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TDA6107AJF データシート(PDF) 6 Page - NXP Semiconductors |
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TDA6107AJF データシート(HTML) 6 Page - NXP Semiconductors |
6 / 16 page 9397 750 14728 © Koninklijke Philips Electronics N.V. 2005. All rights reserved. Product data sheet Rev. 02 — 28 April 2005 6 of 16 Philips Semiconductors TDA6107AJF Triple video output amplifier 9. Characteristics Table 5: Characteristics Operating range: Tj = −20 °C to +150 °C; VDD = 180 V to 210 V; test conditions: Tamb =25 °C; VDD = 200 V; Voc(1) =Voc(2) =Voc(3) = 1⁄2VDD;CL =10pF (CL consists of parasitic and cathode capacitance); Rth(h-a) = 18 K/W; measured in test circuit of Figure 9; unless otherwise specified. Symbol Parameter Conditions Min Typ Max Unit Iq quiescent supply current 5.6 6 7.6 mA Vref(int) internal reference voltage (input stage) - 2.5 - V Ri input resistance - 2.1 - k Ω G gain of amplifier 73 81 89 ∆G gain difference −4.2 0 +4.2 PSRR power supply rejection ratio f < 50 kHz [1] -55 - dB αct(DC) DC crosstalk between channels - −50 - dB Measurement output pin Iom; Voc =Voc(min) to Voc(max) Iom(offset) offset current of measurement output (for three channels) Ioc =0 µA; Vom =1.8 Vto6V −50 - +50 µA ∆Iom/∆Ioc linearity of current transfer (for three channels) Ioc = −100 µA to +100 µA; Vom =1.8 Vto6V −0.9 −1.0 −1.1 Ioc = −100 µA to +10 mA; Vom =1.8 Vto4V −0.9 −1.0 −1.1 Output pins Voc(1), Voc(2), Voc(3) Voc(DC) DC output voltage Ii =0 µA 76 8797V ∆Voc(DC)(offset) differential DC output offset voltage between two output pins Ii =0 µA −5 0 +5 V ∆Voc(T) output voltage temperature drift - 10 - mV/K ∆Voc(T)(offset) differential output offset voltage temperature drift between two output pins - 0 - mV/K Ioc(max) maximum peak output current Voc =50Vto VDD − 50 V - 20 - mA Voc(min) minimum output voltage Vi = 4.5 V; at Ioc =0mA [2] - - 10 V Voc(max) maximum output voltage Vi = 0.5 V; at Ioc =0mA [2] VDD − 15 --V BS small signal bandwidth Voc = 60 V (p-p) - 5.5 - MHz BL large signal bandwidth Voc = 100 V (p-p) - 4.5 - MHz tco(p) cathode output propagation time 50 % input to 50 % output Voc = 100 V (p-p) square wave [3] -60 - ns ∆tco(p) difference in cathode output propagation time 50 % input to 50 % output (between two output pins) Voc = 100 V (p-p) square wave [3] −10 0 +10 ns toc(r) cathode output rise time 10 % output to 90 % output Voc = 50 V to 150 V square wave [3] 67 91 113 ns toc(f) cathode output fall time 90 % output to 10 % output Voc = 150 V to 50 V square wave [3] 67 91 113 ns |
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