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856561

Part # 856561
Description 1412 GPS SAW FILTER
Category FILTER
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Technical Document


DISCLAIMER: The information provided herein is solely for informational purposes. Customers must be aware of the suitability of this product for their application, and consider that variable factors such as Manufacturer, Product Category, Date Codes, Pictures and Descriptions may differ from available inventory.

856561
1575.42MHz SAW filters
Final Data Sheet: Rev H 10/10/2014
- 1 of 6 -
Disclaimer: Subject to change without notice e
© 2013 TriQuint Semiconductor, Inc.
Connecting the Digital World to the Global Network
®
Applications
For GPS application
Suitable for Automotive applications-
Compliant to the AEC-Q200 reliability standard
Surface Mount 1.40 x 1.20 x 0.46 mm
Product Features
Functional Block Diagram
Compatible with leading chipset suppliers
Low loss
Usable bandwidth of 2 MHz
Single-ended operation
Ceramic Chip Scale Package (CSP)
Hermetic
Manufacturing facilities are certified with
ISO/TS 16949:2002
RoHS compliant (2002/95/EC), Pb-free
General Description
Pin Configuration
The 856561 is a high-performance SAW filter designed
for GPS applications. It is suitable for Automotive
applications too.
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 - 1.0 m,
over a 2 - 6 m Ni plating
Pin #
Description
1
Input
4
Output
3
Ground
2,5
Case ground
Part No.
Description
856561
Packaged part
856561-EVB
Evaluation board
Pb
856561
1575.42MHz SAW filters
Final Data Sheet: Rev H 10/10/2014
- 2 of 6 -
Disclaimer: Subject to change without notice e
© 2013 TriQuint Semiconductor, Inc.
Connecting the Digital World to the Global Network
®
Electrical Specifications
(1)
Operating Temperature Range:
(2)
-40 to +85
o
C
Parameter
(3)
Minimum
Typical
(4)
Maximum
Unit
Center Frequency
-
1575.42
-
MHz
Insertion Loss
1574.42 - 1576.42 MHz (-30 to +85
o
C)
1574.42 - 1576.42 MHz
-
-
0.75
0.75
1.2
1.4
dB
dB
Absolute Attenuation
(5)
0.1 - 824 MHz
824 - 849 MHz
849 - 960 MHz
1495 - 1515 MHz
1635 - 1655 MHz
1710 - 1750 MHz
1750 - 1780 MHz
1780 - 1785 MHz
1850 - 1910 MHz
1920 - 1980 MHz
2402 - 2480 MHz
3000 - 4000 MHz
4000 - 6000 MHz
32
33.5
32
25
35
35
35
35
35
35
25
10
10
36
36
36
31
40
39
39
39
39
39
35
15
15
-
-
-
-
-
-
-
-
-
-
-
-
-
dB
dB
dB
dB
dB
dB
dB
dB
dB
dB
dB
dB
dB
Input/output Return Loss
1574.42 - 1576.42 MHz
10
15
-
dB
Source Impedance (single-ended)
(6)
-
50
-

Load Impedance (single-ended)
(6)
-
50
-

Notes:
(1) All specifications are based on the TriQuint 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 account for the variations due to temperature drift and manufacturing tolerances
(4) Typical values are based on average measurements at room temperature
(5) Relative to zero dB
(6) This is the optimum impedance in order to achieve the performance shown
856561
1575.42MHz SAW filters
Final Data Sheet: Rev H 10/10/2014
- 3 of 6 -
Disclaimer: Subject to change without notice e
© 2013 TriQuint Semiconductor, Inc.
Connecting the Digital World to the Global Network
®
Absolute Maximum Ratings
Parameter
Rating
Operating Temperature
(7)
-40 to +85
o
C
Storage Temperature
-40 to +85
o
C
Power handling
824-849 Mhz,
1850-1910 Mhz
+20 dBm
+20 dBm
(8)
Notes:
(7) The SAW filter will function over the recommended range without degradation in reliability or permanent change in performance,
but is not guaranteed to meet electrical specifications.
(8) Power handling will be CW signal for 10,000 hours at +55
o
Matching Schematics
50
Single-ended
Input
2,5
1
4
50
50
3
50
Single-ended
Output
Marking
PCB Footprint
Marking
code
MFG site
P M
WWY
ID dot
Date code
0.15
1.35
0.15
1.00
0.425
0.35
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
Notes:
1. Actual matching may vary due to PCB layout and parasitic
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