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PDF ACCL-9410 Data sheet ( Hoja de datos )

Número de pieza ACCL-9410
Descripción High Speed Quad-Channel 3/1 Digital Isolator
Fabricantes AVAGO 
Logotipo AVAGO Logotipo



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ACCL-9410
High Speed Quad-Channel 3/1 Digital Isolator
Data Sheet
Description
ACCL-9410 is a quad-channel bi-directional digital isolator.
Using capacitive coupling through an insulation barrier, the
isolator enables high speed digital transmissions. The device is
capable of running at 25 MBd data rate, with propagation delay
of 40ns.
ACCL-9410 is available in 150mils narrow body 16-pin SOIC
package. The isolator operates at 3.3V/5V supply. The electrical
DC and timing AC specifications are specified over the
temperature range of -40°C to +125°C.
Functional Diagram
VDD1 1
GND1 2
VIA 3
VIB 4
VIC 5
VOD 6
VE1 7
GND1 8
16 VDD2
15 GND2
14 VOA
13 VOB
12 VOC
11 VID
10 VE2
9 GND2
Features
Supply voltage: 3.3 V / 5 V
Wide operating temperature: -40 °C to 125 °C
High data rate: 25 MBd
Low power consumption: 2 mA per channel
Low propagation delay: 40 ns max
Pulse width distortion: 8 ns max
Propagation delay part skew: 15 ns max
Propagation delay channel skew: 8 ns max
Output enable function
Safety and Regulatory Approvals (Pending)
UL 1577
Applications
Industrial control isolated data interfaces, eg SPI
High speed digital systems
Isolated DC-DC converters
Logic level shifting
CAUTION
It is advised that normal static precautions be taken in handling and assembly of this component to prevent damage
and/or degradation which may be induced by ESD. The components featured in this data sheet are not to be used in
military or aerospace applications or environments
Avago Technologies
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1 page




ACCL-9410 pdf
ACCL-9410
Data Sheet
Electrical Specifications (DC)
Electrical Specifications (DC)
Over recommended temperature (TA = -40°C to 125°C) and supply voltage (4.5V≤VDD1≤5.5V, 4.5V≤VDD2≤5.5V), (3.15V≤VDD1≤3.6V,
3.15V≤VDD2≤3.6V), (4.5V≤VDD1≤5.5V, 3.15V≤VDD2≤3.6V) and (3.15V≤VDD1≤3.6V, 4.5V≤VDD2≤5.5V). All typical specifications are at
TA = 25 °C.
Parameter
Symbol
Min.
Typ.
Max.
Units
Test Conditions
Input Supply Current, No data [1]
IDD1(0)
2.8 5 mA VDD1 = 3.6 V, DC
2.9 5 mA VDD1 = 5.5 V, DC
Input Supply Current, 10MBd data
(All channels) [2]
IDD1(10)
3.7 6 mA VDD1 = 3.6 V, 5 MHz logic
signal
4.1 7 mA VDD1 = 5.5 V, 5 MHz logic
signal
Input Supply Current, 25MBd data
(All channels) [2]
IDD1(25)
5.0 8 mA VDD1 = 3.6 V, 12.5 MHz logic
signal
5.9 9 mA VDD1 = 5.5 V, 12.5 MHz logic
signal
Output Supply Current, No data [3]
IDD2(0)
6.5 10 mA VDD2 = 3.6 V, DC
6.6 10 mA VDD2 = 5.5 V, DC
Output Supply Current, 10MBd data
(All channels) [4]
IDD2(10)
7.6 11 mA VDD2 = 3.6 V, 5 MHz logic
signal
8.1 12 mA VDD2 = 5.5 V, 5 MHz logic
signal
Output Supply Current, 25MBd data
(All channels) [4]
IDD2(25)
9.2 13 mA VDD2 = 3.6 V, 12.5 MHz logic
signal
10.3 15 mA VDD2 = 5.5 V, 12.5 MHz logic
signal
Input Current
II -10
10 μA
Logic High Output Voltage
VOH
VDD-0.1
VDD
V IO = -20 μA, VI = VIH
VDD-1.0
VDD
V IO = -4 mA, VI = VIH
Logic Low Output Voltage
VOL
0.02 0.1 V IO = 20 μA, VI = VIL
0.14 0.4 V IO = 4 mA, VI = VIL
High Level Enable Voltage
VEH 0.7xVDD
V
Low Level Enable Voltage
VEL
0.3xVDD
V
Avago Technologies
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