AMMC-3040-W10 Avago Technologies US Inc., AMMC-3040-W10 Datasheet - Page 2

IC MMIC MIXER W/LO AMP&MULT GAAS

AMMC-3040-W10

Manufacturer Part Number
AMMC-3040-W10
Description
IC MMIC MIXER W/LO AMP&MULT GAAS
Manufacturer
Avago Technologies US Inc.
Series
AMMC-3040r
Datasheet

Specifications of AMMC-3040-W10

Function
Mixer
Supply Current
50mA
Supply Voltage Range
2V To 5V
Frequency Max
36GHz
Frequency Min
18GHz
Supply Voltage Max
5V
Supply Voltage Min
2V
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-3040-W10
Manufacturer:
AVAGO/安华高
Quantity:
20 000
AMMC-3040 DC Specifications/Physical Properties
Symbol
V
I
I
V
V
θ
Notes:
1. Measured in wafer form with T
2. Channel-to-backside Thermal Resistance (θch-b) = 58°C/Ω at Tchannel (Tc)=150°C as measured using the liquid crystal method. Thermal Resis-
AMMC-3040 RF Specifications
Zo = 50
Symbol
Lc
Lc
ISOL
P
IIP3
Notes:
1. 100% on-wafer RF testing is done at RF frequency = 18, 22, and 32 GHz.
2. IF Input = 2 GHz, RF Input Power = -20 dBm, RF freq = LO + IF.
3. Does not include LO amplifier gain of ~20 dB.
4. ∆f = 2 MHz, RF Input Power = -5 dBm.
AMMC-3040 Typical Performance
Zo = 50 Ω, Tb = 25°C, IF = 2 GHz, LO Input Power = +2 dBm, RF Input Power = -20 dBm, except as noted.
Figure 1. Conversion loss, up conversion. V
I
2
d1
D2, 3, 4
d
ch-b
-1 dB
D1, 2, 3, 4
G1, 2, 3, 4
p
= 250 mA, LO freq = RF + IF
tance at backside temperature (T
14
12
10
8
6
4
2
0
L-R
20
22 24 26 28 30 32 34 36 38 40
Ω
, Tb = 25
RF FREQUENCY (GHz)
Parameters and Test Conditions
Conversion Loss, Down Conversion
Conversion Loss, Up Conversion
LO - RF Isolation at RF Frequency = 22 GHz
Input Power at 1 dB Conversion Loss
Compression, Down Conversion
Input 3rd Order Intercept Point,
Down Conversion at RF Frequency = 22 GHz
Parameters and Test Conditions
Drain Supply Operating Voltage
First Stage Drain Supply Current,
V
Total Drain Supply Current for Stages 2, 3 and 4
(V
Gate Supply Operating Voltages (I
Pinch-Off Voltage (V
Thermal Resistance
°
dd
C, IF Output = 2 GHz, LO Input Power = +2 dBm, RF Input Power = -20 dBm, except as noted.
dd
= 3.5 V, V
= 3.5 V, V
LO = - 4 dBm
LO = 0 dBm
LO = 4 dBm
chuck
g1
b
gg
) = 25 °C calculated from measured data.
= 25°C. (Except θch-bs.)
= -0.5 V
= -0.5 V)
d
= 3.5 V,
42
[2]
dd
(Backside Temp. T
= 3.5 V, I
[2]
dd
[1]
< 10 mA
dd
= 250 mA)
[1]
[3]
b
= 25°C)
[4]
Figure 2. Conversion loss, down conversion.
V
d
= 3.5 V, I
14
13
12
11
10
9
8
20
Units
dB
dB
dB
dBm
dBm
22 24 26 28 30 32 34 36 38 40
d
= 250 mA, LO freq. = RF – IF
LO = -4 dBm
LO = 0 dBm
LO = 4 dBm
RF FREQUENCY (GHz)
Units
V
mA
mA
V
V
°C/W
Vdd = 3.5 V,
Idd = 250 mA
Typ.
9.5
10
31
17
23
Min.
2
Max.
12
42
Typical
3.5
50
225
-0.5
-1.5
49
Vdd = 4.5 V,
Idd = 150 mA
Typ.
10
10.5
32
17
22
Max.
5

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