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RoHS
This three-chip SIDACtor solution offers a guaranteed balanced protection, based on a Littelfuse patent (US Patent 4,905,119). The `Y' configuration offers identical metallic and longitudinal protection in one through-hole modified TO-220 package. For primary protection applications, devices with higher holding current and integrated failsafe options are available. 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 * P1553A_L P1803A_L P2103A_L P2353A_L P2703A_L P3203A_L P3403A_L P5103A_L A2106A_3L ** A5030A_3L ** VDRM Volts 130 150 170 200 230 270 300 420 170 400 VS Volts 180 210 250 270 300 350 400 600 250 550 VDRM Volts 130 150 170 200 230 270 300 420 50 270 VS Volts 180 210 250 270 300 350 400 600 80 340 VT Volts 8 8 8 8 8 8 8 8 8 8 IDRM Amps 5 5 5 5 5 5 5 5 5 5 IS mAmps 800 800 800 800 800 800 800 800 800 800 IT Amps 2.2 2.2 2.2 2.2 2.2 2.2 2.2 2.2 2.2 2.2 IH mAmps 150 150 150 150 150 150 150 150 120 150
1
3
2
Pins 1-2, 2-3
Pins 1-3
* "L" in part number indicates RoHS compliance. For non-RoHS compliant device, delete "L" from part number. For individual "AA", "AB", and "AC" surge ratings, see table below. ** Asymmetrical General Notes: * All measurements are made at an ambient temperature of 25 C. IPP applies to -40 C through +85 C temperature range. * IPP 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. * VDRM is measured at IDRM. * VS is measured at 100 V/s. * Special voltage (VS and VDRM) and holding current (IH) requirements are available upon request. * Device is designed to meet balance requirements of GTS 8700 and GR 974.
Surge Ratings in Amps
IPP 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 * ITSM 10x360 ** 10x1000 ** 10x700 ** 50 / 60 Hz Amps 75 125 175 Amps 45 80 100 Amps 75 100 200 Amps 20 30 50 di/dt Amps Amps/s 500 500 500
* Current waveform in s ** Voltage waveform in s
Telecom Design Guide * (c) 2006 Littelfuse, Inc.
3 - 51
www.littelfuse.com
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Thermal Considerations
Package Modified TO-220 Symbol TJ TS RJA Parameter Operating Junction Temperature Range Storage Temperature Range Thermal Resistance: Junction to Ambient Value -40 to +150 -65 to +150 50 Unit C C C/W
PIN 1 PIN 2
PIN 3
Capacitance Values
pF Pin 1-2 / 3-2 Tip-Ground, Ring-Ground Part Number P1553AAL P1553ABL P1553ACL P1803AAL P1803ABL P1803ACL P2103AAL P2103ABL P2103ACL P2353AAL P2353ABL P2353ACL P2703AAL P2703ABL P2703ACL P3203AAL P3203ABL P3203ACL P3403AAL P3403ABL P3403ACL P5103AAL P5103ABL P5103ACL A2106AA3L A2106AB3L A2106AC3L A5030AA3L A5030AB3L A5030AC3L MIN 10 25 30 20 25 30 15 20 30 15 20 25 15 20 25 15 20 25 15 15 20 10 15 20 15 20 30 15 20 30 MAX 45 95 95 40 85 85 35 85 85 35 75 75 35 75 75 30 70 70 30 65 65 60 60 60 35 35 45 35 35 45 MIN 10 15 20 10 15 15 10 10 15 10 15 15 10 10 15 10 10 15 10 10 15 10 10 10 10 10 15 25 25 25 pF Pin 1-3 Tip-Ring MAX 30 60 60 30 55 55 25 55 55 25 50 50 25 50 50 20 45 45 20 45 45 40 40 40 45 45 45 40 40 40
Note: Off-state capacitance (CO) is measured at 1 MHz with a 2 V bias.
www.littelfuse.com
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(c) 2006 Littelfuse, Inc. * Telecom Design Guide
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+I
IPP - Peak Pulse Current - %IPP
IT IS IH IDRM -V VT VDRM VS +V
100
Peak Value
tr = rise time to peak value td = decay time to half value
Waveform = tr x td
50
Half Value
0 0 tr td t - Time (s)
-I
V-I Characteristics tr x td Pulse Waveform
Percent of VS Change - %
10
IH (TC = 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
IH
25 C
25 C
Ratio of
Case Temperature (TC) - C
Junction Temperature (TJ) - C
Normalized VS Change versus Junction Temperature Normalized DC Holding Current versus Case Temperature
Telecom Design Guide * (c) 2006 Littelfuse, Inc.
3 - 53
www.littelfuse.com
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