P0080ECMCL LITTELFUSE | Alldatasheet

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Technical content

www.littelfuse.com 3 - 22 © 2006 Littelfuse, Inc. • Telecom Design Guide /G48/G76/G70/G85/G82/G38/G68/G83/G68/G70/G76/G87/G68/G81/G70/G72/G3/G11/G48/G38/G12/G3/G54/G44/G39/G36/G38/G87/G82/G85/G138/G3/G39/G72/G89/G76/G70/G72 These TO-92 MC SIDACtor devices are intended for applications sensitive to load values. Typically, high speed connections, such as xDSL and T1/E1, require a lower capacitance. CO values for the MicroCapacitance device are 40 percent lower than a standard EC part. This MC SIDACtor series enables 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) without the need of series resistors. * “L” in part number indicates RoHS compliance. For non-RoHS compliant device, delete “L” from part number. For 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 IDRM.
  • V S is measured at 100 V/μs.
  • Special voltage (V S and VDRM) and holding current (IH) requirements are available upon request. * Current waveform in μs ** Voltage waveform in μs Electrical Parameters Part Number * VDRM Volts VS Volts VT Volts IDRM μAmps IS mAmps IT Amps IH mAmps P0080ECMCL 6 25 4 5 800 2.2 50 P0300ECMCL 25 40 4 5 800 2.2 50 P0640ECMCL 58 77 4 5 800 2.2 150 P0720ECMCL 65 88 4 5 800 2.2 150 P0900ECMCL 75 98 4 5 800 2.2 150 P1100ECMCL 90 130 4 5 800 2.2 150 P1300ECMCL 120 160 4 5 800 2.2 150 P1500ECMCL 140 180 4 5 800 2.2 150 P1800ECMCL 170 220 4 5 800 2.2 150 P2300ECMCL 190 260 4 5 800 2.2 150 P2600ECMCL 220 300 4 5 800 2.2 150 P3100ECMCL 275 350 4 5 800 2.2 150 P3500ECMCL 320 400 4 5 800 2.2 150 Surge Ratings in AmpsSeries IPP ITSM 50 / 60 Hz di/dt 0.2x310 * 0.5x700 ** 2x10 * 2x10 ** 8x20 * 1.2x50 ** 10x160 * 10x160 ** 10x560 * 10x560 ** 5x320 * 9x720 ** 10x360 * 10x360 ** 10x1000 * 10x1000 ** 5x310 * 10x700 ** Amps Amps Amps Amps Amps Amps Amps Amps Amps Amps Amps/μs C 50 500 400 200 150 200 175 100 200 30 500

/G48/G76/G70/G85/G82/G38/G68/G83/G68/G70/G76/G87/G68/G81/G70/G72/G3/G11/G48/G38/G12/G3/G54/G44/G39/G36/G38/G87/G82/G85/G138/G3/G39/G72/G89/G76/G70/G72 Telecom Design Guide • © 2006 Littelfuse, Inc. 3 - 23 www.littelfuse.com /G53/G43/G38/G35/G37/G86/G81/G84/G2/G38/G71/G88/G75/G69/G71/G85 Note: Off-state capacitance (CO) is measured at 1 MHz with a 2 V bias. Thermal Considerations Package Symbol Parameter Value Unit TO-92 TJ Operating Junction Temperature Range -40 to +150 °C TS Storage Temperature Range -65 to +150 °C RθJA Thermal Resistance: Junction to Ambient 90 °C/W Capacitance Values Part Number pF MIN MAX P0080ECMCL 35 75 P0300ECMCL 25 45 P0640ECMCL 55 85 P0720ECMCL 50 75 P0900ECMCL 45 70 P1100ECMCL 45 70 P1300ECMCL 40 60 P1500ECMCL 35 55 P1800ECMCL 35 50 P2300ECMCL 30 50 P2600ECMCL 30 45 P3100ECMCL 30 45 P3500ECMCL 25 40

www.littelfuse.com 3 - 24 © 2006 Littelfuse, Inc. • Telecom Design Guide /G48/G76/G70/G85/G82/G38/G68/G83/G68/G70/G76/G87/G68/G81/G70/G72/G3/G11/G48/G38/G12/G3/G54/G44/G39/G36/G38/G87/G82/G85/G138/G3/G39/G72/G89/G76/G70/G72 IH IT IS IDRM VDRMVT +V-V VS V-I Characteristics 100 tr td Peak Value Half Value t – Time (μs) IPP – Peak Pulse Current – %I PP tr = rise time to peak value td = decay time to half value Waveform = t r x td tr x td Pulse Waveform -40 -20 0 20 40 60 80 100 120 140 160 Junction Temperature (TJ) – ˚C Percent of VS Change – % 25 ˚C Normalized VS Change versus Junction Temperature 0.4 -40 -20 0 20 40 60 80 100 120 140 160 0.6 0.8 1.0 1.2 1.4 1.6 1.8 2.0 Case Temperature (TC) – ˚C Ratio of IH IH (TC = 25 ˚C) 25 ˚C Normalized DC Holding Current versus Case Temperature