DATASHEET SEARCH SITE | WWW.ALLDATASHEET.COM

Document overview

  • Manufacturer or author: Provided By ALLDATASHEET.COM(FREE DATASHEET DOWNLOAD SITE)
  • PDF pages: 22

Technical content

Datasheet sections

Features

 RF range: 3.0GHz to 4.2GHz  Gain = 19dB at 3.55GHz  Noise figure = 1.8dB at 3.55GHz  OIP3 = +32dBm at 3.55GHz  Output P1dB = +18dBm at 3.55GHz  Gain variation over temperature = ±0.15dB typical  50Ω single-ended input impedances  100Ω differential output impedances  3.3V or 5V power supply  ICC = 60mA at 5V  1.3mA standby current  1.8V and 3.3V logic support for STBY control  Operating temperature (TEP) range: -40°C to +115°C  2 × 2 mm, 12-DFN package Block Diagram Figure 1. F1129MB Block Diagram

Figure 2. F1129MB Pin Assignments for 2 × 2 × 0.75 mm 12-DFN Package – Top View Table 1. Pin Descriptions as close to each pin as possible. 2 RF_IN Single ended RF Input. Must use external DC block. condition. Apply a logic HIGH for STBY. shorting of any DC voltage that may be present on the following RF stage. shorting of any DC voltage that may be present on the following RF stage. 12 VCC_2 Connect to VCC. An external bypass capacitor must be placed as close to the pin as possible. pad that uses multiple ground vias to provide heat transfer out of the device into the PCB ground planes. These multiple ground vias are also required to achieve the specified RF performance.

The absolute maximum ratings are stress ratings only. Stresses greater than those listed below can cause permanent damage to the device. Table 2. Absolute Maximum Ratings [a] Exposure to these maximum RF levels can result in significant VCC current draw due to overdriving the amplifier stages. [b] Tested using an external 2:1 transformer at the RF output. Table 3. Recommended Operating Conditions a supply voltage range of 4.75V to 5.25V. [b] To optimize RF performance, different matching components might be used as described in the BOM.

ZS = 50Ω single ended, ZL = 100Ω differential, and EVKit traces and connectors are de-embedded, unless otherwise stated. Table 4. Electrical Characteristics with a 5V Supply Note: See important table notes at the end of the table.

© 2019 Renesas Electronics Corporation 7 January 31, 2021 Parameter Symbol Condition Minimum Typical Maximum Units Gain Variation over Temperature GTEMP TEP = -40°C to +115°C ±0.15 dB Reverse Isolation REVISO 31 dB Amplitude Imbalance[b] IMBALAMP fRF = 3.0GHz 0.2 dB fRF = 3.3GHz 0.3 fRF = 3.55GHz 0.5 fRF = 3.8GHz 0.6 fRF = 4.2GHz 0.8 Phase Imbalance[c] IMBALPH fRF = 3.0GHz 3.3 deg fRF = 3.3GHz 2.6 fRF = 3.55GHz 1.8 fRF = 3.8GHz 1.2 fRF = 4.2GHz 1.6 Common Mode Rejection[d] CMR fRF = 3.0GHz 29 dB fRF = 3.3GHz 29.5 fRF = 3.55GHz 29.5 fRF = 3.8GHz 28 fRF = 4.2GHz 26 Noise Figure NF fRF = 3.0GHz 1.7 dB fRF = 3.3GHz 1.7 fRF = 3.55GHz 1.8 2 fRF = 3.8GHz 1.9 fRF = 4.2GHz 2.1 Noise Figure Variation over Temp NFTEMP TEP = -40°C to +115°C ± 0.5 dB Output Third Order Intercept Point[e] OIP3 fRF = 3.0GHz 34 dBm fRF = 3.3GHz 33 fRF = 3.55GHz 30 32 fRF = 3.8GHz 32 fRF = 4.2GHz 29 Output P1dB OP1dB fRF = 3.0GHz 20 dBm fRF = 3.3GHz 19 fRF = 3.55GHz 16 18 fRF = 3.8GHz 18 fRF = 4.2GHz 16.5

© 2019 Renesas Electronics Corporation 8 January 31, 2021 [a] Specifications in the minimum/maximum columns that are shown in bold italics are guaranteed by test. Specifications in these columns that are not shown in bold italics are guaranteed by design characterization. [b] Measures RF_IN to RF_OUT- and compares RF_IN to RF_OUT+ amplitude. [c] Measures RF_IN to RF_OUT- and compares RF_IN to RF_OUT+ phase. Deviation is from ideal 180 degrees. [d] Measures RF_IN to RF_OUT- and compares RF_IN to RF_OUT+. [e] OIP3 test conditions: Tone spacing = 5MHz, POUT = +0dBm/tone.

ZS = 50Ω single ended, ZL = 100Ω differential, and EVKit traces and connectors are de-embedded, unless otherwise stated. Table 5. Electrical Characteristics with a 3.3V Supply Note: See important table notes at the end of the table.

© 2019 Renesas Electronics Corporation 10 January 31, 2021 Parameter Symbol Condition Minimum Typical Maximum Units Reverse Isolation REVISO 31 dB Amplitude Imbalance[b] IMBALAMP fRF = 3.0GHz 0.2 dB fRF = 3.3GHz 0.3 fRF = 3.55GHz 0.5 fRF = 3.8GHz 0.6 fRF = 4.2GHz 0.8 Phase Imbalance[c] IMBALPH fRF = 3.0GHz 3.3 deg fRF = 3.3GHz 2.5 fRF = 3.55GHz 1.8 fRF = 3.8GHz 1.1 fRF = 4.2GHz 1.6 Common Mode Rejection[d] CMR fRF = 3.0GHz 29 dB fRF = 3.3GHz 29.5 fRF = 3.55GHz 29.5 fRF = 3.8GHz 28 fRF = 4.2GHz 26 Noise Figure NF fRF = 3.0GHz 1.8 dB fRF = 3.3GHz 1.8 fRF = 3.55GHz 1.9 fRF = 3.8GHz 2 fRF = 4.2GHz 2.2 Noise Figure Variation over Temp NFTEMP TEP = -40°C to +115°C ±0.5 dB Output Third Order Intercept Point[e] OIP3 fRF = 3.0GHz 27 dBm fRF = 3.3GHz 27 fRF = 3.55GHz 26 fRF = 3.8GHz 25 fRF = 4.2GHz 21 Output P1dB OP1dB fRF = 3.0GHz 15 dBm fRF = 3.3GHz 14.5 fRF = 3.55GHz 13 fRF = 3.8GHz 13 fRF = 4.2GHz 12

are not shown in bold italics are guaranteed by design characterization. [b] Measures RF_IN to RF_OUT- and compares RF_IN to RF_OUT+ amplitude. [c] Measures RF_IN to RF_OUT- and compares RF_IN to RF_OUT+ phase. Deviation is from ideal 180 degrees. [d] Measures RF_IN to RF_OUT- and compares RF_IN to RF_OUT+. [e] OIP3 test conditions: Tone spacing = 5MHz, POUT = +0dBm/tone. Table 6. Package Thermal Characteristics

Figure 25. Evaluation Kit Electrical Schematic Table 7. Evaluation Kit Bill of Material (BOM)

8 SMA Edge Mount 142-0701-851 Cinch Connectivity

0 Do not install

© 2019 Renesas Electronics Corporation 18 January 31, 2021

Application Information

A common VCC power supply should be used for all pins requiring DC power. All supply pins should be bypassed with external ca pacitors to minimize noise and fast transients. Supply noise can degrade noise figure and fast transients can trigger ESD clamps an d cause them to fail. Supply voltage change or transients should have a slew rate smaller than 1V/20µS. In addition, all control pins should remain at 0V (±0.3V) while the supply voltage ramps or while it returns to zero. If control signal integrity is a concern and clean signals cannot be guaranteed due to overshoot, undershoot, ringing, etc., the following circuit at the input of the STBY control pin is recommended. This applies to the STBY pin as shown below. Note the recommended resistor and capacitor values do not necessarily match the EVKit BOM for the case of poor control signal integrity. For multiple devices driven by a single control line, the component values will need to be adjusted accordingly so as not to load down the control line. Figure 26. Control Pin Interface Schematic

© 2019 Renesas Electronics Corporation 19 January 31, 2021 Package Outline Drawings The package outline drawings are located at the end of this document and are accessible from the Renesas website. The package information is the most current data available and is subject to change without revision of this document. Marking Diagram 11MB YW Line 1: 11MB = abbreviated the part number (F1129MB). Line 2: Y = Year code, last digit of production year (“8” would correspond to 2018). W = Work week code (“W” corresponds to week 30). = Sequential alpha characters for lot traceability.

Ordering Information

Orderable Part Number Package MSL Rating Carrier Type Temperature F1129MBNELI 2 × 2 × 0.75 mm 12-DFN 1 Cut Reel -40° to +115°C F1129MBNELI8 2 × 2 × 0.75 mm 12-DFN 1 Reel -40° to +115°C F1129MBEVB Evaluation Board

Revision History

Revision Date Description of Change January 31, 2021  Updated the Package Outline Drawings website link  Updated the Carrier Type information in Ordering Information May 21, 2020 Updated base part number table in Description. April 29, 2020 Added Application Information for Power Supplies. January 21, 2020 Updated Evaluation Kit pictures. December 5, 2019 Initial release.

© Integrated Device Technology, Inc.

© Integrated Device Technology, Inc. July 31, 2017Rev 00Initial ReleasePackage Revision HistoryRev No.Date CreatedDescriptionSept 5, 2018Rev 01Add "K" Value Minimium 0.20 mm, Correct L/F Thickness

TOYOSU FORESIA, 3-2-24 Toyosu, Koto-ku, Tokyo 135-0061, Japan www.renesas.com Contact Information For further information on a product, technology, the most up-to-date version of a document, or your nearest sales office, please visit: www.renesas.com/contact/ Trademarks Renesas and the Renesas logo are trademarks of Renesas Electronics Corporation. All trademarks and registered trademarks are the property of their respective owners. IMPORTANT NOTICE AND DISCLAIMER RENESAS ELECTRONICS CORPORATION AND ITS SUBSIDIARIES (“RENESAS”) PROVIDES TECHNICAL SPECIFICATIONS AND RELIABILITY DATA (INCLUDING DATASHEETS), DESIGN RESOURCES (INCLUDING REFERENCE DESIGNS), APPLICATION OR OTHER DESIGN ADVICE, WEB TOOLS, SAFETY INFORMATION, AND OTHER RESOURCES “AS IS” AND WITH ALL FAULTS, AND DISCLAIMS ALL WARRANTIES, EXPRESS OR IMPLIED, INCLUDING, WITHOUT LIMITATION, ANY IMPLIED WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE, OR NON-INFRINGEMENT OF THIRD PARTY INTELLECTUAL PROPERTY RIGHTS. These resources are intended for developers skilled in the art designing with Renesas products. You are solely responsible for (1) selecting the appropriate products for your application, (2) designing, validating, and testing your application, and (3) ensuring your application meets applicable standards, and any other safety, security, or other requirements. These resources are subject to change without notice. Renesas grants you permission to use these resources only for development of an application that uses Renesas products. Other reproduction or use of these resources is strictly prohibited. No license is granted to any other Renesas intellectual property or to any third party intellectual property. Renesas disclaims responsibility for, and you will fully indemnify Renesas and its representatives against, any claims, damages, costs, losses, or liabilities arising out of your use of these resources. Renesas' products are provided only subject to Renesas' Terms and Conditions of Sale or other applicable terms agreed to in writing. No use of any Renesas resources expands or otherwise alters any applicable warranties or warranty disclaimers for these products. (Rev.1.0 Mar 2020) © 2020 Renesas Electronics Corporation. All rights reserved.