首页 > 器件类别 >

PJP10NA60

600V N-Channel MOSFET

厂商名称:强茂(PANJIT)

厂商官网:http://www.panjit.com.tw/

下载文档
文档预览
PPJP10NA60
/ PJF10NA60
600V N-Channel MOSFET
Voltage
Features
R
DS(ON)
, V
GS
@10V,I
D
@5A<0.9Ω
High switching speed
Improved dv/dt capability
Low Gate Charge
Low reverse transfer capacitance
Lead free in compliance with EU RoHS 2011/65/EU directive.
Green molding compound as per IEC61249 Std.
ITO-220AB-F
TO-220AB
600 V
Current
10 A
(Halogen Free)
Mechanical Data
Case : TO-220AB, ITO-220AB-F Package
Terminals : Solderable per MIL-STD-750, Method 2026
TO-220AB Approx. Weight : 0.067 ounces, 1.89 grams
ITO-220AB-F Approx. Weight : 0.068 ounces, 2 grams
Maximum Ratings and Thermal Characteristics
(T
A
=25 C unless otherwise noted)
PARAMETER
Drain-Source Voltage
Gate-Source Voltage
Continuous Drain Current
Pulsed Drain Current
Single Pulse Avalanche Energy
(Note 1)
Power Dissipation
T
C
=25
o
C
Derate above 25
o
C
SYMBOL
V
DS
V
GS
I
D
I
DM
E
AS
P
D
156
1.25
-55~150
TO-220AB
ITO-220AB-F
o
UNITS
V
V
A
A
mJ
600
+30
10
40
654
50
0.4
W
W/
o
C
o
Operating Junction and
Storage Temperature Range
Typical Thermal resistance
-
-
Junction to Case
Junction to Ambient
T
J
,T
STG
C
R
θJC
R
θJA
0.8
62.5
2.5
120
o
C/W
Limited only By Maximum Junction Temperature
March 10,2014-REV.00
Page 1
PPJP10NA60
/ PJF10NA60
Electrical Characteristics
(T
A
=25 C unless otherwise noted)
PARAMETER
Static
Drain-Source Breakdown Voltage
Gate Threshold Voltage
Drain-Source On-State Resistance
Zero Gate Voltage Drain Current
Gate-Source Leakage Current
Diode Forward Voltage
Dynamic
(Note 4)
Total Gate Charge
Gate-Source Charge
Gate-Drain Charge
Input Capacitance
Output Capacitance
Reverse Transfer Capacitance
Turn-On Delay Time
Turn-On Rise Time
Turn-Off Delay Time
Turn-Off Fall Time
Drain-Source Diode
Maximum Continuous Drain-Source
Diode Forward Current
Maximum Pulsed Drain-Source
Diode Forward Current
Reverse Recovery Time
Reverse Recovery Charge
I
S
I
SM
trr
Qrr
---
---
V
GS
=0V, I
S
=10A
dI
F
/ dt=100A/us
(Note 2)
-
-
-
-
-
-
450
4.2
10
40
-
-
A
A
ns
uC
Q
g
Q
gs
Q
gd
Ciss
Coss
Crss
td
(on)
t
r
td
(off)
t
f
V
DS
=480V, I
D
=10A,
V
GS
=10V
(Note 2,3)
V
DS
=25V, V
GS
=0V,
f=1.0MHZ
V
DD
=300V, I
D
=10A,
R
G
=25Ω
(Note 2,3)
o
SYMBOL
BV
DSS
V
GS(th)
R
DS(on)
I
DSS
I
GSS
V
SD
TEST CONDITION
V
GS
=0V,I
D
=250uA
V
DS
=V
GS
,I
D
=250uA
V
GS
=10V,I
D
=5A
V
DS
=600V,V
GS
=0V
V
GS
=+30V,V
DS
=0V
I
S
=10A,V
GS
=0V
MIN.
600
2
-
-
-
-
-
-
-
-
-
-
-
-
-
-
TYP.
-
2.6
0.76
0.01
+10
0.89
23
7
6.5
1192
137
1.3
16
29
51
32
MAX.
-
4
0.9
1.0
+100
1.4
-
-
-
-
-
-
-
-
-
-
UNITS
V
V
Ω
uA
nA
V
nC
pF
ns
NOTES :
1. L=30mH, I
AS
=6.4A, V
DD
=50V, R
G
=25ohm, Starting T
J
=25
o
C
2. Pulse width<300us, Duty cycle<2%
3. Essentially independent of operating temperature typical characteristics.
4. Guaranteed by design, not subject to production testing
March 10,2014-REV.00
Page 2
PPJP10NA60
/ PJF10NA60
TYPICAL CHARACTERISTIC CURVES
Fig.1 Output Characteristics
Fig.2 Transfer Characteristics
Fig.3 On-Resistance vs. Drain Current
Fig.4 On-Resistance vs. Junction Temperature
Fig.5 Capacitance vs. Drain-Source Voltage
Fig.6 Source-Drain Diode Forward Voltage
March 10,2014-REV.00
Page 3
PPJP10NA60
/ PJF10NA60
TYPICAL CHARACTERISTIC CURVES
Fig.7 Gate Charge
Fig.8 BV
DSS
vs. Junction Temperature
Fig.9
Threshold Voltage Variation with Temperature
Fig.10 Maximum Safe Operating Area
Fig.11 Maximum Safe Operating Area
March 10,2014-REV.00
Page 4
PPJP10NA60
/ PJF10NA60
TYPICAL CHARACTERISTIC CURVES
Fig.13 PJP10NA60 Normalized Transient Thermal Impedance vs. Pulse Width
Fig.14 PJF10NA60 Normalized Transient Thermal Impedance vs. Pulse Width
March 10,2014-REV.00
Page 5
查看更多>
有关于pcb更新的问题
在ad10绘制原理图的时候,一个元件忘了加封装了,后来制作pcb图的时候,线已经画了差不多了,才发现少了一个一个元件封装,遇到这种情况,怎么处理啊,我不想重新生成一个pcb图,重新布局重新布线有关于pcb更新的问题在原理图设置好元件的封装之后,直接在原理图里面选择更新到pcb就行。楼上正解,直接在你原先的原理图里面添加好封装,更新即可~类似忘记添加封装这样的问题,,在原理图生产PCB之前,要进行原理图编译,软件会发现的,到时候以错误信息告诉按楼上说的ad软件不是很熟悉,不过我使用过...
静书剑心 PCB设计
车用FPGA解决方案
分析家估计,汽车远程通信业务和硬件的总收益将于未来五年内超越200亿美元,而电子元件供应商正积极投资开发这个新兴而迅速扩张的市场。总体来说,汽车电子有望成为半导体行业的一个亮点,带领整个行业走出谷底。想想今天在路上行驶的汽车总数,就知道汽车电子的市场发展潜力实在惊人,新一代的汽车电子器件还有庞大的发展空间。随着汽车制造商集成各种新颖的乘客安全、舒适、信息和远程信息处理设备,元器件供应商正将业界的设计挑战转化为获得可观收益的良机。FPGA的优势和汽车电子的主流需求开始出现吻合,使设计人员可使用...
frozenviolet 汽车电子
模拟精密技术杂谈之如何合并误差项
转自deyisupport计算系统的总误差是一件需要些技巧的工作,特别是在技术规格的单位变化很大时更是如此。当计算总体误差时,在合并前,所有技术规格必须被转换为一个共同的单位。这篇博文将告诉你如何在伏特、百分率和百万分率(ppm)之间进行转换,以确保总体系统误差的正确计算。线性器件数据表中的大多数误差是折算到输入端的(RTI)。将误差折算到输入端有三个主要的好处:他将输出上总体误差的每一个误差源分离开来,不需要知道器件增益,并且简化了将总体误差折算到输出端的计算方法。为了在伏特、百...
maylove 模拟与混合信号
电源PCB Layout的一般要求
PCBLayout是开关电源研发过程中的极为重要的步骤和环节,关系到开关电源能否正常工作,生产是否顺利进行,使用是否安全等问题。开关电源PCBLayout比起其它产品PCBLayout来说都要复杂和困难,要考虑的问题要多得多,归纳起来主要有以下几个方面的要求:一.电路要求1.PCB中的元器件必须与BOM一致。2.线条走线必须符合原理图,利用网络联机可以轻做到这一点。3.线条宽度必须满足最大电流要求,不得小于1mm/1A,以保证线条温升不超过...
木犯001号 电源技术
WinCE操作系统是如何调用实时时钟的 OEMGetRealTime() 函数获取时间的?
WinCE启动以后,默认情况下,WinCE会每隔一段时间调用OEMGetRealTime()函数来获得系统的时间SC_GetRealTime----调用----OEMGetRealTime();SC_GetRealTime声明在Win32Methods,请问这个Win32Methods如何被操作系统调用?////////////////////////////////////////////////////////////////////////////////////...
HGP965 WindowsCE
开关电源EMI整改
开关电源EMI整改多谢楼主分享,小结很详细...
hjl0903 开关电源学习小组