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      參數(shù)資料
      型號(hào): LTC3553EUD#TRPBF
      廠商: LINEAR TECHNOLOGY CORP
      元件分類: 電源管理
      英文描述: 1-CHANNEL POWER SUPPLY SUPPORT CKT, PQCC20
      封裝: 3 X 3 MM, 0.75 MM HEIGHT, LEAD FREE, PLASTIC, QFN-20
      文件頁(yè)數(shù): 11/36頁(yè)
      文件大?。?/td> 518K
      代理商: LTC3553EUD#TRPBF
      LTC3553
      19
      3553fa
      By using a bias resistor, RNOM, different in value from
      R25, the hot and cold trip points can be moved in either
      direction. The temperature span will change somewhat due
      to the nonlinear behavior of the thermistor. The following
      equations can be used to easily calculate a new value for
      the bias resistor:
      R
      NOM =
      r
      HOT
      0.538
      R25
      R
      NOM =
      r
      COLD
      3.17
      R25
      where rHOT and rCOLD are the resistance ratios at the de-
      sired hot and cold trip points. Note that these equations
      are linked. Therefore, only one of the two trip points can
      be independently set, the other is determined by the de-
      fault ratios designed in the IC.
      Consider an example where a 60°C hot trip point is desired.
      From the Vishay curve 1 R-T characteristics, rHOT is 0.2488
      at 60°C. Using the above equation, RNOM should be set
      to 46.4k. With this value of RNOM, the cold trip point is
      about 16°C. Notice that the span is now 44°C rather than
      the previous 40°C. This is due to the decrease in tem-
      perature gain of the thermistor as absolute temperature
      increases.
      The upper and lower temperature trip points can be in-
      dependently programmed by using an additional bias
      resistor as shown in Figure 2. The following formulas can
      be used to compute the values of RNOM and R1:
      R
      NOM =
      r
      COLD –r HOT
      2.714
      R25
      R1 = 0.536 RNOM –rHOT R25
      For example, to set the trip points to 0°C and 45°C with
      a Vishay curve 1 thermistor choose:
      R
      NOM =
      3.266 – 0.4368
      2.714
      100k =104.2k
      the nearest 1% value is 105k:
      R1 = 0.536 105k – 0.4368 100k = 12.6k
      The nearest 1% value is 12.7k. The nal solution is shown
      in Figure 2 and results in an upper trip point of 45°C and
      a lower trip point of 0°C.
      OPERATION
      Figure 2. NTC Thermistor Circuit With Additional Bias Resistor
      +
      +
      RNOM
      105k
      RNTC
      100k
      R1
      12.7k
      NTC
      VBUS
      NTC_ENABLE
      3553 F02
      TOO_COLD
      TOO_HOT
      0.76 VBUS
      (NTC RISING)
      0.35 VBUS
      (NTC FALLING)
      0.017 VBUS
      (NTC FALLING)
      +
      20
      15
      The trip points for the LTC3553’s temperature qualica-
      tion are internally programmed at 0.35 VBUS for the hot
      threshold and 0.76 VBUS for the cold threshold.
      Therefore, the hot trip point is set when:
      R
      NTC|HOT
      R
      NOM + RNTC|HOT
      V
      BUS = 0.35 VBUS
      and the cold trip point is set when:
      R
      NTC|COLD
      R
      NOM + RNTC|COLD
      V
      BUS = 0.76 V BUS
      Solving these equations for RNTC|COLD and RNTC|HOT
      results in the following:
      RNTC|HOT = 0.538 RNOM
      and
      RNTC|COLD = 3.17 RNOM
      By setting RNOM equal to R25, the above equations result
      in rHOT = 0.538 and rCOLD = 3.17. Referencing these ratios
      to the Vishay Resistance-Temperature Curve 1 chart gives
      a hot trip point of about 40°C and a cold trip point of about
      0°C. The difference between the hot and cold trip points
      is approximately 40°C.
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