MAX13047EEVKIT+ Maxim Integrated Products, MAX13047EEVKIT+ Datasheet - Page 10

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MAX13047EEVKIT+

Manufacturer Part Number
MAX13047EEVKIT+
Description
KIT EVALUATION FOR MAX13047
Manufacturer
Maxim Integrated Products
Datasheets

Specifications of MAX13047EEVKIT+

Main Purpose
Interface, Logic-Level Translator
Embedded
No
Utilized Ic / Part
MAX13047E
Primary Attributes
2 Channel Bi-Directional
Secondary Attributes
Translates Between VL & VCC Logic Levels for Data Rates up to 16Mbps
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Single- and Dual-Bidirectional
Low-Level Translator
When V
V
is disconnected or connected to ground, I/O V
not be driven more than V
Thermal-overload detection protects the MAX13046E/
MAX13047E from short-circuit fault conditions. In the
event of a short-circuit fault, when the junction tempera-
ture (T
mode. When the device has cooled to below +140°C,
normal operation resumes.
ESD protection structures are incorporated on all pins
to protect against electrostatic discharges encountered
during handling and assembly. The ESD structures
withstand electrostatic discharge in all states: normal
Figure 1a. Rail-to-Rail Driving I/O V
10
CC
I/O V
(t
t
I/O V
FALL
RISE
must not be driven more than V
______________________________________________________________________________________
L
CC
,
< 10ns)
J
) exceeds +150°C, the device enters shutdown
CC
V
L
50Ω
R
S
is disconnected or connected to ground, I/O
SHDN
I/O V
t
PD-VL-VCC
L
t
RVCC
MAX13046E/
MAX13047E
V
L
GND
Short-Circuit Protection
L
V
CC
+ 0.3V.
±15kV ESD Protection
I/O V
L
CC
DATA
CC
V
CC
t
PD-VL-VCC
+ 0.3V. When V
R
L
t
FVCC
C
L
L
must
L
operation, shutdown mode, and powered down. The
I/O V
acterized for protection to the following limit:
ESD performance depends on a variety of conditions.
Contact Maxim for a reliability report that documents
test setup, test methodology, and test results.
Figure 2a shows the Human Body Model, and Figure
2b shows the current waveform it generates when dis-
charged into a low-impedance state. This model con-
sists of a 100pF capacitor charged to the ESD voltage
of interest that is then discharged into the test device
through a 1.5kΩ resistor.
Figure 1b. Rail-to-Rail Driving I/O V
I/O V
(t
t
I/O V
FALL
±15kV using the Human Body Model
RISE
CC
C
CC
L
L
,
< 10ns)
lines of the MAX13046E/MAX13047E are char-
R
V
L
L
DATA
t
PD-VCC-VL
t
RVL
SHDN
I/O V
L
MAX13046E/
MAX13047E
V
L
GND
ESD Test Conditions
CC
Human Body Model
V
CC
I/O V
CC
t
PD-VCC-VL
t
FVL
V
50Ω
R
CC
S

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