MACOM MD54-0007SMB Low cost mmic mixer, 2.1 - 2.7 ghz Datasheet

Low Cost MMIC Mixer, 2.1 – 2.7 GHz
MD54-0007
V 1.0
Features
•
•
•
•
•
•
Functional Schematic
MMDS and WLAN Applications
+18 dBm Input 1 dB Compression Point
Greater than 20 dB LO to RF Isolation
+13 dBm LO Drive Level
No DC Bias Required
Ultra-Miniature SOT-25 Plastic Package
Description
RF
IF
M/A-COM’s MD54-0007 is a passive mixer that
achieves the performance of a double balanced diode
mixer in an ultra-miniature SOT-25 package. The
MD54-0007 is ideally suited for use where high level
RF signals and very wide dynamic range are required.
Typical applications include frequency up/down
conversion, modulation, and demodulation in
receivers and transmitters for basestation and portable
systems.
The MD54-0007 employs GaAs FETs as mixing
elements to achieve a very wide dynamic range in a
low cost plastic package. The mixer operates with LO
drive levels of +13 dBm to +18 dBm. The LO port
may be externally tuned for operation in various
frequency bands.
5
GND
4
GND
1
3 LO
2
Pin Configuration
Pin
Function
Description
1
RF
RF Input Port
2
IF
IF Output Port
3
LO
LO Input Port
4
GND
Ground
5
GND
Ground
M/A-COM's GaAs IC is fabricated using a mature 0.5
micron gate length GaAs MESFET process. The
process features full passivation for increased
performance and reliability.
Ordering Information
Part Number
MD54-0007TR
Description
7 inch, 1000 piece reel
MD54-0007TR-3000
13 inch, 3000 piece reel
MD54-0007SMB
Sample Test Board
Specifications subject to change without notice.
„
„
„
North America: Tel. (800) 366-2266
Asia/Pacific: Tel.+81-44-844-8296, Fax +81-44-844-8298
Europe: Tel. +44 (1344) 869 595, Fax+44 (1344) 300 020
Visit www.macom.com for additional data sheets and product information.
1
Part
Description
Low
Cost MMIC Mixer, 2.1 – 2.7 GHz
MD54-0007
V 1.0
Electrical Specifications: TA = 25 °C, Z0 = 50 Ω
Parameter
RF Frequency
1,2
Test Conditions
Conversion Loss
LO to RF
LO to IF
RF to IF
VSWR
RF Port
LO Port
IF Port
P1dB
1.
2.
Min
2.1
dB
Isolation
Two-Tone IMR
Units
GHz
dB
dB
dB
15
Max
2.7
8.0
9.0
25
18
18
2.0:1
2.0:1
2.0:1
dBm
Two tones each at 0 dBm, tone spacing = 300 KHz,
IF = 150 MHz
Typ
dBc
18
45
50
RF signal is 2428 MHz at 0 dBm, LO signal is 2278 MHz at +13 dBm and IF signal is 150 MHz unless otherwise specified.
With external LO port matching. See application schematic.
Absolute Maximum Ratings1,2
Parameter
Absolute Maximum
Max RF Input Power
Max LO Drive Level
Operating Temperature
Channel Temperature
Storage Temperature
+27 dBm
+27 dBm
-40°C to +85°C
+150°C
-40°C to +150°C
1. Exceeding any one or combination of these limits may cause permanent damage.
2. Ambient Temperature, +25oC.
Application Information
Static Sensitivity
Gallium arsenide integrated circuits are ESD sensitive and can be damaged by static electricity. Use proper ESD precautions when
handling these devices.
Specifications subject to change without notice.
„
„
„
North America: Tel. (800) 366-2266
Asia/Pacific: Tel.+81-44-844-8296, Fax +81-44-844-8298
Europe: Tel. +44 (1344) 869 595, Fax+44 (1344) 300 020
Visit www.macom.com for additional data sheets and product information.
2
Part
Description
Low
Cost MMIC Mixer, 2.1 – 2.7 GHz
MD54-0007
V 1.0
Application Schematic
External Circuitry Parts List
RF
1
5
GND
4
GND
Part
R1
L1
C1
L1
IF
2
LO
3
R1
LO = 2278 MHz
1.0 KΩ
2.7 nH
2.2 pF
All off-chip components are low-cost surface mount
components obtainable from multiple sources. (.060 in. x
.030 in. or .080 in. x .050 in. )
C1
SOT-25 Package
.114 ± .008
2.9 ± 0.2
.075± .008
1.90 ± 0.20
.063+ .008
- 004
+ 0.20
1.60 - 0.10
.110 ± .008
2.80± 0.20
.008
.043 +
- .004
.002± .002
0.05± 0.05
.031 + .004
- .007
0.80 + 0.10
- 0.18
1.10 + 0.20
- 0.10
.016 + .004
- .002
+
0.40 0.10
- 0.05
.006 + .004
- .002
+ 0.10
0.15
- 0.05
.008 M IN
0.20 M IN
Specifications subject to change without notice.
„
„
„
North America: Tel. (800) 366-2266
Asia/Pacific: Tel.+81-44-844-8296, Fax +81-44-844-8298
Europe: Tel. +44 (1344) 869 595, Fax+44 (1344) 300 020
Visit www.macom.com for additional data sheets and product information.
3
Similar pages