MMG3005NT1 Freescale Semiconductor, MMG3005NT1 Datasheet

IC AMP RF GP 2200MHZ 5V 16-PQFN

MMG3005NT1

Manufacturer Part Number
MMG3005NT1
Description
IC AMP RF GP 2200MHZ 5V 16-PQFN
Manufacturer
Freescale Semiconductor
Datasheet

Specifications of MMG3005NT1

Current - Supply
480mA
Frequency
800MHz ~ 2.2GHz
Gain
15dB
Noise Figure
5dB
P1db
30dBm
Package / Case
16-PQFN, 16-PowerQFN
Rf Type
Cellular, PCS, PHS, WLL
Test Frequency
2.14GHz
Voltage - Supply
5V
Noise Figure Typ
5dB
Supply Current
480mA
Rf Ic Case Style
PQFN
No. Of Pins
16
Operating Temperature Range
-65°C To +150°C
Frequency Max
2.2GHz
Filter Terminals
SMD
Rohs Compliant
Yes
Rf Transistor Case
PQFN
Peak Reflow Compatible (260 C)
Yes
Leaded Process Compatible
Yes
Output Third Order Intercept Point, Ip3
47dB
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
MMG3005NT1
MMG3005NT1TR

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
MMG3005NT1
Manufacturer:
FREESCALE
Quantity:
20 000
Heterojunction Bipolar Transistor
Technology (InGaP HBT)
Broadband High Linearity Amplifier
prematched and designed for a broad range of Class A, small--signal, high
linearity, general purpose applications. It is suitable for applications with
frequencies from 800 to 2200 MHz such as Cellular, PCS, WLL, PHS,
VHF, UHF, UMTS and general small--signal RF.
© Freescale Semiconductor, Inc., 2005--2010. All rights reserved.
RF Device Data
Freescale Semiconductor
Freescale Semiconductor
Technical Data
Table 1. Typical Performance
Table 3. Thermal Characteristics
Features
• Frequency: 800--2200 MHz
• P1dB: 30 dBm @ 2140 MHz
• Small--Signal Gain: 15 dB @ 2140 MHz
• Third Order Output Intercept Point: 47 dBm @ 2140 MHz
• Single 5 Volt Supply
• Internally Prematched to 50 Ohms
• RoHS Compliant
• In Tape and Reel. T1 Suffix = 1000 Units per 16 mm, 13 inch Reel.
1. V
The MMG3005NT1 is a General Purpose Amplifier that is internally
Small--Signal Gain
Input Return Loss
Output Return Loss
Power Output @1dB
Third Order Output
Thermal Resistance, Junction to Case
3. Refer to AN1955, Thermal Measurement Methodology of RF Power Amplifiers. Go to http://www.freescale.com/rf.
(S21)
(S11)
(S22)
Compression
Intercept Point
Characteristic
Select Documentation/Application Notes -- AN1955.
DC
= 5 Vdc, T
A
= 25°C, 50 ohm system
Symbol
P1db
ORL
IRL
IP3
G
p
(1)
MHz
18.5
900
--14
--12
Characteristic
30
47
(V
DC
1960
MHz
15.5
--10
30
47
--7
= 5 Vdc, I
2140
MHz
--11
15
--7
30
47
DC
= 480 mA, T
dBm
dBm
Unit
dB
dB
dB
C
= 100°C)
Table 2. Maximum Ratings
2. For reliable operation, the junction temperature should not
Supply Voltage
Supply Current
RF Input Power
Storage Temperature Range
Junction Temperature
exceed 150°C.
Rating
Symbol
R
θJC
Document Number: MMG3005NT1
(2)
MMG3005NT1
800- -2200 MHz, 15 dB
Symbol
CASE 1543- -04
Value
V
T
I
P
T
DC
InGaP HBT
PQFN 5x5
DC
stg
PLASTIC
21.5
in
J
30 dBm
(3)
--65 to +150
Value
Rev. 7, 5/2010
600
150
18
6
MMG3005NT1
°C/W
Unit
dBm
Unit
mA
°C
°C
V
1

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MMG3005NT1 Summary of contents

Page 1

... Heterojunction Bipolar Transistor Technology (InGaP HBT) Broadband High Linearity Amplifier The MMG3005NT1 is a General Purpose Amplifier that is internally prematched and designed for a broad range of Class A, small--signal, high linearity, general purpose applications suitable for applications with frequencies from 800 to 2200 MHz such as Cellular, PCS, WLL, PHS, VHF, UHF, UMTS and general small--signal RF ...

Page 2

... Output Return Loss (S22) Power Output @ 1dB Compression Third Order Output Intercept Point Noise Figure (1) Supply Current (1) Supply Voltage 1. For reliable operation, the junction temperature should not exceed 150°C. MMG3005NT1 Vdc, 2140 MHz 25°C, 50 ohm system, in Freescale Application Circuit Symbol G p ...

Page 3

... Charge Device Model (per JESD 22--C101) Table 7. Moisture Sensitivity Level Test Methodology Per JESD 22--A113, IPC/JEDEC J--STD--020 RF Device Data Freescale Semiconductor Description Rating out out out (Top View) Figure 1. Pin Connections Class 1A (Minimum) A (Minimum) IV (Minimum) Package Peak Temperature Unit 260 °C MMG3005NT1 ...

Page 4

... NOTE: Supply current is varied under external resistor control. Peak power is not reduced at any listed current. Similar results can be obtained for other frequency bands. Figure 3. Third Order Output Intercept Point versus Output Power and Supply Current MMG3005NT1 4 50 OHM TYPICAL CHARACTERISTICS ...

Page 5

... Microstrip PCB Isola FR408, 0.014″, ε Figure 5. 50 Ohm Test Circuit Schematic Description 3.7 r Part Number Manufacturer ECUV1H150JCV Panasonic C0603C103J5RAC Kemet C0603C104J5RAC Kemet 06035J6R8BS AVX 06035J5R6BS AVX 1008CS--150XJB Coilcraft CRCW060333R0FKEA Vishay CRCW06030000FKEA Vishay MMG3005NT1 RF OUTPUT 5 ...

Page 6

... OHM APPLICATION CIRCUIT: 900 MHz MMG3004/5 Rev 3 Figure 6. 50 Ohm Test Circuit Component Layout MMG3005NT1 SUPPLY out Device Data Freescale Semiconductor ...

Page 7

... Vdc 870 900 930 f, FREQUENCY (MHz) Figure 8. Input Return Loss (S11) versus Frequency = --40°C 85°C 25° Vdc 870 900 930 f, FREQUENCY (MHz) Figure 10. P1dB versus Frequency T = 85°C C --40°C 25° Vdc 870 900 930 f, FREQUENCY (MHz) MMG3005NT1 960 960 960 7 ...

Page 8

... T = --40°C C 25°C --50 85°C -- OUTPUT POWER (dBm) out Figure 13. IS- -95 Adjacent Channel Power Ratio versus Output Power MMG3005NT1 Vdc 900 MHz DC --40 Single--Carrier IS--95, 9 Channel Forward 885 kHz Measurement Offset 30 kHz Measurement Bandwidth --50 -- 85°C C --70 25°C --40°C ...

Page 9

... Microstrip PCB Isola FR408, 0.014″, ε Figure 15. 50 Ohm Test Circuit Schematic Description ECUV1H150JCV 06035J1R8BS C0603C103J5RAC C0603C104J5RAC 06035J2R7BS 06035J1R2BS 1008CS--150XJB CRCW060333R0FKEA CRCW06030000FKEA 3.7 r Part Number Manufacturer Panasonic AVX Kemet Kemet AVX AVX Coilcraft Vishay Vishay MMG3005NT1 RF OUTPUT 9 ...

Page 10

... OHM APPLICATION CIRCUIT: 1800- -2200 MHz MMG3004/5 Rev 3 Figure 16. 50 Ohm Test Circuit Component Layout MMG3005NT1 SUPPLY out C2 RF Device Data Freescale Semiconductor ...

Page 11

... Figure 22. Noise Figure versus Frequency T = --40°C C 25°C 85° Vdc DC 1960 2020 2080 2140 f, FREQUENCY (MHz) Frequency T = --40°C C 25°C 85° Vdc 1960 2020 2080 2140 f, FREQUENCY (MHz 85°C C --40°C 25° Vdc 1960 2020 2080 2140 f, FREQUENCY (MHz) MMG3005NT1 2200 2200 2200 11 ...

Page 12

... C --40°C --50 -- OUTPUT POWER (dBm) out Figure 23. IS- -95 Adjacent Channel Power Ratio versus Output Power --20 --30 --40 --50 --60 --70 MMG3005NT1 Vdc 1960 MHz DC --40 Single--Carrier IS--95, 9 Channel Forward 885 kHz Measurement Offset 30 kHz Measurement Bandwidth --50 -- 85°C C --70 --40°C -- Figure 24 ...

Page 13

... MMG3005NT1 13 ...

Page 14

... MMG3005NT1 14 50 OHM TYPICAL CHARACTERISTICS ( Vdc 480 mA 25°C, 50 Ohm System) (continued ∠ φ 1.18240 --90.93 0.00876 1.06136 --95 ...

Page 15

... THERMAL AND RF GROUNDING CONSIDERATIONS SHOULD BE USED IN PCB LAYOUT DESIGN. 2. DEPENDING ON PCB DESIGN RULES, AS MANY VIAS AS POSSIBLE SHOULD BE PLACED ON THE BACKSIDE CENTER METAL GROUND LANDING PATTERN. 3. REFER TO FREESCALE APPLICATION NOTE AN2467 FOR ADDITIONAL PQFN PCB GUIDELINES. 1.35 0.6 2.6 5.3 0.8 MMG3005NT1 15 ...

Page 16

... MMG3005NT1 16 PACKAGE DIMENSIONS RF Device Data Freescale Semiconductor ...

Page 17

... RF Device Data Freescale Semiconductor MMG3005NT1 17 ...

Page 18

... MMG3005NT1 18 RF Device Data Freescale Semiconductor ...

Page 19

... V and value due to its variability over temperature, Figs. 12--13, IS--95 Adjacent Channel Power and value due to its variability over temperature, Figs. 22--23, IS--95 Adjacent Channel Power DC , Fig Ohm Test Circuit Component SUPPLY , Fig. 15, 50 Ohm Test Circuit Component SUPPLY MMG3005NT1 19 ...

Page 20

... Freescale Semiconductor Literature Distribution Center 1--800--441--2447 or +1--303--675--2140 Fax: +1--303--675--2150 LDCForFreescaleSemiconductor@hibbertgroup.com MMG3005NT1 Document Number: MMG3005NT1 Rev. 7, 5/2010 20 Information in this document is provided solely to enable system and software implementers to use Freescale Semiconductor products. There are no express or implied copyright licenses granted hereunder to design or fabricate any integrated circuits or integrated circuits based on the information in this document ...

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