AMMC-6120-W10 Avago Technologies US Inc., AMMC-6120-W10 Datasheet - Page 2

IC MMIC FREQ MULTIPLIER 6-20GHZ

AMMC-6120-W10

Manufacturer Part Number
AMMC-6120-W10
Description
IC MMIC FREQ MULTIPLIER 6-20GHZ
Manufacturer
Avago Technologies US Inc.
Datasheet

Specifications of AMMC-6120-W10

Function
Frequency Multiplier
Supply Current
85mA
Supply Voltage Range
5V
Frequency Max
10GHz
Frequency Min
4GHz
Supply Voltage Max
7V
Gain
1dB
Manufacturer's Type
MMIC Amplifier
Number Of Channels
1
Frequency (max)
20GHz
Operating Supply Voltage (typ)
5V
Package Type
Chip
Mounting
Surface Mount
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
AMMC-6120-W10
Manufacturer:
AVAGO/安华高
Quantity:
20 000
AMMC-6120 DC Specifications/Physical Properties
Symbol
I
V
q
Notes:
1. Ambient operational temperature T
2. Channel-to-backside Thermal Resistance (q
AMMC-6120 RF Specifications
T
Symbol
Fin
Fout
Po
Fo
3Fo
P
RLin
RLout
SSB
Notes:
3. Small/Large -signal data measured in wafer form T
4. 100% on-wafer RF test is done at Pin = +3 dBm, output frequency = 10, 16, and 20 GHz.
5. Specifications are derived from measurements in a 50-W test environment. Aspects of the multiplier performance may be improved over a
2
dq
A
ch-b
-1dB
g
more narrow bandwidth by application of additional matching.
backside temperature (T
= 25°C, V
Parameters and Test Conditions
Input Frequency
Output Frequency
Output Power
Fundamental Isolation
(referenced to Po)
3
(referenced to Po)
Input Power at 1dB Gain Compression
Input Return Loss
Output Return Loss
Single Sideband Phase Noise
(100 KHz offset)
rd
dd
Harmonic Isolation
= 5 V, V
Parameters and Test Conditions
Drain Supply Current
Gate Supply Operating Voltage
Thermal Resistance
(Backside Temperature, T
g
b
[4]
=-1.4V, I
) = 25°C calculated from measured data.
[3,4,5]
[6]
[6]
d(Q)
A
[2]
= 25°C unless otherwise noted.
= 85 mA, Z
b
ch-b
= 25°C)
) = 26°C/W at T
[1]
A
= 25°C.
o
= 50 Ω
Units
GHz
GHz
dBm
dBc
dBc
dBm
dB
dB
DBc/Hz
channel
(T
c
) = 34°C as measured using infrared microscopy. Thermal Resistance at
Units
mA
V
°C/W
Minimum
10.5
18
Min.
80
-1.5
Typical
4 to 10
8 to 20
14
25
25
+1
-15
-9
-135
Typ.
85
-1.4
25
Maximum
Max.
105
-1.0
Sigma
0.6
1.8
2.5

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