MAX2062EVKIT# Maxim Integrated Products, MAX2062EVKIT# Datasheet - Page 2

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MAX2062EVKIT#

Manufacturer Part Number
MAX2062EVKIT#
Description
Power Management Modules & Development Tools MAX2062 EVAL KIT MAX2062 EVAL KIT
Manufacturer
Maxim Integrated Products
Datasheet

Specifications of MAX2062EVKIT#

Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Dual 50MHz to 1000MHz High-Linearity,
Serial/Parallel-Controlled Analog/Digital VGA
ABSOLUTE MAXIMUM RATINGS
V
STA_A_1, STA_A_2, STA_B_1, STA_B_2,
A_VCTL_1, A_VCTL_2 to GND .............................-0.3V to +3.6V
DAT, CS, CLK, AA_SP, DA_SP to GND ...............-0.3V to +3.6V
D0_1, D1_1, D2_1, D3_1, D4_1, D0_2, D1_2,
AMP_IN_1, AMP_IN_2 to GND ..........................+0.95V to +1.2V
AMP_OUT_1, AMP_OUT_2 to GND .....................-0.3V to +5.5V
D_ATT_IN_1, D_ATT_IN_2, D_ATT_OUT_1,
A_ATT_IN_1, A_ATT_IN_2, A_ATT_OUT_1,
Note 1: Based on junction temperature T
Note 2: Package thermal resistances were obtained using the method described in JEDEC specification JESD51-7, using a four-
Note 3: Junction temperature T
Note 4: T
5.0V SUPPLY DC ELECTRICAL CHARACTERISTICS
(Typical Application Circuit, V
T
3.3V SUPPLY DC ELECTRICAL CHARACTERISTICS
(Typical Application Circuit, V
T
Stresses beyond those listed under “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress ratings only, and functional
operation of the device at these or any other conditions beyond those indicated in the operational sections of the specifications is not implied. Exposure to absolute
maximum rating conditions for extended periods may affect device reliability.
2
Supply Voltage
Supply Current
Power-Down Current
Logic-Low Input Voltage
Logic-High Input Voltage
Input Logic Current
Supply Voltage
Supply Current
Power-Down Current
Logic-Low Input Voltage
Logic-High Input Voltage
CC_AMP_1
C
C
PD_1, PD_2, AMPSET to GND .........................-0.3V to +3.6V
D2_2, D3_2, D4_2 to GND ...............................-0.3V to +3.6V
D_ATT_OUT_2 to GND ......................................... 0V to +3.6V
A_ATT_OUT_2 to GND ......................................... 0V to +3.6V
= -40NC to +85NC. Typical values are at V
= -40NC to +85NC. Typical values are at V
______________________________________________________________________________________
exposed pad is known while the device is soldered down to a PCB. See the Applications Information section for details.
The junction temperature must not exceed +150NC.
layer board. For detailed information on package thermal considerations, refer to www.maxim-ic.com/thermal-tutorial.
known. The junction temperature must not exceed +150NC.
C
PARAMETER
PARAMETER
, V
is the temperature on the exposed pad of the package. T
CC_AMP_2
, V
CC_RG
CC
CC
J
= T
to GND ..........-0.3V to +5.5V
= V
= V
SYMBOL
SYMBOL
A
CC_AMP_1
I
I
I
CC_AMP_1
+ (q
DCPD
IH,
DCPD
V
V
I
V
I
V
V
V
DC
DC
CC
CC
IH
IH
IL
IL
J
I
IL
JA
= T
CC_
CC_
x V
C
PD_1 = PD_2 = 1, V
PD_1 = PD_2 = 1, V
+ (q
= V
CC
= 5.0V and T
= 3.3V and T
= V
JC
x I
CC_AMP_2
CC_AMP_2
CC
x V
). This formula can be used when the ambient temperature of the PCB is
CC
C
C
x I
CONDITIONS
CONDITIONS
= V
= +25NC, unless otherwise noted.)
= +25NC, unless otherwise noted.)
= V
CC
CC_RG
). This formula can be used when the temperature of the
REG_OUT to GND ................................................-0.3V to +3.6V
RF Input Power (D_ATT_IN_1, D_ATT_IN_2) ............... +20dBm
RF Input Power (A_ATT_IN_1, A_ATT_IN_2) .............. +20dBm
RF Input Power (AMP_IN_1, AMP_IN_2) ...................... +18dBm
q
q
Continuous Power Dissipation (Note 1) ..............................5.3W
Operating Case Temperature Range (Note 4) .. -40NC to +85NC
Junction Temperature .....................................................+150NC
Storage Temperature Range ............................ -65NC to +150NC
Lead Temperature (soldering, 10s) ................................+300NC
Soldering Temperature (reflow) ......................................+260NC
IH
IH
CC_RG
JC
JA
A
= 3.3V
= 3.3V
is the ambient temperature of the device and PCB.
(Notes 1, 2) ......................................................... +12.3NC/W
(Notes 2, 3) ............................................................ +38NC/W
= 3.135V to 3.465V, AMPSET = 1, PD_1 = PD_2 = 0,
= 4.75V to 5.25V, AMPSET = 0, PD_1 = PD_2 = 0,
3.135
4.75
MIN
MIN
1.7
-1
TYP
TYP
148
5.3
3.3
4.5
0.5
1.7
87
5
3.465
3.465
MAX
MAX
5.25
210
145
0.5
+1
8
8
UNITS
UNITS
mA
mA
mA
mA
FA
V
V
V
V
V
V

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