856080 TRIQUINT | Alldatasheet

Document overview

  • Manufacturer or author: Provided By ALLDATASHEET.COM(FREE DATASHEET DOWNLOAD SITE)
  • PDF pages: 7

Technical content

Features

  • For PCS applications
  • Usable bandwidth 60 MHz
  • Low loss
  • High attenuation at Tx band
  • No impedance matching required for operation at 50 Ω
  • Single-ended operation
  • Ceramic Surface Mount Package (SMP)
  • Small size Package Pin Configuration Surface Mount 2.00 x 2.00 x 0.76 mm Bottom View Pin No. Description

1 Input

3 Output

2,4 Case ground 0.25x45° CHAMFER 0.58 0.58 1.30 1.30 2.00 2.00 0.76 NOM. 0.84 MAX. Dimensions shown are nominal in millimeters All tolerances are ±0.10mm Body: Al2O3 ceramic Lid: Kovar or Alloy 42, Au over Ni plated Terminations: Au plating 0.5 - 1.0µm, over a 2 - 6µm Ni plating

1960 MHz SAW Filter

Subject to change or obsolescence without notice Rev D 05-Sep-2002 Page 2 of 7 Electrical Specifications (1) Operating Temperature: (2) +25 oC Parameter (3) Minimum Typical Maximum Unit Center Frequency - 1960 - MHz Insertion Loss 1930 - 1990 MHz 2.5 3.5 dB Amplitude Ripple 1930 - 1990 MHz 1.0 1.8 dB p-p Absolute Attenuation 10 - 1600 MHz 1600 - 1850 MHz 1850 - 1910 MHz 2030 - 2070 MHz 2070 - 2800 MHz 3000 - 6000 MHz dB dB dB dB dB dB Input/Output Return Loss 1930 - 1990 MHz 7.0 8.5 dB Source Impedance (4) - 50 - Ω Load Impedance (4) - 50 - Ω Notes: 1. All specifications are based on the test circuit shown below 2. In production, devices will be tested at room temperature to a guardbanded specification to ensure electrical compliance over temperature 3. Electrical margin has been built into the design to accoun t for the variations due to temperature drift and manufacturing tolerances 4. This is the optimum impedance in order to achieve the performance shown Test Circuit: 50 Ω Single-ended 2,4 1 3 50 50Ω Ω No impedance matching required

Subject to change or obsolescence without notice Rev D 05-Sep-2002 Page 3 of 7 Electrical Specifications (1) Operating Temperature Range: (2) -30 to +80 oC Parameter (3) Minimum Typical Maximum Unit Center Frequency - 1960 - MHz Insertion Loss 1930 - 1990 MHz 2.9 dB Amplitude Ripple 1930 - 1990 MHz 1.0 1.8 dB p-p Absolute Attenuation 10 - 1600 MHz 1600 - 1850 MHz 1850 - 1910 MHz 2030 - 2070 MHz 2070 - 2800 MHz 3000 - 6000 MHz dB dB dB dB dB dB Input/Output Return Loss 1930 - 1990 MHz 8.5 dB Source Impedance (4) - 50 - Ω Load Impedance (4) - 50 - Ω Notes: 1. All specifications are based on the test circuit shown below 2. In production, devices will be tested at room temperature to a guardbanded specification to ensure electrical compliance over temperature 3. Electrical margin has been built into the design to accoun t for the variations due to temperature drift and manufacturing tolerances 4. This is the optimum impedance in order to achieve the performance shown Test Circuit: 50 Ω Single-ended 2,4 1 3 50 50Ω Ω No impedance matching required

Subject to change or obsolescence without notice Rev D 05-Sep-2002 Page 4 of 7 Electrical Specifications (1) Operating Temperature Range: (2) -30 to +85 oC Parameter (3) Minimum Typical Maximum Unit Center Frequency - 1960 - MHz Insertion Loss 1930 - 1931.5 MHz 1930 - 1931.5 MHz 1931.5 - 1990 MHz (-30 to +45 oC) (-30 to +60 oC) 2.9 2.9 2.9 4.25 4.50 3.50 dB dB dB Amplitude Ripple 1930 - 1990 MHz 1.0 1.8 dB p-p Absolute Attenuation 10 - 1600 MHz 1600 - 1850 MHz 1850 - 1910 MHz 1850 - 1910 MHz 2030 - 2070 MHz 2070 - 2800 MHz 3000 - 6000 MHz (-30 to +45 oC) (-30 to +60 oC) dB dB dB dB dB dB dB Input/Output Return Loss 1930 - 1990 MHz 8.5 dB Source Impedance (4) - 50 - Ω Load Impedance (4) - 50 - Ω Notes: 1. All specifications are based on the test circuit shown below 2. In production, devices will be tested at room temperature to a guardbanded specification to ensure electrical compliance over temperature 3. Electrical margin has been built into the design to accoun t for the variations due to temperature drift and manufacturing tolerances 4. This is the optimum impedance in order to achieve the performance shown Test Circuit: 50 Ω Single-ended 2,4 1 3 50 50Ω Ω No impedance matching required

Subject to change or obsolescence without notice Rev D 05-Sep-2002 Page 5 of 7 Typical Performance (at +25oC)

Subject to change or obsolescence without notice Rev D 05-Sep-2002 Page 6 of 7 Matching Schematics 50 Ω Single-ended 2,4 1 3 50 50Ω Ω No impedance matching required Marking PCB Footprint ID dot Marking code logo Sawtek Date code D JJJYM .51 .78 SQ CHAMFER 2.08 SQ .31x45° The date code consists of: JJJ = Julian day, Y = last digit of year, M = manufacturing site code This footprint represents a recommendation only Dimensions shown are nominal in millimeters Tape and Reel 8.03.5 1.1 Section A-A 2.23 2.23 Ø1.0 A A4.0 1.75Ø1.54.0 2.00.254 8.5 2.7 Ø102 Ø13.0 Ø20.2 Ø330 Direction of travel 2.0 logo Sawtek ID dot Dimensions shown are nominal in millimeters Packaging quantity: 10000 units/reel

Subject to change or obsolescence without notice Rev D 05-Sep-2002 Page 7 of 7 Maximum Ratings Parameter Symbol Minimum Maximum Unit Operating Temperature Range T -30 +80 oC Storage Temperature Range T stg -40 +85 oC Warnings

  • Electrostatic Sensitive Device (ESD)
  • Avoid ultrasonic exposure Links to Additional Technical Information PCB Layout Tips Qualification Flowchart Soldering Profile S-Parameters Other Technical Information Sawtek’s liability is limited only to the Surface Acoustic Wave (SAW) component(s) described in this data sheet. Sawtek does not accept any liability for applications, processes, circuits or assemblies which are implemented using any Sawtek component described in this data sheet. Contact Information PO Box 609501 Orlando, FL 32860-9501 USA Phone: +1 (407) 886-8860 Fax: +1 (407) 886-7061 Email: custservice@sawtek.com Web: www.sawtek.com Or contact one of our worldwide Network of sales offices, Representatives or distributors