参数资料
型号: ADUM3201ARZ
厂商: Analog Devices Inc
文件页数: 16/20页
文件大小: 0K
描述: IC DIGITAL ISOLATOR 2CH 8-SOIC
其它图纸: ADUMx201 Series Block Diagram
标准包装: 98
系列: iCoupler®
输入 - 1 侧/2 侧: 1/1
通道数: 2
电源电压: 2.7 V ~ 5.5 V
电压 - 隔离: 2500Vrms
数据速率: 1Mbps
传输延迟: 150ns
输出类型: 逻辑
封装/外壳: 8-SOIC(0.154",3.90mm 宽)
供应商设备封装: 8-SO
包装: 管件
工作温度: -40°C ~ 105°C
产品目录页面: 2766 (CN2011-ZH PDF)

ADuM3200/ADuM3201
APPLICATION INFORMATION
PC BOARD LAYOUT
The ADuM3200 / ADuM3201 digital isolators require no
external interface circuitry for the logic interfaces. Power
supply bypassing is strongly recommended at the input and
output supply pins. The capacitor value should be between
0.01 μF and 0.1 μF. The total lead length between both ends
of the capacitor and the input power supply pin should not
exceed 20 mm. See the AN-1109 Application Note for board
layout guidelines.
SYSTEM-LEVEL ESD CONSIDERATIONS AND
ENHANCEMENTS
System-level ESD reliability (for example, per IEC 61000-4-x)
is highly dependent on system design which varies widely by
application. The ADuM3200 / ADuM3201 incorporate many
enhancements to make ESD reliability less dependent on system
design. The enhancements include:
? ESD protection cells added to all input/output interfaces.
? Key metal trace resistances reduced using wider geometry
and paralleling of lines with vias.
? The SCR effect inherent in CMOS devices minimized by
use of guarding and isolation technique between PMOS
and NMOS devices.
? Areas of high electric field concentration eliminated using
45° corners on metal traces.
? Supply pin overvoltage prevented with larger ESD clamps
between each supply pin and its respective ground.
While the ADuM3200 / ADuM3201 improve system-level
ESD reliability, they are no substitute for a robust system-level
design. See the AN-793 Application Note, ESD/Latch-Up
Considerations with i Coupler Isolation Products for detailed
recommendations on board layout and system-level design.
PROPAGATION DELAY-RELATED PARAMETERS
Propagation delay is a parameter that describes the time it takes
a logic signal to propagate through a component. The propagation
delay to a logic low output can differ from the propagation
delay to a logic high.
Data Sheet
Channel-to-channel matching refers to the maximum amount
that the propagation delay differs between channels within a
single ADuM3200 / ADuM3201 component.
Propagation delay skew refers to the maximum amount that
the propagation delay differs between multiple ADuM3200 /
ADuM3201 components operating under the same conditions.
DC CORRECTNESS AND MAGNETIC FIELD IMMUNITY
Positive and negative logic transitions at the isolator input cause
narrow (~1 ns) pulses to be sent to the decoder via the transformer.
The decoder is bistable and is therefore either set or reset by the
pulses, indicating input logic transitions. In the absence of logic
transitions of more than ~1 μs at the input, a periodic set of
refresh pulses indicative of the correct input state are sent to
ensure dc correctness at the output. If the decoder receives
no internal pulses for more than about 5 μs, the input side is
assumed to be unpowered or nonfunctional, in which case,
the isolator output is forced to a default state (see Table 32 and
Table 33) by the watchdog timer circuit.
The ADuM3200 / ADuM3201 are extremely immune to external
magnetic fields. The limitation on the ADuM3200 / ADuM3201 ’s
magnetic field immunity is set by the condition in which induced
voltage in the transformer’s receiving coil is sufficiently large to
either falsely set or reset the decoder. The following analysis
defines the conditions under which this can occur. The 3 V
operating condition of the ADuM3200 / ADuM3201 is examined
because it represents the most susceptible mode of operation.
The pulses at the transformer output have an amplitude greater
than 1.0 V. The decoder has a sensing threshold at about 0.5 V,
therefore establishing a 0.5 V margin in which induced voltages
can be tolerated. The voltage induced across the receiving coil is
given by
V = (? dβ / dt ) ∑π r n 2 , n = 1, 2,…, N
where:
β is the magnetic flux density (gauss).
N is the number of turns in the receiving coil.
r n is the radius of the nth turn in the receiving coil (cm).
INPUT (V Ix )
OUTPUT (V Ox )
t PLH
t PHL
50%
50%
Figure 12. Propagation Delay Parameters
Pulse width distortion is the maximum difference between
these two propagation delay values and is an indication of
how accurately the input signal’s timing is preserved.
Rev. C | Page 16 of 20
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ADUM3201ARZ-RL7 功能描述:IC DIGITAL ISOLATOR 2CH 8-SOIC RoHS:是 类别:隔离器 >> 数字隔离器 系列:iCoupler® 产品培训模块:IsoLoop® Isolator 标准包装:50 系列:IsoLoop® 输入 - 1 侧/2 侧:5/0 通道数:5 电源电压:3 V ~ 5.5 V 电压 - 隔离:2500Vrms 数据速率:110Mbps 传输延迟:12ns 输出类型:CMOS 封装/外壳:16-SOIC(0.154",3.90mm 宽) 供应商设备封装:16-SOIC N 包装:管件 工作温度:-40°C ~ 85°C 其它名称:390-1053-5
ADUM3201BR 制造商:Analog Devices 功能描述:IC DIGITAL ISOLATOR DUAL 8SOIC 制造商:Analog Devices 功能描述:IC, DIGITAL ISOLATOR, DUAL, 8SOIC 制造商:Analog Devices 功能描述:IC, DIGITAL ISOLATOR, DUAL, 8SOIC, No. of Channels:2, Propagation Delay:55ns, Su 制造商:Analog Devices 功能描述:IC, DIGITAL ISOLATOR, DUAL, 8SOIC, No. of Channels:2, Propagation Delay:55ns, Supply Voltage Min:2.7V, Supply Voltage Max:5.5V, Digital IC Case Style:NSOIC, No. of Pins:8, Supply Current:2.6mA, Operating Temperature Min:-40C, , RoHS Compliant: Yes
ADUM3201BRZ 功能描述:IC DIGITAL ISOLATOR 2CH 8-SOIC RoHS:是 类别:隔离器 >> 数字隔离器 系列:iCoupler® 标准包装:66 系列:iCoupler® 输入 - 1 侧/2 侧:2/2 通道数:4 电源电压:3.3V,5V 电压 - 隔离:2500Vrms 数据速率:25Mbps 传输延迟:60ns 输出类型:逻辑 封装/外壳:20-SSOP(0.209",5.30mm 宽) 供应商设备封装:20-SSOP 包装:管件 工作温度:-40°C ~ 105°C
ADUM3201BRZ 制造商:Analog Devices 功能描述:DIGITAL ISOLATOR 2CH 50NS NSOIC-8 制造商:Analog Devices 功能描述:DIGITAL ISOLATOR, 2CH, 50NS, NSOIC-8
ADUM3201BRZ-RL7 功能描述:IC DIGITAL ISOLATOR 2CH 8-SOIC RoHS:是 类别:隔离器 >> 数字隔离器 系列:iCoupler® 产品培训模块:IsoLoop® Isolator 标准包装:50 系列:IsoLoop® 输入 - 1 侧/2 侧:5/0 通道数:5 电源电压:3 V ~ 5.5 V 电压 - 隔离:2500Vrms 数据速率:110Mbps 传输延迟:12ns 输出类型:CMOS 封装/外壳:16-SOIC(0.154",3.90mm 宽) 供应商设备封装:16-SOIC N 包装:管件 工作温度:-40°C ~ 85°C 其它名称:390-1053-5