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HP3-0047L

HP3-0047L

  • 厂商:

    COILCRAFT(线艺)

  • 封装:

  • 描述:

    HP3-0047L - Hexa-Path Magnetics - Coilcraft lnc.

  • 数据手册
  • 价格&库存
HP3-0047L 数据手册
Document 613-1 Hexa-Path Magnetics HP1, HPH1 HP2, HPH2 HP3, HPH3 HP4, HPH4 HP5, HPH5 HP6, HPH6 • Six 1 :1 isolated windings that can be connected in series or parallel • Tightly coupled windings • 500 Vrms isolation between each winding • Power range: 5 – 50 Watts as inductor and flyback transformer; up to 150 Watts as forward transformer • Frequency range up to 1 MHz Winding Layouts HP1, HP2, HPH1, HPH2 HP3, HP4, HP5, HP6 Outer 6 12 11 10 9 8 7 3 2 1 One 6-filar winding 3 2 1 Two trifilar windings 5 4 7 8 9 4 3 10 11 12 2 1 Three bifilar windings HPH3, HPH4, HPH5, HPH6 Outer 6 5 7 8 Middle 9 10 Inner Percent of rated current These off-the shelf parts can be used to create thousands of configurations, providing a convenient method for designers to create custom magnetics. By connecting the windings in series or parallel, the Hexa-Path components can be configured as inductors, coupled inductors and transformers for use in virtually any application: flyback, buck/boost, push-pull, forward, full and half bridge, Cuk, and SEPIC. There are six different sizes available with five HP parts and five HPH parts in each size. The HP offers lower DCR and higher Irms ratings. The HPH offers higher inductance and greater energy storage capabilities. 6 5 4 Inner 11 12 Current Derating 120 110 100 90 80 70 60 50 40 20 10 0 -40 -20 0 20 40 60 80 100 120 140 Ambient temperature (°C) Specifications subject to change without notice. Please check our website for latest information. Document 613-1 Revised 01/23/09 © Coilcraft, Inc. 2009 25°C 30 Document 613-2 Hexa-Path Magnetics Part number1 HP1-1400L_ HP1-0190L_ HP1-0102L_ HP1-0076L_ HP1-0059L_ HP2-1600L_ HP2-0216L_ HP2-0116L_ HP2-0083L_ HP2-0066L_ HP3-0950L_ HP3-0138L_ HP3-0084L_ HP3-0055L_ HP3-0047L_ HP4-1150L_ HP4-0140L_ HP4-0075L_ HP4-0060L_ HP4-0047L_ HP5-1200L_ HP5-0155L_ HP5-0083L_ HP5-0067L_ HP5-0053L_ HP6-2400L HP6-0325L HP6-0158L HP6-0121L HP6-0090L HPH1-1400L_ HPH1-0190L_ HPH1-0102L_ HPH1-0076L_ HPH1-0059L_ HPH2-1600L_ HPH2-0216L_ HPH2-0116L_ HPH2-0083L_ HPH2-0066L_ HPH3-0950L_ HPH3-0138L_ HPH3-0084L_ HPH3-0055L_ HPH3-0047L_ HPH4-1150L_ HPH4-0140L_ HPH4-0075L_ HPH4-0060L_ HPH4-0047L_ HPH5-1200L_ HPH5-0155L_ HPH5-0083L_ HPH5-0067L_ HPH5-0053L_ HPH6-2400L HPH6-0325L HPH6-0158L HPH6-0121L HPH6-0090L Inductance2 (µH) 89.6 ±25% 12.2 ±20% 6.5 ±15% 4.9 ±10% 3.8 ±5% 78.4 ±25% 10.6 ±20% 5.7 ±15% 4.1 ±10% 3.2 ±5% 77.0 ±25% 11.2 ±20% 6.8 ±15% 4.5 ±10% 3.8 ±5% 93.2 ±25% 11.3 ±20% 6.1 ±15% 4.9 ±10% 3.8 ±5% 76.8 ±25% 9.9 ±20% 5.3 ±15% 4.3 ±10% 3.4 ±5% 86.4 ±25% 11.7 ±20% 5.69 ±15% 4.36 ±10% 3.24 ±5% 202 ±25% 27.4 ±20% 14.7 ±15% 10.9 ±10% 8.5 ±5% 160 ±25% 21.6 ±20% 11.6 ±15% 8.3 ±10% 6.6 ±5% 160 ±25% 23.6 ±20% 14.2 ±15% 9.3 ±10% 7.94 ±5% 194 ±25% 23.7 ±20% 12.7 ±15% 10.1 ±10% 7.94 ±5% 173 ±25% 22.3 ±20% 12.0 ±15% 9.65 ±10% 7.63 ±5% 194 ±25% 26.3 ±20% 12.8 ±15% 9.8 ±10% 7.29 ±5% DCR max3 (Ohms) 0.130 0.130 0.130 0.130 0.130 0.085 0.085 0.085 0.085 0.085 0.055 0.055 0.055 0.055 0.055 0.055 0.055 0.055 0.055 0.055 0.045 0.045 0.045 0.045 0.045 0.020 0.020 0.020 0.020 0.020 0.340 0.340 0.340 0.340 0.340 0.155 0.155 0.155 0.155 0.155 0.125 0.125 0.125 0.125 0.125 0.078 0.078 0.078 0.078 0.078 0.070 0.070 0.070 0.070 0.070 0.030 0.030 0.030 0.030 0.030 Volt-time Peak energy product4 storage5 (V-µsec) (µJ) 23.4 Note 8 23.4 29.8 23.4 55.1 23.4 74.7 23.4 93.8 44.0 Note 8 44.0 79.2 44.0 184 44.0 228 44.0 252 30.4 Note 8 30.4 59.6 30.4 111 30.4 156 30.4 173 47.3 Note 8 47.3 142 47.3 307 47.3 386 47.3 490 62.8 Note 8 62.8 281 62.8 562 62.8 626 62.8 946 87.9 Note 8 87.9 332 87.9 981 87.9 1485 87.9 1833 35.1 Note 8 35.1 31.1 35.1 60.2 35.1 99.2 35.1 107 30.8 Note 8 30.8 82.3 30.8 177 30.8 302 30.8 333 43.9 Note 8 43.9 52.5 43.9 98.0 43.9 169 43.9 196 68.3 Note 8 68.3 138 68.3 314 68.3 368 68.3 529 94.2 Note 8 94.2 248 94.2 546 94.2 700 94.2 809 131.9 Note 8 131.9 477 131.9 1176 131.9 1783 131.9 1944 Isat6 (A) Note 8 0.440 0.820 1.10 1.40 Note 8 0.770 1.60 2.10 2.50 Note 8 0.650 1.14 1.66 1.90 Note 8 1.00 2.00 2.50 3.20 Note 8 1.50 2.90 3.40 4.70 Note 8 1.50 3.70 5.20 6.70 Note 8 0.300 0.570 0.850 1.00 Note 8 0.550 1.10 1.70 2.00 Note 8 0.420 0.740 1.20 1.40 Note 8 0.680 1.40 1.70 2.30 Note 8 0.940 1.90 2.40 2.90 Note 8 1.20 2.70 3.80 4.60 Irms7 (A) 0.74 0.74 0.74 0.74 0.74 1.13 1.13 1.13 1.13 1.13 1.73 1.73 1.73 1.73 1.73 1.88 1.88 1.88 1.88 1.88 2.25 2.25 2.25 2.25 2.25 3.50 3.50 3.50 3.50 3.50 0.62 0.62 0.62 0.62 0.62 0.83 0.83 0.83 0.83 0.83 1.13 1.13 1.13 1.13 1.13 1.65 1.65 1.65 1.65 1.65 1.95 1.95 1.95 1.95 1.95 2.90 2.90 2.90 2.90 2.90 1. Please specify termination and packaging codes: HPH1-1400LD Termination: L = RoHS compliant tin-silver over tin over nickel over phos bronze. Special order: T = RoHS tin-silver-copper (95.5/4/0.5) or S = non-RoHS tin-lead (63/37). Packaging: All but HP6 and HPH6: D = 13″ machine-ready reel. EIA-481 embossed plastic tape B = Less than full reel. In tape, but not machine ready. To have a leader and trailer added ($25 charge), use code letter D instead. HP6 and HPH6: 24 per tray (no code) Inductance is per winding, measured at 100 kHz, 0.1 Vrms, 0 Adc. DCR is per winding, measured on Cambridge Technology micro-ohmmeter or equivalent. Volt-time product is for a single winding or multiple windings connected in parallel. To calculate volttime product for windings connected in series, multiply the value specified in the table by the number of windings connected in series. Peak energy storage is for any combination of windings, assuming saturation current applied. See note 6 for definition of saturation current. DC current at which the inductance drops 30% typ from its value without current, based on current applied to all six windings connected in series. For applications where all windings are not connected in series, use the following equation to calculate Isat: Isat = Isattable × 6 ÷ number of windings in series. Current that causes a 40°C rise from 25°C ambient due to self heating, tested with continuous current flow through all windings connected in series. Application temperature rise will depend on the operating current, duty cycle, and winding connection. Part is designed exclusively for use as a forward converter transformer and was not tested for energy storage and saturation current. Electrical specifications at 25°C. 2. 3. 4. 5. 6. 7. 8. 9. Core material Ferrite Terminations RoHS tin-silver over tin over nickel over phos bronze. Other terminations available at additional cost. Ambient temperature –40°C to +85°C with Irms current, +85°C to +125°C with derated current Storage temperature Component: –40°C to +125°C. Packaging: –40°C to +80°C Resistance to soldering heat Max three 40 second reflows at +260°C, parts cooled to room temperature between cycles Moisture Sensitivity Level (MSL) 1 (unlimited floor life at
HP3-0047L 价格&库存

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