MAX9247GCM/V+ Maxim Integrated, MAX9247GCM/V+ Datasheet - Page 2

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MAX9247GCM/V+

Manufacturer Part Number
MAX9247GCM/V+
Description
Serializers & Deserializers - Serdes 27Bit 2.5-42MHz DC Blnc LVDS Serializer
Manufacturer
Maxim Integrated
Type
Serializerr
Datasheet

Specifications of MAX9247GCM/V+

Rohs
yes
Data Rate
840 Mbit/s
Input Type
LVCMOS
Output Type
LVDS
Number Of Inputs
27
Number Of Outputs
1
Operating Supply Voltage
3 V to 3.6 V
Operating Temperature Range
- 40 C to + 105 C
Package / Case
LQFP-48
Maximum Operating Temperature
+ 105 C
Minimum Operating Temperature
- 40 C
Mounting Style
SMD/SMT
27-Bit, 2.5MHz-to-42MHz
DC-Balanced LVDS Serializer
ABSOLUTE MAXIMUM RATINGS
V
Any Ground to Any Ground...................................-0.5V to +0.5V
OUT+, OUT-, CMF to LVDSGND...........................-0.5V to +4.0V
OUT+, OUT- Short Circuit to LVDSGND
OUT+, OUT- Short Through 0.125µF (or smaller),
RGB_IN[17:0], CNTL_IN[8:0], DE_IN,
Continuous Power Dissipation (T
ESD Protection
DC ELECTRICAL CHARACTERISTICS
(V
values are at V
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
SINGLE-ENDED INPUTS (RGB_IN[17:0], CNTL_IN[8:0], DE_IN, PCLK_IN, PWRDWN, RNG_, PRE)
High-Level Input Voltage
Low-Level Input Voltage
Input Current
Input Clamp Voltage
LVDS OUTPUTS (OUT+, OUT-)
Differential Output Voltage
Change in V
Complementary Output States
Common-Mode Voltage
Change in V
Complementary Output States
Output Short-Circuit Current
Magnitude of Differential
Output Short-Circuit Current
Output High-Impedance
Current
CC_
CC_
48-Lead LQFP (derate 20.8mW/°C above +70°C)....1666.7mW
or V
25V Series Capacitor..........................................-0.5V to +16V
RNG0, RNG1, PRE, PCLK_IN,
PWRDWN to GND ...............................-0.5V to (V
Machine Model (R
_______________________________________________________________________________________
to _GND........................................................-0.5V to +4.0V
CCLVDS
= +3.0V to +3.6V, R
PARAMETER
OD
OS
.............................................................Continuous
CC_
Between
Between
= +3.3V, T
D
= 0Ω, C
L
= 100Ω ±1%, PWRDWN = high, PRE = low, T
A
S
A
= 200pF)
= +25°C.) (Notes 1, 2)
= +70°C)
SYMBOL
∆V
∆V
I
V
V
V
V
I
OSD
I
V
I
OS
OZ
IN
OD
OS
CL
IH
IL
OD
OS
V
V
V
V
V
to 3.6V,
PWRDWN =
high or low
I
Figure 1
Figure 1
Figure 1
Figure 1
V
V
PWRDWN = low
or V
CL
CCIN
CCIN
CCIN
CCIN
CCIN
OUT+
OD
= -18mA
CC_
CCIN
= 0V
= 1.71V to < 3V (Note 3)
= 3.0V to 3.6V
= 1.71V to < 3V (Note 3)
= 3.0V to 3.6V
= 1.71V
or V
= 0V
+ 0.5V)
OUT-
CONDITIONS
= 0V or 3.6V
V
(MAX9247ECM),
V
(MAX9247GCM)
V
IN
IN
IN
= 0V to ( V
= -0.3V to 0V
= -0.15V to 0V
ISO 10605 (R
IEC 61000-4-2 (R
Storage Temperature Range .............................-65°C to +150°C
Junction Temperature ......................................................+150°C
Lead Temperature (soldering, 10s)..................................+300°C
Soldering Temperature (reflow) .......................................+260°C
All Pins to GND ..............................................................±200V
Human Body Model (R
All Pins to GND ................................................................±3kV
Contact Discharge (OUT+, OUT-) to LVDSGND ...........±10kV
Air-Gap Discharge (OUT+, OUT-) to LVDSGND ...........±30kV
Contact Discharge (OUT+, OUT-) to LVDSGND ...........±10kV
Air-Gap Discharge (OUT+, OUT-) to LVDSGND ...........±15kV
V
V
V
V
OUT+
OUT-
OU T +
OUT-
C C IN
A
= -40°C to +105°C, unless otherwise noted. Typical
= 3.6V
= 0V
= 3.6V ,
= 0V,
+ 0.3V)
D
= 2kΩ, C
D
= 330Ω, C
0.65 x V
1.125
-100
MIN
-0.3
-0.3
250
S
-20
-15
-1
D
2
= 330pF)
= 1.5kΩ, C
CCIN
S
= 150pF)
TYP
1.29
335
5.5
±8
S
= 100pF)
V
0.3 + V
0.3 x V
CCIN
1.475
MAX
+0.8
+20
+20
-1.5
450
+15
+1
20
20
15
+ 0.3
CCIN
CCIN
UNITS
mV
mV
mV
mA
mA
µA
µA
V
V
V
V

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