FPF2701MPX [ONSEMI]

AccuPower™ 0.4~2 A 可调节过电流保护负载开关;
FPF2701MPX
型号: FPF2701MPX
厂家: ONSEMI    ONSEMI
描述:

AccuPower™ 0.4~2 A 可调节过电流保护负载开关

开关 PC 驱动 光电二极管 过电流保护 接口集成电路 驱动器
文件: 总20页 (文件大小:1371K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
DATA SHEET  
www.onsemi.cn  
AccuPower 0.4~2 A  
ꢀꢁꢂꢃꢄꢅꢆꢂ  
ꢀꢁ  
ꢂꢃꢁ  
FPF2700, FPF2701, FPF2702  
WDFN8 3x3, 0.65P  
MLP  
CASE 511DD  
ꢇꢈ  
AccuPower FPF270XϷ᠏ꢂꢃꢁꢂ
ڡ
׏
ꢀἡ  
Ŕꢀয
٬
ꢂꢃꢅꢆᣠ෯ȜŔ
׏
ᛓී
ꢃ  
0.4 A2.0 AFPF270Xӥ
؋
իᘦ╧ַᖇ NṿMOSFETꢀÅ֪  
իᘦ╧ො⑙ሇ
׏
⋍ᖲᒴ”ꢀꢂꢃ᏶ɼ៖᪗ꢃ⇐Ḣჵᡇ  
Ŕꢀ⁰ማၒᑐͅꢀի
2.8 V36 V。şĮꢀի  
ᬋᩡ͜඙ො
׏
↠Ἓ᏶ё✈ꢂꢃ
׏
ş✈ᜥ᧧ᆷჵ
٬
/  
᏶ꢀ⁰ᵃဘჵ᥅ơᖇᜥ⒖ᇡ。  
ꢀꢁ  
SOIC8  
SO8  
CASE 751EB  
FPF270XϷŔᶯ⛰ꢂ
ڡ
n⛰ҝꢂꢃ
ڭ
݋
Ћ。  
ᐠᣩ
׏
Жꢂꢃꢀἡş͖⛽ᡕ᪗᮸০ӛŔꢀἡḔ  
ᒄѿᡕ▨ѿḔၓŔ
ꢅf。  
FPF2700ᡕ᪗
ൺὨŔ᪗ꢃ᪫ጜ
ڭ
ၴŔយჯꢃ  
ϧឍꢂꢃ,
׮
҈؏៖
׮
Ოᚥ。  
MARKING DIAGRAM  
FPF2701ᡕ᪗
ൺὨŔ᪗ꢃ᪫ጜ
ڭ
ၴŔយჯꢃ  
ϧឍꢂꢃꢂꢃឍრ,ℴ∮ ON௪፻ᒶ҈᏶૕ᩣͅꢀի  
᫪᪗ UVLO ᆊ▏。  
$Y&Z&2&K  
$Y&Z&2&K  
FPF  
270x  
FPF  
270x  
FPF2702ᚎᙱn
ٱ
。⛾ FPF2700
٬
 FPF2701  
Lj Ĝ ᄳ ൣ ↠ Ἓ ꢀ ἡ 
٭
 ĭ ú ෦ ᜥ ǁ 
ח
 ௪ ᚎ ਾ ꢃ  
LOW
nş
ٱ
ԯFPF2702  
Ŕ᪗ꢃ
ڭ
ၴŔၴ✈。  
WDFN8  
SOIC8  
FPF270x = Device Code (x = 0, 1, 2)  
FPF270X
؋
٬Մ
߰ŔՊ⃄൒ॶ8 MLP 3x3 mm  
٬
 SO8 。  
$Y  
&Z  
&2  
&K  
= Logo  
= Assembly Plant Code  
= 2Digit Date Code  
= 2Digits Lot Run Traceability Code  
ꢉꢊ  
2.8 V 36 V Ŕͅꢀի
 
ꢉ͘R  
= 88 mW  
DS(ON)  
ORDERING INFORMATION  
See detailed ordering and shipping information on page 17 of  
this data sheet.  
0.4 A 2 A Ŕ
׏
ᛓꢁ(ᣠ෯Ȝ)  
իᘦ╧ᖇЖ  
ESD ,ᡕ᪗ 2000 V HBM  
ឍ  
؏✈Įꢀၓᣩᜨ  
UVLO ᒄ  
ꢀ⁰ᵃဘϚ  
These are PbFree Devices  
ꢋꢌ  
ꢀᤚ҈  
ᝐˑLjᤚ  
ꢀര  
ၴ✈  
ᙱ٧  
̼ƨ҈
 
ǁ૧  
© Semiconductor Components Industries, LLC, 2010  
1
Publication Order Number:  
January, 2022 Rev. 2  
FPF2702CN/D  
FPF2700, FPF2701, FPF2702  
ꢋꢌꢍꢃ  
36 V (ꢄꢅ)  
VIN  
ꢆꢇꢈ  
VOUT  
FLAGB  
PGOOD  
ꢉꢊ  
ISET  
ꢉꢊ  
100 kW  
COUT  
VIN  
2.8 V 36 V  
CIN  
RSET  
GND  
ꢃ 1. ꢄꢅꢋꢌ  
ꢃ  
IN  
V
DD  
VREF  
Reg  
BGAP/BIAS  
Current Limit  
SOA Protection  
Current Limit  
UVLO  
CONTROL  
LOGIC  
ON  
THERMAL  
PROTECTION  
CHARGE  
PUMP  
OUT  
ISET  
VIN  
VOUT  
PGOOD  
FLAGB  
+
GND  
ꢃ 2. ꢃ  
www.onsemi.cn  
2
FPF2700, FPF2701, FPF2702  
ꢎꢏꢐꢆ  
VIN  
1
2
8
7
VOUT  
VOUT  
8
7
1
2
VIN  
PGOOD  
FLAGB  
FLAGB  
PGOOD  
GND  
ISET  
3
4
6
5
NC  
NC  
6
5
3
4
ISET  
ꢉꢊ  
ꢉꢊ  
GND  
GND  
ꢃ 3. MLP (ꢑꢒ)  
ꢃ 4. SO8 ()  
ꢎꢏꢈꢉ  
ꢎꢏꢊ  
ꢓ  
VIN  
ꢇꢈ  
1
2
3
4
5
6
7
8
ꢋꢌꢍꢃ。ꢋꢌꢎIC ꢐꢋꢌꢋի。  
PGOOD  
ISET  
ꢋꢌꢑꢒꢍϚ。ꢎꢓꢍϚꢔꢕꢍϚիꢖꢗꢍի90%。  
ꢋꢘꢙЖꢚꢛꢍꢃ。ISET +ꢝꢐꢋꢞꢚꢛꢎꢐꢙꢘꢁ。  
ON Жꢃ。Įꢋꢠꢡꢢ。  
ꢉꢊ  
GND  
ꢣꢜ  
NC  
ꢤꢥꢣ。ƽꢦꢎꢧꢨꢣꢜ。  
FLAGB  
VOUT  
ꢩꢪꢍϚ。Įꢋꢠꢡꢢ,ꢓꢫꢎꢧꢍϚ,ꢔꢕꢙꢘիꢨꢭꢮꢯꢰ。  
Ϛ。ꢋꢌꢎꢐꢍϚ。  
www.onsemi.cn  
3
FPF2700, FPF2701, FPF2702  
ꢈꢎ  
ꢊ  
ꢘ  
ꢐꢎ  
0.3  
0.3  
0.3  
ꢍꢎ  
ꢑꢒ  
V
PGOOD, FLAGB, VIN GND  
40  
VOUT GND  
ON GND  
V
IN  
+ 0.3  
6
V
V
P
D
ѿ(T = 25°C)  
1.25  
W
MLP 3x3 (1), ֢ꢳꢁ 5  
SO8 (1), ֢ꢳꢁ 7  
A
1.00  
3.5  
+125  
+150  
I
ꢥꢴꢎꢋꢘꢄꢅꢁ  
ļꢶꢮ  
A
°C  
°C  
V
SW  
T
J
40  
65  
2000  
2000  
T
STG  
ʈꢮꢸ  
ESD  
ꢹꢋꢺꢋꢻꢼꢽꢾ  
šijꢺꢋꢿꣀ, JESD22-A114  
šijꢺꢋꢿꣀ, JESD22-C101  
MLP 3x3 (1), ֢ꢳꢁ 5  
SO8 (1), ֢ꢳꢁ 7  
Θ
JA  
ꢶꢆꣁꣂꣃꢞ  
80  
°C/W  
102  
Stresses exceeding those listed in the Maximum Ratings table may damage the device. If any of these limits are exceeded, device functionality  
should not be assumed, damage may occur and reliability may be affected.  
(꣄֢ꣅ꣆)  
꣇꣈ꢋի꣉ꢭꢄꢅ꣊꣋ꢄϷϚ꣍꣎,꣏Ö
׏
ú꣑꣒꣇꣈꣉ꢭÛĵ{,꣔ꢤ꣕ƽ꣖꣏Öѿ꣐,
׏
úꢉ꣗꣏Ö꣑꣒,꣘꣙  
׏
꣚꣛。  
1. ꣃꢞ q ֶΓn꣜꣝꣞ꢠ꣟꣠꣡꣢꣣,2 oz ꣤꣣Å֪ FR4 ꣥꣦꣧꣡ 1.5 x 1.5 in ꢐ꣢꣣ꢐ꣏Ö。  
JA  
ꢃ 5. 805C/W, ꢔꢕ2oz 1in2  
ꢛꢜꢝ  
ꢃ 6. 2265C/W, ꢔꢕ2oz  
ꢚꢕꢛꢜꢝ  
ꢃ 7. 1025C/W, ꢔꢕ2oz 1in2  
ꢛꢜꢝ  
ꢃ 8. 1815C/W, ꢔꢕ2oz  
ꢚꢕꢛꢜꢝ  
ꢞꢟꢠꢙ  
ꢊ  
ꢘ  
ꢐꢎ  
2.8  
ꢍꢎ  
ꢑꢒ  
V
V
IN  
ꢋꢌꢋի。  
ļꣁꣂꢮꢸ  
36.0  
85  
T
A
40  
°C  
Functional operation above the stresses listed in the Recommended Operating Ranges is not implied. Extended exposure to stresses beyond  
the Recommended Operating Ranges limits may affect device reliability.  
(꣄֢ꣅ꣆)  
n꣩꣪ꢵļ꣍꣎꣌꣫Ϸի꣭,⛽ƽ꣖꣐꣮ꢑꢒ꣯꣰꣱꣭ꢝ꣞꣩꣪ꢵļ꣍꣎꣌꣫ꣲ꣋꣍꣎Åꣳꢐꢋի⛻꣯꣰,
׏
ú꣘꣙꣏Öꢐ  
׏
꣚꣛。  
www.onsemi.cn  
4
 
FPF2700, FPF2701, FPF2702  
ꢢꢣꢉꢊ (V = 2.8 36 V T = 40 +85°C ꣴꣵ
׆
ꢡꣶꣷ。͘ꢁꢅ V =12 V Å֪ T = 25°C.)  
IN  
A
IN  
A
ꢊ  
ꢘ  
ꢙ  
ꢐꢎ ꢄꢅꢎ ꢄꢅꢎ  
ꢑꢒ  
ꢤꢠꢘ  
V
2.8  
36.0  
140  
14  
114  
140  
114  
140  
V
ļի  
ꢹꢰꢋꢘ  
꣸ꢋꢘ  
ꢉꢊꢋꢞ  
IN  
I
Q
V
V
= 12 V, V = 0 V, I = 0 A  
OUT  
92  
5
mA  
mA  
mW  
IN  
ON  
I
= 36 V, V = 3.3 V, I = 0 A  
OUT  
SHDN  
IN  
ON  
R
T = 25°C, V = 12 V  
A
88  
ON  
IN  
T = 40 +85°C, V = 12 V  
A
IN  
T = 25°C, V = 5 V  
A
88  
IN  
T = 40 +85°C, V = 5 V  
A
IN  
V
IH  
V
= 2.8 36 V  
= 2.8 36 V  
= 5.5 V GND  
2.0  
V
V
ꢉꢊꢍ꣹꣺꣨ꢋի  
ꢉꢊꢍ꣹꣺Įի  
ꢉꢊꢍꢓꢋꢘ  
IN  
IN  
V
V
V
V
V
V
0.8  
1
IL  
I
LK  
1  
mA  
mA  
V
ON  
I
= 36 V, V = 3.3 V, V = 0 V  
OUT  
0.01  
0.1  
꣸ꢎꢓꢋꢘ  
SWOFF  
IN  
IN  
IN  
ON  
V
= 5 V, I  
= 1 mA  
0.2  
1
FLAGB Ϛ꣹꣺Įի  
FLAGB Ϛ꣹꣺꣨ꢓꢋꢘ  
PGOOD ꣻ꣼ꢋի  
FLAGB(LO)  
SINK  
I
= 36 V, ꢣꢊ, V  
= 36 V  
mA  
%
FLAGB(HI)  
FLAGB  
V
V
V
= 5 V, V  
V ꢐꣽϦ,  
90  
PGOOD  
IN  
OUT  
OUT  
IN  
⛺ԧ  
V
V
V
= 5 V, V  
OUT  
V ꢐꣽϦ,  
3
%
PGOOD ꣿꣁ  
PGOOD(HYS)  
IN  
OUT  
IN  
꤀  
V
V
= 5 V, I  
= 1 mA  
0.1  
0.2  
1
V
PGOOD Ϛ꣹꣺Įի  
PGOOD ꣹꣺ꢍϚ꣨ꢓꢋꢘ  
PGOOD(LO)  
IN  
IN  
SINK  
I
V
= 36 V, ꢣꢊ, V  
= 36 V  
mA  
PGOOD(HI)  
PGOOD  
ꢃ  
I
T = 25°C  
20  
+20  
%
A
ꢙꢘ  
LIM  
A
I
V
OUT  
< 2 V, ꢭꢘ꤂Ö⛻ꢐꢎꢂ  
0.75 x  
NOM  
꤁ꢧꢋꢘꢙꢁ  
SC  
I
TSD  
140  
110  
30  
°C  
꣸꤃ꢁ  
®ꢂ꤅꤆  
ꣿ꤇  
꣸  
UVLO  
V
IN  
ԧ꣨  
2.3  
2.5  
100  
2.7  
V
ի꤄꤈  
UVLO_  
mV  
ի꤄꤈ꣿꣁ  
HYST  
ꢥ  
t
R = 500 W, C = 2 mF  
2.7  
0.1  
ms  
ꢉꢊ꤉ꤊ  
don  
L
L
t
꣸꤉ꤊ  
doff  
t
7.5  
V
OUT  
V
OUT  
⛺ԧ꣭ꢝ  
꤀꣭ꢝ  
R
t
1.5  
F
t
FPF2700/1, T = 25°C  
0.25  
63.8  
0.50  
127.5  
50  
0.75  
191.2  
ms  
ms  
ms  
ꢭꢋꢘꤋԚ꣭ꢝ  
҈ꤍꤎ꣭ꢝ  
BLANK  
A
t
FPF2700, T = 25°C  
RESTART  
A
t
V = 12 V, V = 0 V  
IN ON  
ꢋꢘꢙЖ꣙ꤏ꣭ꢝ  
CLR  
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.  
(꣄֢ꣅ꣆)  
ꣴꣵ
׆
ꢡꣶꣷ,ꢋꤐꤑ꣛꣌꣫ꢄϷϚꢐꤒ꣬Ϸꤓꤔ꤂Ö⛻‡ꤕ꣛꣐֢꣇꣈꣞
׬
Ö⛻꣯꣰,‡ꤕ꣛꣐
׏
⛾“ꢋꤐꤑ꣛꣌꣫  
Ϸ꣛꣐֢⛽⛰。  
www.onsemi.cn  
5
FPF2700, FPF2701, FPF2702  
ꢦꢧꢃ  
90  
90  
10  
10  
VOUT  
tR  
50  
tF  
3.3  
VON  
50  
90  
10  
VOUT  
tdon  
= t + t  
tdoff  
t
t
= t + t  
ON  
R
don  
OFF F doff  
ꢃ 9. ꢦꢧꢃ  
ꢄꢅꢊꢨꢉꢩ  
(V = 12 V and T = 25°C)  
IN  
A
1.40  
1.38  
1.35  
1.33  
1.30  
1.28  
1.25  
1.23  
1.20  
1.80  
T = 25°C  
V
IN  
= 12 V  
A
1.70  
1.60  
1.50  
1.40  
1.30  
1.20  
1.10  
1.00  
0.90  
0.80  
V
IH  
V
IH  
V
IL  
V
IL  
0
5
10  
15  
20  
25  
30  
35  
40  
50 25  
0
25  
50  
75  
100 125 150  
Supply Voltage (V)  
T , Junction Temperature (°C)  
J
ꢃ 10. ꢜꢪꢫꢎꢝꢢꢬ  
ꢃ 11. ꢜꢪꢫꢎꢝꢭꢮꢚꢯ  
130  
120  
110  
100  
90  
12  
10  
8
T = 125°C  
A
V
ON  
= 0 V  
T = 125°C  
A
V
ON  
= 5 V  
T = 85°C  
T = 85°C  
A
A
T = 25°C  
A
T = 25°C  
A
6
T = 40°C  
A
T = 40°C  
A
4
80  
2
70  
60  
0
0
5
10  
15  
20  
25  
30  
35  
40  
0
5
10  
15  
20  
25  
30  
35  
40  
Supply Voltage (V)  
Supply Voltage (V)  
ꢃ 12. ꢰꢥꢢꢂꢢꢬꢢի(ꢱꢪ) ꢯ  
ꢃ 13. ꢰꢥꢢꢂꢢꢬꢢի() ꢯ  
www.onsemi.cn  
6
FPF2700, FPF2701, FPF2702  
ꢄꢅꢊꢨꢉꢩ  
(V = 12 V and T = 25°C) (continued)  
IN  
A
100  
95  
90  
85  
80  
75  
70  
65  
60  
160  
140  
120  
100  
80  
60  
40  
0
10  
20  
30  
40  
50 25  
0
25  
50  
75  
100 125 150  
Supply Voltage (V)  
T , Junction Temperature (°C)  
J
ꢃ 14. ꢜꢪꢢꢳꢢꢬꢢի  
ꢃ 15. ꢜꢪꢢꢳꢴꢭ  
12  
11  
10  
9
4.0  
3.5  
3.0  
2.5  
2.0  
1.5  
1.0  
V
= 12 V  
IN  
R = 500 W  
C = 2 mF  
L
L
8
7
6
5
4
50 25  
0
25  
50  
75  
100 125 150  
50 25  
0
25  
50  
75  
100 125 150  
T , Junction Temperature (°C)  
J
T , Junction Temperature (°C)  
J
ꢃ 16. ؏ꢵꢶꢴꢭ  
ꢃ 17. Ϛꢗԧꢦꢸꢴꢭ  
2.00  
1.90  
1.80  
1.70  
1.60  
1.50  
0.15  
0.13  
0.11  
0.09  
0.07  
0.05  
50 25  
0
25  
50  
75  
100 125 150  
50 25  
0
25  
50  
75  
100 125 150  
T , Junction Temperature (°C)  
J
T , Junction Temperature (°C)  
J
ꢃ 18. ꢂꢲꢵꢶꢴꢭ  
ꢃ 19. Ϛ⛻ꢹꢦꢸꢴꢭ  
www.onsemi.cn  
7
FPF2700, FPF2701, FPF2702  
FPF2700 FPF2701 ꢄꢅꢉꢊ  
(V  
< 2 V ꣭,ꢙꢘꢚꢛI  
75%)  
OUT  
LIM  
5 V  
0 V  
V
ON  
V
IN  
V
I
OUT  
2 V  
0 V  
Slew rate limited turnon  
= 7.5 ms  
t
RISE  
OUT  
I
LIM  
Turnon delay  
= 2.7 ms  
t
DON  
ꢃ 20. ꢺꢻ؏ꢛ0.5X ILIM  
V
IN  
V
IN  
2 V  
V
OUT  
OUT  
0 V  
12 A  
2 V  
0 V  
12 A  
Switch turned off due to the  
expiration of t (FPF2700,  
FPF2701) or due to overheating  
Current limited  
operation at I  
BLANK  
SET  
Current limited  
operation at  
0.75x I  
LIM  
NOTE: Autorestart after  
(FPF2700) or  
t
NOTE: Autorestart after  
RESTART  
I
I
OUT  
I
restart after cooling down  
is not shown  
LIM  
t
(FPF2700) or  
RESTART  
I
LIM  
LIM  
t
or  
BLANK  
0.75x I  
restart after cooling down  
is not shown  
t
or  
Thermal  
BLANK  
Load  
demanding  
1.5X I  
SET  
Thermal Shutdown  
Shutdown  
OUT shorted to GND  
and switch immediately  
turned OFF  
Switch turns back ON and enters current limited  
operation at short circuit current limit (75% of I  
Switch turned off due to  
the expiration of t  
)
SET  
BLANK  
Turnon delay is similar  
to normal t ~2.7 ms  
(FPF2700, FPF2701) or  
due to overheating  
DON  
FLAGB  
FLAGB  
ꢃ 21. OUT ꢽꢱꢼ GND, ꢽꢾꢿΕꣀꣁ  
(SOA ꢃꣂ
׮
ꣃ꣄ꢂꣅ)  
ꢃ 22. OUT ꢁꢅ 1.5X ILIM (꣆꣇ꢁꢅ)  
V
IN  
V
IN  
V
OUT  
2 V  
0 V  
12 A  
Rise time  
~2.7 ms  
V
OUT  
t
R
2 V  
0 V  
12 A  
Turnon delay is  
similar to normal  
t
~2.7 ms  
DON  
Normal operation  
Normal operation  
I
OUT  
I
OUT  
I
SET  
I
SET  
OUT shorted to GND  
and switch immediately  
turned OFF  
Output Load current  
demanding 1.5X I  
Load demanding I=1.5X I  
removed from OUT before the  
Switch turns back ON and  
enters normal operation  
SET  
SET  
expiration of t  
(FPF2700,  
BLANK  
FPF2701) or before overheating  
FLAGB  
FLAGB  
ꢃ 23. OUT ꢽꢱꢼ GND, ꢽꢾꢿΕ꣈꣉  
(SOA +
׮
꣊꣋ꢺꢻꣅ)  
ꢃ 24. Out ꢁꢅ 1.5X ILIM (꣌ꢥꢁꢅ)  
www.onsemi.cn  
8
 
FPF2700, FPF2701, FPF2702  
FPF2702 ꢄꢅꢉꢊ  
V
IN  
V
OUT  
2 V  
0 V  
12 A  
Current limited  
operation at  
Switch turned off  
due to overheating  
0.75x I  
LIM  
I
OUT  
I
LIM  
LIM  
0.75x I  
Switch turns back ON and enters  
current limited operation at short  
circuit current limit (75% of I  
OUT shorted to GND  
and switch immediately  
turned OFF  
)
SET  
Turnon delay is similar  
to normal t ~2.7 ms  
DON  
FLAGB  
FLAGB  
asserts due to  
current limit  
FLAGB asserts due to  
Thermal Shutdown  
ꢃ 25. OUT ꢽꢱꢼ GND,ꢽꢾ꣍Εꣀꣁ  
(SOA ꢃ꣄ꢂ+
׮
꣊꣋꣄ꢂ)  
V
IN  
V
OUT  
2 V  
0 V  
12 A  
Current limited  
operation at I  
SET  
I
OUT  
I
LIM  
Load demanding  
1.5X I  
SET  
Switch turned off  
due to overheating  
FLAGB  
FLAGB  
asserts due to  
current limit  
FLAGB asserts due to  
Thermal Shutdown  
Figure 26. OUT ꢁꢅ1.5X ILIM (꣆꣇ꢁꢅ)  
www.onsemi.cn  
9
 
FPF2700, FPF2701, FPF2702  
FPF270X ꢄꢅꢊꢨꢉꢩ  
(V = 12 V T = 25°C)  
IN  
A
ꢃ 27. 12 V ꢪꢵꢶ (RL = 500 W, COUT = 2 mF)  
ꢃ 28. 12 V ꣎ꢵꢶ (RL = 500 W, COUT = 2 mF)  
ꢃ 29. 12 V ꣈꣏ꢦꢸ (Ϛꢁꢅtblank ꣐ꢦ,  
FPF2700/01, ILIM = 1 A, ILOAD = 3.3 A, COUT = mF,  
ꢃ 30. 12 V ؏ꢦꢸ (ꢂꢜꢪ꣊ͅꣀꣁꢁꢂ꣍ꢥ,  
RESTART 127.5 ms)  
t
R
LOAD = 500 W) VOC (2)  
ꢃ 31. ꣔ꢁꢅ꣕ꢂ (ILOAD > ILIM, FPF2702  
ͅꢂ꣖꣗, ÅILIM) ꣘꣋  
ꢃ 32. OUT ꢽꢱꢼ GND, ꢽꢾꢿΕ꣈꣉ (SOA  
+
׮
꣊꣋ꢺꢻꣅ, FPF2700 / FPF2701)  
:  
2. ꣞ꢍϚҀ⛰ꢇ 500 mW ꢋꢞꢊꢭ NMOSֱϚ。V ǁ
ח
ÄÖꢭꢘꢯΕ。V NMOS ꢐꤙꢫꤚ҈。  
OC  
OC  
www.onsemi.cn  
10  
 
FPF2700, FPF2701, FPF2702  
ꢋꢌǁ꣙  
ꢢꢂ꣄Ж  
ꢇꢈ  
FPF270XϷꢀἡЖꢂꢃᚎᙱn
פ
ҝၴ✈  
Ŕꢀ⁰ꢅ® 2.8 V36 VŔͅꢀի
Å  
֪
׏
᝔ŔꢀἡЖȜ。FPF270XϷ
׏ڡ
Åईᖰ  
ᚎᙱŔᣠœļꢀἡŔ
׬
ൾ▐ᖇЖ٬
ꢇ  
ꢀἡЖ
׏
̾᫪᪗Ŕꢀἡ⛽úᡕ᪗⛰ꢊᣠଇ  
Ȝ,૜͖ᣠ෯Ȝ⛽ȺЖ᫪᪗᪮ᖅई ISET
٬  
GND +Ŕ૶
׏
᝔ꢀἡЖŔḔၓ。  
͘ȜŔ
׏
ᛓී
510 mA2.5 Aᣠ෯ꢁ  
Ŕᨘᆣꢃ͘88 mW (V = 12 V) Nṿ  
(I  
)
0.4 A2.0 Aӥᓌ 20%ἡ  
IN  
LIM(MIN)  
MOSFET
٬
2.8 V36 VŔͅꢀի
ͥ  
ļŔᖇЖ
。  
඙࿎FPF2700
٬
 FPF2701ꢀ͗⛰ꢊᵛԚ៖⃄,ईᵄ  
ļሲἡ⁰ (
 24)ୢ᥼ἡ⒖ᇡᓡ⃄  
ᡕ᪗ᵛԚ៖⃄,FPF2700സၖឍრ(
 29)。  
ୢ᥼ ONᓡᣩᜨ,಺҈؏ѿ᜞რၖ  
҈؏៖(
 30)ꢀ+
׮
ͭᴁᐳრრꢁ。ඵ᪗ἡ⒖  
ᇡᓡŔ៖⃄ᡕ᪗ᵛԚ៖⃄,FPF2701Ŕസѿ෦  
ឍრꢁ。ONϧᕂ᏶ͅꢀ⁰ቂ૭+Э,ᚵ  
FPF2702ẁᣩꢀἡЖᵛԚ៖⃄,  
ᵄई ONៀᜨ᏶⋍ꢁ+Э෦ᓡঽ  
Åሲἡ⒖ᇡ࿅ļ。  
FPF270X ꢀ ͗  
׏
 ᝔ Ŕ ꢀ ἡ Ж ᴀ ի ₽ ῑ  
(UVLO); ꢀ⁰ᵃဘᓧЊ
 (PGOOD)᧧ᆷϚ  
(FLAGB)Å֪⋍ἡእΕ⛻,ꢂꢃრ  
ЖꢂꢃŔꢀἡȜ。ŔȜ
׏
᫪᪗  
ISET 400 mA 2 A Ŕ
ͥᛓ൒。  
/꣎꣚Ж  
ON Įꢀၓᣩᜨ
׏
✈᥅ᖇЖრŔ⒖ᇡ。Ä  
ONĮꢀၓ
׏
ꢁꢇᓡො⒖ᇡ。  
ON ೃ▨ꢀၓ៖ͅꢁឍ⒖ᇡON  
׏
5.5 V Ŕꢀၓꢀի。  
fꢀἡЖѿ+,᫪᪗
ᒄ٬Ⓦ֛Ŕ  
SOA ᒄꢀᒄრꢁ。  
ͅիŔᴀի⒖ᇡ᏶140°C 
׏
Ʀ  
ONឍრꢁ。ᵄ૶Ϛ▐ᡕ᪗ᵛԚ៖
׮
,  
FPF2700
٬
 FPF2701ꢀúꢁឍრꢁ。FPF2700ꢀ͗҈  
؏ѿ்,
׏
Å҈؏៖⃄᪗
׮
҈ᐳრრꢁ。  
n 2701ᛄ,ONͭᴁϧᕂ。  
FPF2702ꢀ⛽ú
ڭࣀ
ꢀἡእΕĦONᣩ  
ᜨ᣿Åሲἡᰁჯষঽļᴀի₽ῑ
٬⋍
ឍ  
ѿៀᜨON⛽͗ͥᒩ᏶ᒩꢀℋ,✄  
὎҈᜞。  
SOA ꢃ꣄ꢂ (IOUT > 12 A)  
FPF270X͗SOAꢀꢇѿईᵃဘᚭļӛ  
ᄳꢀἡ໐Ȝᡕ᪗ 12 A៖✈᥅ꢂꢃꢁ。ୢ᥼  
ֱ⛿ʽ(I  
> 12 A),᫪᪗Ⓦ֛Ŕ൩ļԚ (SOA)  
OUT  
ᒄꢀ(
 23)
׏
Åईଇ1Ămsꢀ+
׮
 25  
ꢁ。ϚֿϚ▐ՑֱꢀἡūୢʽᖅGND  
,ᚵѿ
׏
Åꢇᒄრꢁ。2.7 msŔො᪯  
׮
҈ថො。  
ꢽꢾ꣄ꢂ (VOUT < VSCTH = 2 V)  
꣛꣜꣝ꢞ  
ϚꢀիᢜೃĮnʽᢿ⃘Ȝꢀի V  
,ꢁἡ  
SCTH  
ំ᪠ἫА,ᩣͅᴀի᏶ꢁ▐ᜱ, FLAGB  
᫪᪗ᣩᜨĮꢀၓֱϚᜥᰁჯǁ
ח
FPF2700 ᏶  
FPF2701 Ϛ▐ἡእΕFLAGB ईᵛԚ៖(
 21  
٬
 22)᤿៖ͅĮꢀၓn FPF2702 (
ꢀ26),  
FLAGBϹ֛ЛָᏰĮꢀၓFPF2700Ŕἡ៖⃄  
ᡕ᪗ᵛԚ៖⃄⁏FLAGB෦ई҈؏៖ͥꢇ  
Įꢀၓn FPF2701FLAGB ꢀၓ✄  
ON ϧᕂ᪫ጜᲚ。  
n FPF2702FLAGBईᜥĮꢀၓၖ  
ईᜥΕ᤿៖֛Л
ꢀၓFLAGB ⛰ꢊ  
რ⃯ MOSFET,⇐ᑑᒩꢀᣠଇᒩꢀիꢃ  
36 V (
 26)。  
ȜͭʽᢿꢁȜ,ॶȜŔ 75%  
(0.75 x I ) (
 21)᫪᪗ℝĮ
Ŕѿ૧,
׏
ᵂ  
LIM,  
៉ ⋍ V  
ꢀ Ȝ ᚎ ਾ 2 V ई ଇ ॶ  
SCTH  
V
ᚎਾȜ。  
= 2.1 Vꢁ®ʽᢿꢁἡᰁჯҋ,ꢁ፻  
OUT  
꣞꣟ꢢꢂ꣄Жꢎ  
FPF270Xꢀ͗0.4 A2.0 A
׏
Ŕᣠ෯
׏
 
᫪᪗᪮ᖅई ISET
٬
 GNDꢀ+Ŕ૶ᖅꢀR ᪫ጜ  
SET  
ގ
̾ᚎਾ R ꢀȜ඙࿎А 1%Įฝ  
SET  
ᲟℝĮꢀযŔማἡ඙࿎。  
şϷؙ
׏
ᙱ٧
५ꢀἡЖȜŔȜ:  
277.5  
ឍ᣿⃄,ёᵂFLAGBÅί෱ෙꢀ⁰ꢀἡŔ  
ईၴ✈⛰ꢊ 100 kW Ŕᒩꢀ。  
RSET (kW) +  
(eq. 1)  
I
LIM(TYP) (A)  
I
᠏৚n R  
Ŕ͘Ȝ  
LIM(TYP)  
SET  
www.onsemi.cn  
11  
FPF2700, FPF2701, FPF2702  
ꢢꢬꢺꢻ  
1. RSET ꣡꣢꣣ꢟ  
FPF270Xᣩꢀ⁰ᵃဘŔѿPGOOD⛰ꢊ  
⃯ᥡრMOSFETϚꢀիАͅꢀիŔ 90%  
ĭ(
 23)ꢀၓPGOODꢀúҀ⛰ꢊ 3%Ŕ͘  
ꢢꢂ꣄(A)  
ꢄꢅꢎ  
2.50  
ꢐꢎ  
2.00  
1.79  
1.51  
1.22  
1.01  
0.81  
0.59  
0.40  
ꢍꢎ  
3.00  
2.69  
2.27  
1.83  
1.51  
1.22  
0.89  
0.61  
(%)  
20  
R
(kW)  
SET  
111  
PGOOD₾▏V  
ᢜೃ PGOODȜꢀի℔  
OUT  
׏
PGOOD Ŕᑶ҈。  
124  
147  
182  
220  
274  
374  
549  
2.24  
20  
PGOOD௪⇐ᑑ⛰ꢊ૶ᖅŔᒩꢀℋ᪮૶  
ᖅꢀի⁰,ᚵꢀ⁰ᖅŔ͖¶ൿ␧Ŕͅ  
Ḕၓ͜
ៀᜨ៖PGOODꢀꢇĮꢀၓẁᣩ  
ꢀṀ៖
׊
PGOODᖅŔ͖¶
ͅḔၓ͜  
ꢃfǑឍ⒖ᇡ៖Ŕꢀἡ
׏
PGOOD௪  
ŔϚꢀիş͘Ȝꢃ  
100 kWŔᒩꢀईၴ✈⛽ş✈ꢀ⁰ᵃဘѿ  
்,
׏
PGOOD ᖅऐ。  
1.89  
20  
1.52  
20  
1.26  
20  
1.01  
20  
0.74  
20  
0.51  
20  
2.8  
2.6  
2.4  
2.2  
2.0  
1.8  
1.6  
1.4  
1.2  
1.0  
0.8  
0.6  
0.4  
0.2  
0.0  
꣎  
׏
ᵂᡖ
ͥ᏶૶᪗▨ꢁႆ᪗  
ꢁŔእΕ⛻ꢁႆᡕ᪗ 140°CFLAGBᣩᜨ✄  
ꢁꢁ。  
૿ΗՔ
׮
 (
ꢁႆĮnȜ)҈  
。ꢃ̭⛽Ŕꢁႆ⇗ั,ई⋍ͅ
٬
᫐  
Ϛꢁႆ+30°C (͘Ȝ)Ŕ⋍₾▏
ר
◦Ŕ  
এᢿᥟ࿣ภ
׏
Åᣩᜨ̭(֢
 35, FPF2702  
Ŕ⋍ឍᚭļ)。  
ON  
100  
200  
300  
400  
500  
600  
V
IN  
R
(kW)  
SET  
ꢃ 33. ILIM RSET  
V
I
OUT  
2 V  
իꢲ꣦ (UVLO)  
Thermal Cycling  
OUT  
Device cools off  
ͅꢀիĮnᴀի₽ῑ⃘Ȝᴀի₽ῑѿ෦  
ꢁ。ONᣩᜨ (ONĮꢀၓ),ᩣ  
ͅꢀիnᴀի₽ῑ⃘Ȝᵄ៖
׏
ᖇŔრ᫪  
I
LIM  
Over  
current  
condition  
(
 34)V ꢀ⛺ԧUVLOȜꢀի᫪᪗ͥ᮸ᚎ  
2.5 Vᴀի₽ῑ⃘Ȝ₾▏0.1 V。  
IN  
FLAGB  
ON  
ꢃ 35. FPF2702 ꢲꣅꢘ  
UVLO Threshold  
Device Wake up  
V
IN  
FLAGB  
Rise time  
10% V  
OUT  
90% V  
OUT  
V
OUT  
ꢃ 34. իꢊꢨ  
www.onsemi.cn  
12  
 
FPF2700, FPF2701, FPF2702  
SOA (FPF2702)  
ϚʽΕŔ៖⃄᪗⁏,ꢂꢃꢁúϚ▐᪗▨  
ŔѿFPF2700
٬
 PFP2701᫪᪗ईᵛԚ៖⃄᪗
׮
ꢁ  
ꢂꢃ᪫ጜFPF2702ẁᣩᵛԚ៖ѿ்,  
֢ᓧԷ 3。  
᫪᪗
 36
٬
 37ꢀꢈᐠЊŔ SOAএ,
׏
ÅĐꢋ  
ҝ FPF2702MPX
٬
 MXŔ SOA
׏
֢૓᪩{ᣒ  
এ,Đईᣠ෯⋪ƨบෘ1ၓយෘŔᣠ࿎እΕ⛻  
ꢂꢃŔᓡ(1)  
ꢃ 36. FPF2702 MPX SOA  
ꢃ 37. FPF2702 MX SOA  
:  
3. ꤛꤜƽFPF2702꣞꤁ꢧ꣭ꢝꢭַ̭꣱꣭꣑꣒,ꤝꤞ꣞ꤟꤠֶ꣊ꣳꤢꤣꤤƽꢼ꣏Ö。ū꣇,
׏
şFLAGBPGOODꢆǁ
ח
ꤤꤦ  
ꢟ꤁ꢧꢩꢪꢐꤧΕ。FPF2702ꢆúַАꤨ꣱꣭ꢝ꤁ꢧ꣑꣒ꢐꤏꤥ,ꤝꤞꤜꢡꣳꢣꢐꢩꢪꤩꤪꢟЖƽꢼꢎꢂ。  
www.onsemi.cn  
13  
 
FPF2700, FPF2701, FPF2702  
ͅꢠ  
꣩  
ꢃfЖრ៖ɼᇡꢀᾑ᜞ꢀꢂꢃꢀ඙᏶  
ʽᏰŔͅꢀ⁰ꢀիℝ,IN
٬
 GNDჵ  
ᵃဘ࿅ļ⃄,
Ŕѿᅨ෯Ŕ࿅  
ļꢁႆŔᅑ
ڭ
ᅨ෯ईᵃဘ࿅ļŔᣠଇѿ૧  
+⛰ꢊͅꢀ඙ C FPF270Xꢀ͗ᣩᇋ᫯ꢁ  
ڭ
ၴ៖(50Ăms)ईᵄ᣿⃄,
ꢄŽnͅꢀ඙  
᥅ᖰꢂꢃꢀἡૺᝐእΕ⛻⛰ꢊ 10 mF 100 mF  
Ϛ▐ईრͅꢀἡЖ+Э
׏
᫪᪗Ϸؙᙱ  
٧:  
IN  
2
PD_MAX(NormalOperation) + (ILIM(Max)  
)
  RON(MAX)  
(eq. 3)  
Ŕ⛗ꢀ඙ෙnC ૿f。ꢀի᏶ꢀ  
IN  
ईᵃဘ࿅ļ⃄,ণꢁᣠଇȜĮn 125°Cꢁ  
׏
✈ୢ⛻͌ჯ᥅
ᙱ٧:  
ἡၴ✈
׏
்⇐ᑑᩓଇŔ C ꢀȜ。
׏
⛰ꢊꢀ  
Åί෱ꢀիᢜ།。  
IN  
TJ + PD   QJA ) TA  
(eq. 4)  
Ϛꢠ  
0.1 mF 1 mF Ŕꢀ඙ C  
OUT
٬
 GND  
OUT  
͖ꢈ:  
+ꢁꢁឍ៖,ᚵꢀ඙
׏
ᵂᥟඤ⛿ꢀዿÄ  
ϚꢀիĮnᖅऐꢀիꢀ඙͗෯Ŕѿ૧ꢀ。  
ş⛰ꢊ X7R ૺย(MLCC) ꢀ඙。  
؏҈᣿⃄,Ϛꢀἡӥᓌꢂꢃ
ꢀἡ٬
Ϛꢀ඙  
Ŕ̥ꢀꢀἡn FPF2700
٬
 FPF2701ୢ᥼ማϚ  
T ;  
J
P ᠏რѿ૧;  
D
Q ℋ,ণೃ▏੣Å֪  
JA  
T ᠏▏੣ꢁႆ。  
A
ꢀἡᡕ᪗ᚎਾŔȜ (᫪᪗ R  
̾ൺ)ঽ  
ᶴᵛԚ៖⁏,
׏
ៀẵᵃဘ؏҈
ᵄ  
SET  
꣞꣪꣫ꢢ  
n12 Vၴ✈I  
٧
ᣠଇѿ૧:  
= 1 AᨙᕎϷ͌ᙱ  
LIM(Max)  
׏
ᨙᕎꢂꢃ
ꢀἡ٬ᐠ
ᓉŔꢀἡЖȜ̾ൺϚϚꢀ  
඙ŔȜ。C  
ᡕ᪗ؙ2
ᙱ٧
Ŕ C  
OUTmax  
Ȝ؆ϹᨙᕎᚎਾŔȜꢁúៀẵᵃဘ؏҈:  
OUT  
PD_MAX(NormalOperation)(VIN+12V) + (1)2   0.140 + 140 mW  
(eq. 5)  
COUTmax v ILIM_MIN   500 msńV  
(eq. 2)  
OC Ŕ FPF2702 P  
:
D(Max)  
Ϛ▐V  
૧:  
> 2 V,ᨙᕎ
ᙱ٧
ѿ  
OUT  
꣨ꢢի(Ϛ)  
ᡕ᪗ 24 V V ꢀ⛻ļ,ᩣϚֱ⛿̼ʽΕ᣿  
IN  
PD + (VIN * VOUT)   ILIM(ꢄꢅ)  
⃄,ʽᢿᩣϚֿúϚ▐⛰ꢊᅨଇŔɼᇡ໐Ȝꢀἡᆥ  
Ϛჵ૤᜞⛰ꢊꢀ඙͖̥ᄳŔ᠏ᜏᓡɼ៖  
ꢀἡὨŔꢀἡ⁰ (2)ᙾᲗĮ ESRꢀ඙。  
ំᨙᕎ2 ̾ൺfϚꢀ඙ȜÅ
׮
ᨙᕎؙ2  
ᙱ٧
。  
(eq. 6)  
ୢ᥼
nʽᢿꢁV  
٧
ѿ૧:  
< 2 Vᨙᕎᙱ  
OUT  
PD + (VIN * VOUT)   (0.75   ILIM(ꢄꢅ)  
)
(eq. 7)  
ꢀꢁꢂꢃ:  
V
2. COUT꣡꣢꣣ꢟ  
= 5 V şFPF2702͖ꢈ  
IN  
(mF)  
V
(V)  
I
:  
= 2 AȧV = 2.5 Vѿ
૧ᙱ٧  
IN  
LIM(ᣠଇȜ)  
OUT  
24 < V 27  
22  
47  
68  
IN  
PD + (5 * 2.5)   2 + 5 W  
27 < V 32  
(eq. 8)  
IN  
32 < V 36  
ֱ⛿ʽꢀἡЖ៖ (V  
ᙱ٧
ѿ૧:  
0 V)ᨙᕎϷ͌ჯ  
IN  
OUT  
PD + ((VIN * VOUT)   (0.75   ILIM(ꢄꢅ)) + (5 * 0)   
(0.75   2) + 7.5 W  
(eq. 9)  
www.onsemi.cn  
14  
 
FPF2700, FPF2701, FPF2702  
PCB ꢞꢟꢐꢆ  
ඵᑑൾ▐ᣠœᜨ᥼ᐠᣩŔএᢿၴฝʽඵᑑൾ  
3. INOUT
٬
 GND
׏
ᝃई▨ꢂꢃꢀἡ᥁  
⛿ŔଇϦ⋍ᄚ⊨ᖈꢌᲗ
 39  
٬
 40 Ŕლ࿣ภf
MLP  
3x3Ŕᵃ̾࿣ภINOUT
٬
 GNDꢀ  
௪᪮ೃꢊꢀ®
Ŕ⋍Āᩣ  
Ϛ᥅。Įѿ╧ FLAGB
٬
ONҋ
 
੾ଇᖅऐঋŔҿ
׏
்ꢅ᪡
ꢄ  
ਾᩣͅ
٬
Ϛꢀ඙。  
▐ᣠᜨ╧,ᩣͅ
٬
Ϛꢀ඙ၴฝ
׏
்ꢅ᪡
ਾ  
®ᲟℝĮ
ᵃဘ٬ʽ
ļ៖Ŕඤ⛿ꢀዿ
 39  
INOUT
٬
 GNDşඝ᝗এ,ᣩ҉nĮඤ  
⛿ꢀዿÅ֪૓▏੣Ŕ⋍。  
ꢃfĮᰁᒿᖅऐ (ൿ␧ऐ5)ꢀ⁰ऐईꢂ  
ꢀἡΒϛ᣿Ŕၒᑐ,ᩣͅ
٬
Ϛꢀ඙ŔᖅऐֿÅ  
֪ R  
ൿ␧ऐDŽᖅᖅၖҋꢀ⁰ऐ。  
SET  
꣧ꢊꢨ  
࿣ภúᩓ▨Ŕֱ⋍。  
FPF2702Ŕ⑙ᐠई͖ꢈ
᪗ꢃΕ⛻Å  
ሲἡᰁჯ᪫ጜļ。Ε⛻ѿ૧ᑑᡕ᪗ᣠ  
ෙѿ。  
Ϸᑠᤏ
׏
ݤ
ᚵꢀϷ
Ŕ⋍ሇᨙᕎ͖
ڭ
 
Ŕଇ෯ϷϚLjᑠᤏ。  
1. ᫪᪗᪮MLP 3x3ၵႇ (DPA)PCBᖅ  
׏
ݤ
ꢂꢃŔ⋍ሇ。  
2. DAPꢀ⛺ҀꢋꢊĀᩣೃ PCBᖅ  
ꢉ∲ᙾᲗ
0.4 mm (1  
5 mils)ဆᣩ1-ounceᥟŔ
׏
n⋪ᖅ  
ἡ⋪ഴบෘ
׏
ᵂ⋪᝹ͅ,  
ᔿय
݋
ĜŔୢ᥼,  
׏
૧᪗ૺ⋪᝹ᔿय DAP。  
ꢃ 39. Ϛꢝꢝ꣭ꢺ꣮ꢐ(꣯ꢒ, SST,  
Åꢪi AST )  
15 Mil  
25 Mil  
ꢃ 38. ꢤꢥDAP ꢧꢖ꣗ꢁꢨ  
ꢃ 40. ꢺ꣮ꢐ(ꢑ꣰ASB )  
www.onsemi.cn  
15  
 
FPF2700, FPF2701, FPF2702  
FPF270X ꣱ꣲ  
FPF270X ีЊᥟṚ́ꢄ
٬ꢀ
ีЊfꢂꢃŔѿ  
٬⑙ሇ
ᥟŔ⋍ሇ
׏
᫪᪗࿣ภლᙾ᮸ϦŔᖈꢌ  
ᑠᤏ᥅᜙
ݤ
ีЊᥟŔ͖¶ǁ
׏
FPF270Xᥟ✈  
ᓧԷ。  
ꢃ 41. ꣯ꢒSSTÅAST ꢫ  
ꢃ 42. ꢑꢒASB ꢫ  
www.onsemi.cn  
16  
FPF2700, FPF2701, FPF2702  
ꣳꣴǁ꣙  
ꢢꢂ꣄Жꢦꢸ  
(ms)  
؏ꢦꢸ  
(ms)  
ꢭꢙꢊ  
ꢢꢂ꣄(A)  
꣸꣹ ON ꢎꢏ  
Įꢋꢠꢡꢢ  
ꢙ  
Shipping  
FPF2700MPX  
FPF2701MPX  
FPF2702MPX  
FPF2700MX  
FPF2701MX  
FPF2702MX  
0.4 – 2.0  
0.5  
127.5  
NA  
WDFN8 3x3, 0.65P  
MLP3X3  
3000 / Tape &  
Reel  
(PbFree)  
0.4 – 2.0  
0.4 – 2.0  
0.4 – 2.0  
0.4 – 2.0  
0.4 – 2.0  
0.5  
NA  
0.5  
0.5  
NA  
Įꢋꢠꢡꢢ  
Įꢋꢠꢡꢢ  
Įꢋꢠꢡꢢ  
Įꢋꢠꢡꢢ  
Įꢋꢠꢡꢢ  
WDFN8 3x3, 0.65P  
MLP3X3  
3000 / Tape &  
Reel  
(PbFree)  
NA  
WDFN8 3x3, 0.65P  
MLP3X3  
3000 / Tape &  
Reel  
(PbFree)  
127.5  
NA  
SOIC8  
SO8  
(PbFree)  
2500 / Tape &  
Reel  
SOIC8  
SO8  
(PbFree)  
2500 / Tape &  
Reel  
NA  
SOIC8  
SO8  
(PbFree)  
2500 / Tape &  
Reel  
†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.cn  
17  
MECHANICAL CASE OUTLINE  
PACKAGE DIMENSIONS  
WDFN8 3x3, 0.65P  
CASE 511DD  
ISSUE O  
DATE 31 JUL 2016  
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:  
DESCRIPTION:  
98AON13620G  
WDFN8 3X3, 0.65P  
PAGE 1 OF 1  
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  
MECHANICAL CASE OUTLINE  
PACKAGE DIMENSIONS  
SOIC8  
CASE 751EB  
ISSUE A  
DATE 24 AUG 2017  
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:  
DESCRIPTION:  
98AON13735G  
SOIC8  
PAGE 1 OF 1  
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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