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公司介绍
NCS2003 系列运算放大器为高摆率、低电压运行,具有轨对轨输出驱动能力。1.8 V 运行可实现低电压、小功率应用中的高性能运行。快速摆率和一致增益宽带宽(1.8 V 下 5 MHz)使得这些运算放大器适用于高速应用。低输入偏移电压(最大 4 mV)使得该运算放大器能够用于电流分路监控。其他功能包括无输出相位逆向,具有过驱动输入以及 1 pA 的超低输入偏置电流。 NCS2003 系列是多种应用和产品的理想方案。单沟道 NCS2003、双沟道 NCS20032 和四沟道 NCS20034 采用多种紧凑、节省空间的封装。NCV 前缀表示该器件经过 AEC−Q100 认证,具有 PPAP 功能。
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可订购器件:
6
产品
状态
CAD Models
Compliance
Package Type
Case Outline
MSL Type
MSL Temp (°C)
Container Type
Container Qty.
ON Target
Rail to Rail
Channels
VS Min (V)
VS Max (V)
Iq Typ (mA)
VOS Max (mV)
GBW Typ (MHz)
SR Typ (V/µs)
IO Typ (mA)
ΔVOS/ΔT (μV/C)
eN (nV/√Hz)
Ibias Typ (pA)
CMRR Typ (dB)
Architecture
Temperature Range (°C)
Reference Price
NCS20032DMR2G
Active
Pb
A
H
P
Micro8
1
260
REEL
4000
Y
Output
2
1.7
5.5
0.325
4
7
8
76
2
20
1
90
CMOS
-40 to 125
$0.2243
More Details
NCS20032DR2G
Active
Pb
A
H
P
SOIC-8
1
260
REEL
2500
Y
Output
2
1.7
5.5
0.325
4
7
8
76
2
20
1
90
CMOS
-40 to 125
$0.2099
More Details
NCS20032DTBR2G
Active
Pb
A
H
P
TSSOP-8
1
260
REEL
2500
Y
Output
2
1.7
5.5
0.325
4
7
8
76
2
20
1
90
CMOS
-40 to 125
$0.2507
More Details
NCV20032DMR2G
Active
Pb
A
H
P
Micro8
1
260
REEL
4000
Y
Output
2
1.7
5.5
0.325
4
7
8
76
2
20
1
90
CMOS
-40 to 125
$0.2875
More Details
NCV20032DR2G
Active
Pb
A
H
P
SOIC-8
1
260
REEL
2500
Y
Output
2
1.7
5.5
0.325
4
7
8
76
2
20
1
90
CMOS
-40 to 125
$0.3105
More Details
NCV20032DTBR2G
Active
Pb
A
H
P
TSSOP-8
1
260
REEL
2500
Y
Output
2
1.7
5.5
0.325
4
7
8
76
2
20
1
90
CMOS
-40 to 125
$0.2875
More Details
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可靠性数据
Die Related Summary Data
Device: NCS20032DMR2G
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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