LRC-LRF2512-01-R020-F

LRC-LRF2512-01-R020-F

  • 厂商:

    IRCTT(TT电子)

  • 封装:

  • 描述:

    LRC-LRF2512-01-R020-F - Low Value Current Sense Flat Chip Resistor - IRC - a TT electronics Company.

  • 数据手册
  • 价格&库存
LRC-LRF2512-01-R020-F 数据手册
Low Value Current Sense Flat Chip Resistor LR Series • Resistance range from 0.002Ω up to 1Ω • Standard Sn/Pb and Pb lead-free terminations available • High power dissipation at 70°C • Tolerances to ±1% Electrical Data Size Tolerance F, G, J, K 1206 2010 2512 1 2 Resistance Range1 Tolerance J, K Tolerance K 0.003 to 1W 0.010 to 1W 0.003 to 1W 0.002 to 1W 0.002 to 1W TCR2 (ppm/°C) Power Rating at 70°C (Watts) 0.5 Dielectric Withstanding Voltage (V) Maximum Current (Amps) Operating Temperature Pad and Trace Area for Max Power Rating @ 70°C 16 200 22 32 -55°C to +150°C 30mm2 100mm2 300mm2 ±100 1.0 2.0 Non-standard resistance values available Contact factory for TCR information on values under 0.05ohms Outline Dimensions D L W Solder Plating Ni Barrier Layer H Protective Overcoat Cu Wraparound Termination E Cu Termination Alumina Substrate 1206 in. L W H D E 0.126 ± 0.012 0.064 ± 0.008 0.024 ± 0.004 0.019 ± 0.010 0.019 ± 0.010 mm 3.20 ± 0.305 1.63 ± 0.203 0.61 ± 0.102 0.48 ± 0.25 0.48 ± 0.25 in. 0.206 ± 0.015 0.104 ± 0.010 0.029 ± 0.004 0.019 ± 0.010 0.019 ± 0.010 2010 mm 5.23 ± 0.38 2.64 ± 0.25 0.74 ± 0.1 0.48 ± 0.25 0.48 ± 0.25 in. 0.256 ± 0.015 0.128 ± .010 0.029 ± 0.004 0.019 ± 0.010 0.019 ± 0.010 2512 mm. 6.50 ± 0.38 3.25 ± 0.25 0.74 ± 0.1 0.48 ± 0.25 0.48 ± 0.25 General Note IRC reserves the right to make changes in product specification without notice or liability. All information is subject to IRC’s own data and is considered accurate at time of going to print. Advanced Film Division • 4222 South Staples Street • Corpus Christi Texas 78411 USA A subsidiary of TT electronics plc LR Series Issue May 2009 Telephone: 361 992 7900 • Facsimile: 361 992 3377 • Email: afdsales@irctt.com • Website: www.irctt.com Low Value Current Sense Flat Chip Resistor Environmental Performance Environmental Test Thermal Shock Short Time Overload High Temperature Exposure Dielectric Withstanding Voltage Moisture Resistance Load Life Low Temperature Operation Resistance to Solder Heat Insulation Resistance Solderability Test Method MIL-STD-202 Method 107G Condition B, -55°C +150°C, 100 cycles 6.25X Rated Power for 5 seconds 100 hours @150°C MIL-STD-202, Method 301 2.5X Rated Voltage, 1 minute MIL-STD-202 Method 106 1000 hours, Rated Power, 70°C 1.5 hours on, 30 minutes off 1 hour -65°C followed by rated power for 45 min MIL-STD-202 Method 210 260°C, 10 seconds MIL-STD-202 Method 302 100VDC, 1 minute MIL-STD-202 Method 208 245°C, 5 seconds Typical Performance ±0.5% + 1.0mΩ ±0.5% + 0.5mΩ ±0.5% + 0.5mΩ ±0.25% + 0.5mΩ ±0.5% + 0.5mΩ ±1.0% + 0.5mΩ ±0.5% + 0.5mΩ ±0.5% + 1.0mΩ >1000 megohms 95% min Coverage Power Derating and Pulse/Surge Capability Power Derating Curve 100 Pulse and Surge Capability Surge Power Watts 70 50 30 20 % Of Rated Power 50 LRC 25 12 2 wa tts LRC 20 10 1 wa tt LRC 12 06 0.5 watts Average power dissipationnot to exceed normal 70°C rating 10 10 7 5 3 25° 70° 150° Temperature in °C 300 µSec 1 mSec 3 mSec 10 mSec 30 mSec 100 mSec 300 mSec 1 Sec Surge or Repetitive Pulse Duration Ordering Procedure Prefix Model LR for values > 0.025Ω LRF for values ≤ 0.025Ω Recommended Solder Pad Layout A LRC - LRF 1206LF - 01 - R020 - F B C Size 1206; 1206LF; 2010; 2010LF; 2512; 2512LF (LF=Lead Free Terminations) TCR Code 01 = ±100ppm/°C DIM. A in. mm in. mm in. mm LR1206 0.080 (2.0) 0.160 (4.0) 0.050 (1.25) LR2010 0.120 (3.05) 0.255 (6.5) 0.060 (1.5) LR2512 0.145 (3.7) 0.305 (7.75) 0.060 (1.5) Resistance Code 4-Digit resistance code. Ex: R050 = 0.050Ω; 1R00 = 1Ω Tolerance Code F = ±1%, G = ±2%, J = ±5% B C For additional information or to discuss your specific requirements, please contact our Applications Team using the contact details below. Advanced Film Division • 4222 South Staples Street • Corpus Christi Texas 78411 USA Telephone: 361 992 7900 • Facsimile: 361 992 3377 • Email: afdsales@irctt.com • Website: www.irctt.com LR Series Issue May 2009
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