参数资料
型号: NTD25P03L1
厂商: ON Semiconductor
文件页数: 5/9页
文件大小: 0K
描述: MOSFET P-CH 30V 25A IPAK
产品变化通告: Product Discontinuation 20/Aug/2008
标准包装: 75
FET 型: MOSFET P 通道,金属氧化物
FET 特点: 逻辑电平门
漏极至源极电压(Vdss): 30V
电流 - 连续漏极(Id) @ 25° C: 25A
开态Rds(最大)@ Id, Vgs @ 25° C: 80 毫欧 @ 25A,5V
Id 时的 Vgs(th)(最大): 2V @ 250µA
闸电荷(Qg) @ Vgs: 20nC @ 5V
输入电容 (Ciss) @ Vds: 1260pF @ 25V
功率 - 最大: 75W
安装类型: 通孔
封装/外壳: TO-251-3 短引线,IPak,TO-251AA
供应商设备封装: I-Pak
包装: 管件
其它名称: NTD25P03L1OS
NTD25P03L, STD25P03L
10
8
6
? V DS
Q T
30
25
20
1000
100
V DD = ? 15 V
I D = ? 25 A
V GS = ? 5.0 V
T J = 25 ° C
t r
t f
4
Q 1
Q 2
? V GS
15
10
10
t d(off)
t d(on)
2
0
0
Q 3
2.5
5
7.5
10
I D = ? 25 A
T J = 25 ° C
12.5
15
5
0
1
1
10
100
Q g , TOTAL GATE CHARGE (nC)
Figure 8. Gate ? to ? Source and
Drain ? to ? Source Voltage versus Total Charge
R G , GATE RESISTANCE ( W )
Figure 9. Resistive Switching Time Variation
versus Gate Resistance
DRAIN ? TO ? SOURCE DIODE CHARACTERISTICS
The switching characteristics of a MOSFET body diode
are very important in systems using it as a freewheeling or
commutating diode. Of particular interest are the reverse
recovery characteristics which play a major role in
determining switching losses, radiated noise, EMI and RFI.
System switching losses are largely due to the nature of
the body diode itself. The body diode is a minority carrier
device, therefore it has a finite reverse recovery time, t rr , due
to the storage of minority carrier charge, Q RR , as shown in
the typical reverse recovery wave form of Figure 14. It is this
stored charge that, when cleared from the diode, passes
through a potential and defines an energy loss. Obviously,
repeatedly forcing the diode through reverse recovery
further increases switching losses. Therefore, one would
like a diode with short t rr and low Q RR specifications to
minimize these losses.
The abruptness of diode reverse recovery effects the
amount of radiated noise, voltage spikes, and current
ringing. The mechanisms at work are finite irremovable
circuit parasitic inductances and capacitances acted upon by
25
high di/dts. The diode’s negative di/dt during t a is directly
controlled by the device clearing the stored charge.
However, the positive di/dt during t b is an uncontrollable
diode characteristic and is usually the culprit that induces
current ringing. Therefore, when comparing diodes, the
ratio of t b /t a serves as a good indicator of recovery
abruptness and thus gives a comparative estimate of
probable noise generated. A ratio of 1 is considered ideal and
values less than 0.5 are considered snappy.
Compared to ON Semiconductor standard cell density
low voltage MOSFETs, high cell density MOSFET diodes
are faster (shorter t rr ), have less stored charge and a softer
reverse recovery characteristic. The softness advantage of
the high cell density diode means they can be forced through
reverse recovery at a higher di/dt than a standard cell
MOSFET diode without increasing the current ringing or the
noise generated. In addition, power dissipation incurred
from switching the diode will be less due to the shorter
recovery time and lower switching losses.
20
15
10
5
V GS = 0 V
T J = 25 ° C
0
0
0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9
1
1.1
? V SD , SOURCE ? TO ? DRAIN VOLTAGE (VOLTS)
Figure 10. Diode Forward Voltage versus Current
http://onsemi.com
5
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