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  r09ds0013ej0100 rev.1.00 p age 1 of 15 jan 20, 2011 ? pg2422tk data sheet gaas i ntegrated c ircuit sp d t s witch for 0.05 ghz to 6 .0 ghz description the ? pg24 22 t k is a gaas mmic spdt ( s ingle p ole d ouble t hrow) switch which was designed for 0.05 ghz to 6.0 ghz applications, including dual - band wireless lan. this device operates with dual control switching voltages of 1.8 to 5.3 v and can operate at frequenc ies from 0.05 ghz to 6.0 ghz, having the low insertion loss and high isolation. this device is housed in a 6 - pin lead - less minimold package (1511 pkg) and is suitable for high - density surface mounting . features ? switch control voltage : v cont (h) = 3.0 v typ. : v cont (l) = 0 v typ. ? low insertion loss : l ins = 0. 3 5 db typ. @ f = 2.5 ghz : l ins = 0. 55 db typ. @ f = 6.0 ghz ? high isolation : isl = 2 8 db typ. @ f = 2.5 ghz : isl = 2 4 db typ. @ f = 6.0 ghz ? handling power : p in ( 0. 1 db) = + 28 dbm typ. @ f = 2 .0 to 6.0 ghz ? high - density surface mounting : 6 - pin lead - less minimold package ( 1.5 ? 1. 1 ? 0. 55 mm) applications ? wireless lan ( ieee802.11 a/ b/g /n) , etc. ordering information part number order number package marking supplying form ? pg2422tk - e2 ? pg2422tk - e2 - a 6 - pin lead - less minimold (1511 pkg) (pb - free) g6j ? embossed tape 8 mm wide ? pin 1, 6 face the perforation side of the tape ? qty 5 kpcs/reel remark to order evaluation samples, please contact your nearby sales office. part number for sa mple order: ? pg24 22 t k - a c aution although this device is designed to be as robust as possible, esd (electrostatic discharge) can damage this device. this device must be protected at all times from esd. static charges may easily produce potentials of several kilovolts on the human body or equipment, which can discharge without detection. industry - standard esd precautions must be employed at all times. r09ds0013ej0100 rev.1.00 jan 20 , 201 1
? pg24 22 t k r09ds0013ej0100 rev.1.00 p age 2 of 15 jan 20, 2011 pin connections and internal block diagram pin no. pin name 1 rf1 2 gnd 3 rf2 4 v cont 2 5 rfc 6 v cont 1 sw truth table on path v cont 1 v cont 2 rfc - rf1 high low rfc - rf2 low high absolute maximum ratings (t a = +25 ? parameter symbol ratings unit switch control voltage v cont + 6.0 note v input power ( v cont (h) = 1.8 v) p in + 29 .0 dbm input power ( v cont (h) = 3.0 v) p in + 3 2 .0 dbm input power ( v cont (h) = 5.0 v) p in + 3 3 .0 dbm power dissipation (average) p d 150 m w operating ambient temperature t a ? 4 5 to + 8 5 ? c storage temperature t stg ? 55 to +1 50 ? c note : ? v cont 1 ? v cont 2 ? ? 6.0 v recommended operating range (t a = +25 ? parameter symbol min. typ. max. unit operating frequency f 0.05 ? 6 .0 ghz switch control voltage (h) v cont (h) 1.8 3.0 5.3 v switch con trol voltage (l) v cont ( l ) ? 0.2 0 0.2 v control voltage difference ? v cont ( h ) , ? v cont ( l ) note ? 0.1 0 0.1 v note: ? v cont ( h ) = v cont 1 ( h ) ? v cont 2 ( h ) ? v cont ( l ) = v cont 1 ( l ) ? v cont 2 ( l )
? pg24 22 t k r09ds0013ej0100 rev.1.00 p age 3 of 15 jan 20, 2011 electrical characteristics 1 (t a = +25 ? cont (h) = 3.0 v, v cont ( l ) = 0 v, z o = 50 ? parameter symbol test conditions min. typ. max. unit insertion loss 1 l ins 1 f = 0.05 to 0 .5 ghz note 1 ? 0. 30 ? db insertion loss 2 l ins 2 f = 0.5 to 2.0 ghz note 2 ? 0. 30 0.50 db insertion loss 3 l ins 3 f = 2. 0 to 2.5 ghz ? 0. 35 0.55 db insertion loss 4 l ins 4 f = 2. 5 to 3.8 ghz ? 0. 45 0.65 db insertion loss 5 l ins 5 f = 3.8 to 6.0 ghz ? 0. 55 0.75 db isolation 1 (rfc - off port) isl 1 f = 0.05 to 0 .5 ghz note 1 ? 35 ? db isolation 2 (rfc - off port) isl 2 f = 0.5 to 2.0 ghz note 2 25 28 ? db isolation 3 (rfc - off port) isl 3 f = 2. 0 to 2.5 ghz 25 28 ? db isolation 4 (rfc - off port) isl 4 f = 2. 5 to 3.8 ghz 25 28 ? db isolation 5 (rfc - off port) isl 5 f = 3.8 to 6.0 ghz 20 24 ? db isolation 6 (rf1 - rf2) isl 6 f = 0.05 to 0 .5 ghz note 1 ? 35 ? db isolation 7 (rf1 - rf2) isl 7 f = 0.5 to 2.0 ghz note 2 25 28 ? db isolation 8 (rf1 - rf2) isl 8 f = 2. 0 to 2.5 ghz 25 28 ? db isolation 9 (rf1 - rf2) isl 9 f = 2. 5 to 3.8 ghz 25 28 ? db isola tion 10 (rf1 - rf2) isl 10 f = 3.8 to 6.0 ghz 25 28 ? db return loss 1 rl 1 f = 0.05 to 0 .5 ghz note 1 ? 25 ? db return loss 2 rl 2 f = 0.5 to 2.0 ghz note 2 15 20 ? db return loss 3 rl 3 f = 2. 0 to 2.5 ghz 15 20 ? db return loss 4 rl 4 f = 2.5 to 6.0 ghz 10 15 ? db 0. 1 db loss compression p in ( 0. 1 db) f = 0.05 to 0 .5 ghz note 1 ? 28 ? db m input power note 3 f = 0.5 to 2.0 ghz note 2 ? 29 ? db m f = 2. 0 to 6.0 ghz ? 28 ? db m f = 0.05 to 0 .5 ghz note 1 , v cont (h) = 5.0 v ? 32 ? db m f = 0.5 to 2.0 g hz note 2 , v cont (h) = 5.0 v ? 32 ? db m f = 2. 0 to 6.0 ghz , v cont (h) = 5.0 v ? 32 ? db m 1 db loss compression p in (1 db) f = 0.05 to 0 .5 ghz note 1 ? 32 ? db m input power note 4 f = 0.5 to 2.0 ghz note 2 ? 32 ? db m f = 2. 0 to 6.0 ghz ? 31 ? db m input 3rd order intercept point ii p 3 f = 2.5 ghz, p in = +20 dbm ? 57 ? db m 2nd harmonics 2f 0 f = 2.5 ghz, p in = +20 dbm ? 80 ? dbc 3rd harmonics 3f 0 f = 2.5 ghz, p in = +20 dbm ? 80 ? dbc switch control current i cont no rf input ? 0.1 5 ? a switch cont rol speed t sw 50% ctl to 90/10% rf ? 4 0 100 ns note s 1. dc blocking capacitors = 1 000 pf at f = 0.05 to 0.5 ghz 2. dc blocking capacitors = 56 pf at f = 0.5 to 2.0 ghz 3. p in ( 0. 1 db) is the measured input power level when the insertion loss increases 0. 1 db more than that of the linear range. 4. p in (1 db) is the measured input power level when the insertion loss increases 1 db more than that of the linear range. c aution it is necessary to use dc blocking capacitors with this device. the value of dc blo cking capacitors should be chosen to accommodate the frequency of operation, bandwidth, switching speed and the condition with actual board of your system.
? pg24 22 t k r09ds0013ej0100 rev.1.00 p age 4 of 15 jan 20, 2011 electrical characteristics 2 (t a = +25 ? cont (h) = 1 . 8 v, v cont ( l ) = 0 v, z o = 50 ? parameter symbol test conditions min. typ. max. unit insertion loss 1 l ins 1 f = 0.05 to 0 .5 ghz note 1 ? 0. 30 ? db insertion loss 2 l ins 2 f = 0.5 to 2.0 ghz note 2 ? 0. 30 0.55 db insertion loss 3 l ins 3 f = 2. 0 to 2.5 ghz ? 0. 35 0.60 db insertion loss 4 l ins 4 f = 2. 5 to 3.8 ghz ? 0. 45 0.70 db insertion loss 5 l ins 5 f = 3.8 to 6.0 ghz ? 0. 55 0.80 db isolation 1 (rfc - off port) isl 1 f = 0.05 to 0 .5 ghz note 1 ? 35 ? db isolation 2 (rfc - off port) isl 2 f = 0.5 to 2.0 ghz note 2 24 28 ? db isolation 3 (rfc - off port) isl 3 f = 2. 0 to 2.5 ghz 24 28 ? db isolation 4 (rfc - off port) isl 4 f = 2. 5 to 3.8 ghz 24 28 ? db isolation 5 (rfc - off port) isl 5 f = 3.8 to 6.0 ghz 19 24 ? db isolation 6 (rf1 - rf2) isl 6 f = 0 .05 to 0 .5 ghz note 1 ? 35 ? db isolation 7 (rf1 - rf2) isl 7 f = 0.5 to 2.0 ghz note 2 24 28 ? db isolation 8 (rf1 - rf2) isl 8 f = 2. 0 to 2.5 ghz 24 28 ? db isolation 9 (rf1 - rf2) isl 9 f = 2. 5 to 3.8 ghz 24 28 ? db isolation 10 (rf1 - rf2) isl 10 f = 3.8 to 6. 0 ghz 24 28 ? db return loss 1 rl 1 f = 0.05 to 0 .5 ghz note 1 ? 25 ? db return loss 2 rl 2 f = 0.5 to 2.0 ghz note 2 15 20 ? db return loss 3 rl 3 f = 2. 0 to 2.5 ghz 15 20 ? db return loss 4 rl 4 f = 2.5 to 6.0 ghz 10 15 ? db 0. 1 db loss compression p in ( 0. 1 db) f = 0.05 to 0 .5 ghz note 1 ? 22 ? db m input power note 3 f = 0.5 to 2.0 ghz note 2 ? 22 ? db m f = 2. 0 to 6.0 ghz ? 21 ? db m 1 db loss compression p in (1 db) f = 0.05 to 0 .5 ghz note 1 ? 28 ? db m input power note 4 f = 0.5 to 2.0 ghz no te 2 ? 27 ? db m f = 2. 0 to 6.0 ghz ? 24 ? db m 2nd harmonics 2f 0 f = 2.5 ghz, p in = + 15 dbm ? 80 ? dbc 3rd harmonics 3f 0 f = 2.5 ghz, p in = + 15 dbm ? 80 ? dbc switch control current i cont no rf input ? 0.1 5 ? a switch control speed t sw 50% ctl to 90/ 10% rf ? 6 0 1 5 0 ns note s 1. dc blocking capacitors = 1 000 pf at f = 0.05 to 0.5 ghz 2. dc blocking capacitors = 56 pf at f = 0.5 to 2.0 ghz 3. p in ( 0. 1 db) is the measured input power level when the insertion loss increases 0. 1 db more than that of the l inear range. 4. p in (1 db) is the measured input power level when the insertion loss increases 1 db more than that of the linear range. c aution it is necessary to use dc blocking capacitors with this device. the value of dc blocking capacitors should be c hosen to accommodate the frequency of operation, bandwidth, switching speed and the condition with actual board of your system.
? pg24 22 t k r09ds0013ej0100 rev.1.00 p age 5 of 15 jan 20, 2011 evaluation circuit note c1 : 0.05 to 0.5 ghz 1 000 pf : 0.5 to 2.0 ghz 56 pf : 2.0 to 6.0 ghz 8 pf c2 : 1 000 pf the application circuits and their parameters are for reference only and are not intended for use in actual design - ins. application information ? c 1 are dc blocking capacitors external to the device. the value may be tailored to provide specific electrical responses. ? the rf ground connections should be kept as short as possible and connected to directly to a good rf ground for best performance. ? l esd provides a means to increase the esd protection on a specific rf port, typically the port attached to the antenna.
? pg24 22 t k r09ds0013ej0100 rev.1.00 p age 6 of 15 jan 20, 2011 typical characteristics (t a = +25 ? cont (h) = 3.0 v, v cont ( l ) = 0 v, z o = 50 ? remark the graphs indicate nominal characteristics.
? pg24 22 t k r09ds0013ej0100 rev.1.00 p age 7 of 15 jan 20, 2011 remark the graphs indicate nominal characteristics.
? pg24 22 t k r09ds0013ej0100 rev.1.00 p age 8 of 15 jan 20, 2011 typical characteristics (t a = ? ? cont (h) = 3. 0 v, v cont ( l ) = 0 v, z o = 50 ? remark the graphs indicate nominal characteristics.
? pg24 22 t k r09ds0013ej0100 rev.1.00 p age 9 of 15 jan 20, 2011 remark the graphs indicate nominal characteristics.
? pg24 22 t k r09ds0013ej0100 rev.1.00 p age 10 of 15 jan 20, 2011 typical characte ristics (v cont (h) = 3.0 v, v cont ( l ) = 0 v, z o = 50 ? remark the graphs indicate nominal characteristics.
? pg24 22 t k r09ds0013ej0100 rev.1.00 p age 11 of 15 jan 20, 2011 typical characteristics ( v cont (h) = 3.0 v, v cont ( l ) = 0 v, z o = 50 ? remark the graphs indicate nominal characteristics.
? pg24 22 t k r09ds0013ej0100 rev.1.00 p age 12 of 15 jan 20, 2011 mounting pad layout dimensions 6 - pin lead - less minimold (1511 pkg) (unit: mm) remark the mounting pad layout in th is document is for reference only.
? pg24 22 t k r09ds0013ej0100 rev.1.00 p age 13 of 15 jan 20, 2011 package dimensions 6 - pin lead - less minimold (1511 pkg) (unit: mm)
? pg24 22 t k r09ds0013ej0100 rev.1.00 p age 14 of 15 jan 20, 2011 recommended soldering conditions this product should be soldered and mounted under the following recommended conditions. for soldering methods and conditions other than those recommended below, contact your nearby sales office. soldering method soldering conditions condition symbol infrared reflow peak temperature (package surface temperature) : 260 ? c or below time at peak temperature : 10 secon ds or less time at temperature of 220 ? c or higher : 60 seconds or less preheating time at 120 to 180 ? c : 120 ? 30 seconds maximum number of reflow processes : 3 times maximum chlorine content of rosin flux (% mass) : 0.2%(wt.) or below ir260 wave soldering peak temperature (molten solder temperature) : 260 ? c or below time at peak temperature : 10 seconds or less preheating temperature (package surface temperature) : 120 ? c or below maximum number of flow processes : 1 time maximum chlorine content of rosin fl ux (% mass) : 0.2%(wt.) or below ws260 partial heating peak temperature (terminal temperature) : 350 ? c or below soldering time (per side of device) : 3 seconds or less maximum chlorine content of rosin flux (% mass) : 0.2%(wt.) or below hs350 c aution do not use different soldering methods together (except for partial heating).
? pg24 22 t k r09ds0013ej0100 rev.1.00 p age 15 of 15 jan 20, 2011 caution gaas products this product uses gallium arsenide (gaas). gaas vapor and powder are hazardous to human health if inhaled or ingested, so please observe the following poin ts. ? follow related laws and ordinances when disposing of the product. if there are no applicable laws and/or ordinances, dispose of the product as recommended below. 1. commission a disposal company able to (with a license to) collect, transport and disp ose of materials that contain arsenic and other such industrial waste materials. 2. exclude the product from general industrial waste and household garbage, and ensure that the product is controlled (as industrial waste subject to special control) up until final disposal. ? do not burn, destroy, cut, crush, or chemically dissolve the product. ? do not lick the product or in any way allow it to enter the mouth.
all trademarks and registered trademarks are the property of their respective owners. c - 1 revision history ? pg24 22 t k data sheet rev. date description page summary 1.00 jan 20 , 201 1 ? ? first edition issued


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