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65100 IT010A 33887 300U40A IT010A 1N6640 2838SIM2 1N4562
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  5.6-10.5 ghz up-converter qfn, 4x4mm page 1 of 7 features mimix broadband, inc., 10795 rockley rd., houston, texas 77099 tel: 281.988.4600 fax: 281.988.4615 mimixbroadband.com characteristic data and specifications are subject to change without notice. ? 2010 mimix broadband, inc. export of this item may require appropriate export licensing from the u.s. government. in purchasing these parts, u.s. domestic customers accept their obligation to be compliant with u.s. export laws. february 2010 - rev 18-feb-10 u1012-qh optimized for lsb operation 8 db conversion gain 25 dbm oip3 25 dbc lo suppression typical 15 db linear gain control 4x4mm qfn package bias requirements parameter drain bias voltage lo buffer (vd1) drain bias voltage rf amp stage 1 (vd2) drain bias voltage rf amp stage 2,3 (vd3) gate bias voltage lo buffer (vg1) gate bias voltage rf amp stage 1 (vg2) gate bias voltage rf amp stage 2,3 (vg3) variable attenuator control (vc) supply current lo buffer (id1) supply current rf amp stage 1 (id2) supply current rf amp stage 2,3 (id3) units vdc vdc vdc vdc vdc vdc vdc ma ma ma min. -2.5 typ. +5.0 +5.0 +5.0 -1.0 -1.0 -1.0 - 80 60 20 max. 0.0 mimix broadbands 5.6-10.5 ghz gaas mmic integrated up-converter has a typical lsb conversion gain of 8 db, and an image rejection of 15 dbc. the device includes an lo buffer amplifier, double balanced image reject mixer, rf buffer amplifier and variable attenuator. variable gain regulation can be achieved through bias adjustment with turn-down trajectories optimized to maintain linearity and minimal lo leakage. the device comes in a an rohs compliant 4x4mm qfn surface mount package offering excellent rf and thermal properties. typical applications for this device are as an up-converter stage in linear c-band radio transmit lineups. the device is well suited for millimeter-wave point-to-point radio, lmds, satcom and vsat applications. general description absolute maximum ratings 1 supply voltage (vd) gate bias voltage (vg) supply current (lo buffer) supply current (rf buffer) if input power (ifin) lo input power (loin) storage temperature (tstg) operating temperature (ta) abs. max. junction/channel temp. continuous power dissipation (pdiss) at 80 oc thermal resistance (tchannel=150 oc) mouting temperature esd min. - machine model (mm) esd min. - human body model (hbm) msl level +7v -3.0 5.6-10.5 ghz up-converter qfn, 4x4mm page 2 of 7 electrical characteristics mimix broadband, inc., 10795 rockley rd., houston, texas 77099 tel: 281.988.4600 fax: 281.988.4615 mimixbroadband.com characteristic data and specifications are subject to change without notice. ? 2010 mimix broadband, inc. export of this item may require appropriate export licensing from the u.s. government. in purchasing these parts, u.s. domestic customers accept their obligation to be compliant with u.s. export laws. february 2010 - rev 18-feb-10 u1012-qh parameter frequency range (rf) frequency range (lo) frequency range (if) lo input power (plo) conversion gain image rejection input ip3 (iip3) at maximum gain output ip3 (oip3) at maximum gain lo leakage at rf with 4 dbm input power rf return loss lo return loss if return loss gain variation units ghz ghz db dbm db dbc dbm dbm dbm db db db db min. 5.6 7.5 dc 3.0 typ. - - 1.8 - 8.0 15.0 19.0 25.0 -28.0 10.0 10.0 14.0 15 max. 10.5 12.0 2.5 9.0 -21.0
5.6-10.5 ghz up-converter qfn, 4x4mm page 3 of 7 measured performance mimix broadband, inc., 10795 rockley rd., houston, texas 77099 tel: 281.988.4600 fax: 281.988.4615 mimixbroadband.com characteristic data and specifications are subject to change without notice. ? 2010 mimix broadband, inc. export of this item may require appropriate export licensing from the u.s. government. in purchasing these parts, u.s. domestic customers accept their obligation to be compliant with u.s. export laws. february 2010 - rev 18-feb-10 u1012-qh XU1012-QH: conv. gain (db) vs. rf_lsb (ghz) if=1.8ghz, -10dbm, -5dbm, lo=2-8dbm 4 6 8 1 0 v . g a i n ( d b ) 0 2 5 6 7 8 9 1 0 r f _ l s b ( g h z ) c o n v , l ( d b m ) = 2 , r ( d b m ) = - 1 0 , l ( d b m ) = 2 , r ( d b m ) = - 5 , l ( d b m ) = 4 , r ( d b m ) = - 1 0 , l ( d b m ) = 4 , r ( d b m ) = - 5 , l ( d b m ) = 6 , r ( d b m ) = - 1 0 , l ( d b m ) = 6 , r ( d b m ) = - 5 , l ( d b m ) = 8 , r ( d b m ) = - 1 0 , l ( d b m ) = 8 , r ( d b m ) = - 5 XU1012-QH: image rej. (dbc) vs. rf_lsb (ghz) if=1.8ghz, -10dbm, -5dbm, lo=2-8dbm 3 0 4 0 5 0 6 0 e r e j . ( d b c ) 0 1 0 2 0 5 6 7 8 9 1 0 r f _ l s b ( g h z ) i m a g , l ( d b m ) = 2 , r ( d b m ) = - 1 0 , l ( d b m ) = 2 , r ( d b m ) = - 5 , l ( d b m ) = 4 , r ( d b m ) = - 1 0 , l ( d b m ) = 4 , r ( d b m ) = - 5 , l ( d b m ) = 6 , r ( d b m ) = - 1 0 , l ( d b m ) = 6 , r ( d b m ) = - 5 , l ( d b m ) = 8 , r ( d b m ) = - 1 0 , l ( d b m ) = 8 , r ( d b m ) = - 5 XU1012-QH: oip3 (dbm) vs. rf_lsb (ghz) if=1.8ghz, -10dbm, -5dbm, lo=2-8dbm 2 4 2 6 2 8 3 0 ( d b m ) 1 6 1 8 2 0 2 2 5 6 7 8 9 1 0 r f _ l s b ( g h z ) o i p 3 , l ( d b m ) = 2 , r ( d b m ) = - 1 0 , l ( d b m ) = 2 , r ( d b m ) = - 5 , l ( d b m ) = 4 , r ( d b m ) = - 1 0 , l ( d b m ) = 4 , r ( d b m ) = - 5 , l ( d b m ) = 6 , r ( d b m ) = - 1 0 , l ( d b m ) = 6 , r ( d b m ) = - 5 , l ( d b m ) = 8 , r ( d b m ) = - 1 0 , l ( d b m ) = 8 , r ( d b m ) = - 5 XU1012-QH: iip3(dbm) vs. rf_lsb (ghz) if=1.8ghz, -10dbm, -5dbm, lo=2-8dbm 2 0 2 2 2 4 2 6 ( d b m ) 1 2 1 4 1 6 1 8 5 6 7 8 9 1 0 r f _ l s b ( g h z ) ii p 3 ( , l ( d b m ) = 2 , r ( d b m ) = - 1 0 , l ( d b m ) = 2 , r ( d b m ) = - 5 , l ( d b m ) = 4 , r ( d b m ) = - 1 0 , l ( d b m ) = 4 , r ( d b m ) = - 5 , l ( d b m ) = 6 , r ( d b m ) = - 1 0 , l ( d b m ) = 6 , r ( d b m ) = - 5 , l ( d b m ) = 8 , r ( d b m ) = - 1 0 , l ( d b m ) = 8 , r ( d b m ) = - 5 XU1012-QH: c/i3 (dbc) vs. rf_lsb (ghz) if=1.8ghz, -10dbm, -5dbm, lo=2-8dbm 6 5 7 0 7 5 8 0 d b c ) 4 0 4 5 5 0 5 5 6 0 5 6 7 8 9 1 0 r f _ l s b ( g h z ) c /i3 ( d , l ( d b m ) = 2 , r ( d b m ) = - 1 0 , l ( d b m ) = 2 , r ( d b m ) = - 5 , l ( d b m ) = 4 , r ( d b m ) = - 1 0 l ( d b ) 4 r ( d b ) 5 l ( d b ) 6 r ( d b ) 1 0 l ( d b ) 6 r ( d b ) 5 , l ( d b m ) = 4 , r( d b m ) = - 5 , l ( d b m ) = 6 , r ( d b m ) = - 1 0 , l ( d b m ) = 6 , r( d b m ) = - 5 , l ( d b m ) = 8 , r ( d b m ) = - 1 0 , l ( d b m ) = 8 , r ( d b m ) = - 5 XU1012-QH: lo leakage (dbc) vs. lo (ghz) if=1.8ghz, -10dbm, -5dbm, lo=2-8dbm - 3 0 - 2 5 - 2 0 - 1 5 g e ( d b c ) - 5 0 - 4 5 - 4 0 - 3 5 - 3 0 7 8 9 1 0 1 1 l o ( g h z ) l o leak a g , l ( d b m ) = 2 , r ( d b m ) = - 10 , l ( d b m ) = 2 , r ( d b m ) = - 5 , l ( d b m ) = 4 , r ( d b m ) = - 10 l ( d b ) 4 r ( d b ) 5 l ( d b ) 6 r ( d b ) 1 0 l ( d b ) 6 r ( d b ) 5 , l ( d b m ) = 4 , r ( d b m ) = - 5 , l ( d b m ) = 6 , r( d b m ) = - 1 0 , l ( d b m ) = 6 , r ( d b m ) = - 5 , l ( d b m ) = 8 , r ( d b m ) = - 10 , l ( d b m ) = 8 , r ( d b m ) = - 5
5.6-10.5 ghz up-converter qfn, 4x4mm page 4 of 7 measured performance (cont.) mimix broadband, inc., 10795 rockley rd., houston, texas 77099 tel: 281.988.4600 fax: 281.988.4615 mimixbroadband.com characteristic data and specifications are subject to change without notice. ? 2010 mimix broadband, inc. export of this item may require appropriate export licensing from the u.s. government. in purchasing these parts, u.s. domestic customers accept their obligation to be compliant with u.s. export laws. february 2010 - rev 18-feb-10 u1012-qh XU1012-QH: lo-rf_lsb (dbc) vs. lo (ghz) if=1.8ghz, -10dbm, -5dbm, lo=2-8dbm - 2 5 - 2 0 - 1 5 - 1 0 - 5 0 o - r f _ l s b ( d b c ) - 3 5 - 3 0 7 8 9 1 0 1 1 l o ( g h z ) l o , l ( d b m ) = 2 , r ( d b m ) = - 1 0 , l ( d b m ) = 4 , r ( d b m ) = - 10 , l ( d b m ) = 6 , r ( d b m ) = - 1 0 , l ( d b m ) = 8 , r ( d b m ) = - 10 XU1012-QH: iip3 (dbm) vs. gain_lsb (db) attenuator vcontrol = 0 to -2.4v 1 5 2 0 2 5 3 0 ii p 3 ( d b m ) 1 0 1 5 - 1 2 - 1 0 - 8 - 6 - 4 - 2 0 2 4 6 8 1 0 g ai n _l s b ( d b ) , l - r 1 ( gh z ) = 5 . 2 0 25 , l - r 1 ( g h z ) = 5 . 7 025 , l - r 1 (g h z ) = 6 . 202 5 , l - r 1 ( gh z ) = 6 . 7 0 25 , l - r 1 ( g h z ) = 7 . 2 025 , l - r 1 (g h z ) = 7 . 702 5 , l - r 1 ( gh z ) = 8 . 2 0 25 , l - r 1 ( g h z ) = 8 . 7 025 , l - r 1 (g h z ) = 9 . 202 5 XU1012-QH: c/i3 (dbc) vs. gain_lsb (db) if=-5dbm, vcontrol = 0 to -2.4v 5 0 5 5 6 0 6 5 7 0 7 5 c /i3 ( d b c ) 4 0 4 5 5 0 - 1 2 - 1 0 - 8 - 6 - 4 - 2 0 2 4 6 8 1 0 g a i n _ l s b ( d b ) c , l - r 1 ( g h z ) = 5 . 2 02 5 , l - r 1 ( g h z ) = 5 . 70 2 5 , l - r 1 (g h z ) = 6 . 2 0 25 , l - r 1 ( g h z ) = 6 . 7 02 5 , l - r 1 ( g h z ) = 7 . 20 2 5 , l - r 1 (g h z ) = 7 . 7 0 25 , l - r 1 ( g h z ) = 8 . 2 02 5 , l - r 1 ( g h z ) = 8 . 70 2 5 , l - r 1 (g h z ) = 9 . 2 0 25 XU1012-QH ea qfn: g(lsb)db vs. rf_freq_lsb(ghz) integrated rf variable attenuator, vcontrol=0 to -2.4v 0 5 1 0 b)db , l ( d b m ) = 4 , v c( v ) = 0 , l ( d b m ) = 4 , v c( v ) = 0 . 2 , l ( d b m ) = 4 , v c( v ) = 0 . 4 , l ( d b m ) = 4 , v c( v ) = 0 . 6 , l ( d b m ) = 4 , v c( v ) = 0 . 8 , l ( d b m ) = 4 , v c( v ) = 1 l ( d b m ) = 4 v c( v ) = 1 2 -1 5 -1 0 - 5 5 5 . 5 6 6 . 5 7 7 . 5 8 8 . 5 9 9 . 5 rf_freq_lsb(ghz) g(ls , l ( d b m ) = 4 , v c( v ) = 1 . 2 , l ( d b m ) = 4 , v c( v ) = 1 . 4 , l ( d b m ) = 4 , v c( v ) = 1 . 6 , l ( d b m ) = 4 , v c( v ) = 1 . 8 , l ( d b m ) = 4 , v c( v ) = 2 , l ( d b m ) = 4 , v c( v ) = 2 . 2 , l ( d b m ) = 4 , v c( v ) = 2 . 4
5.6-10.5 ghz up-converter qfn, 4x4mm page 5 of 7 mttf graphs mimix broadband, inc., 10795 rockley rd., houston, texas 77099 tel: 281.988.4600 fax: 281.988.4615 mimixbroadband.com characteristic data and specifications are subject to change without notice. ? 2010 mimix broadband, inc. export of this item may require appropriate export licensing from the u.s. government. in purchasing these parts, u.s. domestic customers accept their obligation to be compliant with u.s. export laws. february 2010 - rev 18-feb-10 u1012-qh app note [1] biasing - as shown in the pin designations table, the device is operated by biasing vd1, vd2, and vd3 at 5.0v. the corresponding drain currents are set to 80ma, 60ma and 20ma respectively. it is recommended to use active bias on vg1, vg2, vg3 to keep the currents in vd1, vd2, and vd3 constant in order to maintain the best performance over temperature. depending on the supply voltages available and the power dissipation constraints, the bias circuits may include a single transistor or a low power operational amplifier, with a low value resistor in series with the drain supply to sense the current. make sure to sequence the applied voltage to ensure negative gate bias is available before applying the positive drain supply. variable gain is achieved by biasing vc from -2.5v (max. gain) to 0.0v (min. gain). XU1012-QH-0g00:tch(max) vs. package base temperature - vd1,2,3=5v, id1=80ma, id2=60ma, id3=20ma, vc=-3v 4 0 6 0 8 0 1 0 0 1 2 0 1 4 0 1 6 0 t c h ma x ( o c) 0 2 0 2 0 3 0 4 0 5 0 6 0 7 0 8 0 9 0 1 0 0 1 1 0 p a ck ag e ba s e t e m p ( o c) XU1012-QH-0g00: mttf hours vs. package base temperature vd1,2,3=5v, id1=80ma, id2=60ma, id3=20ma, vc=-3v 1 e+ 0 7 1 . e + 0 8 1 . e + 0 9 1 . e + 1 0 1 . e + 1 1 1 . e + 1 2 1 . e + 1 3 1 . e + 1 4 m ttf ( h o u r s ) 1 . e + 0 5 1 . e + 0 6 1 . e + 0 7 2 0 3 0 4 0 5 0 6 0 7 0 8 0 9 0 1 0 0 1 1 0 p a c k a ge b a s e tem p ( o c)
5.6-10.5 ghz up-converter qfn, 4x4mm page 6 of 7 mimix broadband, inc., 10795 rockley rd., houston, texas 77099 tel: 281.988.4600 fax: 281.988.4615 mimixbroadband.com characteristic data and specifications are subject to change without notice. ? 2010 mimix broadband, inc. export of this item may require appropriate export licensing from the u.s. government. in purchasing these parts, u.s. domestic customers accept their obligation to be compliant with u.s. export laws. february 2010 - rev 18-feb-10 u1012-qh package dimensions / layout functional schematic pin designations vg2 r f vd 2 vd 3 vg3 if1 n/c vg1 vd 1 v c vd 2 if2 l o pin pin pi f ti nominal numbe r nam e pi n f un c ti o n value 2 if 1 if 1 i npu t 5 if 2 if 2 i npu t 9 l o l o input 1 2 vd 1 d rain 1 bia s 5.0 v, 80 m a 1 3 vg1 ga te 1 bias con t rols drain current in vd 1 - 1 v 1 4 v c attenuator contro l - 2.5 v 1 5 vd 2 d rain 2 bia s 5.0 v, 20 m a 1 7 vd 3 d rain 3 bia s 5.0 v, 60 m a 1 8 vg3 ga te 3 bias con t rols drain current in vd 3 - 1 v 1 9 vg2 ga te 2 bias con t rols drain current in vd 2 - 1 v 2 2 r f r f outpu t 2 2 r f r f ou t pu t
5.6-10.5 ghz up-converter qfn, 4x4mm page 7 of 7 mimix broadband, inc., 10795 rockley rd., houston, texas 77099 tel: 281.988.4600 fax: 281.988.4615 mimixbroadband.com characteristic data and specifications are subject to change without notice. ? 2010 mimix broadband, inc. export of this item may require appropriate export licensing from the u.s. government. in purchasing these parts, u.s. domestic customers accept their obligation to be compliant with u.s. export laws. february 2010 - rev 18-feb-10 u1012-qh handling and assembly information caution! - mimix broadband mmic products contain gallium arsenide (gaas) which can be hazardous to the human body and the environment. for safety, observe the following procedures: ? do not ingest. ? do not alter the form of this product into a gas, powder, or liquid through burning, crushing, or chemical processing as these by-products are dangerous to the human body if inhaled, ingested, or swallowed. ? observe government laws and company regulations when discarding this product. this product must be discarded in accordance with methods specified by applicable hazardous waste procedures. electrostatic sensitive device - observe all necessary precautions when handling. life support policy - mimix broadband's products are not authorized for use as critical components in life support devices or systems without the express written approval of the president and general counsel of mimix broadband. as used herein: (1) life support devices or systems are devices or systems which, (a) are intended for surgical implant into the body, or (b) support or sustain life, and whose failure to perform when properly used in accordance with instructions for use provided in the labeling, can be reasonably expected to result in a significant injury to the user. (2) a critical component is any component of a life support device or system whose failure to perform can be reasonably expected to cause the failure of the life support device or system, or to affect its safety or effectiveness. package attachment - this packaged product from mimix broadband is provided as a rugged surface mount package compatible with high volume solder installation. vacuum tools or other suitable pick and place equipment may be used to pick and place this part. care should be taken to ensure that there are no voids or gaps in the solder connection so that good rf, dc and ground connections are maintained. voids or gaps can eventually lead not only to rf performance degradation, but reduced reliability and life of the product due to thermal stress. mimix lead-free rohs compliant program - mimix has an active program in place to meet customer and governmental requirements for eliminating lead (pb) and other environmentally hazardous materials from our products. all mimix rohs compliant components are form, fit and functional replacements for their non-rohs equivalents. lead plating of our rohs compliant parts is 100% matte tin (sn) over copper alloy and is backwards compatible with current standard snpb low-temperature reflow processes as well as higher temperature (260c reflow) pb free processes. part number for ordering description XU1012-QH-0g00 matte tin plated rohs compliant 4x4 24l qfn surface mount package in bulk quantity XU1012-QH-0g0t matte tin plated rohs compliant 4x4 24l qfn surface mount package in tape and reel XU1012-QH-ev1 XU1012-QH evaluation board typical reflow profiles reflow profile ramp up rate activation time and temperature time above melting point max peak temperature time within 5 oc of peak ramp down rate snpb 3-4 oc/sec 60-120 sec @ 140-160 oc 60-150 sec 240 oc 10-20 sec 4-6 oc/sec pb free 3-4 oc/sec 60-180 sec @ 170-200 oc 60-150 sec 265 oc 10-20 sec 4-6 oc/sec c a u t i o n : e s d s e n s i t i ve appropriate precautions in handling, packaging and testing devices must be observed. proper esd procedures should be followed when handling this device.


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