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What is ADUM1310?

This electronic component, produced by the manufacturer "Analog Devices", performs the same function as "Triple-Channel Digital Isolator".


ADUM1310 Datasheet PDF - Analog Devices

Part Number ADUM1310
Description Triple-Channel Digital Isolator
Manufacturers Analog Devices 
Logo Analog Devices Logo 


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Triple-Channel Digital Isolator with
Programmable Default Output
ADuM1310
FEATURES
GENERAL DESCRIPTION
Pb-free, 16-lead, wide body SOIC package
Low power operation
5 V operation
1.0 mA per channel max @ 0 Mbps to 2 Mbps
3.5 mA per channel max @ 10 Mbps
3 V operation
0.7 mA per channel max @ 0 Mbps to 2 Mbps
2.1 mA per channel max @ 10 Mbps
3 V/5 V level translation
High temperature operation: 105°C
Up to 10 Mbps data rate (NRZ)
Programmable default output state
Safety and regulatory approvals
UL recognition: 2500 V rms for 1 minute per UL 1577
CSA Component Acceptance Notice #5A
VDE certificate of conformity
DIN EN 60747-5-2 (VDE 0884 Part 2): 2003-01
DIN EN 60950 (VDE 0805): 2001-12; EN 60950: 2000
VIORM = 560 V peak
APPLICATIONS
General-purpose, unidirectional, multichannel isolation
The ADuM13101 is a unidirectional, triple-channel digital
isolator based on Analog Devices, Inc. iCoupler® technology.
Combining high speed CMOS and monolithic coreless trans-
former technology, this isolation component provides outstanding
performance characteristics superior to alternatives such as
optocoupler devices.
By avoiding the use of LEDs and photodiodes, iCoupler
devices remove the design difficulties commonly associated
with optocouplers. The typical concerns that arise with opto-
couplers, such as uncertain current transfer ratios, nonlinear
transfer functions, and temperature and lifetime effects, are
eliminated with the simple iCoupler digital interfaces and stable
performance characteristics. The need for external drivers and
other discretes is eliminated with these iCoupler products.
Furthermore, iCoupler devices run at one-tenth to one-sixth
the power consumption of optocouplers at comparable signal
data rates.
The ADuM1310 isolator provides three independent isolation
channels at data rates up to 10 Mbps. It operates with the supply
voltage of either side ranging from 2.7 V to 5.5 V, providing
compatibility with lower voltage systems as well as enabling a
voltage translation functionality across the isolation barrier.
This product also has a default output control pin. This allows
the user to define the logic state the outputs are to adopt in the
absence of the input VDD1 power. Unlike other optocoupler
alternatives, the ADuM1310 has a patented refresh feature that
ensures dc correctness in the absence of input logic transitions
and during power-up/power-down conditions.
FUNCTIONAL BLOCK DIAGRAM
ADuM1310
VDD1 1
GND1 2
VIA 3
VIB 4
VIC 5
ENCODE
ENCODE
ENCODE
DECODE
DECODE
DECODE
16 VDD2
15 GND2
14 VOA
13 VOB
12 VOC
NC 6
11 NC
DISABLE 7
10 CTRL
GND1 8
9 GND2
NC = NO CONNECT
Figure 1.
1 Protected by U.S. Patents 5,952,849; 6,873,065; and other pending patents.
Rev. E
Information furnished by Analog Devices is believed to be accurate and reliable. However, no
responsibility is assumed by Analog Devices for its use, nor for any infringements of patents or other
rights of third parties that may result from its use. Specifications subject to change without notice. No
license is granted by implication or otherwise under any patent or patent rights of Analog Devices.
Trademarksandregisteredtrademarksarethepropertyoftheirrespectiveowners.
One Technology Way, P.O. Box 9106, Norwood, MA 02062-9106, U.S.A.
Tel: 781.329.4700
www.analog.com
Fax: 781.461.3113
©2006 Analog Devices, Inc. All rights reserved.

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ADUM1310 equivalent
ADuM1310
ELECTRICAL CHARACTERISTICS—MIXED 5 V/3 V OR 3 V/5 V OPERATION
5 V/3 V operation1: 4.5 V ≤ VDD1 ≤ 5.5 V, 2.7 V ≤ VDD2 ≤ 3.6 V; 3 V/5 V operation: 2.7 V ≤ VDD1 ≤ 3.6 V, 4.5 V ≤ VDD2 ≤ 5.5 V;
all minimum/maximum specifications apply over the entire recommended operation range, unless otherwise noted; all typical
specifications are at TA = 25°C; VDD1 = 3.0 V, VDD2 = 5 V; or VDD1 = 5 V, VDD2 = 3.0 V.
Table 3.
Parameter
DC SPECIFICATIONS
ADuM1310, Total Supply Current, Three
Channels2
VDD1 Supply Current, Quiescent
5 V/3 V Operation
3 V/5 V Operation
VDD2 Supply Current, Quiescent
5 V/3 V Operation
3 V/5 V Operation
VDD1 Supply Current, 10 Mbps Data Rate
5 V/3 V Operation
3 V/5 V Operation
VDD2 Supply Current, 10 Mbps Data Rate
5 V/3 V Operation
3 V/5 V Operation
Input Currents
Logic High Input Threshold
5 V/3 V Operation
3 V/5 V Operation
Logic Low Input Threshold
5 V/3 V Operation
3 V/5 V Operation
Logic High Output Voltages
Logic Low Output Voltages
SWITCHING SPECIFICATIONS
Minimum Pulse Width3
Maximum Data Rate4
Propagation Delay5
Pulse Width Distortion, |tPLH – tPHL|5
Change vs. Temperature
Propagation Delay Skew6
Channel-to-Channel Matching7
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
Symbol
IDDI (Q)
IDDO (Q)
IDD1 (10)
IDD2 (10)
IIA, IIB, IIC, IID, ICTRL,
IDISABLE
VIH
VIL
VOAH, VOBH, VOCH,
VODH
VOAL, VOBL, VOCL,
VODL
PW
tPHL, tPLH
PWD
tPSK
tPSKCD
tR/tf
|CMH|
|CML|
Min Typ
Max Unit
2.4 3.2 mA
1.2 1.6 mA
0.8 1.0 mA
1.2 1.6 mA
6.5 8.2 mA
3.4 4.9 mA
1.1 1.3 mA
1.9 2.2 mA
–10
+0.01
+10 μA
2.0 V
1.6 V
0.8
0.4
VDD1/VDD2 − 0.4
VDD1/VDD2 − 0.2
V
V
V
0.2 0.4 V
10
20 30
5
3.0
2.5
25 35
25 35
100 ns
Mbps
50 ns
5 ns
ps/°C
30 ns
5 ns
ns
ns
kV/μs
kV/μs
Test Conditions
VIA = VIB = VIC = VID = 0
VIA = VIB = VIC = VID = 0
VIA = VIB = VIC = VID = 0
VIA = VIB = VIC = VID = 0
5 MHz logic signal frequency
5 MHz logic signal frequency
5 MHz logic signal frequency
5 MHz logic signal frequency
0 ≤ VIA, VIB, VIC, VID, VDISABLE ≤ VDD1,
0 ≤ VCTRL ≤ VDD2
IOx = –4 μA, VIx = VIxH
IOx = +4 μA, VIx = VIxL
CL = 15 pF, CMOS signal levels
CL = 15 pF, CMOS signal levels
CL = 15 pF, CMOS signal levels
CL = 15 pF, CMOS signal levels
CL = 15 pF, CMOS signal levels
CL = 15 pF, CMOS signal levels
CL = 15 pF, CMOS signal levels
CL = 15 pF, CMOS signal levels
CL = 15 pF, CMOS signal levels
VIx = VDD1/VDD2, VCM = 1000 V,
transient magnitude = 800 V
VIx = 0 V, VCM = 1000 V,
transient magnitude = 800 V
Rev. E | Page 5 of 16


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