ESDA6V1BC6 STMicroelectronics, ESDA6V1BC6 Datasheet - Page 3

TRANSIL QUAD SUPPR ESD SOT23-6

ESDA6V1BC6

Manufacturer Part Number
ESDA6V1BC6
Description
TRANSIL QUAD SUPPR ESD SOT23-6
Manufacturer
STMicroelectronics
Series
TRANSIL™r
Type
TVSr
Datasheet

Specifications of ESDA6V1BC6

Voltage - Reverse Standoff (typ)
5V
Voltage - Breakdown
6.1V
Power (watts)
80W
Polarization
4 Channel Array - Bidirectional
Mounting Type
Surface Mount
Package / Case
SOT-23-6
Number Of Elements
4
Polarity
Bi-Directional
Package Type
SOT-23
Operating Temperature Classification
Automotive
Reverse Breakdown Voltage
6.1V
Reverse Stand-off Voltage
5V
Leakage Current (max)
1uA
Peak Pulse Power Dissipation
80W
Test Current (it)
1mA
Operating Temp Range
-40C to 125C
Mounting
Surface Mount
Pin Count
6
Capacitance Value
20(Typ) pF
Direction Type
Bi-Directional
Number Of Elements Per Chip
4
Esd Protection Voltage
15@Air Gap|8@Contact Disc KV
Maximum Leakage Current
1 uA
Maximum Working Voltage
5 V
Channels
4 Channels
Operating Voltage
5 V
Breakdown Voltage
6.1 V
Termination Style
SMD/SMT
Capacitance
140 pF
Maximum Operating Temperature
+ 125 C
Minimum Operating Temperature
- 40 C
Dimensions
1.75 mm W x 3.05 mm L x 1.45 mm H
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
497-6635-2
ESDA6V1BC6

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Figure 4: Clamping voltage versus peak pulse
current (typical values, rectangular waveform)
Figure 6: Relative variation of leakage current
versus junction temperature (typical values)
1. ESD protection by ESDA6V1-4BC6
With the focus of lowering the operation levels, the problem of malfunction caused by the environment is
critical. Electrostatic discharge (ESD) is a major cause of failure in electronic system.
Transient Voltage Suppressors are an ideal choice for ESD protection and have proven capable in sup-
pressing ESD events. They are capable of clamping the incoming transient to a low enough level such
that damage to the protected semiconductor is prevented.
Surface mount TVS arrays offer the best choice for minimal lead inductance.
They serve as parallel protection elements, connected between the signal line to ground. As the transient
rises above the operating voltage of the device, the TVS array becomes a low impedance path diverting
the transient current to ground.
20.0
10.0
500
100
1.0
0.1
10
1
25
®
I [T ] / I [T =25°C]
0
I
R
PP
(A)
j
5
R
50
j
10
15
75
V
T (°C)
CL
j
20
(V)
100
25
30
125
T
j
initial = 25°C
t = 2.5µs
p
35
150
40
Figure 5: Junction capacitance versus line
voltage applied (typical values
22
20
19
18
17
16
15
14
13
12
10
21
11
0
C(pF)
1
2
3
V (V)
R
4
5
ESDA6V1BC6
6
V
OSC
F = 1MHz
T
j
= 25°C
= 30mV
7
3/6
8

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