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JANTX1N4104UR-1

JANTX1N4104UR-1

  • 厂商:

    ACTEL(微芯科技)

  • 封装:

    DO213AA

  • 描述:

    DIODE ZENER 10V 500MW DO213AA

  • 数据手册
  • 价格&库存
JANTX1N4104UR-1 数据手册
IN4099UR-1 thru 1N4135UR-1 (or MLL4099-1 thru MLL4135-1) and 1N4614UR-1 thru 1N4627UR-1 (or MLL4614-1 thru MLL4627-1) SCOTTSDALE DIVISION METALLURGICALLY BONDED GLASS SURFACE MOUNT 0.5 WATT ZENERS APPEARANCE The 1N4099UR-1 thru 1N4135UR-1 and 1N4614UR-1 thru 1N4627UR-1 series of 0.5 watt glass surface mount DO-213AA Zener voltage regulators provides a selection from 1.8 to 100 volts in standard 5% tolerances as well as tighter tolerances identified by different suffix letters on the part number. These have an internal-metallurgical-bond option as identified with the “-1” suffix. This type of internally bonded Zener package construction is also available in JAN, JANTX, and JANTXV military qualifications. Microsemi also offers numerous other Zener products to meet higher and lower power applications. DO-213AA WWW . Microsemi .C OM DESCRIPTION IMPORTANT: For the most current data, consult MICROSEMI’s website: http://www.microsemi.com FEATURES APPLICATIONS / BENEFITS • Surface mount equivalent to JEDEC registered 1N4099 thru 1N4135 and 1N4614 thru 1N4627 series • Internal metallurgical bond with the “-1” suffix • Nonbonded types also available without the “-1” suffix for both the axial and surface mount packages (see separate data sheets) • DO-7 or DO-35 glass body axial-leaded Zener equivalents also available per JEDEC registration with part numbers 1N4099 thru 1N4135 and 1N4614 thru 1N4627 on separate data sheets • RoHS Compliant devices available by adding “e3” suffix MAXIMUM RATINGS • • • • • • • Regulates voltage over a broad operating current and temperature range Extensive selection from 1.8 to 100 V Standard voltage tolerances are plus/minus 5% with no suffix Tight tolerances available in plus or minus 2% or 1% with C or D suffix respectively Hermetically sealed surface mount package Nonsensitive to ESD per MIL-STD-750 Method 1020 Minimal capacitance (see Figure 3) Inherently radiation hard as described in Microsemi MicroNote 050 MECHANICAL AND PACKAGING º • CASE: Hermetically sealed glass DO-213AA (SOD80 or MLL34) MELF style package • FINISH: End caps Tin-lead (Sn/Pb) or RoHS Compliant annealed matte-Tin plating solderable per MIL-STD-750, method 2026 • POLARITY: Cathode indicated by band where diode is to be operated with the banded end positive with respect to the opposite end for Zener regulation • MARKING: cathode band only • TAPE & REEL option: Standard per EIA-481-1-A with 12 mm tape, 2000 per 7 inch reel or 5000 per 13 inch reel (add “TR” suffix to part number) • WEIGHT: 0.04 grams • See package dimensions on last page Microsemi Scottsdale Division 8700 E. Thomas Rd. PO Box 1390, Scottsdale, AZ 85252 USA, (480) 941-6300, Fax: (480) 947-1503 Page 1 1N4099UR-1–1N4135UR-1 1N4614UR-1–1N4627UR-1,e3 • Operating and Storage temperature: -65 C to +175 C º • Thermal Resistance: 100 C/W junction to end cap, or º 250 C/W junction to ambient when mounted on FR4 PC board (1 oz Cu) with recommended footprint (see last page) • Steady-State Power: 0.5 watts at end cap temperature o º TEC < 125 C or at ambient TA < 50 C when mounted on FR4 PC board as described for thermal resistance above (see Figure 2 for derating) • Forward voltage @200 mA: 1.1 volts • Solder Temperatures: 260 ºC for 10 s (max) º Copyright © 2006 3-30-06 REV D • IN4099UR-1 thru 1N4135UR-1 (or MLL4099-1 thru MLL4135-1) and 1N4614UR-1 thru 1N4627UR-1 (or MLL4614-1 thru MLL4627-1) SCOTTSDALE DIVISION INDUSTRY PART NUMBER MICROSEMI PART NUMBER NOMINAL ZENER VOLTAGE ZENER TEST CURRENT VZ @ IZT IZT (NOTE 2) MAXIMUM ZENER IMPEDANCE MAXIMUM REVERSE CURRENT MAXIMUM NOISE DENSITY MAXIMUM ZENER CURRENT ZZT IR @ VR ND @ IZT IZM (Note 3) TYPICAL TEMP.COEFF. OF ZENER VOLTAGE αVZ Copyright © 2006 3-30-06 REV D o (NOTE 1) Microsemi Scottsdale Division 8700 E. Thomas Rd. PO Box 1390, Scottsdale, AZ 85252 USA, (480) 941-6300, Fax: (480) 947-1503 Page 2 1N4099UR-1–1N4135UR-1 1N4614UR-1–1N4627UR-1,e3 VOLTS OHMS Volts mA %/ C μA μA μV/√Hz 1N4614UR-1 MLL4614-1 1.8 250 1200 3.5 1.0 1 120 -0.075 1N4615UR-1 MLL4615-1 2.0 250 1250 2.5 1.0 1 110 -0.075 1N4616UR-1 MLL4616-1 2.2 250 1300 2.0 1.0 1 100 -0.075 1N4617UR-1 MLL4617-1 2.4 250 1400 1.0 1.0 1 95 -0.075 1N4618UR-1 MLL4618-1 2.7 250 1500 0.5 1.0 1 90 -0.075 1N4619UR-1 MLL4619-1 3.0 250 1600 0.4 1.0 1 87 -0.075 1N4620UR-1 MLL4620-1 3.3 250 1650 3.5 1.5 1 85 -0.075 1N4621UR-1 MLL4621-1 3.6 250 1700 3.5 2.0 1 83 -0.065 1N4622UR-1 MLL4622-1 3.9 250 1650 2.5 2.0 1 80 -0.060 1N4623UR-1 MLL4623-1 4.3 250 1600 2.0 2.0 1 77 -0.050 1N4624UR-1 MLL4624-1 4.7 250 1550 5.0 3.0 1 75 -0.040,+0.020 1N4625UR-1 MLL4625-1 5.1 250 1500 5.0 3.0 2 70 -0.045,+0.030 1N4626UR-1 MLL4626-1 5.6 250 1400 5.0 4.0 4 65 -0.020,+0.040 1N4627UR-1 MLL4627-1 6.2 250 1200 5.0 5.0 5 61 -0.010,+0.050 1N4099UR-1 MLL4099-1 6.8 250 200 1.0 5.17 40 56 0.040 1N4100UR-1 MLL4100-1 7.5 250 200 1.0 5.70 40 51 0.045 1N4101UR-1 MLL4101-1 8.2 250 200 0.5 6.24 40 46 0.048 1N4102UR-1 MLL4102-1 8.7 250 200 0.5 6.61 40 44 0.049 1N4103UR-1 MLL4103-1 9.1 250 200 0.5 6.92 40 42 0.050 1N4104UR-1 MLL4104-1 10 250 200 0.5 7.60 40 38 0.055 1N4105UR-1 MLL4105-1 11 250 200 .05 8.44 40 35 0.060 1N4106UR-1 MLL4106-1 12 250 200 .05 9.12 40 32 0.065 1N4107UR-1 MLL4107-1 13 250 200 .05 9.87 40 29 0.065 1N4108UR-1 MLL4108-1 14 250 200 .05 10.65 40 27 0.070 1N4109UR-1 MLL4109-1 15 250 100 .05 11.40 40 25 0.070 1N4110UR-1 MLL4110-1 16 250 100 .05 12.15 40 24 0.070 1N4111UR-1 MLL4111-1 17 250 100 .05 12.92 40 22 0.075 1N4112UR-1 MLL4112-1 18 250 100 .05 13.67 40 21 0.075 1N4113UR-1 MLL4113-1 19 250 150 .05 14.44 40 20 0.075 1N4114UR-1 MLL4114-1 20 250 150 .01 15.20 40 19 0.075 1N4115UR-1 MLL4115-1 22 250 150 .01 16.72 40 17 0.080 1N4116UR-1 MLL4116-1 24 250 150 .01 18.25 40 16 0.080 1N4117UR-1 MLL4117-1 25 250 150 .01 1900 40 15 0.080 1N4118UR-1 MLL4118-1 27 250 150 .01 20.45 40 14 0.085 1N4119UR-1 MLL4119-1 28 250 200 .01 21.28 40 14 0.085 1N4120UR-1 MLL4120-1 30 250 200 .01 22.80 40 13 0.085 1N4121UR-1 MLL4121-1 33 250 200 .01 25.08 40 12 0.085 1N4122UR-1 MLL4122-1 36 250 200 .01 27.38 40 11 0.090 1N4123UR-1 MLL4123-1 39 250 200 .01 29.65 40 9.8 0.090 1N4124UR-1 MLL4124-1 43 250 250 .01 32.65 40 8.9 0.090 1N4125UR-1 MLL4125-1 47 250 250 .01 35.75 40 8.1 0.090 1N4126UR-1 MLL4126-1 51 250 300 .01 38.76 40 7.5 0.090 1N4127UR-1 MLL4127-1 56 250 300 .01 42.60 40 6.7 0.090 1N4128UR-1 MLL4128-1 60 250 400 .01 45.60 40 6.4 0.090 1N4129UR-1 MLL4129-1 62 250 500 .01 47.10 40 6.1 0.090 1N4130UR-1 MLL4130-1 68 250 700 .01 51.68 40 5.6 0.095 1N4131UR-1 MLL4131-1 75 250 700 .01 57.00 40 5.1 0.095 1N4132UR-1 MLL4132-1 82 250 800 .01 62.32 40 4.6 0.095 1N4133UR-1 MLL4133-1 87 250 1000 .01 66.12 40 4.4 0.095 1N4134UR-1 MLL4134-1 91 250 1200 .01 69.16 40 4.2 0.095 1N4135UR-1 MLL4135-1 100 250 1500 .01 76.00 40 3.8 0.095 NOTE 1: These may be ordered as either 1N4614UR-1 thru 1N4627UR-1 and 1N4099UR-1 thru 1N4135UR-1 or MLL4614-1 thru MLL4627-1 and MLL4099-1 thru MLL4135-1. For military types, add the JAN, JANTX, JANTXV prefix for required screening to the industry part number. NOTE 2: The JEDEC type numbers shown above have a standard tolerance of +/-5% on the nominal Zener voltage. Tighter tolerances are also available with C or D suffix for 2% or 1% tolerance respectively, e.g. 1N4105CUR-1 for 2%. VZ is measured with the diode in o thermal equilibrium (still air) at 25 C for end-cap terminations. NOTE 3: Zener impedance is derived by superimposing on IZT a 60 Hz rms ac current at 10% of IZT. See MicroNote 202 for ZZT variation with IZ. (NOTE 1) WWW . Microsemi .C OM *ELECTRICAL CHARACTERISTICS @ 25oC IN4099UR-1 thru 1N4135UR-1 (or MLL4099-1 thru MLL4135-1) and 1N4614UR-1 thru 1N4627UR-1 (or MLL4614-1 thru MLL4627-1) SCOTTSDALE DIVISION Pd Rated Power Dissipation (mW) WWW . Microsemi .C OM GRAPHS AND CIRCUIT TEC TA o TEC, End Cap Temperature ( C) or TA Ambient temperature on FR4 PC board FIGURE 2 Power Derating Curve Capacitance vs. VZ Curve Noise density, (ND) is specified in microvolt-rms per squreroot-hertz. Actual measurement is performed using a 1 KHz to 3 KHz frequency bandpass filter at a constant Zener test o current (IZT) AT 25 C ambient temperature. ND is calculated from the formula. Typical Capacitance in Picofarads (pf) FIGURE 1 Noise Density Measurement Circuit FIGURE 3 Capacitance vs. Zener Voltage (Typical) Zener Voltage VZ DIM A B C INCHES MIN MAX 0.063 0.067 0.130 0.146 0.016 0.022 MILLIMETERS MIN MAX 1.60 1.70 3.30 3.70 0.41 0.55 PAD LAYOUT A B C Copyright © 2006 3-30-06 REV D 1N4099UR-1–1N4135UR-1 1N4614UR-1–1N4627UR-1,e3 PACKAGE DIMENSIONS INCHES .200 .055 .080 mm 5.08 1.40 2.03 Microsemi Scottsdale Division 8700 E. Thomas Rd. PO Box 1390, Scottsdale, AZ 85252 USA, (480) 941-6300, Fax: (480) 947-1503 Page 3
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