PG611 SJM | Alldatasheet
Document overview
- Manufacturer or author: Provided By ALLDATASHEET.COM(FREE DATASHEET DOWNLOAD SITE)
- PDF pages: 9
Technical content
Features
- 5 to 4000MHz
- Gain 23.9dB @ 70MHz
- P1dB 17.6dBm @ 900MHz
- OIP3 33.9dBm @ 70MHz
- Lead-free / Green / compliant SOT-89 Package
Applications
1 ESD sensitive device. Observe handling precautions.
2 HBM: Class 1C, JESD22-A114
3 CDM: Class C3 , JESD22-C101F
4 MSL 3, J-STD-020
- Base station / Repeater / Mobile / Automotive / Military – FDD-LTE, TD-LTE, TDS-CDMA, CDMA, WCDMA, WiMAX, PCS, GSM, GPS, GPRS, TETRA
- IoT / Broadcasting / WLAN – FM, DMB, DVB, ISM Functional Diagram RF IN GND 2,4 RF OUT / Bias
Description
1) Stresses above the maximum values listed have may cause permanent damage to the device. 2) MTTF is more than 100 years.
http://www.prewell.com 2 Wideband Gain Block SJM PREWELL PG611 Products and product information are subject to change without notice. Version 0.9 S21 (dB) Frequency (GHz) 25°C -40°C 85°C -50 -40 -30 -20 -10 S11 (dB) Frequency (GHz) 25°C -40°C 85°C -50 -40 -30 -20 -10 S22 (dB) Frequency (GHz) 25°C -40°C 85°C OIP3 (dBm) Frequency (GHz) 25°C -40°C 85°C -2 0 2 4 6 8 OIP3 (dBm) Output Power (dBm) OIP3 @ 900MHz OIP3 @ 1900MHz OIP3 @ 2140MHz OIP3 @ 2600MHz Parameters Units Frequency (MHz) 900 1500 1900 2100 2300 2600 S11 dB -30 -23 -18 -16 -14 -12 S22 dB -23 -14 -13 -13 -13 -13 Typical RF Performance for 1.9GHz Tuned Application Circuit Supply Bias Voltage = 5V, Current= 62mA Input Return Loss Output Return Loss Gain vs. Frequency OIP3 vs. Frequency OIP3 vs. Output Power RF IN RF OUT100pF 100pF 33nH 56pF 1uF
http://www.prewell.com 3 Wideband Gain Block SJM PREWELL PG611 Products and product information are subject to change without notice. Version 0.9 -3 0 3 6 9 -60 -55 -50 -45 -40 -35 -30 ACLR (dBc) Output Power (dBm) 25°C -40°C 85°C 0 1 2 3 4 5 6 7 8 120 160 200 Id (mA) Vd (V) 25°C P1dB (dBm) Frequency (GHz) 25°C -40°C 85°C NF (dB) Frequency (GHz) 25°C -20 -15 -10 -5 0 5 10 Output Power (dBm) / Gain (dB) Input Power (dBm) Gain Output Power -20 -15 -10 -5 0 5 10 Output Power (dBm) / Gain (dB) Input Power (dBm) Gain Output Power -20 -15 -10 -5 0 5 10 Output Power (dBm) / Gain (dB) Input Power (dBm) Gain Output Power -20 -15 -10 -5 0 5 10 Output Power (dBm) / Gain (dB) Input Power (dBm) Gain Output Power P1dB vs. Frequency NF vs. Frequency Output Power / Gain vs Input Power @ 900MHz Output Power / Gain vs Input Power @ 1900MHz Output Power / Gain vs Input Power @ 2140MHz Output Power / Gain vs Input Power @ 2600MHz WCDMA ACLR vs. Output Power @ 1850MHz 3GPP WCDMA 6FA, Test Model5, 5MHz offset Id vs. Vd
http://www.prewell.com 4 Wideband Gain Block SJM PREWELL PG611 Products and product information are subject to change without notice. Version 0.9 -2 1 4 7 10 -60 -55 -50 -45 -40 -35 -30 LTE (dBc) Output Power (dBm) 25°C -40°C 85°C 0 3 6 9 12 -60 -55 -50 -45 -40 -35 -30 LTE (dBc) Output Power (dBm) 25°C -40°C 85°C 1 4 7 10 13 -60 -55 -50 -45 -40 -35 -30 LTE (dBc) Output Power (dBm) 25°C -40°C 85°C -3 0 3 6 9 -60 -55 -50 -45 -40 -35 -30 ACLR (dBc) Output Power (dBm) 25°C -40°C 85°C WCDMA ACLR vs. Output Power @ 2140MHz 3GPP WCDMA 6FA, Test Model5, 5MHz offset LTE ACLR vs. Output Power @ 900MHz DL20M_E31.WFM 1FA, 20MHz offset LTE ACLR vs. Output Power @ 1850MHz DL20M_E31.WFM 1FA, 20MHz offset LTE ACLR vs. Output Power @ 2650MHz DL20M_E31.WFM 1FA, 20MHz offset
http://www.prewell.com 5 Wideband Gain Block SJM PREWELL PG611 Products and product information are subject to change without notice. Version 0.9 -25 -20 -15 -10 S11 (dB) Frequency (GHz) 25°C -40°C 85°C S21 (dB) Frequency (GHz) 25°C -40°C 85°C -20 -16 -12 S22 (dB) Frequency (GHz) 25°C -40°C 85°C OIP3 (dBm) Frequency (GHz) 25°C -40°C 85°C P1dB (dBm) Frequency (GHz) 25°C -40°C 85°C Parameters Units Frequency (MHz) 70 140 250 500 S21 dB 23.9 23.8 23.5 23.4 S11 dB -16 -18 -19 -18 S22 dB -14 -16 -17 -15 P1dB dBm 19.3 20.0 20.2 16.9 OIP3 @ 3dBm dBm 33.8 33.4 32.7 32.1 NF dB 3.0 3.0 3.1 3.2 Typical RF Performance for 50MHz-500MHz Tuned Application Circuit Supply Bias Voltage = 5V, Current= 62mA Input Return Loss Output Return Loss Gain vs. Frequency OIP3 vs. Frequency P1dB vs. Frequency RF IN RF OUT10nF 10nF 820nH 10nF 1uF
http://www.prewell.com 6 Wideband Gain Block SJM PREWELL PG611 Products and product information are subject to change without notice. Version 0.9 NF (dB) Frequency (GHz) 25°C NF vs. Frequency
http://www.prewell.com 7 Wideband Gain Block SJM PREWELL PG611 Products and product information are subject to change without notice. Version 0.9 S21 (dB) Frequency (GHz) 25°C -40°C 85°C -30 -25 -20 -15 -10 S11 (dB) Frequency (GHz) 25°C -40°C 85°C -30 -25 -20 -15 -10 S22 (dB) Frequency (GHz) 25°C -40°C 85°C OIP3 (dBm) Frequency (GHz) 25°C -40°C 85°C -2 0 2 4 6 8 OIP3 (dBm) Output Power (dBm) OIP3 @ 3500MHz Parameters Units Frequency (MHz) 3200 3400 3600 3800 S21 dB 20.2 19.8 19.0 18.6 S11 dB -21 -23 -18 -15 S22 dB -14 -18 -20 -16 P1dB dBm 16.5 15.8 14.8 13.9 OIP3 @ 3dBm dBm 28.1 27.5 26.6 26.0 NF dB 3.9 3.9 4.1 3.9 Typical RF Performance for 3.5GHz Tuned Application Circuit Supply Bias Voltage = 5V, Current= 62mA Input Return Loss Output Return Loss Gain vs. Frequency OIP3 vs. Frequency OIP3 vs. Output Power RF IN RF OUT20pF 20pF 33nH 10nF 1uF 0.3pF
http://www.prewell.com 8 Wideband Gain Block SJM PREWELL PG611 Products and product information are subject to change without notice. Version 0.9 -7 -4 -1 2 5 -60 -55 -50 -45 -40 -35 -30 LTE (dBc) Output Power (dBm) 25°C -40°C 85°C P1dB (dBm) Frequency (GHz) 25°C -40°C 85°C NF (dB) Frequency (GHz) 25°C -20 -15 -10 -5 0 5 10 Output Power (dBm) / Gain (dB) Input Power (dBm) Gain Output Power Output Power / Gain vs Input Power @ 3500MHz LTE ACLR vs. Output Power @ 3500MHz DL20M_E31.WFM 2FA, 20MHz offset P1dB vs. Frequency NF vs. Frequency
http://www.prewell.com 9 Wideband Gain Block SJM PREWELL PG611 Products and product information are subject to change without notice. Version 0.9 Lead-free /RoHS Compliant / Green SOT-89 Package Outline Land Pattern Evaluation Board Layout (40 x 40) 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. REF. DIMENSIONS (mm) Min. Max. A 1.40 1.60 B 0.43 0.58 B1 0.36 0.54 C 0.35 0.46 D 4.30 4.70 D1 1.50 1.87 E 2.29 2.70 E1 2.13 2.18 e 1.5 e1 3.0 H 3.43 5.10 L 0.74 1.20 Product Code Lot Number POOOO X X X X