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868MHz SAW Filter

868MHz SAW Filter

868MHz SAW Filter
HDF868.35AS3


Scope
This specification covers the characteristics ofSAW filter with 868MHz centre frequency.

Table 1
ElectronicCharacteristics of 868MHz SAW Filter


Item

Frequency

Specification

Center Frequency (fo)

868.35MHz

 

Pass Band Width

Fo ± 2.0MHz

 

Insertion Loss

Passband

4.5dB max.

Stop Band Rejection

Fo-400~-40.8MHz

Fo 50~ 400MHz

47dB min.

40dB min.

Terminating Impedance

 

50 Ω //<10nH

Operating Temperature Range

 

-10 ℃ To 70℃



Marking of 868
MHz SAWFilter
HD F823
Color-Black or Blue
868.35-Center Frequency (MHz)
Performance-Application Low-Loss SAW Filter of cordless system, CenterFrequency 868 MHz

Maximum Rating of 868MHz SAW Filter


Operation Temperature Range

-20 ℃ to 50℃

Storage Temperature Range

-40 ℃ to 85℃

DC. Permissive Voltage

0 V DC. max.

Maximum Input Power

11dBm




Environmental Characteristics of 868MHz SAW Filter 
1. Temperature cycling
The 868MHz SAW filter must be in aplace with low temperature, -40 ℃ for thirty minutes,following by a high temperature of 25℃ forfive minutes and then a higher temperature of 85℃ for thirty minutes. When the device is released into a room with normaltemperature conditions for one or two hours prior to the measurement,it shall meet the specifications in table 1.
2. Resistance tosolder heat
If the device terminals are immerse no closer than 1.5 mm into the solder bath at 260℃ ±10℃ for 10±one second and then releasethe device into a room with normal temperature conditions for four hours, it shall meetthe specifications in table 1.
3. Solderability
Submerge the device terminals into the solder bath at 245℃ ±5℃ for five seconds. More than 95% area of the soldering pad must be covered withnew solder; the 868MHz SAW filter shallmeet the specifications in table 1.
4. Mechanicalshock
Drop the 868MHz SAW filter randomly ontothe concrete floor from a height of 1 m three times. The filter shall fulfil the specifications in table 1.
5. Vibration
Subject the device to vibration for two hours each in x, y and z axeswith amplitude of 1.5 mm at 10 to 55 Hz. The filtershall fulfil the specifications in table 1.
6. Gross Leak Test
Submerging the SAW filter to absolute alcohol for atleast one minute at 70℃ to 75℃, nobubbles should be seen. Measuring the leak rate, failure is defined if the leakrate exceeds 1X10-5 atm cc/sec Helium. Refer to MIL – STD - 202F,method 112 for test details.
7. Fine Leak Test
Failure is defined if the leak rate of the SAW filter exceeds 1X10-5 atm cc/sec Helium. Refer to MIL – STD - 202F,method 112 for test details. 

Remarks for 868MHzSAW Filter usage
1. Static voltage
Please avoid static voltagebetween signal load and ground, it may cause deteriorationor destruction of the SAW filter components.
2. Ultrasonic cleaning
Please avoid ultrasonic cleaning, it may cause deterioration ordestruction of the SAW filter components.
3. Soldering
Please avoid soldering different parts of the SAWfilter components, just leads may be soldered. 

868MHz SAW Filter

Packingof 868MHz SAW Filter
1. Dimensions
(1) Carrier Tape: Figure 1
(2) Reel: Figure 2
(3) The 868MHz SAW filter shall be packed properly to avoid damage during transportation or storage.
2. Reeling Quantity
1000 pieces/reel 7’’
3000 pieces/reel 13’’
4.3. Taping Structure
(1) The tape shall be wrapped around the reel in the direction shown below.



(2) Label


Device Name

 

User Product Name

 

Quantity

 

Lot No.

 


(3) Leader part andvacantposition specifications. 


 


Tape Specifications of 868MHzSAW Filter
1. Tensile Strength of Carrier Tape:4.4N/mm width
2. Top Cover Tape Adhesion(See the belowfigure)
(1) Pull off angle: 0~15º
(2) Speed: 300mm/min.
(3) Force: 20~70g 




[Figure 1] Carrier Tape Dimensions
[Unit: mm]


W

F

E

P0

P1

P2

D0

D1

t1

t2

A

B

12.0±

0.3

5.5

± 0.05

1.75

± 0.1

4.0

± 0.1

8.0

± 0.1

2.0

± 0.05

Ø1.5 ± 0.1

Ø1.0

± 0.25

0.3

± 0.05

2.10 ± 0.1

6.40 ± 0.1

5.20 ±0.1



[Figure 2]


[Unit:mm]


A

B

C

D

E

W

t

r

Ø330

± 1.0

Ø100

± 0.5

Ø13

± 0.5

Ø21

± 0.8

2

± 0.5

13

± 0.3

3

max.

1.0

max.


 



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