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  04/2006 awl6950 2.4/5 ghz 802.11a/b/g wlan power amplifier data sheet - rev 2.2 m21 package 16 pin 4 mm x 4 mm x 1.3 mm surface mount module features ? 3.6 % evm @ p out = +19 dbm with ieee 802.11a 64 qam ofdm at 54 mbps ? 2.7 % evm @ p out = +20 dbm with ieee 802.11g 64 qam ofdm at 54 mbps ? -35 dbr acpr 1st sidelobe, +22 dbm, with 802.11b cck/dsss root cosine filtering, 1 mbps ? -55 dbr acpr 2nd sidelobe, +22 dbm, with 802.11b cck/dsss root cosine filtering, 1 mbps ? 32 db of linear power gain at 2.4 ghz ? 32 db of linear power gain at 5 ghz ? single +3.3 v supply ? dual temperature-compensated linear power detectors ? 50 ? - matched rf ports ? lead-free and rohs compliant ? 1 kv esd rating (hbm) ? 4 mm x 4 mm x 1.3 mm surface mount module applications ? 802.11a/b/g/n wlan figure 1: block diagram and pinout product description the anadigics awl6950 dual band power amplifier is a high performance ingap hbt power amplifier module designed for transmit applications in the 2.4-2.5 ghz and 4.9-5.9 ghz bands. matched to 50 ? at all rf inputs and outputs, the part requires no additional rf matching components off-chip, making the awl6950 the world?s simplest dual band pa module implementation available. the pa exhibits unparalleled linearity and efficiency for ieee 802.11g, 802.11b, and 802.11a wlan systems under the toughest signal configurations within these standards. the power detectors are temperature compensated on chip, enabling separate single-ended output voltages for each band with excellent accuracy over a wide range of operating temperatures. the pa is biased by a single +3.3 v supply and consumes ultra-low current in the off mode. bias control v cc v pc 2.4 ghz rf in 2.4 gh z rf out matching network gnd 2.4 ghz power detector bias control v cc v pc 5 ghz rf in 5 ghz rf out gnd 5 ghz power detector matching network matching network matching network the awl6950 is manufactured using advanced ingap hbt technology that offers state-of-the-art reliability, temperature stability, and ruggedness. awl6950
2 data sheet - rev 2.2 04/2006 awl6950 table 1: pin description n i p e m a n n o i t p i r c s e d 1d n gd n u o r g 2f r n i g 2 . d n u o r g o t h t a p c d a e d i v o r p n i p s i h t n o s t i u c r i c n o i t c e t o r p d s e . t u p n i f r z h g 2 0 5 o t d e h c t a m y l l a n r e t n i s i f r . n i p s i h t o t e g a t l o v c d g n i y l p p a d i o v a ? c a d n a t n e c a j d a g n i s u e d i u g e v a w r a n a l p o c s a s e c a r t f r e t u o r . e g a t s t u p n i e h t o t d e l p u o c . s n i p d n u o r g 3f r n i g 5 0 5 o t d e h c t a m y l l a n r e t n i e g a t s t u p n i . t u p n i f r z h g 5 ? e d i u g e v a w r a n a l p o c s a e t u o r . a p e h t e d i s n i d e d u l c n i t n e m e l e g n i h c t a m e v i t c u d n i t n u h s a . s n i p d n u o r g t n e c a j d a g n i s u . n i p s i h t o t e g a t l o v c d g n i y l p p a d i o v a . n i p s i h t t a d n u o r g o t h t a p c d a s e d i v o r p 4d n gd n u o r g 5a p n o g 5 , y l l a n i m o n . a p e h t f o l o r t n o c f f o / n o r o f s i e s u d e d n e m m o c e r e h t . l o r t n o c f f o / n o z h g 5 o t r e i f i l p m a t e s o t d e s u e b d l u o h s v 3 . 3 + ; f f o y l e t e l p m o c r e i f i l p m a n r u t l l i w d e i l p p a v 0 . y t i l i b a p a c t u p t u o m u m i x a m 6d n gd n u o r g 7v c c g 5. a p z h g 5 e h t f o s r o t s i s n a r t r e w o p r o f s a i b . e g a t l o v y l p p u s z h g 5 8t e d t u o g 5 r e w o l l o f r e t t i m e n a . t u p t u o r o t c e t e d r e w o p d e l p u o c c d . t u p t u o r o t c e t e d r e w o p z h g 5 . n i p s i h t r o f t u p t u o e h t s e i l p p u s t j b 9d n gd n u o r g 0 1f r t u o g 5 0 5 o t d e h c t a m y l l a n r e t n i e g a t s t u p t u o . t u p t u o f r z h g 5 ? r a n a l p o c s a e t u o r . d e d u l c n i t n e m e l e g n i h c t a m e v i t c u d n i t n u h s a . s n i p d n u o r g t n e c a j d a g n i s u e d i u g e v a w o t e g a t l o v c d g n i y l p p a d i o v a . n i p s i h t t a d n u o r g o t h t a p c d a s e d i v o r p a p e h t e d i s n i . n i p s i h t 1 1f r t u o g 2 . d n u o r g o t h t a p c d a e d i v o r p n i p s i h t n o s t i u c r i c n o i t c e t o r p d s e . t u p t u o f r z h g 2 0 5 o t d e h c t a m y l l a n r e t n i s i f r . n i p s i h t o t e g a t l o v c d g n i y l p p a d i o v a ? c a d n a t n e c a j d a g n i s u e d i u g e v a w r a n a l p o c s a s e c a r t f r e t u o r . e g a t s t u p n i e h t o t d e l p u o c . s n i p d n u o r g 2 1d n gd n u o r g 3 1t e d t u o g 2 r e w o l l o f r e t t i m e n a . t u p t u o r o t c e t e d r e w o p d e l p u o c c d . t u p t u o r o t c e t e d r e w o p z h g 2 . n i p s i h t r o f t u p t u o e h t s e i l p p u s t j b 4 1v c c g 2. a p z h g 2 e h t f o s r o t s i s n a r t r e w o p r o f s a i b . y l p p u s r e w o p z h g 2 5 1d n gd n u o r g 6 1a p n o g 2 , y l l a n i m o n . a p e h t f o l o r t n o c f f o / n o r o f s i e s u d e d n e m m o c e r e h t . l o r t n o c f f o / n o z h g 2 o t r e i f i l p m a t e s o t d e s u e b d l u o h s v 3 . 3 + ; f f o y l e t e l p m o c r e i f i l p m a n r u t l l i w d e i l p p a v 0 . y t i l i b a p a c t u p t u o m u m i x a m
data sheet - rev 2.2 04/2006 awl6950 3 electrical characteristics table 2: absolute minimum and maximum ratings stresses in excess of the absolute ratings may cause permanent damage. functional operation is not implied under these conditions. exposure to absolute ratings for extended periods of time may adversely affect reliability. table 3: operating ranges the device may be operated safely over these conditions; however, parametric performance is guaranteed only over the conditions defined in the electrical specifications. r e t e m a r a p n i m x a m t i n u s t n e m m o c v ( y l p p u s r e w o p c d c c , g 2v c c ) g 5-5 . 4 +v a p ( e g a t l o v l o r t n o c r e w o p n o a p , g 2 n o ) g 5- 5 . 4 +v d e i l p p a l a n g i s f r o n n o i t p m u s n o c t n e r r u c c d-0 0 7a my l e t a r a p e s d e r e w o p a p r e h t i e f r ( l e v e l t u p n i f r n i f r , g 2 n i ) g 5-5 -m b d e r u t a r e p m e t t n e i b m a g n i t a r e p o0 4 -5 8 +c e r u t a r e p m e t e g a r o t s5 5 -0 5 1 +c e c n a r e l o t d s e0 0 0 1-v e s r e v e r d n a d r a w r o f , s n i p l l a l e d o m y d o b n a m u h . e g a t l o v ) m b h ( r e t e m a r a p n i m p y t x a m t i n u s t n e m m o c ) f ( y c n e u q e r f g n i t a r e p o 0 0 4 2 0 0 9 4 - - 0 0 5 2 0 0 9 5 z h m g / b 1 1 . 2 0 8 a 1 1 . 2 0 8 v ( e g a t l o v y l p p u s r e w o p c d c c v , g 2 c c ) g 50 . 3 +3 . 3 +6 . 3 +v d e i l p p a f r h t i w a p ( e g a t l o v l o r t n o c r e w o p n o a p , g 2 n o ) g 5 0 . 2 + 0 3 . 3 + - 6 . 3 + 8 . 0 + v " n o " a p " n w o d t u h s " a p t ( e r u t a r e p m e t e s a c c )0 4 --5 8 +c
4 data sheet - rev 2.2 04/2006 awl6950 table 4: electrical specifications - 2.4 ghz continuous wave (t c = +25 c, v cc 2g = +3.3 v, pa on 2g = +3.3 v) r e t e m a r a p n i m p y t x a m t i n u s t n e m m o c b d 1 p5 . 4 26 2- m b d t n e r r u c n w o d t u h s-0 35 7 a a p n o v 0 = g 2 t n e r r u c t n e c s e i u q-5 75 9a ma p n o g 2 v , v 0 . 2 + c c f f o = f r , v 3 . 3 + = s s o l n r u t e r t u p n i-3 1 -8 -b d s s o l n r u t e r t u p t u o-9 -4 -b d n o i t c e j e r d n a b f o t u o z h g 1 z h g 5 7 . 1 z h g 2 . 3 z h g 7 . 4 0 2 0 5 8 3 - - - - - - - - b d n o i t a l o s i e s r e v e r0 4--b d ) s u o i r u p s ( y t i l i b a t s--0 6 -c b dp , r w s v 1 : 6 t u o 5 - , m b d 3 2 + = o c t n o e m i t g n i t t e s --1 s n i h t i w s e l t t e s b d 5 . 0 t f f o e m i t g n i t t e s --1 s a p n o t u p n i n i p g 2 e c n a d e p m i -2 . 6-k ? a p o t d e i l p p a v 3 . 3 + h t i w d e r u s a e m n o n i p g 2
data sheet - rev 2.2 04/2006 awl6950 5 table 5: electrical specifications - 5 ghz continuous wave (t c = +25 c, v cc 5g = +3.3 v, pa on 5g = +3.3 v) r e t e m a r a p n i m p y t x a m t i n u s t n e m m o c b d 1 p3 25 . 4 2-m b d t n e r r u c n w o d t u h s-2 33 8 a a p n o v 0 = g 5 t n e r r u c t n e c s e i u q2 80 2 10 6 1a ma p n o g 5 v , v 0 . 2 + c c f f o = f r , v 3 . 3 + = s s o l n r u t e r t u p n i-0 2 -0 1 -b d s s o l n r u t e r t u p t u o-8 1 -0 1 -b d n o i t c e j e r d n a b f o t u o z h g 5 . 1 z h g 5 . 3 z h g 4 z h g 5 . 6 z h g 9 5 3 5 . 2 1 5 5 0 3 - - - - - - - - - - b d n o i t a l o s i e s r e v e r0 4-- b d ) s u o i r u p s ( y t i l i b a t s--0 6 -c b dp , r w s v 1 : 6 t u o 5 - ; m b d 2 2 + = o c t n o e m i t g n i t t e s --1 s n i h t i w s e l t t e s b d 5 . 0 t f f o e m i t g n i t t e s --1 s a p n o t u p n i n i p g 5 e c n a d e p m i -2 . 6-k ? a p o t d e i l p p a v 3 . 3 + h t i w d e r u s a e m n o g 5 n i p
6 data sheet - rev 2.2 04/2006 awl6950 notes: (1) evm includes system noise floor of 1% (-40 db). (2) spectrum analyzer settings: rbw = 1 mhz; span = 100 mhz. table 6: electrical specifications - ieee 802.11g (t c = +25 c, v cc 2g = +3.3 v, pa on 2g = +3.3 v, 64 qam ofdm 54 mbps) r e t e m a r a p n i m p y t x a m t i n u s t n e m m o c y c n e u q e r f g n i t a r e p o0 0 4 2-0 0 5 2z h m n i a g r e w o p9 22 35 3b d e l p p i r n i a g- 2 . 0 5 . 0 b dd n a b z h m 0 0 1 y n a s s o r c a ) m v e ( e d u t i n g a m r o t c e v r o r r e - - 7 . 2 4 . 1 3 - 5 . 4 7 2 - % b d e t a r a t a d s p b m 4 5 g 1 1 . 2 0 8 p t u o m b d 0 2 + = g 2 ) 1 ( n o i t p m u s n o c t n e r r u c-5 8 15 1 2a mp t u o m b d 0 2 + = g 2 s c i n o m r a h o f 2 o f 3 - - 3 5 - 4 5 - 9 3 - 8 4 - c b dp t u o m b d 3 2 + = g 2 ) 2 ( e g a t l o v r o t c e t e d r e w o p5 7 85 2 0 15 5 1 1v mp t u o m b d 0 2 + = g 2 e g n a r e g a t l o v r o t c e t e d r e w o p0 0 1- 5 5 1 1v mp < 5 - t u o m b d 0 2 + < g 2 e g n a r b d r o t c e t e d r e w o p5 2-- b dp < 5 - t u o m b d 0 2 + < g 2 r e w o p r o t c e t e d m u m i n i m--5 -m b d r e w o p r o t c e t e d m u m i x a m0 2-- m b d n o i t u l o s e r r o t c e t e d0 1-- b d / v m y c n e u q e r f r e v o e c n a i r a v r o t c e t e d-5 . 09 . 2b dz h g 0 5 . 2 - 0 4 . 2 d a o l t u p t u o r o t c e t e d r e w o p e c n a d e p m i 2- -k ?
data sheet - rev 2.2 04/2006 awl6950 7 table 7: electrical specifications - ieee 802.11b (t c = +25 c, v cc 2g = +3.3 v, pa on 2g = +3.3 v, cck/dsss, 1 mbps, gaussian baseband filtering) r e t e m a r a p n i m p y t x a m t i n u s t n e m m o c y c n e u q e r f g n i t a r e p o0 0 4 2-0 0 5 2z h m n i a g r e w o p9 22 35 3b d e l p p i r n i a g- 2 . 0 5 . 0 b dd n a b z h m 0 0 1 y n a s s o r c a ) r p c a ( r e w o p l e n n a h c t n e c a j d a ( e b o l e d i s t s 1 ) t e s f f o z h m 1 1 -5 3 -3 3 -c b d n a i s s u a g s p b m 1 ; g n i r e t l i f d n a b e s a b p t u o m b d 0 2 + = g 2 ) r p c a ( r e w o p l e n n a h c t n e c a j d a ( e b o l e d i s d n 2 ) t e s f f o z h m 2 2 -5 5 -3 5 -c b d n a i s s u a g s p b m 1 ; g n i r e t l i f d n a b e s a b p t u o m b d 0 2 + = g 2 n o i t p m u s n o c t n e r r u c-0 9 15 2 2a mp t u o m b d 0 2 + = g 2 s c i n o m r a h o f 2 o f 3 - - 0 6 - 3 5 - 0 5 - 3 4 - c b dp t u o m b d 3 2 + = g 2 ) 1 ( e g a t l o v r o t c e t e d r e w o p5 2 95 7 0 10 5 2 1v mp t u o m b d 0 2 + = g 2 e g n a r e g a t l o v r o t c e t e d r e w o p0 0 1- 0 5 2 1v mp < 5 - t u o m b d 0 2 + < g 2 e g n a r b d r o t c e t e d r e w o p5 2-- v mp < 5 - t u o m b d 0 2 + < g 2 r e w o p r o t c e t e d m u m i n i m--5 -m b d r e w o p r o t c e t e d m u m i x a m0 2-- m b d n o i t u l o s e r r o t c e t e d0 1-- b d / v m y c n e u q e r f r e v o e c n a i r a v r o t c e t e d-5 . 06 . 2b d d a o l t u p t u o r o t c e t e d r e w o p e c n a d e p m i 2- -k ? note: (1) spectrum analyzer settings: rbw = 1 mhz; span = 100 mhz.
8 data sheet - rev 2.2 04/2006 awl6950 table 8: electrical specifications - ieee 802.11a (t c = +25 c, v cc 5g = +3.3 v, pa on 5g = +3.3 v, 64 qam ofdm 54 mbps) notes: (1) evm includes system noise floor of 1% (-40db) . (2) spectrum analyzer settings: rbw = 1 mhz; span = 100 mhz. r e t e m a r a p n i m p y t x a m t i n u s t n e m m o c y c n e u q e r f g n i t a r e p o0 0 9 4-0 0 9 5z h m n i a g r e w o p 7 2 0 3 0 3 8 2 0 3 5 . 3 3 5 . 3 3 1 3 4 3 8 3 5 . 6 3 5 . 5 3 b d z h g 9 . 4 z h g 5 2 . 5 z h g 5 5 . 5 z h g 5 8 . 5 e l p p i r n i a g- 5 . 0 0 . 2 b dd n a b z h m 0 0 1 y n a s s o r c a ) m v e ( e d u t i n g a m r o t c e v r o r r e - - 6 . 3 9 2 - 5 . 4 7 2 - % b d p t u o z h g 5 8 . 5 - 9 . 4 , m b d 9 1 + = g 5 e t a r a t a d s p b m 4 5 a 1 1 . 2 0 8 ) 1 ( n o i t p m u s n o c t n e r r u c-5 1 20 5 2a mp t u o m b d 9 1 + = g 5 s c i n o m r a h o f 2 o f 3 - - 0 4 - 0 5 - 4 3 - 3 4 - c b dp t u o m b d 0 2 + = g 5 ) 2 ( e g a t l o v r o t c e t e d r e w o p0 1 90 7 0 15 2 2 1v mp t u o m b d 9 1 + = g 5 e g n a r e g a t l o v r o t c e t e d r e w o p0 0 1- 5 2 2 1v mp < 5 - t u o m b d 0 2 + < g 5 e g n a r b d r o t c e t e d r e w o p5 2-- b dp < 5 - t u o m b d 0 2 + < g 5 r o t c e t e d r e w o p m u m i n i m--5 -m b d r o t c e t e d r e w o p m u m i x a m0 2-- m b d n o i t u l o s e r r o t c e t e d0 1-- b d / v m y c n e u q e r f r e v o e c n a i r a v r o t c e t e d-1 . 17 . 4b dz h g 5 8 . 5 - 0 9 . 4 d a o l t u p t u o r o t c e t e d r e w o p e c n a d e p m i 2- - k ?
data sheet - rev 2.2 04/2006 awl6950 9 figure 2: gain and i cc vs. output power across frequency (v cc = +3.3 v, t c = +25 o c) 802.11g 54 mbps ofdm figure 5: evm vs. output power across frequency (v cc = +3.3 v, t c = 25 o c) 802.11g 54 mbps ofdm figure 3: gain and i cc vs. output power across temp (frequency = 2.45 ghz, v cc = +3.3 v) 802.11g 54 mbps ofdm figure 6: evm vs. output power across temp (frequency = 2.45 ghz, v cc = +3.3 v) 802.11g 54 mbps ofdm 802.11g performance data 0 2 4 6 8 10 12 14 16 18 20 22 24 26 28 30 32 34 36 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 output power (dbm) gain (db) 0 20 40 60 80 100 120 140 160 180 200 220 240 260 280 300 320 340 360 current (ma) gain 2.40 ghz gain 2.45 ghz gain 2.50 ghz current 2.40 ghz current 2.45 ghz current 2.50 ghz gain current 0 2 4 6 8 10 12 14 16 18 20 22 24 26 28 30 32 34 36 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 output power (dbm) gain (db) 0 20 40 60 80 100 120 140 160 180 200 220 240 260 280 300 320 340 360 current (ma) gain 0c gain +25c gain +50c gain +85c current 0c current +25c current +50c current +85c current gain 0 2 4 6 8 10 12 14 16 18 20 22 24 26 28 30 32 34 36 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 output power (dbm) gain (db) 0 20 40 60 80 100 120 140 160 180 200 220 240 260 280 300 320 340 360 current (ma) gain 3.0v gain 3.3v gain 3.6v icc 3.0v icc 3.3v icc 3.6v gain current 0 1 2 3 4 5 6 7 8 9 10 11 12 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 output power (dbm) evm (%) evm 0c evm +25c evm +50c evm +85c 0 1 2 3 4 5 6 7 8 9 10 11 12 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 output power (dbm) evm (%) evm 3.0v evm 3.3v evm 3.6v figure 4: gain and i cc vs. output power across power supply voltage (freq = 2.45 ghz, t c = 25 o c) 802.11g 54 mbps ofdm figure 7: evm vs. output power across power supply voltage (freq = 2.45 ghz, t c = 25 o c) 802.11g 54 mbps ofdm 0 1 2 3 4 5 6 7 8 9 10 11 12 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 output power (dbm) evm (%) evm 2.40 ghz evm 2.45 ghz evm 2.50 ghz
10 data sheet - rev 2.2 04/2006 awl6950 802.11g performance data 0.0 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1.0 1.1 1.2 1.3 1.4 0 1 2 3 4 5 6 7 8 9 1011121314151617181920212223 output power (dbm) detector voltage (v) det. volt. 2.40ghz det. volt. 2.45ghz det. volt. 2.50ghz 0.0 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1.0 1.1 1.2 1.3 1.4 01234567891011121314151617181920212223 output power (dbm) detector voltage (v) det. volt. 0c det. volt. 25c det. volt. 50c det. volt. 85c 0.0 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1.0 1.1 1.2 1.3 1.4 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 output power (dbm) detector voltage (v) det. volt. 3.0v det. volt. 3.3v det. volt. 3.6v figure 8: detector voltage vs. output power across frequency (t c = 25 o c, v cc = +3.3 v) 802.11g 54 mbps ofdm figure 10: detector voltage vs. output power across power supply voltage (freq = 2.45 ghz, t c = 25 o c) 802.11g 54 mbps ofdm figure 9: detector voltage vs. output power across temperature (freq = 2.45 ghz, v cc = +3.3 v) 802.11g 54 mbps ofdm
data sheet - rev 2.2 04/2006 awl6950 11 0 2 4 6 8 10 12 14 16 18 20 22 24 26 28 30 32 34 36 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 output power (dbm) gain (db) 0 20 40 60 80 100 120 140 160 180 200 220 240 260 280 300 320 340 360 current (ma) gain 2.40 ghz gain 2.45 ghz gain 2.50 ghz current 2.40 ghz current 2.45 ghz current 2.50 ghz current gain 0 2 4 6 8 10 12 14 16 18 20 22 24 26 28 30 32 34 36 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 output power (dbm) gain (db) 0 20 40 60 80 100 120 140 160 180 200 220 240 260 280 300 320 340 360 current (ma) gain 0c gain +25c gain +50c gain +85c current 0c current +25c current +50c current +85c gain current 0 2 4 6 8 10 12 14 16 18 20 22 24 26 28 30 32 34 36 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 output power (dbm) gain (db) 0 20 40 60 80 100 120 140 160 180 200 220 240 260 280 300 320 340 360 current (ma) gain 3.0v gain 3.3v gain 3.6v icc 3.0v icc 3.3v icc 3.6v gain curren -62 -60 -58 -56 -54 -52 -50 -48 -46 -44 -42 -40 -38 -36 -34 -32 -30 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 output power (dbm) acpr sidelobe (dbr) 1st sidelobe 2.40ghz 1st sidelobe 2.45ghz 1st sidelobe 2.50ghz 2nd sidelobe 2.40ghz 2nd sidelobe 2.45ghz 2nd sidelobe 2.50ghz -62 -60 -58 -56 -54 -52 -50 -48 -46 -44 -42 -40 -38 -36 -34 -32 -30 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 output power (dbm) acpr sidelobe (dbr) 1st sidelobe 0c 1st sidelobe 25c 1st sidelobe 50c 1st sidelobe 85c 2nd sidelobe 0c 2nd sidelobe 25c 2nd sidelobe 50c 2nd sidelobe 85c -62 -60 -58 -56 -54 -52 -50 -48 -46 -44 -42 -40 -38 -36 -34 -32 -30 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 output power (dbm) acpr sidelobe (dbr) 1st sidelobe 3.00v 1st sidelobe 3.30v 1st sidelobe 3.60v 2nd sidelobe 3.00v 2nd sidelobe 3.30v 2nd sidelobe 3.60v figure 11: gain and i cc vs. output power across frequency (v cc = +3.3 v, t c = +25 o c) 802.11b gaussian filtering (bt = 0.5), 1 mbps figure 14: acpr vs. output power across frequency (v cc = +3.3 v, t c = 25 o c) 802.11b gaussian filtering (bt = 0.5), 1 mbps figure 12: gain and i cc vs. output power across temp (freq = 2.45 ghz, v cc = +3.3 v) 802.11b gaussian filtering (bt = 0.5), 1 mbps figure 15: acpr vs. output power across temp (freq = 2.45 ghz, v cc = +3.3 v) 802.11b gaussian filtering (bt = 0.5), 1 mbps figure 13: gain and icc vs. output power across power supply voltage (freq = 2.45 ghz, t c = 25 o c) 802.11b gaussian filtering (bt = 0.5), 1 mbps figure 16: acpr vs. output power across power supply voltage (freq = 2.45 ghz, t c = 25 o c) 802.11b gaussian filtering (bt = 0.5), 1 mbps 802.11b performance data
12 data sheet - rev 2.2 04/2006 awl6950 0.0 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1.0 1.1 1.2 1.3 1.4 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 output power (dbm) detector voltage (v) det. volt. 2.40ghz det. volt. 2.45ghz det. volt. 2.50ghz 0.0 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1.0 1.1 1.2 1.3 1.4 01234567891011121314151617181920212223 output power (dbm) detector voltage (v) det. volt. 0c det. volt. 25c det. volt. 50c det. volt. 85c 0.0 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1.0 1.1 1.2 1.3 1.4 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 output power (dbm) detector voltage (v) det. volt. 3.0v det. volt. 3.3v det. volt. 3.6v figure 17: detector voltage vs. output power across frequency (t c = 25 o c, v cc = +3.3 v) 802.11b gaussian filtering (bt = 0.5), 1 mbps figure 19: detector voltage vs. output power across power supply voltage (freq = 2.45 ghz, t c = 25 o c) 802.11b gaussian filtering (bt = 0.5), 1 mbps figure 18: detector voltage vs. output power across temp (freq = 2.45 ghz, v cc = +3.3 v) 802.11b gaussian filtering (bt = 0.5), 1 mbps
data sheet - rev 2.2 04/2006 awl6950 13 802.11a performance data 6 8 10 12 14 16 18 20 22 24 26 28 30 32 34 36 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 output power (dbm) gain (db) 120 140 160 180 200 220 240 260 280 300 320 340 360 380 400 420 current (ma) gain 4.90 ghz gain 5.25 ghz gain 5.55 ghz gain 5.85 ghz icc 4.90 ghz icc 5.25 ghz icc 5.55 ghz icc 5.85 ghz current gain 6 8 10 12 14 16 18 20 22 24 26 28 30 32 34 36 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 output power (dbm) gain (db) 120 140 160 180 200 220 240 260 280 300 320 340 360 380 400 420 current (ma) gain 0c gain +25c gain +50c gain +85c current 0c current +25c current +50c current +85c current gain 6 8 10 12 14 16 18 20 22 24 26 28 30 32 34 36 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 output power (dbm) gain (db) 80 100 120 140 160 180 200 220 240 260 280 300 320 340 360 380 current (ma) gain 3.0v gain 3.3v gain 3.6v icc 3.0v icc 3.3v icc 3.6v current gain 0 1 2 3 4 5 6 7 8 9 10 11 12 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 output power (dbm) evm (%) evm 4.90 ghz evm 5.25 ghz evm 5.55 ghz evm 5.85 ghz 0 1 2 3 4 5 6 7 8 9 10 11 12 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 output power (dbm) evm (%) evm 0c evm +25c evm +50c evm +85c 0 1 2 3 4 5 6 7 8 9 10 11 12 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 output power (dbm) evm (%) evm 3.0v evm 3.3v evm 3.6v figure 20: gain and i cc vs. output power across frequency (v cc = +3.3 v, t c = +25 o c) 802.11a 54 mbps ofdm figure 23: evm vs. output power across frequency (v cc = +3.3 v, t c = 25 o c) 802.11a 54 mbps ofdm figure 21: gain and i cc vs. output power across temp (freq = 5.25 ghz, v cc = +3.3 v) 802.11a 54 mbps ofdm figure 24: evm vs. output power across temp (freq = 5.25 ghz, v cc = +3.3 v) 802.11a 54 mbps ofdm figure 22: gain and i cc vs. output power across power supply voltage (freq = 5.25 ghz, t c = 25 o c) 802.11a 54 mbps ofdm figure 25: evm vs. output power across power supply voltage (freq = 5.25 ghz, t c = 25 o c) 802.11a 54 mbps ofdm
14 data sheet - rev 2.2 04/2006 awl6950 0.0 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1.0 1.1 1.2 1.3 1.4 01234567891011121314151617181920212223 output power (dbm) detector voltage (v) det. volt. 4.90ghz det. volt. 5.25ghz det. volt. 5.55ghz det. volt. 5.85ghz 0.0 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1.0 1.1 1.2 1.3 1.4 01234567891011121314151617181920212223 output power (dbm) detector voltage (v) det. volt. 0c det. volt. 25c det. volt. 50c det. volt. 85c 0.0 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1.0 1.1 1.2 1.3 1.4 01234567891011121314151617181920212223 output power (dbm) detector voltage (v) det. volt. 3.0v det. volt. 3.3v det. volt. 3.6v figure 26: detector voltage vs. output power across frequency (t c = 25 o c, v cc = +3.3 v) 802.11a 54 mbps ofdm figure 28: detector voltage vs. output power across power supply voltage (freq = 5.25 ghz, t c = 25 o c) 802.11a 54 mbps ofdm figure 27: detector voltage vs. output power across temperature (freq = 5.25 ghz, v cc = +3.3 v) 802.11a 54 mbps ofdm
data sheet - rev 2.2 04/2006 awl6950 15 figure 29: 2.4 ghz return losses across frequency (v cc = +3.3 v, t c = 25 o c) s-parameter performance data -26 -24 -22 -20 -18 -16 -14 -12 -10 -8 -6 -4 -2 0 0.5 1 1.5 2 2.5 3 3.5 4 4.5 5 frequency (ghz) return loss (db) input return loss output return loss -40 -36 -32 -28 -24 -20 -16 -12 -8 -4 0 4 8 12 16 20 24 28 32 36 40 0.5 1 1.5 2 2.5 3 3.5 4 4.5 5 frequency (ghz) s21 response (db) s21 response -26 -24 -22 -20 -18 -16 -14 -12 -10 -8 -6 -4 -2 0 012345678910 frequency (ghz) return loss (db) input return loss output return loss -40 -36 -32 -28 -24 -20 -16 -12 -8 -4 0 4 8 12 16 20 24 28 32 36 40 012345678910 frequency (ghz) s21 response (db) s21 response figure 30: 2.4 ghz s21 response across frequency (v cc = +3.3 v, t c = 25 o c) figure 31: 5 ghz return losses across frequency (v cc = +3.3 v, t c = 25 o c) figure 32: 5 ghz s21 response across frequency (v cc = +3.3 v, t c = 25 o c)
16 data sheet - rev 2.2 04/2006 awl6950 application information figure 33: application circuit 5 ghz rf out 2.4 ghz rf ou t 2.4 ghz rf in c1 1.0 f c2 1.0 f awl6950 gnd 1 rf in 2g 2 rf in 5g 3 gnd 4 paon 5g 5 gnd 6 paon 2g 16 gnd 15 v cc 2g 14 det out 2g 13 det out 5g 8 gnd 9 v cc 5g 7 rf out 5g 10 gnd 12 rf out 2g 11 5 ghz rf in paon 2g paon 5g det out 5g det out 2g v cc v cc
data sheet - rev 2.2 04/2006 awl6950 17 package outline figure 34: m21 package outline - 16 pin 4 mm x 4 mm x 1.3 mm surface mount module figure 35: branding specification e ea b c g f f d h pin 1 top view side view back view pin 1 pin 16 dim ension min typ m ax a 1.22 1.30 1.40 b -- 0.30 -- c 0.225 -- 0.505 d -- 0.075 -- e 3.88 4.00 4.12 f 2.56 -- 2.73 g -- 0.65 -- h 0.225 -- 0.505 m illim eters top brand notes cc = th: thaila nd, tw : taiw an, ph: philippines, ch: china, id: indonesia; hk: hong kong, us: united states
18 data sheet - rev 2.2 04/2006 awl6950 figure 36: recommended pcb layout 12mil 31.5mil 1mil 8mil 4mil 45mil 100mil 10mil via 11.6mil 25.6mil 25.6mil 25.6mil 24.6mil solder paste mask (quantity = 4) solder mask for device pins solder mask for device ground pad
data sheet - rev 2.2 04/2006 awl6950 19 notes
warning anadigics products are not intended for use in life support appliances, devices or systems. use of an anadigics product in any such application without written consent is prohibited. important notice anadigics, inc. 141 mount bethel road warren, new jersey 07059, u.s.a. tel: +1 (908) 668-5000 fax: +1 (908) 668-5132 url: http://www.anadigics.com e-mail: mktg@anadigics.com anadigics, inc. reserves the right to make changes to its products or to discontinue any product at any time without notice. the product specifications contained in advanced product information sheets and preliminary data sheets are subject to change prior to a product?s formal introduction. information in data sheets have been carefully checked and are assumed to be reliable; however, anadigics assumes no responsibilities for inaccuracies. anadigics strongly urges customers to verify that the information they are using is current before placing orders. data sheet - rev 2.2 04/2006 20 awl6950 ordering information r e b m u n r e d r o e r u t a r e p m e t e g n a r e g a k c a p n o i t p i r c s e d g n i g a k c a p t n e n o p m o c 8 p 1 2 m r 0 5 9 6 l w ac 5 8 + o t c 0 4 - n i p 6 1 t n a i l p m o c - s h o r m m 3 . 1 x m m 4 x m m 4 e l u d o m t n u o m e c a f r u s l e e r d n a e p a t e c e i p 0 0 5 , 2 0 p 1 2 m r 0 5 9 6 l w ac 5 8 + o t c 0 4 - n i p 6 1 t n a i l p m o c - s h o r m m 3 . 1 x m m 4 x m m 4 e l u d o m t n u o m e c a f r u s s e b u t e c e i p 9 9 9 - 1 6 p 1 2 m r 0 5 9 6 l w ac 5 8 + o t c 0 4 - n i p 6 1 t n a i l p m o c - s h o r m m 3 . 1 x m m 4 x m m 4 e l u d o m t n u o m e c a f r u s y a r t e c e i p 9 9 9 - 1 1 2 m r 0 5 9 6 a v ec 5 8 + o t c 0 4 - n i p 6 1 t n a i l p m o c - s h o r m m 3 . 1 x m m 4 x m m 4 e l u d o m t n u o m e c a f r u s d r a o b n o i t a u l a v e e c e i p 1


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