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BGA3023 Datasheet(PDF) 6 Page - NXP Semiconductors |
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BGA3023 Datasheet(HTML) 6 Page - NXP Semiconductors |
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6 / 14 page ![]() BGA3023 All information provided in this document is subject to legal disclaimers. © NXP Semiconductors N.V. 2015. All rights reserved. Product data sheet Rev. 2 — 25 February 2015 6 of 14 NXP Semiconductors BGA3023 1.2 GHz 20 dB gain CATV amplifier [1] Flatness is defined as peak deviation to straight line. [2] Fundamental frequency f1 = 500 MHz, fundamental frequency f2 = 501 MHz. The intermodulation product (IM3) is measured at 2 f 1 f2 = 499 MHz. The output power of the fundamental frequencies is 10 dBm per frequency. [3] Fundamental frequency f1 = 240 MHz, fundamental frequency f2 = 260 MHz. The intermodulation product (IM2) is measured at f1 +f2 = 500 MHz. The output power of the fundamental frequencies is 10 dBm per frequency. [4] Measured with 79 NTSC channels. Table 8. Characteristics at VCC = 5 V; ICC = 165 mA Tamb = 25 C; typical values at VCC = 5 V; ZS =ZL =75 ; input and output connected with 1:1 balun, VI(CTRL) = 0 V (minimum total supply current); 40 MHz f1 1200 MHz unless otherwise specified. Symbol Parameter Conditions Min Typ Max Unit VCC supply voltage RF input AC coupled 4.75 5.00 5.25 V ICC(tot) total supply current - 165 - mA s 21 2 insertion power gain f = 40 MHz - 19.5 - dB SLsl slope straight line - 2.6 - dB FL flatness of frequency response [1] -0.5 -dB PL(1dB) output power at 1 dB gain compression -23 -dBm IP3O output third-order intercept point [2] -38 -dBm IP2O output second-order intercept point [3] -68 -dBm CTB composite triple beat VO = 35 dBmV [4] - 65 - dBc CSO composite second-order distortion VO = 35 dBmV [4] - 75 - dBc NF noise figure f = 500 MHz - 3.7 - dB RLin input return loss f = 40 MHz to 80 MHz - 20 - dB f = 80 MHz to 160 MHz - 20 - dB f = 160 MHz to 320 MHz - 19 - dB f = 320 MHz to 640 MHz - 18 - dB f = 640 MHz to 1000 MHz - 18 - dB f = 1000 MHz to 1200 MHz - 13 - dB RLout output return loss f = 40 MHz to 80 MHz - 20 - dB f = 80 MHz to 160 MHz - 19 - dB f = 160 MHz to 320 MHz - 17 - dB f = 320 MHz to 640 MHz - 17 - dB f = 640 MHz to 1000 MHz - 17 - dB f = 1000 MHz to 1200 MHz - 13 - dB |
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