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Do ub le-r idg ed w av eg uide h or n, F y i, Finland – Atec EMCO-3106-3115-3116 User Manual

Page 2: Uk: online, Singapore, Applications, Electrical specifications, Physical specifications

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USA:

Tel +1.512.531.6400
Fax +1.512.531.6500

FINLAND:

Tel +358.2.838.3300
Fax +358.2.865.1233

UK:

ONLINE:

i

[email protected]

www.ets-lindgren.com

SINGAPORE:

Tel +65.536.7078
Fax +65.536.7093

Tel +44.(0)1438.730.700
Fax +44.(0)1438.730.750

Applications

MODEL

MODEL

MODEL

MODEL

MODEL

FCC-15

FCC-15

FCC-15

FCC-15

FCC-15

FCC-18

FCC-18

FCC-18

FCC-18

FCC-18

IEC/CISPR/EN

IEC/CISPR/EN

IEC/CISPR/EN

IEC/CISPR/EN

IEC/CISPR/EN

SAE J1113

SAE J1113

SAE J1113

SAE J1113

SAE J1113

SAE J551

SAE J551

SAE J551

SAE J551

SAE J551 MIL-STD-461E

MIL-STD-461E

MIL-STD-461E

MIL-STD-461E

MIL-STD-461E MIL-STD-1541

MIL-STD-1541

MIL-STD-1541

MIL-STD-1541

MIL-STD-1541 MIL-STD-285

MIL-STD-285

MIL-STD-285

MIL-STD-285

MIL-STD-285 IEEE STD 299

IEEE STD 299

IEEE STD 299

IEEE STD 299

IEEE STD 299

NACSIM

NACSIM

NACSIM

NACSIM

NACSIM

3106

3106

3106

3106

3106

RE

RE

RE, RI

RE, RI

RE, RI

RE, RI

RE, RI

RE

3115

3115

3115

3115

3115

RE

RE

RE, RI

RE, RI

RE, RI

RE, RI

RE, RI

TX, RX

RX

RE

3116

3116

3116

3116

3116

RE

RE

RE, RI

RE

TX, RX

RX

RE

RE = Radiated Emissions

RI = Radiated Immunity (Susceptibility)

TX = Transmit

RX = Receive

Electrical Specifications

MODEL

MODEL

MODEL

MODEL

MODEL

FREQUENCY

FREQUENCY

FREQUENCY

FREQUENCY

FREQUENCY

VSWR

VSWR

VSWR

VSWR

VSWR

MAXIMUM

MAXIMUM

MAXIMUM

MAXIMUM

MAXIMUM

PEAK

PEAK

PEAK

PEAK

PEAK

IMPEDANCE

IMPEDANCE

IMPEDANCE

IMPEDANCE

IMPEDANCE

CONNECTOR

CONNECTOR

CONNECTOR

CONNECTOR

CONNECTOR

RANGE

RANGE

RANGE

RANGE

RANGE

RATIO

RATIO

RATIO

RATIO

RATIO

CONTINUOUS

CONTINUOUS

CONTINUOUS

CONTINUOUS

CONTINUOUS

POWER

POWER

POWER

POWER

POWER

(NOMINAL)

(NOMINAL)

(NOMINAL)

(NOMINAL)

(NOMINAL)

(AVG)

(AVG)

(AVG)

(AVG)

(AVG)

POWER

POWER

POWER

POWER

POWER

3106

3106

3106

3106

3106

200 MHz –

2 GHz

<

1.6:1

800 W

1600 W

50

Type N female

3115

3115

3115

3115

3115

1 GHz

18 GHz

<

1.5:1

300 W

500 W

50

Type N precision female

3116

3116

3116

3116

3116

18 GHz

40 GHz

<

1.6:1

50 W

70 W

50

Type K female

Physical Specifications

MODEL

MODEL

MODEL

MODEL

MODEL

WIDTH

WIDTH

WIDTH

WIDTH

WIDTH

1

1

1

1

1

DEPTH

DEPTH

DEPTH

DEPTH

DEPTH

HEIGHT

HEIGHT

HEIGHT

HEIGHT

HEIGHT

1

1

1

1

1

WEIGHT

WEIGHT

WEIGHT

WEIGHT

WEIGHT

3106

3106

3106

3106

3106

93.3 cm

97.8 cm

72.9 cm

11.8 kg

36.7 in

38.5 in

28.7 in

26.0 lb

3115

3115

3115

3115

3115

24.4 cm

27.9 cm

15.9 cm

1.8 kg

9.6 in

11.0 in

6.2 in

4.0 lb

3116

3116

3116

3116

3116

13.0 cm

10.0 cm

6.0 cm

135.0 g

5.2 in

4.0 in

2.4 in

4.7 oz

1

At aperture

Standard Configuration

Antenna

Mounting bracket drilled to accept EMCO or other tripod
mount with 1/4 in x 20 threads

Individually calibrated at 1 m per SAE ARP 958. Calibration
of Model 3115 at 3 m available at additional charge. Actual
factors and signed Certificate of Conformance included in
Manual.

Options

Custom sizes

Larger models for higher gain at lower frequencies are also
available.

EMCO Tripod

EMCO offers several nonmetallic, non-reflective tripods for
use at EMC test sites. The 7-TR has been specifically designed
for the 3106.

f y i

One of the earliest horn antennas was constructed by

Jagadis Chandra Bose in 1897. Horn antennas are essentially

flared waveguides that produce a uniform phase front larger

than the waveguide itself. Adding a ridged waveguide to the

horn antenna increases its bandwidth by lowering the cut off

frequency of the dominant mode, while raising the cut off

frequency of the next higher order mode.

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