IP3 Mixer. ML483 Datasheet

ML483 Mixer. Datasheet pdf. Equivalent


TriQuint Semiconductor ML483
RFMD + TriQuint = Qorvo
Applications
PCS / 3G Base station / Repeaters
WCDMA / LTE
ISM / Fixed Wireless
HPA Feedback Paths
ML483
0.71.5 GHz High IP3 Mixer with Integrated LO Amp
ML483
8 Pin MSOP Package
Product Features
High Dynamic Range Mixer
Integrated LO Driver
+36dBm Input IP3
9 dB Conversion Loss
RF: 700 1500MHz
LO: 460 1640MHz
IF: 30 300 MHz
+5V Supply at 50mA
0dBm Drive Level
RoHS-compliant MSOP8 (14mm2)
General Description
The ML483 high linearity converter combines a passive
GaAs FET mixer with an integrated LO driver in an ultra-
small lead-free/green/RoHS-compliant MSOP-8
package. The double-balanced integrated IC operates
across a 0.7-1.5 GHz frequency range to achieve +36
dBm Input IP3 while drawing a very low 50mA current.
The ML483 can be used as an upconverter or
downconverter in a low-side or high-side LO
configuration.
The integrated LO buffer amplifier enables operation
directly from a synthesizer requiring only 0 dBm of drive
level. The dual-stage LO driver provides a stable input
power level into the mixer to allow for consistent
performance over a wide range of LO power levels. The
converter requires no external baluns and supports a
wide range of IF frequencies.
Typical applications include frequency up/down
conversion, modulation and demodulation for receivers
and transmitters in mobile infrastructure. Due to the
wide frequency range of operation, the converter can
also be used for ISM and fixed wireless applications.
The ML483 is footprint and pin compatible with
TriQuint’s 1.6-3.2 GHz ML485 mixer for high band
applications.
Functional Block Diagram
Pin 1 Reference Mark
LO 1
GND 2
GND 3
VCC 4
8 RF
7 GND
6 GND
5 IF
Backside Paddle - RF/DC GND
Pin Configuration
Pin No.
1
2, 3, 6, 7
4
5
8
Backside Paddle
Symbol
LO
GND
Vcc
IF
RF
GND
Ordering Information
Part No. Description
ML483-G 0.7 – 1.5 GHz Mixer w/ Integrated LO Amp
ML483-PCB Fully Assembled Evaluation Board
Standard T/R size = 1000 pieces on a 7” reel
Datasheet Rev. H 03-14-16
© 2016 TriQuint Semiconductor, Inc
- 1 of 8 -
Disclaimer: Subject to change without notice
www.triquint.com / www.qorvo.com


ML483 Datasheet
Recommendation ML483 Datasheet
Part ML483
Description 0.7 - 1.5 GHz High IP3 Mixer
Feature ML483; RFMD + TriQuint = Qorvo Applications  PCS / 3G Base station / Repeaters  WCDMA / LTE  ISM / Fixed.
Manufacture TriQuint Semiconductor
Datasheet
Download ML483 Datasheet




TriQuint Semiconductor ML483
RFMD + TriQuint = Qorvo
ML483
0.71.5 GHz High IP3 Mixer with Integrated LO Amp
Absolute Maximum Ratings
Parameter
Storage Temperature
DC Voltage
Input IF / RF Power, CW, +25°C
LO Power
Rating
65 to +150°C
+7V
+27dBm
+10dBm
Operation of this device outside the parameter ranges
given above may cause permanent damage.
Recommended Operating Conditions
Parameter
Min Typ Max Units
VCC
TCASE
RF Input Power
+4.75
40
+5.0
+5.25
+85
+10
V
°C
dBm
LO Drive Level
Tj for >106 hours MTTF
-4
0 +4 dBm
+150 °C
Electrical specifications are measured at specified test
conditions. Specifications are not guaranteed over all
recommended operating conditions.
Electrical Specifications
Test conditions unless otherwise noted: VCC =+5 V, ICC=40mA, Temp=+25°C, 50 Ω system. (see note 1)
Parameter
Min Typ Max Min Typ Max
RF Frequency Range
700 – 800
800 – 1000
LO Frequency Range
770 – 1040
870 – 1240
IF Freq Range
30 – 240
30 – 240
SSB Conversion Loss (3)
9.2
8.7 10
Input IP3 (2,3)
+37 +30 +36
LO Leakage RF Port
17
18
LO Leakage IF Port
11
15
RFIF Isolation
12.5
16
Units
MHz
MHz
MHz
dB
dBm
dBm
dBm
dB
RF Return Loss
13
16 dB
IF Return Loss
11
12 dB
LO Return Loss
11
14 dB
Input P1dB
LO Drive Level
Thermal Resistance (4)
+24
4 0 +4
81
+23.5
dBm
4 0 +4 dBm
81  °C/W
Notes:
1. Specifications are shown with 0dBm LO drive and IF = 140 MHz in a down converting configuration with a high-side LO.
2. IIP3 is measured with ∆f = 1 MHz with RFin = 0 dBm / tone.
3. Min/Max conditions tested with LO=1041 MHz, RF=901 MHz, IF=140 MHz
4. Thermal resistance is specified junction to case.
Spur Table
M
0123
0 --
8 13 15
18
0 43 19
2 54 59 44 65
N3
85
91
87
79
4 99 100 100 99
5 101 100
97
99
4
10
5
9
Spur table is N fRF M fLO mixer spurious products
for 0 dBm input power, unless otherwise noted.
34 22
53 64 RF Frequency = 900 MHz
91 84 LO Frequency = 1041 MHz
All values in dBc relative to the IF Power Level.
100 98
99 100
Datasheet Rev. H 03-14-16
© 2016 TriQuint Semiconductor, Inc
- 2 of 8 -
Disclaimer: Subject to change without notice
www.triquint.com / www.qorvo.com



TriQuint Semiconductor ML483
RFMD + TriQuint = Qorvo
ML483
0.71.5 GHz High IP3 Mixer with Integrated LO Amp
Performance Plots
Test conditions unless otherwise noted: VCC =+5V, Temp=+25°C, 50 Ω system.
Conversion Loss vs RF Frequency
14
Temp.=+25°C
LO Pwr=0 dBm
12 High-side LO
240 MHz
140 MHz
70 MHz
10
8
6
4
700 800 900 1000 1100 1200 1300 1400
RF Frequency (MHz)
Input IP3 vs RF Frequency
42
Temp=+25°C
LO Pwr=0 dBm
40 High-side LO
240 MHz
38
140 MHz
70 MHz
36
34
32
700 800 900 1000 1100 1200 1300 1400
RF Frequency (MHz)
28
26
24
22
20
18
700
Input P1dB vs RF Freq.
Temp.=+25°C
IF=140MHz
LO=0dBm
High-side LO
750 800 850 900
RF Frequency (MHz)
950
Conversion Loss vs RF Frequency
16
LO Pwr=0 dBm
14
IF=70 MHz
High-side LO
12 +85°C
+25°C
−40°C
10
8
6
4
700 800 900 1000 1100 1200 1300 1400
RF Frequency (MHz)
Conversion Loss vs RF Frequency
16
LO Pwr=0 dBm
14
IF=140 MHz
High-side LO
12 +85°C
+25°C
−40°C
10
8
6
4
700 800 900 1000 1100 1200 1300 1400
RF Frequency (MHz)
Conversion Loss vs RF Frequency
16
LO Pwr = 0 dBm
14 IF=240 MHz
High-side LO
12
+85°C
+25°C
−40°C
10
8
6
4
700 800 900 1000 1100 1200 1300 1400
RF Frequency (MHz)
Conversion Loss vs RF Frequency
12
Temp.=+25°C
IF=70 MHz
11 High-side LO
+4 dBm
10
0 dBm
−4 dBm
9
8
7
700 800 900 1000 1100 1200 1300 1400
RF Frequency (MHz)
Conversion Loss vs RF Frequency
12
Temp.=+25°C
IF=140 MHz
11 High-side LO
+4 dBm
10 0 dBm
−4 dBm
9
8
7
700 800 900 1000 1100 1200 1300 1400
RF Frequency (MHz)
Conversion Loss vs RF Frequency
12
Temp.=+25°C
IF=240 MHz
11 High-side LO
+4 dBm
0 dBm
−4 dBm
10
9
8
7
700 800 900 1000 1100 1200 1300 1400
RF Frequency (MHz)
Conversion Loss vs RF Frequency
14
Temp.=+25°C
LO Pwr=0 dBm
12 Low-side LO
240 MHz
140 MHz
70 MHz
10
8
6
4
700 800 900 1000 1100 1200 1300 1400
RF Frequency (MHz)
Input IP3 vs RF Frequency
46
Temp.=+25°C
44 LO Pwr=0 dBm
Low-side LO
42
40
38
240 MHz
36
140 MHz
34 70 MHz
32
700 800 900 1000 1100 1200 1300 1400
RF Frequency (MHz)
Datasheet Rev. H 03-14-16
© 2016 TriQuint Semiconductor, Inc
- 3 of 8 -
Disclaimer: Subject to change without notice
www.triquint.com / www.qorvo.com







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