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  • Manufacturer or author: Provided By ALLDATASHEET.COM(FREE DATASHEET DOWNLOAD SITE)
  • PDF pages: 14

Technical content

Features

  • Broadband internal matching
  • Typical CW performance, 28 V, single side - Output power, P1dB = 70 W - Efficiency = 56%
  • Integrated ESD protection
  • Excellent thermal stability
  • Capable of handling 10:1 VSWR @ 28 V, 70 W (CW) output power, per side
  • Pb-free and RoHS-compliant PTFB201402FC Package H-37248-4 -18 -16 -14 -12 -10 16.0 16.5 17.0 17.5 18.0 18.5 19.0 19.5 20.0 20.5 21.0 1800 1900 2000 2100 2200 Input Return Loss (dB) Power Gain (dB) Frequency (MHz) Small Signal CW Gain & Input Return Loss, single side VDD = 28 V, IDQ = 650 mA IRL Gain

Data Sheet 2 of 14 Rev. 03.1, 2016-06-14 PTFB201402FC DC Characteristics (single side) Characteristic Conditions Symbol Min Typ Max Unit Drain-Source Breakdown Voltage VGS = 0 V, IDS = 10 mA V(BR)DSS 65 — — V Drain Leakage Current VDS = 28 V, VGS = 0 V IDSS — — 1.0 µA Drain Leakage Current VDS = 63 V, VGS = 0 V IDSS — — 10.0 µA On-State Resistance VGS = 10 V, VDS = 0.1 A RDS(on) — 0.3 — W Operating Gate Voltage VDS = 28 V, IDQ = 650 mA VGS 2.3 2.8 3.3 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 –6 to +10 V Junction Temperature TJ 200 °C Storage Temperature Range TSTG –40 to +150 °C Thermal Resistance (TCASE = 70°C, 120 W CW) RqJC 0.39 °C/W

Ordering Information

Type and Version Order Code Package Description Shipping PTFB201402FC V1 R0 PTFB201402FCV1R0XTMA1 H-37248-4, earless flange Tape & Reel, 50 pcs PTFB201402FC V1 R250 PTFB201402FCV1R250XTMA1 H-37248-4, earless flange Tape & Reel, 250 pcs

Data Sheet 3 of 14 Rev. 03.1, 2016-06-14 Typical Performance (data taken in a production test fixture) -60 -55 -50 -45 -40 -35 -30 -25 -20 34 35 36 37 38 39 40 41 42 43 44 45 Efficiency (%) ACPR (dBc) Output Power (dBm) Six-carrier TD-SCDMA Drive-up, single side VDD = 28 V, IDQ = 650 mA, ƒ = 2018 MHz Adj Lower Adj Upper Alt Lower Alt Upper Efficiency 18.0 18.4 18.8 19.2 19.6 38 39 40 41 42 43 44 45 46 47 48 49 Efficiency (%) Gain (dB) Output Power (dBm) CW Performance, single side VDD = 28 V, IDQ = 650 mA Gain Efficiency 2010 MHz

2025 MHz

38 39 40 41 42 43 44 45 46 47 48 49 Efficiency (%) Gain (dB) Output Power (dBm) CW Performance, single side VDD = 28 V, IDQ = 650 mA, ƒ = 2018 MHz Gain Efficiency 25° C -25°C 90° C -60 -50 -40 -30 -20 -10 33 35 37 39 41 43 45 47 3rd Order Intermodulation Distortion (dBc) Average Output Power (dBm) Two-tone Performance at Various IDQ single side, VDD = 28 V, ƒ = 2018 MHz 550 mA 600 mA 650 mA 700 mA 750 mA

Data Sheet 4 of 14 Rev. 03.1, 2016-06-14 PTFB201402FC Typical Performance (cont.) 17.0 17.5 18.0 18.5 19.0 19.5 20.0 38 39 40 41 42 43 44 45 46 47 48 49 50 Efficiency (%) Power Gain (dB) Output Power (dBm) CW Gain & Eff. vs. Output Power at various VDD, single side IDQ = 650 mA, ƒ = 2018 MHz VDD = 32 V VDD = 28 V VDD = 24 V 17.0 17.5 18.0 18.5 19.0 19.5 20.0 20.5 21.0 38 39 40 41 42 43 44 45 46 47 48 49 Drain Efficiency (%) Gain (dB) Output Power (dBm) CW Sweep at P1dB, single side VDD = 28 V, IDQ = 650 mA

2010 MHz

2018 MHz

-65 -55 -45 -35 -25 -15 -10 33 35 37 39 41 43 45 47 IMD (dBc) Efficiency (%) Output Power, avg. (dBm) Two-tone Performance at Selected Frequencies single side, VDD = 28 V, IDQ = 650 mA, 1 MHz tone spacing Efficiency IMD3

Data Sheet 5 of 14 Rev. 03.1, 2016-06-14 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 0.350.40 0.45 0.05 0.10 0.15 0.45 <---W AVELENGTHS TOW ARD LOAD - 0.0 Nornalized to 50 Ohms ptfb201602ef db201602ef Dec. 3, 2009 4:50:38 PM Z Source Z Load G S D Z0 = 50 W Broadband Circuit Impedance Frequency Z Source W Z Load W MHz R jX R jX 2010 15.4 3.8 3.9 –4.4 2025 15.5 4.1 3.9 –4.4 See next page for reference circuit information

Data Sheet 6 of 14 Rev. 03.1, 2016-06-14 PTFB201402FC Reference Circuit Reference circuit input schematic for ƒ = 2170 MHz C212 15 pF TL272 3TL273 TL274 3TL275 TL238 TL239 1 2 TL240 TL241 TL242 TL243 TL220 TL221 TL222TL223TL224 TL225 TL226 TL227 TL228 TL229 TL252 TL253 TL254 TL255 TL256 TL257 TL258 TL259 TL260 TL261 TL262TL230TL231 TL232 TL233 TL234TL235 TL236 TL237 TL268 C213 10000000 pF C214 10000000 pF C215 10000000 pF C216 100000000 pF C217 10000000 pF C218 10000000 pF C219 10000000 pF C220 100000000 pF TL269 TL270 TL271 TL244 TL245 TL246TL247 TL248 TL249 TL250 TL251 TL276 TL277 TL278 TL279 TL280 TL281 TL282 TL283 TL284 TL285 TL286 TL287 TL288 TL289 TL263 TL264 TL265 TL266 TL267 1 2 TL206 C207 15 pF TL207 C208 15 pF TL210 C221 15 pF C206 1 pF TL218 TL219 C205 0.5 pF 1 2 TL213 TL205 C204 1.8 pF TL203 TL208 C209 15 pF TL290 TL214 1 2 TL201 TL204 TL211 TL212TL202TL216 TL217 TL215 C211 15 pF C203 1 pF C202 0.5 pF C201 1.8 pF C210 10000000 pF TL209 PTFB201402_OUTPUT Pin D1 Drain DUT Pin D2 Drain DUT RF_OUT b 2 0 1 4 0 2 e f _ b d o u t _ 0 2 - 0 3 - 2 0 1 1 C110 10000000 pF R111

1000 Ohm

10 Ohm

50 Ohm

-90 -90 TL118TL119 TL120TL121 TL122 R102 TL154TL155TL156 TL157TL158 TL159 1 2 TL160 TL161 S C B E In Out NC NC 2 3 4 56 7 3S3 R104

1200 Ohm

1300 Ohm

100 Ohm

PTFB201402_INPUT Pin G1 Gate DUT Pin G2 Gate DUT RF_IN b 2 0 1 4 0 2 e f _ b d i n _ 0 2 - 0 3 - 2 0 1 1 Er=3.48 H=20 mil RO/RO4350B1

Data Sheet 7 of 14 Rev. 03.1, 2016-06-14 Reference Circuit (cont.) Reference circuit output schematic for ƒ = 2170 MHz C212 15 pF TL272 3TL273 TL274 3TL275 TL238 TL239 1 2 TL240 TL241 TL242 TL243 TL220 TL221 TL222TL223TL224 TL225 TL226 TL227 TL228 TL229 TL252 TL253 TL254 TL255 TL256 TL257 TL258 TL259 TL260 TL261 TL262TL230TL231 TL232 TL233 TL234TL235 TL236 TL237 TL268 C213 10000000 pF C214 10000000 pF C215 10000000 pF C216 100000000 pF C217 10000000 pF C218 10000000 pF C219 10000000 pF C220 100000000 pF TL269 TL270 TL271 TL244 TL245 TL246TL247 TL248 TL249 TL250 TL251 TL276 TL277 TL278 TL279 TL280 TL281 TL282 TL283 TL284 TL285 TL286 TL287 TL288 TL289 TL263 TL264 TL265 TL266 TL267 1 2 TL206 C207 15 pF TL207 C208 15 pF TL210 C221 15 pF C206 1 pF TL218 TL219 C205 0.5 pF 1 2 TL213 TL205 C204 1.8 pF TL203 TL208 C209 15 pF TL290 TL214 1 2 TL201 TL204 TL211 TL212TL202TL216 TL217 TL215 C211 15 pF C203 1 pF C202 0.5 pF C201 1.8 pF C210 10000000 pF TL209 PTFB201402_OUTPUT Pin D1 Drain DUT Pin D2 Drain DUT RF_OUT b 2 0 1 4 0 2 e f _ b d o u t _ 0 2 - 0 3 - 2 0 1 1 C110 10000000 pF R111 -90 -90 TL118TL119 TL120TL121 TL122 R102 TL154TL155TL156 TL157TL158 TL159 1 2 TL160 TL161 S C B E In Out NC NC 2 3 4 56 7 3S3 R104 PTFB201402_INPUT Pin G1 Gate DUT Pin G2 Gate DUT RF_IN b 2 0 1 4 0 2 e f _ b d i n _ 0 2 - 0 3 - 2 0 1 1 Er=3.48 H=20 mil RO/RO4350B1

Data Sheet 8 of 14 Rev. 03.1, 2016-06-14 PTFB201402FC Reference Circuit (cont.)

Description

PCB 0.508 mm [.020"] thick, er = 3.48, Rogers 4350, 2 oz. copper Electrical Characteristics at 2170 MHz Transmission Electrical Dimensions: mm Dimensions: mils Line Characteristics Input TL101 0.083 λ, 52.28 W W = 1.077, L = 6.977 W = 42, L = 275 TL102, TL104, TL106, W = 0.001, M = 0.500 W = 1, M = 19685 TL121, TL122, TL133, TL134, TL135, TL148, TL150 TL103 0.019 λ, 52.28 W W = 1.077, L = 1.567 W = 42, L = 62 TL105 0.031 λ, 52.28 W W = 1.077, L = 2.565 W = 42, L = 101 TL107, TL155 W1 = 0.002, W2 = 0.001, Offset = 0.000 W1 = 2, W2 = 30, Offset = 0 TL108, TL156 0.048 λ, 35.71 W W = 1.905, L = 3.912 W = 75, L = 154 TL109, TL157 0.067 λ, 63.89 W W = 0.762, L = 5.636 W = 30, L = 222 TL110, TL136 W = 0.001, M = 0.300 W = 1, M = 11811 TL111 0.109 λ, 63.89 W W = 0.762, L = 9.268 W = 30, L = 365 TL112, TL129 0.023 λ, 10.63 W W = 8.382, L = 1.801 W = 330, L = 71 TL115 0.032 λ, 52.21 W W = 1.080, L = 2.649 W = 43, L = 104 TL116, TL131 0.012 λ, 52.21 W W = 1.080, L = 0.988 W = 43, L = 39 TL117 0.029 λ, 10.63 W W = 8.382, L = 2.212 W = 330, L = 87 TL118, TL119 0.064 λ, 52.28 W W = 1.077, L = 5.334 W = 42, L = 210 TL120 0.019 λ, 52.21 W W = 1.080, L = 1.570 W = 43, L = 62 TL125 0.082 λ, 52.28 W W = 1.077, L = 6.850 W = 42, L = 270 TL126 0.022 λ, 52.21 W W = 1.080, L = 1.854 W = 43, L = 73 TL127 0.031 λ, 52.21 W W = 1.080, L = 2.565 W = 43, L = 101 TL128 0.138 λ, 63.89 W W = 0.762, L = 11.702 W = 30, L = 461 TL130 0.028 λ, 52.21 W W = 1.080, L = 2.362 W = 43, L = 93 TL132 0.029 λ, 10.63 W W = 8.382, L = 2.212 W = 330, L = 87 TL137 0.085 λ, 35.71 W W = 1.905, L = 6.914 W = 75, L = 272 TL141, TL142, TL146 0.023 λ, 35.71 W W = 1.905, L = 1.905 W = 75, L = 75 TL143 0.076 λ, 35.71 W W = 1.905, L = 6.231 W = 75, L = 245 TL144 0.030 λ, 35.71 W W = 1.905, L = 2.477 W = 75, L = 98 TL145 0.046 λ, 25.04 W W = 3.048, L = 3.713 W = 120, L = 146 TL147 0.042 λ, 52.28 W W = 1.077, L = 3.470 W = 42, L = 137 TL149 0.020 λ, 52.28 W W = 1.077, L = 1.684 W = 42, L = 66 table continued on page 9

Data Sheet 9 of 14 Rev. 03.1, 2016-06-14 Reference Circuit (cont.) Electrical Characteristics at 2170 MHz Transmission Electrical Dimensions: mm Dimensions: mils Line Characteristics Input TL151 0.078 λ, 52.21 W W = 1.080, L = 6.561 W = 43, L = 258 TL152 0.042 λ, 52.28 W W = 1.077, L = 3.472 W = 42, L = 137 TL158, TL161 0.007 λ, 35.71 W W = 1.905, L = 0.610 W = 75, L = 24 TL159, TL162 0.026 λ, 63.89 W W = 0.762, L = 2.184 W = 30, L = 86 Output TL240 TL207, TL243 0.094 λ, 52.28 W W = 1.077, L = 7.882 W = 42, L = 310 TL208 0.006 λ, 52.28 W W = 1.077, L = 0.516 W = 42, L = 20 TL215, TL222 0.018 λ, 52.28 W W = 1.077, L = 1.516 W = 42, L = 60 TL216, TL224 0.034 λ, 8.73 W W = 10.424, L = 2.604 W = 410, L = 103 TL217, TL223, TL245 0.024 λ, 52.21 W W = 1.080, L = 2.032 W = 43, L = 80 TL220 0.013 λ, 52.21 W W = 1.080, L = 1.097 W = 43, L = 43 TL221, TL269 0.051 λ, 52.21 W W = 1.080, L = 4.239 W = 43, L = 167 TL225, TL226 W1 = 10.422, W2 = 1.080, W3 = 10.422, W1 = 410, W2 = 43, W3 = 410, W4 = 1.080 W4 = 43 TL227, TL228, TL229, W = 0.001, M = 0.500 W = 1, M = 19685 TL234, TL236, TL238, TL249, TL250, TL251, TL252, TL256, TL258, TL260, TL267, TL268, TL270 TL230 W1 = 1.880, W2 = 1.080, W1 = 74, W2 = 43 TL231 0.043 λ, 36.06 W W = 1.880, L = 3.495 W = 74, L = 138 TL233 0.081 λ, 52.28 W W = 1.077, L = 6.774 W = 42, L = 267 TL235, TL259 0.023 λ, 52.21 W W = 1.080, L = 1.900 W = 43, L = 75 TL237 0.052 λ, 52.28 W W = 1.077, L = 4.389 W = 42, L = 173 table continued on page 10

Data Sheet 10 of 14 Rev. 03.1, 2016-06-14 PTFB201402FC Reference Circuit (cont.) Electrical Characteristics at 2170 MHz Transmission Electrical Dimensions: mm Dimensions: mils Line Characteristics Output TL242 0.010 λ, 52.21 W W = 1.080, L = 0.813 W = 43, L = 32 TL244, TL271 0.060 λ, 52.28 W W = 1.077, L = 5.019 W = 42, L = 198 TL246, TL247 0.024 λ, 52.28 W W = 1.077, L = 2.032 W = 42, L = 80 TL248 0.023 λ, 52.21 W W = 1.080, L = 1.900 W = 43, L = 75 TL254 0.300 λ, 36.06 W W = 1.880, L = 24.526 W = 74, L = 966 TL255 0.212 λ, 36.06 W W = 1.880, L = 17.371 W = 74, L = 684 TL257 0.164 λ, 52.21 W W = 1.080, L = 13.701 W = 43, L = 539 TL261 0.306 λ, 52.28 W W = 1.077, L = 25.593 W = 42, L = 1008 TL262 0.099 λ, 52.28 W W = 1.077, L = 8.247 W = 42, L = 325 TL263 0.012 λ, 14.50 W W = 5.893, L = 0.965 W = 232, L = 38 TL264 0.102 λ, 14.50 W W = 5.893, L = 7.976 W = 232, L = 314 TL265 0.006 λ, 52.28 W W = 1.077, L = 0.533 W = 42 L = 21 TL266 0.092 λ, 52.28 W W = 1.077, L = 7.696 W = 42, L = 303 TL282 W1 = 0.001, W2 = 0.005, Offset = 0.000 W1 = 1, W2 = 180, Offset = 0 TL283 W1 = 0.001, W2 = 0.005, Offset = 0.001 W1 = 1, W2 = 180, Offset = 37 TL284 0.016 λ, 52.28 W W = 1.077, L = 1.303 W = 42, L = 51 TL285 0.035 λ, 14.50 W W = 5.893, L = 2.743 W = 232, L = 108 TL286 0.079 λ, 14.50 W W = 5.893, L = 6.198 W = 232, L = 244 TL287 0.016 λ, 52.28 W W = 1.077, L = 1.372 W = 42, L = 54 TL288 0.084 λ, 52.28 W W = 1.077, L = 6.985 W = 42, L = 275 TL289 0.027 λ, 52.28 W W = 1.077, L = 2.258 W = 42, L = 89 TL290 0.024 λ, 52.28 W W = 1.077, L = 2.029 W = 42, L = 80

Data Sheet 11 of 14 Rev. 03.1, 2016-06-14 Reference Circuit (cont.) Circuit Assembly Information Test Fixture Part No. LTD/PTFB201402FC Find Gerber files for this test fixture on the Infineon Web site at http://www.infineon.com/rfpower Reference circuit assembly diagram (not to scale) C201 C205 C202 C212 C213 C214 C208 C209 C210 C211 C203 C206 C204 C207 C215 b 2 0 1 4 0 2 e f _ C D _ 0 2 - 0 3 - 2 0 1 1 PTFB201402_OUT_01PTFB201402_IN_02 RO4350, .020 (61) RO4350, .020 (62) RF_IN RF_OUT VDD + S1 C102 C110 R102 C101 C103 C104 C105 C106 C109 R103 C107 C108 R101 R104 S2S3 R105R106 R111 R109 R110 R108 R107 C217 C218 C219 C220 C216 C221 VDD

Data Sheet 12 of 14 Rev. 03.1, 2016-06-14 PTFB201402FC Reference Circuit (cont.) Component Information Component Description Suggested Manufacturer P/N Input C101 Chip capacitor, 1 µF ATC 490-1863-2-ND C102, C110 Capacitor, 10 µF Digi-Key 587-1818-2-ND C103, C104, C105, C106 Chip capacitor, 15 pF ATC ATC100A150JW150XB C107, C108, C109 Chip capacitor, 0.1 µF ATC PCC1772CT -ND R101, R102 Resistor, 10 W Digi-Key P10GCT -ND R103 Resistor, 50 W Digi-Key C16A50Z4 R104 Resistor, 1200 W Digi-Key P1.2KGCT -ND R105 Resistor, 1300 W Digi-Key P1.3KGCT -ND R106, R107 Resistor, 100 W Digi-Key P100ECT -ND R108, R109 Resistor, 10 W Digi-Key P10ECT -ND R110, R111 Resistor, 1000 W Digi-Key P1.0KECT -ND S1 Transistor Digi-Key BCP5616TA-ND S2 Voltage Regulator Digi-Key LM78L05ACM-ND S3, S4 Potentiometer, 2k W Digi-Key 3224W-202ECT -ND U1 Hybrid coupler, 50 W Anaren X3C19P1-035 Output C201, C204 Chip capacitor, 1.8 pF ATC ATC800A1R8BW150XB C202, C205 Chip capacitor, 0.5 pF ATC ATC800A1R8BW150XB C203, C206 Chip capacitor, 1 pF ATC ATC800A1R0BW150XB C207, C208, C209, C211, Chip capacitor, 15 pF ATC ATC800A150FW150XB C212 C210, C214, C215, C217, Capacitor, 10 µF Digi-Key 587-1818-2-ND C218, C219 C213 Capacitor, 10 µF Digi-Key 399-1267-2-ND C216, C220 Capacitor, 100 µF Digi-Key PCE4442TR-ND C221 Chip capacitor, 15 pF ATC ATC100A150FW150XB Pinout Diagram b 2 0 1 6 0 2 f _ p d _ 1 1 - 2 0 - 0 9 Drain Drain Gate Gate Source (flange) Lead connections for PTFB201402FC

Data Sheet 13 of 14 Rev. 03.1, 2016-06-14 Package Outline Specifications Package H-37248-4 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 ± 0.127 [.005] unless specified otherwise. 4. Pins: D1, D2 = drains; S = source; G1, G2 = gates. 6. Gold plating thickness: 1.14 ± 0.38 micron [45 ± 15 microinch] max Find the latest and most complete information about products and packaging at the Infineon Internet page http://www.infineon.com/rfpower 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 ± 0.127 [.005] unless specified otherwise. 4. Pins: D1, D2 – drains; G1, G2 – gates; S – source. 6. Gold plating thickness: 1.14 ± 0.38 micron [45 ± 15 microinch]. CL LC CL 2X 12.70 [.500] 19.81±0.20 [.780±0.008] 4X 3.81 [.150] LID 9.40 [.370] FLANGE 9.78 [.385] 2X 4.83±0.51 [.190±0.020] 3.76±0.25 [.148±0.010] SPH 1.57 [.062] 4X R0.76+0.13 -0.38 [R.030 +0.005 -0.015 ]D1 D2 G1 G2 1.02 [.040] 20.57 [.810]S 2X 45° X 2.72 [45° X .107] (8.89 [.350]) (5.08 [.200]) 19.43±0.51 [.765±0.020] 0.0381 [.0015] -A-

Data Sheet 14 of 14 Rev. 03.1, 2016-06-14 Edition 2016-06-14 Published by Infineon Technologies AG

81726 Munich, Germany

© 2011 Infineon Technologies AG All Rights Reserved. Legal Disclaimer The information given in this document shall in no event be regarded as a guarantee of conditions or characteristics. With respect to any examples or hints given herein, any typical values stated herein and/or any information regarding the application of the device, Infineon Technologies hereby disclaims any and all warranties and liabilities of any kind, including without limitation, warranties of non-infringement of intellectual property rights of any third party. Information For further information on technology, delivery terms and conditions and prices, please contact the nearest Infineon Technologies Office (www.infineon.com/rfpower). Warnings Due to technical requirements, components may contain dangerous substances. For information on the types in question, please contact the nearest Infineon Technologies Office. Infineon Technologies components may be used in life-support devices or systems only with the express written approval of In- fineon Technologies, if a failure of such components can reasonably be expected to cause the failure of that life-support device or system or to affect the safety or effectiveness of that device or system. Life support devices or systems are intended to be implanted in the human body or to support and/or maintain and sustain and/or protect human life. If they fail, it is reasonable to assume that the health of the user or other persons may be endangered. We Listen to Your Comments Any information within this document that you feel is wrong, unclear or missing at all? Y our feedback will help us to continuously improve the quality of this document. Please send your proposal (including a reference to this document) to: highpowerRF@infineon.com To request other information, contact us at: +1 877 465 3667 (1-877-GO-LDMOS) USA or +1 408 776 0600 International PTFB201402FC V1 Revision History: 2016-06-14 Data Sheet Previous Version: 2012-02-16, Data Sheet Page Subjects (major changes since last revision)

2 Updated ordering information to include R0