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  r09ds0003ej0100 rev.1.00 page 1 of 6 jul 14, 2010 preliminary data sheet ne202930 silicon npn epitaxial high frequency transistor features ? high transition frequency f t = 11 ghz typ. ? ideal for low noise and low distortion amplification ? suitable for equipments of low collector voltage (less than 5 v) ? suitable for up to 1 ghz applications applications ? lna (l ow n oise a mplifier) or power splitter for digital-tv outline renesas package code: 30 (package name: 3-pin super minimold (30 pkg)) note: marking is "r7d" 1. emitter 2. base 3. collector ordering information part number order number package marking supplying form ne202930-t1 ne202930-t1-a 3-pin super minimold (30 pkg) (pb-free) r7d ? embossed tape 8 mm wide ? pin 3 face the perforation side of the tape ? qty 3 kpcs/reel remark to order evaluation samples, please contact your nearby sales office. part number for sample order: ne202930 absolute maximum ratings (t a = +25 c) parameter symbol ratings unit collector to base voltage v cbo 9 v collector to emitter voltage (base short) v ces 9 v collector to emitter voltage (base open) v ceo 6 v emitter to base voltage v ebo 2 v collector current i c 100 ma total power dissipation note p tot 150 mw junction temperature t j 150 c storage temperature t stg ? 65 to +150 c note: free air caution observe precautions when handling because these devi ces are sensitive to electrostatic discharge. r09ds0003ej0100 rev.1.00 jul 14, 2010
ne202930 r09ds0003ej0100 rev.1.00 page 2 of 6 jul 14, 2010 electrical characteristics (t a = +25 c, unless otherwise specified) parameter symbol test conditi ons min. typ. max. unit dc characteristics collector cut-off current i cbo v cb = 5 v, i e = 0 ? ? 100 na emitter cut-off current i ebo v eb = 1 v, i c = 0 ? ? 100 na dc current gain h fe note1 v ce = 5 v, i c = 5 ma 85 140 205 ? rf characteristics gain bandwidth product f t v ce = 5 v, i c = 30 ma, f = 1 ghz ? 11.0 ? ghz insertion power gain ? s 21e ? 2 v ce = 5 v, i c = 30 ma, f = 1 ghz 11.5 13.5 ? db noise figure (1) nf1 v ce = 5 v, i c = 5 ma, f = 1 ghz, z s = z sopt , z l = 50 ? 1.15 1.5 db noise figure (2) nf2 v ce = 5 v, i c = 30 ma, f = 1 ghz, z s = z sopt , z l = z lopt ? 1.5 ? db associated gain (1) g a 1 v ce = 5 v, i c = 5 ma, f = 1 ghz, z s = z sopt , z l = 50 10.0 12.0 ? db associated gain (2) g a 2 v ce = 5 v, i c = 30 ma, f = 1 ghz, z s = z sopt , z l = z lopt ? 13.5 ? db reverse transfer capacitance c re note 2 v cb = 5 v, i e = 0, f = 1 mhz ? 0.6 0.8 pf maximum stable power gain msg note 3 v ce = 5 v, i c = 30 ma, f = 1 ghz 13.5 15.5 ? db gain 1 db compression output power p o (1 db) v ce = 5 v, i c (set) = 30 ma, f = 1 ghz, z s = z sopt , z l = z lopt ? 19 ? dbm output 3rd order intercept point oip 3 v ce = 5 v, i c (set) = 30 ma, f = 1 ghz, f = 1 mhz, z s = z sopt , z l = z lopt ? 32 ? dbm notes: 1. pulse measurement: pw 350 s, duty cycle 2% 2. collector to base capacitance when the emitter grounded. 3. msg = h fe classification rank yfb marking r7d h fe value 85 to 205 s 21 s 12
ne202930 r09ds0003ej0100 rev.1.00 page 3 of 6 jul 14, 2010 typical characteristics (t a = +25 c, unless otherwise specified) 0 25 50 75 100 125 150 150 100 50 200 free air total power dissipation vs. ambient temperature ambient temperature t a ( c) total power dissipation p tot (mw) collector to emitter voltage v ce (v) collector current i c (ma) collector current vs. collector to emitter voltage 0 0 5 10 20 12 3 45 1 00 a 15 i b = 10 a 20 a 30 a 40 a 50 a 60 a 70 a 80 a 90 a collector to base voltage v cb (v) reverse transfer capacitance c re (pf) reverse transfer capacitance vs. collector to base voltage 0 1.0 0.9 0.8 0.7 0.6 0.5 0.4 0.3 0.2 0.1 0 12 3 4 9 56 7 8 base to emitter voltage v be (v) collector current i c (ma) collector current vs. base to emitter voltage 0 0.01 0.1 1 10 100 0.2 0.4 0.6 0.8 1.0 0.001 0.0001 v ce = 5 v collector current i c (ma) dc current gain h fe dc current gain vs. collector current v ce = 5 v 0.001 10 100 1 000 0.01 0.1 1 10 100 1 gain bandwidth product f t (ghz) collector current i c (ma) gain bandwidth product vs. collector current v ce = 5 v, f = 1 ghz 14 12 10 8 6 4 2 0 10 1 100 remark the graphs indicate nominal characteristics.
ne202930 r09ds0003ej0100 rev.1.00 page 4 of 6 jul 14, 2010 frequency f (ghz) insertion power gain, mag, msg vs. frequency insertion power gain |s 21e | 2 (db) maximum available power gain mag (db) maximum stable power gain msg (db) 110 25 20 15 10 5 0 mag msg |s 21e | 2 0.1 collector current i c (ma) v ce = 5 v, f = 1 ghz 18 16 14 12 10 8 6 4 2 0 10 1 100 msg |s 21e | 2 insertion power gain, mag, msg vs. collector current insertion power gain |s 21e | 2 (db) maximum available power gain mag (db) maximum stable power gain msg (db) mag each input power p in (each) (dbm) v ce = 5 v, i ce (set) = 30 ma, f = 1 ghz ?50 ?80 0 10 20 ?10 ?30 30 each output power p out (each) (dbm) 3rd order intermodulation distortion im 3 (db) each output power, im 3 vs. each input power p out im 3 ?70 ?60 ?20 ?40 ?30 ?10 20 0 10 40 30 ?20 input power p in (dbm) collector current vs. input power linear gain g l (db) output power p out (dbm) collector current i c (ma) 30 20 10 0 ?10 200 150 100 50 0 ?20 ?10 0 10 v ce = 5 v, i ce (set) = 30 ma, f = 1 ghz g l p out i c output power, linear gain, 20 collector current i c (ma) noise figure nf (db) noise figure, associated gain vs. collector current v ce = 5 v, f = 1 ghz, z s = z opt , z l = 50 1 5 4 3 2 1 0 10 100 associated gain g a (db) 15 13 11 9 7 5 collector current i c (ma) noise figure nf (db) noise figure, associated gain vs. collector current v ce = 5 v, f = 1 ghz, z s = z l = z opt 1 5 4 3 2 1 0 10 100 associated gain g a (db) 15 13 11 9 7 5 v ce = 5 v, i ce = 5 ma remark the graphs indicate nominal characteristics.
ne202930 r09ds0003ej0100 rev.1.00 page 5 of 6 jul 14, 2010 s-parameters s-parameters and noise parameters are provided on our web s ite in a format (s2p) that en ables the direct import of the parameters to microwave circuit simulators without the need for keyboard inputs. click here to download s-parameters. [rf and microwave] [device parameters] url http://www2.renesas.com/microwave/en/download.html
ne202930 r09ds0003ej0100 rev.1.00 page 6 of 6 jul 14, 2010 package dimensions 3-pin super minimold (30 pkg) (unit: mm) 0.90.1 0.3 0.15 +0.1 ?0.05 0 to 0.1 marking 2.00.2 0.65 0.65 0.3 +0.1 ?0 0.3 +0.1 ?0 1 2 3 2.10.1 1.250.1 pin connections 1. emitter 2. base 3. collector
all trademarks and registered trademarks are t he property of their respective owners. c - 1 revision history ne 202930 data sheet description rev. date page summary 1.00 jul 14, 2010 ? first edition issued
notice 1. all information included in this document is current as of the date this document is issued. such information, however, is s ubject to change without any prior notice. before purchasing or using any renesas electronics products listed herein, please confirm the latest product information with a renesas electronics sales office. also , please pay regular and careful attention to additional and different information to be disclosed by renesas electronics such as that disclosed through our website. 2. renesas electronics does not assume any liability for infringement of patents, copyrights, or other intellectual property ri ghts of third parties by or arising from the use of renesas electronics products or technical information described in this document. no license, express, implied or otherwise, is granted hereby under any paten ts, copyrights or other intellectual property rights of renesas electronics or others. 3. you should not alter, modify, copy, or otherwise misappropriate any renesas electronics product, whether in whole or in part . 4. descriptions of circuits, software and other related information in this document are provided only to illustrate the operat ion of semiconductor products and application examples. you are fully responsible for the incorporation of these circuits, software, and information in the design of your equipment. renesas electronics assumes no responsibility for any losses incurred by you or third parties arising from the use of these circuits, software, or information. 5. when exporting the products or technology described in this document, you should comply with the applicable export control l aws and regulations and follow the procedures required by such laws and regulations. you should not use renesas electronics products or the technology described in this document for any purpose rela ting to military applications or use by the military, including but not limited to the development of weapons of mass destruction. renesas electronics products and technology may not be used for or incorporate d into any products or systems whose manufacture, use, or sale is prohibited under any applicable domestic or foreign laws or regulations. 6. renesas electronics has used reasonable care in preparing the information included in this document, but renesas electronics does not warrant that such information is error free. renesas electronics assumes no liability whatsoever for any damages incurred by you resulting from errors in or omissions from the information incl uded herein. 7. renesas electronics products are classified according to the following three quality grades: "standard", "high quality", an d "specific". the recommended applications for each renesas electronics product depends on the product's quality grade, as indicated below. you must check the quality grade of each renesas electronics produ ct before using it in a particular application. you may not use any renesas electronics product for any application categorized as "specific" without the prior written consent of renesas electronics. fu rther, you may not use any renesas electronics product for any application for which it is not intended without the prior written consent of renesas electronics. renesas electronics shall not be in any way liable for any damages or losses incurred by you or third parties arising from the use of any renesas electronics product for an application categorized as "specific" or for which the product is not intended wh ere you have failed to obtain the prior written consent of renesas electronics. the quality grade of each renesas electronics product is "standard" unless otherwise expressly specified in a renesas electroni cs data sheets or data books, etc. "standard": computers; office equipment; communications equipment; test and measurement equipment; audio and visual equipment ; home electronic appliances; machine tools; personal electronic equipment; and industrial robots. "high quality": transportation equipment (automobiles, trains, ships, etc.); traffic control systems; anti-disaster systems; anti-crime systems; safety equipment; and medical equipment not specifically designed for life support. "specific": aircraft; aerospace equipment; submersible repeaters; nuclear reactor control systems; medical equipment or syst ems for life support (e.g. artificial life support devices or systems), surgical implantations, or healthcare intervention (e.g. excision, etc.), and any other applications or purposes that pose a direct thr eat to human life. 8. you should use the renesas electronics products described in this document within the range specified by renesas electronics , especially with respect to the maximum rating, operating supply voltage range, movement power voltage range, heat radiation characteristics, installation and other product characteristics. renesas el ectronics shall have no liability for malfunctions or damages arising out of the use of renesas electronics products beyond such specified ranges. 9. although renesas electronics endeavors to improve the quality and reliability of its products, semiconductor products have s pecific characteristics such as the occurrence of failure at a certain rate and malfunctions under certain use conditions. further, renesas electronics products are not subject to radiation resistance design . please be sure to implement safety measures to guard them against the possibility of physical injury, and injury or damage caused by fire in the event of the failure of a renesas electronics produc t, such as safety design for hardware and software including but not limited to redundancy, fire control and malfunction prevention, appropriate treatment for aging degradation or any other appropriate measu res. because the evaluation of microcomputer software alone is very difficult, please evaluate the safety of the final products or system manufactured by you. 10. please contact a renesas electronics sales office for details as to environmental matters such as the environmental compati bility of each renesas electronics product. please use renesas electronics products in compliance with all applicable laws and regulations that regulate the inclusion or use of controlled substances, in cluding without limitation, the eu rohs directive. renesas electronics assumes no liability for damages or losses occurring as a result of your noncompliance with applicable laws and regulations. 11. this document may not be reproduced or duplicated, in any form, in whole or in part, without prior written consent of renes as electronics. 12. please contact a renesas electronics sales office if you have any questions regarding the information contained in this doc ument or renesas electronics products, or if you have any other inquiries. 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