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BGY887

NXP
Part Number BGY887
Manufacturer NXP
Description CATV Amplifier
Published Mar 23, 2005
Detailed Description DATA SHEET book, halfpage M3D252 BGY887 CATV amplifier module Product specification Supersedes data of 1997 Dec 17 1999...
Datasheet PDF File BGY887 PDF File

BGY887
BGY887


Overview
DATA SHEET book, halfpage M3D252 BGY887 CATV amplifier module Product specification Supersedes data of 1997 Dec 17 1999 Mar 30 Philips Semiconductors Product specification CATV amplifier module FEATURES • Excellent linearity • Extremely low noise • Excellent return loss properties • Silicon nitride passivation • Rugged construction • Gold metallization ensures excellent reliability.
APPLICATIONS • CATV systems operating in the 40 to 860 MHz frequency range.
DESCRIPTION Hybrid dynamic range amplifier module in a SOT115J package operating with a voltage supply of 24 V (DC).
QUICK REFERENCE DATA SYMBOL Gp Itot PARAMETER power gain total current consumption (DC) f = 50 MHz f = 860 MHz VB = 24 V CONDITIONS MIN.
21 21.
5 − − 235 PINNING - SOT115J PIN 1 2 3 5 7 8 9 input common common +VB common common output Side view BGY887 DESCRIPTION fpage 1 2 3 8 5 7 9 MSA319 Fig.
1 Simplified outline.
MAX.
22 UNIT dB dB mA LIMITING VALUES In accordance with the Absolute Maximum Rating System (IEC 134).
SYMBOL Vi Tstg Tmb RF input voltage storage temperature operating mounting base temperature PARAMETER − −40 −20 MIN.
MAX.
65 +100 +100 UNIT dBmV °C °C 1999 Mar 30 2 Philips Semiconductors Product specification CATV amplifier module CHARACTERISTICS Table 1 Bandwidth 40 to 860 MHz; VB = 24 V; Tcase = 30 °C; ZS = ZL = 75 Ω PARAMETER power gain slope cable equivalent flatness of frequency response input return losses CONDITIONS f = 50 MHz f = 860 MHz SL FL S11 f = 40 to 860 MHz f = 40 to 860 MHz f = 40 to 80 MHz f = 80 to 160 MHz f = 160 to 320 MHz f = 320 to 640 MHz f = 640 to 860 MHz S22 output return losses f = 40 to 80 MHz f = 80 to 160 MHz f = 160 to 320 MHz f = 320 to 640 MHz f = 640 to 860 MHz S21 CTB Xmod CSO d2 Vo F phase response composite triple beat cross modulation composite second order distortion second order distortion output voltage noise figure f = 50 MHz MIN.
21 21.
5 0.
2 − 20 18.
5 17 15.
5 14 20 18.
5 17 15.
5 14 −45 TYP.
21.
5 22.
5 1 ±0.
2 29.
5 27.
5 23 22 20 27 2...



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