EEWORLDEEWORLDEEWORLD

Part Number

Search

TM6440

Description
RF AMPLIFIER MODEL
CategoryWireless rf/communication    Radio frequency and microwave   
File Size68KB,1 Pages
ManufacturerAPI Technologies
Websitehttp://www.apitech.com/about-api
Download Datasheet Parametric Compare View All

TM6440 Overview

RF AMPLIFIER MODEL

TM6440 Parametric

Parameter NameAttribute value
MakerAPI Technologies
package instructionT4, TO-8, 4 PIN
Reach Compliance Codecompli
Other featuresI/P POWER-MAX (PEAK)=27DBM
Characteristic impedance50 Ω
structureCOMPONENT
Gain12 dB
Maximum input power (CW)13 dBm
Maximum operating frequency500 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
RF AMPLIFIER
MODEL
TM6440
Features
!
!
!
!
Low Current Drain: 15mA with +9 dBm Output
Medium Gain: +13 dBm Typical
Operating Temp. - 55 ºC
to +85
ºC
Environmental Screening Available
Available as:
TM6440, 4 Pin TO-8 (T4)
TN6440, 4 Pin Surface Mount (SM3)
FP6440, 4 Pin Flatpack (FP4)
BX6440, Connectorized Housing (H1)
Typical Intermodulation Performance at 25 º C
Second Order Harmonic Intercept Point........+38 dBm (Typ.)
Second Order Two Tone Intercept Point ....... +33 dBm (Typ.)
Third Order Two Tone Intercept Point ........... +23 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 - 500 MHz
13.0
+9.0
-18.5
<1.5:1
<1.75:1
3.6
+15
15
MIN/MAX
Ta = -55 ºC to +85 ºC
10 - 500 MHz
12.0 Min.
+7.5 Min.
-17.5 Max.
2.0:1 Max.
2.0:1 Max.
5.0 Max.
+15
17 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.)
Note: Care should always be taken to effectively ground the case of each unit.
Typical Performance Data
15
14
13
12
11
Start 10 MHz
Stop 500 MHz
Gain (dB)
0
- 10
- 20
- 30
- 40
Reverse Isolation (dB)
5
4
3
Start 10 MHz
Stop 500 MHz
Noise Figure (dB)
Start 10 MHz
Stop 500 MHz
+12
+11
+10
+ 9
+ 8
Start 10 MHz
1 dB Comp. (dBm)
Input VSWR
2.0
1.5
1.0
2.0
1.5
1.0
Start 10 MHz
Stop 500 MHz
Start 10 MHz
Output VSWR
Stop 500 MHz
Stop 500 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
11/10/04
www.spectrummicrowave.com
Spectrum Microwave (Europe) · 2707 Black Lake Place · Philadelphia, Pa. 19154 · PH (215) 464-4000 · Fax (215) 464-4001

TM6440 Related Products

TM6440 BX6440 FP6440 TN6440
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 compli 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 COMPONENT COAXIAL COMPONENT COMPONENT
Gain 12 dB 12 dB 12 dB 12 dB
Maximum input power (CW) 13 dBm 13 dBm 13 dBm 13 dBm
Maximum operating frequency 500 MHz 500 MHz 500 MHz 500 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
package instruction T4, TO-8, 4 PIN H1, TO-8 FP-4 -
How to distinguish between pads and vias_Differences between vias and pads
The fixing of components on the printed circuit board is achieved by welding the leads to the pads. The function of the via is to connect the electrical connections at different levels. (1) The size o...
luoxiao1116 Power technology
IC manufacturers are ready to conquer the analog arena
Stimulated by the applications of 3G, digital TV and audio consumption, the heroes in the field of analog IC are ready to go with their persistent innovation, complete product range, positioning in li...
fighting Analog electronics
Components Data
The complete collection of component data can save time and effort for future circuit construction...
yuandayuan6999 MCU
Extended serial port chip 16550 interrupt problem
I would like to ask you: My serial port chip 16550 uses external interrupt EINT3. In the registry: I need to add "[b]SysIntr"=dword:3 [/b] The interrupt of serial port 4 is EINT3 "MeMBase"=dword:0x200...
amos Embedded System
How to eliminate the overshoot of a square wave generated by modulating a sine wave with a triangle wave
When I modulate a sine wave with a triangle wave, the square wave of the modulated signal generated has overshoot on both the rising and falling edges. How can I eliminate it?...
2009051331 Analog electronics
How to display a dialog box?
I built a win32 application project, added a dialog resource, added a button to the dialog, compiled and simulated it, but found that the dialog was not displayed on the screen. How can I display the ...
key321 Embedded System

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 2849  52  1026  1755  1231  58  2  21  36  25 
Datasheet   0 1 2 3 4 5 6 7 8 9 A B C D E F G H I J K L M N O P Q R S T U V W X Y Z
Room 1530, 15th Floor, Building B, No. 18 Zhongguancun Street, Haidian District, Beijing Telephone: (010) 82350740 Postal Code: 100190
Copyright © 2005-2026 EEWORLD.com.cn, Inc. All rights reserved 京ICP证060456号 京ICP备10001474号-1 电信业务审批[2006]字第258号函 京公网安备 11010802033920号