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ADUM1300 PDF预览

ADUM1300

更新时间: 2024-02-27 17:29:10
品牌 Logo 应用领域
亚德诺 - ADI /
页数 文件大小 规格书
20页 846K
描述
Triple-Channel Digital Isolators

ADUM1300 技术参数

是否无铅: 含铅是否Rohs认证: 符合
生命周期:Active零件包装代码:SOIC
包装说明:SOP, SOP16,.4针数:16
Reach Compliance Code:compliantECCN代码:EAR99
HTS代码:8543.70.99.60风险等级:5.81
接口集成电路类型:INTERFACE CIRCUIT接口标准:EIA-232; EIA-422; EIA-485
JESD-30 代码:R-PDSO-G16JESD-609代码:e3
长度:10.3 mm湿度敏感等级:1
功能数量:3端子数量:16
最高工作温度:125 °C最低工作温度:-40 °C
封装主体材料:PLASTIC/EPOXY封装代码:SOP
封装等效代码:SOP16,.4封装形状:RECTANGULAR
封装形式:SMALL OUTLINE峰值回流温度(摄氏度):260
认证状态:Not Qualified筛选级别:AEC-Q100
座面最大高度:2.65 mm最大供电电压:5.5 V
最小供电电压:3 V标称供电电压:5 V
表面贴装:YES技术:CMOS
温度等级:AUTOMOTIVE端子面层:Matte Tin (Sn)
端子形式:GULL WING端子节距:1.27 mm
端子位置:DUAL处于峰值回流温度下的最长时间:30
宽度:7.5 mm

ADUM1300 数据手册

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ADuM1300/ADuM1301  
Parameter  
Symbol  
Min  
Typ  
Max Unit  
Test Conditions  
For All Models  
Output Disable Propagation Delay  
(High/Low-to-High Impedance)  
Output Enable Propagation Delay  
(High Impedance to High/Low)  
Output Rise/Fall Time (10% to 90%)  
5 V/3 V Operation  
3 V/5 V Operation  
Common-Mode Transient Immunity at  
Logic High Output8  
Common-Mode Transient Immunity at  
Logic Low Output8  
Refresh Rate  
tPHZ, tPLH  
6
6
8
8
ns  
ns  
CL = 15 pF, CMOS signal levels  
CL = 15 pF, CMOS signal levels  
CL = 15 pF, CMOS signal levels  
tPZH, tPZL  
tR/tf  
3.0  
2.5  
35  
ns  
ns  
kV/µs  
|CMH|  
|CML|  
fr  
25  
25  
VIx = VDD1/VDD2, VCM = 1000 V,  
transient magnitude = 800 V  
VIx = 0 V, VCM = 1000 V,  
35  
kV/µs  
transient magnitude = 800 V  
5 V/3 V Operation  
3 V/5 V Operation  
1.2  
1.1  
Mbps  
Mbps  
Input Dynamic Supply Current, per Channel9 IDDI (D)  
5 V/3 V Operation  
0.19  
0.10  
mA/Mbps  
mA/Mbps  
3 V/5 V Operation  
Output Dynamic Supply Current, per Channel9  
IDDI (D)  
5 V/3 V Operation  
3 V/5 V Operation  
0.03  
0.05  
mA/Mbps  
mA/Mbps  
1 All voltages are relative to their respective ground.  
2 Supply current values for all three channels are combined when running at identical data rates. Output supply current values are specified with no output load present. The  
supply current associated with an individual channel operating at a given data rate may be calculated as described in the Power Consumption section on Page 17. See Figure 6  
through Figure 8 for information on per-channel supply current as a function of data rate for unloaded and loaded conditions. See Figure 9 through Figure 12 for total IDD1 and IDD2  
supply currents as a function of data rate for ADuM1300/ADuM1301 channel configurations.  
3 The minimum pulse width is the shortest pulse width at which the specified pulse-width distortion is guaranteed.  
4 The maximum data rate is the fastest data rate at which the specified pulse-width distortion is guaranteed.  
5 tPHL propagation delay is measured from the 50% level of the falling edge of the VIx signal to the 50% level of the falling edge of the VOx signal. tPLH propagation delay is measured  
from the 50% level of the rising edge of the VIx signal to the 50% level of the rising edge of the VOx signal.  
6 tPSK is the magnitude of the worst-case difference in tPHL or tPLH that is measured between units at the same operating temperature, supply voltages, and output load within the  
recommended operating conditions.  
7 Co-directional channel-to-channel matching is the absolute value of the difference in propagation delays between any two channels with inputs on the same side of the isolation  
barrier. Opposing-directional channel-to-channel matching is the absolute value of the difference in propagation delays between any two channels with inputs on opposing  
sides of the isolation barrier.  
8 CMH is the maximum common-mode voltage slew rate that can be sustained while maintaining VO > 0.8 VDD2. CML is the maximum common-mode voltage slew rate that can be  
sustained while maintaining VO < 0.8 V. The common-mode voltage slew rates apply to both rising and falling common-mode voltage edges. The transient magnitude is the  
range over which the common mode is slewed.  
9 Dynamic supply current is the incremental amount of supply current required for a 1 Mbps increase in signal data rate. See Figure 6 through Figure 8 for information on per-  
channel supply current for unloaded and loaded conditions. See the Power Consumption section on Page 17 for guidance on calculating the per-channel supply current for a  
given data rate.  
Rev. C | Page 9 of 20  
 
 

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