HMHAA280R2V [ONSEMI]

4 引脚半间距 MFP 交流输入光电晶体管输出光耦合器;
HMHAA280R2V
型号: HMHAA280R2V
厂家: ONSEMI    ONSEMI
描述:

4 引脚半间距 MFP 交流输入光电晶体管输出光耦合器

局域网 输入元件 输出元件 晶体管 光电晶体管
文件: 总7页 (文件大小:184K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
DATA SHEET  
www.onsemi.com  
AC Input, Half Pitch  
Mini-Flat Package 4-Pin  
Optocoupler  
HMHAA280  
MPF4  
CASE 100AL  
Description  
The HMHAA280 series consists of two gallium arsenide infrared  
emitting diodes, connected in inverse parallel, driving a single silicon  
phototransistor in a compact 4pin miniflat package. The lead pitch  
is 1.27 mm.  
MARKING DIAGRAM  
ON280  
VXYYM1  
Features  
Compact 4pin Package (2.4 mm Maximum Standoff Height)  
Half Pitch Leads for Optimum Board Space Savings  
Current Transfer Ratio: 50–600%  
Available in Tape and Reel Quantities of 2500  
CSA (File #1201524), UL (File #E90700) and VDE (File #136480)  
Certified  
ON = onsemi Logo  
280 = Device Number  
V
= VDE mark (Note: Only appears on parts  
ordered with VDE option – See order entry  
table)  
X
= OneDigit Year Code  
YY = Digit Work Week, Ranging from “01” to “53”  
M1 = Assembly Package Code  
This is a PbFree Device  
Applications  
AC Line Monitor  
Unknown Polarity DC Sensor  
Telephone Line Receiver  
PIN CONNECTIONS  
COLLECTOR  
4
1
2
3 EMITTER  
ORDERING INFORMATION  
See detailed ordering and shipping information on page 5  
of this data sheet.  
© Semiconductor Components Industries, LLC, 2011  
1
Publication Order Number:  
March, 2023 Rev. 4  
HMHAA280/D  
HMHAA280  
ABSOLUTE MAXIMUM RATINGS (T = 25°C, unless otherwise noted)  
A
Symbol  
Parameter  
Value  
Unit  
TOTAL PACKAGE  
T
Storage Temperature  
Operating Temperature  
55 to + 125  
55 to + 100  
°C  
°C  
STG  
OPR  
T
EMITTER  
I
Continuous Forward Current  
50  
1
mA  
A
F (avg)  
I
Peak Forward Current (1ms pulse, 300 pps.)  
F (pk)  
V
P
Reverse Input Voltage  
6
V
R
Power Dissipation  
60  
0.6  
mW  
mW/°C  
D
Derate Linearly (above 25°C)  
DETECTOR  
Continuous Collector Current  
50  
mA  
P
D
Power Dissipation  
150  
1.5  
mW  
mW/°C  
Derate Linearly (above 25°C)  
V
CollectorEmitter Voltage  
EmitterCollector Voltage  
80  
7
V
V
CEO  
V
ECO  
ELECTRICAL CHARACTERISTICS (T = 25°C)  
A
Symbol  
Parameter  
Test Condition  
Min  
Typ  
Max  
Unit  
INDIVIDUAL COMPONENT CHARACTERISTICS  
Emitter  
V
Forward Voltage  
Reverse Current  
I = 5 mA  
1.4  
5
V
F
F
I
R
V
R
= 5 V  
mA  
Detector  
BV  
BV  
Breakdown Voltage Collector to Emitter  
Emitter to Collector  
I
I
= 0.5 mA, I = 0  
80  
7
V
CEO  
ECO  
C
F
= 100 mA, I = 0  
E
F
I
Collector Dark Current  
Capacitance  
V
= 80 V, I = 0  
100  
nA  
pF  
CEO  
CE  
CE  
F
C
V
= 0 V, f = 1 MHz  
10  
CE  
TRANSFER CHARACTERISTICS  
CTR  
DC Current Transfer Ratio  
CTR Symmetry  
I = 5 mA, V = 5 V  
50  
0.33  
3
3
600  
3.0  
0.4  
%
F
CE  
I = 5 mA, V = 5 V  
F
CE  
V
Saturation Voltage  
I = 8 mA, I = 2.4 mA  
V
CE(SAT)  
F
C
t
r
Rise Time (NonSaturated)  
Fall Time (NonSaturated)  
I
C
I
C
= 2 mA, V = 5 V, R = 100 W  
ms  
ms  
CE  
L
t
f
= 2 mA, V = 5 V, R = 100 W  
CE  
L
ISOLATION CHARACTERISTICS  
Steady State Isolation Voltage  
V
ISO  
1 Minute  
3750  
VRMS  
Product parametric performance is indicated in the Electrical Characteristics for the listed test conditions, unless otherwise noted. Product  
performance may not be indicated by the Electrical Characteristics if operated under different conditions.  
*All typicals at T = 25°C.  
A
www.onsemi.com  
2
HMHAA280  
TYPICAL PERFORMANCE CHARACTERISTICS  
100  
100  
10  
T = 25°C  
A
V
= 10 V  
= 5 V  
CE  
V
CE  
V
CE  
= 0.4 V  
10  
1
1
0.6  
0.1  
1
10  
I , FORWARD CURRENT (mA)  
100  
1.6  
0.8  
1.0  
1.2  
1.4  
V , FORWARD VOLTAGE (V)  
F
F
Figure 2. Collector Current vs. Forward Current  
Figure 1. Forward Current vs. Forward Voltage  
2.0  
1.5  
1000  
100  
10  
Normalized to:  
T = 25°C  
A
I = 5 mA  
F
V
CE  
= 5 V  
V
= 10 V  
= 5 V  
CE  
T = 25°C  
A
I = 5 mA  
F
1.0  
0.5  
I = 10 mA  
F
V
CE  
I = 1 mA  
F
I = 0.5 mA  
F
0.0  
V
= 0.4 V  
CE  
0.5  
40  
20  
0
20  
40  
60  
80  
100  
1
10  
I , FORWARD CURRENT (mA)  
100  
T , AMBIENT TEMPERATURE (°C)  
A
F
Figure 4. Normalized CTR vs. Temperature  
Figure 3. Current Transfer Ratio vs. Forward  
Current  
100  
V
CE  
= 5 V  
I = 25 mA  
F
10  
I = 5 mA  
F
I = 10 mA  
F
I = 1 mA  
F
1
I = 0.5 mA  
F
0.1  
40  
20  
0
20  
40  
60  
80  
100  
T , AMBIENT TEMPERATURE (°C)  
A
Figure 5. Collector Current vs. Temperature  
www.onsemi.com  
3
HMHAA280  
TYPICAL PERFORMANCE CHARACTERISTICS (continued)  
50  
40  
18  
T = 25°C  
A
I = 50 mA  
16  
F
I = 50 mA  
I = 40 mA  
I = 40 mA  
F
F
14  
12  
10  
8
F
I = 30 mA  
F
I = 30 mA  
F
30  
20  
10  
0
I = 20 mA  
F
I = 10 mA  
F
I = 20 mA  
F
I = 10 mA  
F
I = 5 mA  
F
I = 5.0 mA  
F
6
4
I = 2 mA  
F
I = 0.5 mA  
F
2
I = 1.0 mA  
F
I = 1.0 mA  
F
0
1.0  
1
3
4
5
6
7
8
9
10  
0.0  
0.2  
0.4  
0.6  
0.8  
0
2
V
CE  
, COLLECTOREMITTER VOLTAGE (V)  
V
CE  
, COLLECTOREMITTER VOLTAGE (V)  
Figure 6. Collector Current vs. CollectorEmitter  
Figure 7. Collector Current vs. CollectorEmitter  
Voltage  
Voltage  
1000  
100  
10  
1
T = 25°C  
F
A
I = 16 mA  
V
CC  
= 5 V  
t
OFF  
V
CE  
= 48 V  
t
S
V
CE  
= 24 V  
0.1  
10  
1
V
CE  
= 10 V  
0.01  
t
ON  
V
CE  
= 5 V  
0.1  
0.001  
0
20  
40  
60  
80  
100  
10  
R , LOAD RESISTANCE (kW)  
1
100  
T , AMBIENT TEMPERATURE (°C)  
A
L
Figure 8. Collector Dark Current vs. Temperature  
Figure 9. Switching Time vs. Load Resistance  
0.30  
0.28  
0.26  
I = 5 mA  
F
I
C
= 1 mA  
0.24  
0.22  
0.20  
0.18  
0.16  
0.14  
0.12  
0.10  
40 20  
0
20  
40  
60  
80  
100  
T , AMBIENT TEMPERATURE (°C)  
A
Figure 10. CollectorEmitter Saturation Voltage  
vs. Temperature  
www.onsemi.com  
4
HMHAA280  
REFLOW PROFILE  
(Heating)  
to 30 s  
230°C (peak temperature)  
210°C  
180°C  
to 60 s  
150 s  
90 s  
80 s  
Time (s)  
Peak reflow temperature: 230°C (package surface temperature) for 30 seconds  
Time of temperature higher than 210°C: 60 seconds or less  
One time soldering reflow is recommended  
*For applications requiring 260C peak reflow performance, please order FODM214 series.  
ORDERING INFORMATION  
Device  
Package  
MFP4  
Shipping  
HMHAA280  
150 Units / Tube  
2500 / Tape & Reel  
2500 / Tape & Reel  
150 Units / Tube  
HMHAA280R2  
HMHAA280R2V  
HMHAA280V  
MFP4  
MFP4, VDE Option  
MFP4, VDE Option  
†For information on tape and reel specifications, including part orientation and tape sizes, please refer to our Tape and Reel Packaging  
Specifications Brochure, BRD8011/D.  
www.onsemi.com  
5
MECHANICAL CASE OUTLINE  
PACKAGE DIMENSIONS  
MFP4 2.5X4.4, 1.27P  
CASE 100AL  
ISSUE O  
DATE 31 AUG 2016  
0.30.51  
2
1
PIN ONE  
0.61  
3
4
0.550.75  
2.312.69  
1.27  
2.39 (Max)  
LAND PATTERN RECOMMENDATION  
1.952.11  
00.20  
R0.15 (Typ)  
2
\:̇  
R0.15 (Typ)  
1.27+/.127  
NOTES:  
0.300.89  
1.19 (Typ)  
0.180.25  
A) NO STANDARD APPLIES TO THIS PACKAGE  
B) ALL DIMENSIONS ARE IN MILLIMETERS.  
C) DIMENSIONS ARE EXCLUSIVE OF BURRS,  
MOLD FLASH, AND TIE BAR EXTRUSION  
Electronic versions are uncontrolled except when accessed directly from the Document Repository.  
Printed versions are uncontrolled except when stamped “CONTROLLED COPY” in red.  
DOCUMENT NUMBER:  
98AON13485G  
MFP4 2.5X4.4, 1.27P  
PAGE 1 OF 1  
DESCRIPTION:  
ON Semiconductor and  
are trademarks of Semiconductor Components Industries, LLC dba ON Semiconductor or its subsidiaries in the United States and/or other countries.  
ON Semiconductor reserves the right to make changes without further notice to any products herein. ON Semiconductor makes no warranty, representation or guarantee regarding  
the suitability of its products for any particular purpose, nor does ON Semiconductor assume any liability arising out of the application or use of any product or circuit, and specifically  
disclaims any and all liability, including without limitation special, consequential or incidental damages. ON Semiconductor does not convey any license under its patent rights nor the  
rights of others.  
© Semiconductor Components Industries, LLC, 2019  
www.onsemi.com  
onsemi,  
, and other names, marks, and brands are registered and/or common law trademarks of Semiconductor Components Industries, LLC dba “onsemi” or its affiliates  
and/or subsidiaries in the United States and/or other countries. onsemi owns the rights to a number of patents, trademarks, copyrights, trade secrets, and other intellectual property.  
A listing of onsemi’s product/patent coverage may be accessed at www.onsemi.com/site/pdf/PatentMarking.pdf. onsemi reserves the right to make changes at any time to any  
products or information herein, without notice. The information herein is provided “asis” and onsemi makes no warranty, representation or guarantee regarding the accuracy of the  
information, product features, availability, functionality, or suitability of its products for any particular purpose, nor does onsemi assume any liability arising out of the application or use  
of any product or circuit, and specifically disclaims any and all liability, including without limitation special, consequential or incidental damages. Buyer is responsible for its products  
and applications using onsemi products, including compliance with all laws, regulations and safety requirements or standards, regardless of any support or applications information  
provided by onsemi. “Typical” parameters which may be provided in onsemi data sheets and/or specifications can and do vary in different applications and actual performance may  
vary over time. All operating parameters, including “Typicals” must be validated for each customer application by customer’s technical experts. onsemi does not convey any license  
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ADDITIONAL INFORMATION  
TECHNICAL PUBLICATIONS:  
Technical Library: www.onsemi.com/design/resources/technicaldocumentation  
onsemi Website: www.onsemi.com  
ONLINE SUPPORT: www.onsemi.com/support  
For additional information, please contact your local Sales Representative at  
www.onsemi.com/support/sales  

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