Available on Tape
and Reel for Pick and
Place Manufacturing.
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(800) 411-6596
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Model B0011E75300A00
Rev B
Ultra Low Profile 1008 Balun
75 to 300 Balanced
Description
The B0011E75300A00 is a low profile sub-miniature balanced to
unbalanced transformer designed for differential inputs and output locations
on next generation analog and digital TV chipsets in an easy to use surface
mount package. The B0011E75300A00 is ideal for high volume
manufacturing and is higher performance than traditional wire wound baluns.
The B0011E75300A00 has an unbalanced port impedance of 75 and a
300 balanced port impedance. This transformation enables single ended
signals to be applied to differential ports on modern semiconductors. The
output ports have equal amplitude (-3dB) with 180 degree phase differential.
The B0011E75300A00 is available on tape and reel for pick and place high
volume manufacturing.
Detailed Electrical Specifications: Specifications subject to change without notice.
ROOM (25°C)
Parameter Min. Typ. Max Unit
Frequency 48 1080 MHz
Unbalanced Port Impedance 75
Balanced Port Impedance 300
Return Loss 9 11 dB
Insertion Loss* 1.3 1.6 dB
Amplitude Balance 0.6 1.5 dB
Phase Balance 6 15 Degrees
CMRR 28 dB
Power Handling TBD Watts
Features:
48 – 1080 MHz
1.0 mm Height Profile
75 Ohm to 2 x 150 Ohm
DVB-T, DVB-H and DVB-C
Low Insertion Loss
Surface Mountable
Tape & Reel
Non-conductive Surface
RoHS Compliant
Operating Temperature -55 +85 ºC
* Insertion Loss stated at room temperature (Insertion Loss is approximately 0.15 dB higher at +85 ºC). All performances stated for recommended
operation with external circuitry.
Outline Drawing
Mechanical Outline
Dimensions are in Inches [Millimeters]
Top View (Near-side)
.106±.005
[2.70±0.13]
.079±.005
[2.00±0.13]
Side View Bottom View (Far-side)
7
9X .008
[0.20]
10X .012
[0.30]
2X .008
[0.20]
.011
[0.28]
.014
[0.34]
2
3
1
8
6
Orientation
Marker Denotes
Pin Location
.028 [0.70]
4
59
10
.036±.003
[0.92±0.07]
NC6
8NC
9
7
Pin
10
Balanced Port 1
Designation
Balanced Port 2
NC
1
Pin
NC3
4
2NC
5
Designation
Unbalanced Port
GND
External Capacitor/GND
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Available on Tape and
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Manufacturing.
Model B0011E75300A00
Rev B
Typical Performance with Two External 82pF Capacitors (test/specification condition)
Port_2
ZO=150 [=Zout/2]
Port_3
ZO=150 [=Zout/2]
3
1
12
6
11
4
5
6
7
21
3
R1
R=300 [Zout]
4
7
9
5
10
B0011E75300Axx
C1
C=82pF
Port_1
ZO=75 [=Zin]
C2
C=82pF
Figure 1 The Balun with external capacitors on both low
impedance ports (nominal/test configuration). The two
capacitors improve the insertion loss and return loss in
the 40-200MHz range over that of the basic balun.
Frequency (MHz)
Insertion Loss
-3.6
-3.3
-3
-2.7
-2.4
-2.1
-1.8
-1.5
-1.2
-0.9
-0.6
-0.3
0
Frequency (MHz)
100 1000
82pF series capacitors on Pin 4&7
Insertion Loss
48MHz
57MHz
170MHz
870MHz
1080MHz
-1.381
-1.108
-0 .519
-1.014
-1.343
Frequency (MHz)
Amplitude Balance
-2
-1.6
-1.2
-0.8
-0.4
0
0.4
0.8
1.2
1.6
2
Frequency (MHz)
100 1000
82pF series capacitors on Pin 4&7
Amplitude Balance
48MHz
57MHz
170MHz
870MHz
1080MHz
0.559
0.255
-0.072
-0.483
-0.76
Frequency (MHz)
Return Loss
-36
-33
-30
-27
-24
-21
-18
-15
-12
-9
-6
-3
0
Frequency (MHz)
100 1000
82pF series capacitors on Pin 4&7
Return Loss
48MHz
57MHz
170MHz
870MHz
1080MHz
-18.969
-14.55
-24.202
-13.605
-11.975
Frequency (MHz)
Phase Balance (Delta 180)
-20
-16
-12
-8
-4
0
4
8
12
16
20
Frequency (MHz)
100 1000
82pF series capacitors on Pin 4&7
Phase Balance (Delta 180)
48MHz
57MHz
170MHz
870MHz
1080MHz
2.118
2.293 1.891
4.712
8. 077
Frequency (MHz)
Common Mode Rejection
-36
-33
-30
-27
-24
-21
-18
-15
-12
-9
-6
-3
0
Frequency (MHz)
100 1000
82pF series capacitors on Pin 4&7
Common Mode Rejec tion
48MHz
57MHz
170MHz
870MHz
1080MHz
-28.613
-32.109
-35.381
-26.079
-21.614
Available on Tape
and Reel for Pick and
Place Manufacturing.
USA/Canada:
Toll Free:
Europe:
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(800) 411-6596
+44 2392-232392
Model B0011E75300A00
Rev B
Typical Performance with One External 82pF Capacitor
Port_1
ZO=75 [=Zin]
Port_2
ZO = 15 0 [=Zout/2]
Port_3
ZO=150 [=Zout/2]
3
1
12
6
11
4
5
6
3
21
R1
R=300 [Zout]
4
7
9
5
10
B0011E75300Axx
C1
C=82pF
Figure 2 The Balun with an external capacitor on the
low impedance ground pin. This improves insertion loss
and return loss in the 40-200MHz range over that of the
basic configuration. The capacitor value can be changed
some to get a slightly different performance. A series
capacitor with just pin 4 does NOT produce identical
results as the one just in series with pin 7.
Frequency (MHz)
Insertion Loss
-3.6
-3.3
-3
-2.7
-2.4
-2.1
-1.8
-1.5
-1.2
-0.9
-0.6
-0.3
0
Frequency (MHz)
100 1000
82pF series capacitor on Pin 7
Insertion Loss
48MHz
57MHz
170MHz
870MHz
1080MHz
-1.661
-1.232
-0.497
-0.962
-1.308
Frequency (MHz)
Amplitude Balance
-2
-1.6
-1.2
-0.8
-0.4
0
0.4
0.8
1.2
1.6
2
Frequency (MHz)
100 1000
82pF series capacitor on Pin 7
Amplitude Balance
48MHz
57MHz
170MHz
870MHz
1080MHz
0.587
0.283
-0.015
-0.283
-0.614
Frequency (MHz)
Return Loss
-36
-33
-30
-27
-24
-21
-18
-15
-12
-9
-6
-3
0
Frequency (MHz)
100 1000
82pF series capacitor on Pin 7
Return Loss
48MHz
57MHz
170MHz
870MHz
1080MHz
-10.999
-11.577
-18.631
-14.678
-12.417
Frequency (MHz)
Phase Balance (Delta 180)
-20
-16
-12
-8
-4
0
4
8
12
16
20
Frequency (MHz)
100 1000
82pF series capacitor on Pin 7
Phase Balance (Delta 180)
48MHz
57MHz
170MHz
870MHz
1080MHz
1.996
2.147 2.108 3.206
6. 305
Frequency (MHz)
Commo n Mo de Re jec tion
-36
-33
-30
-27
-24
-21
-18
-15
-12
-9
-6
-3
0
Frequency (MHz)
100 1000
82pF series capacitor on Pin 7
Common Mode Rejection
48MHz
57MHz
170MHz
870MHz
1080MHz
-28.399
-32.098
-34.696
-29.797
-23.683
USA/Canada:
Toll Free:
Europe:
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(800) 411-6596
+44 2392-232392
Available on Tape and
Reel for Pick and Place
Manufacturing.
Model B0011E75300A00
Rev B
Typical Performance with no External Components
Port_1
ZO= 75 [=Zin]
Port_2
ZO=150 [=Zout/2]
Port_3
ZO=150 [=Zout/2]
3
1
12
6
11
4
5
6
3
1
R1
R=300 [Zout]
4
7
9
5
10
B0011E75300Axx
Figure 3 The Balun in it’s basic configuration with no
external components.
Frequency (MHz)
Insertion Loss
-3.6
-3.3
-3
-2.7
-2.4
-2.1
-1.8
-1.5
-1.2
-0.9
-0.6
-0.3
0
Frequency (MHz)
100 1000
No External Components
Insertion Loss
48MHz
57MHz
170MHz
870MHz
1080MHz
-3.115
-2.47
-0.583
-0.974
-1.399
Frequency (MHz)
Amplitude Balance
-2
-1.6
-1.2
-0.8
-0.4
0
0.4
0.8
1.2
1.6
2
Frequency (MHz)
100 1000
No External Components
Amplitude Balance
48MHz
57MHz
170MHz
870MHz
1080MHz
-0.084-0.08 -1.042e-3
-0.358
-0.553
Frequency (MHz)
Return Loss
-36
-33
-30
-27
-24
-21
-18
-15
-12
-9
-6
-3
0
Frequency (MHz)
100 1000
No External Components
Return Loss
48MHz
57MHz
170MHz
870MHz
1080MHz
-4.145
-5.039
-14.713 -14.226
-11.154
Frequency (MHz)
Phase Balance (Delta 180)
-20
-16
-12
-8
-4
0
4
8
12
16
20
Frequency (MHz)
100 1000
No External Components
Phase Balance (Delta 180)
48MHz
57MHz
170MHz
870MHz
1080MHz
2.503
2.253 1.85 2.698
5. 796
Frequency (MHz)
Commo n Mo de Re jec t io n
-36
-33
-30
-27
-24
-21
-18
-15
-12
-9
-6
-3
0
Frequency (MHz)
100 1000
No External Components
Common Mode Rejection
48MHz
57MHz
170MHz
870MHz
1080MHz
-33.006
-33.897
-35.838
-30.093
-24.469
Available on Tape
and Reel for Pick and
Place Manufacturing.
USA/Canada:
Toll Free:
Europe:
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(800) 411-6596
+44 2392-232392
Model B0011E75300A00
Rev B
Additional Configurations
Port_2
ZO=150 [=Zout/2]
Port_3
ZO=150 [=Zout/2]
R1
R=300 [Zout]
4
7
9
5
10
B0011E75300Axx
3
1
12
6
11
4
5
6
3
21
L1
L=2.4nH
Port_1
ZO=75 [=Zin]
Figure 4 The balun with an external inductor in the low
impedance ground path. This improves the insertion loss,
return loss and balanced performance in the 870-1080MHz
range. This inductance can be realized as a transmission line
(dimensions will depend on the PCB material and ground
plane distance). The added inductance can be used in
conjunction with the external capacitors. When mounted with
high groundplane spacing, part of this inductance comes
automatically from the increased inductance of the typical via
to ground.
R1
R=300 [Zout]
4
7
9
5
10
B0011E75300Axx
8
1
12
13
11
4
5
9
2
11
12
3
8
1
13
9
13
9
13
Po r t_ 1
ZO=75 [=Zin]
C1
C=82pF
C2
C=82pF Por t _ 2
ZO=150 [=Zout/2]
Po r t_ 3
ZO=150 [=Zout/2]
SG1
VDC=V [Bias Voltage]
100mA max
C3
C=3900pF
C4
C=82pF
Figure 5 Biasing the balanced signals thru the balun.
Dependign on the quality of “C3” the additional capacitor
“C4” may not be needed. The DC-resistance from the bias
point thru to each of the outputs are 10±4. It is important
to keep inductance to a minimum from pin 5 to ground or
balanced performance will suffer. When used with high
groundplane spacings it is recommended to have two or
more via to ground.
R1
R=300 [Zout]
4
7
9
5
10
B0011E75300Axx
6
3
12
1
11
4
5
2
11
12
3
6
Port_1
ZO=75 [=Zin]
C1
C=82pF
Port_3
ZO=150 [=Zout/2]
Figure 6 Using the balun as an single ended to single ended
impedance transformer (Unun). Pin 5 must be open circuit. It
is recommended to use the 82pF on the low impedance side to
improve the insertion loss and return loss in the 50-200MHz
range. Note that pins 4 & 7 can only be interchanged if pins 9
7 10 are also interchanged, otherwise performance will suffer.
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Manufacturing.
Model B0011E75300A00
Rev B
Distortion Considerations:
This balun does NOT contain any ferrite materials and are as such distortion free. Very, very low levels of
distortion can arise from dissimilar metals on the contact pads of the part (Cu-Ni-Au) and from inter-metallic
contaminations within the part.
Power Handling Considerations:
The RF-power handling capability of these baluns depends on the temperature at the mounted interface (base
plate temperature), and whether or not DC-bias is feed through the part. The power handling specified is for
a mounted temperature of 85˚C and no DC-bias and is based on a maximum operating temperature of the
part itself of 125˚C (do not exceed this).
The maximum power handling relates to the dissipated power within the part and is therefore a function of
insertion loss. The insertion loss of this device changes within the specified band. Thus if operated with a
narrowband signal at either band edge (this is what is specified) it will have less power handling than if
operated closer to the center of the band or if operated with a very wideband signal. If signals arrive at the
balun that are out of the specified band, these must be included in the total dissipated power calculation.
However the deteriorating return loss will eliminate some of this power.
The dissipated RF power can be estimated as;
=
1010
,101101
dBdB ILRL
indissRF PP ][W
Where:
in
P is the input power, either on the low impedance side, single ended or the combined differential power
on the balanced side, depending on the feeding direction.
dB
RL is the return loss in dB associated with the feeding port. I.e. if feed from the balanced side then the
balanced return loss must be used (this however is very similar to the single ended return loss).
dB
IL is the insertion loss at the operating temperature of the device.
Below the dissipated power is shown at a normalized 1W input power for the balun internal temperature of
125˚C.
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Model B0011E75300A00
Rev B
Frequency (MHz)
Dissipated Power [W]
0.1
0.15
0.2
0.25
0.3
0.35
0.4
0.45
0.5
0.55
0.6
Frequency (MHz)
100 1000
Dissipated power, normalized to 1W input power, at 125˚C Part temperature
48MHz
57MHz
170MHz
870MHz
1080MHz
0.317
0.267
0.171
0.25
0.295
When used with DC-biasing the RF-power must be de-rated with the amount of DC power dissipated;
()
22
21, 7|| dcdcoutoutdissdc IIRRP = ][W
The total dissipated power cannot exceed TBD.
When the duty cycle is not 100% the input power can be averaged, however the instantaneous input power
should newer exceed TBD.
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Manufacturing.
Model B0011E75300A00
Rev B
Mounting Configuration:
In order for Xinger surface mount components to work optimally, the proper impedance transmission lines must be
used to connect to the RF ports. If this condition is not satisfied, insertion loss, Isolation and VSWR may not meet
published specifications.
All of the Xinger components are constructed from softboard composites which possess excellent electrical and
mechanical stability having X and Y thermal coefficient of expansion (CTE) of 19 ppm/oC.
An example of the PCB footprint used in the testing of these parts is shown below. In specific designs, the
transmission line widths need to be adjusted to the unique dielectric coefficients and thicknesses as well as varying
pick and place equipment tolerances.
Mounting Footprint
Dimensions are in Inches [Millimeters]
Circuit Pattern
Footprint Pad (s)
Solder Resist
.026
[0.65]
.021 [0.54]
10X .014
[0.35]
3X Transmission
Line
10X .011
[0.27]
.068
[1.73]
Component Top View
.018[0.46]
.026 [0.65]
The material used for testing is 8mil Rogers 4003. For a ground plane spacing much larger than this the single via at
pin 5 should be replaced with at least 2 via and if possible a coplanar ground.
Available on Tape
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Place Manufacturing.
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Model B0011E75300A00
Rev B
Packaging and Ordering Information
Parts are available in reel and are packaged per EIA 481-2. Parts are oriented in tape and reel as shown below. Minimum order
quantities are 4000 per reel. See Model Numbers below for further ordering information.
B
ØA ØC
REEL DIMENSIONS (inches [mm])
ØA
B
ØC
0.32 [8.0]
2.0 [50.8]
7.00 [177.8]
4000
QUANTITY/REEL
TABLE 1
ØD
0.512 [13.0]
ØD
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Available on Tape and
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Manufacturing.
Model B0011E75300A00
Rev B