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MC34151/MC33151 是非反向双高速驱动器,针对需要低电流数字电路来驱动具有高摆率的大电容负载的应用而设计。这些器件具有低输入电流因此可兼容 CMOS/LSTTL 逻辑,输入迟滞实现快速输出开关而不受输入转换时间影响,还有两路高电流图腾柱输出,极其适用于驱动功率 MOSFET。另外还包括带有迟滞的欠压锁定,以防系统在低电源电压下错误运行。典型应用包括开关电源、DC-DC 转换器、电容电荷泵倍压器/逆变器和电机控制器。此类器件采用双列直插和表面贴装封装。
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状态
CAD Models
Compliance
Package Type
Case Outline
MSL Type
MSL Temp (°C)
Container Type
Container Qty.
ON Target
Power Switch
Number of Outputs
Topology
Isolation Type
Vin Max (V)
VCC Max (V)
Rise Time (ns)
Fall Time (ns)
Drive Source Current Typ (A)
Drive Sink Current Typ (A)
Turn On Prop. Delay Typ (ns)
Turn Off Prop. Delay Typ (ns)
Delay Matching
Reference Price
MC33151DG
Active
Pb
A
H
P
SOIC-8
1
260
TUBE
98
N
MOSFET
2
Dual
Non-Isolated
18
18
14
16
1.5
1.5
35
36
-
$0.6734
More Details
MC33151DR2G
Active
Pb
A
H
P
SOIC-8
1
260
REEL
2500
Y
MOSFET
2
Dual
Non-Isolated
18
18
14
16
1.5
1.5
35
36
-
$0.8633
More Details
MC33151PG
Active
Pb
A
H
P
PDIP-8
NA
0
TUBE
50
N
MOSFET
2
Dual
Non-Isolated
18
18
14
16
1.5
1.5
35
36
-
$0.682
More Details
MC33151VDR2G
Active
Pb
A
H
P
SOIC-8
1
260
REEL
2500
N
MOSFET
2
Dual
Non-Isolated
18
18
14
16
1.5
1.5
35
36
-
$0.4773
More Details
MC34151DG
Active
Pb
A
H
P
SOIC-8
1
260
TUBE
98
N
MOSFET
2
Dual
Non-Isolated
18
18
14
16
1.5
1.5
35
36
-
$0.6674
More Details
MC34151DR2G
Active
Pb
A
H
P
SOIC-8
1
260
REEL
2500
Y
MOSFET
2
Dual
Non-Isolated
18
18
14
16
1.5
1.5
35
36
-
$0.8633
More Details
MC34151PG
Pb
A
H
P
PDIP-8
NA
0
TUBE
50
N
MOSFET
2
Dual
Non-Isolated
18
18
14
16
1.5
1.5
35
36
-
Price N/A
More Details
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可靠性数据
Die Related Summary Data
Device: MC33151DG
Equivalent to wafer fab process: BP STD LINEAR
产品技术
产品技术
等效器件小时
平均故障间隔时间/平均无故障时间(按小时计算)
FITS
BP STD LINEAR
10
12120914040
More Details
Re-calculate Data
Data is based on the following assumptions.
Note: The temperature and confidence level may be adjusted to your requirements.
Disclaimer: A reliability FIT rate calculated using this tool shall not be used for any functional safety purpose. In case a raw FIT rate needs to be estimated for a component which is targeted to be used in a safety critical application (i.e. compliant to ISO 26262 standard) it should be calculated according to generic safety standards (IEC62380, IEC61709, SN29500, FIDES, etc.)