PLG01 SJM | Alldatasheet
Document overview
- Manufacturer or author: Provided By ALLDATASHEET.COM(FREE DATASHEET DOWNLOAD SITE)
- PDF pages: 8
Technical content
Features
- 1000 –2500 MHz
- Gain 28.9 dB @ 1575MHz
- NF 0.92 dB @ 1575MHz
- P1dB 14.5 dBm@ 1575MHz
- OIP3 13.6 dBm@ 1575MHz
- Lead-free / Green / compliant SOT-363 Package
Applications
- High Gain GPS (BEIDOU, GLONASS, GALILEO) Receivers
- ISM and WiMAX LNAs
- WLAN 1) Operation of this device above any of these parameters may cause permanent damage. 2) MTTF is more than 100 years. Functional Diagram RF IN 3 RF OUT 6 Bias GND4 1,2,5 ESD/MSL 1 ESD sensitive device. Observe handling precautions.
2 HBM: Class 1C , JS-001-2014
3 CDM: Class C3 , JESD22-C101F
4 MSL 3, J-STD-020
http://www.prewell.com 2 Low Noise Amplifier for GPS SJM PREWELL PLG01 Productsand product information are subject to change without notice.Version 0.3 RF IN RF OUT 3. 3 pF 33 pF 68 nH Vdd 3. 9 nH 6. 8 nH 10nF 1 uF 10 uF (Tantal) 1000 1050 1100 1150 1200 1250 1300 1350 1400 1450 0.0 0.5 1.0 1.5 2.0 2.5 3.0 25℃ NF (dB) Frequency (MHz) NF vs. Frequency 1000 1050 1100 1150 1200 1250 1300 1350 1400 1450 -35 -30 -25 -20 -15 -10 25℃ -40℃ 85℃ S22 (dB) Frequency (MHz) Output Reurn Loss 1000 1050 1100 1150 1200 1250 1300 1350 1400 1450 -35 -30 -25 -20 -15 -10 25℃ -40℃ 80℃ S11 (dB) Frequency (MHz) Input Reurn Loss 1100 1150 1200 1250 1300 1350 25℃ -40℃ 85℃ P1dB (dBm) Frequency (MHz) P1dB Vs. Frequency P1dB vs. FrequencyNF vs. Frequency 1000 1050 1100 1150 1200 1250 1300 1350 1400 1450 25℃ -40℃ 85℃ S21 (dB) Frequency (MHz) Gain Vs. Frequency Parameters Units Frequency (MHz) 1100 1250 1350 S21 dB 33.3 31.9 30.8 S11 dB -21.8 -25.6 -21.3 S22 dB -18.2 -23.2 -21.9 P1dB dBm 14.9 14.2 13.8 OIP3 @ -10dBm dBm 15.0 15.2 15.0 NF dB 1.17 0.97 0.94 Typical RF Performance for 1250MHz Tuned Application Circuit (Vdd=3V) Output Return Loss Gain vs. Frequency Input Return Loss
http://www.prewell.com 3 Low Noise Amplifier for GPS SJM PREWELL PLG01 Productsand product information are subject to change without notice.Version 0.3 1100 1150 1200 1250 1300 1350 25º C -40º C 85º C OIP3 (dBm) Frequency (MHz) OIP3 Vs. Frequency -10 Gain Output Power Output power(dBm) / Gain (dB) Input Power (dBm) Output Power / Gain vs Input Power @ 1250MHz Output Power / Gain vs. Input Power @ 1250MHz 0 1 2 3 4 5 6 25℃ Id (mA) Vd (V) Id vs. Vd
1250 MHz
OIP3 (dBm) Output Power (dBm) OIP3 Vs. Output Power OIP3 vs. Frequency OIP3 vs. Output Power Id vs. Vd
http://www.prewell.com 4 Low Noise Amplifier for GPS SJM PREWELL PLG01 Productsand product information are subject to change without notice.Version 0.3 RF IN RF OUT 33 pF 33 pF 33 nH Vdd 6. 8 nH 4. 7 nH 10nF 1 uF 10 uF (Tantal) 1400 1450 1500 1550 1600 1650 1700 1750 1800 0.0 0.5 1.0 1.5 2.0 2.5 3.0 25℃ NF (dB) Frequency (MHz) NF vs. Frequency 1300 1400 1500 1600 1700 1800 1900 -35 -30 -25 -20 -15 -10 25℃ -40℃ 85℃ S11 (dB) Frequency (MHz) Input Reurn Loss 1300 1400 1500 1600 1700 1800 1900 -35 -30 -25 -20 -15 -10 25℃ -40℃ 85℃ S22 (dB) Frequency (MHz) Output Reurn Loss Input Return Loss 1400 1450 1500 1550 1600 1650 1700 1750 1800 25º C -40º C 85º C P!dB (dBm) Frequency (MHz) P1dB Vs. Frequency P1dB vs. FrequencyNF vs. Frequency 1300 1400 1500 1600 1700 1800 1900 25º C -40º C 85º C S21 (dB) Frequency (MHz) Gain Vs. Frequency Parameters Units Frequency (MHz) 1400 1575 1600 1700 1800 Typical RF Performance for 1575MHz Tuned Application Circuit (Vdd=3V) Output Return Loss Gain vs. Frequency
http://www.prewell.com 5 Low Noise Amplifier for GPS SJM PREWELL PLG01 Productsand product information are subject to change without notice.Version 0.3
1575 MHz
OIP3 (dBm) Output power (dBm) OIP3 Vs. Output Power 1400 1450 1500 1550 1600 1650 1700 1750 1800 25º C -40º C 85º C OIP3 (dBm) Frequency (MHz) OIP3 Vs. Frequency -10 Gain Output Power Output power(dBm) / Gain (dB) Input Power (dBm) Output Power / Gain vs Input Power @ 1575MHz OIP3 vs. Frequency OIP3 vs. Output Power 0 1 2 3 4 5 6 25℃ Id (mA) Vd (V) Id vs. Vd Id vs. VdOutput Power / Gain vs. Input Power @ 1575MHz
http://www.prewell.com 6 Low Noise Amplifier for GPS SJM PREWELL PLG01 Productsand product information are subject to change without notice.Version 0.3 RF IN RF OUT 3 pF 33 pF 8.2 nH 10nF Vdd 3.3 nH 2. 7 nH 1 uF 10 uF (Tantal) 2100 2200 2300 2400 2500 2600 2700 2800 0.0 0.5 1.0 1.5 2.0 2.5 3.0 25℃ NF (dB) Frequency (MHz) NF vs. Frequency 2100 2200 2300 2400 2500 2600 2700 2800 -35 -30 -25 -20 -15 -10 25℃ -40℃ 85℃ S22 (dB) Frequency (MHz) Output Reurn Loss 2100 2200 2300 2400 2500 2600 2700 2800 -35 -30 -25 -20 -15 -10 25℃ -40℃ 85℃ S11 (dB) Frequency (MHz) Input Reurn Loss 2200 2250 2300 2350 2400 2450 2500 2550 2600 2650 2700 25℃ -40℃ 85℃ P1dB (dBm) Frequency (MHz) P1dB vs Frequency 2100 2200 2300 2400 2500 2600 2700 2800 25℃ -40℃ 85℃ S21 (dB) Frequency (MHz) Gain Vs. Frequency Parameters Units Frequency (MHz) 2400 2450 2500 S21 dB 22.4 22.0 21.7 S11 dB -22.1 -22.4 -22.5 S22 dB -16.7 -17.1 -17.2 P1dB dBm 13.5 13.1 13.5 OIP3 @ -10dBm dBm 13.5 13.3 13.2 NF dB 1.06 1.06 1.07 Typical RF Performance for 2450MHz Tuned Application Circuit (Vdd=3V) Input Return Loss Output Return Loss Gain vs. Frequency P1dB vs. FrequencyNF vs. Frequency
http://www.prewell.com 7 Low Noise Amplifier for GPS SJM PREWELL PLG01 Productsand product information are subject to change without notice.Version 0.3 -10 Gain Output Power Output power(dBm) / Gain (dB) Input Power (dBm) Output Power / Gain vs Input Power @ 2450MHz
2450 MHz
OIP3 (dBm) Output power (dBm) OIP3 Vs. Output Power 2200 2250 2300 2350 2400 2450 2500 2550 2600 2650 2700 25º C -40º C 85º C OIP3 (dBm) Frequency (MHz) OIP3 Vs. Frequency OIP3 vs. Frequency OIP3 vs. Output Power 0 1 2 3 4 5 6 25℃ Id (mA) Vd (V) Id vs. Vd Id vs. VdOutput Power / Gain vs. Input Power @ 2450MHz
http://www.prewell.com 8 Low Noise Amplifier for GPS SJM PREWELL PLG01 Productsand product information are subject to change without notice.Version 0.3 0.15~0.2 O O G 1 Product Code Optional (Year Code or Blank) Optional(ICC) Lead-free /RoHS Compliant / Green SOT-363 Package Outline Mounting Instructions 1 Use a large ground pad area with many plated through-holes as shown. 2 We recommend 1 ozcopper minimum. 3 Measurement for our data sheet was made on 0.8mm thick FR-4 Board 2 layer. 4 RF trace width depends on the board material and construction. 5 Add mounting screws near the part to fasten the board to a heatsink. 6 Add as much copper as possible to inner and outer layers near the part to ensure optimal thermal performance. Land Pattern Evaluation Board Layout (25x30) SYMBOL MIN. MAX. E 1.15 1.35 D 1.85 2.25 HE 1.95 2.30 A 0.80 1.10 A2 0.70 1.00 A1 0.00 0.10 e 0.65 BSC b 0.15 0.40 c 0.08 0.25 L 0.21 0.26 Package Outline f .23 Plated Thru Ground Vias 0.8 mm (0.032) inch 2.08 (0.0832)0.8 (0.032) 0.94 (0.0376) 3.38 (0.1352) 2.68 (0.1072) 1.3 (0.052) 0.38 (0.0152)