方案
设计
NCP1618是一款创新多模式功率因数控制器。根据开关周期的持续时间不同,电路可从临界导通模式(CrM)自然过渡到连续导通模式(CCM),反之亦然,从而优化线路/负载效率。在极轻负载条件下,电路可进入软SKIP模式,从而最大化降低损耗。采用SO-9封装,进一步集成了强固紧凑的 PFC 级所需的功能,只需最少数量的外部元件。
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状态
CAD Models
Compliance
Package Type
Case Outline
MSL Type
MSL Temp (°C)
Container Type
Container Qty.
ON Target
PFC Mode
Frequency Operation
Control Mode
Topology
fSW Typ (kHz)
VCC Max (V)
Drive Cap. (mA)
UVLO (V)
Latch
UVP
Inhibition
Reference Price
NCP1618BDR2G
Active
Pb
A
H
P
SOIC-9 NB
1
260
REEL
2500
F
MM
Variable
Voltage Mode
Step-Up
65 / Variable
35
500 / 800
10.5
Yes
Yes
No
$0.483
More Details
NCP1618CDR2G
Active
Pb
A
H
P
SOIC-9 NB
1
260
REEL
2500
F
MM
Variable
Voltage Mode
Step-Up
65 / Variable
35
500 / 800
17
Yes
Yes
No
$0.46
More Details
NCP1618DDR2G
Active
Pb
A
H
P
SOIC-9 NB
1
260
REEL
2500
F
MM
Variable
Voltage Mode
Step-Up
65 / Variable
35
500 / 800
17
Yes
Yes
No
$0.46
More Details
NCP1618FDR2G
Active
Pb
A
H
P
SOIC-9 NB
1
260
REEL
2500
F
CCM
Fixed
Voltage Mode
Step-Up
65
35
500 / 800
17
Yes
Yes
No
$0.5333
More Details
NCP1618HDR2G
Active
Pb
A
H
P
SOIC-9 NB
1
260
REEL
2500
F
CCM
Fixed
Voltage Mode
Step-Up
65
35
500 / 800
17
Yes
Yes
No
$0.5333
More Details
NCP1618JDR2G
Active
Pb
A
H
P
SOIC-9 NB
1
260
REEL
2500
F
CCM
Fixed
Voltage Mode
Step-Up
65
35
500 / 800
17
Yes
Yes
No
$0.5333
More Details
NCP1618KDR2G
Active
Pb
A
H
P
SOIC-9 NB
1
260
REEL
2500
F
MM
Variable
Voltage Mode
Step-Up
125 / Variable
35
500 / 800
17
Yes
Yes
No
$0.5333
More Details
NCP1618LDR2G
Active
Pb
A
H
P
SOIC-9 NB
1
260
REEL
2500
F
CRM
Variable
Voltage Mode
Step-Up
44 / Variable
35
500 / 800
17
Yes
Yes
No
$0.5889
More Details
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可靠性数据
Die Related Summary Data
Device: NCP1618BDR2G
Equivalent to wafer fab process: ONC25
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
ONC25
1
2712519294
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.)
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