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  1/9 november 2007 parameters units min. typ. max. frequency range mhz 250 - 2500 gain 1) db 11 input vswr 1) - 1.4 output vswr 1) - 1.4 output ip3 2) dbm 41 43 noise figure 1) db 3.8 output p1db dbm 18 20 supply current ma 75 supply voltage v 5 1) measurement conditions are as follows: t = 25 c, v cc = 5 v, freq. = 1950 mhz, 50 ohm system. 2) oip3 is measured with two tones at an output power of +10dbm/tone separated by 1mhz. parameters rating remarks operating case temperature -40 to + 85 c storage temperature -40 to + 150 c supply voltage 8 v operating junction temperature 150 c input rf power (continuous) 1) 13 dbm features description sige technology 11 db gain at 1950 mhz +20 dbm p1db +43 dbm output ip3 3.8 db noise figure mttf > 100 years operate at single +5 v supply sot-89 surface mount package package style: sot-89 s p ecifications 1) cdma,gsm,w-cdma,pcs wibro, wlan pa driver amplifier gain block catv amplifier if amplifier a pplications a bsolute maximum ratin g s ASG330 dc-2500 mhz sige hbt amplifie r website: www.asb.co.kr e-mail: sales@asb.co.kr tel: (82) 42-528-7220 fax: (82) 42-528-7222 asb, inc., 4f fi. venturetown bldg., 367-17 goijeong-dong, seo-gu, daejon 302-120, korea more information the ASG330 is designed for high linearity, high gain, and low noise over a wide range of frequency, being suitable for use in both receiver and transmitter of wireless and wireline telecommunication systems. the product is manufactured using a state-of-the-art sige hbt process of the company's own, making it cost- effective and highly reliable. the amplifiers are available in a low cost sot-89 package completing stringent dc and rf tests.
2/9 november 2007 a function pin no. input 1 ground 2 output 3 (unit: mm) ASG330 outline drawin g pin description ( unit: mm ) 1 2 3 2 mountin g confi g uration note : 1. ground vias are critical for thermal and rf grounding considerations. 2. if your pcb design rules allow, ground vias should be placed under bottom of pin 2 for better rf and thermal performance.
3/9 november 2007 1) oip3 is measured with two tones at an output power of +10dbm/tone separated by 1mhz. ASG330 a pplication circuit: 1920~1980 mhz (wcdma rx) typical performance board layout (fr4, 40x40 mm 2 , 0.8t) frequency 1950 mhz magnitude s21 11 db magnitude s11 -15 db magnitude s22 -15 db output p1db 20 dbm output ip3 1) 43 dbm noise figure 3.8 db supply voltage 5 v current 75 ma schematic s-parameters 0 500 1000 1500 2000 2500 3000 3500 0 1 2 3 4 5 stability factor frequency [mhz] 1600 1700 1800 1900 2000 2100 2200 2300 -30 -20 -10 0 10 20 s12 s22 s11 s21 s - parameter [db] frequency [mhz] k-factor 50 ohm c2=1.2 pf r1=7.5 k ? l1=15 nh c3=8 pf vcc=5 v rf in rf out 5 mm ASG330 l3=39 nh c6= 100 pf c5=0.1 f l2=330 nh c1=0.75 pf c7= 1 f c4=1.2 pf 50 ohm 5 mm
4/9 november 2007 1900 1920 1940 1960 1980 2000 18 19 20 21 22 23 p1db (dbm) frequency (mhz) ASG330 p1db vs. frequency oip3 vs. frequency (pout per tone=10dbm) 1900 1920 1940 1960 1980 2000 41 42 43 44 45 46 oip3 (dbm) frequency (mhz) nf vs. frequency 1900 1920 1940 1960 1980 2000 2.5 3.0 3.5 4.0 4.5 nf (db) frequency (mhz) 1950mhz aclr vs. channel output power 4 6 8 10121416 -70 -65 -60 -55 -50 -45 -40 aclr (dbc) channel output power (dbm) 6 8 10 12 14 16 38 39 40 41 42 43 44 45 46 oip3 (dbm) output power per one tone (dbm) oip3 vs. output tone power
5/9 november 2007 4 6 8 10 12 14 -56 -52 -48 -44 -40 aclr (dbc) channel output power (dbm) -5mhz -10mhz 5mhz 10mhz - 4fa / test model 1-54 dpch @ fc=1950mhz, pout=6dbm - 4fa / test model 1-54 dpch @ fc=1950mhz ASG330 aclr aclr vs. channel output power
6/9 november 2007 1800 1900 2000 2100 2200 2300 2400 -30 -20 -10 0 10 20 s12 s22 s11 s21 s - parameter [db] frequency [mhz] 0 500 1000 1500 2000 2500 3000 3500 0 1 2 3 4 5 stability factor frequency [mhz] 1) oip3 is measured with two tones at an output power of +10dbm/tone separated by 1mhz. ASG330 a pplication circuit: 2110~2170 mhz (wcdma tx) typical performance board layout (fr4, 40x40 mm 2 , 0.8t) frequency 2140 mhz magnitude s21 10 db magnitude s11 -14 db magnitude s22 -18 db output p1db 20 dbm output ip3 1) 43 dbm noise figure 4.3 db supply voltage 5 v current 75 ma schematic s-parameters k-factor 50 ohm c2=1 pf r1=7.5 k ? l1=15 nh c3=5 pf vcc=5 v rf in rf out 5 mm ASG330 l3=39 nh c6= 100 pf c5=0.1 f l2=330 nh c1=0.5 pf c7= 1 f c4=1.2 pf 50 ohm 5 mm
7/9 november 2007 ASG330 p1db vs. frequency oip3 vs. frequency (pout per tone=10dbm) nf vs. frequency 2140mhz aclr vs. channel output power 2100 2120 2140 2160 2180 18 19 20 21 22 23 p1db (dbm) frequency (mhz) 2100 2120 2140 2160 2180 41 42 43 44 45 46 oip3 (dbm) frequency (mhz) 2100 2120 2140 2160 2180 3.0 3.5 4.0 4.5 5.0 nf (db) frequency (mhz) 4 6 8 10121416 -70 -65 -60 -55 -50 -45 -40 aclr (dbc) channel output power (dbm) 6 8 10 12 14 16 39 40 41 42 43 44 45 46 oip3 (dbm) output power per one tone (dbm) oip3 vs. output tone power
8/9 november 2007 - 4fa / test model 1-54 dpch @ fc=2140mhz, pout=5dbm - 4fa / test model 1-54 dpch @ fc=2140mhz ASG330 aclr vs. channel output power 4 6 8 10 12 14 -60 -56 -52 -48 -44 -40 aclr (dbc) channel output power (dbm) -5mhz -10mhz 5mhz 10mhz aclr vs. channel output power
9/9 november 2007 1) oip3 is measured with two tones at an output power of +10dbm/tone separated by 1mhz. ASG330 a pplication circuit: 900~930 mhz typical performance board layout (fr4, 40x40 mm 2 , 0.8t) frequency 900~930 mhz magnitude s21 18.5 db magnitude s11 -15 db magnitude s22 -12 db output p1db 21 dbm output ip3 1) 41 dbm noise figure 2.8 db supply voltage 5 v current 75 ma schematic s-parameters k-factor 50 ohm c2=7 pf r1=7.5 k ? l1=15 nh c3=100 pf vcc=5 v rf in rf out ASG330 l3=22 nh c5= 100 pf c4=0.1 f l2=820 nh c1=9 pf c6= 1 f 50 ohm 5 mm 1 mm 600 700 800 900 1000 1100 1200 -40 -30 -20 -10 0 10 20 30 40 s12 s22 s11 s21 s - parameter [db] frequency [mhz] 0 500 1000 1500 2000 2500 3000 3500 0 1 2 3 4 5 stability factor frequency (mhz)


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