
V1.1
- Type: logarithmic periodic
- Voltage Standing Wave Ratio (VSWR): < 1.95:1
over the entire frequency range ; 1.35:1 average
- Frequency range: 250 MHz– 1300 MHz
- Nominal impedance: 50 Ω
- Height (With the mounting adapter): 170.23 mm
(6.70”)
- Connector: N type female
- Height (Without the mounting adapter): 79.5 mm
(3.13”)
- Maximum continuous input RF power: 100 W
- Isotropic gain: 6 dBi ± 1.5 dB
- Weight: 1.78 kg (3.92 lbs)
- Antenna factor: 14.2 … 27.5 dB/m
- Tripod Adapter Thread Size: ¼”
TBMA3
`
250MHz – 1300 MHz Log Periodic Measurement Antenna
1 Introduction
CISPR 16 divides the frequency range into several bands and defines specific antennas for each of these
bands. For the frequency range above 300 MHz up to 1 GHz, CISPR 16 specifies using logarithmic periodic
antennas (log-periodic antennas ) for radiated noise measurements.
The TBMA3 is an affordable logarithmic periodic measurement antenna, targeting radiated noise EMC precompliance testing.
The TBMA3 is characterized from 250 MHz to 1.3 GHz and has VSWR and antenna factor values typical for
log-periodic measurement antennas.
2 Product overview
The TBMA3 is an average sized log-periodic antenna, with its radiating elements and supporting booms made
from powder coated aluminum alloy. It is equipped with a standard female N-connector and comes together
with an antenna bracket and a mounting adapter. A standard ¼” thread on the bottom of the mounting adapter
makes it easy to connect it to most standard tripods.
The TBMDA3 is shipped in a robust carrying case, as pictured above.
3 Technical specifications

V1.1
TBMA3
`
250MHz – 1300 MHz Log Periodic Measurement Antenna

V1.1
TBMA3
`
250MHz – 1300 MHz Log Periodic Measurement Antenna
4 TBMA3 Antenna characterization
4.1 Gain & Antenna Factor versus frequency

V1.1
0.00
1.00
2.00
3.00
4.00
5.00
6.00
7.00
8.00
200 300 400 500 600 700 800 900 1000 1100 1200 1300
Isotropic Gain
Gain (Isotropic) [dBi]
12.00
14.00
16.00
18.00
20.00
22.00
24.00
26.00
28.00
200 300 400 500 600 700 800 900 1000 1100 1200 1300
Antenna factor
Antenna factor [dB/m]
TBMA3
`
250MHz – 1300 MHz Log Periodic Measurement Antenna
250 MHz … 1.3 GHz, Isotropic Gain of TBMA3
250 MHz … 1.3 GHz, Antenna Factor of TBMA3

V1.1
-40.00
-35.00
-30.00
-25.00
-20.00
-15.00
-10.00
-5.00
0.00
200 300 400 500 600 700 800 900 1000 1100 1200 1300
Return Loss
Return Loss [dB]
1.00
2.00
3.00
4.00
5.00
6.00
7.00
8.00
9.00
10.00
200 300 400 500 600 700 800 900 1000 1100 1200 1300
VSWR
VSWR
TBMA3
`
250MHz – 1300 MHz Log Periodic Measurement Antenna
4.2 TBMA3 Return Loss / VSWR
TBMA3, S11, 250 MHz … 1.3 GHz
TBMA3, VSWR, 250 MHz … 1.3 GHz

V1.1
add 9.5 dB to the 3m limits
add 20 dB to the 10m limits
add 10.5 dB to the 10m limits
250 – 1300 MHz log-periodic measurement antenna; mounting adapter, carrying
case
TBMA3
`
250MHz – 1300 MHz Log Periodic Measurement Antenna
5 Application
The TBMA3 was designed, targeting radiated noise EMC pre-compliance measurement in the frequency range
250 MHz to 1300 MHz. In order to make optimum use of the TBMA3, a few details need to be considered:
The antenna factor has to be added to the measurement result in order to convert the level [dBm] into an
equivalent electrical field strength [dBmV/m]. This conversion will also add to the base noise level of the
spectrum analyzer which reduces the margin between base noise and limit lines.
If there is no risk of overloading the spectrum analyzer RF-input, decrease the internal attenuation to 0 dB and
turn on the pre-amplifier to optimize the dynamic range of the measurement. Use a low loss coaxial cable to
connect the antenna to the spectrum analyzer. CISPR 16 specifies a resolution bandwidth of 120 KHz for
frequency ranges 300 MHz to 1 GHz. Consequently, lowering the RBW cannot be utilized to reduce the base
noise level. However, in cases of standards with challenging limits with respect to the base noise level of precompliance spectrum analyzers, the antenna could be moved closer to the DUT and the limits converted
accordingly. This will result in additional margin between base noise and limit levels. Since the TBMA3 is used
for measurements above 250 MHz, 10m or 3m distance limits could be converted to 1m distance limits,
resulting in 20dB or 10 dB additional margin to the base noise level. With 1m distance and measurement
frequencies > 250 MHz, the antenna is already in the far field for any frequency.
Use the table below in order to convert limits to another measurement distance:
The table above is based on following formula:
[dBm]
where is the actual measurement distance and is the specified distance in the relevant standard.
is the RF power measured in the actual measurement distance.
represents the calculated equivalent RF power in the distance specified in the relevant standard.
6 Ordering Information
7 History