MAX3208EAUB+ Maxim Integrated Products, MAX3208EAUB+ Datasheet - Page 6

IC ESD PROT DIFF 10-UMAX

MAX3208EAUB+

Manufacturer Part Number
MAX3208EAUB+
Description
IC ESD PROT DIFF 10-UMAX
Manufacturer
Maxim Integrated Products
Type
Diode Arraysr
Series
MAX3208Er
Datasheet

Specifications of MAX3208EAUB+

Power (watts)
444mW
Polarization
4 Channel Array - Unidirectional
Mounting Type
Surface Mount
Package / Case
10-MSOP, Micro10™, 10-uMAX, 10-uSOP
Capacitance Value
10(Typ) pF
Maximum Clamping Voltage
105.5 V
Number Of Elements Per Chip
4
Esd Protection Voltage
±15@HBM|±15@Air Gap|±8@Contact Disc KV
Maximum Leakage Current
0.1 uA
Channels
4 Channels
Clamping Voltage
100 V
Operating Voltage
- 0.3 V to + 6.0 V
Termination Style
SMD/SMT
Capacitance
2 pF
Maximum Operating Temperature
+ 125 C
Minimum Operating Temperature
- 40 C
Dimensions
3.05 (Max) mm W x 3.05 (Max) mm L
Diode Type
ESD Protection
Power Dissipation Pd
444mW
Diode Case Style
µMAX
No. Of Pins
10
Termination Type
SMD
Capacitance, Cd
2.6pF
Operating Temperature Range
-40°C To +125°C
Rohs Compliant
Yes
Filter Terminals
SMD
Esd Threat Voltage Max
15kV
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Voltage - Breakdown
-
Voltage - Reverse Standoff (typ)
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
ESD protection can be tested in various ways. The
MAX3205E/MAX3207E/MAX3208E are characterized
for protection to the following limits:
• ±15kV using the Human Body Model
• ±8kV using the Contact Discharge Method specified
• ±15kV using the IEC 61000-4-2 Air-Gap Discharge
ESD performance depends on a number of conditions.
Contact Maxim for a reliability report that documents
test setup, methodology, and results.
Figure 3 shows the Human Body Model, and Figure 4
shows the current waveform it generates when dis-
charged into a low impedance. This model consists of
a 100pF capacitor charged to the ESD voltage of inter-
est, which is then discharged into the device through a
1.5kΩ resistor.
The IEC 61000-4-2 standard covers ESD testing and
performance of finished equipment. The MAX3205E/
MAX3207E/MAX3208E help users design equipment
that meets Level 4 of IEC 61000-4-2. The main differ-
ence between tests done using the Human Body Model
Dual, Quad, and Hex High-Speed
Differential ESD-Protection ICs
Figure 3. Human Body ESD Test Model
6
in IEC 61000-4-2
Method
VOLTAGE
SOURCE
_______________________________________________________________________________________
HIGH-
DC
CHARGE-CURRENT-
LIMIT RESISTOR
1MΩ
R
C
100pF
C s
Human Body Model
STORAGE
CAPACITOR
1.5kΩ
RESISTANCE
±15kV ESD Protection
DISCHARGE
R
D
ESD Test Conditions
IEC 61000-4-2
DEVICE
UNDER
TEST
and IEC 61000-4-2 is higher peak current in IEC 61000-
4-2. Because series resistance is lower in the IEC
61000-4-2 ESD test model (Figure 5), the ESD-
withstand voltage measured to this standard is general-
ly lower than that measured using the Human Body
Model. Figure 2 shows the current waveform for the
±8kV, IEC 61000-4-2 Level 4, ESD Contact Discharge
test. The Air-Gap Discharge test involves approaching
the device with a charged probe. The Contact
Discharge method connects the probe to the device
before the probe is energized.
Figure 4. Human Body Model Current Waveform
Figure 5. IEC 61000-4-2 ESD Test Model
AMPERES
VOLTAGE
SOURCE
HIGH-
DC
I
P
36.8%
100%
90%
10%
CHARGE-CURRENT-
0
LIMIT RESISTOR
50MΩ TO 100MΩ
0
t
RL
R
C
150pF
C s
CURRENT WAVEFORM
STORAGE
CAPACITOR
TIME
RESISTANCE
DISCHARGE
330Ω
R
t
D
DL
I r
PEAK-TO-PEAK RINGING
(NOT DRAWN TO SCALE)
DEVICE
UNDER
TEST

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