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ADA10001S3C

ANADIGICS  Inc

Linear Amplifier MMIC


ADA10001S3C
ADA10001S3C

PDF File ADA10001S3C PDF File


Description
A FEATURES · · · · High Linearity (IIP3 + 18 dBm) Low Noise Figure ( 2.
0 dB ) Single Supply (+8Vdc) Wide Bandwidth ( 50MHz - 1 GHz) Linear Amplifier MMIC Data Sheet - Rev.
1 ADA10001S3C APPLICATIONS · · Driver Amplifier CATV - Distribution / Drop Amplifiers S3C 16 Pin SOIC Package DESCRIPTION: The ADA10001 is a monolithic IC intended for use in applications requiring high linearity such as: Cellular Telephone Base Station Driver Amplifiers, CATV Fiber Receiver/Distribution Amplifiers and CATV Drop Amplifiers.
Supplied in a surface mount, 16 lead-SOIC package, it is well suited for use in amplifiers where small size, reduced component count, and high reliability are important.
ABSOLUTE MAXIMUM RATINGS PAR AME TE R V DD/ V RFOUT V R F IN RFIN Storage T emperature S olderi ng T emperature S olderi ng Ti me Thermal Resi stance - 65 MIN .
0 MAX .
12 0 + 10 +150 260 5.
0 35 U N ITS VDC VDC dB m °C °C S e c.
°C /W ADA10001S3C ELECTRICAL SPECIFICATIONS MIN .
60 65 14 15 2.
0 +35 +15 +38 +18 3.
5 TYP.
(TA = +25 °C, RF = 50 to 1000 MHz, Test System = 75W, VDD = + 8VDC) PAR AMETER C SO2 C TB2 Gai n Noi se Fi gure 2nd Order Input Intercept Poi nt (IIP2)3 3rd Order Input Intercept Poi nt (IIP3)3 MAX.
U N ITS dB c dB c dB dB dB m dB m 1.
The device can be operated at + 6 VDC for lower power dissipation; Refer to the figures on page 3 for performance variation with supply voltage.
2.
160 channels, + 23 dBmV per channel, (measured at the output) 6 MHz channel spacing.
3.
Two tones, - 10 dBm per tone at input.
OPERATING RANGES PAR AMETER V DD IDD C a se Temperature MIN .
4 50 -40 TYP.
81 MAX.
9 150 70* U N ITS Volts mA °C A 2 ADA10001S3C Gain and Noise Figure vs Frequency Tc = 25 deg C, VDD = +8V 18 17 Gain (dB) 16 15 14 13 12 50 250 450 650 Frequency (MHz) 850 4 Noise Figure (dB) Gain (dB) 3.
5 3 2.
5 2 1.
5 1 15.
8 15.
75 15.
7 15.
65 15.
6 15.
55 4 Gain and Noise Figure vs.
VDD Tc = 25 deg C, RF = 500 MHz 2.
02 1.
98 1.
96 1.
94 1.
92 1.
9 1.
88 5 6 7 VDD (volts) 8 9 Noise Figure (dB...



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