PTFA220121M CREE | Alldatasheet

Document overview

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  • PDF pages: 21

Technical content

Features

  • Typical two-carrier WCDMA performance at

2140 MHz, 8 dB P

  • POUT = 33 dBm Avg - A CPR = –45.5 dBc
  • Typical two-carrier WCDMA performance at

877 MHz, 8 dB P

  • POUT = 33 dBm Avg - A CPR = –44.5 dBc
  • Typical CW performance, 2140 MHz, 28 V - POUT = 41.6 dBm - Efficiency = 53.5% - Gain = 15.5 dB
  • Typical CW performance, 877 MHz, 28 V - POUT = 41.8 dBm - Efficiency = 60% - Gain = 19.9 dB
  • Capable of handling 10:1 VSWR @ 28 V, 12 W (CW) output power
  • Integrated ESD protection
  • Excellent thermal stability
  • Pb-free and RoHS compliant -50 -45 -40 -35 -30 -25 -20 -15 -10 33 34 35 36 37 38 39 40 41 42 Efficiency (%) IMD (dBc) Output Power, PEP (dBm) Two-tone Drive-up VDD = 28 V, IDQ = 150 mA, ƒ1 = 876.95 MHz, ƒ 2 = 877.05 MHz Efficiency IMD3 not recommended for new design

4600 Silicon Drive | Durham, NC 27703 | www.wolfspeed.comRev. 11, 2018-08-08 PTFA220121M RF Characteristics (cont.) Two-tone Measurements (not subject to production test – verified by design / characterization in Wolfspeed test fixture) VDD = 28 V, IDQ = 150 mA, POUT = 9.3 W PEP , ƒ = 2140 MHz, tone spacing = 1 MHz Characteristic Symbol Min T yp Max Unit Gain Gps — 16.2 — dB Drain Efficiency hD — 37 — % Intermodulation Distortion IMD — –29.4 — dBc DC Characteristics Characteristic Conditions Symbol Min T yp Max Unit Drain-Source Breakdown Voltage VGS = 0 V, IDS = 10 µA V(BR)DSS 65 — — V Drain Leakage Current VDS = 28 V, VGS = 0 V IDSS — — 1.0 µA On-State Resistance VGS = 10 V, VDS = 0.1 A RDS(on) — 2.01 — W Operating Gate Voltage VDS = 28 V, IDQ = 150 mA VGS 2.0 2.5 3.0 V Gate Leakage Current VGS = 10 V, VDS = 0 V IGSS — — 1.0 µA Maximum Ratings Parameter Symbol Value Unit Drain-Source Voltage VDSS 65 V Gate-Source Voltage VGS –0.5 to +12 V Junction Temperature TJ 175 °C Storage Temperature Range TSTG –40 to +150 °C Thermal Resistance (TCASE = 70°C, 12 W CW) RqJC 3.4 °C/W Moisture Sensitivity Level Level T est Standard P ackage Temperature Unit

3 IPC/JEDEC J-STD-020 260 °C

Ordering Information

Type and Version Order Code Package and Description Shipping PTFA220121M V4 R1K PTFA220121M-V4-R1K PG-SON-10, Molded plastic, SMD Tape & Reel, 1,000 pcs not recommended for new design

4600 Silicon Drive | Durham, NC 27703 | www.wolfspeed.comRev. 11, 2018-08-08 PTFA220121M 29 31 33 35 37 39 41 Drain Efficiency (%) Gain (dB) Output Power (dBm) Two-carrier WCDMA 3GPP VDD = 28 V, IDQ = 150 mA, ƒ = 877 MHz 3GPP WCDMA, P/AR = 8:1, 10 MHz carrier spacing, BW 3.84 MHz Gain Efficiency -50 -45 -40 -35 -30 -25 -20 -15 -10 32 33 34 35 36 37 38 39 40 41 Drain Effi ciency (%) IMD & ACPR (dBc) Output Power (dBm) Two-carrier WCDMA 3GPP Drive-up VDD = 28 V, IDQ = 150 mA, ƒ = 877 MHz 3GPP WCDMA, P/AR = 8:1, 10 MHz carrier spacing, BW 3.84 MHz Efficiency IMD Up IMD Low ACPR -60 -50 -40 -30 -20 33 34 35 36 37 38 39 40 41 42 IMD (dBc) Output Power, PEP (dBm) Intermodulation Distortion vs. Output Power VDD = 28 V, IDQ = 150 mA, ƒ1 = 876.95 MHz, ƒ 2 = 877.05 MHz 3rd Order 7th 5th 33 34 35 36 37 38 39 40 41 42 Efficiency (%) Gain (dB) Output Power, PEP (dBm) Two-tone Drive-up VDD = 28 V, IDQ = 150 mA, ƒ1 = 876.95 MHz, ƒ 2 = 877.05 MHz Efficiency Gain Typical Performance, 877 MHz (data taken in a production test fixture) not recommended for new design

4600 Silicon Drive | Durham, NC 27703 | www.wolfspeed.comRev. 11, 2018-08-08 PTFA220121M -25 -20 -15 -10 727 827 927 1027 Input Return Loss (dB) Power Gain (dB) Frequency (MHz) Small Signal CW Gain & Input Return Loss VDD = 28 V, IDQ = 150 mA IRL Gain Typical Performance, 877 MHz (cont.) not recommended for new design

4600 Silicon Drive | Durham, NC 27703 | www.wolfspeed.comRev. 11, 2018-08-08 PTFA220121M 0.1 0.3 0.5 0.2 0.4 0.1 0.3 0.5 0.7 0.2 0.4 0.6 0.1 0.3 0.5 0.7 0.9 0.2 0.4 0.6 0.8 AVELENGTHS TOW ARD GENERATOR ---> 0.05 0.40 0.45 0.05 0.10 0.45 <---W AVELENGTHS TOW ARD LOAD - 0.0 Loadpull Data Nornalized to 50 Ohms ptfa220121m #2 da220121m2 Nov. 2, 2009 2:03:51 PM Z Source Z Load

2700 MHz

720 MHz

Z0 = 50 W Z Source Z Load G S D Broadband Circuit Impedance Frequency Z Sour ce W Z Load W MHz R jX R jX 720 1.1 7.7 12.0 4.8 820 1.0 6.4 12.4 4.0 869 1.3 5.0 10.8 5.9 894 1.2 3.6 9.3 6.7 920 1.4 3.5 9.1 6.7 940 1.5 3.3 9.1 6.9 960 1.4 2.8 8.9 6.3 1675 1.6 0.3 5.0 5.3 1805 2.0 0.3 4.7 3.2 1880 2.0 0.3 4.7 2.9 1930 2.2 –0.9 4.2 3.0 1990 2.6 –2.0 3.8 1.8 2110 2.5 –3.1 3.8 1.8 2170 2.0 –2.6 3.6 1.9 2300 1.7 –1.7 3.3 1.6 2400 2.2 –2.5 3.2 0.5 2500 2.5 –4.5 3.0 0.5 2600 2.4 –4.1 2.7 1.2 2700 1.9 –3.1 2.3 1.4 not recommended for new design

4600 Silicon Drive | Durham, NC 27703 | www.wolfspeed.comRev. 11, 2018-08-08 PTFA220121M Reference Circuit, 877 MHz Reference circuit input schematic for ƒ = 877 MHz Reference circuit output schematic for ƒ = 877 MHz TL105 TL109 R101

1.3 Ohm

1200 Ohm

1300 Ohm

2000 Ohm

10 Ohm

S C B E In Out NC NC 2 3 4 56 7 1 2 TL108 TL104 Er= 3.48 H= 20 mil RO/RO4350B1 RF_IN GATE DUT VDD 28 V

510 Ohm

a 220121m - v 4 _ bdin_ 877MHz _ 02- 23- 2010 1 2 TL208 TL224TL211 1 2 TL210 TL213 TL225 C203 3.6 pF TL207 TL212 TL214 TL215TL216 TL217 TL218 TL226 TL206 TL205TL204TL209 1 2 TL203 TL202 TL201 C202 68 pF C201 2200000 pF C204 68 pF C205 8.2 pF TL219 TL220 TL221 TL222 0000 Oh m 2.7 nH TL223 DRAIN DUT RF_O UT VDD 28 V a 220121 m - v 4 _ bdout_ 877MHz _ 01- 07- 2010 not recommended for new design

4600 Silicon Drive | Durham, NC 27703 | www.wolfspeed.comRev. 11, 2018-08-08 PTFA220121M Reference Circuit, 877 MHz (cont.)

Description

PCB 0.508 mm [.020"] thic k, er = 3.48, Rogers 4350, 1 oz. copper Electrical Characteristics at 877 MHz Transmission Electrical Dimensions: mm Dimensions: mils Line Characteristics Input TL101, TL106 W = 0.000, L = 0.000 W = 0, L = 0 TL102 0.050 l, 51.98 W W = 1.087, L = 10.262 W = 43, L = 404 TL107 0.004 l, 51.98 W W = 1.087, L = 0.813 W = 43, L = 32 TL108 W = 1.524 W = 60 TL109 0.007 l, 54.17 W W = 1.016, L = 1.524 W = 40, L = 60 TL110 0.025 l, 41.75 W W = 1.524, L = 5.080 W = 60, L = 200 TL111 0.009 l, 25.04 W W = 3.048, L = 1.778 W = 120, L = 70 TL112 0.002 l, 41.75 W W = 1.524, L = 0.508 W = 60, L = 20 TL113 0.006 l, 41.75 W W = 1.524, L = 1.270 W = 60, L = 50 TL114 1W1 = 3.048, W2 = 0.762, W3 = 3.048, W1 = 120, W2 = 30, W3 = 120, W4 = 0.762 W4 = 30 TL115 0.016 l, 51.98 W W = 1.087, L = 3.264 W = 43, L = 129 TL116 0.044 l, 51.98 W W = 1.087, L = 9.093 W = 43, L = 358 table continued on page 8 not recommended for new design

4600 Silicon Drive | Durham, NC 27703 | www.wolfspeed.comRev. 11, 2018-08-08 PTFA220121M Reference Circuit, 877 MHz (cont.) Electrical Characteristics at 877 MHz Transmission Electrical Dimensions: mm Dimensions: mils Line Characteristics Output TL201 W1 = 1.270, W2 = 5.283, Offset = –2.007 W1 = 50, W2 = 208, Offset = –79 TL202 W1 = 5.283, W2 = 5.283, Offset = 0.000 W1 = 208, W2 = 208, Offset = 0 TL204 0.007 l, 4.80 W W = 19.850, L = 1.270 W = 782, L = 50 TL205 W1 = 19.812, W2 = 19.812, Offset = 7.264 W1 = 780, W2 = 780, Offset = 286 TL206 0.066 l, 47.12 W W = 1.270, L = 13.467 W = 50, L = 530 TL207 0.002 l, 41.75 W W = 1.524, L = 0.508 W = 60, L = 20 TL209 W1 = 1.270, W2 = 1.270, Offset = 10.566 W1 = 50, W2 = 50, Offset = 416 TL211 0.089 l, 51.98 W W = 1.087, L = 18.313 W = 43, L = 721 TL212 0.007 l, 41.75 W W = 1.524, L = 1.524 W = 60, L = 60 TL215 W1 = 1.087, W2 = 3.048 W1 = 43, W2 = 120 TL216 0.009 l, 25.04 W W = 3.048, L = 1.778 W = 120, L = 70 TL217 0.006 l, 63.89 W W = 0.762, L = 1.270 W = 30, L = 50 TL218 0.002 l, 51.98 W W = 1.087, L = 0.356 W = 43, L = 14 TL219 0.040 l, 41.75 W W = 1.524, L = 8.204 W = 60, L = 323 TL221 0.006 l, 47.12 W W = 1.270, L = 1.191 W = 50, L = 47 TL222 0.035 l, 47.12 W W = 1.270, L = 7.290 W = 50, L = 287 TL223 0.014 l, 15.92 W W = 5.283, L = 2.667 W = 208, L = 105 TL224 0.012 l, 51.98 W W = 1.087, L = 2.502 W = 43, L = 99 TL225 0.016 l, 51.98 W W = 1.087, L = 3.264 W = 43, L = 129 not recommended for new design

4600 Silicon Drive | Durham, NC 27703 | www.wolfspeed.comRev. 11, 2018-08-08 PTFA220121M Reference Circuit, 877 MHz (cont.) Circuit Assembly Information Test Fixture Part No. L TN/ PTFA220121M–8 Find Gerber files for this test fixture on the Wolfspeed Web site at(http://www.wolfspeed.com/RF Reference circuit assembly diagram (not to scale) C802 C801 C803R802 R804 R805 R801 C101 C202 C201 C203C205 C204 C102 C104 R803 R102C103 R101 PTFA220121M (73)RO4350, .020 DUT a 220121 m - v 4 _ CD_ 877MHz_ 01- 07- 2010 not recommended for new design

4600 Silicon Drive | Durham, NC 27703 | www.wolfspeed.comRev. 11, 2018-08-08 PTFA220121M Reference Circuit, 877 MHz (cont.) Components Information Component Description Man ufacturer P/N Input C101 Chip capacitor , 68 pF A TC A TC100A680JW150X C102 Chip capacitor , 20 pF A TC A TC100A200JW150X C103 Chip capacitor , 10 pF A TC A TC100A100JW150X C104 Chip capacitor , 16 pF A TC A TC100A160JW150X C801, C802, C803 Chip capacitor , 1000 pF P anasonic Electronic Components ECJ-1VB1H102K L1 Inductor , 22 nH Coilcr aft 0805HT -22NX_BG R101 Resistor , 1.3 W P anasonic Electronic Components ERJ-8GEYJ1R3V R102, R805 Resistor , 10 W P anasonic Electronic Components ERJ-8GEYJ100V R801 Resistor , 1200 W P anasonic Electronic Components ERJ-8GEYJ122V R802 Resistor , 1300 W P anasonic Electronic Components ERJ-8GEYJ132V R803 Resistor , 510 W P anasonic Electronic Components ERJ-8GEYJ511V R804 Resistor , 2000 W P anasonic Electronic Components ERJ-8GEYJ202V S2 EMI Suppression Capacitor Mur ata NFM18PS105R0J3D S3 P otentiometer, 2k W Bour ns Inc. 3224W -1-202E S4 T ransistor F airchild Semiconductor BCP56 S5 V oltage regulator F airchildl Semiconductor LM7805 Output C201 Chip capacitor , 2.2 µ F TDK Cor poration C4532X7R1H225M160KA C202, C204 Chip capacitor , 68 pF A TC A TC100A680JW150X C203 Chip capacitor , 3.6 pF A TC A TC100A3R6CW150X C205 Chip capacitor , 8.2 pF A TC A TC100A8R2CW150X L2 Inductor , 2.7 nH Coilcr aft 0402CS-2N7X_BG R201 Resistor , 0.0 W P anasonic Electronic Components ERJ-8GEY0R00V not recommended for new design

4600 Silicon Drive | Durham, NC 27703 | www.wolfspeed.comRev. 11, 2018-08-08 PTFA220121M Typical Performance, 1805 MHz RF Characteristics Pulsed CW Performance (not subject to production test – verified by design / characterization in Wolfspeed test fixture) VDD = 28 V, IDQ = 130 mA, POUT = 42 W P1dB, ƒ = 1805 MHz 16 µs pulse width, 10% duty cycle, class AB test Characteristic Symbol Min T yp Max Unit Gain Gps — 17 — dB Drain Efficiency hD — 52 — % 25 29 33 37 41 45 Drain Efficiency (%) Gain (dB) Output Power (dBm) Pulsed CW Performance VDD = 28 V, IDQ = 130 mA Efficiency Gain

1785 MHz

1795 MHz

1805 MHz

Drain Efficiency (%) Output Power (dBm) Input Power (W) Output Power and Efficiency v. Input Power VDD = 28 V, IDQ = 130 mA Efficiency Output Power not recommended for new design

4600 Silicon Drive | Durham, NC 27703 | www.wolfspeed.comRev. 11, 2018-08-08 PTFA220121M 24 26 28 30 32 34 36 38 Drain Efficiency (%) Gain (dB) Output Power (dBm) Two-carrier WCDMA 3GPP VDD = 28 V, IDQ = 150 mA, ƒ = 2140 MHz 3GPP WCDMA, P/AR = 8:1, 10 MHz carrier spacing, BW 3.84 MHz Efficiency Gain -50 -45 -40 -35 -30 -25 -20 -15 -10 32 33 34 35 36 37 38 Drain Efficiency (%) IMD & ACPR (dBc) Output Power (dBm) Two-carrier WCDMA 3GPP Drive-up VDD = 28 V, IDQ = 150 mA, ƒ = 2140 MHz 3GPP WCDMA, P/AR = 8:1, 10 MHz carrier spacing, BW 3.84 MHz Efficiency IMD Up IMD Low ACPR -40 -35 -30 -25 -20 -15 33 34 35 36 37 38 39 40 41 42 43 Efficiency (%) IMD (dBc) Output Power, PEP (dBm) Two-tone Drive-up VDD = 28 V, IDQ = 150 mA, ƒ1 = 2139.05 MHz, ƒ 2 = 2140.05 MHz Efficiency IMD3 36 37 38 39 40 41 42 43 Efficiency (%) Gain (dB) Output Power, PEP (dBm) Two-tone Drive-up VDD = 28 V, IDQ = 150 mA, ƒ1 = 2139.05 MHz, ƒ 2 = 2140.05 MHz Efficiency Gain Typical Performance, 2140 MHz not recommended for new design

4600 Silicon Drive | Durham, NC 27703 | www.wolfspeed.comRev. 11, 2018-08-08 PTFA220121M -55 -45 -35 -25 -15 2040 2080 2120 2160 2200 2240 Frequency (MHz) Two-tone Broadband Gain, Efficiency & RL vs. Frequency VDD = 28V, IDQ = 150 mA, Avg. PEP = 12 W, tone pacing = 100 kHz Gain RL Return Loss (dB) / IMD (dBc) Gain (dB) / Efficiency (%) IMD3 Efficiency -20 -16 -12 1990 2090 2190 2290 Input Return Loss (dB) Power Gain (dB) Frequency (MHz) Small Signal CW Gain & Input Return Loss VDD = 28 V, IDQ = 150 mA IRL Gain -60 -50 -40 -30 -20 -10 33 34 35 36 37 38 39 40 41 42 43 IMD (dBc) Output Power, PEP (dBm) Intermodulation Distortion vs. Output Power VDD = 28 V, IDQ = 150 mA, ƒ1 = 2139.05 MHz, ƒ 2 = 2140.05 MHz 3rd Order 7th 5th -55 -50 -45 -40 -35 -30 -25 0 20 40 60 80 100 IMD (dBc) Tone Spacing (MHz) Intermodulation Distortion vs. Tone Spacing VDD = 28 V, IDQ = 150 mA, ƒ = 2140 MHz, PEP = 11.22 W 3rd Order 7th 5th Typical Performance, 2140 MHz (cont.) not recommended for new design

4600 Silicon Drive | Durham, NC 27703 | www.wolfspeed.comRev. 11, 2018-08-08 PTFA220121M 30 32 34 36 38 40 42 44 Drain Efficiency (%) Gain (dB) Output Power (dBm) CW Performance Gain & Efficiency vs. Output Power VDD = 28 V, IDQ = 150 mA, ƒ = 2140 MHz Efficiency+85°C +25° C –30°C Gain 32 33 34 35 36 37 38 39 40 41 42 Drain Efficiency (%) Gain (dB) Output Power (dBm) Power Sweep, CW Gain & Efficiency vs. Output Power VDD = 28 V, IDQ = 150 mA, ƒ = 2140 MHz Efficiency Gain 15.0 15.5 16.0 16.5 17.0 17.5 35 36 37 38 39 40 41 42 43 Power Gain (dB) Output Power (dBm) Two-tone Gain vs. Output Power VDD = 28 V, ƒ1 = 2139.05 MHz, ƒ 2 = 2140.05 MHz IDQ = 100 mA IDQ = 200 mA IDQ = 150 mA Typical Performance, 2140 MHz (cont.) not recommended for new design

4600 Silicon Drive | Durham, NC 27703 | www.wolfspeed.comRev. 11, 2018-08-08 PTFA220121M Reference Circuit, 2140 MHz Reference circuit input schematic for ƒ = 2140 MHz Reference circuit output schematic for ƒ = 2140 MHz a 220121 m - v 4 _ b din_ 2140 _ 01- 05- 2010 DCVS TL103 TL102 TL105 TL106 TL107 TL108 TL109 TL110 TL111 C101 6.2 pF C102 6.2 pF C103 3.6 pF C104 12 pF 22 nH C801 1000 pF R801 S C B E In Out NC NC 2 3 4 56 7 1 2 TL115 C105 3.6 pF C106 6.2 pF TL116 TL117 C107 6.2 pF TL104 TL101 TL118 RF_IN VDD 28 V Er= 3.48 H= 20 mil R O/RO4350B1 TL201 TL202 1 2 TL203TL204 1 2 TL205 TL206 TL207 TL208 TL209TL210 TL211 TL212 C201 1.7 pF C202 2.7 pF C203 2.7 pF R201

0000 Ohm

DRAIN DUT RF_OUT TL224 TL225 3TL226 TL227 TL228 TL229 C205 100000 pF TL230 TL231 TL232 C206 2.7 pF C207 12 pF C208 12 pF VDD 28 V a 220121m - v 4 _ bdout_ 2140 _ 01- 07- 2010 not recommended for new design

4600 Silicon Drive | Durham, NC 27703 | www.wolfspeed.comRev. 11, 2018-08-08 PTFA220121M Reference Circuit, 2140 MHz (cont.) PCB 0.508 mm [.020"] thic k, er = 3.48, Rogers 4350, 1 oz. copper Electrical Characteristics at 2140 MHz Transmission Electrical Dimensions: mm Dimensions: mils Line Characteristics Input TL101, TL103 0.000 l, 144.35 W W = 0.025, L = 0.000 W = 1, L = 0 TL102 0.019 l, 51.98 W W = 1.087, L = 1.575 W = 43, L = 62 TL104, TL111 W1 = 1.087, W2 = 0.813, W3 = 1.087, W1 = 43, W2 = 32, W3 = 43, W4 = 0.813 W4 = 32 TL105 W = 1.524 W = 60 TL106 0.018 l, 54.17 W W = 1.016, L = 1.524 W = 40, L = 60 TL107 0.061 l, 41.75 W W = 1.524, L = 5.080 W = 60, L = 200 TL108 0.022 l, 25.04 W W = 3.048, L = 1.778 W = 120, L = 70 TL109 0.006 l, 41.75 W W = 1.524, L = 0.508 W = 60, L = 20 TL110 0.015 l, 41.75 W W = 1.524, L = 1.270 W = 60, L = 50 TL112 0.039 l, 51.98 W W = 1.087, L = 3.264 W = 43, L = 129 TL113 0.180 l, 51.98 W W = 1.087, L = 15.291 W = 43, L = 602 TL114 0.039 l, 51.98 W W = 1.087, L = 3.302 W = 43, L = 130 TL116, TL117 0.000 l, 144.35 W W = 0.025, L = 0.000 W = 1, L = 0 table continued next page not recommended for new design

4600 Silicon Drive | Durham, NC 27703 | www.wolfspeed.comRev. 11, 2018-08-08 PTFA220121M Reference Circuit, 2140 MHz (cont.) Electrical Characteristics at 2140 MHz Transmission Electrical Dimensions: mm Dimensions: mils Line Characteristics Output TL201 0.161 l, 51.98 W W = 1.087, L = 13.627 W = 43, L = 537 TL202 0.039 l, 51.98 W W = 1.087, L = 3.264 W = 43, L = 129 TL204 0.075 l, 51.98 W W = 1.087, L = 6.375 W = 43, L = 251 TL206 0.006 l, 41.75 W W = 1.524, L = 0.508 W = 60, L = 20 TL207 0.018 l, 41.75 W W = 1.524, L = 1.524 W = 60, L = 60 TL209 W1 = 1.087, W2 = 3.048 W1 = 43, W2 = 120 TL210 0.022 l, 25.04 W W = 3.048, L = 1.778 W = 120, L = 70 TL211 0.015 l, 63.89 W W = 0.762, L = 1.270 W = 30, L = 50 TL212 0.012 l, 51.98 W W = 1.087, L = 1.041 W = 43, L = 41 TL214 0.133 l, 47.12 W W = 1.270, L = 11.186 W = 50, L = 440 TL215 W1 = 0.020, W2 = 0.020, Offset = 0.007 W1 = 20, W2 = 780, Offset = 286 TL216 0.017 l, 4.80 W W = 19.850, L = 1.270 W = 782, L = 50 TL217 W1 = 0.001, W2 = 0.001, Offset = 0.011 W1 = 1, W2 = 50, Offset = 416 TL218 W1 = 0.005, W2 = 0.005, Offset = 0.000 W1 = 5, W2 = 208, Offset = 0 TL219 W1 = 0.001, W2 = 0.005, Offset = –0.002 W1 = 1, W2 = 208, Offset = –79 TL220 0.098 l, 41.75 W W = 1.524, L = 8.204 W = 60, L = 323 TL222 0.087 l, 47.12 W W = 1.270, L = 7.290 W = 50, L = 287 TL223 0.071 l, 15.92 W W = 5.283, L = 5.690 W = 208, L = 224 TL224 0.000 l, 41.75 W W = 1.524, L = 0.000 W = 60, L = 0 TL227 0.000 l, 63.89 W W = 0.762, L = 0.000 W = 30, L = 0 TL228 0.000 l, 25.04 W W = 3.048, L = 0.000 W = 120, L = 0 TL229 0.017 l, 47.12 W W = 1.270, L = 1.422 W = 50, L = 56 TL231 0.000 l, 144.35 W W = 0.025, L = 0.000 W = 1, L = 0 TL232 W1 = 1.087, W2 = 0.813, W3 = 1.087 W1 = 43, W2 = 32, W3 = 43, W4 = 0.813 W4 = 32 not recommended for new design

4600 Silicon Drive | Durham, NC 27703 | www.wolfspeed.comRev. 11, 2018-08-08 PTFA220121M Reference Circuit, 2140 MHz (cont.) Circuit Assembly Information Test Fixture Part No. L TN/ PTFA220121M Find Gerber files for this test fixture on the Wolfspeed Web site at (http://www.wolfspeed.com/RF C802 C803 C802R802 R804 R805 R801 C107C106 C104 C204 R201 C201 C202 C208 C203 C101 C102 R803 R101 C103 C105 C205 C206 PTFA220121M (73)RO4350, .020 DUT S4S5 C207 Reference circuit assembly diagram (not to scale) not recommended for new design

4600 Silicon Drive | Durham, NC 27703 | www.wolfspeed.comRev. 11, 2018-08-08 PTFA220121M Reference Circuit, 2140 MHz (cont.) Components Information Component Description Man ufacturer P/N Input C101, C102, C106, C107 Chip capacitor , 6.2 pF A TC A TC100A6R2CW150X C103, C105 Chip capacitor , 3.6 pF A TC A TC100A3R6CW150X C104 Chip capacitor , 12 pF A TC A TC100A120JW150X C801, C802, C803 Chip capacitor , 1000 pF P anasonic Electronic Components ECJ-1VB1H102K L1 Inductor , 22 nH Coilcr aft 0805HT -22NX_BG R101, R805 Resistor , 10 W P anasonic Electronic Components ERJ-8GEYJ100V R801 Resistor , 1200 W P anasonic Electronic Components ERJ-8GEYJ122V R802 Resistor , 1300 W P anasonic Electronic Components ERJ-8GEYJ132V R803 Resistor , 510 W P anasonic Electronic Components ERJ-8GEYJ511V R804 Resistor , 2000 W P anasonic Electronic Components ERJ-8GEYJ202V S2 EMI Suppression Capacitor Mur ata NFM18PS105R0J3D S3 P otentiometer, 2k W Bour ns Inc. 3224W -1-202E S4 T ransistor F airchild Semiconductor BCP56 S5 V oltage regulator F airchild Semiconductor LM7805 Output C201 Chip capacitor , 1.7 pF A TC A TC100A1R7CW150X C202, C203, C206 Chip capacitor , 2.7 pF A TC A TC100A2R7CW150X C204 Chip capacitor , 2.2 µ F TDK Cor poration C4532X7R1H225M160KA C205 Chip capacitor , 0.1 µ F P anasonic Electronic Components ECJ-3VB1H104K C207, C208 Chip capacitor , 12 pF A TC A TC100A120JW150X R201 Resistor , 0.0 W P anasonic Electronic Components ERJ-8GEY0R00V not recommended for new design

4600 Silicon Drive | Durham, NC 27703 | www.wolfspeed.comRev. 11, 2018-08-08 PTFA220121M Package Outline Specifications Package PG-SON-10 Diagram Notes—unless otherwise specified: 1. Interpret dimensions and tolerances per ASME Y14.5M-1994. 2. Primary dimensions are mm. Alternate dimensions are inches. 3. All tolerances ± 0.1 [.004]. 5. Pins: S = source, 1 – 5 = gate, 6 – 10 = drain. 6. NiPdAu plating (gold top layer): 0.025 – 0.127 micron [1 – 5 microinch]. Diagram Notes–unless otherwise specified: 1. Interpret dimensions and tolerances per ASME Y14.5M-1994. 2. Primary dimensions are mm. Alternate dimensions are inches. 3. All tolerances ± 0.1 [0.004] unless specified otherwise. 5. Pins: S = Source, 1-5 = Gate, 6-10 = Drain. 6. NiPdAu plating (gold top layer) : 0.025 – 0.127 micron[1 – 5 microinch]. TOP VIEW 4.00 [.157] 4.00 [.157] INDEX MARKING BOTTOM VIEW 5 4 3 2 1 6 7 8 9 10 5X .515 [.0203] 2 PLACES 2.37 [.093] 0.54 [.021] 2 PLACES 5X .320 [.0126] 2 PLACES .815 [.0321] 0.30 [.012] 3.40 [.134] INDEX MARKING 4X 0.65 [.026] 2 PLACES 2.97 [.117] S SIDE VIEW 0.38 [.015] BOTH SIDES 1.42 [.056] 0.05 [.002] PG-SON-10_po_02_12-07-2012 not recommended for new design

www.wolfspeed.comRev. 11, 2018-08-08 Notes Disclaimer Specifications are subject to change without notice. Cree, Inc. believes the information contained within this data sheet to be accurate and reliable. However, no responsibility is assumed by Cree for any infringement of patents or other rights of third parties which may result from its use. No license is granted by implication or otherwise under any patent or pat- ent rights of Cree. Cree makes no warranty, representation or guarantee regarding the suitability of its products for any particular purpose. “Typical” parameters are the average values expected by Cree in large quantities and are provided for information purposes only. These values can and do vary in different applications and actual performance can vary over time. All operating parameters should be validated by customer’s technical experts for each application. Cree products are not designed, intended or authorized for use as components in applications intended for surgical implant into the body or to support or sustain life, in applications in which the failure of the Cree product could result in personal injury or death or in applications for planning, construction, maintenance or direct operation of a nuclear facility. Copyright © 2018 Cree, Inc. All rights reserved. The information in this document is subject to change without notice. Wolfspeed™ and the Wolfspeed logo are trademarks of Cree, Inc. For more information, please contact:

4600 Silicon Drive

Durham, North Carolina, USA 27703 www.wolfspeed.com/RF Sales Contact RFSales@wolfspeed.com RF Product Marketing Contact RFMarketing@wolfspeed.com 919.407.7816 PTFA220121M

Revision History

Revision Date Data Sheet Type Page Subjects (major changes since last revision) 10.1 2017-04-13 Data Sheet 2 Corrected OPN 11 2018-08-08 Production All Updated to Wolfspeed data sheet, not recommended for new design not recommended for new design