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C1608JB1H683K(080AA)

厂商:
TDK
类别:
陶瓷电容
包装:
Punched (Paper)Taping [180mm Reel]
封装:
-
无铅情况/ROHS:
-
描述:
-

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  • 参数
  • 描述
  • 文档
参数 数值
端子间距尺寸(G)-Min 0.3 mm
耐电压-Nom 125V
电容容差符号 K
主体纵长(W)-Min 0.7 mm
最少包装数-Nom 4000Pcs
主体高度(T)-Min 0.7 mm
使用温度范围-Max 85Cel
保存温度范围-Max 40Cel
适用焊接方法 Flow,Reflow
保存温度范围-Min 5Cel
主体纵长(W)-Nom 0.8 mm
主体高度(T)-Max 0.9 mm
主体高度(T)-Nom 0.8 mm
损失角正切测定频率-Nom 1 kHz
尺寸代码 1608
用途类別 General
额定电压符号 1H
电容容差(%)-Min -10%
额定电压的分类 DC
额定电容-Nom 68000 pF
端子宽度尺寸(B)-Min 0.2 mm
主体纵长(W)-Max 0.9 mm
耐电压的分类 DC
主体横宽(L)-Min 1.5 mm
电容温度特性-Min -10%
损失角正切-Max 2.5%
温度特性符号 JB
包装形式 Punched (Paper)Taping [180mm Reel]
电容容差(%)-Max 10%
主体横宽(L)-Nom 1.6 mm
最少供货数-Nom 4000Pcs
电容温度特性-Max 10%
使用温度范围-Min -25Cel
端子数-Nom 2
主体横宽(L)-Max 1.7 mm
额定电压-Max 50V
绝缘电阻-Min 7352 MOhm
表面安装分类 Yes
元件数-Nom 1

特点
Offset Voltage...........50μV Max
Offset Voltage Drift...........1μV/°C Max
Bias Current...........250pA Max
Offset Current............250pA Max
Bias and Offset Current Drift............4pA/°C Max
Supply Current...........560μA Max
0.1Hz to 10Hz Noise...........0.5μVp-p, 2.2pAp-p
CMRR............115dB Min
Voltage Gain...........117dB Min
PSRR...........114dB Min
Guaranteed Operation on Two NiCad Batteries

典型应用

典型应用

描述
描述 LT?1097 achieves a new standard in combining low price and outstanding precision performance. On all operational amplifier data sheets, the specifications listed on the front page are for highly selected, expensive grades, while the specs for the low cost grades are buried deep in the data sheet. The LT1097 does not have any selected grades, the outstanding specifications shown in the Features section are for its only grade. The design effort of the LT1097 concentrated on optimizing the performance of all precision specs?at only 350μA of supply current. Typical values are 10μV offset voltage, 40pA bias and offset currents, 0.2μV/°C and 0.4pA/°C drift. Common mode and power supply rejections, voltage gain are typically in excess of 128dB. All parameters that are important for precision, low power op amps have been optimized. Consequently, using the LT1097 error budget calculations in most applications is unnecessary.

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