXXXX XXXXXXXX 7 NA 0111 24-bit 3 clocks T t T B0 B1 B2 B3 B4 B5 B6
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CLC450 kl SOT23-5 CLC450AJ CLC450AJE CLC450AJM5 CLC450AJP 100MH LSD11S4

ATT22C498

Abstract: ATT22C498-13 R7 R6 R5 R4 R3 R2 R1 RO 9 GTEST Read G7 G6 G5 G4 G3 G2 G1 GO 10 BTEST Read B7 B6 B5 B4 B3 B2 B1 B0 , G4 G5 P0 P1 P2 P3 P4 P5 P6 P7 G6 G7 R3 R4 R5 R6 R7 C = X G6 G7 R3 R4 R5 R6 R7 C = 0 X X X X X X X C = , /5 T B3 B4 B5 B6 B7 G2 G3 G4 G5 G6 G7 R3 R4 R5 R6 R7 4 5 0100 8-bit 2 clocks T î P0 P1 P2 P3 X X X , R2 R3 R4 R5 R6 R7 GO G1 G2 G3 G4 G5 G6 G7 XXXXXXXX 6 5 0110 16-bit 5/6/5 2 clocks î T B3 B4 B5 B6 B7 G2 G3 G4 G5 G6 G7 R3 R4 R5 R6 R7 XXXXXXXX XXXXXXXX 7 NA 0111 24-bit 3 clocks T t T B0 B1 B2 B3 B4
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ATT22C498 ATT22C498-13 Ferrite 3c8 3C8 Ferrite Material ATT21C498 RS-343A ATT20C491/490 ATT22C 21G-133BA DS94-104ASSP

ATT21C498

Abstract: ATT22C498-13M44 Frequency, Ay - - 5 +14 +10 P h ase Shift vs Frequency, Ay = - 5 n 1m i- 50 i l < R < 1 kl2 - 3 , t if R3 = R4 = R a n d C l = C2 = C th e n Fcutoff = 2tt (1 /R C ) A N D Q = 1 / ( 3 - (1 + (R 1 /R , 0V h4 41 42 v l 1.0 h i 31 0 vis 1.0 t 2 31 0 IK v l 40 0 0V r4 40 0 IK ivos 0 40 5mA * H ig h F req
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ATT22C498-13M44 ramdac international cro circuit diagram
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