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AF117A-49-33

Description
0MHz - 18000MHz RF/MICROWAVE VARIABLE ATTENUATOR, 1.2dB INSERTION LOSS-MAX
CategoryWireless rf/communication    Radio frequency and microwave   
File Size154KB,3 Pages
ManufacturerCobham PLC
Download Datasheet Parametric View All

AF117A-49-33 Overview

0MHz - 18000MHz RF/MICROWAVE VARIABLE ATTENUATOR, 1.2dB INSERTION LOSS-MAX

AF117A-49-33 Parametric

Parameter NameAttribute value
Is it lead-free?Contains lead
Is it Rohs certified?incompatible
MakerCobham PLC
Reach Compliance Codeunknown
Other featuresN-F, HIGH RELIABILITY
Nominal attenuation49 dB
Characteristic impedance50 Ω
structureCOAXIAL
Maximum input power (CW)33.01 dBm
Maximum insertion loss1.2 dB
Maximum operating frequency18000 MHz
Minimum operating frequency
Maximum operating temperature54 °C
Minimum operating temperature
RF/Microwave Device TypesVARIABLE ATTENUATOR
Maximum voltage standing wave ratio1.25
Variable Attenuators
Models 115A thru 119A
Manual Step Attenuators
Choice of Type N or SMA Connectors
Specifications
NOMINAL IMPEDANCE:
50
Ω
FREQUENCY RANGE (add Model No. Prefix to
Designate Range):
All Models:
dc to 4.0 GHz (AC)
dc to 18.0 GHz (AF)
STANDARD INCREMENTAL ATTENUATION RANGE:
Model 115A:
0 to 9 dB in 1 dB steps
Model 116A:
0 to 60 dB in 10 dB steps
Model 117A:
0 to 69 dB in 1 dB steps
Model 118A:
0 to 90 dB in 10 dB steps
Model 119A:
0 to 99 dB in 1 dB steps
MAXIMUM SWR (Models 117A & 119A):
Frequency
Range (GHz)
dc - 4
4 - 12.4
12.4 - 18.0
117A & 119A
1.35
1.50
1.70
115A, 116A
& 118A
1.25
1.60
1.60
dc to 18.0 GHz
2 Watt
Features
o
Safety Mechanical Stop
- A mechanical stop between
maximum and 0 attenuation positions on all models
prevents damage to the mechanical drive as well as
preventing large power changes that could cause dam-
age to sensitive equipment.
o
Choice of Attenuation Ranges
- Five standard atten-
uation ranges are available: 0-9 dB, 0-69 dB, and 0-99
dB in 1 dB steps, and 0-60 dB and 0-90 dB in 10 dB
steps.
o
Broadband
- All models are available in a choice of 2
frequency ranges: dc-4 and dc-18 GHz.
o
Right-Angle
Drive
-
The center conductor of the connector is perpendicular
to the control shaft, offering greater flexibility of applica-
tions: panel mounting or bench setup. All models are
bidirectional.
o
Custom Configurations Available Upon Request.
o
Low Deviation from Nominal Value
- These Mini Step
Attenuators have flat frequency response over speci-
fied bands and excellent attenuation accuracy.
Deviation from nominal value is low at all settings.
o
Excellent Repeatability and Long Life Switch
-
Repeatability is better than 0.05 dB to 18.0 GHz for
over 1,000,000 switchings of the drum.
POWER RATING:
2 watts
average
to 25°C ambient
temperature, derated linearly to 1 watt @ 54°C. 200 watts
peak
(5
μsec
pulse width; 0.5% duty cycle)
POWER COEFFICIENT:
< 0.005/dB/dB/watt
TEMPERATURE COEFFICIENT:
< 0.0004/dB/dB/°C
TEMPERATURE RANGE:
Operating:
0°C to +54°C
Nonoperating: -54°C to +54°C
INCREMENTAL PHASE SHIFT:
~0.5° per dB x f(GHz)
REPEATABILITY:
Better than 0.05 dB across frequency
band for switch life.
SWITCH LIFE:
Over 1,000,000 steps
INDEXING:
36°
MAXIMUM INSERTION LOSS (dB):
Model
Number
115A
116A
117A
118A
119A
CONN
Type
N
SMA
N
SMA
N
SMA
N
SMA
N
SMA
Frequency Range (GHz)
dc-4
dc-18
0.3
0.3
0.3
0.4
0.5
0.6
0.4
0.5
0.5
0.6
0.7
1.0
0.7
1.0
1.2
1.5
0.8
1.0
1.2
1.5
Description
The Aeroflex / Weinschel Models 115A through 119A are a
series of broadband, step attenuators in a right-angle drive
configuration, where the center conductor of the connector
is perpendicular to the control shaft. They feature excellent
performance characteristics suitable for use in high reliabil-
ity 50 ohm systems and applications requiring extra-small
components for the precision control of power in discrete
steps. They can be used either as input or output attenua-
tors in signal sources, receivers, field strength meters,
spectrum analyzers, etc.
73
5305 Spectrum Drive, Frederick, MD 21703-7362 TEL: 301-846-9222, 800-638-2048 Fax: 301-846-9116
web: www.aeroflex-weinschel.com email: weinschel-sales@aeroflex.com
Revision Date: 12/29/08
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