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data book 1 03.00 gaas mmic cgy 360 data sheet ? wll receive downconverter ic for 3.5 ghz ? fully integrated two-stage preamplifier, mixer, lo-buffer, if amplifier and two switched atten- uators ? very high input- ip3 of typical + 5 dbm at max. gain and + 28 dbm at min. gain ? very low lo-power demand of typ. C 5 to 0 dbm ? high conversion gain: typ. 19 db ? minimum of external components and easy matching ? total current consumption: typ. 90 ma @ 5 v ? temperature range: C 40 c to + 85 c esd: e lectro s tatic d ischarge sensitive device, observe handling precautions! type marking ordering code (tape and reel) package cgy 360 cgy 360 q62702-g98 mw-16 maximum ratings port symbol limit values unit min. max. positive supply voltage 3, 4, 11, 15 v dlo , v drf2 , v drf1 , v dif 0+ 6v negative supply voltage 13 v g 0Cv voltage at step attenuators 6, 7, 9, 10 a, a bar, b bar, b 0+ 6v power into rf input 8 rf C 10 dbm power into lo input 1 lo C 10 dbm channel temperature C t ch C 150 c storage temperature C t stg C 55 150 c mw-16
cgy 360 data book 2 03.00 figure 1 rf block diagram thermal resistance symbol value unit channel to soldering point (gnd) r thchs t.b.d. k/w electrical characteristics t a = 25 c; v dd = 5 v, v gg = C 5 v; f rf = 3475 - 3500 mhz; f lo = 2359 mhz; p lo = 0 dbm; p rf = C 20 dbm; f if = 1116 - 1141 mhz, attenuators out or in. characteristics symbol limit values unit min. typ. max. operating drain current i op C90C ma operating drain current lo buffer only ( p lo = 0 dbm) i lo C10C ma operating gate current i g C0.7C ma electrical characteristics as above, but attenuators out (for further information about the attenuators see attenuator state on page 5 ). characteristics symbol limit values unit min. typ. max. conversion gain g c C19.0C db ssb noise figure f ssb C6.0C db 3 rd order input intercept point at max. gain ip3 in C+ 5C dbm eht08781 rf input: 3475 - 3500 mhz switched attenuator a two stage preamplifier switched attenuator b mixer if amplifier -16 db -16 db lo input: -5 to 0 dbm 2359 mhz lo buffer rf output: 1141 mhz 1116 - cgy 360 data book 3 03.00 lo leakage at rf-port with 0 dbm lo input p lo CC 28C dbm lo leakage at if-port with 0 dbm lo input p lo CC 19C dbm return loss rf port 1) s 11 C14C db return loss if port 1) s 22 C11C db return loss lo port 1) s 11 C9C db 1) configuration as shown on application board. as above, but attenuator a out and attenuator b in or attenuator a in and attenuator b out (for further information about the attenuators see attenuator state on page 5 ). characteristics symbol limit values unit min. typ. max. conversion gain g c C3.0C db ssb noise figure (a in, b out) f ssb C16.0C db 3 rd order input intercept point (a in, b out) ip3 in C+ 18C dbm as above, but attenuator a in and attenuator b in (for further information about the attenuators see attenuator state on page 5 ). characteristics symbol limit values unit min. typ. max. conversion gain g c C C 13.0 C db ssb noise figure f ssb C35.0C db 3 rd order input intercept point at min. gain ip3 in C+ 28C dbm electrical characteristics (contd) as above, but attenuators out (for further information about the attenuators see attenuator state on page 5 ). characteristics symbol limit values unit min. typ. max. cgy 360 data book 4 03.00 figure 2 application circuit notes package of capacitor c 12 : 0402. package of all other capacitors and of all resistors: 0603. the attenuators a and b are out without supplying the ports a and b (for further information about the attenuators see attenuator state on page 5 ). eht08782 6 gnd backside mw16 cgy 360 7 8 a a 17 d rf1 v 9 b b lo 2 3 5 4 d lo gnd1 d rf2 v res v 1 ic1 gnd2 gnd3 g v 15 16 11 10 13 12 14 d if v if 5 c 1.8 pf bcr112 v2 c 22 pf 6 10 nf c 9 x7 x8 22 pf c 7 10 nf 10 c b x6 1 r 10 k w 10 nf 22 pf c 811 c lo x2 sma sma x1 c 22 pf 4 sma x3 rf 13 10 pf c 12 0.5 pf c bcr112 v1 10 k r 2 w a x5 2 1 nf cc 10 pf 3 10 nf c 1 d v g v x4 d v rf if cgy 360 data book 5 03.00 note attenuator out is defined as maximum gain state. attenuator in is defined as minimum gain state. pin definitions and functions pin no. symbol function bias voltage 1 lo lo input C 2 res reserved leave open 3 vdlo mixer drain bias + 5 v 4vdrf22 nd rf amp drain bias + 5 v 5 gnd1 gnd 0 v 6a1 st attenuator control + 5 v, 0 v 7a bar1 st attenuator control bar 0 v, + 5 v 8 rf rf input C 9b bar2 nd attenuator control bar + 5 v, 0 v 10 b 2 nd attenuator control 0 v, + 5 v 11 vdrf1 1 st rf amp drain bias + 5 v 12 gnd2 gnd 0 v 13 vg amplifier gate bias C 5 v 14 gnd3 gnd 0 v 15 vdif if amp drain bias + 5 v 16 if if output C mw-16 heatsink slug gnd owp ground 0 v attenuator state attenuator a in pin 6 = high, pin 7 = low out pin 6 = low, pin 7 = high attenuator b in pin 9 = low, pin 10 = high out pin 9 = high, pin 10 = low logic level high C v high > v d C 0.15 v logic level low C v low < + 0.5 v cgy 360 data book 6 03.00 electrical characteristics versus temperature v dd = 5 v, v gg = C 5 v; f rf = 3475 - 3500 mhz; p rf = C 20 dbm; f lo = 2359 mhz; p lo = 0 dbm; f if = 1116 - 1141 mhz, both attenuators out (for further information about the attenuators see attenuator state on page 5 ). rxic ip3 -50 eht08783 0 0 50 100 ?c average 1 2 3 4 5 6 7 8 db iip3 t data book 7 03.00 cgy 360 rxic max. gain rxic dc current consumption -50 eht08784 15 gain 0 50 100 ?c average 16 17 18 19 20 21 22 23 24 25 db t -50 eht08785 0 current 0 50 100 ?c average 10 20 30 40 50 60 70 80 90 100 ma 120 t rxic noise figure -50 eht08786 0 noise figure 1 2 3 4 5 6 7 8 db 0 50 100 ?c average t cgy 360 data book 8 03.00 package outlines gpw05969 7 1.6 max 0.1 1.4 0.35 0.05 0.8 exposed solderable heatsink ?4.57 0.05 9 1) 7 1) 5.6 7 x 0.8 = b d a 0.2 m c 0.1 max 0.15 -0.06 0?...7? +0.05 2) d a-b a-b 0.2 h d 4x 16x 0.2 d 16x 0.1 c c c mw-16 (special package) sorts of packing package outlines for tubes, trays etc. are contained in our data book package information. dimensions in mm smd = surface mounted device |
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