Order this document by MHW1810/D SEMICONDUCTOR TECHNICAL DATA ! The RF Line 1805ā–ā1880 MHz, 10 W RF POWER LDMOS AMPLIFIERS CASE 301AW–02, STYLE 1 MAXIMUM RATINGS Rating Symbol Value Unit VS 28 Vdc Vbias 28 Vdc Pin 21 16 dBm RF Output Power Pout 20 W Operating Case Temperature Range TC – 10 to +90 °C Storage Temperature Range Tstg – 30 to +100 °C DC Supply Voltage DC Bias Voltage RF Input Power MHW1810–1 MHW1810–2 ELECTRICAL CHARACTERISTICS (TC = +25°C, VS = 26 Vdc; Vbias = 5 Vdc; 50 Ω system, unless otherwise noted) Symbol Min Typ Max Unit BW 1805 — 1880 MHz Quiescent Current (Pin = 0 mW) IDQ 100 — 150 mA Bias Current Ibias — — 2 mA Output Power at 1 dB Compression P1dB 10 14 — W Gp 24 32 26 34 28 36 dB Characteristic Frequency Range Power Gain (Pout = 10 W) Power Gain (Pout = 10 W) MHW1810–1 MHW1810–2 η 34 — — % VSWRin — — 1.8:1 — Harmonics at 2fo (Pout = 10 W) H2 — — – 35 dBc Harmonics at 3fo (Pout = 10 W) H3 — — – 45 dBc IMDr — — – 50 dBc Efficiency (Pout = 10 W) Input VSWR (Pout = 10 W) Reverse IMD; Pout = 10 W; Preverse = –40 dBc (F1 = F0 ±200 kHz @ –40 dBc) Load Mismatch Stress Load VSWR = 5:1, All Phase Angles ψ No Degradation in Output Power Stability (Pout = 10 mW to 10 W, VS ≤ 26 Vdc) Load VSWR = 5:1, All Phase Angles — All Spurious Outputs More Than 60 dB Below Desired Signal NOTE – CAUTION – MOS devices are susceptible to damage from electrostatic charge. Reasonable precautions in handling and packaging MOS devices should be observed. REV 2 MOTOROLA RF DEVICE DATA Motorola, Inc. 2002 MHW1810–1 MHW1810–2 1 ARCHIVE INFORMATION ARCHIVE INFORMATION • Specified 26 Volts, 1805–1880 MHz, Class AB Characteristics Output Power = 16 Watts CW Typ Power Gain = 26 dB Typ @ 10 Watts (MHW1810–1) Power Gain = 34 dB Typ @ 10 Watts (MHW1810–2) Efficiency = 34% Min @ 10 Watts • 50 Ω Input/Output System • Designed for GSM Linearity Requirements EXTREME CASE ELECTRICAL CHARACTERISTICS (TC = –10 to +85°C, VS = 23.5 to 26 Vdc, Vbias = 3 to 26 Vdc, 50 Ω system, Characteristic Symbol Min Typ Max Unit Frequency Range BW 1805 — 1880 MHz Quiescent Current (Pin = 0 mW) IDQ 100 — 160 mA Bias Current Ibias — — 2 mA Output Power at 1 dB Compression P1dB 8 — — W Gp — 5 6.5 dB Power Gain Variation for a Given Part (Pout = 10 W) η 32 — — % VSWRin — — 2:1 — Harmonics at 2fo H2 — — – 35 dBc Harmonics at 3fo H3 — — – 45 dBc IMDr — — – 50 dBc Efficiency (Pout = 10 W) ARCHIVE INFORMATION Input VSWR Reverse IMD; Pout = 10 W; Preverse = –40 dBc (F1 = F0 ±200 kHz @ –40 dBc) Load Mismatch Stress Load VSWR = 5:1, All Phase Angles ψ No Degradation in Output Power Stability (Pout = 10 mW to 10 W, VS ≤ 26 Vdc) Load VSWR = 5:1, All Phase Angles — All Spurious Outputs More Than 60 dB Below Desired Signal Figure 1. Internal Diagram MHW1810–1 MHW1810–2 2 MOTOROLA RF DEVICE DATA ARCHIVE INFORMATION unless otherwise noted) TYPICAL CHARACTERISTICS MHW1810–1 "" &$ '$ "$ .% η 012 "! .& ." 012 3 #%$' *+, .! .$ !% 012 3 #%%$ *+, !& "$ .$ η 3 #%%$ *+, !$ #$ $ #$ #' ' !$ $ !' $ .! .$ !% !- !" 012 4 #$ !$ #& #! % " $ #&$$ & #! % #$ #" #& #% !$ 012 4 #$ 4 5#$° !% !6 4 !'° !& !' !" 4 %'° !. !! #6$$ #%$$ #-$$ !#$$ !$$$ ( ) *+, !!$$ !# #%$$ !.$$ #%#$ #%!$ Figure 4. Power Gain versus Frequency 7 4 5#$° ..%/' 4 !'° .% .6/' .6 4 %'° .&/' .& .'/' 012 4 #$ #%#$ #%!$ #%.$ #%"$ #%'$ #%&$ #%6$ #%%$ ( ) *+, Figure 6. Efficiency versus Frequency MOTOROLA RF DEVICE DATA #%.$ #%"$ #%'$ #%&$ ( ) *+, #%6$ #%%$ #%-$ Figure 5. Gain versus Frequency "$ .-/' .' #%$$ " Figure 3. Efficiency versus Input Power 7 7 Figure 2. Output Power versus Input Power ! #%-$ #/#/6 012 4 $/' 20 #$ #/' #/. #/# $/- 4 %'° $/6 $/' $/. $/# 5$/# 5$/. 5$/' #%$$ #%#$ 4 !'° 4 5#$° #%!$ #%.$ #%"$ #%'$ #%&$ #%6$ #%%$ #%-$ ( ) *+, Figure 7. Power Gain Variation versus Frequency MHW1810–1 MHW1810–2 3 ARCHIVE INFORMATION !! η ARCHIVE INFORMATION !" TYPICAL CHARACTERISTICS MHW1810–1 #6 #/$ #& 4 5#$° 7 4 !'° #" 4 %'° #. #%#$ #%!$ #%.$ #%"$ #%'$ #%&$ ( ) *+, #%6$ #%%$ $/" #%-$ $ 5!$ 5#$ Figure 8. P1dB versus Frequency #/!& #/!" #/!! #/!$ #/#% #/#& #/#" #/#! #/#$ #/$% #/$& #/$" #/$! #/$$ #6'$ ARCHIVE INFORMATION 7 $/! #! ## #%$$ $/& $ #$ !$ .$ "$ '$ * ° &$ 6$ %$ -$ Figure 9. Gain Ripple versus Temperature 012 4 #$ #%$$ #%'$ #-$$ ( ) *+, #-'$ !$$$ Figure 10. Input VSWR MHW1810–1 MHW1810–2 4 MOTOROLA RF DEVICE DATA ARCHIVE INFORMATION # #' $/% TYPICAL CHARACTERISTICS MHW1810–2 "" &$ '$ "$ .% .& ." 012 3 #%$' *+, .$ !% !& 012 3 #%%$ *+, !! 5#$ .$ #$ $ 5#$ 5% #' Figure 11. Output Power versus Input Power !% 7 7 5! $ " ! & 012 4 #$ !" % #$ #! #" 012 4 #$ .6 !$ #& #! % 4 5#$° .' 4 !'° .. .# 4 %'° !!6 " #6$$ #%$$ #-$$ !#$$ !$$$ ( ) *+, !!$$ !' #%$$ !.$$ Figure 13. Power Gain versus Frequency #%#$ #%!$ #%.$ #%"$ #%'$ #%&$ ( ) *+, #%6$ #%%$ #%-$ Figure 14. Gain versus Frequency !/$ "! 7 ". 4 5#$° "# η 5" .- .! "$ 4 !'° . 4 %'° .% .6 012 4 #$ .& .' #%$$ 5& Figure 12. Efficiency versus Input Power .& $ #&$$ η 3 #%%$ *+, !$ #$ $ ' 5' "$ #%#$ #%!$ #%.$ #%"$ #%'$ #%&$ #%6$ #%%$ ( ) *+, Figure 15. Efficiency versus Frequency MOTOROLA RF DEVICE DATA #/% 012 4 $/' 20 #$ #/& #/" #/! 4 %'° #/$ $/% 4 !'° $/& $/" 4 5#$° $/! #%-$ $ #%$$ #%#$ #%!$ #%.$ #%"$ #%'$ #%&$ #%6$ #%%$ #%-$ ( ) *+, Figure 16. Power Gain Variation versus Frequency MHW1810–1 MHW1810–2 5 ARCHIVE INFORMATION .! !" ARCHIVE INFORMATION η 012 "! TYPICAL CHARACTERISTICS MHW1810–2 #& #/$ 4 5#$° #'/' $/$/% 4 !'° #" #./' 4 %'° #. $/' $/" $/. $/! ##/' $/# ## #%$$ #%#$ #%!$ #%.$ #%"$ #%'$ #%&$ ( ) *+, #%6$ Figure 17. P1dB versus Frequency #%%$ #%-$ 7 $/& #! $ 5!$ 5#$ $ #$ !$ .$ "$ '$ * ° &$ 6$ %$ -$ Figure 18. Gain Ripple versus Temperature #/' #/" ARCHIVE INFORMATION #!/' $/6 #/. 012 4 #$ #/! #/# #/$ #&'$ #6$$ #6'$ #%'$ #%$$ ( ) *+, #-$$ #-'$ Figure 19. Input VSWR MHW1810–1 MHW1810–2 6 MOTOROLA RF DEVICE DATA ARCHIVE INFORMATION # 7 #' #"/' NOTES MOTOROLA RF DEVICE DATA MHW1810–1 MHW1810–2 7 PACKAGE DIMENSIONS –A– 8 #/ 9* 9 #"/'* #-%!/ !/ 9* 8 +/ ./ 9* * + * + : + + 9/ "/ 9* *9 9 ; / '/ $/$.% $/$$#' *;** ; $/$&. $/$$!' *;** / &/ 9+ * + 99 + 9* 9/ G $/!'$/$#$ B * * A R –S– 1 2 $/!'$/$#$ 3 4 Q * * 2 PL $/#.$/$$' V * W N A H D 4 PL $/!'$/$#$ * * E C –T– SEATING PLANE J F * DIM A B C D E F G H J K N P Q R S V W INCHES MIN MAX #/%-$ #/-#$ #/#6$ #/#-$ $/.'$ $/.6& $/$#% $/$!! $/##' $/#.' $/#6$ #/&$$ #/!&' $/.!' $/.6' $/!!' 555 #/#&' $/$#$ $/#'$ $/#&$ $/&%' $/6$' $/'-% $/&#! $/.&' $/"&' #8 #/ !/ ./ "/ MILLIMETERS MIN MAX "%/$# "%/'# !-/6! .$/!! %/%-/'' $/"& $/'' !/-! ./"! "/.# "$/&" .!/#. %/!' -/'! '/6! 555 !-/'- $/!' ./%# "/$& #6/"$ #6/-$ #'/#% #'/'" -/!6 ##/%# NOTE 3 P K 4 PL $/!'$/$#$ * 4 PL VIEW A–A CASE 301AW–02 ISSUE B Motorola reserves the right to make changes without further notice to any products herein. Motorola makes no warranty, representation or guarantee regarding the suitability of its products for any particular purpose, nor does Motorola assume any liability arising out of the application or use of any product or circuit, and specifically disclaims any and all liability, including without limitation consequential or incidental damages. “Typical” parameters which may be provided in Motorola data sheets and/or specifications can and do vary in different applications and actual performance may vary over time. All operating parameters, including “Typicals” must be validated for each customer application by customer’s technical experts. Motorola does not convey any license under its patent rights nor the rights of others. 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MOTOROLA and the logo are registered in the US Patent & Trademark Office. All other product or service names are the property of their respective owners. E Motorola, Inc. 2002. How to reach us: USA/EUROPE/Locations Not Listed: Motorola Literature Distribution; P.O. Box 5405, Denver, Colorado 80217. 1–303–675–2140 or 1–800–441–2447 JAPAN: Motorola Japan Ltd.; SPS, Technical Information Center, 3–20–1, Minami–Azabu. Minato–ku, Tokyo 106–8573 Japan. 81–3–3440–3569 ASIA/PACIFIC: Motorola Semiconductors H.K. Ltd.; Silicon Harbour Centre, 2 Dai King Street, Tai Po Industrial Estate, Tai Po, N.T., Hong Kong. 852–26668334 Technical Information Center: 1–800–521–6274 HOME PAGE: http://www.motorola.com/semiconductors/ MHW1810–1 MHW1810–2 8 ◊ MHW1810/D MOTOROLA RF DEVICE DATA