参数资料
型号: SI8400AB-B-IS
厂商: Silicon Laboratories Inc
文件页数: 14/34页
文件大小: 0K
描述: IC ISOLATOR BIDIR I2C 8-SOIC
视频文件: Digital Isolation Overview
Digital Isolators vs. Optocouplers
标准包装: 96
输入 - 1 侧/2 侧: 2/2
通道数: 2
电源电压: 3 V ~ 5.5 V
电压 - 隔离: 2500Vrms
数据速率: 10Mbps
输出类型: 开路漏极
封装/外壳: 8-SOIC(0.154",3.90mm 宽)
供应商设备封装: 8-SOICN
包装: 管件
工作温度: -40°C ~ 125°C
配用: 336-1765-ND - KIT EVAL FOR SI84XXISO
Si840x
3.3. Layout Recommendations
To ensure safety in the end user application, high voltage circuits (i.e., circuits with >30 V AC ) must be physically
separated from the safety extra-low voltage circuits (SELV is a circuit with <30 V AC ) by a certain distance
(creepage/clearance). If a component, such as a digital isolator, straddles this isolation barrier, it must meet those
creepage/clearance requirements and also provide a sufficiently large high-voltage breakdown protection rating
(commonly referred to as working voltage protection). Table 6 on page 9 and Table 7 on page 9 detail the working
voltage and creepage/clearance capabilities of the Si84xx. These tables also detail the component standards
(UL1577, IEC60747, CSA 5A), which are readily accepted by certification bodies to provide proof for end-system
specifications requirements. Refer to the end-system specification (61010-1, 60950-1, etc.) requirements before
starting any design that uses a digital isolator.
The following sections detail the recommended bypass and decoupling components necessary to ensure robust
overall performance and reliability for systems using the Si84xx digital isolators.
3.3.1. Supply Bypass
Digital integrated circuit components typically require 0.1 μF (100 nF) bypass capacitors when used in electrically
quiet environments. However, digital isolators are commonly used in hazardous environments with excessively
noisy power supplies. To counteract these harsh conditions, it is recommended that an additional 1 μF bypass
capacitor be added between VDD and GND on both sides of the package. The capacitors should be placed as
close as possible to the package to minimize stray inductance. If the system is excessively noisy, it is
recommended that the designer add 50 to 100 ? resistors in series with the VDD supply voltage source and 50 to
300 ? resistors in series with the digital inputs/outputs (see Figure 8). For more details, see "5.Errata and Design
Migration Guidelines" on page 22.
All components upstream or downstream of the isolator should be properly decoupled as well. If these components
are not properly decoupled, their supply noise can couple to the isolator inputs and outputs, potentially causing
damage if spikes exceed the maximum ratings of the isolator (6 V). In this case, the 50 to 300 ? resistors protect
the isolator's inputs/outputs (note that permanent device damage may occur if the absolute maximum ratings are
exceeded). Functional operation should be restricted to the conditions specified in Table 3, “Si8400/01/02/05
Electrical Characteristics for Bidirectional I2C Channels 1 ,” on page 5. and Table 4, “Electrical Characteristics for
Unidirectional Non-I2C Digital Channels (Si8402/05),” on page 7
3.3.2. Pin Connections
No connect pins are not internally connected. They can be left floating, tied to V DD , or tied to GND.
3.3.3. Output Pin Termination
The nominal output impedance of an non-I 2 C isolator driver channel is approximately 85 ? , ±40%, which is a
combination of the value of the on-chip series termination resistor and channel resistance of the output driver FET.
When driving loads where transmission line effects will be a factor, output pins should be appropriately terminated
with controlled impedance PCB traces. The series termination resistor values should be scaled appropriately while
keeping in mind the recommendations described in “3.3.1. Supply Bypass” above.
V Source 1
R1 (50 – 100 ? )
V Source 2
R2 (50 – 100 ? )
C1
0.1 ? F
50 – 300 ?
AVDD
Ax
BVDD
Bx
50 – 300 ?
C4
0.1 ? F
C2
C3
1 ? F
Input/Output
50 – 300 ?
Ax
AGND
Bx
BGND
Input/Output
50 – 300 ?
1 ? F
Figure 8. Recommended Bypass Components for the Si84xx Digital Isolator Family
14
Rev. 1.6
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