PR26MF21NSZ Series
PR36MF2xNSZ Series
PR26MF21NSZ Series
PR36MF2xNSZ Series
∗
I
T
(rms)≤0.6A, Zero Cross type
DIP 8pin
Triac output SSR
Non-zero cross type is also available. (PR26MF1xNSZ
Series/
PR36MF1xNSZ Series)
■
Description
PR26MF21NSZ Series
and
PR36MF2xNSZ Series
Solid State Relays (SSR) are an integration of an
infrared emitting diode (IRED), a Phototriac Detector
and a main output Triac. These devices are ideally
suited for controlling high voltage AC loads with solid
state reliability while providing 4.0kV isolation
(V
iso
(rms)) from input to output.
■
Agency approvals/Compliance
1. Recognized by UL508, file No. E94758 (as model No.
R26MF2/R36MF2)
2. Approved by CSA 22.2 No.14, file No. LR63705 (as
model No.
R26MF2/R36MF2)
3. Optionary available VDE approved
(∗)
(DIN EN 60747-5-
2), file No. 40008898 (only for
PR36MF2xNSZ Series
as model No.
R36MF2)
4. Package resin : UL flammability grade (94V-0)
(∗)
■
Features
1. Output current, I
T
(rms)≤0.6A
2. Zero crossing functionary (V
OX
: MAX. 35V)
3. 8 pin DIP package (SMT gullwing also available)
4. High repetitive peak off-state voltage
(V
DRM
: 600V,
PR36MF2xNSZ Series)
(V
DRM
: 400V,
PR26MF21NSZ Series)
5. I
FT
ranks available (see Model Line-up in this
datasheet)
6. Superior noise immunity (dV/dt : MIN. 100V/µs)
7. Response time, t
on
: MAX. 50µs
8. Lead-free terminal components are also available
(see Model Line-up section in this datasheet)
9. High isolation voltage between input and output
(V
iso
(rms) : 4.0kV)
DIN EN60747-5-2 : successor standard of DIN VDE0884.
Up to Date code "RD" (December 2003), approval of DIN
VDE0884.
From Date code "S1" (January 2004), approval of DIN
EN60747-5-2.
■
Applications
1. Isolated interface between high voltage AC devices
and lower voltage DC control circuitry.
2. Switching motors, fans, heaters, solenoids, and
valves.
3. Power control in applications such as lighting and
temperature control equipment.
Notice The content of data sheet is subject to change without prior notice.
In the absence of confirmation by device specification sheets, SHARP takes no responsibility for any defects that may occur in equipment using any SHARP
devices shown in catalogs, data books, etc. Contact SHARP in order to obtain the latest device specification sheets before using any SHARP device.
1
Sheet No.: D4-A00501EN
Date Mar. 31. 2004
© SHARP Corporation
PR26MF21NSZ Series
PR36MF2xNSZ Series
■
Internal Connection Diagram
8
6
5
1
2
3
4
Cathode
Anode
Cathode
Cathode
5
6
8
Gate
Output (T
1
)
Output (T
2
)
Zero Crossing Circuit
1
2
3
4
■
Outline Dimensions
1. Through-Hole [ex.
PR26MF21NSZF]
1.2
±0.3
SHARP
mark
"S"
8
6
(Unit : mm)
2. SMT Gullwing Lead-Form [ex.
PR26MF21NIPF]
1.2
±0.3
SHARP
mark
"S"
8
6
1.05
5
±0.2
1.05
±0.2
5
Model No.
6.5
±0.5
Model No.
R26MF2
CSA mark
1
2
3
4
Rank mark
Date code (2 digit)
Factory identification mark
9.66
±0.5
0.5
TYP.
3.5
±0.5
7.62
±0.3
6.5
±0.5
Rank mark
4
R26MF2
CSA mark
1
2
3
Anode
mark
Anode
mark
9.66
±0.5
Date code (2 digit)
Factory identification mark
0.35
±0.25
1.0
+0.4
−0
1.0
+0.4
−0
0.35
±0.25
7.62
±0.3
0.26
±0.1
3.5
±0.5
3.25
±0.5
Epoxy resin
0.26
±0.1
θ
θ:0
to 13˚
θ
2.54
±0.25
2.54
±0.25
0.5
±0.1
1.0
+0.4
−0
Epoxy resin
10.0
+0
−0.5
Product mass : approx. 0.56g
3. Through-Hole [ex.
PR36MF21NSZF]
1.2
±0.3
SHARP
mark
"S"
8
6
Product mass : approx. 0.54g
4. SMT Gullwing Lead-Form [ex.
PR36MF21NIPF]
1.2
±0.3
SHARP
mark
"S"
8
6
1.05
5
±0.2
1.05
±0.2
5
Model No.
6.5
±0.5
Model No.
R36MF2
CSA mark
1
2
3
4
Rank mark
Date code (2 digit)
Factory identification mark
9.66
±0.5
0.5
TYP.
3.5
±0.5
7.62
±0.3
6.5
±0.5
Rank mark
4
R36MF2
CSA mark
1
2
3
Anode
mark
Anode
mark
9.66
±0.5
Date code (2 digit)
Factory identification mark
7.62
±0.3
0.26
±0.1
3.5
±0.5
3.25
±0.5
Epoxy resin
0.26
±0.1
θ
θ:0
to 13˚
θ
2.54
±0.25
2.54
±0.25
0.5
±0.1
1.0
+0.4
−0
Epoxy resin
10.0
+0
−0.5
Product mass : approx. 0.56g
Product mass : approx. 0.54g
Sheet No.: D4-A00501EN
2
PR26MF21NSZ Series
PR36MF2xNSZ Series
■
Absolute Maximum Ratings
(T
a
=25˚C)
Parameter
Symbol Rating
Unit
*3
Forward current
I
F
50
mA
Input
Reverse voltage
V
R
6
V
RMS ON-state current
I
T
(rms)
0.6
*3
A
*4
Peak one cycle surge current
I
surge
6
A
Output
Repetitive
PR26MF21NSZ
400
V
DRM
V
peak OFF-state voltage
PR36MF2xNSZ
600
*1
Isolation voltage
4.0
V
iso
(rms)
kV
Operating temperature
T
opr
−30
to
+85
˚C
Storage temperature
˚C
T
stg
−40
to
+125
*2
Soldering temperature
˚C
T
sol
270
*5
*1 40 to 60%RH, AC for 1minute, f=60Hz
*2 For 10s
*3 Refer to Fig.1, Fig.2
*4 f=50Hz sine wave
*5 Lead solder plating models: 260˚C
Soldering area
■
Electro-optical Characteristics
Parameter
Forward voltage
Input
Reverse current
Repetitive peak OFF-state current
ON-state voltage
Holding current
Output
Critical rate of rise of OFF-state voltage
Rank 1
Zero cross voltage
Rank 2
Rank 1
Minimum trigger current
Rank 2
Transfer
charac- Isolation resistance
teristics
Rank 1
Turn-on time
Rank 2
Symbol
V
F
I
R
I
DRM
V
T
I
H
dV/dt
V
OX
I
FT
R
ISO
t
on
Conditions
I
F
=20mA
V
R
=3V
V
D
=V
DRM
I
T
=0.6A
V
D
=6V
−
V
D
=1/√
2
·V
DRM
I
F
=15mA,
Resistance load
I
F
=10mA,
Resistance load
V
D
=6V,
R
L
=100Ω
DC500V,40 to 60%RH
I
F
=20mA,
V
D
=6V,
R
L
=100Ω
I
F
=10mA,
V
D
=6V,
R
L
=100Ω
MIN.
−
−
−
−
−
100
−
−
−
5×10
10
−
TYP.
1.2
−
−
−
−
−
−
−
−
10
11
−
1mm
(T
a
=25˚C)
MAX.
1.4
10
100
3.0
25
−
35
10
5
−
50
Unit
V
µA
µA
V
mA
V/µs
V
mA
Ω
µs
Sheet No.: D4-A00501EN
5