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40VP-P

Catalog Datasheet MFG & Type PDF Document Tags

40vp

Abstract: 60VPP ns T, Rise Time ( Vout = 40VP-P, 35V to 75V) 45 ns Tf Fall Time ( Vout = 75VP-P, 18V to 94V) 4.6 , ) 5.0 ns Ti Fall Time (Vout = 40Vp-p, 35V to 75V) 5.1 ns BW Bandwidth 70 MHz Le Linearity 8 % , .p FALL TIME 5ns/DlV IB 27 50Vp.p RISE TIME 5ns/DIV 10 29 40Vp.p RISE TIME ,   " 3-38 5ns/DIV 50Vp.p FALL TIME 5ns/DIV 40Vp.p FALL TIME \ \ \
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CVA2420T 40vp 60VPP AV to vga circuit BW crt 2N5570 CVA2420 M4322 00Q1157

square to sine

Abstract: 13kHz ALLOWABLE INPUT VOLTAGE 40Vp-p max 40Vp-p max 40Vp-p max CURRENT CONSUMPTION 3mA max.at 1.3KHz/9Vp-p 3mA
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AWG28 square to sine 13kHz 35T3 USE35T2D USE35T2 OBO-35T3 UL1095

free circuit diagram of Crt Monitor

Abstract: crt monitor functional diagram driver. 50Vpp output swing. Open-loop design. For 40Vp-p output swing LM2412 200 3 -14.5 , swing Open-loop design. For 40Vp-p output swing LM2402 200 3/2.8 -14.5 80/12 11 , . For 40Vp-p output swing LM2413 160 4.5 -14 80/12 11-Pin TO-220 High speed, low power monolithic triple channel CRT driver. 50Vpp output swing Open-loop design. For 40Vp-p output , CRT driver. 50Vpp output swing. Closed-loop design. For 40Vp-p output swing LM2415 130 5.5
National Semiconductor
Original
LM2406 LM2411 free circuit diagram of Crt Monitor crt monitor functional diagram LM2405T lm1252 LM2437T LM2453 LM1253A LM1269 LM2469

LA7016

Abstract: 3016C =2.2V3.0V 100 mV Rg=50,f=1MHz,4.0Vp-p,RL= 46 55 dB Rg=50,f=1MHz,4.0Vp-p,RL= 46 , 1kHz 4.0Vp-p SW SW1 SW2 SW3 ID c c c A1 (1) THD b
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Original
LA7016 3016C RL46 LA7016/-1 51MIN JK701603 JK701604

40V8

Abstract: 1Ss83 equivalent Output Pulse Suitable for G1 Blanking, Selectable to 20VP-P or 40VP-P via Pin 13 Option DESCRIPTION , selectable pulse amplitude of either 20VP-P or 40VP-P via the Pin 13 option. The blanking input pulse can be , , Pin 13 floated VBIN 4.5V VBIN = 0V­5V Logic Pulse at 8.6% duty cycle (480p), VBOUT = 40VP-P (40V-80V) VBIN = 0V­5V Logic Pulse at 8.6% duty cycle (480p), VBOUT = 40VP-P (40V-80V) ­23 Conditions All , 5 6 VBOUT (V) VOUT vs. VIN 90 80 70 60 50 40 VBOUT (40VP-P) VOUT (V) tF = 4.8 Ps 30
Texas Instruments
Original
40V8 1Ss83 equivalent LM12xx LM2485 LM12XX LM242X/3X/5X ISO/TS16949

1Ss83 equivalent

Abstract: LM12XX vertical retrace blanking. The blanking output has a selectable pulse amplitude of either 20VP-P or 40VP-P , voltage range of over 100V Inverted output pulse suitable for G1 blanking, selectable to 20VP-P or 40VP-P , 0V­5V Logic Pulse at 8.6% duty cycle (480p), VBOUT = 40VP-P (40V-80V) Blanking Output Fall Time VBIN = 0V­5V Logic Pulse at 8.6% duty cycle (480p), VBOUT = 40VP-P (40V-80V) 2.0 us tF 4.5 us , vs. VIN FIGURE 5. VBOUT (40VP-P) 3 201034 Version 2 Revision 3 Print Date/Time: 2011/10/26 11
Texas Instruments
Original

AWG28

Abstract: Sine Wave/lOcm 77,000pF ± 30% at 120Hz 47,000pF ± 30% at 120Hz 60,000pF ± 30% at 120Hz 40Vp-p max 40Vp-p max 30Vp-p max 4mA max.at 800Hz/9Vp-p 3mA max.at 1.3KHz/9Vp-p 4mA max.at 800Hz/9Vp-p Square Wave
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USE35T4 USE35T5 USE35T6 UL94V-2 UL94HB

1Ss83 equivalent

Abstract: power supply 220v 12v diagram selectable pulse amplitude of either 20VP-P or 40VP-P via the Pin 13 option. The blanking input pulse can , over 100V Inverted output pulse suitable for G1 blanking, selectable to 20VP-P or 40VP-P via Pin 13 , VBIN = 0V­5V Logic Pulse at 8.6% duty cycle (480p), VBOUT = 40VP-P (40V-80V) 2.0 us Blanking Output Fall Time VBIN = 0V­5V Logic Pulse at 8.6% duty cycle (480p), VBOUT = 40VP-P (40V-80V) 4.5 , and Figure 3) 20103438 20103435 FIGURE 5. VBOUT (40VP-P) FIGURE 4. VOUT vs. VIN 3
National Semiconductor
Original
power supply 220v 12v diagram power supply 220v- 12v circuit diagram LM2485NA N24C crt flyback equivalent diode for 1SS83 LM2485N CSP-9-111C2 CSP-9-111S2

LM2470TA

Abstract: : VCC = +85V, VBB = +8V, CL = 8 pF, TC = 50°C DC Tests: VIN = 2.35VDC AC Tests: Output = 40VPP(35V - 75V) at 1MHz Symbol ICC IBB VOUT AV A V LE tR (40VPP) tF (40VPP) OS (40VPP) tR (60VPP) tF (60VPP) OS , the peaking component values are those recommended in Figure 12. Table 1 shows the typical 40Vpp , Cathode Response TABLE 1. LM2470 40VPP Cathode Response Channel Red Green Blue tr/OS 7.6ns / 8% 7.1ns
National Semiconductor
Original
LM2470TA LM1236/46 LM246X DS200871

Q12N3904

Abstract: crt bw diagram 10V RISE TIME (40Vp.p ) 102.5 V > o > o 2 5V 1B-12 110V > Q > O 10V 1B 14 FALL TIME (40Vp.p
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CVA2410T 2N3904 Q12N3904 crt bw diagram T11A 1B13 CVA2410 50VP-P 00G112S 1B-13
Abstract: =1MHz, 4.0Vp.p, Ru=°° Rg=50n, f=1MHz, 4.0Vp.p, R l =°° V3s V4 V3=2.2V v7 V3=3.0V V7 V3=3.0V V2 V3 -
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N308TA 8182KI

HIGH VOLTAGE VIDEO AMPLIFIER

Abstract: tda9511 Measured on CRT cathodes. c|_oad= 10pF, Rprotect= 150SÌ, Vqut = 60V, AVqut = 40VPP, Feedback gain = 20 45 , = 150SÌ, Vqut = 60V, AVqut = 40VPP 8 ns Go Open Loop Gain TBD dB Open Loop Gain Temperature , 40MHz and 40VPP output signal, the typical power dissipation is about 3.0W, for VDD = 120V. In first
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HIGH VOLTAGE VIDEO AMPLIFIER tda9511 TDA9511

tda9501

Abstract: TDA950 = 40VPP, Feedback gain = 20 Measured between 10% & 90% of output pulse, CLOAD = 10pF, Rprotect = 10, VOUT = 50V, VOUT = 40VPP TBD VOUT = 50V TBD 10 200 VDD - 6.5 17 40 VOUT = 50V Test Conditions Min. 20 , dynamic power dissipation increases with the pixel frequency. For a signal frequency of 40MHz and 40VPP
STMicroelectronics
Original
tda9501 TDA950 TDA9501

GL3816

Abstract: ,4.0Vp-p,RL=inf Rg = 50O,f = 1MHz,4.0Vp-p,RL = inf 50 -100 46 46 Total Harmonic Distortion Noise
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GL3816 QGDE741 QD02744

LM2470TA

Abstract: LM2470 40VPP(35V - 75V) at 1MHz Symbol Parameter Conditions LM2470 Min Typical Max ICC , VDC 1.0 dB 5 % tR (40VPP) Rise Time, 35V to 75V (Note 6), 10% to 90% 7.0 ns tF (40VPP) Fall Time, 35V to 75V (Note 6), 90% to 10% 7.0 ns OS (40VPP) Overshoot , peaking component values are those recommended in Figure 12. Table 1 shows the typical 40Vpp cathode , 10. Red Cathode Response TABLE 1. LM2470 40VPP Cathode Response Channel tr/OS tf/OS Red
National Semiconductor
Original
crt monitor circuit diagram LM1236 LM1246 schematic diagram vga to av national semiconductor 1976 Signal Path Designer

TDA9502

Abstract: MULTIWATT15 = 50V, AVout = 40Vpp, Feedback gain = 24 See Figure 2 35 MHz tR, tF Rise and Fall Time Measured between 10% & 90% of output pulse, Cload = 10pF, Rprotect = 300Ì1, Vout = 50V, AVout = 40VPP 11 ns Go , with the pixel frequency. For a signal frequency of 35MHz and 40Vpp output signal, the typical power
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TDA9502 MULTIWATT15 1997SGS-THOMSON
Abstract: , Rprotect = 150, VOUT = 60V, VOUT = 40VPP, Feedback gain = 20 Measured between 10% & 90% of output pulse, C LOAD = 10pF, Rprotect = 150, VOUT = 60V, VOUT = 40VPP VDD - 15 17 45 Typ. Max. 120 15 TBD Unit V V mA , with the pixel frequency. For a signal frequency of 40MHz and 40VPP output signal, the typical power STMicroelectronics
Original
IN9511-01

1B05

Abstract: 1B04 transistors . . . . . . . . . . . . . . . . . . . .40VP-P . 80V · Supply The CVA3424 , -25oC to +100oC DC ELECTRICAL CHARACTERISTICS VS = 80V, CL = 10pF, Vout = 40Vp-p. See Figure 1. TA = , ELECTRICAL CHARACTERISTICS VS = 80V, CL = 10pF, Vout = 40Vp-p. See Figure 1. TA = +125oC unless otherwise
Calogic
Original
CVA3424A CVA3424AT CVA3424T 1B05 1B04 transistors 1B-05 1B04 185MH 1C-04 1B-04

marking AJp

Abstract: marking nsc 4.0VPP 62 42 62 VOUT 10VPP Frequency Domain Response - 3dB Bandwidth 25 28 21 , 100MHz 37 36 MHz MHz VOUT 4.0VPP Peaking 0 to 70 - 40 to 85 Units 25 VOUT 4.0VPP, VCC ± 5V Ambient Temperature DC to 20MHz 0.0 0.8 0.8 0.8 dB
National Semiconductor
Original
CLC431 CLC432 marking AJp marking nsc CLC431AJE CLC431AJP CLC431/432 CLC431/CLC432 10MSPS

LA7016

Abstract: 3016B Pedestal AVped V3=2.2V to 3.0V -100 0 +100 mV Second harmonic Rg=50£2, f=1mhz, 4.0Vp.p, rl=°° 46 55 dB Third harmonic Rg=50n, f=1MHz, 4.0Vp.p, ri_=°° 46 52 dB Control, threshold voltage v3s 2.2
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3016B

S8090

Abstract: LH2440AS )= 2 .8 V 10 V V out ~ 40Vp-p 80 V V in(D C )= 3 .1 V 10 V Max Unit , ) Conditions Typ VouT= 30Vp-p 150 VouT= 40Vp-p 150 Vs(DC) 12 Icc1 / = 10MHz clock
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LH2440 LH2440S LH2440AS S8090 1035s LH2440A LH2440/LH2440A TL/K/10460-1 TL/K/10460-2

LH crt driver

Abstract: : VCC = +85V, VBB = +8V, CL = 8 pF, TC = 50°C DC Tests: VIN = 2.35VDC AC Tests: Output = 40VPP(35V - 75V) at 1MHz Symbol ICC IBB VOUT AV A V LE tR (40VPP) tF (40VPP) OS (40VPP) tR (60VPP) tF (60VPP) OS , the peaking component values are those recommended in Figure 12. Table 1 shows the typical 40Vpp , Cathode Response TABLE 1. LM2470 40VPP Cathode Response Channel Red Green Blue tr/OS 7.6ns / 8% 7.1ns
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LH crt driver HY12A
Abstract: Output Pulse Suitable for G1 Blanking, Selectable to 20VP-P or 40VP-P via Pin 13 Option DESCRIPTION , selectable pulse amplitude of either 20VP-P or 40VP-P via the Pin 13 option. The blanking input pulse can be , , Pin 13 floated VBIN 4.5V VBIN = 0V­5V Logic Pulse at 8.6% duty cycle (480p), VBOUT = 40VP-P (40V-80V) VBIN = 0V­5V Logic Pulse at 8.6% duty cycle (480p), VBOUT = 40VP-P (40V-80V) ­23 Conditions All , 5 6 VBOUT (V) VOUT vs. VIN 90 80 70 60 50 40 VBOUT (40VP-P) VOUT (V) tF = 4.8 Ps 30 -
OCR Scan
3529B VPA15 150MH

TDA9535

Abstract: TDA 1770 CHARACTERISTICS VDD=110V, VCC=12V, CL=8pF, RP=300, V=40VPP, unless otherwise specified - see Figure 1 Figure 6
STMicroelectronics
Original
TDA9536 TDA9210 TDA9535 TDA 1770 tda dmos FDH400 TDA9207

crt monitor circuit diagram 775

Abstract: 60Vpp PERFORMANCE CHARACTERISTICS VDD=110V, VCC=12V, CL=8pF, RP=300, V=40VPP, unless otherwise specified - see
Texas Instruments
Original
crt monitor circuit diagram 775

TDA9535L

Abstract: FDH400 to drive a 10 pF ( ± 20%) load with a 40Vp-p waveform. First, you would pick the values of R1, R2 , test board in the NSC lab. The output signal swing was 40Vp-p from 65V to 25V. OPTIMIZING TRANSIENT , of the device are driving an 8 pF load with a 40Vp-p signal. The graph assumes a 72% active time
STMicroelectronics
Original
TDA9535L TDA9535/36

TDA9535

Abstract: FDH400 Rise time VDC=50V, V=40VPP 8.5 ns tF Fall time VDC=50V, V=40VPP 10.5 ns 2.5% Settling time VDC=50V, V=40VPP 15 ns Low frequency Crosstalk VDC=50V,V=20VPP f = 1 MHz , PERFORMANCE CHARACTERISTICS VDD=110V, VCC=12V, CL=8pF, RP=300, V=40VPP, unless otherwise specified - see
STMicroelectronics
Original
TDA9209

LM1283

Abstract: LM2403 Rise time VDC=50V, V=40VPP 8.5 ns tF Fall time VDC=50V, V=40VPP 10.5 ns 2.5% Settling time VDC=50V, V=40VPP 15 ns Low frequency Crosstalk VDC=50V,V=20VPP f = 1 MHz , =300, V=40VPP, unless otherwise specified - see Figure 1 Figure 6. TDA9535L pulse response Figure 7
National Semiconductor
Original
LM2403 LM1283 LM240X DS100082-1 DS100082-2 DS100082

FDH400

Abstract: TDA9207 ALLOWABLE INPUT VOLTAGE 40Vp-p max 40Vp-p max 40Vp-p max CURRENT CONSUMPTION 3mA max.at 1.3KHz/9Vp-p 3mA
STMicroelectronics
Original

diodes 1n4148

Abstract: FDH400 to drive a 10 pF ( ± 20%) load with a 40Vp-p waveform. First, you would pick the values of R1, R2 , test board in the NSC lab. The output signal swing was 40Vp-p from 65V to 25V. OPTIMIZING TRANSIENT , of the device are driving an 8 pF load with a 40Vp-p signal. The graph assumes a 72% active time
STMicroelectronics
Original
diodes 1n4148
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