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 PREPARED \ &&-`/,L )4/ APPROVED
,. I- 1
BY:
DATE: ,(- :-,, <' `. h DATE:
-. ,dC,
SPEC. No.
ED-94040E March 5, 1998 14 Pages
DMSION
.%'2
SHARP
ELECTRONIC COMPONENTS GROUP SHARP CORPORATION
ISSUE PAGE
BY:
REPRESENTAm
A 1 lUi\1
' DEVICE SPECIFICATION FOR
I
OPTO-ELECTRONIC DEVICES Dn!
business dealing name
PHOTOCOUPLER
MODEL No.
PC123
1. These specification sheets include materials protected Please do not reproduce or cause anyone to reproduce
under copyright of Sharp Corporation them without Sharp's consent.
("Sharp").
for use outlined 2. When using this product, please observe the absolute maximum ratings and the instructions in these specification sheets, as well as the precautions mentioned below. Sharp assumes no responsibility for any damage resulting from use of the product which does not comply with the absolute maximum ratings and the instructions included in these specification sheets, and the precautions mentioned below. (Precautions) ill This product is designed for use in the following application areas : * OA equipment * Home appliances * Audio visual equipment * Measuring equipment * Telecommunication equipment (Terminal) + Computers * Tooling machines [ If the use of the product in the above application areas is for equipment listed in paragraphs (2) or (31, please be sure to observe the precautions given in those respective paragraphs.
1
(21 Appropriate measures, such as fail-safe design and redundant design considering the safety design of the overall system and equipment, should be taken to ensure reliability and safety when this product is used for equipment which demands high reliability and safety in function and precision, such as ; . Transportation control and safety equipment (aircraft, train, automobile - Trafhc signals . Rescue and security * Gas leakage sensor breakers * Other safety equipment [ etc.1 equipment
(31 Please do not use this product for equipment which require extremely high reliability and safety in function and precision, such as : . Space equipment . Telecommunication equipment (for trunk lines) * Nuclear power control equipment * Medical equipment [
1
1
(41 Please contact and consult with a Sharp sales representative regarding interpretation of the above three paragraphs. . Please contact and consult with a Sharp sales representative
if there are any questions about this product.
for any questions DATE PRESENTED BY
CUSTOMER'S
APPROVAL
DATE BY
T. Matsumura, Department General Manager Engineering Dept.,11 Opto-Electronic Devices Div. ELECOM Group SHARP CORPORATION
of
SHARP CORPORATION
ED-94040E MODEL No.
1 March
5, 1998 1 PAGE
PC 123
I
l/8
1. Application This specification applies Model No. PC123. to the outline and characteristics of photocoupler
2. Outline Refer to the attached drawing No. CY725 lKO2.
3. Ratings
and characteristics sheet, page 4 to 6.
Refer to the attached
4. Reliability Refer to the attached sheet, page 7.
5. Incoming
inspection sheet, page 8.
Refer to the attached
6. Supplement 6.1 Isolation voltage shaIl be measured in the following method. collector
(1 I Short between anode to cathode on the primary to emitter on the secondary side. (2) The dielectric withstand tester with zero-cross
side and between
circuit
shall be used.
(3) The wave form of applied voltage shall be a sine wave. (It is recommended that the isolation voltage be measured
in insulation
oil.1
6.2
Collector current (Ic) Delivery rank table (" 0" mark indicates business dealing name of ordered Business dealing name PC123 PC123A PC123B PC123C PC123S Rank at delivery * Business dealing name PC123Y PC123Yl PC 123Y2 PC123Y5 PC 123YS as an option (Attach
product) Ic (mAI Test conditions
Rank at delivery
Rank mark
A, B, S or no mark A B no mark S
2.5 to 20 1,=5mA 2.5 to 7.5 vc,=5v 5.0 to 12.5 . Ta=25"C 10.0 to 20.0 5.0 to 10.0
* Applied
to products
sheet 2-l to 2-4)
SHARP CORPORATION
ED-94040E
MODEL No.
1 March
5, 1998
PAGE
PC 123
2/8
6.3 This Model is approved by UL. Approved Model No. : PC123 UL tile No. : E64380
6.4 This Model is approved by CSA. Approved Model No. : PC123 CSA file No. : CA95323 CSA approved mark " sp:
C
shall be indicated on minimame unit package.
6.5 This product is approved by BSI. (BS415, BS7002) Approved Model No. : PC123 Certificate No. : 7087/7409
6.6 This product is approved by SEMKO, DEMKO, NEMKO and EI.
6.7 This product is not designed against irradiation. This product is assembled with electrical input and output. This product incorporates non-coherent light emitting diode.
6.8 ODS materials This product shall not contain the following materials. Also, the following materials shall not be used in the production Materials for ODS : CFC,, Halon, Carbon tetrachloride, 1.1.1 -Trichloroethane (Methylchloroform)
process for this product.
6.9 Brominated
flame retardants such as the PBBO, and PBB, are not used
Specific brominated flame retardants in this device at all.
7. Notes
Refer to the attached sheet- 1- 1, 2.
SHARP CORPORflTI ON
ED-94040E
MODEL No.
1March 5, 1998
1 PAGE
PC 123
2. Outline
I
3/B
Rank mark mark l2
1: Anode
3: Emitter
2: Cathode
4: Collector
Pin Nos. and internal connection diagram
7.62'0-3
4. 58 `0.3
Product `mass : Approx.
0. 18g
*l) a-digit number sha.lI be marked according to DIN standard. UNIT:l/lmm *2) Factory *3) Marking identification mark shall be or shall not be marked. q
is laser marking
SHARP CORPORflTION
PC 123
3. Ratings and characteristics maximum ratings Ta=25"C
3.1 Absolute
*2 Peak forward
current
*l
The derating factors of absolute are shown in Fig. 1 to 4.
maximum
ratings
due to ambient
temperature
*2 Pulse widths100 *3 AC for 1 min. *4 For 10s
pus, Duty ratio : 0.001 40 to 6O%RH
(Refer to Fig. 5)
SHARP CORPORATION
ED-94040E
MODEL No.
1 March
5, 1998
PAGE
PC 123
3.2 Electra-optical characteristics Ta=25"C
5/B
Parameter Forward Input Reverse Terminal Dark voltage current capacitance
SpbOl VF
*R
Condition 1,=2omA va=4v v=o, f=lkHz v,,=5ov,
Ic=O. IF==0
MIN.
TYF'. 1.2
MAX. 1.4 10
Unit v /AA pF IlA
V
Ct E EO
BvCEO
30
-
250 100 -
current
output
Collector-emitter breakdown voltage Emitter-collector breakdown voltage Collector current
1mA
70
-
I*=0
BvECO
I,=10 PA, IF=0
6
-
-
V
IC
1,=5x& 1,=2omA Ic=lmA
V,,=5V
2.5
0.1
20 0.2
mA v
Collector-emitter saturation voltage Isolation Transfer charac teristics resistance
V CEkW ' Rtso
DC=500V 40 to 6O%RH v=o, f=lMHz v,,=5v, Ic=2mA R,=lOO Q, -3dB v,,=2v . Ic=2mA
R,=lOO R
5XlO'O
10"
-
Q
Floating Cut-off
capacitance frequency
cf fc
0.6 80
1.0 -
pF kHz
Response Response
time (Rise) time
(Fall)
lltf
4 3
18 18
ps PS
SHARP CORPORATION
(Fig. 1) Forward ambient
current vs. temperature
(Fig. 2) Diode power dissipation vs. ambient temperature
g 2 3 4 3 5 & $ 5 -30 0 Ambient 25 55 75 100 Ta ( "C ) 125
80 70 60 40
2o 0 -30
0 Ambient
25
55
75
100 Ta ( "C 1
125
temperature
temperature
(Fig. 3) Collector power dissipation vs. ambient temperature
(Fig. 4) Total power vs. ambient
dissipation temperature
200 150 100 50 0 -30
0 Ambient
25
50
75
100 125 Ta (`C )
r
-30
0 Ambient
25
50
75
100 Ta ("C 1
125
temperature
temperature
3
(Fig. 5) Peak forward curren vs. duty ratio
2000 1000 500 200 100 50
Pulse widths100 Ta=25"C
pus
5 lo-`2
5 lo.`2
Duty ratio
5 lo-`2
5 10"
SHARP CORPORATION
ED-94040E
MODEL No.
1 March
5, 1998
PAG E
PC 123
4. Reliability The reliability of products shall satisfy items listed below. Contidence level : 90% LTPD: 10%/20% Test Items Test Conditions *1 Solderability Soldering heat Terminal strength (Tension) Terminal strength (Bending) *3 Mechanical shock `2 23O"C, 5s 26O"C, 10s Weight : 5N 5 s/each terminal Weight : 2.5N 2 times/each terminal 15000m/s2, 0.5ms 3 times/ +X, tY, +Z direction 100 to 2000 to 1ooHz/4min 200m/s2 4 time's/ X, Y, Z direction 1 cycle -55 "C to + 125C (30min) (30min) 20 cycles test +6O"C, 9O%RH, lOOOh U : Upper specification limit L : Lower specification limit Failure Judgement Criteria
718
Samples (nl Defective(C) n=ll, n=ll, n=ll, GO C=O C=O
v,>ux Ia>UXZ
EEO
1.2 n=ll, C=O
>UX2
n=ll,
C=O
Ic Variable frequency vibration
Temperature cycling
n=22,C=O
High temp. and high humidity storage High temp. storage Low temp. storage Operation life
n=22 ,C=O
+125C, lOOOh -55-C) 1OOOh Ir=5OmA, Ptot=200mW Ta=25'C, 1OOOh
n=22 ,C=O n=22,C=O n=22,C=O
*l
Test method, conforms to JIS C 702 1.
*2 Solder shall adhere at the area of 95% or more of immersed portion of lead, and pin hole or other holes shall not be concentrated on one portion. *3 Terminal bending direction is shown below.
SHARP CORPORATION
5. Incoming
inspection items characteristics
5.1 Inspection (1) Electrical
(2) Appearance
5.2 Sampling
method
and Inspection
level
A single sampling plan, normal inspection level II based on IS0 2859 is applied. The AQL according to the inspection items are shown below.
Defect Major defect Minor defect
Inspection
item
AQL (%)
Electrical characteristics Unreadable marking Appearake defect except the above mentioned.
0.1
0.4
SHARP CORPORflTION
ED-94040E
MODEL No.
1 March
5, 1998
PAGE Attach sheet- l- I
PC 123
1 For cleaning (11 Solvent cleaning : Solvent temperature 45C or less Immersion for 3 min or less (21 Ultrasonic cleaning : The effect to device by ultrasonic cleaning differs by cleaning bath size, ultrasonic power output, cleaning time, PCB size or device mounting condition etc. Please test it in actual using condition and confirm that doesn't occur any defect before starting the ultrasonic cleaning. (31 Applicable solvent : Ethyl alcohol, Methyl alcohol, Isopropyl alcohol
In case when the other solvent is used, there are cases that the packaging resin is eroded. Please use the other solvent after thorough confirmation is performed in actual using condition.
2. The LED used in the Photocoupler generally decreases the light emission power by operation. In case of long operation time, please design the circuit with considering the degradation of the light emission power of the LED. (50%/5yearsl
SHARP CORPORATION
ED-94040E
MODEL No.
1 March
5, 1998
PAGE Attach sheet-
PC 123
1-2
3. Precautions
for Soldering
Photocouplers
( 11 In case of soldering to lead 260 "C 10 s or less
180 160 140 120 -
An example vs. soldering
of device temperature time
*.--.../.- _.a* *a-*.--*.-e ,..-
Solder
`0
II 24
I 6
I IIII 8 10 12 14 16 18 20
time (sl
Soldering
(2) If solder
reflow
:
It is recommended thatonly one soldering be done at the temperature and the time within the temperature profile as shown in the figure below.
230C
25C
(3) Other precautions An infrared lamp used to heat up for soldering may cause a localized temperature rise in the resin. So keep the package temperature within that specified in Item 2. Also avoid immersing the resin part in the solder.
SHARP CORPORHTION
ED-94040E
MODEL No.
1 March
5, 1998
PAGE Attach sheets-z-
PC 123Y (Option)
1
1. This specification
shall be applied to photocoupler,
Model No. PC 123 as an option.
2. Applicable Models (Business dealing name) PC123Y, PC123Y1, PC123Y2, PC123Y5, PC123YS
3. The relevant models are the models Approved by VDE according to DIN VDE0884/08.87. Approved Model No. : PC 123
VDE approved No. : 83601 (According to the specification DIN VDE0884/08.87)
l
Operating isolation voltage Transient overvoltage Pollution U,
U,,,,
: 71 OV (Peak)
l
: 6000V (Peak)
l
: 2 (According to VDEO 110 / 0 1.89)
l
Clearances distance (Between input and output) : 6.4mm (MIN.) Creepage distance (Between input and output) : 6.4rnm (MIN.)
l
9 Isolation thickness between input and output : 0.4mm (MIN.)
l
Tracking-proof
: CT1 175 (Material group IIIa : VDEOl 10/O 1.89) Current (Isi) : 12OmA (Diode side) Power (Psi) : 300mW (Phototransistor Temperature (Tsi) : 150C side)
l
Safety limit values
In order to keep safety electric isolation of photocoupler, please set the protective circuit to keep within safety limit values when the actual application equipment troubled.
l
Indication
of VDE approval prints "&0884"
on sleeve package.
4.
Outline
Refer to the attached drawing No. CY7252K02.
SHARP CORPORATION
ED-94040E
MODEL No.
1 March
5, 1998
PAG E Attach sheets-Z-2
PC 123Y (Option)
5. Isolation specification
according to VDE 0884
Parameter Class of environmental test Pollution Maximum operating isolation voltage Partial discharge test voltage (Between input and output) Diagram 1
.------.____________.----.
SpbQl
Conditions DIN IEC68
Rating 30/ 100/21
unit -
Remark
DINVDEOllO UIORM
2 710 VPEAK
Refer to the Diagram 1,2 W tp=60 s, qc___________._.__________________________------------
Diagram 2 Maximum over-voltage
Safety maximum ratings 1) Case temperature 2) Input current 3) Electric power (Output or Total power dissipation) Isolation resistance (Test voltage between input and output ; DC500V) ' Tsi Isi &=O, Pc=O Pc=O 150 120 % mL4 Refer to the Fig. 6, 7
Psi
300
mW
Ta=Tsi R Iso Ta=Topr (MAX.) Ta=25"C
MIN. 10' MIN. 10" MIN. 10" 0
6. Precautions
in performing
isolation test
6.1 Partial discharge test methods shall be the ones according to the specifications of VDE 0884/08.87 6.2 Please don't carry out isolation test (Visa) over U,,. product deteriorates isolation characteristics by partial due to applying high voltage (ex. U,,). And there is that this product occurs partial discharge in operating voltage. NJ,,,, 1. This discharge possibility isolation
SHARP CORPORATION
ED-94040E
MODEL No.
1 March (Option)
5, 1998
1 PAGE
PC123Y
Attach sheets-2-3
4. Outline
Rankmark
A \
6
\
/I
I
v kL`II I
:..,
i-..
1: Anode
PC1
2: Cathode
. m
Pin Nos. and internal
4: Collector
3: Emitter
connection diagram
I VDE0884
identification mark
7.62'0.3
1
Product mass : Approx.
0.18g
*l) 2-digit number shall be marked according to DIN standard. UNIT: *2) Factory identtication *3) Marking mark shall be or shall not be marked. Name l/l mm PC123 Outline Dimensions (Business dealing name: PC123Y1 CY7252K02
is laser marking
L
Drawing No.
SHARP CORPORATION
MODEL No. PAG E
Attach sheets-2-4
PC123Y (Option)
Method of Diagram 1 : Breakdown V f U,,, WV)
test (Apply to type test and sampling test)
6. t2
=l to 10s =l s
=60 =62 s s
~`&rtial discharge measuring time) tb GNl U, (852VJ
-----..-....-_._____..-_.-..-.--._--I---------.-.-..-.-U II-----.--.--(71OVl
=lOs
Method of Diagram 2 : Non breakdown
Unr(1136V)
test (Apply to all device test)
5.
U low __ ___._._.-_....._.-_.--------..-..-.-----.------.-. (71Ov)
tb
t4
I$ (Partial measuring
discharge time)
=O.l s =l s =1.2 s
>t &_ 5 tb _ t4 _ *
It
Fig. 6 Safety maximum power dissipation vs. ambient temperature (When failed)
Fig. 7 Safety maximum forward current vs. ambient temperature (When failed)
0
25
50
75
100
125
150
0
25
50
75
100
125
150
Ambient temperature
Ta ( % 1
Ambient temperature
Ta ("CI


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