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Document overview
- Manufacturer or author: Provided By ALLDATASHEET.COM(FREE DATASHEET DOWNLOAD SITE)
- PDF pages: 3
Technical content
Features
■ Excellent Linearity ■ Superior Return Loss Performance ■ Extremely Low Distortion ■ Optimal Reliability ■ Low Noise ■ Unconditionally Stable Under All Terminations ■ 35.8dB Typical Gain at 300MHz ■ 160mA Max. at 24V DC
Applications
■ Broadband/CATV ■ 5MHz to 300MHz CATV Amplifier For Reverse Channel Systems
RF Micro Devices Inc. 7628 Thorndike Road, Greensboro, NC 27409-9421 DS130917 The information in this publication is believed to be accurate. However, no responsibility is assumed by RF Micro Devices, Inc. ("RFMD") for its use, nor for any infringement of patents or other rights of third parties resulting from its use. No license is granted by implication or otherwise under any patent or patent rights of RFMD. RFMD reserves the right to change component circuitry, recommended application circuitry and specifications at any time without prior notice. 2 of 3 RFRP3120 Absolute Maximum Ratings Parameter Rating Unit RF Input Voltage (single tone) 65 dBmV DC Supply Over-Voltage (5 minutes) 30 V Storage Temperature -40 to +100 °C Operating Mounting Base Temperature -30 to +100 °C Caution! ESD sensitive device. RoHS (Restriction of Hazardous Substances): Compliant per EU Directive 2011/65/EU. Exceeding any one or a combination of the Absolute Maximum Rating conditions may cause permanent damage to the device. Extended application of Absolute Maximum Rating conditions to the device may reduce device reliability. Specified typical performance or functional operation of the device under Absolute Maximum Rating conditions is not implied. Nominal Operating Parameters Parameter Specification Unit Condition Min Typ Max General Performance VB = 24V; TMB = 30°C; ZS = ZL = 75Ω Operating Frequency Range 5 300 MHz Power Gain 34.5 35.2 35.5 dB f = 5MHz 34.3 35.8 dB f = 300MHz Slope [1] -0.2 0.6 1.2 dB f = 5MHz to 300MHz Flatness of Frequency Response ±0.4 dB f = 5MHz to 300MHz Input Return Loss -20 dB f = 5MHz to 250MHz Input Return Loss -16 dB f = 250MHz to 300MHz Output Return Loss -20 dB f = 5MHz to 250MHz Output Return Loss -16 dB f = 250MHz to 300MHz Noise Figure 5.1 5.5 dB f = 300MHz Total Current Consumption (DC) 150.0 158.0 160.0 mA Distortion data 5MHz to 300MHz VB = 24V; TMB = 30°C; ZS = ZL = 75Ω CTB -70 dBc 7 ch. flat; V O = 50dBmV [2] -62 -60 dBc 42 ch. flat; V O = 44dBmV [3] XMOD -63 dBc 7 ch. flat; V O = 50dBmV [2] -60 -57 dBc 42 ch. flat; V O = 44dBmV [3] CSO -75 dBc 7 ch. flat; V O = 50dBmV [2] -70 -62 dBc 42 ch. flat; V O = 44dBmV [3] Notes: 1. The slope is defined as the difference between the gain at the start frequency and the gain at the stop frequency. 2. 7 channels, NTSC frequency raster: T7-T13 (7.0MHz to 43MHz), +50dBmV flat output level. level. Composite Second Order (CSO) - The CSO parameter (both sum and difference products) is defined by the NCTA. Composite Triple Beat (CTB) - The CTB parameter is defined by the NCTA. Cross Modulation (XMOD) - Cross modulation (XMOD) is measured at baseband (selective voltmeter method), referenced to 100% modulation of the carrier being tested.
RF Micro Devices Inc. 7628 Thorndike Road, Greensboro, NC 27409-9421 DS130917 The information in this publication is believed to be accurate. However, no responsibility is assumed by RF Micro Devices, Inc. ("RFMD") for its use, nor for any infringement of patents or other rights of third parties resulting from its use. No license is granted by implication or otherwise under any patent or patent rights of RFMD. RFMD reserves the right to change component circuitry, recommended application circuitry and specifications at any time without prior notice. 3 of 3 RFRP3120 Package Outline and Pin Out