MGA-23003 BOARDCOM | Alldatasheet
Document overview
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- PDF pages: 17
Technical content
Features
- Advanced GaAs E-pHEMT
- 50 Ω all RF ports
- Full performance across entire 3.3-3.8GHz
- 13dB gain attenuation in low power mode with Idsq reduction
- Integrated CMOS compatible pins for shutdown and low power mode
- 3 to 5V supply
- ESD protection all ports above 1000V HBM
- Small size: 3 x 3 x 1 mm
- Stable under all loads or conditions
- -40 °C to +85°C operation
- Integrated DC blocking capacitors for Input and Output pins. At 3.5GHz (BCTRL = 2.8V)
- Gain of 35dB
- PAE of 18%
- Meets ETSI/802.16 masks at 25 dBm Pout, 16QAM WiMAX with 3.3V and 514mA
- 16QAM WiMAX EVM < -31dB (2.8%) at 25dBm
- Low power Idd, 94mA, 25dB gain, 0dBm Pout Device Marking Instruction GND RFIN VCC1 BCTRL GND VCC2 BSPLY BSW PMOD RFOUT N/C N/C ISMN BIAS NETWORK OMNGND GND GND GND MGA-23003 3.3-3.8 GHz WiMAX Power Amplifier (3x3mm) Data Sheet “23003” = Product Code “KA” = Korea ASE “YY” = Year code indicates the year of manufacture “WW” = Workweek code indicates the workweek of manufacture “XXXXX” = Last 5 digit of assembly lot number NC BSPLY BSW PAMOD NC RFOUT GND GND GND VCC2 VCC1 GND GND GNDGND BCTRL RFIN 6 7 8 1314 23003 KAYYWW XXXXX 3mm x 3mm x 1mm TOP VIEW
Table 1. Minimum and Maximum Ratings Table 2. Recommended Operating Range
over the BW of 3.3GHz to 3.8GHz. Table 3. RF Electrical Characteristics
490 Pout=24dBm
Table 4. Evaluation Board Pin Description
1 VCC2
3 B_SPLY
5 VCC1
9 PAMOD
15 B_CTRL
2 VCC2_S
4 GND
6 GND
8 GND
10 GND
12 GND
14 B_SW
16 GND
18 GND
20 GND
- Apply VCC1 and VCC2
- Apply BSPLY
- Apply BCTRL
- Apply BSW
- For HPM Apply PAMOD HI for LPM Apply PAMOD LO
- Apply RF In not to exceed 15dBm Turn off in reverse order
Table 5. Typical Test Conditions
Application Circuit MGA-23003
1 RF In
2 GND
3 GND
4 BCTRL
5 BSPLY
6 BSW
7 PAMOD
100pF0.1uF 100pF 0.1uF 10uF 47uF 10uF Using 3.3V or 5V Supply and tying Vcc1, Vcc2, BSPLY and BCTRL Vbat Vcc1 Vcc2 BSPLY BCTRL 3.3V Example : VBCTRL = *VBAT T R1 + R2 40KΩ2.8V = *3.3V R1 + 40KΩ R1 = 7KΩ R2 = 40KΩ Given : VBCTRL = 2.8V VBAT = 3.3V R2 = 40KΩ R1 = ? 5.0V Example : VBCTRL = *VBAT T R1 + R2 20KΩ2.0V = *5.0V R1 + 20KΩ R1 = 30KΩ R2 = 20KΩ Given : VBCTRL = 2.0V VBAT = 5.0V R2 = 20KΩ R1 = ? Notes: BCTRL regulates the device current, thus R1 and R2 should have good tolerance rating. If available, a voltage regulator is the preferred method of bias. In this example we set R2 at 40KOhm and solve for R1 with simple voltage divider equation. Note this method will cause some leakage current through R2.
Figure 44. Recommended footprint Figure 45. Recommended mask opening
14 GND
Figure 46. Package dimensions
- All units are in millimeters
Ordering Information
Part Number No. of Devices Container MGA-23003-BLKG 100 7" Reel MGA-23003-TR1G 3000 13" Reel Note 1. All dimensions are in millimeters. 2. Dimensions are inclusive of plating. 3. Dimensions are exclusive of mold flash and metal burr. Package Dimensions Pin 1 Dot By Marking 3.00 ± 0.10 3.00 ± 0.10 23003 KAYYWW XXXX
0.64 TYPICAL
1.00 ± 0.10 TOP VIEW SIDE VIEW Device Orientation USER FEED DIRECTION TOP VIEW END VIEW USER FEED DIRECTION COVER TAPE CARRIER TAPE REEL AVAGO 23003 YYWW XXXX AVAGO 23003 YYWW XXXX AVAGO 23003 YYWW XXXX
Tape and Reel Information Size A B 1.5min. C D 20.2min. N 12mm 330 +2.0 /uniF6BB2.0 13.0 +0.5 /uniF6BB0.2 100 +3.0 /uniF6BB0.0 12.4 +3.0 /uniF6BB0.0 16.4 +2.0 /uniF6BB2.0 13.65 +1.75 /uniF6BB0.75 3.40±0.10 1.70±0.10 0.30±0.05 12.00±0.30 5.50±0.05 4.00±0.102.00±0.05 1.75±0.10 8.00±0.10 ø1.50MIN ø1.50 +0.10 /endash.cap0.00 B A N C ø13.0 +0.50 /endash.cap0.20 120° 2.00 10.50
For product information and a complete list of distributors, please go to our web site: www.avagotech.com Avago, Avago Technologies, and the A logo are trademarks of Avago Technologies in the United States and other countries. Data subject to change. Copyright © 2005-2014 Avago Technologies. All rights reserved. AV02-1960EN - March 6, 2014 Handling and Storage Typical SMT Reflow Profile for Maximum Temperature = 260+0/-5°C Profile Feature Sn-Pb Solder Pb-Free Solder Average ramp-up rate (TL to TP) 3°C/sec max 3°C/sec max Preheat – Temperature Min (Tsmin) – Temperature Max (Tsmax) – Time (mon to max) (ts) 100°C 150°C 60-120 sec 100°C 150°C 60-180 sec Tsmax to TL – Ramp-up Rate 3°C/sec max Time maintained above: – Temperature (TL) – Time (TL) 183°C 60-150 sec 217°C 60-150 sec Peak temperature (Tp) 240 +0/-5°C 260 +0/-5°C Time within 5°C of actual Peak Temperature (tp) 10-30 sec 10-30 sec Ramp-down Rate 6°C/sec max 6°C/sec max Time 25°C to Peak Temperature 6 min max 8 min max TIME TEMPERATURE tp t 25°C TO PEAK ts PREHEAT TL TP Tsmax Tsmin tL CRITICAL ZONE TL TO TP RAMP UP RAMP DOWN