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VI TELEFILTER
Potsdamer Strae 18
D 14 513 TELTOW / Germany
Tel: (+49) 3328 4784-52 / Fax: (+49) 3328 4784-30
E-Mail: tft@telefilter.com
VI TELEFILTER reserves the right to make changes to the product(s) and/or information contained herein without notice. No liability is
assumed as a result of their use or application. No rights under any patent accompany the sale of any such product(s) or information.
Vectron International Inc.
267 Lowell Road
Hudson, NH 03051 / USA
Tel: (603) 598-0070 Fax: (603) 598-0075
E-Mail: vti@vtinh.com
Measurement condition
Ambient temperature:
Input power level:
Terminating impedances at
f
c
:
Input:
Output:
External coupling coil:
23
°
C
0 dBm
440
|| -1.15pF
440
|| -1.15pF
98 nH
Construction and pin configuration
see page 2
Characteristics
Remark:
Reference level for the relative attenuation arel of the TFS 360 C is the minimum of the pass band attenuation amin. The minimum of the pass band
attenuation amin is defined as the insertion loss ae. The centre frequency f
is the arithmetic mean value of the upper and lower frequencies at the
1.5 dB filter attenuation level relative to the insertion loss ae. The nominal frequency f
N
is fixed on 360 MHz without tolerance.
D a t a
_____________________________________________________________________________________________________
Insertion loss
ae = amin
(Reference level)
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Nominal frequency
f
___________________________________________________________________________________________________
Centre frequency
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Pass band ripple
± 67,7kHz
BW
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Relative attenuation
arel
typ. value
tolerance/limit
-
max
5,0 dB
-
360,0
MHz
360,0
MHz
-
max 1,5
dB
f
N
± 0,4
f
N
± 0,6
f
N
± 0,8
f
N
± 1,6
f
± 3,0
_____________________________________________________________________________________________________
Group delay ripple
GD
67,76 kHz
fN ±
Input power level
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Operating temperature range
Storage temperature
__________________________________________________________________________________________
Temperature coefficient of frequency ( Tc
)
*)
__________________________________________________________________________________________
Frequency inversion temperature
_____________________________________________________________________________________________________
*)
fc(Hz) = Tc
f
(ppm/K2) x (T - T
A
) 2 x f
CAT
(MHz)
MHz…f
N
± 0,6
MHz…f
N
± 0,8
MHz…f
N
± 1,6
N
MHz…f
± 3,0
MHz
MHz
MHz
MHz
-
-
-
-
-
min
min
min
min
27 dB
42 dB
50 dB
45 dB
-
max
2,0
μ
s
-
max 10
dBm
- 20
°
C ... + 75
°
C
-35
°
C … + 85
°
C
- 0.036
ppm/K2
+ 20
°
C
Generated:
Checked / approved: