OPA1654AIPW

Texas Instruments
595-OPA1654AIPW
OPA1654AIPW

制造商:

说明:
音频放大器 Low Noise & Dist FET Inp Aud Op Amp A 59 A 595-OPA1654AIPWR

ECAD模型:
下载免费库加载程序,将此文件转换,以供您的ECAD工具使用。了解详情。

库存量: 27,403

库存:
27,403 可立即发货
生产周期:
9 周 大于所示数量的预计工厂生产时间。
本产品所报告的交付时间长。
最少: 1   倍数: 1
单价:
¥-.--
总价:
¥-.--
预估关税:

定价 (含13% 增值税)

数量 单价
总价
¥35.1543 ¥35.15
¥26.4646 ¥264.65
¥24.3176 ¥607.94
¥21.922 ¥1,972.98
¥18.7806 ¥5,070.76
¥18.6902 ¥10,092.71
¥18.1139 ¥19,563.01
¥17.8653 ¥45,020.56

备用包装

制造商零件编号:
包装:
Reel, Cut Tape, MouseReel
供货情况:
库存量
单价:
¥32.0468
最小:
1

类似产品

Texas Instruments OPA1654AIPWR
Texas Instruments
音频放大器 Low Noise & Dist FET Inp Aud Op Amp A 59 A 595-OPA1654AIPW

产品属性 属性值 选择属性
Texas Instruments
产品种类: 音频放大器
RoHS:  
Rail-to-Rail
0.00005 %
TSSOP-14
2.25 V
18 V
- 40 C
+ 85 C
SMD/SMT
OPA1654
Tube
商标: Texas Instruments
GBP-增益带宽产品: 18 MHz
Ib - 输入偏流: 100 pA
湿度敏感性: Yes
通道数量: 4 Channel
工作电源电流: 2 mA
产品: Audio Amplifiers
产品类型: Audio Amplifiers
SR - 转换速率 : 10 V/us
工厂包装数量: 90
子类别: Audio ICs
类型: Rail-to-Rail
Vos - 输入偏置电压 : 1.5 mV
单位重量: 140.300 mg
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已选择的属性: 0

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合规代码
CNHTS:
8542339000
CAHTS:
8542330000
USHTS:
8542330001
JPHTS:
8542330996
KRHTS:
8532331000
MXHTS:
8542330201
ECCN:
EAR99
原产地分类
原产国:
马来西亚
组装原产国/地区:
不可用
扩散国家:
不可用
发货时,国家/地区可能会发生变化。

OPA1652 / OPA1654 SoundPLUS™ Audio Op Amps

Texas Instruments OPA1652 (Dual) and OPA1654 (Quad) SoundPLUS™ FET-Input Operational Amplifiers (Op Amps) achieve a low 4.5nV/√Hz noise density with an ultralow distortion of 0.00005% at 1kHz. TI OPA1652 and OPA1654 op amps offer rail-to-rail output swing to within 800mV with a 2kΩ load for increased headroom and maximized dynamic range. These TI devices also have a high output drive capability of ±30mA. OPA1652 and OPA1654 op amps operate over a wide supply range of ±2.25V to ±18V or +4.5V to +36V on only 2mA of supply current per channel. Texas Instruments OPA1652 and OPA1654 op amps are unity-gain stable and provide excellent dynamic behavior over a wide range of load conditions. These devices also feature completely independent circuitry for lowest crosstalk and freedom from interactions between channels, even when overdriven or overloaded.