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      參數(shù)資料
      型號: FCBS0650
      廠商: FAIRCHILD SEMICONDUCTOR CORP
      元件分類: 運動控制電子
      英文描述: Smart Power Module (SPM)
      中文描述: AC MOTOR CONTROLLER, 8 A, DMA27
      文件頁數(shù): 12/16頁
      文件大?。?/td> 257K
      代理商: FCBS0650
      12
      www.fairchildsemi.com
      FCBS0650 Rev. A
      F
      Note:
      1. To avoid malfunction, the wiring of each input should be as short as possible. (less than 2-3cm)
      2. By virtue of integrating an application specific type HVIC inside the SPM, direct coupling to CPU terminals without any opto-coupler or transformer isolation is possible.
      3. V
      FO
      output is open collector type. This signal line should be pulled up to the positive side of the 5V power supply with approximately 4.7k
      resistance. Please refer to Figure 9.
      4. C
      SP15
      of around 7 times larger than bootstrap capacitor C
      BS
      is recommended.
      5. V
      output pulse width should be determined by connecting an external capacitor(C
      FOD
      ) between C
      FOD
      (pin7) and COM(pin2). (Example : if C
      FOD
      = 33 nF, then t
      FO
      = 1.8ms
      (typ.)) Please refer to the note 5 for calculation method.
      6. Input signal is High-Active type. There is a 3.3k
      resistor inside the IC to pull down each input signal line to GND. When employing RC coupling circuits, set up such RC couple
      that input signal agree with turn-off/turn-on threshold voltage.
      7. To prevent errors of the protection function, the wiring around R
      F
      and C
      SC
      should be as short as possible.
      8. In the short-circuit protection circuit, please select the R
      F
      C
      SC
      time constant in the range 1.5~2
      μ
      s.
      9. Each capacitor should be mounted as close to the pins of the SPM as possible.
      10. To prevent surge destruction, the wiring between the smoothing capacitor and the P&COM pins should be as short as possible. The use of a high frequency non-inductive
      capacitor of around 0.1~0.22
      μ
      F between the P&COM pins is recommended.
      11. Relays are used at almost every systems of electrical equipments of home appliances. In these cases, there should be sufficient distance between the CPU and the relays.
      12. C
      SPC15
      should be over 1
      μ
      F and mounted as close to the pins of the SPM as possible.
      Fig. 11. Typical Application Circuit
      Fault
      15V line
      C
      BS
      C
      BSC
      R
      BS
      D
      BS
      R
      BS
      D
      BS
      C
      BS
      C
      BSC
      R
      BS
      D
      BS
      C
      FOD
      5V line
      R
      PF
      C
      BPF
      R
      S
      Vdc
      C
      DCS
      Gating UH
      Gating VH
      Gating WH
      Gating WL
      Gating VL
      Gating UL
      C
      PF
      R
      FU
      R
      FV
      R
      FW
      R
      SU
      R
      SV
      R
      SW
      C
      FU
      C
      FV
      C
      FW
      W-Phase Current
      V-Phase Current
      U-Phase Current
      R
      F
      COM
      VCC
      IN(UL)
      IN(VL)
      IN(WL)
      VFO
      C(FOD)
      C(SC)
      OUT(UL)
      OUT(VL)
      OUT(WL)
      N
      U
      (21)
      N
      V
      (22)
      N
      W
      (23)
      U (24)
      V (25)
      W (26)
      P (27)
      (20) V
      S(W)
      (19) V
      B(W)
      (18) V
      CC(WH)
      (16) V
      S(V)
      (15) V
      B(V)
      (14) V
      CC(VH)
      (8) C
      SC
      (7) C
      FOD
      (6) V
      FO
      (5) IN
      (WL)
      (4) IN
      (VL)
      (3) IN
      (UL)
      (2) COM
      (1) V
      CC(L)
      VCC
      COM
      IN
      VB
      OUT
      VS
      VB
      VCC
      VS
      OUT
      IN
      COM
      VCC
      COM
      IN
      VB
      OUT
      VS
      (17) IN
      (WH)
      (13) IN
      (VH)
      (12) V
      S(U)
      (11) V
      B(U)
      (10) V
      CC(UH)
      (9) IN
      (UH)
      C
      SC
      R
      E(UH)
      V
      SL
      R
      E(VH)
      R
      E(WH)
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