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NFAM1512L7B Datasheet(PDF) 7 Page - ON Semiconductor

Part # NFAM1512L7B
Description  Intelligent Power Module (IPM) Inverter, 1200 V, 15 A
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Manufacturer  ONSEMI [ON Semiconductor]
Direct Link  http://www.onsemi.com
Logo ONSEMI - ON Semiconductor

NFAM1512L7B Datasheet(HTML) 7 Page - ON Semiconductor

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NFAM1512L7B
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ELECTRICAL CHARACTERISTICS (VDD = 15 V and Tj = 25°C, Unless Otherwise Specified) (continued)
Symbol
Unit
Max
Typ
Min
Test Conditions
Parameter
CONTROL PART
VFOH
Fault Output Voltage
VDD(L) = 0 V, CIN = 0 V,
VFO Circuit: 10 kW to 5 V Pull−up
4.90
V
VFOL
VDD(L) = 0 V, CIN = 1 V,
VFO Circuit: 10 kW to 5 V Pull−up
0.95
V
tFOD
Fault−Output Pulse Width
CFOD = 22 nF (Note 6)
1.60
2.40
ms
BOOTSTRAP PART
VF
Bootstrap Diode Forward
Current
If = 0.1 A (See Figure 6)
2.10
2.50
2.90
V
RBOOT
Built−in Limiting Resistance
12.50
15.50
18.50
W
Product parametric performance is indicated in the Electrical Characteristics for the listed test conditions, unless otherwise noted. Product
performance may not be indicated by the Electrical Characteristics if operated under different conditions.
Performance guaranteed over the indicated operating temperature range by design and/or characterization tested at Tj = Ta = 25°C. Low duty
cycle pulse techniques are used during testing to maintain the junction temperature as close to ambient as possible. Values based on design
and/or characterization.
4. ton and toff include the propagation delay of the internal drive IC. tc(on) and tc(off) are the switching times of IGBT under the given
gate−driving condition internally. For the detailed information, please see Figure 3.
5. TLVIC is the temperature of LVIC itself. VTS is only for sensing temperature of LVIC and cannot shutdown IGBTs automatically. The
relationship between VTS voltage output and LVIC temperature is described in Figure 4. It is recommended to add 5.1 kW pull down resistor
between VTS and VSS (Signal Ground) as described in Figure 5 for linear output characteristics at low temperature. Refer to the application
note for usage of VTS.
6. The fault−out pulse width tFOD depends on the capacitance value of CFOD according to the following approximate equation:
tFOD = 0.1 × 106 × CFOD [s].
Figure 3. Switching Time Definitions
VIN
Vce
Ic
100% Ic
90% Ic
10% Ic
tc(on)
10% Vce
Vce
Ic
VIN
toff
10% Vce
10% Ic
ton
trr
tc(off)


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