# INTELLIGENT POWER MODULE, 600V, 20A

![Product image](https://novapart.co/image/farnell:3617591/)

**URL**: https://novapart.co/products/FSBB20CH60D/intelligent-power-module-600v-20a
**SKU**: FSBB20CH60D
**Manufacturer**: ONSEMI
**Category**: Semiconductors - Discretes || Intelligent Power Modules
**Price**: €20.2500
**Stock**: 10+

## Specifications

| Parameter | Value |
|---|---|
| Svhc | No SVHC (15-Jan-2018) |

## Datasheet

📄 [Download PDF](https://novapart.co/datasheet/farnell:3617591/)

yf FAIRCHILD. July 2025 yf **FSBB20CH60D Motion SPM[®] 3 Series Features** FSBB20CH60D is an advanced Motion SPM[®] 3 module providing a fully-featured, high-performance inverter • UL Certified No. E209204 (UL1557) output stage for AC Induction, BLDC, and PMSM • 600 V - 20 A 3-Phase IGBT Inverter with Integral Gate motors. These modules integrate optimized gate drive of Drivers and Protection the built-in IGBTs to minimize EMI and losses, while also • Low-Loss, Short-Circuit Rated IGBTs providing multiple on-module protection features including under-voltage lockouts, over-current shutdown, • Very Low Thermal Resistance Using Al2O3 DBC thermal monitoring of drive IC, and fault reporting. The Substrate built-in, high-speed HVIC requires only a single supply • Built-In Bootstrap Diodes and Dedicated Vs Pins voltage and translates the incoming logic-level gate inputs to the high-voltage, high-current drive signals Simplify PCB Layout required to properly drive the module's internal IGBTs. • Separate Open-Emitter Pins from Low-Side IGBTs for Separate negative IGBT terminals are available for each Three-Phase Current Sensing phase to support the widest variety of control algorithms. • Single-Grounded Power Supply • LVIC Temperature-Sensing Built-In for Temperature Monitoring • Isolation Rating: 2500 Vrms / 1 min. **Applications** • Motion Control - Home Appliance / Industrial Motor et **Related Resources** • _AN-9044 - Motion SPM[®] 3 Series Users Guide_ \ Fs **Figure 1. Package Overview General Description Package Marking and Ordering Information Device Device Marking Package Packing Type Quantity** FSBB20CH60D FSBB20CH60D SPMCC-027 Rail 10 

www.fairchildsemi.com 

**1** 

©2015 Fairchild Semiconductor Corporation FSBB20CH60D Rev. 2 

## **Integrated Power Functions** 

- 600 V - 20 A IGBT inverter for three-phase DC / AC power conversion (Please refer to Figure 3) 

## **Integrated Drive, Protection and System Control Functions** 

- For inverter high-side IGBTs: gate drive circuit, high-voltage isolated high-speed level shifting control circuit Under-Voltage Lock-Out Protection (UVLO) 

   - Note: Available bootstrap circuit example is given in Figures 5 and 14. 

- For inverter low-side IGBTs: gate drive circuit, Short-Circuit Protection (SCP) control supply circuit Under-Voltage Lock-Out Protection (UVLO) 

- Fault signaling: corresponding to UVLO (low-side supply) and SC faults 

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• Input interface: active-HIGH interface, works with 3.3 / 5 V logic, Schmitt-trigger input<br>Pin Configuration<br>amp rL ge >, (20) Vey<br>tio OE (19)Ve<br>a (18) Vea)<br>(26)W =a (17) Nowy<br>L| 3 (16) Ven<br>F= (15) Vary<br>a25)V t_| =— ee(vii<br>Case = (12) Ve)<br>Temperature (T> LH — FF (11) Ve)<br>Detecting Point (24)U £ | FAP —= (10)V(9) Nery<br>Ta (8 Cec<br>(23)Nw C_] N P—> (6)Vi5<br>(22)Ny C_] Oo— =P= (SNe(4) INwy<br>(21)Nu CJ oA o © bj\coM<br>— LF {Veen<br>13.74<br>Figure 2. Top View<br>DISCONTINUED<br>onsemi<br>PLEASE CONTACT YOUR<br>REPRESENTATIVE FOR INFORMATION<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>**----- End of picture text -----**<br>


**2** 

©2015 Fairchild Semiconductor Corporation FSBB20CH60D Rev. 2 

www.fairchildsemi.com 

|**Pin Number**|**Pin Name**|**Pin Description**|
|---|---|---|
|1|VCC(L)|Low-Side Common Bias Voltage for IC and IGBTs Driving|
|2|COM|Common Supply Ground|
|3|IN(UL)|Signal Input for Low-Side U-Phase|
|4|IN(VL)|Signal Input for Low-Side V-Phase|
|5|IN(WL)|Signal Input for Low-Side W-Phase|
|6|VFO|Fault Output|
|7|VTS|Output for LVIC Temperature Sensing Voltage Output|
|8<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN|CSC<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN|Capacitor (Low-Pass Filter) for Short-Circuit Current Detection Input<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN|
|9<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN|IN(UH)<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN|Signal Input for High-Side U-Phase<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN|
|10<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN|VCC(H)<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN|High-Side Common Bias Voltage for IC and IGBTs Driving<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN|
|11<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN|VB(U)<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN|High-Side Bias Voltage for U-Phase IGBT Driving<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN|
|12<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN|VS(U)<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN|High-Side Bias Voltage Ground for U-Phase IGBT Driving<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN|
|13<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN|IN(VH)<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN|Signal Input for High-Side V-Phase<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN|
|14<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN|VCC(H)<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN|High-Side Common Bias Voltage for IC and IGBTs Driving<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN|
|15<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN|VB(V)<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>|High-Side Bias Voltage for V-Phase IGBT Driving<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>**onsemi**|
|16<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN|VS(V)<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br><br>REPRESENTATIVE FOR INFORMATION|High-Side Bias Voltage Ground for V Phase IGBT Driving<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>**onsemi**<br>REPRESENTATIVE FOR INFORMATION|
|17<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN|IN(WH)<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br><br>REPRESENTATIVE FOR INFORMATION|Signal Input for High-Side W-Phase<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>**onsemi**<br>REPRESENTATIVE FOR INFORMATION|
|18<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN|VCC(H)<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br><br>REPRESENTATIVE FOR INFORMATION|High-Side Common Bias Voltage for IC and IGBTs Driving<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>**onsemi**<br>REPRESENTATIVE FOR INFORMATION|
|19<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN|VB(W)<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>PLEASE CONTACT YOUR<br>REPRESENTATIVE FOR INFORMATION|High-Side Bias Voltage for W-Phase IGBT Driving<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>PLEASE CONTACT YOUR**onsemi**<br>REPRESENTATIVE FOR INFORMATION|
|20<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN|VS(W)<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>PLEASE CONTACT YOUR<br>REPRESENTATIVE FOR INFORMATION|High-Side Bias Voltage Ground for W-Phase IGBT Driving<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>PLEASE CONTACT YOUR<br>REPRESENTATIVE FOR INFORMATION|
|21<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN|NU<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>PLEASE CONTACT YOUR<br>REPRESENTATIVE FOR INFORMATION|Negative DC-Link Input for U-Phase<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>PLEASE CONTACT YOUR<br>REPRESENTATIVE FOR INFORMATION|
|22<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN|NV<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>PLEASE CONTACT YOUR<br>REPRESENTATIVE FOR INFORMATION|Negative DC-Link Input for V-Phase<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>PLEASE CONTACT YOUR<br>REPRESENTATIVE FOR INFORMATION|
|23<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN|NW<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>PLEASE CONTACT YOUR<br>REPRESENTATIVE FOR INFORMATION|Negative DC-Link Input for W-Phase<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>PLEASE CONTACT YOUR<br>REPRESENTATIVE FOR INFORMATION|
|24<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN|U<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>PLEASE CONTACT YOUR<br>REPRESENTATIVE FOR INFORMATION|Output for U-Phase<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>PLEASE CONTACT YOUR<br>REPRESENTATIVE FOR INFORMATION|
|25<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN|V<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>PLEASE CONTACT YOUR<br>REPRESENTATIVE FOR INFORMATION|Output for V-Phase<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>PLEASE CONTACT YOUR<br>REPRESENTATIVE FOR INFORMATION|
|26<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN|W<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>PLEASE CONTACT YOUR<br>REPRESENTATIVE FOR INFORMATION|Output for W-Phase<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>PLEASE CONTACT YOUR<br>REPRESENTATIVE FOR INFORMATION|
|27<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN|P<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>PLEASE CONTACT YOUR<br>REPRESENTATIVE FOR INFORMATION|Positive DC-Link Input<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>PLEASE CONTACT YOUR<br>REPRESENTATIVE FOR INFORMATION|



**3** 

©2015 Fairchild Semiconductor Corporation FSBB20CH60D Rev. 2 

www.fairchildsemi.com 

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Internal Equivalent Circuit and Input/Output Pins<br>P  (27)<br>(19) VB ( W ) VB<br>(18) VCC (H) VCC OUT<br>COM<br>(17) IN(WH ) IN VS W (26)<br>=e (20) VS ( W )<br>(15) VB ( V)<br>VB<br>(14) VCC (H) VCC OUT<br>COM<br>(13) IN( VH) IN VS V  (25)<br>(16) V S (V )<br>(11) VB ( U)<br>VB<br>(10) VCC (H)<br>VCC OUT<br>COM<br>(9) IN( UH) IN VS U (24)<br>(12) VS ( U)<br>(8) CS C CSC OUT<br>(7) VT S<br>VTS NW (23)<br>(6) VF O<br>VFO<br>(5) IN(WL ) IN OUT<br>(4) IN(VL)<br>IN NV (22)<br>(3) IN(UL )<br>IN<br>(2) COM<br>COM<br>(1) VCC( L) OUT<br>VCC<br>NU (21)<br>Figure 3. Internal Block Diagram<br>Notes:<br>1. Inverter low-side is composed of three IGBTs, freewheeling diodes for each IGBT, and one control IC. It has gate drive and protection functions.<br>2. Inverter power side is composed of four inverter DC-link input terminals and three inverter output terminals.<br>3. Inverter high-side is composed of three IGBTs, freewheeling diodes, and three drive ICs for each IGBT.<br>©2015 Fairchild Semiconductor Corporation  4 www.fairchildsemi.com<br>FSBB20CH60D Rev. 2<br>DISCONTINUED<br>onsemi<br>PLEASE CONTACT YOUR<br>REPRESENTATIVE FOR INFORMATION<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>FSBB20CH60D  Motion SPM® 3 Series<br>**----- End of picture text -----**<br>


|**FSBB20CH60D  Motion SPM® 3 Series**<br>**Absolute Maximum Ratings**(TJ= 25°C,  Unless Otherwise Specified)<br>**Inverter Part**<br>**Control Part**<br>**Bootstrap Diode Part**<br>**Total System**<br>**Thermal Resistance**<br>**Note:**<br>**Symbol**<br>**Parameter**<br>**Conditions**<br>**Rating**<br>**Unit**<br>VPN<br>Supply Voltage<br>Applied between P - NU, NV, NW<br>450<br>V<br>VPN(Surge)<br>Supply Voltage (Surge)<br>Applied between P - NU, NV, NW<br>500<br>V<br>VCES<br>Collector - Emitter Voltage<br>600<br>V<br>± IC<br>Each IGBT Collector Current<br>TC= 25°C, TJ 150°C (Note 4)<br>20<br>A<br>± ICP<br>Each IGBT Collector Current (Peak)<br>TC= 25°C, TJ 150°C, Under 1 ms Pulse<br>Width (Note 4)<br>40<br>A<br>PC<br>Collector Dissipation<br>TC= 25°C per One Chip (Note 4)<br>65<br>W<br>TJ<br>Operating Junction Temperature<br>-40 ~ 150<br>°C<br>**Symbol**<br>**Parameter**<br>**Conditions**<br>**Rating**<br>**Unit**<br>VCC<br>Control Supply Voltage<br>Applied between VCC(H), VCC(L) - COM<br>20<br>V<br>VBS<br>High-Side Control Bias Voltage<br>Applied between VB(U)- VS(U), VB(V)- VS(V),<br>VB(W)- VS(W)<br>20<br>V<br>VIN<br>Input Signal Voltage<br>Applied between IN(UH), IN(VH), IN(WH),<br>IN(UL), IN(VL), IN(WL)- COM<br>-0.3 ~ VCC+0.3<br>V<br>VFO<br>Fault Output Supply Voltage<br>Applied between VFO- COM<br>-0.3 ~ VCC+0.3<br>V<br>IFO<br>Fault Output Current<br>Sink Current at VFOpin<br>2<br>mA<br>VSC<br>Current Sensing Input Voltage<br>Applied between CSC- COM<br>-0.3 ~ VCC+0.3<br>V<br>**Symbol**<br>**Parameter**<br>**Conditions**<br>**Rating**<br>**Unit**<br>VRRM<br>Maximum Repetitive Reverse Voltage<br>600<br>V<br>IF<br>Forward Current<br>TC= 25°C, TJ 150°C (Note 4)<br>0.5<br>A<br>IFP<br>Forward Current (Peak)<br>TC= 25°C, TJ 150°C, Under 1 ms Pulse<br>Width (Note 4)<br>2.0<br>A<br>TJ<br>Operating Junction Temperature<br>-40 ~ 150<br>°C<br>**Symbol**<br>**Parameter**<br>**Conditions**<br>**Rating**<br>**Unit**<br>VPN(PROT)<br>Self Protection Supply Voltage Limit<br>(Short Circuit Protection Capability)<br>VCC= VBS= 13.5 ~ 16.5 V, TJ= 150°C,<br>Non-repetitive, < 2s<br>400<br>V<br>TC<br>Module Case Operation Temperature<br>_See Figure 2_<br>-40 ~ 125<br>°C<br>TSTG<br>Storage Temperature<br>-40 ~ 125<br>°C<br>VISO<br>Isolation Voltage<br>60 Hz, Sinusoidal, AC 1 minute, Connection<br>Pins to Heat Sink Plate<br>2500<br>Vrms<br>**Symbol**<br>**Parameter**<br>**Conditions**<br>**Min.**<br>**Typ.**<br>**Max.**<br>**Unit**<br>Rth(j-c)Q<br>Junction to Case Thermal Resistance<br>(Note 5)<br>Inverter IGBT part (per 1 / 6 module)<br>-<br>-<br>1.90<br>°C / W<br>Rth(j-c)F<br>Inverter FWD part (per 1 / 6 module)<br>-<br>-<br>2.85<br>°C / W<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>PLEASE CONTACT YOUR**onsemi**<br>REPRESENTATIVE FOR INFORMATION<br>~~==~~<br>~~————=~~<br>~~—_~~|**FSBB20CH60D  Motion SPM® 3 Series**<br>**Absolute Maximum Ratings**(TJ= 25°C,  Unless Otherwise Specified)<br>**Inverter Part**<br>**Control Part**<br>**Bootstrap Diode Part**<br>**Total System**<br>**Thermal Resistance**<br>**Note:**<br>**Symbol**<br>**Parameter**<br>**Conditions**<br>**Rating**<br>**Unit**<br>VPN<br>Supply Voltage<br>Applied between P - NU, NV, NW<br>450<br>V<br>VPN(Surge)<br>Supply Voltage (Surge)<br>Applied between P - NU, NV, NW<br>500<br>V<br>VCES<br>Collector - Emitter Voltage<br>600<br>V<br>± IC<br>Each IGBT Collector Current<br>TC= 25°C, TJ 150°C (Note 4)<br>20<br>A<br>± ICP<br>Each IGBT Collector Current (Peak)<br>TC= 25°C, TJ 150°C, Under 1 ms Pulse<br>Width (Note 4)<br>40<br>A<br>PC<br>Collector Dissipation<br>TC= 25°C per One Chip (Note 4)<br>65<br>W<br>TJ<br>Operating Junction Temperature<br>-40 ~ 150<br>°C<br>**Symbol**<br>**Parameter**<br>**Conditions**<br>**Rating**<br>**Unit**<br>VCC<br>Control Supply Voltage<br>Applied between VCC(H), VCC(L) - COM<br>20<br>V<br>VBS<br>High-Side Control Bias Voltage<br>Applied between VB(U)- VS(U), VB(V)- VS(V),<br>VB(W)- VS(W)<br>20<br>V<br>VIN<br>Input Signal Voltage<br>Applied between IN(UH), IN(VH), IN(WH),<br>IN(UL), IN(VL), IN(WL)- COM<br>-0.3 ~ VCC+0.3<br>V<br>VFO<br>Fault Output Supply Voltage<br>Applied between VFO- COM<br>-0.3 ~ VCC+0.3<br>V<br>IFO<br>Fault Output Current<br>Sink Current at VFOpin<br>2<br>mA<br>VSC<br>Current Sensing Input Voltage<br>Applied between CSC- COM<br>-0.3 ~ VCC+0.3<br>V<br>**Symbol**<br>**Parameter**<br>**Conditions**<br>**Rating**<br>**Unit**<br>VRRM<br>Maximum Repetitive Reverse Voltage<br>600<br>V<br>IF<br>Forward Current<br>TC= 25°C, TJ 150°C (Note 4)<br>0.5<br>A<br>IFP<br>Forward Current (Peak)<br>TC= 25°C, TJ 150°C, Under 1 ms Pulse<br>Width (Note 4)<br>2.0<br>A<br>TJ<br>Operating Junction Temperature<br>-40 ~ 150<br>°C<br>**Symbol**<br>**Parameter**<br>**Conditions**<br>**Rating**<br>**Unit**<br>VPN(PROT)<br>Self Protection Supply Voltage Limit<br>(Short Circuit Protection Capability)<br>VCC= VBS= 13.5 ~ 16.5 V, TJ= 150°C,<br>Non-repetitive, < 2s<br>400<br>V<br>TC<br>Module Case Operation Temperature<br>_See Figure 2_<br>-40 ~ 125<br>°C<br>TSTG<br>Storage Temperature<br>-40 ~ 125<br>°C<br>VISO<br>Isolation Voltage<br>60 Hz, Sinusoidal, AC 1 minute, Connection<br>Pins to Heat Sink Plate<br>2500<br>Vrms<br>**Symbol**<br>**Parameter**<br>**Conditions**<br>**Min.**<br>**Typ.**<br>**Max.**<br>**Unit**<br>Rth(j-c)Q<br>Junction to Case Thermal Resistance<br>(Note 5)<br>Inverter IGBT part (per 1 / 6 module)<br>-<br>-<br>1.90<br>°C / W<br>Rth(j-c)F<br>Inverter FWD part (per 1 / 6 module)<br>-<br>-<br>2.85<br>°C / W<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>PLEASE CONTACT YOUR**onsemi**<br>REPRESENTATIVE FOR INFORMATION<br>~~==~~<br>~~————=~~<br>~~—_~~|
|---|---|
||4. These values had been made an acquisition by the calculation considered to design factor.|



5. For the measurement point of case temperature (TC), _please refer to Figure 2._ 

**5** 

©2015 Fairchild Semiconductor Corporation FSBB20CH60D Rev. 2 

www.fairchildsemi.com 

**Electrical Characteristics** (TJ = 25°C, Unless Otherwise Specified) 

## **Inverter Part** 

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Symbol Parameter Conditions Min. Typ. Max. Unit<br>VCE(SAT) Collector - Emitter Saturation VCC = VBS = 15 V IC = 20 A, TJ = 25°C - - 2.0 V<br>Voltage VIN = 5 V<br>VF FWDi Forward Voltage VIN = 0 V IF = 20 A, TJ = 25°C - - 2.2 V<br>HS tON Switching Times VPN = 300 V, VCC = 15 V, IC = 20 A - 1.0 - s<br>tC(ON) VTJIN = 25°C = 0 V  5 V, Inductive Load - 0.4 - s<br>tOFF See Figure 5 - 0.4 - s<br>tC(OFF) (Note 6)  - 0.1 - s<br>trr - 0.1 - s<br>LS tON VPN = 300 V, VCC = 15 V, IC = 20 A - 0.8 - s<br>tC(ON) VTJIN = 25°C = 0 V  5 V, Inductive Load - 0.3 - s<br>tOFF See Figure 5 - 0.8 - s<br>tC(OFF) (Note 6) - 0.1 - s<br>trr - 0.1 - s<br>ICES Collector - Emitter Leakage VCE = VCES - - 5 mA<br>Current<br>Note:<br>6.  tON and tOFF include the propagation delay time of the internal drive IC. tC(ON) and tC(OFF) are the switching time of IGBT itself under the given gate driving condition internally.<br>For the detailed information,  please see Figure 4 .<br>100% IC 100% IC<br>A<br>+r trr<br>V CE IC IC V CE<br>V IN V IN<br>tON = tOFF <___________»><br>tC(ON) tC(OFF)<br>10% IC y Y y<br>V IN(ON) 90% IC 10% V CE V IN(OFF) 10% V CE 10% IC<br>(a) turn-on (b) turn-off<br>Figure 4. Switching Time Definition<br>DISCONTINUED<br>onsemi<br>PLEASE CONTACT YOUR<br>REPRESENTATIVE FOR INFORMATION<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>**----- End of picture text -----**<br>


**6** 

©2015 Fairchild Semiconductor Corporation FSBB20CH60D Rev. 2 

www.fairchildsemi.com 

**==> picture [558 x 709] intentionally omitted <==**

**----- Start of picture text -----**<br>
One-Leg Diagram of SPM 3 IC ><br>> e P<br>CBS | e VCC(H) VB ° e e e e<br>COM(H) OUT( H) LS Switching<br>| /~ a<br>IN(H) VS e<br>HS Switching 5 I e s VPN<br>e° U,V,W - V<br>LS Switching | IN(L) Inductor 300V<br>ee | VCC(L) e<br>I<br>5V V IN I VFOTSU OUT(L) A HS Switching<br>VCC 4.7kΩ I/<br>0V CSC e<br>V ° \ e COM(L) NU,V,W<br>+15V<br>V<br>| e e e )<br>+5V<br>e ° ° e<br>Figure 5. Example Circuit for Switching Test<br>1400 Inductive— :  Load,——FnV, =300V, CC V_=15V,— T=25C 4400 Inductive— :  Load,——PNV_ =300V, V_oC =15V,— T=150T:<br>_ 1200 == IGBT Turn-OFF , Engh | one : Fob FT thse _ 1200 = IGBT Turn-OFF, Engi i pee : Faaabae Fe ene<br>= 1900 Gender Eg grmndne 7 F Famndnee 2 Fannin? Baba” ga = 1900 Gonmon Fg grade OF Fame2 pamagnen FE” gal<br>I agg | seek Fg weed PE Sagan Fee ni IL ago | Seek Eg sankey Sea tee FO Pde op<br>= 200 foment FF eoneman ee oc! ponte = 200 fod oo co! pone<br>og Lt ee : opie a a :<br>Q 2 4 6 3 10 120 «44 1B 1B 228 a 2 4 6 a 10 12 14 416 18 20 22<br>COLLECTOR CURRENT, ly [AMPERES] COLLECTOR CURRENT, ly [AMPERES]<br>Figure 6. Switching Loss Characteristics<br>35<br>2.0 Gaeeeeeeee eee<br>S<br>eo 1.0 ee e e<br>7 “|<br>0 20 40 60 80 100 120 140 160<br>Tic Pc]<br>Figure 7. Temperature Profile of VTS (Typical)<br>©2015 Fairchild Semiconductor Corporation  7 www.fairchildsemi.com<br>FSBB20CH60D Rev. 2<br>DISCONTINUED<br>onsemi<br>PLEASE CONTACT YOUR<br>REPRESENTATIVE FOR INFORMATION<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>FSBB20CH60D  Motion SPM® 3 Series<br>**----- End of picture text -----**<br>


|**Control Part**||||||||
|---|---|---|---|---|---|---|---|
|**Symbol**<br>~~a~~|**Parameter**<br>~~a~~|**Conditions**<br>~~a~~||**Min.**<br>~~a~~|**Typ.**<br>~~a~~|**Max.**<br>~~a~~|**Unit**<br>~~a~~|
|IQCCH<br>~~a~~|Quiescent VCCSupply<br>Current<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>~~a~~|VCC(H)= 15 V,<br>IN(UH,VH,WH)= 0 V<br>~~a~~|VCC(H)- COM<br>~~a~~|-<br>~~a~~|-<br>~~a~~|0.60<br>~~a~~|mA<br>~~a~~|
|IQCCL<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>~~a~~||VCC(L)= 15 V,<br>IN(UL,VL, WL)= 0 V<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>~~a~~|VCC(L)- COM<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>~~a~~|-<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>~~a~~|-<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>~~a~~|6.0<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>~~a~~|mA<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>~~a~~|
|IPCCH<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>~~See~~|Operating VCCSupply<br>Current<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>~~See~~<br>~~ae~~<br>~~Pf~~|VCC(H)= 15 V, fPWM= 20 kHz,<br>duty = 50%, applied to one<br>PWM signal input for High-<br>Side<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>~~See~~|VCC(H)- COM<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>~~See~~|-<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>~~See~~|-<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>~~See~~|2.0<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>~~See~~|mA<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>~~See~~|
|IPCCL<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>~~See~~<br>~~ae~~<br>~~Pf~~||VCC(L)= 15V, fPWM= 20 kHz,<br>duty = 50%, applied to one<br>PWM signal input for Low-<br>Side<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>~~See~~<br>~~ae~~<br>|VCC(L)- COM<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>~~See~~<br>~~ae~~<br>|-<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>~~See~~<br>~~ae~~<br>|-<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>~~See~~<br>~~ae~~<br>|10.0<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>~~See~~<br>~~ae~~<br>|mA<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>~~See~~<br>~~ae~~<br>|
|IQBS<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>~~Pf~~|Quiescent VBSSupply<br>Current<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br><br>REPRESENTATIVE FOR INFORMATION<br>~~Pf~~|VBS= 15 V,<br>IN(UH, VH, WH)= 0 V<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br><br>REPRESENTATIVE FOR INFORMATION<br>|VB(U)- VS(U),<br>VB(V)- VS(V),<br>VB(W)- VS(W)<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>**onsemi**<br>REPRESENTATIVE FOR INFORMATION<br>|-<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>**onsemi**<br>REPRESENTATIVE FOR INFORMATION<br>|-<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>**onsemi**<br>REPRESENTATIVE FOR INFORMATION<br>|0.50<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>REPRESENTATIVE FOR INFORMATION<br>|mA<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>REPRESENTATIVE FOR INFORMATION<br>|
|IPBS<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>~~Pfa~~|Operating VBSSupply<br>Current<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>PLEASE CONTACT YOUR<br>REPRESENTATIVE FOR INFORMATION<br>~~Pfa~~|VCC= VBS= 15 V,<br>fPWM= 20 kHz, duty = 50%,<br>applied to one PWM signal<br>input for High-Side<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>PLEASE CONTACT YOUR<br>REPRESENTATIVE FOR INFORMATION<br>~~a~~|VB(U)- VS(U),<br>VB(V)- VS(V),<br>VB(W)- VS(W)<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>PLEASE CONTACT YOUR**onsemi**<br>REPRESENTATIVE FOR INFORMATION<br>~~a~~|-<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>**onsemi**<br>REPRESENTATIVE FOR INFORMATION<br>~~a~~|-<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>**onsemi**<br>REPRESENTATIVE FOR INFORMATION<br>~~a~~|2.0<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>REPRESENTATIVE FOR INFORMATION<br>~~a~~|mA<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>REPRESENTATIVE FOR INFORMATION<br>~~a~~|
|VFOH<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>~~ee~~|Fault Output Voltage<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>PLEASE CONTACT YOUR<br>REPRESENTATIVE FOR INFORMATION<br>~~ee~~|VCC= 15 V, VSC= 0 V, VFOCircuit: 4.7 kto 5 V<br>Pull-up<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>PLEASE CONTACT YOUR<br>REPRESENTATIVE FOR INFORMATION<br>~~ee~~||4.5<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br><br>REPRESENTATIVE FOR INFORMATION<br>~~ee~~|-<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br><br>REPRESENTATIVE FOR INFORMATION<br>~~ee~~|-<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>REPRESENTATIVE FOR INFORMATION<br>~~ee~~|V<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>REPRESENTATIVE FOR INFORMATION<br>~~ee~~|
|VFOL<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>~~ee~~||VCC= 15 V, VSC= 1 V, VFOCircuit: 4.7 kto 5 V<br>Pull-up<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>PLEASE CONTACT YOUR<br>REPRESENTATIVE FOR INFORMATION<br>~~ee~~||-<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br><br>REPRESENTATIVE FOR INFORMATION<br>~~ee~~|-<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br><br>REPRESENTATIVE FOR INFORMATION<br>~~ee~~|0.5<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>REPRESENTATIVE FOR INFORMATION<br>~~ee~~|V<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>REPRESENTATIVE FOR INFORMATION<br>~~ee~~|
|VSC(ref)<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>~~ee~~|Short Circuit Trip Level<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>PLEASE CONTACT YOUR<br>REPRESENTATIVE FOR INFORMATION<br>~~ee~~|VCC= 15 V (Note 7)<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>PLEASE CONTACT YOUR<br>REPRESENTATIVE FOR INFORMATION<br>~~ee~~|CSC- COM(L)<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>PLEASE CONTACT YOUR<br>REPRESENTATIVE FOR INFORMATION<br>~~ee~~|0.45<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br><br>REPRESENTATIVE FOR INFORMATION<br>~~ee~~|0.50<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br><br>REPRESENTATIVE FOR INFORMATION<br>~~ee~~|0.55<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>REPRESENTATIVE FOR INFORMATION<br>~~ee~~|V<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>REPRESENTATIVE FOR INFORMATION<br>~~ee~~|
|UVCCD<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>~~SO~~|Supply Circuit Under-<br>Voltage Protection<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>PLEASE CONTACT YOUR<br>REPRESENTATIVE FOR INFORMATION<br>~~SO~~|Detection Level<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>PLEASE CONTACT YOUR<br>REPRESENTATIVE FOR INFORMATION<br>~~Eee~~||9.8<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br><br>REPRESENTATIVE FOR INFORMATION<br>~~Eee~~|-<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br><br>REPRESENTATIVE FOR INFORMATION<br>~~Eee~~|13.3<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>REPRESENTATIVE FOR INFORMATION<br>~~Eee~~|V<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>REPRESENTATIVE FOR INFORMATION<br>~~Eee~~|
|UVCCR<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>~~SO~~||Reset Level<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>PLEASE CONTACT YOUR<br>REPRESENTATIVE FOR INFORMATION<br>~~Eee~~||10.3<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br><br>REPRESENTATIVE FOR INFORMATION<br>~~Eee~~|-<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br><br>REPRESENTATIVE FOR INFORMATION<br>~~Eee~~|13.8<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>REPRESENTATIVE FOR INFORMATION<br>~~Eee~~|V<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>REPRESENTATIVE FOR INFORMATION<br>~~Eee~~|
|UVBSD<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>~~SO~~||Detection Level<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>PLEASE CONTACT YOUR<br>REPRESENTATIVE FOR INFORMATION<br>~~Eee~~||10.0<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br><br>REPRESENTATIVE FOR INFORMATION<br>~~Eee~~|-<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br><br>REPRESENTATIVE FOR INFORMATION<br>~~Eee~~|12.0<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>REPRESENTATIVE FOR INFORMATION<br>~~Eee~~|V<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>REPRESENTATIVE FOR INFORMATION<br>~~Eee~~|
|UVBSR<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>~~SO~~||Reset Level<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>PLEASE CONTACT YOUR<br>REPRESENTATIVE FOR INFORMATION<br>~~Eee~~||10.5<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br><br>REPRESENTATIVE FOR INFORMATION<br>~~Eee~~|-<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br><br>REPRESENTATIVE FOR INFORMATION<br>~~Eee~~|12.5<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>REPRESENTATIVE FOR INFORMATION<br>~~Eee~~|V<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>REPRESENTATIVE FOR INFORMATION<br>~~Eee~~|
|tFOD<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>~~SO~~<br>~~SS~~|Fault-Out Pulse Width<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>PLEASE CONTACT YOUR<br>REPRESENTATIVE FOR INFORMATION<br>~~SO ~~|**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>PLEASE CONTACT YOUR<br>REPRESENTATIVE FOR INFORMATION<br> ~~Eee~~||50<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br><br>REPRESENTATIVE FOR INFORMATION<br>~~Eee~~|-<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br><br>REPRESENTATIVE FOR INFORMATION<br>~~Eee~~|-<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>REPRESENTATIVE FOR INFORMATION<br>~~Eee~~|s<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>REPRESENTATIVE FOR INFORMATION<br>~~Eee~~|
|VTS<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>~~SS~~|LVIC Temperature<br>Sensing Voltage Output<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>PLEASE CONTACT YOUR<br>REPRESENTATIVE FOR INFORMATION|VCC(L)= 15 V, TLVIC= 25°C (Note 8)<br>_See Figure 7_<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>PLEASE CONTACT YOUR<br>REPRESENTATIVE FOR INFORMATION||540<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br><br>REPRESENTATIVE FOR INFORMATION|640<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br><br>REPRESENTATIVE FOR INFORMATION|740<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>REPRESENTATIVE FOR INFORMATION|mV<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>REPRESENTATIVE FOR INFORMATION|
|VIN(ON)<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>~~SS~~|ON Threshold Voltage<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>REPRESENTATIVE FOR INFORMATION|Applied between IN(UH, VH, WH)- COM,<br>IN(UL, VL, WL)- COM<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>REPRESENTATIVE FOR INFORMATION||-<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>REPRESENTATIVE FOR INFORMATION|-<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>REPRESENTATIVE FOR INFORMATION|2.6<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>REPRESENTATIVE FOR INFORMATION|V<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>REPRESENTATIVE FOR INFORMATION|
|VIN(OFF)<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>~~SS~~|OFF Threshold Voltage<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>REPRESENTATIVE FOR INFORMATION|||0.8<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>REPRESENTATIVE FOR INFORMATION|-<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>REPRESENTATIVE FOR INFORMATION|-<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>REPRESENTATIVE FOR INFORMATION|V<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>REPRESENTATIVE FOR INFORMATION|



**8** 

©2015 Fairchild Semiconductor Corporation FSBB20CH60D Rev. 2 

www.fairchildsemi.com 

## **Recommended Operating Conditions** 

|**FSBB20CH60D  Motion SPM® 3 Series**<br>**Note:**<br>9. This product might not make response if input pulse width is less than the recommanded value.<br>**Symbol**<br>**Parameter**<br>**Conditions**<br>**Value**<br>**Unit**<br>**Min.**<br>**Typ.**<br>**Max.**<br>VPN<br>Supply Voltage<br>Applied between P - NU, NV, NW<br>-<br>300<br>400<br>V<br>VCC<br>Control Supply Voltage<br>Applied between VCC(UH, VH, WH)- COM, VCC(L)-<br>COM<br>14.0<br>15<br>16.5<br>V<br>VBS<br>High-Side Bias Voltage<br>Applied between VB(U)- VS(U), VB(V)- VS(V), VB(W)-<br>VS(W)<br>13.0<br>15<br>18.5<br>V<br>dVCC/ dt,<br>dVBS/ dt<br>Control Supply<br>Variation<br>- 1<br>-<br>1<br>V /s<br>tdead<br>Blanking Time for<br>Preventing Arm - Short<br>For Each Input Signal<br>2.0<br>-<br>-<br>s<br>fPWM<br>PWM Input Signal<br>-40CTC 125°C, -40CTJ 150°C<br>-<br>-<br>20<br>kHz<br>VSEN<br>Voltage for Current<br>Sensing<br>Applied between NU, NV, NW- COM<br>(Including Surge Voltage)<br>- 4<br>4<br>V<br>TJ<br>Junction Temperature<br>- 40<br>-<br>150<br>C<br>**DISCONTINUED**<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>PLEASE CONTACT YOUR**onsemi**<br>REPRESENTATIVE FOR INFORMATION|
|---|



**9** 

©2015 Fairchild Semiconductor Corporation FSBB20CH60D Rev. 2 

www.fairchildsemi.com 

**==> picture [531 x 590] intentionally omitted <==**

**----- Start of picture text -----**<br>
Mechanical Characteristics and Ratings<br>Parameter Conditions Min. Typ. Max. Unit<br>Mounting Torque Mounting Screw: M3 Recommended 0.62 N•m 0.51 0.62 0.80 N•m<br>Device Flatness See Figure 7 0 - +150 m<br>Weight - 15.00 - g<br>| ( + ) .<br>| ]<br>il ot Ly mune i<br>( + )<br>Figure 8. Flatness Measurement Position<br>Pre - Screwing : 1     2<br>2 Final Screwing : 2     1<br>1<br>Figure 9. Mounting Screws Torque Order<br>Note:<br>10. Do not make over torque when mounting screws. Much mounting torque may cause DBC cracks, as well as bolts and Al heat-sink destruction.<br>11. Avoid one-sided tightening stress. Figure 9 shows the recommended torque order for mounting screws. Uneven mounting can cause the DBC substrate of package to be<br>damaged. The pre-screwing torque is set to 20 ~ 30% of maximum torque rating.<br>DISCONTINUED<br>onsemi<br>PLEASE CONTACT YOUR<br>REPRESENTATIVE FOR INFORMATION<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>FSBB20CH60D  Motion SPM® 3 Series<br>**----- End of picture text -----**<br>


**10** 

©2015 Fairchild Semiconductor Corporation FSBB20CH60D Rev. 2 

www.fairchildsemi.com 

**==> picture [531 x 605] intentionally omitted <==**

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Time Charts of SPMs Protective Function<br>Input Signal<br>Protection<br>RESET SET RESET<br>Circuit State<br>UVCCR<br>a1 a6<br>Control  UVCCD a3<br>Supply Voltage<br>a2<br>a7<br>a4<br>Output Current<br>y :<br>a5<br>Fault Output Signal<br>Figure 10. Under-Voltage Protection (Low-Side)<br>a1 : Control supply voltage rises: After the voltage rises UVCCR, the circuits start to operate when next input is applied.<br>a2 : Normal operation: IGBT ON and carrying current.<br>a3 : Under voltage detection (UVCCD).<br>a4 : IGBT OFF in spite of control input condition.<br>a5 : Fault output operation starts with a fixed pulse width.<br>a6 : Under voltage reset (UVCCR).<br>a7 : Normal operation: IGBT ON and carrying current by triggering next signal from LOW to HIGH.<br>Input Signal<br>Protection<br>RESET SET RESET<br>Circuit State<br>UVBSR<br>b1 b5<br>Control  UVBSD b3<br>Supply Voltage b6<br>b2<br>b4<br>: y: ’ ’<br>Output Current<br>’<br>High-level (no fault output)<br>Fault Output Signal<br>Figure 11. Under-Voltage Protection (High-Side)<br>b1 : Control supply voltage rises: After the voltage reaches UVBSR, the circuits start to operate when next input is applied.<br>b2 : Normal operation: IGBT ON and carrying current.<br>DISCONTINUED<br>onsemi<br>PLEASE CONTACT YOUR<br>REPRESENTATIVE FOR INFORMATION<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>FSBB20CH60D  Motion SPM® 3 Series<br>**----- End of picture text -----**<br>


- b3 : Under voltage detection (UVBSD). 

- b4 : IGBT OFF in spite of control input condition, but there is no fault output signal. 

- b5 : Under voltage reset (UVBSR). 

- b6 : Normal operation: IGBT ON and carrying current by triggering next signal from LOW to HIGH. 

**11** 

©2015 Fairchild Semiconductor Corporation FSBB20CH60D Rev. 2 

www.fairchildsemi.com 

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Lower arms<br>control input c6 c7<br>Protection<br>Circuit state SET RESET<br>Internal IGBT c4<br>Gate-Emitter Voltage c3<br>c2 Internal delay<br>at protection circuit<br>SC current trip level<br>c8<br>c1<br>Output Current y<br>: A<br>Sensing Voltage SC Reference Voltage<br>of sense resistor<br>RC Filter circuit<br>Fault Output Signal c5 time constant<br>delay<br>Figure 12. Short-Circuit Current Protection (Low-Side Operation only)<br>(with the external sense resistance and RC filter connection)<br>c1 : Normal operation: IGBT ON and carrying current.<br>c2 : Short circuit current detection (SC trigger).<br>c3 : All low-side IGBT’s gate are hard interrupted.<br>c4 : All low-side IGBTs turn OFF.<br>c5 : Fault output operation starts with a fixed pulse width.<br>c6 : Input HIGH: IGBT ON state, but during the active period of fault output the IGBT doesn’t turn ON.<br>c7 : Fault output operation finishes, but IGBT doesn’t turn on until triggering next signal from LOW to HIGH.<br>c8 : Normal operation: IGBT ON and carrying current.<br>Input/Output Interface Circuit<br>+5V (MCU or Control power)<br>4.7 kΩ SPM<br>IN(UH) , IN(VH) , IN(WH)<br>IN(UL) , IN(VL) , IN(WL)<br>MCU VFO<br>| «<br>e e t e COM<br>Figure 13. Recommended CPU I/O Interface Circuit<br>Note:<br>12. RC coupling at each input might change depending on the PWM control scheme used in the application and the wiring impedance of the application’s printed circuit board.<br>The input signal section of the Motion SPM 3 product integrates 5 k ( typ.) pull-down resistor. Therefore, when using an external filtering resistor, please pay attention to the<br>signal voltage drop at input terminal.<br>DISCONTINUED<br>onsemi<br>PLEASE CONTACT YOUR<br>REPRESENTATIVE FOR INFORMATION<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>FSBB20CH60D  Motion SPM® 3 Series<br>**----- End of picture text -----**<br>


**12** 

©2015 Fairchild Semiconductor Corporation FSBB20CH60D Rev. 2 

www.fairchildsemi.com 

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Gating WH R1 * I (17) IN( WH) IN = P  (27) 1 .<br>(18) VCC( H) VCC<br>C4 yof COM OUT A<br>Gating VH R1 D2 A C3 a+ C4 e | ’ (19) V(20) V(13) INB( W)S( W)( VH) VINB VS . W (26) |<br>(14) VCC( H) VCC<br>. C4 . of, COM OUT k<br>A C3 t C4 4 i ((16) V15) VB( V)S(V) Y* V B VS a , « . V  (25) M<br>D2 oe<br>M Gating UH R1 . | (9) IN( UH) IN<br>C1 C1 C1 I C4 i! (10) VCC( H) | COMVCC OUT C7 V DC wn<br>C { 5V line A C3 eo C4 8 |} (12) V(11) VS( U)B(U) ve ¢ VB VS a 4 7 . U (24)<br>U D2 e+<br>VTS R3<br>B D R6 C6 (8) CSC CSC OUT<br>Fault ° R1 . C5 . |! ((6) V7) VTSFO VV TSFO “«t a NW (23) ° R4 A r)‘‘'' '‘‘‘ry<br>Gating WLGating VL RR11 7 . | } (5) IN(4) IN(WL )(VL) ININ OUT a NV (22) R4 'a 'r)<br>Gating UL C1 R1 C1 . C1 C1 C1 15V line IJ (3) IN(2) COM(1) VCC( L)(UL ) . INCOM OUT b [.] i ° —+ 7% «be E GND Line Neoe Power  ’<br>ry ote . J VCC 4t a NU (21) . R4 an)4doa<br>D2 A C2 C4 on’pou<br>¢ 042 4<br>C<br>Input Signal for  W-Phase CurrentV-Phase Current < ° RR55 GND LineControl<br>Short-Circuit Protection >» < . R5<br>U-Phase Current < *<br>C5 C5 C5<br>+<br>Figure 14. Typical Application Circuit<br>Note:<br>13. To avoid malfunction, the wiring of each input should be as short as possible. (less than 2 - 3 cm)<br>14. VFO output is open-drain type. This signal line should be pulled up to the positive side of the MCU or control power supply with a resistor that makes IFO up to 2 mA. Please<br>refer to Figure 13.<br>15. Input signal is active-HIGH type. There is a 5 k resistor inside the IC to pull-down each input signal line to GND. RC coupling circuits should be adopted  for the prevention<br>of input signal oscillation. R1C1 time constant should be selected in the range 50 ~ 150 ns. (Recommended R1 = 100  Ω , C1 = 1 nF)<br>16. Each wiring pattern inductance of A point should be minimized (Recommend less than 10nH). Use the shunt resistor R4 of surface mounted (SMD) type to reduce wiring<br>inductance. To prevent malfunction, wiring of point E should be connected to the terminal of the shunt resistor R4 as close as possible.<br>17. To prevent errors of the protection function, the wiring of B, C, and D point should be as short as possible.<br>18. In the short-circuit protection circuit, please select the R6C6 time constant in the range 1.5 ~ 2 s. Do enough evaluaiton on the real system because short-circuit protection<br>time may vary wiring pattern layout and value of the R6C6 time constant.<br>19. Each capacitor should be mounted as close to the pins of the Motion SPM [®]  3 product as possible.<br>20. To prevent surge destruction, the wiring between the smoothing capacitor C7 and the P & GND pins should be as short  as possible. The use of a high-frequency non-inductive<br>capacitor of around 0.1 ~ 0.22 F between the P & GND pins is recommended.<br>21. Relays are used at almost every systems of electrical equipments at industrial application. In these cases, there  should be sufficient distance between the CPU and the<br>relays.<br>DISCONTINUED<br>onsemi<br>PLEASE CONTACT YOUR<br>REPRESENTATIVE FOR INFORMATION<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>**----- End of picture text -----**<br>


22. The zener diode or transient voltage suppressor should be adopted for the protection of ICs from the surge destruction between each pair of control supply terminals (Recommanded zener diode is 22 V / 1 W, which has the lower zener impedance characteristic than about 15 Ω ). 

23. C2 of around 7 times larger than bootstrap capacitor C3 is recommended. 

24. Please choose the electrolytic capacitor with good temperature characteristic in C3. Also, choose 0.1 ~ 0.2 F R-category ceramic capacitors with good temperature and frequency characteristics in C4. 

**13** 

©2015 Fairchild Semiconductor Corporation FSBB20CH60D Rev. 2 

www.fairchildsemi.com 

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Detailed Package Outline Drawings (FSBB20CH60D)<br>(0.30) (0.136)<br>_|_0.402%0.60 | 0.800160 &<br>(0.70) 2x<br>FOIA UREA LEAD PITCH (TOLERANCE : +0.30)<br>(2.31) icece| (1.55) A:B: 2,0501,778<br>12,531<br>BCAC BCACBCAAAAAAAAAA<br>8,20<br>: 3,203,00 32) «8<br>——s rm<br>20 I fh fui ih 1 |<br>a ee”. oe 5 —<br>D: “E——_ Bs ag g<br>p 1 aa ban en) % ey<br>| 21 i)<br>27 LT tt ow | | L_1_}<br>30.78 8.30 17.644<br>30.18 7.70 ——13.335 _| 0.136<br>(2.76) 2X 33 8,754 4.445 1.30<br>| 4.445 = 20.447 ‘<br>|— —_—— xx —— Srars<br>Geese estates 88 7— +00 [00 | 00 | o0oooo0g * ORE<br>“iT IW Init 70 00 | 00 2<br>(0.70) | Re 8 | DETAIL A<br>2X | a | (SCALE N/A)<br>7.92732% 4,30 hod=| MS ees [eres] ey terete' eee<br>| | il 3:70. a |<br>- ® ® ® | ® oF e<br>NOTES: UNLESS OTHERWISE— SPECIFIED A o. a]<br>A) THIS PACKAGE DOES NOT COMPLY 40 |_| |_ 36 ee<br>TO ANY CURRENT PACKAGING STANDARD 11,62_|_ 11.24 (SCALE N/A)<br>B) ALL DIMENSIONS ARE IN MILLIMETERS 19.24 15.24<br>C) DIMENSIONS ARE EXCLUSIVE OF BURRS, 19,24<br>MOLD FLASH, AND TIE BAR EXTRUSIONS<br>D)( )IS REFERENCE LAND PATTERN RECOMMENDATIONS<br>E)[ ]IS ASS'Y QUALITY<br>F) DRAWING FILENAME: MOD27BAREV2.0<br>G) FAIRCHILD SEMICONDUCTOR<br>Package drawings are provided as a service to customers considering Fairchild components. Drawings may change in any manner<br>without notice. Please note the revision and/or data on the drawing and contact a FairchildSemiconductor representative to verify or<br>obtain the most recent revision. Package specifications do not expand the terms of Fairchild’s worldwide therm and conditions,<br>specifically the the warranty therein, which covers Fairchild products.<br>Always visit Fairchild Semiconductor’s online packaging area for the most recent package drawings:<br>http://www.fairchildsemi.com/dwg/MO/MOD27BA.pdf<br>DISCONTINUED<br>onsemi<br>PLEASE CONTACT YOUR<br>REPRESENTATIVE FOR INFORMATION<br>THIS DEVICE IS NOT RECOMMENDED FOR NEW DESIGN<br>FSBB20CH60D  Motion SPM® 3 Series<br>**----- End of picture text -----**<br>


**14** 

©2015 Fairchild Semiconductor Corporation FSBB20CH60D Rev. 2 

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## CTL™ IntelliMAX™ RapidConfigure™ TinyPWM™ Current Transfer Logic™ ISOPLANAR™ oe TinyWire™ DEUXPEED® Making Small Speakers Sound Louder ‘ _ oo, -TranSic™ Dual Cool™ and Better™ Saving our world, ImWAWAW at atime’ —— triFgult Detect™ EcoSPARK® MegaBuck™ seen TRUECURRENT"™* EfficientMax™ MICROCOUPLER™ martMax™ uSerDes™ EsSBc™ MicroFET™ SMART START™ ff MicroPak™ soe for Your Success™ . Fairchild” ; -" SP Ty Fairchild ee STEALTH™ Ol PREET™ FACT Semiconductor® Motion Mex SuperFET® bani Quiet Series™ onyx SuperSOT™-3 UniFET FACP MotionGrid’ 7 vcx™ FAST? MTiB SuperSOT™-6s SOT™-8 VisualMaxFastvCore™ MTX? uper: VoltagePlus™ FETBench™ MVNO SupreMos® ¥s™ Eps mWSaver™ ; Synetock™ Xsens™ OptoHiT™ {a™ * Trademarks of System General Corporation, used under license by Fairchild Semiconductor. DISCLAIMER FAIRCHILD SEMICONDUCTOR RESERVES THE RIGHT TO MAKE CHANGES WITHOUT FURTHER NOTICE TO ANY PRODUCTS HEREIN TO IMPROVE RELIABILITY, FUNCTION, OR DESIGN. TO OBTAIN THE LATEST, MOST UP-TO-DATE DATASHEET AND PRODUCT INFORMATION, VISIT OUR WEBSITE AT HTTPJAWWIW.FAIRCHILDSEMLCOM. FAIRCHILD DOES NOT ASSUME ANY LIABILITY ARISING OUT OF THE APPLICATION OR USE OF ANY PRODUCT OR CIRCUIT DESCRIBED HEREIN; NEITHER DOES IT CONVEY ANY LICENSE UNDER ITS PATENT RIGHTS, NOR THE RIGHTS OF OTHERS. THESE SPECIFICATIONS DO NOT EXPAND THE TERMS OF FAIRCHILD’S WORLDWIDE TERMS AND CONDITIONS, SPECIFICALLY THE WARRANTY THEREIN, WHICH COVERS THESE PRODUCTS. LIFE SUPPORT POLICY FAIRCHILD’'S PRODUCTSARE NOT AUTHORIZED FOR USE AS CRITICAL COMPONENTS IN LIFE SUPPORT DEVICES OR SYSTEMS WITHOUT THE EXPRESS WRITTEN APPROVAL OF FAIRCHILD SEMICONDUCTOR CORPORATION. As used herein: 1. Life support devices or systems are devices or systems which, (a) are 2. A critical component in any component of a life support, device, or intended for surgical implant into the body or (b) support or sustain system whose failure to perform can be reasonably expected to life, and (c) whose failure to perform when properly used in cause the failure of the life support device or system, or to affect its accordance with instructions for use provided in the labeling, can be safety or effectiveness. reasonably expected to result in a significant injury of the user. ANTI-COUNTERFEITING POLICY Fairchild Semiconductor Corporation's Anti-Counterfeiting Policy. Fairchild's Anti-Counterfeiting Policy is also stated on our extemal website, www.fairchildsemi.com, under Sales Support. Counterfeiting of semiconductor parts is a growing problem in the industry. All manufacturers of semiconductor products are experiencing counterfeiting of their parts. Customers who inadvertently purchase counterfeit parts experience many problems such as loss of brand reputation, substandard performance, failed applications, and increased cost of production and manufacturing delays. Fairchild is taking strong measures to protect ourselves and our customers from the proliferation of counterfeit parts. Fairchild strongly encourages customers to purchase Fairchild parts either directly from Fairchild or from Authorized Fairchild Distributors who are listed by country on our web page cited above. Products customers buy either from Fairchild directly or from Authorized Fairchild Distributors 

©2015 Fairchild Semiconductor Corporation **15** FSBB20CH60D Rev. 2 

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