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HMC742HFLP5E Datasheet, PDF (5/10 Pages) Hittite Microwave Corporation – 0.5 dB LSB GaAs MMIC 6-BIT DIGITAL VARIABLE GAIN AMPLIFIER, 0.5 - 4 GHz
v00.0211
HMC742HFLP5E
0.5 dB LSB GaAs MMIC 6-BIT DIGITAL
VARIABLE GAIN AMPLIFIER, 0.5 - 4 GHz
12
Power-Up States
If LE is set to logic LOW at power-up, the logic state of
PUP1 and PUP2 determines the power-up state of the
part per PUP truth table. If the LE is set to logic HIGH
at power-up, the logic state of D0-D5 determines the
power-up state of the part per truth table. The DVGA
latches in the desired power-up state approximately
200 ms after power-up.
Power-On Sequence
The ideal power-up sequence is: GND, Vdd, digital
inputs, RF inputs. The relative order of the digital
inputs are not important as long as they are powered
after Vdd / GND
Absolute Maximum Ratings
RF Input Power at Max Gain [1]
17.5 dBm (T = +85 °C)
Digital Inputs (LE, SERIN, CLK, P/S,
DO-D5, PUP1, PUP2)
-0.5 to Vdd +0.5V
Controller Bias Voltage (Vdd)
5.6V
Amplifier Bias Voltage (Vcc)
5.5V
Channel Temperature
175 °C
Continuous Pdiss (T = 85 °C)
(derate 13.3 mW/°C above 85 °C) [2]
1.2 W
Thermal Resistance [3]
75.6 °C/W
Storage Temperature
-65 to +150 °C
Operating Temperature
-40 to +85 °C
ESD Sensitivity (HBM)
Class 1A
[1] The maximum RF input power increases by the same amount
the gain is reduced. The maximum input power at any state is no
more than 28 dBm.
[2] This value does not include the RF power dissipation in the
attenuator. The loss in the attenuator depends on the state of
the attenuator. The loss in the attenuator should be included to
determine the total power dissipation in the part.
[3] This value does not include the RF power dissipation in the
attenuator. The thermal resistance at different states of the
attenuator can be determined based on note [2]
Bias Voltage
Vdd (V)
+5.0
Vs (V)
+5.0
Idd (Typ.) (mA)
0.12
Is (mA)
150
PUP Truth Table
LE
PUP1
PUP2
Gain Relative to Maximum
Gain
0
0
0
-31.5
0
1
0
-24
0
0
1
-16
0
1
1
Insertion Loss
1
X
X
0 to -31.5 dB
Note: The logic state of D0 - D5 determines the
power-up state per truth table shown below when LE
is high at power-up.
Truth Table
Control Voltage Input
Gain
Relative to
D5
D4
D3
D2
D1
D0
Maximum
Gain
High High High High High High
0 dB
High High High High High Low
-0.5 dB
High High High High Low High
-1 dB
High High High Low High High
-2 dB
High High Low High High High
-4 dB
High Low High High High High
-8 dB
Low High High High High High
-16 dB
Low Low Low Low Low Low -31.5 dB
Any combination of the above states will provide a reduction in
gain approximately equal to the sum of the bits selected.
Control Voltage Table
State
Low
High
Vdd = +3V
0 to 0.5V @ <1 µA
2 to 3V @ <1 µA
Vdd = +5V
0 to 0.8V @ <1 µA
2 to 5V @ <1 µA
ELECTROSTATIC SENSITIVE DEVICE
OBSERVE HANDLING PRECAUTIONS
12 - 5
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