Multiport SLIC Protector
RoHS
This multiport line protector is designed as a single-package solution for protecting
multiple twisted pair from overvoltage conditions. Based on a six-pin SOIC package, it
is equivalent to four discrete DO-214AA packages. Available in surge current ratings
up to 500 A for a 2x10 µs event, the multiport line protector is ideal for densely
populated line cards that cannot afford PCB inefficiencies or the use of series power
resistors.
For details of specific design criteria, see Figure 6.44, Figure 6.45, and Figure 6.46
in Section 6, “Reference Designs” of this
Telecom Design Guide.
Electrical Parameters
V
DRM
Volts
Part
Number *
P0641U_L
P0721U_L
P0901U_L
P1101U_L
P1301U_L
P1701U_L
58
65
75
95
120
160
V
S
Volts
V
T
Volts
77
88
98
130
160
200
4
4
4
4
4
4
V
F
Volts
5
5
5
5
5
5
I
DRM
µAmps
5
5
5
5
5
5
I
S
mAmps
800
800
800
800
800
800
I
T
Amps
2.2
2.2
2.2
2.2
2.2
2.2
I
H
mAmps
120
120
120
120
120
120
1
(T
1
)
2
(G
1
)
3
(R
1
)
6
(T
2
)
5
(G
2
)
4
(R
2
)
Pins
1-2, 2-3,
4-5, 5-6
*
“L” in part number indicates RoHS compliance.
For non-RoHS compliant device, delete “L” from part number.
For individual “UA” and “UC” surge ratings, see table below.
General Notes:
• All measurements are made at an ambient temperature of 25 °C. I
PP
applies to -40 °C through +85 °C temperature range.
• I
PP
is a repetitive surge rating and is guaranteed for the life of the product.
• V
DRM
is measured at I
DRM.
• V
S
and V
F
are measured at 100 V/µs.
• Special voltage (V
S
and V
DRM
) and holding current (I
H
) requirements are available upon request.
• Parallel capacitive loads may affect electrical parameters.
Surge Ratings in Amps
I
PP
Series
0.2x310 * 2x10 *
8x20 *
0.5x700 ** 2x10 ** 1.2x50 **
Amps
A
C
20
50
Amps
150
500
Amps
150
400
10x160 *
10x160 **
Amps
90
200
10x560 *
10x560 **
Amps
50
150
5x320 *
9x720 **
Amps
75
200
10x360 * 10x1000 * 5x310 *
I
TSM
10x360 ** 10x1000 ** 10x700 ** 50 / 60 Hz
Amps
75
175
Amps
45
100
Amps
75
200
Amps
20
50
di/dt
Amps/µs
500
500
* Current waveform in µs
** Voltage waveform in µs
Telecom Design Guide • © 2006 Littelfuse
3 - 71
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SIDACtor Devices
Multiport SLIC Protector
Thermal Considerations
Package
Modified MS-013
6
5
4
1
2
3
Symbol
T
J
T
S
R
θJA
Parameter
Operating Junction Temperature Range
Storage Temperature Range
Thermal Resistance: Junction to Ambient
Value
-40 to +150
-65 to +150
60
Unit
°C
°C
°C/W
Capacitance Values
pF
Pin 1-2 / 3-2 (4-5 / 6-5)
Tip-Ground, Ring-Ground
Part Number
P0641UAL
P0641UCL
P0721UAL
P0721UCL
P0901UAL
P0901UCL
P1101UAL
P1101UCL
P1301UAL
P1301UCL
P1701UAL
P1701UCL
MIN
50
65
45
60
45
60
40
50
40
50
30
40
MAX
200
200
190
190
180
180
160
160
160
160
125
125
MIN
20
20
20
20
20
20
15
15
15
15
15
15
pF
Pin 1-3 (4-6)
Tip-Ring
MAX
105
105
105
105
105
105
105
105
105
105
80
80
Note: Off-state capacitance (C
O
) is measured at 1 MHz with a 2 V bias.
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© 2006 Littelfuse • Telecom Design Guide
Multiport SLIC Protector
+I
V
F
I
PP
– Peak Pulse Current – %I
PP
100
Peak
Value
t
r
= rise time to peak value
t
d
= decay time to half value
V
S
V
DRM
-V
V
T
+V
Waveform = t
r
x t
d
I
DRM
I
H
I
S
I
T
-I
50
Half Value
0
0
t
r
t
d
t – Time (µs)
V-I Characteristics
t
r
x t
d
Pulse Waveform
Percent of V
S
Change – %
10
I
H
(T
C
= 25 ˚C)
14
12
8
6
4
2
0
-4
-6
-8
-40 -20
0
20 40 60 80 100 120 140 160
2.0
1.8
1.6
1.4
1.2
1.0
0.8
0.6
0.4
-40 -20 0
20 40 60 80 100 120 140 160
I
H
25 ˚C
25 ˚C
Ratio of
Case Temperature (T
C
) – ˚C
Junction Temperature (T
J
) – ˚C
Normalized V
S
Change versus Junction Temperature
Normalized DC Holding Current versus Case Temperature
Telecom Design Guide • © 2006 Littelfuse
3 - 73
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Mouser Electronics
Authorized Distributor
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