RF AMPLIFIER MODEL CZ8130

RF AMPLIFIER
MODEL CZ8130
Available as
CZ8130, 3 Pin TO-39 (T10)
SZ8130, 3 Pin TO-39 MIL-STD-883
Screened Version
Features
Typical Intermodulation Performance at 25 ºC




Second Order Harmonic Intercept Point ....... +46 dBm (Typ.)
Second Order Two Tone Intercept Point ........ +40 dBm (Typ.)
Third Order Two Tone Intercept Point ............ +30 dBm (Typ.)
Replacement for Motorola MWA130
Lower Cost; Medium Gain: 14 dB Typical
Medium Output Power: +18 dBm Typical
Operating Temp. -55 ºC to +125 ºC
Absolute Maximum (No Damage) Ratings
Specifications
CHARACTERISTIC
Frequency
Gain
Power @ 1 dB
Comp.
Reverse
Isolation
TYPICAL
Ta= 25 ºC
100 kHz - 400 MHz
MIN/MAX
Ta = -55 ºC to +125 ºC
100 kHz - 400 MHz
14 dB
13 dB Min.
18 dBm
15 dBm Min.
-20 dB
-15.5 dB Max.
In
Out
2.25:1
2.00:1
3.0:1 Max.
2.5:1 Max.
Noise Figure
Power
Vdc
mA
6.0 dB
+5.75
60
7.0 dB Max.
+5.75
65 Max.
VSWR
Ambient Operating Temperature ................ -55ºC to +100 ºC
Storage Temperature ................................. -62ºC to +125 ºC
Case Temperature .................................................. +125 ºC
DC Voltage ........................................................... + 8 Volts
Continuous RF Input Power .................................. +13 dBm
Short Term RF Input Power .... 100 Milliwatts (1 Minute Max.)
Maximum Peak Power ................... 0.5 Watt ( 3 μsec Max.)
*Decoupling Impedance is 330 Ohms
Note: Care should always be taken to effectively ground the case of each unit.
Revision 6/2/2012
Typical Performance Data
Gain (dB)
16
Noise Figure (dB)
Reverse Isolation (dB)
0
15
- 10
8
7
14
- 20
6
13
- 30
5
12
- 40
4
Start 100 kHz
Stop 400 MHz
1 dB Comp. (dBm)
+22
Stop 400 MHz
Start 100 kHz
Input VSWR
3.0
Stop 400 MHz
Start 100 kHz
Output VSWR
3.0
+20
2.0
+18
+16
2.0
1.0
+14
Start 100 kHz
Stop 400 MHz
Legend
1.0
Stop 400 MHz
Start 100 kHz
+25 ºC
+125 ºC - - - - - - -55 ºC
The CZ8130 Amplifier is designed for application in 50 ohm
systems. Three external capacitors and a decoupling impedance are
required. The decoupling impedance must be large in comparison to
the 50 ohm load to minimize gain reduction. Data sheet curves are
based on the noted decoupling impedance. The external capacitors
determine the low frequency response of the Amplifier.
Schematic Diagram
CZ Series Amp
50 Ohm Input
© API Technologies Corp.
|
Stop 400 MHz
Start 100 kHz
micro.apitech.com |
+1.888.553.7531
+Vcc
Decoupling
Impedance
50 Ohm Output
|
[email protected]