SIDACtor®
Device
RoHS
TO-92
SIDACtor
solid state protection devices protect telecommunications equipment such
as modems, line cards, and CPE (telephones, answering machines, and fax machines).
SIDACtor
devices enable equipment to comply with various regulatory requirements
including GR 1089, ITU K.20, K.21 and K.45, IEC 60950, UL 60950, and TIA-968-A
(formerly known as FCC Part 68).
.
Electrical Parameters
Part
Number *
P0080E_L
P0300E_L
P0640E_L
P0720E_L
P0900E_L
P1100E_L
P1300E_L
P1500E_L
P1800E_L
P2300E_L
P2600E_L
P3100E_L
P3500E_L
V
DRM
Volts
6
25
58
65
75
90
120
140
170
190
220
275
320
V
S
Volts
25
40
77
88
98
130
160
180
220
260
300
350
400
V
T
Volts
4
4
4
4
4
4
4
4
4
4
4
4
4
I
DRM
µAmps
5
5
5
5
5
5
5
5
5
5
5
5
5
I
S
mAmps
800
800
800
800
800
800
800
800
800
800
800
800
800
I
T
Amps
2.2
2.2
2.2
2.2
2.2
2.2
2.2
2.2
2.2
2.2
2.2
2.2
2.2
I
H
mAmps
50
50
150
150
150
150
150
150
150
150
150
150
150
*
“L” in part number indicates RoHS compliance.
For non-RoHS compliant device, delete “L” from part number.
For individual “EA”, “EB”, and “EC” 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.
• Listed
SIDACtor
devices are bi-directional. All electrical parameters and surge ratings apply to forward and reverse polarities.
• V
DRM
is measured at I
DRM.
• V
S
is measured at 100 V/µs.
• Special voltage (V
S
and V
DRM
) and holding current (I
H
) requirements are available upon request.
Surge Ratings in Amps
I
PP
Series
0.2x310 * 2x10 *
8x20 *
0.5x700 ** 2x10 ** 1.2x50 **
Amps
A
B
C
20
25
50
Amps
150
250
500
Amps
150
250
400
10x160 *
10x160 **
Amps
90
150
200
10x560 *
10x560 **
Amps
50
100
150
5x320 *
9x720 **
Amps
75
100
200
10x360 * 10x1000 * 5x310 *
I
TSM
10x360 ** 10x1000 ** 10x700 ** 50 / 60 Hz
Amps
75
125
175
Amps
45
80
100
Amps
75
100
200
Amps
20
30
30
di/dt
Amps/µs
500
500
500
* Current waveform in µs
** Voltage waveform in µs
Telecom Design Guide • © 2006 Littelfuse
3 - 19
www.littelfuse.com
SIDACtor Devices
SIDACtor® Device
Thermal Considerations
Package
TO-92
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
90
Unit
°C
°C
°C/W
Capacitance Values
pF
Part Number *
P0080E[A/B]L
P0080ECL
P0300E[A/B]L
P0300ECL
P0640E[A/B]L
P0640ECL
P0720EAL
P0720EBL
P0720ECL
P0900EAL
P0900EBL
P0900ECL
P1100EAL
P1100EBL
P1100ECL
P1300EAL
P1300EBL
P1300ECL
P1500EAL
P1500EBL
P1500ECL
P1800EAL
P1800EBL
P1800ECL
P2300EAL
P2300EBL
P2300ECL
P2600EAL
P2600EBL
P2600ECL
P3100EAL
P3100EBL
P3100ECL
P3500EAL
P3500EBL
P3500ECL
MIN
25
35
15
25
40
55
35
35
50
35
35
45
30
30
45
25
25
40
25
25
35
25
25
35
25
25
30
20
20
30
20
20
30
20
20
25
MAX
150
260
140
250
60
155
60
75
150
55
70
140
50
70
115
45
60
105
40
55
95
35
50
90
35
50
80
35
45
80
35
45
70
35
40
65
* [A/B] in part number indicates that values are for both A and B surge ratings.
Note: Off-state capacitance (C
O
) is measured at 1 MHz with a 2 V bias.
www.littelfuse.com
3 - 20
© 2006 Littelfuse • Telecom Design Guide
SIDACtor® Device
+I
I
PP
– Peak Pulse Current – %I
PP
t
r
= rise time to peak value
t
d
= decay time to half value
I
T
I
S
I
H
I
DRM
-V
V
T
V
DRM
V
S
+V
100
Peak
Value
Waveform = t
r
x t
d
50
Half Value
0
0
t
r
t
d
t – Time (µs)
-I
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 - 21
www.littelfuse.com
SIDACtor Devices
Mouser Electronics
Authorized Distributor
Click to View Pricing, Inventory, Delivery & Lifecycle Information:
Littelfuse
:
P1100EAL P2600EAL P2600EBL P0640EBL P0300EAMCL P0300ECMCL P0300ECMC P0300EAMC
P0300ECL P0300EB P0080EB P1100ECMCL P0720EC P3100EBL P1100EB P3100EAL P0300EAL P2600EC
P2600EB P3100ECL P0640EC P2600ECL P1100ECL P0640EB P0720EB P1100EA P1100EBL P0720EAL
P0720ECL P1100ECMC P1100EBRP1 P1100EBRP2 P1100EBLAP P0300EAMCAP P0300EALAP
P1100ECMCLRP2 P1100ECMCLRP1 P0300EARP2 P0300EARP1 P1100EARP2 P1100EARP1 P1100EALAP
P1100ECLAP P1100ECRP1 P1100ECRP2 P0300ECLAP P1100ECLRP1 P1100ECLRP2 P0300ECRP1
P0300ECRP2 P0300EBRP1 P0300EBRP2 P1100EBLRP2 P1100EBLRP1 P0300ECMCAP P1100ECMCLAP
P1100ECMCAP P1100ECMCRP1 P1100ECMCRP2 P1100EALRP2 P1100EALRP1 P0080ECL P1100ECAP
P0300ECAP P0300ECLRP2 P0300ECLRP1 P0300EAAP P0300ECMCRP1 P0300ECMCRP2 P0300ECMCLAP
P0300EAMCLAP P0300EAMCRP1 P0300EAMCRP2 P0300EAMCLRP2 P0300ECMCLRP2 P0300EAMCLRP1
P0300ECMCLRP1 P0300EALRP1 P0300EALRP2 P0080ECLRP1 P0080EBL P0300EBL P0080EBLRP1
P0080EBMCLRP2 P0080EAMCLRP2 P0300EBLRP2 P0300EBMCRP2 P0080EAMCL P0300EBLRP1
P0300EBMCL P0080EALRP2 P0300EBMCLRP1 P0080EBLRP2 P0300EBMCRP1 P0300EBMC P0080ECLRP2
P0080EBMCLRP1 P0080EAMCLRP1 P0300EBMCLRP2 P0080EBMCL