6-35
HMMC-5023 DC Specifications/Physical Properties
[1]
Symbol Parameters and Test Conditions Units Min. Typ. Max.
VD1, V
D2
Recommended Drain Supply Voltage V 3 5 7
VG1, V
G2
Gate Supply Voltage V 0.4 0.8
[2]
2
[VD1 ≤ VD1(max), V
D2
≤ V
D2
(max)]
ID1, I
D2
Input and Output Stage Drain Supply Current mA 12 35
(VG1 = VG2 = Open, VD1 = VD2 = 5 Volts)
ID1 + I
D2
Total Drain Supply Current mA 13 24 30
(VG1 = VG2 = Open, VD1 = VD2 = 5 Volts)
θ
ch-bs
Thermal Resistance
[3]
° C/Watt 75
(Channel-to-Backside at T
ch
= 150° C)
T
ch
Channel Temperature
[4]
(T
A
= 140° C, MTTF = 106 hrs, °C 150
V
G1
= VG2 = Open, V
D1
= VD = 5 Volts)
Notes:
1. Backside ambient operating temperature T
A
= 25°C unless otherwise noted.
2. Open circuit voltage at VG1 and VG2 when VD1 and VD2 are 5 volts.
3. Thermal resistance (in °C/Watt) at a channel temperature T (°C) can be estimated using this equation:
θ(T) @ 75 x [T(°C)+ 273] / [150°C+ 273].
4. Derate MTTF by a factor of two for every 8°C above T
ch
.
HMMC-5023 RF Specifications,
T
op
= 25°C, V
D1
= V
D2
= 5 V, VG1 = VG2= Open, Z
O
= 50 Ω, unless otherwise noted
21.2–23.6 GHz 24.5–26.5 GHz
Symbol Parameters and Test Conditions Units Min. Typ. Max. Min. Typ. Max.
BW Operating Bandwidth GHz 21.2 23.6 24.5 26.5
Gain Small Signal Gain dB 21 24 28 17 21 25
∆ Gain Small Signal Gain Flatness dB ±1 ±1.5
(RLin)
MIN
Minimum Input Return Loss dB 10 12 12 20
(RL
out)MIN
Minimum Output Return Loss dB 8 10 8 10
Isolation Reverse Isolation dB 40 50 40 48
Output Power @ 1 dB Gain Compression dBm 10 10
P
-1dB
Output Power @ 1 dB Gain Compression dBm 14 14
(VD = 5 V, VG1= Open, VD2 = 7 V,
VG2 set for ID2 = 35 mA)
P
sat
Saturated Output Power dBm 12 12
(@ 3 dB Gain Compression)
2nd Harm. Second Harmonic Power Level dBc -30 -30
[f = 2 fo, P
out
(fo) = P
-1dB
,
21.2 GHz ≤ fo ≤ 23.6 GHz]
NF
Noise Figure, 22 GHz
dB
2.5 3.0
Noise Figure, 25 GHz 2.8 3.3