MAX106CHC Maxim, MAX106CHC Datasheet - Page 2

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MAX106CHC

Manufacturer Part Number
MAX106CHC
Description
5V / 600Msps / 8-Bit ADC with On-Chip 2.2GHz Bandwidth Track/Hold Amplifier
Manufacturer
Maxim
Datasheet

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Part Number:
MAX106CHC+
Manufacturer:
MAXIM
Quantity:
101
ABSOLUTE MAXIMUM RATINGS
V
V
V
V
AUXEN1, AUXEN2 to GND .....................-0.3V to (V
V
Between GNDs......................................................-0.3V to +0.3V
V
V
PECL Digital Output Current ...............................................50mA
REFIN to GNDR ........................................-0.3V to (V
REFOUT Current ................................................+100µA to -5mA
ICONST, IPTAT to GNDI .......................................-0.3V to +1.0V
TTL/CMOS Control Inputs
RSTIN+, RSTIN- ......................................-0.3V to (V
±5V, 600Msps, 8-Bit ADC with On-Chip
2.2GHz Bandwidth Track/Hold Amplifier
DC ELECTRICAL CHARACTERISTICS
(V
unless otherwise noted. Typical values are at T
2
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.
CC
CC
CC
CC
EE
CC
CC
ACCURACY
ANALOG INPUTS
V
REFERENCE INPUT AND OUTPUT
Resolution
Integral Nonlinearity (Note 1)
Differential Nonlinearity (Note 1)
Missing Codes
Full-Scale Input Range (Note 1)
Common-Mode Input Range
Input Resistance
Input Resistance Temperature
Coefficient
Input Resistance (Note 2)
Input V
Reference Output Voltage
Reference Output Load
Regulation
Reference Input Resistance
CC
(DEMUXEN, DIVSELECT) ....................-0.3V to (V
OS
A to GNDA .........................................................-0.3V to +6V
D to GNDD.........................................................-0.3V to +6V
I to GNDI ............................................................-0.3V to +6V
O to GNDD ........................................-0.3V to (V
A to V
A to V
to GNDI..............................................................-6V to +0.3V
_______________________________________________________________________________________
A = V
ADJUST CONTROL INPUT
OS
CC
CC
PARAMETER
CC
Adjust Range
D .......................................................-0.3V to +0.3V
I.........................................................-0.3V to +0.3V
I = V
CC
D = +5.0V ±5%, V
∆REFOUT
SYMBOL
REFOUT
R
V
R
RES
DNL
V
TC
INL
R
VOS
FSR
REF
CM
EE
IN
R
= -5.0V ±5%, V
A
T
T
No missing codes guaranteed
Signal + offset w.r.t. GNDI
VIN+ and VIN- to GNDI, T
VOSADJ = 0 to 2.5V
Driving REFIN input only
0 < I
Referenced to GNDR
A
A
= +25°C.)
= +25° C
= +25° C
CC
CC
CC
CC
CC
SOURCE
O + 0.3V)
D + 0.3V)
D + 0.3V)
D + 0.3V)
I + 0.3V)
CC
< 2.5mA
O = +3.0V to V
CONDITIONS
VOSADJ Adjust Input ................................-0.3V to (V
CLK+ to CLK- Voltage Difference..........................................±3V
CLK+, CLK-.....................................(V
CLKCOM.........................................(V
VIN+ to VIN- Voltage Difference ............................................±2V
VIN+, VIN- to GNDI................................................................±2V
Continuous Power Dissipation (T
Operating Temperature Range
Operating Junction Temperature.....................................+150°C
Storage Temperature Range .............................-65°C to +150°C
192-Contact ESBGA (derate 61mW/°C above +70°C) ...4.88W
(with heatsink and 200LFM airflow,
derate 106mW/°C above +70°C) ....................................8.48W
MAX106CHC........................................................0°C to +70°C
A
= +25°C
CC
D, REFIN connected to REFOUT, T
2.475
MIN
-0.5
-0.5
475
±4
49
14
8
4
A
= +70°C)
±0.25
±0.25
EE
EE
±0.8
±5.5
TYP
2.50
500
150
50
25
5
- 0.3V) to (GNDD + 1V)
- 0.3V) to (GNDD + 1V)
A
2.525
None
MAX
525
= T
0.5
0.5
51
5
MIN
CC
I + 0.3V)
ppm/°C
to T
UNITS
Codes
mVp-p
LSB
LSB
LSB
Bits
mV
kΩ
kΩ
V
V
MAX
,

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