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PDF ASSR-1420 Data sheet ( Hoja de datos )

Número de pieza ASSR-1420
Descripción Solid State Relay
Fabricantes AVAGO 
Logotipo AVAGO Logotipo



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No Preview Available ! ASSR-1420 Hoja de datos, Descripción, Manual

ASSR-1410, ASSR-1411 and ASSR-1420
General Purpose, Form A, Solid State Relay (Photo MOSFET)
(60V/0.6A/1)
Data Sheet
Lead (Pb) Free
RoHS 6 fully
compliant
RoHS 6 fully compliant options available;
-xxxE denotes a lead-free product
Description
The ASSR-14X X S eries c onsists of an AlG aAs infrar ed
light-emitting diode (LED) input stage optically coupled
to a high-v oltage output det ector circuit. The det ector
consists of a high-speed phot ovoltaic diode arra y and
driver circuitry to switch on/off t wo discrete high v olt-
age MOSFETs. The relay turns on (c ontact closes) with a
minimum input curr ent of 3mA thr ough the input LED .
The r elay turns off (c ontact opens) with an input v olt-
age of 0.8V or less.
The single channel c onfigurations, ASSR-1410 and
ASSR-1411, are equivalent to 1 Form A Elec tromechani-
cal Rela ys (EMR), and the dual channel c onfiguration,
ASSR-1420, is equivalent t o 2 F orm A EMR. They ar e
available in 4-pin SO , 6-pin DIP , 8-pin DIP and Gull
Wing Sur face M ount f or DIP pack ages. Their elec trical
and swit ching charac teristics ar e specifi ed o ver the
temperature range of -40°C t o +85°C. They are used f or
general purpose swit ching of sig nals and lo w po wer
AC/DC loads.
ASSR-1411 enables AC/DC and DC-only output connec-
tions. F or DC- only c onnection, the output curr ent, Io ,
increases t o 1.2A and the on-r esistance, R (ON) r educes
to 0.5.
Functional Diagram
Opto-isolation
1 4 Truth Table
LED Output
Off Open
On Close
23
Features
Compact Solid-State Bi-directional Signal Switch
Single and Dual Channel Normally-off Single-Pole-
Single-Throw (SPST) Relay
60V Output Withstand Voltage
0.6A or 1.2A Current Rating
(See Schematic for ASSR-1411 Connection A and B)
Low Input Current: CMOS Compatibility
L ow On-Resistance:
0.2 Typical for DC-only,
0.7 Typical for AC/DC
Very High Output Off-state Impedance:
10 Teraohms Typical
High Speed Switching:
0.1ms (Ton), 0.02ms (Toff ) Typical
High Transient Immunity: >1kV/s
High Input-to-Output Insulation Voltage
(Safety and Regulatory Approvals)
- 3750 Vrms for 1 min per UL1577
- CSA Component Acceptance
Applications
T elecommunication Switching
Data Communications
I ndustrial Controls
M edical
S ecurity
EMR / Reed Relay Replacement
Single Channel, SPST Relay,
1 Form A in 4-Pin SO Package
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.
http://www.Datasheet4U.com

1 page




ASSR-1420 pdf
ASSR-1411 6-Pin DIP Package with Gull Wing Surface Mount Option 300
9.65 ± 0.25
(0.380 ± 0.010)
LAND PATTERN RECOMMENDATION
6.35 ± 0.25
(0.250 ± 0.010)
10.9 (0.430)
4.19
(0.165)
MAX.
1.78
(0.070)
MAX.
0.635 ± 0.130
(0.025 ± 0.005)
2.29
(0.090)
2.54
(0.100)
TYP.
NOTE: FLOATING LEAD PROTRUSION IS 0.25 mm (10 mils) MAX.
1.27 (0.050)
9.65 ± 0.25
(0.380 ± 0.010)
7.62 ± 0.25
(0.300 ± 0.010)
2.0 (0.080)
0.20 (0.008)
0.30 (0.013)
0.635 ± 0.25
(0.025 ± 0.010)
12¡ NOM.
ASSR-1420 8-Pin DIP Package
9.65 ± 0.25
(0.380 ± 0.010)
TYPE NUMBER
LEAD FREE
87 65
A XXXX
YYWW RU
12 34
OPTION CODE*
DATE CODE
UL
RECOGNITION
1.19 (0.047) MAX.
1.78 (0.070) MAX.
3.56 ± 0.13
(0.140 ± 0.005)
4.70 (0.185) MAX.
7.62 ± 0.25
(0.300 ± 0.010)
6.35 ± 0.25
(0.250 ± 0.010)
5° TYP.
0.254
+ 0.076
- 0.051
(0.010+- 00..000023))
0.51 (0.020) MIN.
2.92 (0.115) MIN.
1.080 ± 0.320
(0.043 ± 0.013)
0.65 (0.025) MAX.
2.54 ± 0.25
(0.100 ± 0.010)
DIMENSIONS IN MILLIMETERS AND (INCHES).
OPTION NUMBERS 300 AND 500 NOT MARKED.
5

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ASSR-1420 arduino
Applications Information
On-Resistance and Derating Curves
The Output On-Resistanc e, R (ON), specifi ed in this data
sheet, is the r esistance measur ed acr oss the output
contact when a pulsed curr ent sig nal (Io=0.6A ) is ap -
plied t o the output pins . The use of a pulsed sig nal (≤
30ms) implies that each junc tion t emperature is equal
to the ambient and case t emperatures. The steady-state
resistance, Rss , on the other hand , is the value of the
resistance measur ed acr oss the output c ontact when
a DC curr ent sig nal is applied t o the output pins f or a
duration sufficient t o reach thermal equilibrium. Rss in-
cludes the effects of the temperature rise in the device.
Derating cur ves ar e sho wn in F igures 1, 2, 3 and 4,
specifying the maximum output curr ent allo wable f or
a given ambient t emperature. The maximum allo wable
output current and power dissipation are related by the
expression Rss=Po(max)/(Io(max))2 fr om which Rss can
be calculated. Staying within the saf e area assures that
the steady state MOSFET junction temperature remains
less than 125°C.
Turn On Time and Turn Off Time Variation
The ASSR-14X X S eries exhibits a v ery fast turn on and
turn off time. Both the turn on and turn off time can be
adjusted by choosing proper forward current as depict-
ed in Figures 11 and 13. The changes of the turn on and
turn off time with ambient t emperature are also shown
in Figures 12 and 14.
IF = 10mA, 4-Layer Board
0.6
0.4
Safe
Operating
Area
0.2
0
-40 -20 0 20 40 60 80 100
TA- TEMPERATURE -o C
Figure 1. Maximum Output Current Rating vs
Ambient Temperature (ASSR-1410-003E)
IF = 10mA, 4-Layer Board
0.6
0.4
Safe
Operating
Area
0.2
0
-40 -20 0 20 40 60 80 100
TA- TEMPERATURE - oC
Figure 2. Maximum Output Current Rating vs
Ambient Temperature (ASSR-1411-001E)
1.2 IF = 10mA, 4-Layer Board
1
0.8
0.6
0.4
0.2
0
-40 -20 0 20 40 60 80 100
TA - TEMPERATURE - oC
Figure 3. Maximum Output Current Rating vs
Ambient Temperature (ASSR-1411-001E DC Con-
nection)
0.6 IF = 10mA, 4-Layer Board
1-Channel
0.4 2-Channel
Safe
Operating
Area
0.2
0
-40 -20 0 20 40 60 80 100
TA - TEMPERATURE - oC
Figure 4. Maximum Output Current Rating vs
Ambient Temperature (ASSR-1420-002E)
1.1
IO =250μA
VF =0.8V
1.05
1
1.E-06
1.E-07
1.E-08
1.E-09
0.95
0.9
-50
-25 0 25 50
TA - TEMPERATURE -o C
75
100
1.E-10
1.E-11
1.E-12
-50
-25 0
25 50 75
TA - TEMPERATURE - oC
100
Figure 5. Normalized Typical Output Withstand
Voltage vs. Temperature
Figure 6. Typical Output Leakage Current vs.
Temperature
11

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