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200mVP-P

Catalog Datasheet MFG & Type PDF Document Tags

LA7358M

Abstract: F1071 S16= 200mVp-p,f=4.286MHz 4.3MHz BPF (2) GF4L1 S16 T18 ,S16= (200mVp-p,f=1.1MHz) VF4C 0dB 4.3MHz BPF (3) GF4L2 S16 T18 ,S16= (200mVp-p,f=2.2MHz) VF4C 0dB 4.3MHz BPF (4) GF4H S16 T18 ,S16= (200mVp-p,f=7.5MHz) VF4C 0dB REC BELL FBLR1 S16 T22 V5=0V,V17=0V,SW22B=ON S16= 200mVp-p,f=45MHz S29=Comp.Sync1 REC BELL (1) VBLRC S16 T22 V5=0V,V17=0V,SW22B=ON S16= 200mVp-p,f=FBLR1 S29=Comp.Sync REC BELL (2) GBLRL
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LA7358M F1071 R28-27 A0247 N2206 B8-5142 A0247-1/18 286MH 40625MH

A22TF

Abstract: LA7266M V // Pini 0=S 2 ( 200mVpp, // 400mVpp). f=2MHjf/ 200m Vpp^íDtíi 400 V2/2XV1 // PinlOâ'"S2C5piWp(j , ( 500m Vpp ) Pin 23=S 2 ( 500mVpp ), f =3.58MHz Pin6=S1(2Û0nrA/pp). V42 = 5 V Pin6=S1(200mVpp), V42=0 V , BYMXG2 8Yfi BYf2 B-Yy* ïw» BYfd R-PÃO^'J v^Wtt RPcl B-PÃD^ 'j BPcl // P»n6=S1 (200mVpp), V43=5V Pin6-S1(200mVpp>, V42 * 0 V Pin 6 =â  S 2 ( 300mVpp ), f -100 kHz£ 500 kHz
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OCR Scan
LA7266M A22TF yhpv 200MVP-P 0V420 da 3309 3148-Q44MAL51 OIP44MA O239TSKI0 10-S1 10-SU

52887

Abstract: LA7337 BPF(1) VF4C V6=5V,V16=0V,S27=Comp.Sync, S15=(200mVp-p,f=4.286MHz) 4.3MHz BPF(2) GF4L1 ,S15=(200mVp-p, f=1.1MHz),VF4C(0dB) 4.3MHz BPF(3) GF4L2 ,S15=(200mVp-p, f=2.2MHz),VF4C(0dB) 4.3MHz BPF(4) GF4H ,S15=(200mVp-p, f=7.5MHz),VF4C(0dB) REC BELL FBLR1 (1) V5=V6=0V,V16=0V,SW21B=ON, S15=(200mVp-p,f=45MHz) S27=Comp.Sync REC BELL FBLR2 ,V5=4V VBLRC V5=V6=0V,V16=0V,SW21B=ON, (2) REC BELL(1) S15=(200mVp-p,f=FBLR1) S27=Comp.Sync REC BELL(2) GBLRL ,S15
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LA7337 52887 GSR11 N5288A LA7337SECAMVTR1ICBPFSECAMBELL D2607 B8-2509/N0995YK
Abstract: INEQ1 = 0, VIN = 200mVP-P, 0EQ0 = 0, OEQ1 = 0, OEQ2 = 0, DATA RATE = 5GT/s INEQ0 = INEQ1 = 0, VIN = 200mVP-P, 0EQ0 = 1, OEQ1 = 0, OEQ2 = 0, DATA RATE = 5GT/s MAX14950 toc01 INEQ0 = INEQ1 = 0, VIN = 200mVP-P, 0EQ0 = 0, OEQ1 = 1, OEQ2 = 0, DATA RATE = 5GT/s MAX14950 toc02 600 MAX14950 toc03 , ) 50 -200 -150 -100 -50 100 150 INEQ0 = INEQ1 = 0, VIN = 200mVP-P, 0EQ0 = 1, OEQ1 = 1, OEQ2 = , 200mVP-P, 0EQ0 = 0, OEQ1 = 0, OEQ2 = 1, DATA RATE = 5GT/s MAX14950 toc04 0 (ps) 50 100 150 Maxim Integrated Products
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T423590
Abstract: 600 200 400 VOLTAGE (mV) 400 INEQ0 = INEQ1 = 0, VIN = 200mVP-P, OEQ0 = 0, OEQ1 = 1, OEQ2 , INEQ1 = 0, VIN = 200mVP-P, OEQ0 = 1, OEQ1 = 0, OEQ2 = 0, DATA RATE = 5GT/s 0 -200 -200 -150 , = INEQ1 = 0, VIN = 200mVP-P, OEQ0 = 0, OEQ1 = 0, OEQ2 = 0, DATA RATE = 5GT/s -200 -150 -100 -50 , ) INEQ0 = INEQ1 = 0, VIN = 200mVP-P, OEQ0 = 1, OEQ1 = 1, OEQ2 = 0, DATA RATE = 5GT/s INEQ0 = INEQ1 = 0, VIN = 200mVP-P, OEQ0 = 0, OEQ1 = 0, OEQ2 = 1, DATA RATE = 5GT/s INEQ0 = INEQ1 = 0, VIN = Maxim Integrated Products
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MAX14955 T4055

GF1L

Abstract: T1733 , S27=Comp.Sync S15= 200mVp-p,f=4.286MHz 4.3MHz BPF (2) GF4L1 S15 T17 ,S15= (200mVp-p,f=1.1MHz) VF4C 0dB 4.3MHz BPF (3) GF4L2 S15 T17 ,S15= (200mVp-p,f=2.2MHz) VF4C 0dB 4.3MHz BPF (4) GF4H S15 T17 ,S15= (200mVp-p,f=7.5MHz) VF4C 0dB REC BELL FBLR1 S15 T21 V5=V6=0V,V16=0V, SW21B=ON,S15= 200mVp-p,f=45MHz S27=Comp.Sync1 REC BELL (1) VBLRC S15 T21 V5=V6=0V,V16=0V, SW21B=ON,S15= 200mVp-p,f=FBLR1 S27=Comp.Sync REC BELL (2
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GF1L T1733 la7358 s27c 10715M 71C452.V1-6 LA7358 B8-8195 B8-4425 A0638-1/18 A0638-15/18 A0638-16/18

transistor t18 FET

Abstract: a0247 S16 = sine wave (200mVp-p, f = 4.286MHz) 4.3MHz BPF GF4L1 S16 T18 characteristics (2) V5 = 5V, V17 = 0V, S29 = Comp.Sync S16 = sine wave (200mVp-p, f = 1.1MHz) referenced (0dB) to , Comp.Sync S16 = sine wave (200mVp-p, f = 2.2MHz) referenced (0dB) to VF4C. 4.3MHz BPF GF4H S16 T18 characteristics (4) V5 = 5V, V17 = 0V, S29 = Comp.Sync S16 = sine wave (200mVp-p, f = , = 0V, SW22B = ON MHz S16 = sine wave (200mVp-p, f = 4 to 5MHz) S29 = Comp.Sync (Note1
SANYO Electric
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transistor t18 FET Reference sine wave s16 transistor ENA0247 A0274-17/17

D10.2 pattern

Abstract: .) INEQ0 = INEQ1 = 0, VIN = 200mVP-P, 0EQ2 = 0, OEQ1 = 0, OEQ0 = 0, DATA RATE = 5GT/s 600 400 VOLTAGE (mV , INEQ0 = INEQ1 = 0, VIN = 200mVP-P, 0EQ2 = 0, OEQ1 = 0, OEQ0 = 1, DATA RATE = 5GT/s MAX14954 toc02 INEQ0 = INEQ1 = 0, VIN = 200mVP-P, 0EQ2 = 0, OEQ1 = 1, OEQ0 = 0, DATA RATE = 5GT/s 600 400 VOLTAGE (mV , 100 150 -200 -150 -100 -50 0 (ps) 50 100 150 INEQ0 = INEQ1 = 0, VIN = 200mVP-P, 0EQ2 = , = INEQ1 = 0, VIN = 200mVP-P, 0EQ2 = 1, OEQ1 = 0, OEQ0 = 0, DATA RATE = 5GT/s MAX14954 toc05
Maxim Integrated Products
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D10.2 pattern

AN2154FAP

Abstract: Gv27 =1.8V No-signal input -100 â'" 400 mV White balance (l) GviO Vcc=4.8V, Veef=1.8V lOstep 200mVpp 200 250 300 mVpp White balance (2) Gvn VCC=4.8V,Vref=1.8V lOstep 200mVpp 0.85 1 1.15 - White balance (3) Gvi2 VCc=4.8V,Vref=1.8V lOstep 200mVpp 200 250 300 mVpp White balance (4) Gvi3 Vcc=4.8V, Vref=1.8V lOstep 200m Vpp 0.85 1 1.15 â'" LPFcharacteristics (l) Gv14 VCC=4.8V, VREF= 1.8V 2.5MHz Sine wave, 200mVPP â'" â'" -16 dB LPF characteristics (2) Gvi5 VCC=4.8V, Vref=1.8V 2.5MHz Sine wave, 200mVPP - â'" -16 dB C S/H
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OCR Scan
AN2154FAP AN2254FAP QFH048-P-1010 Gv27 v474 GV26 ASCOM+smps+48v DD14L V32-3

33Khz,

Abstract: GF1L .1) 4.3MHz BPF characteristics (1) VF4C S16 T18 V5 = 5V, V17 = 0V, S29 = Comp.Sync S16 = sine wave (200mVp-p , sine wave (200mVp-p, f = 1.1MHz) referenced (0dB) to VF4C. 4.3MHz BPF characteristics (3) GF4L2 S16 T18 V5 = 5V, V17 = 0V, S29 = Comp.Sync S16 = sine wave (200mVp-p, f = 2.2MHz) referenced (0dB) to VF4C. 4.3MHz BPF characteristics (4) GF4H S16 T18 V5 = 5V, V17 = 0V, S29 = Comp.Sync S16 = sine wave (200mVp-p , , SW22B = ON S16 = sine wave (200mVp-p, f = 4 to 5MHz) S29 = Comp.Sync (Note1) REC BELL charecterictics (1
SANYO Electric
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33Khz, att28

LN4888

Abstract: 3D Plus dB RL=8,PO=0.4W Input UnterminatedVripple = 200mVp-p, 217Hz CBP=1F, RL=8 Input , 200mVp-p, 1kHz ,CBP=1F, RL=8 Input groundedVripple = 200mVp-p, 65 217Hz, CBP=1F, RL=8 Input groundedVripple = 200mVp-p, 70 1kHz, CBP=1F, RL=8 XTALK VNO Channel Separation f=1kHz,CBP=1F,3D , UnterminatedVripple = 70 200mVp-p, 217Hz CBP=1F, RL=32 Input UnterminatedVripple = 72 200mVp-p, 1kHz PSRR Power Supply CBP=1F, RL=32 Rejection Ratio Input groundedVripple = 200mVp-p, - 65
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LN4888 LM4888 LM4888SQ QFN-24 3D Plus 217HZ
Abstract: characteristics (1) V5 = 5V, V17 = 0V, S29 = Comp.Sync S16 = sine wave (200mVp-p, f = 4.286MHz) 4.3MHz , wave (200mVp-p, f = 1.1MHz) referenced (0dB) to VF4C. 4.3MHz BPF GF4L2 S16 T18 characteristics (3) V5 = 5V, V17 = 0V, S29 = Comp.Sync S16 = sine wave (200mVp-p, f = 2.2MHz) referenced , Comp.Sync S16 = sine wave (200mVp-p, f = 7.5MHz) referenced (0dB) to VF4C. REC BELL FBLR1 S16 T22 center frequency V5 = 0V, V17 = 0V, SW22B = ON MHz S16 = sine wave (200mVp-p, f = 4 SANYO Electric
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2254FAP

Abstract: =1.8V No-signal input VCc = 4.8V ,V ref= 1.8V lOstep 200mVpp V cc= 4.8V ,V ref= 1.8V lOstep 200mVpp V cc= 4.8V ,V ref= 1.8V lOstep 200mVpp V cc= 4.8V ,V ref= 1.8V lOstep 200mVpp VCC=4.8V, V ref= 1.8V 2.5MHz Sine wave, 200mVpp VCC=4.8V, Vref= 1.8V 2.5MHz Sine wave, 200mVpp Vccâ'"4.8V, V ref= 1.8V 500kHz pulse, 200mVPP Vcc= 4.8V ,V ref= 1.8V 500kHz pulse, 200mVpp Vcc=4.8V, Vref = 1.8V lOstep , No-signal input VCC=4.8V, V ref= 1.73V No-signal input Vcc= 4.8V ,V ref= 1.73V 500kHz Sine wave, 200mVpP
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OCR Scan
2254FAP 2154FA

LME49870

Abstract: LME49870MA 200mVpp 300194h7 300194p7 www.national.com 10 LME49870 PSRR- vs Frequency VCC = 15V, VEE = ­15V RL = 2k, VRIPPLE = 200mVpp PSRR+ vs Frequency VCC = 17V, VEE = ­17V RL = 2k, VRIPPLE = 200mVpp 300194r2 300194q0 PSRR- vs Frequency VCC = 17V, VEE = ­17V RL = 2k, VRIPPLE = 200mVpp PSRR+ vs Frequency VCC = 12V, VEE = ­12V RL = 2k, VRIPPLE = 200mVpp 300194r2 300194p4 PSRR- vs Frequency VCC = 12V, VEE = ­12V RL = 2k, VRIPPLE = 200mVpp PSRR+ vs Frequency VCC = 22V, VEE
National Semiconductor
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LME49870MA M08A 10 band graphic equalizer lme49 National Semiconductor Audio radio Handbook audio equalizer national audio handbook

D10.2 pattern

Abstract: (TA = +25°C, unless otherwise noted.) INEQ0 = INEQ1 = 0, VIN = 200mVP-P, 0EQ0 = 0, OEQ1 = 0, OEQ2 = 0, DATA RATE = 5GT/s MAX14950 toc01 INEQ0 = INEQ1 = 0, VIN = 200mVP-P, 0EQ0 = 1, OEQ1 = 0, OEQ2 = 0, DATA RATE = 5GT/s 600 400 200 0 -200 -400 -600 MAX14950 toc02 INEQ0 = INEQ1 = 0, VIN = 200mVP-P , = 0, VIN = 200mVP-P, 0EQ0 = 1, OEQ1 = 1, OEQ2 = 0, DATA RATE = 5GT/s MAX14950 toc04 INEQ0 = INEQ1 = 0, VIN = 200mVP-P, 0EQ0 = 0, OEQ1 = 0, OEQ2 = 1, DATA RATE = 5GT/s 600 400 200 0 -200 -400
Maxim Integrated Products
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riaa preamp analog devices

Abstract: L49870 vs Frequency PSRR+ vs Frequency VCC = 15V, VEE = ­15V RL = 2k, VRIPPLE = 200mVpp 300194h7 , , VRIPPLE = 200mVpp PSRR+ vs Frequency VCC = 17V, VEE = ­17V RL = 2k, VRIPPLE = 200mVpp 300194r2 300194q0 PSRR- vs Frequency VCC = 17V, VEE = ­17V RL = 2k, VRIPPLE = 200mVpp PSRR+ vs Frequency VCC = 12V, VEE = ­12V RL = 2k, VRIPPLE = 200mVpp 300194r2 300194p4 PSRR- vs Frequency VCC = 12V, VEE = ­12V RL = 2k, VRIPPLE = 200mVpp PSRR+ vs Frequency VCC = 22V, VEE = ­22V RL = 2k
National Semiconductor
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riaa preamp analog devices L49870 10-band Graphic Equalizer Amplifier
Abstract: , unless otherwise noted.) INEQ0 = INEQ1 = 0, VIN = 200mVP-P, OEQ0 = 0, OEQ1 = 0, OEQ2 = 0, DATA RATE = 5GT/s INEQ0 = INEQ1 = 0, VIN = 200mVP-P, OEQ0 = 1, OEQ1 = 0, OEQ2 = 0, DATA RATE = 5GT/s MAX14950A toc01 INEQ0 = INEQ1 = 0, VIN = 200mVP-P, OEQ0 = 0, OEQ1 = 1, OEQ2 = 0, DATA RATE = 5GT/s , TIME (ps) -200 -150 -100 -50 0 50 TIME (ps) 100 150 INEQ0 = INEQ1 = 0, VIN = 200mVP-P, OEQ0 , ) INEQ0 = INEQ1 = 0, VIN = 200mVP-P, OEQ0 = 0, OEQ1 = 0, OEQ2 = 1, DATA RATE = 5GT/s MAX14950A toc04 Maxim Integrated Products
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sg62

Abstract: 3.579545MHZ reference input level is approximately 200mVp-p (Y + C + AFM). Note that the reference input level of AFM , Reference input 200mVp-p 147 29) -W r 40k: Vcc - 1 .4V" < O 20p fsc input pin. The input level is approximately 200mVp-p. During NTSC: 3.579545MHz During PAL: 4.433619MHz GND 30 NC V , /H Pin 15 BIL REC mode Ratio of LP/SP 2.5 3 3.5 dB ro 0 1 33 SG29 200mVp-p 3.579545MHz - 29 = a A Pin 24 1.4995 1.5 1.5005 MHz 34 SG29 200mVp-p 3.579545MHz
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OCR Scan
sg62 3.579545MHZ CXA1737R E96Z11B27 CXA173 64PIN P-LQFP64-10 42/COPPER
Abstract: .) INEQ0 = INEQ1 = 0, VIN = 200mVP-P, 0EQ2 = 0, OEQ1 = 0, OEQ0 = 0, DATA RATE = 5GT/s MAX14954 toc01 , 200mVP-P, 0EQ2 = 0, OEQ1 = 1, OEQ0 = 1, DATA RATE = 5GT/s MAX14954 toc04 600 600 -200 -150 -100 -50 0 (ps) 50 INEQ0 = INEQ1 = 0, VIN = 200mVP-P, 0EQ2 = 1, OEQ1 = 0, OEQ0 = 0, DATA , INEQ0 = INEQ1 = 0, VIN = 200mVP-P, 0EQ2 = 1, OEQ1 = 0, OEQ0 = 1, DATA RATE = 5GT/s 400 0 -200 , VOLTAGE (mV) INEQ0 = INEQ1 = 0, VIN = 200mVP-P, 0EQ2 = 0, OEQ1 = 1, OEQ0 = 0, DATA RATE = 5GT/s Maxim Integrated Products
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Abstract: Characteristics (TA = +25°C, unless otherwise noted.) INEQ0 = INEQ1 = 0, VIN = 200mVP-P, 0EQ2 = 0, OEQ1 = 0, OEQ0 = 0, DATA RATE = 5GT/s INEQ0 = INEQ1 = 0, VIN = 200mVP-P, 0EQ2 = 0, OEQ1 = 0, OEQ0 = 1, DATA RATE = 5GT/s MAX14950 toc01 INEQ0 = INEQ1 = 0, VIN = 200mVP-P, 0EQ2 = 0, OEQ1 = 1, OEQ0 = 0 , INEQ0 = INEQ1 = 0, VIN = 200mVP-P, 0EQ2 = 0, OEQ1 = 1, OEQ0 = 1, DATA RATE = 5GT/s 0 (ps) 50 -200 -150 -100 -50 100 150 INEQ0 = INEQ1 = 0, VIN = 200mVP-P, 0EQ2 = 1, OEQ1 = 0, OEQ0 = 0 Maxim Integrated Products
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Abstract: PSRR+ vs Frequency VCC = 15V, VEE = ­15V RL = 10k, f = 200kHz, VRIPPLE = 200mVpp PSRR- vs Frequency VCC = 15V, VEE = ­15V RL = 10k, f = 200kHz, VRIPPLE = 200mVpp 201572p1 201572p4 PSRR+ vs Frequency VCC = 15V, VEE = ­15V RL = 2k, f = 200kHz, VRIPPLE = 200mVpp PSRR- vs Frequency VCC = 15V, VEE = ­15V RL = 2k, f = 200kHz, VRIPPLE = 200mVpp 201572p2 201572p5 www.national.com 14 PSRR- vs Frequency VCC = 15V, VEE = ­15V RL = 600, f = 200kHz, VRIPPLE = 200mVpp New Japan Radio
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NJU7119 SC88A NJU7119F3

LM4562

Abstract: lm4562 phono preamp .1) 4.3MHz BPF characteristics (1) VF4C S16 T18 V5 = 5V, V17 = 0V, S29 = Comp.Sync S16 = sine wave (200mVp-p , sine wave (200mVp-p, f = 1.1MHz) referenced (0dB) to VF4C. 4.3MHz BPF characteristics (3) GF4L2 S16 T18 V5 = 5V, V17 = 0V, S29 = Comp.Sync S16 = sine wave (200mVp-p, f = 2.2MHz) referenced (0dB) to VF4C. 4.3MHz BPF characteristics (4) GF4H S16 T18 V5 = 5V, V17 = 0V, S29 = Comp.Sync S16 = sine wave (200mVp-p , , SW22B = ON S16 = sine wave (200mVp-p, f = 4 to 5MHz) S29 = Comp.Sync (Note1) REC BELL charecterictics (1
National Semiconductor
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LM4562 lm4562 phono preamp riaa preamplifier circuit diagram lm4562 LM4562NA phono preamp riaa preamplifier circuit diagram

k994

Abstract: AN2013 is approximately 200mVp-p (Y + C + AFM). Note that the reference input level of AFM 1.5MHz component , input level is approximately 200mVp-p. During NTSC: 3.579545MHz During PAL: 4.433619MHz GND 30 NC , l/H Pin 15 BIL REC mode Ratio of LP/SP 2.5 3 3.5 dB 33 SG29 200mVp-p 3.579545MHz - 29 = a A Pin 24 1.4995 1.5 1.5005 MHz 34 SG29 200mVp-p 3.579545MHz - 29 = a A Pin 24 1.6995 1.7 1.7005 MHz 35 SG29 200mVp-p 4.433619MHz -
STMicroelectronics
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TS4994 DFN10 TS4994IQT TS4994IST k994 AN2013

sg62

Abstract: INEQ1 = 0, VIN = 200mVP-P, 0EQ0 = 0, OEQ1 = 0, OEQ2 = 0, DATA RATE = 5GT/s INEQ0 = INEQ1 = 0, VIN = 200mVP-P, 0EQ0 = 1, OEQ1 = 0, OEQ2 = 0, DATA RATE = 5GT/s MAX14950 toc01 INEQ0 = INEQ1 = 0, VIN = 200mVP-P, 0EQ0 = 0, OEQ1 = 1, OEQ2 = 0, DATA RATE = 5GT/s MAX14950 toc02 600 MAX14950 toc03 , ) 50 -200 -150 -100 -50 100 150 INEQ0 = INEQ1 = 0, VIN = 200mVP-P, 0EQ0 = 1, OEQ1 = 1, OEQ2 = , 200mVP-P, 0EQ0 = 0, OEQ1 = 0, OEQ2 = 1, DATA RATE = 5GT/s MAX14950 toc04 0 (ps) 50 100 150
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OCR Scan
E96Z11A77 LQFP-64P-L01 LQFP064-P-1010

BSW64

Abstract: CXA1737R Density vs Frequency PSRR+ vs Frequency VCC = 15V, VEE = ­15V RL = 2k, VRIPPLE = 200mVpp 301257h7 301257p7 PSRR- vs Frequency VCC = 15V, VEE = ­15V RL = 2k, VRIPPLE = 200mVpp PSRR+ vs Frequency VCC = 17V, VEE = ­17V RL = 2k, VRIPPLE = 200mVpp 301257r2 301257q0 7 www.ti.com LHV870 PSRR- vs Frequency VCC = 17V, VEE = ­17V RL = 2k, VRIPPLE = 200mVpp PSRR+ vs Frequency VCC = 12V, VEE = ­12V RL = 2k, VRIPPLE = 200mVpp 301257r2 301257p4 PSRR- vs Frequency VCC = 12V, VEE =
Sony
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BSW64 SG64 sw60a BSW60A BSW58 SW60

1980 Audio Handbook

Abstract: balanced riaa 200mVpp 300194h7 300194p7 www.national.com 10 LME49870 PSRR- vs Frequency VCC = 15V, VEE = ­15V RL = 2k, VRIPPLE = 200mVpp PSRR+ vs Frequency VCC = 17V, VEE = ­17V RL = 2k, VRIPPLE = 200mVpp 300194r2 300194q0 PSRR- vs Frequency VCC = 17V, VEE = ­17V RL = 2k, VRIPPLE = 200mVpp PSRR+ vs Frequency VCC = 12V, VEE = ­12V RL = 2k, VRIPPLE = 200mVpp 300194r2 300194p4 PSRR- vs Frequency VCC = 12V, VEE = ­12V RL = 2k, VRIPPLE = 200mVpp PSRR+ vs Frequency VCC = 22V, VEE
Texas Instruments
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1980 Audio Handbook balanced riaa NATIONAL riaa

LM4562

Abstract: phono preamp + vs Frequency VCC = 2.5V, VEE = ­2.5V, RL = 2k, VRIPPLE = 200mVpp PSRR- vs Frequency VCC = 2.5V, VEE = ­2.5V, RL = 2k, VRIPPLE = 200mVpp 20210491 20210420 PSRR+ vs Frequency VCC = 12V, VEE = ­12V, RL = 2k, VRIPPLE = 200mVpp PSRR- vs Frequency VCC = 12V, VEE = ­12V, RL = 2k, VRIPPLE = 200mVpp 20210494 20210455 11 www.national.com LME49710 PSRR+ vs Frequency VCC = 15V, VEE = ­15V, RL = 2k, VRIPPLE = 200mVpp PSRR- vs Frequency VCC = 15V, VEE = ­15V, RL = 2k, VRIPPLE =
National Semiconductor
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National Semiconductor Audio Handbook phono preamplifier circuit diagram lm456 201572F6 riaa filter H08C

SNAS376B

Abstract: RIAA Ultra low noise amplifier + vs Frequency VCC = 2.5V, VEE = ­2.5V, RL = 2k, VRIPPLE = 200mVpp PSRR- vs Frequency VCC = 2.5V, VEE = ­2.5V, RL = 2k, VRIPPLE = 200mVpp 20210491 20210420 PSRR+ vs Frequency VCC = 12V, VEE = ­12V, RL = 2k, VRIPPLE = 200mVpp PSRR- vs Frequency VCC = 12V, VEE = ­12V, RL = 2k, VRIPPLE = 200mVpp 20210494 20210455 11 www.national.com LME49710 PSRR+ vs Frequency VCC = 15V, VEE = ­15V, RL = 2k, VRIPPLE = 200mVpp PSRR- vs Frequency VCC = 15V, VEE = ­15V, RL =
National Semiconductor
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SNAS376B RIAA Ultra low noise amplifier phono preamp nab

phono preamplifier circuit diagram

Abstract: riaa preamplifier circuit diagram , S27=Comp.Sync S15= 200mVp-p,f=4.286MHz 4.3MHz BPF (2) GF4L1 S15 T17 ,S15= (200mVp-p,f=1.1MHz) VF4C 0dB 4.3MHz BPF (3) GF4L2 S15 T17 ,S15= (200mVp-p,f=2.2MHz) VF4C 0dB 4.3MHz BPF (4) GF4H S15 T17 ,S15= (200mVp-p,f=7.5MHz) VF4C 0dB REC BELL FBLR1 S15 T21 V5=V6=0V,V16=0V, SW21B=ON,S15= 200mVp-p,f=45MHz S27=Comp.Sync1 REC BELL (1) VBLRC S15 T21 V5=V6=0V,V16=0V, SW21B=ON,S15= 200mVp-p,f=FBLR1 S27=Comp.Sync REC BELL (2
National Semiconductor
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professional riaa filter riaa equalized high accuracy riaa 80 Hz crossover National Semiconductor LME49710HA
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