Available on Tape
and Reel For Pick and
Place Manufacturing.
USA/Canada:
Toll Free:
Europe:
(315) 432-8909
(800) 544-2414
+44 2392-232392
Model 2425B50-50C
Rev. A
rit
Xinger Balun
50Ω to 100Ω Balanced
Description
The 2425B50-50C is a low profile sub-miniature balanced to unbalanced
transformer designed for differential inputs and output locations on next generation
wireless chipsets in an easy to use surface mount package covering 802.11b+g.
The 2425B50-50C is ideal for high volume manufacturing and is higher performance
than traditional ceramic baluns. The 2425B50-50C has an unbalanced port
impedance of 50Ω and a 100Ω balanced port impedance*. This transformation
enables single ended signals to be applied to differential ports on modern integrated
chipsets. The output ports have equal amplitude (-3dB) with 180 degree phase
differential. The 2425B50-50C is available on tape and reel for pick and place high
volume manufacturing.
ELECTRICAL SPECIFICATIONS**
Frequency
Unbalanced
Port
Impedance
Balanced
Port
Impedance*
Return
Loss
Insertion
Loss
GHz Ohms Ohms dB min dB max
2.4 – 2.5 50 100 17 0.55***
Amplitude
Balance
Phase
Balance
Power
Handling
ΘJC
Operating
Temp.
dB Degrees max Watts ºC / Watt ºC
Features:
• 2.4 – 2.5 GHz
• 180° Transformer
• 50 Ohm to 2 x 50 Ohm
• 802.11 b+g Compliant
• Low Insertion Loss
• Medium Power
• No DC Decoupling Capacitors
Required
• Input to Output DC Isolation
• Surface Mountable
• Tape & Reel
• Convenient Package
0 ± 0.5 180 ± 5.0 4 28 -55 to +85
**Specification based on performance of unit properly installed on microstrip printed circuit
boards with 50 Ω nominal impedance. Specifications subject to change without notice.
* 50Ω reference to ground
*** Insertion Loss stated at room temperature (0.6 dB Max at +85 ºC)
Outline Drawing
Mechanical Outline
Dimensions are in Inches [Millimeters]
Side ViewTop View (Near-side) Bottom View (Far-side)
.024±.002
[0.61±0.05]
.120±.005
[3.05±0.13]
.120±.005
[3.05±0.13]
456
3 1
2
6X .030±.004
[0.76±0.10]
4X .010±.004
[0.25±0.10]
.095±.004
[2.41±0.10]6X .010±.004
[0.23±0.10]
GND
In
GND
Out 2
GND
Out 1
Designation
5
4
2
1
6
3
Pin
Tolerances are Non-Cumulative