Part Number Hot Search : 
D22015LH W83L51 0N08S BSH207 LIGHT EB52F4 54HC1 SB0503EC
Product Description
Full Text Search
 

To Download 856575 Datasheet File

  If you can't view the Datasheet, Please click here to try to view without PDF Reader .  
 
 


  Datasheet File OCR Text:
 Preliminary Data Sheet
Features
* * * * * * * * * For DCS applications Usable bandwidth of 75 MHz Compatible with leading chipset suppliers Low loss Single-ended input, 50 Balanced output, 150 Ceramic Chip Scale Package (CSP) Hermetic RoHS compliant (2002/95/EC), Pb-free Pb
Part Number 856575 1842.5 MHz SAW Filter
*
Package
Surface Mount 1.40 x 1.20 x 0.46 mm
Pin Configuration
Bottom View
2 3
1
0.46 NOM. 0.50 MAX.
1.40 1.25 0.50
5
4
1.20 0.325
0.25
0.90
0.25
Pin No. 1 3,4 2,5
Description Input Output Case ground
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 - 1.0m, over a 2 - 6m Ni plating
Subject to change or obsolescence without notice
Rev B
(c) 10-06 TriQuint Semiconductor, Inc.
Page 1 of 7
Preliminary Data Sheet
Operating Temperature Range: (2) +25 oC
Part Number 856575 1842.5 MHz SAW Filter
Electrical Specifications (1)
Parameter (3)
Center Frequency Maximum Insertion Loss 1805 - 1880 MHz Absolute Attenuation 100 - 1200 MHz 1200 - 1705 MHz 1705 - 1764 MHz 1764 - 1785 MHz 1920 - 1980 MHz 1980 - 3000 MHz 3000 - 5415 MHz 5415 - 5640 MHz 5640 - 6000 MHz Output Amplitude Balance (|S31/S21|) 1805 - 1880 MHz Output Phase Balance [(S31)-S21+180] 1805 - 1880 MHz Input/Output VSWR 1805 - 1880 MHz Source Impedance (4) Load Impedance (Balanced) (4) Notes:
1. 2. 3. 4. All specifications are based on the test circuit shown below In production, devices will be tested at room temperature to a guardbanded specification to ensure electrical compliance over temperature Electrical margin has been built into the design to account for the variations due to temperature drift and manufacturing tolerances This is the optimum impedance in order to achieve the performance shown
Minimum
25 25 20 9 14 20 20 38 37 -1.5 -10 -
Typical
1842.5 1.6 38 33 25 12 16 24 41 48 45 1.3 5 2.0 50 150
Maximum
2.0 1.5 10 2.5 -
Unit
MHz dB dB dB dB dB dB dB dB dB dB dB degree
Test Circuit:
Actual matching values may vary due to PCB layout and parasitics
1.9pF 2 4 15nH 50 1,3,5 6 1.9pF 150
50 Single-ended Input
150 Balanced Output
Subject to change or obsolescence without notice
Rev B
(c) 10-06 TriQuint Semiconductor, Inc.
Page 2 of 7
Preliminary Data Sheet
Operating Temperature Range: (2) -20 to +75 C
Part Number 856575 1842.5 MHz SAW Filter
Electrical Specifications (1)
Parameter (3)
Center Frequency Maximum Insertion Loss 1805 - 1880 MHz Absolute Attenuation 100 - 1200 MHz 1200 - 1705 MHz 1705 - 1764 MHz 1764 - 1785 MHz 1920 - 1980 MHz 1980 - 3000 MHz 3000 - 5415 MHz 5415 - 5640 MHz 5640 - 6000 MHz Output Amplitude Balance (|S31/S21|) 1805 - 1880 MHz Output Phase Balance [(S31)-S21+180] 1805 - 1880 MHz Input/Output VSWR 1805 - 1880 MHz Source Impedance (4) Load Impedance (Balanced) (4) Notes:
1. 2. 3. 4. All specifications are based on the test circuit shown below In production, devices will be tested at room temperature to a guardbanded specification to ensure electrical compliance over temperature Electrical margin has been built into the design to account for the variations due to temperature drift and manufacturing tolerances This is the optimum impedance in order to achieve the performance shown
Minimum
25 25 20 6 14 20 20 38 37 -1.5 -10 -
Typical
1842.5 1.6 38 33 25 12 16 24 41 48 45 1.3 5 2.0 50 150
Maximum
2.3 1.5 10 2.5 -
Unit
MHz dB dB dB dB dB dB dB dB dB dB dB degree
Test Circuit:
Actual matching values may vary due to PCB layout and parasitics
1.9pF 2 4 15nH 50 1,3,5 6 1.9pF 150
50 Single-ended Input
150 Balanced Output
Subject to change or obsolescence without notice
Rev B
(c) 10-06 TriQuint Semiconductor, Inc.
Page 3 of 7
Preliminary Data Sheet
Operating Temperature Range: (2) -25 to +80 C
Part Number 856575 1842.5 MHz SAW Filter
Electrical Specifications (1)
Parameter (3)
Center Frequency Maximum Insertion Loss 1805 - 1880 MHz Absolute Attenuation 100 - 1200 MHz 1200 - 1705 MHz 1705 - 1764 MHz 1764 - 1785 MHz 1920 - 1980 MHz 1980 - 3000 MHz 3000 - 5415 MHz 5415 - 5640 MHz 5640 - 6000 MHz Output Amplitude Balance (|S31/S21|) 1805 - 1880 MHz Output Phase Balance [(S31)-S21+180] 1805 - 1880 MHz Input/Output VSWR 1805 - 1880 MHz Source Impedance (4) Load Impedance (Balanced) (4) Notes:
1. 2. 3. 4. All specifications are based on the test circuit shown below In production, devices will be tested at room temperature to a guardbanded specification to ensure electrical compliance over temperature Electrical margin has been built into the design to account for the variations due to temperature drift and manufacturing tolerances This is the optimum impedance in order to achieve the performance shown
Minimum
25 25 20 6 14 20 20 38 37 -1.5 -10 -
Typical
1842.5 1.6 38 33 25 12 16 24 41 48 45 1.3 5 2.0 50 150
Maximum
2.4 1.5 10 2.5 -
Unit
MHz dB dB dB dB dB dB dB dB dB dB dB degree
Test Circuit:
Actual matching values may vary due to PCB layout and parasitics
1.9pF 2 4 15nH 50 1,3,5 6 1.9pF 150
50 Single-ended Input
150 Balanced Output
Subject to change or obsolescence without notice
Rev B
(c) 10-06 TriQuint Semiconductor, Inc.
Page 4 of 7
Preliminary Data Sheet
Part Number 856575 1842.5 MHz SAW Filter
Typical Performance (at +25oC)
Subject to change or obsolescence without notice
Rev B
(c) 10-06 TriQuint Semiconductor, Inc.
Page 5 of 7
Preliminary Data Sheet
Actual matching values may vary due to PCB layout and parasitics
Part Number 856575 1842.5 MHz SAW Filter
Matching Schematics
1.9pF 2 4 15nH 50 1,3,5 6 1.9pF 150
50 Single-ended Input
150 Balanced Output
Marking
Marking code MFG site
PCB Footprint
1.35 0.15
TM WWY
ID dot Date code
0.35 0.425
0.15 1.00
The date code consists of: WW = 2 digit week, Y = last digit of year, M = manufacturing site code
This footprint represents a recommendation only Dimensions shown are nominal in millimeters
Tape and Reel
2.7 8.8 O330 ID dot
4.0 0.3 2.0
O1.5
A
1.75
1.73
O102 O20.2 O13.0 Direction of travel 2.0
3.5 8.0 4.0 O1.0
0.91 Section A-A
1.47
A
Dimensions shown are nominal in millimeters Packaging quantity: 10000 units/reel
Subject to change or obsolescence without notice
Rev B
(c) 10-06 TriQuint Semiconductor, Inc.
Page 6 of 7
Preliminary Data Sheet
Parameter
Operating Temperature Range Storage Temperature Range
Part Number 856575 1842.5 MHz SAW Filter
Symbol
T Tstg
Maximum Ratings
Minimum
-20 -40
Maximum
+80 +85
Unit
o o
C C
Important Notes
Warnings
* * * * Electrostatic Sensitive Device (ESD) Avoid ultrasonic exposure
RoHS Compliance
This product complies with EU directive 2002/95/EC (RoHS)
Pb
Solderability
Compatible with JEDEC J-STD-020C Pb-free process, 260C peak reflow temperature (see soldering profile)
Links to Additional Technical Information
PCB Layout Tips S-Parameters Qualification Flowchart RoHS Information Soldering Profile Other Technical Information
TriQuint's liability is limited only to the Surface Acoustic Wave (SAW) component(s) described in this data sheet. TriQuint does not accept any liability for applications, processes, circuits or assemblies, which are implemented using any TriQuint component described in this data sheet.
Contact Information
PO Box 609501 Orlando, FL 32860-9501 USA
Subject to change or obsolescence without notice
Phone: +1 (407) 886-8860 Fax: +1 (407) 886-7061 Email: info-product@tqs.com Web: www.triquint.com
Or contact one of our worldwide Network of sales offices, Representatives or distributors
Rev B
(c) 10-06 TriQuint Semiconductor, Inc.
Page 7 of 7


▲Up To Search▲   

 
Price & Availability of 856575

All Rights Reserved © IC-ON-LINE 2003 - 2022  

[Add Bookmark] [Contact Us] [Link exchange] [Privacy policy]
Mirror Sites :  [www.datasheet.hk]   [www.maxim4u.com]  [www.ic-on-line.cn] [www.ic-on-line.com] [www.ic-on-line.net] [www.alldatasheet.com.cn] [www.gdcy.com]  [www.gdcy.net]


 . . . . .
  We use cookies to deliver the best possible web experience and assist with our advertising efforts. By continuing to use this site, you consent to the use of cookies. For more information on cookies, please take a look at our Privacy Policy. X