PG520 SJM | Alldatasheet
Document overview
- Manufacturer or author: Provided By ALLDATASHEET.COM(FREE DATASHEET DOWNLOAD SITE)
- PDF pages: 5
Technical content
Features
- 400 to 1000MHz
- Gain 15.4dB @ 700MHz
- P1dB 17.3dBm @ 700MHz
- OIP3 19.6dBm @ 700MHz
- Lead-free / Green /
- Compliant SOT-363 Package
Description
The PG520 is a high performancepHEMTMMIC Amplifier. The PG520featuresarehighgain,lowpowerconsumption,highpower efficiency,widebandoperationand high reliability. The PG520 providesstable performanceover wide temperaturerange by integratedtemperaturecompensationcircuit. The PG520 operates froma singlevoltagesupplyand no biasresistoris required. It has integratedESD protectiondiodethatprovideshighESD protection performance. Thisdeviceis a generalpurposebufferamplifierthat offershigh dynamicrangein a low cost surface-mountedplastic SOT-363package.Alldevicesare100% RFandDCtested. Specification s 1) Test Conditions : T=25°C, Supply Voltage=3V, 50ohm System 2) OIP3 measured with two tones at an output power of 0dBm/tone separated by 1MHz Absolute Maximum Ratings Parameter Rating Unit Device Voltage 10 V Device Current 45 mA RF Power Input 17 dBm Storage Temperature -55 to 150 °C Ambient Operating Temperature -40 to 85 °C Junction Temperature 187 °C ESD/MSL Functional Diagram 1) Stresses above the maximum values listed have may cause permanent damage to the device. 2) MTTF is more than 100 years.
Applications
- Mobile
- Microphone receiver/transmitter
- Repeater
- Base station
- Automotive
- Military Parameter Units Min. Typ. Max. TestFrequency MHz 700 S21 dB 15.4 S11 dB -12.7 S22 dB -33.5 OIP3 2) dBm 19.6 P1dB dBm 17.3 NF dB 1.42 V / I V / mA 3V / 8mA Rth °C/W 72 RF IN GND 1,2,4,5 RF OUT / Bias 6
http://www.prewell.com 2 Gain Block SJM PREWELL PG520 Products and product information are subject to change without notice.Version 16 -5 -3 -1 1 3 5 OIP3 (dBm) Output Power (dBm) 400MHz 700MHz 1000MHz 400 500 600 700 800 900 1000 P1 (dBm) Frequency (MHz) 25°C -40°C 85°C P1dB vs. Frequency 400 500 600 700 800 900 1000 -35 -30 -25 -20 -15 -10 S22 (dB) Frequency (MHz) 25°C -40°C 85°COutput Return Loss vs. Frequency 400 500 600 700 800 900 1000 -20 -16 -12 S11 (dB) Frequency (MHz) 25°C -40°C 85°C Input Return Loss vs. Frequency 400 500 600 700 800 900 1000 S21 (dB) Frequency (MHz) 25°C -40°C 85°C Gain vs. Frequency 400 500 600 700 800 900 1000 OIP3 (dBm) Frequency (MHz) 25°C -40°C 85°C Typical RF Performance Application Circuit OIP3 vs. Output PowerOIP3 vs. Frequency Parameters Units 400MHz 700MHz 1000MHz S21 dB 15.6 15.4 14.7 S22 dB -14.6 -33.5 -22.6 P1dB dBm 17.1 17.3 17.3 OIP3 2) dBm 19.1 19.6 20.5 NF dB 1.32 1.42 1.39 Note 1. Measurement for our datasheet was made on 0.8mm thick FR-4 Board and 50Ω microstrip line Note 2. Increasing supply voltage also increases the current Note 3. It is recommended to use RBias for more than 6V 1) Test Conditions : T=25°C, Supply Voltage=3V, 50Ω System 2) OIP3 is measured with two tones, 1MHz Spacing, 0dBm per Tone at Output RF IN 1nF 39nH 1nF Vdd RF OUT2.2nF RBias 3.9nH
http://www.prewell.com 3 Gain Block SJM PREWELL PG520 Products and product information are subject to change without notice.Version 16 -20 -15 -10 -5 0 5 10 Output Power (dBm) / Gain (dB) Input Power (dBm) Output P1dB Gain -20 -15 -10 -5 0 5 10 Output Power (dBm) / Gain (dB) Input Power (dBm) Output P1dB Gain -20 -15 -10 -5 0 5 10 Output Power (dBm) / Gain (dB) Input Power (dBm) Output P1dB Gain -20 -15 -10 -5 0 5 10 Output Power (dBm) / Gain (dB) Input Power (dBm) Output P1dB Gain -20 -15 -10 -5 0 5 10 Output Power (dBm) / Gain (dB) Input Power (dBm) Output P1dB Gain -20 -15 -10 -5 0 5 10 Output Power (dBm) / Gain (dB) Input Power (dBm) Output P1dB Gain -20 -15 -10 -5 0 5 10 Output Power (dBm) / Gain (dB) Input Power (dBm) Output P1dB Gain Id vs. Vd Output Power / Gain vs. Input Power @ 700MHz Output Power / Gain vs. Input Power @ 800MHz Output Power / Gain vs. Input Power @ 400MHz Output Power / Gain vs. Input Power @ 500MHz Output Power / Gain vs. Input Power @ 600MHz Output Power / Gain vs. Input Power @ 900MHz Output Power / Gain vs. Input Power @ 1000MHz 0 1 2 3 4 5 Id (mA) Vd (V) 25°C
http://www.prewell.com 4 Gain Block SJM PREWELL PG520 Products and product information are subject to change without notice.Version 16 -20 -15 -10 -5 0 5 10 -10 Output Power (dBm) / Current (mA) Input Power (dBm) Current Output power -20 -15 -10 -5 0 5 10 -10 Output Power (dBm) / Current (mA) Input Power (dBm) Current Output power -20 -15 -10 -5 0 5 10 -10 Output Power (dBm) / Current (mA) Input Power (dBm) Current Output power -20 -15 -10 -5 0 5 10 -10 Output Power (dBm) / Current (mA) Input Power (dBm) Current Output power -20 -15 -10 -5 0 5 10 -10 Output Power (dBm) / Current (mA) Input Power (dBm) Current Output power -20 -15 -10 -5 0 5 10 -10 Output Power (dBm) / Current (mA) Input Power (dBm) Current Output power -20 -15 -10 -5 0 5 10 -10 Output Power (dBm) / Current (mA) Input Power (dBm) Current Output power P1dB vs. Current @ 400MHz P1dB vs. Current @ 500MHz P1dB vs. Current @ 1000MHz P1dB vs. Current @ 600MHz P1dB vs. Current @ 700MHz P1dB vs. Current @ 800MHz P1dB vs. Current @ 900MHz 400 500 600 700 800 900 1000 NF (dB) Frequency (MHz) 25°C NF vs. Frequency
http://www.prewell.com 5 Gain Block SJM PREWELL PG520 Products and product information are subject to change without notice.Version 16 Mounting Instructions 1 Use a large ground pad area with many plated through-holes as shown. 2 We recommend 1 oz copper minimum. 3 Measurement for our data sheet was made on 0.8mm thick FR-4 Board. 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. Lead-free /RoHS Compliant / Green SOT-363 Package Outline Land Pattern Evaluation Board Layout (40x40) Package Outline f .23 Plated Thru Ground Vias 0.8 (0.032) 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) REF. DIMENSIONS (mm) Min. Max. E 1.15 1.35 D 1.85 2.25 HE 2.00 2.30 A 0.80 1.00 A2 0.80 0.91 A1 0.00 0.09 e 0.65 BSC b 0.15 0.30 c 0.08 0.25 L 0.21 0.41