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BX9128PM

Description
RF AMPLIFIER MODEL
CategoryWireless rf/communication    Radio frequency and microwave   
File Size80KB,1 Pages
ManufacturerAPI Technologies
Websitehttp://www.apitech.com/about-api
Download Datasheet Parametric Compare View All

BX9128PM Overview

RF AMPLIFIER MODEL

BX9128PM Parametric

Parameter NameAttribute value
MakerAPI Technologies
Reach Compliance Codecompliant
Other featuresI/P POWER-MAX (PEAK)=27DBM
structureCOAXIAL
Gain10 dB
Maximum input power (CW)13 dBm
Maximum operating frequency1500 MHz
Minimum operating frequency10 MHz
Maximum operating temperature85 °C
Minimum operating temperature-55 °C
RF/Microwave Device TypesWIDE BAND LOW POWER
Maximum voltage standing wave ratio2
Base Number Matches1
RF AMPLIFIER
MODEL
TM9128PM
Features
!
Output Power: +15 dBm Typical
!
Operating Temp. -55 ºC to +85 ºC
!
Environmental Screening Available
Available as:
TM9128PM, 4 Pin TO-8 (T4)
TN9128PM, 4 Pin Surface Mount (SM3)
FP9128PM, 4 Pin Flatpack (FP4)
BX9128PM, Connectorized Housing (H1)
Typical Intermodulation Performance at 25 ºC
Second Order Harmonic Intercept Point ....... +49 dBm (Typ.)
Second Order Two Tone Intercept Point ........ +43 dBm (Typ.)
Third Order Two Tone Intercept Point ............ +29 dBm (Typ.)
Specifications
CHARACTERISTIC
Frequency
Gain (dB)
Power @ 1 dB
Comp. (dBm)
Reverse
Isolation (dB)
VSWR
In
Out
Noise Figure (dB)
Power
Vdc
mA
TYPICAL
Ta= 25 ºC
10 - 1500 MHz
11.5
+15
-14.4
1.5:1
1.5:1
4.5
+15
40
MIN/MAX
Ta = -55 ºC to +85 ºC
10 - 1500 MHz
10 Min.
+13.5 Min.
-13.5 Max.
2.0:1 Max.
2.0:1 Max.
6.0 Max.
+15
45 Max.
Maximum Ratings
Ambient Operating Temperature ................ -55ºC to +100 ºC
Storage Temperature ................................. -62ºC to +125 ºC
Case Temperature .................................................. +125 ºC
DC Voltage .......................................................... +18 Volts
Continuous RF Input Power .................................. +13 dBm
Short Term RF Input Power ...... 50 Milliwatts (1 Minute Max.)
Maximum Peak Power .................... 0.5 Watt (3
µsec
Max.)
Guaranteed Phase Noise Performance
(dBc/Hz)
Frequency
100 Hz
1 kHz
10 kHz
100 kHz
1 MHz
Typical
-152
-160
-168
-170
-169
Guarantee (Min.)
-148
-156
-164
-166
-165
Note: Care should always be taken to effectively ground the case of each unit.
Typical Performance Data
13
12
11
10
9
+17
+16
+15
+14
+13
2.0
1.5
1.0
Start
Start 10 MHz
Start 10 MHz
Stop 1500 MHz
Gain (dB)
0
-10
-20
-30
-40
5
4
3
2.0
1.5
1.0
Reverse Isolation (dB)
-130
-140
-150
-160
Start 10 MHz
Stop 1500 MHz
Phase Noise (dBc/Hz)
1 dB Comp. (dBm)
Noise Figure (dB)
-170
-180
-190
100
1K
10K
100K
1M
_________Guarantee __ __ __ __Typical
Start 10 MHz
Input VSWR
Stop 1500 MHz
Output VSWR
Stop 1500 MHz
Phase Noise Test Conditions:
Carrier Frequency: 1.2 GHz
Power Output: +14.6 dBm
Temperature: 25 ºC
Agilent ES5500 System
Stop 1500 MHz
10 MHz
Stop 1500 MHz
Start 10 MHz
Legend
+25 ºC
+85 ºC - - - - - - -55 ºC
Spectrum Microwave · 2144 Franklin Drive N.E. · Palm Bay, Florida 32905 · PH (888) 553-7531 · Fax (888) 553-7532
3/31/04
www.SpectrumMicrowave.com
Spectrum Microwave · 2707 Black Lake Place · Philadelphia, Pennsylvania 19154 · PH (215) 464-4000 · Fax (215) 464-4001

BX9128PM Related Products

BX9128PM FP9128PM TM9128PM TN9128PM
Description RF AMPLIFIER MODEL RF AMPLIFIER MODEL RF AMPLIFIER MODEL RF AMPLIFIER MODEL
Maker API Technologies API Technologies API Technologies API Technologies
Reach Compliance Code compliant compli compli compli
Other features I/P POWER-MAX (PEAK)=27DBM I/P POWER-MAX (PEAK)=27DBM I/P POWER-MAX (PEAK)=27DBM I/P POWER-MAX (PEAK)=27DBM
structure COAXIAL COMPONENT COMPONENT COMPONENT
Gain 10 dB 10 dB 10 dB 10 dB
Maximum input power (CW) 13 dBm 13 dBm 13 dBm 13 dBm
Maximum operating frequency 1500 MHz 1500 MHz 1500 MHz 1500 MHz
Minimum operating frequency 10 MHz 10 MHz 10 MHz 10 MHz
Maximum operating temperature 85 °C 85 °C 85 °C 85 °C
Minimum operating temperature -55 °C -55 °C -55 °C -55 °C
RF/Microwave Device Types WIDE BAND LOW POWER WIDE BAND LOW POWER WIDE BAND LOW POWER WIDE BAND LOW POWER
Maximum voltage standing wave ratio 2 2 2 2
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