AWL GHz Wireless LAN Power Amplifier Module PRELIMINARY DATA SHEET - Rev 1.4

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1 FEATURES InGaP HBT Technology < 3.5% EVM at +25 m Output Power (+5 V Supply), with g Modulation at 54 Mbps Data Rate < 3% EVM at +21 m Output Power (+3.3 V Supply), with g Modulation at 54 Mbps Data Rate +3 V to +5 V Supply High Efficiency RoHSCompliant 4 mm x 4 mm x 1.5 mm 50Ω Matched RF Ports for Reduced External Component Count MSL3 Rating APPLICATIONS g/b WLAN Stations and Client Cards g/b WLAN Access Points PRODUCT DESCRIPTION The ANADIGICS AWL6153 WLAN Power Amplifier is an easy to use module that delivers high levels of linearity and efficiency for high data rate applications. Designed for the 2.4 GHz WLAN standards, it supports the 54 Mbps data rates specified in IEEE g. Requiring a single +3 V to +5 V supply and a reference voltage input, the AWL6153 reduces system power consumption by offering a low leakage current while the amplifier is shut down. AWL GHz Wireless LAN Power Amplifier Module PRELIMINARY DATA SHEET Rev 1.4 M7 Package Pin 4 mm x 4 mm x 1.5 mm No external circuits are required for RF impedance matching, thus reducing component costs and making it easy to incorporate the device into new designs. The AWL6153 is manufactured using an advanced InGaP HBT technology that offers stateoftheart reliability, temperature stability and ruggedness. It is offered in a 4 x 4 x 1.5 mm surface mount module optimized for a 50Ω system. VREF Bias Control RFIN Matching Network Matching Network RFOUT Figure 1: Module Block Diagram

2 1 RFIN RFOUT N/C 4 7 VREF 5 6 Figure 2: Pinout (Xray Top View) Table 1: Pin Description PIN NAME DESCRIPTION 1 2 RFIN 3 4 N/ C 5 VREF RF O UT 9 Supply Voltage RF Inpu t Ground No Connectio n Reference Voltage Ground Ground RF Output Ground Supply Voltage 2 PRELIMINARY DATA SHEET Rev 1.4

3 ELECTRICAL CHARACTERISTICS Table 2: Absolute Minimum and Maximum Ratings PARAMETER MIN MAX UNIT Supply Voltage Reference RF Input Power (VC C) V Voltage (VR EF) V (PI N) + m Storage Temperature C Reflow Temperature C 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 PARAMETER MIN TYP MAX UNIT COMMENTS Operating Frequency (f) MHz Supply Voltage (VC C) V Reference Voltage (V R EF) V PA"on" PA"shut down" RF Output Power (P O UT) m = +3.3 V, g modulatio n = +5.0 V, g modulatio n = +3.3 V, b modulatio n = +5.0 V, b modulatio n Case Temperature (TC) C The device may be operated safely over these conditions; however, parametric performance is guaranteed only over the conditions defined in the electrical specifications. PRELIMINARY DATA SHEET Rev 1.4 3

4 Table 4: Electrical Specifications g Modulation, 54 Mbps Data Rate (TC = +25 C, = +3.3 V, VREF = V, POUT = +21 m, 50 Ω system) PARAMETER MIN TYP MAX UNIT COMMENTS Ripple 0. 3 within each channe l Constellation RMS Error 3 30 % S pectrum Mask at ± 11 MHz Offset 20 S pectrum Mask at ± 20 MHz Offset 28 S pectrum Mask at ± 30 MHz Offset 40 Consumption V REF ma Leakage < µa VREF = 0 V Input Return Loss < 50 Ω impedance P m CW tone Harmonics 2fo 3fo c On Time µ sec Output power achieves 90% ( 1) o f steadystate level, VREF toggled from 0 V to V Maximum load mismatch stress with no permanent degradation or failure :1 VSWR = +5.5 V Note: (1) Steadystate output is defined as a power level that is consistent or changing at a rate less than 0.05 /µsec. 4 PRELIMINARY DATA SHEET Rev 1.4

5 Table 5: Electrical Specifications g Modulation, 54 Mbps Data Rate (TC = +25 C, = +5 V, VREF = V, POUT = +25 m, 50 Ω system) PARAMETER MIN TYP MAX UNIT COMMENTS Ripple 0. 3 within each channe l Constellation RMS Error % S pectrum Mask at ± 11 MHz Offset 20 S pectrum Mask at ± 20 MHz Offset 28 S pectrum Mask at ± 30 MHz Offset 40 Consumption V REF ma Leakage < µa VREF = 0 V Input Return Loss < 50 Ω impedance P m CW tone Harmonics 2fo 3fo c On Time µ sec Output power achieves 90% ( 1) o f steadystate level, VREF toggled from 0 V to V Maximum load mismatch stress with no permanent degradation or failure :1 VSWR = +5.5 V Note: (1) Steadystate output is defined as a power level that is consistent or changing at a rate less than 0.05 /µsec. PRELIMINARY DATA SHEET Rev 1.4 5

6 Table 6: Electrical Specifications b Modulation (TC = +25 C, = +3.3 V, VREF = V, POUT = +25 m, 50 Ω system) PARAMETER MIN TYP MAX UNIT COMMENTS First Sidelobe Power 30 c Second Sidelobe Power 50 c Gaussian Filtering Gaussian Filtering Consumption V REF ma Leakage < µa VREF = 0 V Input Return Loss < 50 Ω impedance P m CW tone Harmonics 2fo 3fo c CW Input On Time µ sec Output power achieves 90% ( 1) o f steadystate level, VREF toggled from 0 V to V Maximum load mismatch stress with no permanent degradation or failure :1 VSWR = +5.5 V Note: (1) Steadystate output is defined as a power level that is consistent or changing at a rate less than 0.05 /µsec. 6 PRELIMINARY DATA SHEET Rev 1.4

7 Table 7: Electrical Specifications b Modulation (TC = +25 C, = +5 V, VREF = V, POUT = +28 m, 50 Ω system) PARAMETER MIN TYP MAX UNIT COMMENTS First Sidelobe Power 30 c Second Sidelobe Power 50 c Gaussian Filtering Gaussian Filtering Consumption V REF ma Leakage < µa VREF = 0 V Input Return Loss < 50 Ω impedance P m CW tone Harmonics 2fo 3fo c CW Input On Time µ sec Output power achieves 90% ( 1) o f steadystate level, VREF toggled from 0 V to V Maximum load mismatch stress with no permanent degradation or failure :1 VSWR = +5.5 V Note: (1) Steadystate output is defined as a power level that is consistent or changing at a rate less than 0.05 /µsec. PRELIMINARY DATA SHEET Rev 1.4 7

8 PERFORMANCE DATA Figure 3: EVM and vs. Frequency (T A = +25 C, V CC = +3.3 V, V REF = V, P OUT = +21 m, 54 Mbps g) 36 Figure 4: EVM and vs. Frequency (T A = +25 C, V CC = +5 V, V REF = V, P OUT = +25 m, 54 Mbps g) 36 8 EVM 34 8 EVM 34 EVM (%) () EVM (%) () Frequency (MHz) Frequency (MHz) Figure 5: and Consumption vs. Output Power (T A = +25 C, V CC = +3.3 V, V REF = V, f = 2472 MHz, 54 Mbps g) Figure 6: and Consumption vs. Output Power (T A = +25 C, V CC = +5 V, V REF = V, f = 2472 MHz, 54 Mbps g) () (ma) () (ma) Output Power (m) Output Power (m) 8 PRELIMINARY DATA SHEET Rev 1.4

9 Figure 7: and Consumption vs. V REF (T A = +25 C, V CC = +3.3 V, f = 2472 MHz, P OUT = +21 m, 54 Mbps g) Figure 8: and Consumption vs. V REF (T A = +25 C, V CC = +5 V, f = 2472 MHz, P OUT = +25 m, 54 Mbps g) () (ma) () (ma) Vref (V) Vref (V) Figure 9: EVM vs. VREF (T A = +25 C, f = 2472 MHz, 54 Mbps g) Figure : EVM vs. Output Power (T A = +25 C, V REF = V, f = 2472 MHz, 54 Mbps g) 8 Vcc = +3.3V, Pout = +21 m Vcc = +5 V, Pout = +25 m 8 Vcc = +3.3V Vcc=+5V EVM (%) 6 4 EVM (%) Vref (V) Output Power (m) PRELIMINARY DATA SHEET Rev 1.4 9

10 APPLICATION INFORMATION The only external components required for the AWL6153 are bypass capacitors for the supply (see Figure 11). When VREF is pulled down to 0 V, the amplifier is placed in a lowcurrent shut down mode. 1 RF IN 22uF tantalum (optional) VREF 0.01uF x 5 RFIN N/C VREF RFOUT RF OUT at slug Figure 11: Application Circuit PRELIMINARY DATA SHEET Rev 1.4

11 PACKAGE OUTLINE Figure 12: M7 Package Outline Pin 4 mm x 4 mm x 1.5 mm PRELIMINARY DATA SHEET Rev

12 ORDERING INFORMATION ORDER NUMBER TEMPERATURE RANGE PACKAGE DESCRIPTION COMPONENT PACKAGIN G AWL6153M7UQ1 25 C to +85 C Pin 4 mm x 4 mm x 1.5 mm 1,000 piece Tape and Reel AWL6153M7UP0 25 C to +85 C Pin 4 mm x 4 mm x 1.5 mm 1999 Piece Tube AWL6153M7UP6 25 C to +85 C Pin 4 mm x 4 mm x 1.5 mm 1999 Piece Tray AWL6153M7UP8 25 C to +85 C Pin 4 mm x 4 mm x 1.5 mm 2,500 piece Tape and Reel EVA6153M7U 25 C to +85 C Pin 4 mm x 4 mm x 1.5 mm 1 Piece Evaluation Board ANADIGICS, Inc. 141 Mount Bethel Road Warren, New Jersey 07059, U.S.A. Tel: +1 (908) Fax: +1 (908) URL: Mktg@anadigics.com IMPORTANT NOTICE 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. 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. 12 PRELIMINARY DATA SHEET Rev 1.4

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