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PDF FSAM10SH60 Data sheet ( Hoja de datos )

Número de pieza FSAM10SH60
Descripción Smart Power Module (SPM)
Fabricantes Fairchild Semiconductor 
Logotipo Fairchild Semiconductor Logotipo



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No Preview Available ! FSAM10SH60 Hoja de datos, Descripción, Manual

October 2001
FSAM10SH60
Smart Power Module (SPM)
General Description
FSAM10SH60 is an advanced smart power module (SPM)
that Fairchild has newly developed and designed to provide
very compact and low cost, yet high performance ac motor
drives mainly targeting high speed low-power inverter-
driven application like washing machines. It combines
optimized circuit protection and drive matched to low-loss
IGBTs. Highly effective short-circuit current detection/
protection is realized through the use of advanced current
sensing IGBT chips that allow continuous monitoring of the
IGBTs current. System reliability is further enhanced by the
built-in over-temperature and integrated under-voltage
lock-out protection. The high speed built-in HVIC provides
opto-coupler-less IGBT gate driving capability that further
reduce the overall size of the inverter system design. In
addition the incorporated HVIC facilitates the use of single-
supply drive topology enabling the FSAM10SH60 to be
driven by only one drive supply voltage without negative
bias. Inverter current sensing application can be achieved
due to the devided nagative dc terminals.
External View
Features
• 600V-10A 3-phase IGBT inverter bridge including control
ICs for gate driving and protection
• Divided negative dc-link terminals for inverter current
sensing applications
• Single-grounded power supply due to built-in HVIC
• Typical switching frequency of 15kHz
• Built-in thermistor for over-temperature monitoring
• Inverter power rating of 0.4kW / 100~253 Vac
• Isolation rating of 2500Vrms/min.
• Very low leakage current due to using ceramic substrate
• Adjustable current protection level by varying series
resistor value with sense-IGBTs
Applications
• AC 100V ~ 253V three-phase inverter drive for small
power (0.4kW) ac motor drives
• Home appliances applications requiring high switching
frequency operation like washing machines drive system
• Application ratings:
- Power : 0.4 kW / 100~253 Vac
- Switching frequency : Typical 15kHz (PWM Control)
- 100% load current : 3.0A (Irms)
- 150% load current : 4.5A (Irms) for 1 minute
Top View
Bottom View
60 mm
30 mm
©2001 Fairchild Semiconductor Corporation
Fig. 1.
October 2001

1 page




FSAM10SH60 pdf
Absolute Maximum Ratings
Inverter Part (TC = 25°C, Unless Otherwise Specified)
Item
Supply Voltage
Supply Voltage (Surge)
Collector-emitter Voltage
Each IGBT Collector Current
Each IGBT Collector Current
Each IGBT Collector Current (Peak)
Collector Dissipation
Operating Junction Temperature
Symbol
VDC
VPN(Surge)
VCES
± IC
± IC
± ICP
PC
TJ
Condition
Applied to DC - Link
Applied between P- N
TC = 25°C
TC = 100°C
TC = 25°C
TC = 25°C per One Chip
(Note 1)
Rating
450
500
600
10
8
20
-
-55 ~ 150
Unit
V
V
V
A
A
A
W
°C
Note
1. It would be recommended that the average junction temperature should be limited to TJ 125°C (@TC 100°C) in order to guarantee safe operation.
Control Part (TC = 25°C, Unless Otherwise Specified)
Item
Symbol
Condition
Control Supply Voltage
VCC Applied between VCC(H) - COM(H), VCC(L) - COM(L)
High-side Control Bias Voltage VBS Applied between VB(U) - VS(U), VB(V) - VS(V), VB(W) -
VS(W)
Input Signal Voltage
VIN Applied between IN(UH), IN(VH), IN(WH) - COM(H)
IN(UL), IN(VL), IN(WL) - COM(L)
Fault Output Supply Voltage
VFO Applied between VFO - COM(L)
Fault Output Current
IFO Sink Current at VFO Pin
Current Sensing Input Voltage VSC Applied between CSC - COM(L)
Rating
18
20
Unit
V
V
-0.3 ~ 6.0 V
-0.3~VCC+0.5
5
-0.3~VCC+0.5
V
mA
V
Total System
Item
Self Protection Supply Voltage Limit
(Short Circuit Protection Capability)
Module Case Operation Temperature
Storage Temperature
Isolation Voltage
Symbol
Condition
VPN(PROT) Applied to DC - Link,
VCC = VBS = 13.5 ~ 16.5V
TJ = 125°C, Non-repetitive, less than 6µs
TC
TSTG
VISO 60Hz, Sinusoidal, AC 1 minute, Connection
Pins to Heat-sink Plate
Rating
400
-
-
2500
Unit
V
°C
°C
Vrms
©2001 Fairchild Semiconductor Corporation
October 2001

5 Page





FSAM10SH60 arduino
Recommended Operating Conditions
Item
Supply Voltage
Control Supply Voltage
High-side Bias Voltage
Blanking Time for Preventing
Arm-short
PWM Input Signal
Input ON Threshold Voltage
Input OFF Threshold Voltage
Symbol
Condition
VPN
VCC
VBS
tdead
Applied between P - N
Applied between VCC(H) - COM, VCC(L) - COM
Applied between VB(U) - VS(U), VB(V) - VS(V),
VB(W) - VS(W)
For Each Input Signal
Min.
-
13.5
13.5
Value
Typ.
300
15
15
Max.
400
16.5
16.5
1- -
Unit
V
V
V
us
fPWM
VIN(ON)
VIN(OFF)
TC 100°C, TJ 125°C
Applied between UIN,VIN, WIN - COM
Applied between UIN,VIN, WIN - COM
- 15 -
0 ~ 0.65
4 ~ 5.5
kHz
V
V
ICs Internal Structure and Input/Output Conditions
15V Line
5V Line
RP CBP15
CPH
5V Line
RP RPF
CPL
CPF
CFOD
RBS
DBS
CBS
CBSC
VCC(UH,VH,WH)
IN(UH,VH,WH)
COM
LEVEL
SHIFT
PULSE
GENERATOR
UV
DETECT
PULSE
FILTER
R
R
SQ
HVIC
VB(UH,VH,WH)
VS(UH,VH,WH)
VCC(L)
UV
DETECT
BANDGAP
REFERENCE
IN(UL,VL,WL)
PULSE
GENERATOR
(HYSTERISIS)
VFO
CFOD
FAULT OUTPUT
DURATION
TIME
DELAY
UV
LATCH_UP
LVIC
UV
PROTECTION
SC
PROTECTION
BUFFER
SOFT_OFF
CONTROL
SC
LATCH_UP
TIME
DELAY
SC
DETECTION
CSC
OUTPUT
(UL,VL,WL)
CSC
RF
P
U, V, W
NU, NV, NW
RSU, RSV, RSW
RSC
Note
1. One LVIC drives three Sense-IGBTs and can do short-circuit current protection also. Three sense emitters are commonly connected to RSC terminal to detect
short-circuit current. Low-side part of the inverter consists of three sense-IGBTs
2. One HVIC drives one normal-IGBT. High-side part of the inverter consists of three normal-IGBTs
3. Each IC has under voltage detection and protection function.
4. The logic input is compatible with standard CMOS or LSTTL outputs.
5. RPCP coupling at each input/output is recommended in order to prevent the gating input/output signals oscillation and it should be as close as possible to each
SPM gating input pin.
6. It would be recommended that the bootstrap diode, DBS, has soft and fast recovery characteristics.
Fig. 7.
©2001 Fairchild Semiconductor Corporation
October 2001

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