PF0341A Series MOS FET Power Amplifier Module for UHF Band ADE-208-338C (Z) 4th. Edition July 1996 Features • Small package: 30 × 10 × 5.9 mm • High output power at low voltage: 2 W Typ at 4.8 V • Low power control current: 200 µA Typ Ordering Information Type Name Operating frequency PF0341A 400 to 430 MHz PF0342A 440 to 470 MHz PF0343A 470 to 490 MHz PF0344A 490 to 512 MHz PF0345A 380 to 400 MHz Pin Arrangement • RF-J1 5 1 2 3 4 1: Pin 2: VPC 3: VDD 4: Pout 5: GND PF0341A Series Internal Diagram and External Circuit G G GND GND Pin1 Pin Pin2 VPC C1 Z1 Pin FB1 Pin3 VDD C3 C4 FB2 Pin4 Pout C2 VDD VPC Z2 Pout C1 = C2 = 0.01 µF (Ceramic chip capacitor) C3 = C4 = 10 µF (Aluminum Electrolyte Capacitor) FB = Ferrite bead BL01RN1-A62-001 (Manufacture: MURATA) or equivalent Z1 = Z2 = 50 Ω (Microstrip line) Absolute Maximum Ratings (Tc = 25°C) Item Symbol Rating Unit Supply voltage VDD 17 V Supply current I DD 3 A PC voltage VPC 4.5 V Input power Pin 50 mW Operating case temperature Tc (op) –30 to +100 °C Storage temperature Tstg –40 to +110 °C 2 PF0341A Series Electrical Characteristics (Tc = 25°C) Item Symbol Min Typ Max Unit Test Condition Drain cutoff current I DS — — 100 µA VDD = 17 V, VPC = 0 V, RL = Rg = 50 Ω, Total efficiency ηT 35 38 — % Pin = 20 mW, VDD = 9.6 V, 2nd harmonic distortion 2nd H.D. — –30 –25 dBc Pout = 7 W (at VPC controlled), 3rd harmonic distortion 3rd H.D. — –60 –40 dBc RL = Rg = 50 Ω, Tc = 25°C Input VSWR VSWR (in) — 2.0 3.0 — Output power (1) Pout (1) 7 8 — W Pin = 20 mW, VDD = 9.6 V, VPC = 3.5 V, RL = Rg = 50 Ω Output power (2) Pout (2) 1.8 2 — W Pin = 20 mW, VDD = 4.8 V, VPC = 3.5 V, RL = Rg = 50 Ω Load VSWR tolerance — No degradation — Pin = 20 mW, VDD = 15 V, Pout ≤ 7 W, (at VPC controlled), Output VSWR = 6:1 All phases Stability — No parasitic oscillation — Pin = 20 mW, VDD = 4.8 to 15 V, Pout ≤ 7 W, (at VPC controlled), Output VSWR = 6:1 All phases Mechanical Characteristics Item Measuring Conditions Spec Torque for screw up the heatsink flange M2.6 Screw Bolts 1.5 to 3.5 kg•cm Warp size of the heatsink flange: S S=0 +0.1/–0 mm S 3 PF0341A Series Characteristics Curve Pout vs. Frequency (1) 10 PF0342A PF0341A PF0345A PF0343A Output Power Pout(1) (W) 8 PF0344A PF0340A 6 PF0340A PF0345A PF0341A PF0342A PF0343A PF0344A 4 512 MHz Pin = 20 mW VDD = 9.6 V VPC = 3.5 V Tc = 25 °C 2 0 360 380 400 420 440 460 480 500 520 Frequency f (MHz) Pout vs. Frequency (2) 3 PF0340A Output Power Pout(2) (W) PF0342A PF0343A PF0341A 2.5 PF0345A 2 1.5 PF0340A PF0345A PF0341A PF0342A PF0343A PF0344A 1 512 MHz 0.5 0 360 Pin = 20 mW VDD = 4.8 V VPC = 3.5 V Tc = 25 °C 380 400 420 440 460 Frequency f (MHz) 4 PF0344A 480 500 520 PF0341A Series ηT vs. Frequency 60 Efficiency ηT (%) 50 PF0345A PF0342A PF0341A 40 PF0343A PF0340A PF0344A 30 20 10 0 360 Pin = 20 mW VDD = 9.6 V Pout = 7 W(at VPC controlled) Tc = 25 °C 380 400 420 440 460 480 500 520 Frequency f (MHz) 5 PF0341A Series VPC, ηT, VSWR (in) vs. Frequency 5 PC Voltage VPC (V) V.S.W.R. (in) 2 ηT 50 4 3 2.5 60 Pin = 20 mW VDD = 9.6 V Pout = 7 W 1.5 40 3 VPC 30 2 20 1 Efficiency ηT (%) 3.5 10 VSWRin 1 0 390 400 410 420 430 0 440 Frequency f (MHz) Pout, ηT, VSWR (in) vs. Frequency 3.5 60 10 VPC 1.5 1 ηT 40 6 30 4 Pin = 20 mW VDD = 9.6 V Pout = 7 W 2 0 390 20 10 VSWRin 400 410 420 Frequency f (MHz) 6 430 0 440 Efficiency ηT (%) 2 Output Power Pout (W) V.S.W.R. (in) 2.5 50 8 3 PF0341A Series Pout, ηT vs. VDD (1) 60 15 f = 400 MHz Pin = 20 mW VPC = 3.5 V 50 ηT 40 9 30 6 20 3 Pout 10 0 0 4.8 2.4 Efficiency ηT (%) Output Power Pout (W) 12 7.2 9.6 0 12 Supply Voltage VDD (V) Pout, ηT vs. VDD (2) 60 15 f = 430 MHz Pin = 20 mW VPC = 3.5 V 50 ηT 40 9 30 6 20 3 10 Pout 0 0 2.4 4.8 Efficiency ηT (%) Output Power Pout (W) 12 7.2 9.6 0 12 Supply Voltage VDD (V) 7 PF0341A Series Pout, ηT vs. Pin (1) 60 12.5 Output Power Pout (W) 10 ηT 50 40 Pout 7.5 30 5 20 2.5 Efficiency ηT (%) f = 400 MHz VDD = 9.6 V VPC = 3.5 V 10 0 0 5 10 15 20 25 0 30 Input Power Pin (mW) Pout, ηT vs. Pin (2) 60 12.5 f = 430 MHz VDD = 9.6 V VPC = 3.5 V 50 40 7.5 Pout 30 5 20 2.5 10 0 0 5 10 15 20 Input Power Pin (mW) 8 25 0 30 Efficiency ηT (%) Output Power Pout (W) 10 ηT PF0341A Series 5 12 4 3 60 f = 400 MHz Pin = 20 mW VDD = 9.6 V ηT 50 40 9 30 Pout 6 20 2 3 1 0 Efficiency ηT (%) 15 Output Power Pout (W) V.S.W.R. (in) Pout, ηT, VSWR (in) vs. VPC (1) 6 10 VSWRin 0 0 1 3 2 4 5 PC Voltage VPC (V) 15 5 12 4 3 2 60 ηT f = 430 MHz Pin = 20 mW VDD = 9.6 V 50 40 9 Pout 30 6 20 3 10 VSWRin 1 Efficiency ηT (%) 6 Output Power Pout (W) V.S.W.R. (in) Pout, ηT, VSWR (in) vs. VPC (2) 0 0 0 1 2 3 4 5 PC Voltage VPC (V) 9 PF0341A Series 5 4 4 3 2 60 f = 400 MHz Pin = 20 mW VDD = 4.8 V 50 ηT 40 3 30 2 20 Efficiency ηT (%) 5 Output Power Pout (W) V.S.W.R. (in) Pout, ηT, VSWR (in) vs. VPC (3) 6 Pout 1 10 VSWRin 1 0 0 0 1 3 2 4 5 PC Voltage VPC (V) 6 5 5 4 3 2 60 f = 430 MHz Pin = 20 mW VDD = 4.8 V 50 ηT 40 3 30 2 20 Pout 1 10 VSWRin 1 0 0 0 1 2 3 PC Voltage VPC (V) 10 4 5 Efficiency ηT (%) 4 Output Power Pout (W) V.S.W.R. (in) Pout, ηT, VSWR (in) vs. VPC (4) PF0341A Series Package Dimensions Unit: mm 3 ± 0.3 6 ± 0.3 10 ± 0.5 30 ± 0.5 26.6 ± 0.3 22 ± 0.5 (2-R1.5) +0.5 -0.15 5.8 ± 0.5 0.5 6.1 ± 1 (1.5) 0.125-0.05 +0.5 (2.2) 5.9max. 11.2 ± 1 16.3 ± 1 23.9 ± 1 Hitachi code EIAJ code JEDEC code RF-J1 — — 11 Cautions 1. Hitachi neither warrants nor grants licenses of any rights of Hitachi’s or any third party’s patent, copyright, trademark, or other intellectual property rights for information contained in this document. Hitachi bears no responsibility for problems that may arise with third party’s rights, including intellectual property rights, in connection with use of the information contained in this document. 2. Products and product specifications may be subject to change without notice. Confirm that you have received the latest product standards or specifications before final design, purchase or use. 3. Hitachi makes every attempt to ensure that its products are of high quality and reliability. However, contact Hitachi’s sales office before using the product in an application that demands especially high quality and reliability or where its failure or malfunction may directly threaten human life or cause risk of bodily injury, such as aerospace, aeronautics, nuclear power, combustion control, transportation, traffic, safety equipment or medical equipment for life support. 4. Design your application so that the product is used within the ranges guaranteed by Hitachi particularly for maximum rating, operating supply voltage range, heat radiation characteristics, installation conditions and other characteristics. Hitachi bears no responsibility for failure or damage when used beyond the guaranteed ranges. Even within the guaranteed ranges, consider normally foreseeable failure rates or failure modes in semiconductor devices and employ systemic measures such as failsafes, so that the equipment incorporating Hitachi product does not cause bodily injury, fire or other consequential damage due to operation of the Hitachi product. 5. This product is not designed to be radiation resistant. 6. No one is permitted to reproduce or duplicate, in any form, the whole or part of this document without written approval from Hitachi. 7. Contact Hitachi’s sales office for any questions regarding this document or Hitachi semiconductor products. Hitachi, Ltd. Semiconductor & IC Div. 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Ltd. 16 Collyer Quay #20-00 Hitachi Tower Singapore 049318 Tel: 535-2100 Fax: 535-1533 Hitachi Asia Ltd. Taipei Branch Office 3F, Hung Kuo Building. No.167, Tun-Hwa North Road, Taipei (105) Tel: <886> (2) 2718-3666 Fax: <886> (2) 2718-8180 Hitachi Asia (Hong Kong) Ltd. Group III (Electronic Components) 7/F., North Tower, World Finance Centre, Harbour City, Canton Road, Tsim Sha Tsui, Kowloon, Hong Kong Tel: <852> (2) 735 9218 Fax: <852> (2) 730 0281 Telex: 40815 HITEC HX Copyright © Hitachi, Ltd., 1998. All rights reserved. Printed in Japan.