P0084UCMCLXX [LITTELFUSE]

MC Multiport Series MS-013 are low capacitance SIDACtor? devices designed; MC系列多端口MS -013是低容量的SIDACtor ?设备设计
P0084UCMCLXX
型号: P0084UCMCLXX
厂家: LITTELFUSE    LITTELFUSE
描述:

MC Multiport Series MS-013 are low capacitance SIDACtor? devices designed
MC系列多端口MS -013是低容量的SIDACtor ?设备设计

双向触发二极管
文件: 总5页 (文件大小:142K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
SIDACtor® ProtectionThyristors  
Broadband OptimizedProtection  
MC Multiport Series - MS-013  
Description  
MC Multiport Series MS-013 are low capacitance  
SIDACtor® devices designed to protect broadband  
equipment from damaging overvoltage transients.  
The series provides a dual port surface mount solution  
that enables equipment to comply with various global  
regulatory standards while limiting the impact to  
broadband signals.  
Features and Benefits  
tꢀ Low voltage overshoot  
tꢀ Low on-state voltage  
tꢀ 40% lower capacitance  
than our Baseband  
Protectors, for  
Agency Approvals  
tꢀ Does not degrade with  
applications that  
demand greater signal  
integrity  
use  
Agency  
Agency File Number  
E133083  
tꢀ Fails short circuit when  
surged in excess of  
ratings  
tꢀ Replaces four discrete  
devices  
Pinout Designation  
tꢀ Two-pair protection  
1
2
6
5
Applicable Global Standards  
tꢀ TIA-968-A  
tꢀ TIA-968-B  
tꢀ GR 1089 Intra-building  
tꢀ IEC 61000-4-5  
tꢀ YD/T 1082  
3
4
tꢀ ITU K.20/21 Enhanced  
Schematic Symbol  
Level  
tꢀ YD/T 993  
tꢀ ITU K.20/21 Basic Level  
tꢀ GR 1089 Inter-building  
tꢀ YD/T 950  
(T )  
1
(T )  
2
1
2
3
6
5
(G2)  
(R2)  
(G )  
1
(R )  
1
4
Electrical Characteristics  
VT  
@IT= 2.2  
Amps  
VDRM  
VS  
VDRM  
VS  
IH  
IS  
IT  
@lDRM=5μA @100V/μs @lDRM=5μA @100V/μs  
Part Number  
Marking  
Capacitance  
V
V
V
V
mA min mA max A max  
V max  
Pins 1-2, 3-2, 4-5, 6-5  
Pins 1-3, 4-6  
P0084UCMCLxx P0084UCMC  
P0304UCMCLxx P0304UCMC  
P0644UCMCLxx P0644UCMC  
P0724UCMCLxx P0724UCMC  
P0904UCMCLxx P0904UCMC  
P1104UCMCLxx P1104UCMC  
P1304UCMCLxx P1304UCMC  
6
25  
58  
65  
75  
90  
120  
25  
40  
77  
88  
98  
12  
50  
50  
80  
50  
50  
800  
800  
800  
800  
800  
800  
800  
2.2  
2.2  
2.2  
2.2  
2.2  
2.2  
2.2  
8
8
8
8
8
8
8
See  
Capaci-  
tance Val-  
uesTable  
116  
130  
150  
180  
240  
154  
176  
196  
260  
320  
150  
150  
150  
150  
150  
130  
160  
Notes:  
Table continues on next page.  
- Absolute maximum ratings measured atTA= 25ºC (unless otherwise noted).  
- Devices are bi-directional (unless otherwise noted).  
- XX Part Number Suffix: ‘TP’ (Tube Pack) or ‘RP’ (Reel Pack).  
© 2011 Littelfuse, Inc.  
Specifications are subject to change without notice.  
Please refer to www.littelfuse.com for current information.  
67  
Revised: February 22, 2011  
SIDACtor® ProtectionThyristors  
Broadband OptimizedProtection  
Electrical Characteristics (continued)  
VT  
@IT= 2.2  
Amps  
VDRM  
VS  
VDRM  
VS  
IH  
IS  
IT  
@lDRM=5μA @100V/μs @lDRM=5μA @100V/μs  
Part Number  
Marking  
Capacitance  
V
V
V
V
mA min mA max A max  
V max  
Pins 1-2, 3-2, 4-5, 6-5  
Pins 1-3, 4-6  
P1504UCMCLxx P1504UCMC  
P1804UCMCLxx P1804UCMC  
P2304UCMCLxx P2304UCMC  
P2604UCMCLxx P2604UCMC  
P3104UCMCLxx P3104UCMC  
P3504UCMCLxx P3504UCMC  
140  
170  
190  
220  
275  
320  
180  
220  
260  
300  
350  
400  
280  
340  
380  
440  
550  
600  
360  
440  
520  
600  
700  
800  
150  
150  
150  
150  
150  
150  
800  
800  
800  
800  
800  
800  
2.2  
2.2  
2.2  
2.2  
2.2  
2.2  
8
8
8
8
8
8
See  
Capacitance  
ValuesTable  
Notes:  
- Absolute maximum ratings measured atTA= 25ºC (unless otherwise noted).  
- Devices are bi-directional (unless otherwise noted).  
- XX Part Number Suffix: ‘TP’ (Tube Pack) or ‘RP’ (Reel Pack).  
CapacitanceValues  
pF  
pF  
Pin 1-2 / 3-2 (4-5 / 6-5)  
Tip-Ground, Ring-Ground  
Pin 1-3 (4-6)  
Tip-Ring  
Part Number  
MIN  
MAX  
MIN  
MAX  
P0084UCMCLxx  
P0304UCMCLxx  
P0644UCMCLxx  
P0724UCMCLxx  
P0904UCMCLxx  
P1104UCMCLxx  
P1304UCMCLxx  
P1504UCMCLxx  
P1804UCMCLxx  
P2304UCMCLxx  
P2604UCMCLxx  
P3104UCMCLxx  
P3504UCMCLXx  
35  
25  
55  
50  
45  
45  
40  
35  
35  
30  
30  
30  
25  
75  
45  
85  
75  
70  
70  
60  
55  
50  
50  
45  
45  
40  
20  
10  
30  
25  
25  
25  
20  
20  
15  
15  
15  
15  
15  
45  
25  
50  
45  
40  
40  
35  
35  
30  
30  
30  
25  
25  
Note: Off-state capacitance (CO) is measured at 1 MHz with a 2 V bias.  
Surge Ratings  
IPP  
ITSM  
50/60 Hz  
0.2x310 1  
2x10 1  
2x10 2  
8x20 1  
10x160 1  
10x160 2  
10x560 1  
10x560 2  
5x320 1  
10x360 1  
10x1000 1  
10x1000 2  
5x310 1  
di/dt  
0.5x700 2  
1.2x50 2  
9x720 2  
10x360 2  
10x700 2  
A min  
A min  
A min  
A min  
A min  
A min  
A min  
A min  
A min  
A min  
A/μs max  
C
50  
500  
400  
200  
150  
200  
175  
100  
200  
30  
500  
Notes:  
1 Current waveform in μs  
2 Voltage waveform in μs  
- Peak pulse current rating (IPP) is repetitive and guaranteed for the life of the product.  
- IPPꢀSBUJOHTꢀBQQMJDBCMFꢀPWFSꢀUFNQFSBUVSFꢀSBOHFꢀPGꢀꢁꢂꢃ$ꢀUPꢀꢄꢅꢆ$  
- The device must initially be in thermal equilibrium with -40°C < TJ <ꢀꢄꢇꢆꢃ¡$  
© 2011 Littelfuse, Inc.  
Specifications are subject to change without notice.  
Please refer to www.littelfuse.com for current information.  
68  
Revised: February 22, 2011  
SIDACtor® ProtectionThyristors  
Broadband OptimizedProtection  
Thermal Considerations  
Package  
Symbol  
Parameter  
Value  
Unit  
Modified MS-013  
TJ  
TS  
Operating JunctionTemperature Range  
ꢁꢂꢃꢀUPꢀꢄꢇꢆꢃ  
°C  
6
5
4
StorageTemperature Range  
ꢁꢈꢆꢀUPꢀꢄꢇꢆꢃ  
°C  
1
2
3
R0JA  
Thermal Resistance: Junction to Ambient  
60  
°C/W  
V-I Characteristics  
tr x td PulseWaveform  
+I  
tr = rise time to peak value  
td = decay time to half value  
Peak  
Value  
100  
IT  
IS  
IH  
Waveform = tr x td  
IDRM  
-V  
+V  
50  
0
Half Value  
VDRM  
VT  
VS  
tr  
td  
0
t – Time (μs)  
-I  
NormalizedVS Change vs. JunctionTemperature  
Normalized DC Holding Current vs. CaseTemperature  
2.0  
1.8  
1.6  
1.4  
14  
12  
10  
8
6
25°C  
1.2  
25 °C  
4
1.0  
0.8  
0.6  
0.4  
2
0
-4  
-6  
-8  
-40 -20  
0
20 40 60  
80 100 120 140 160  
-40 -20  
0
20 40 60 80 100 120 140 160  
JunctionTemperature (TJ) – °C  
CaseTemperature (TC) - ºC  
© 2011 Littelfuse, Inc.  
Specifications are subject to change without notice.  
69  
Please refer to www.littelfuse.com for current information.  
Revised: February 22, 2011  
SIDACtor® ProtectionThyristors  
Broadband OptimizedProtection  
Soldering Parameters  
Pb-Free assembly  
(see Fig. 1)  
Reflow Condition  
Figure 1  
tP  
-Temperature Min (Ts(min)  
)
ꢄꢇꢆꢃ¡$  
ꢄꢊꢃꢃ¡$  
TP  
Critical Zone  
L toTP  
Ramp-up  
-Temperature Max (Ts(max)  
)
T
Pre Heat  
-Time (Min to Max) (ts)  
60-180 secs.  
TL  
tL  
Average ramp up rate (LiquidusTemp (TL)  
to peak)  
TS(max)  
3°C/sec. Max.  
Ramp-down  
TS(max) toTL - Ramp-up Rate  
3°C/sec. Max.  
ꢄꢊꢇꢐ¡$  
Preheat  
-Temperature (TL) (Liquidus)  
TS(min)  
Reflow  
tS  
-Temperature (tL)  
60-150 secs.  
ꢄꢊꢈꢃꢍꢄꢃꢏꢁꢆꢉ¡$  
PeakTemp (TP)  
25  
time to peak temperature  
(t 25ºC to peak)  
Time within 5°C of actual PeakTemp (tp)  
30 secs. Max.  
Time  
Ramp-down Rate  
6°C/sec. Max.  
8 min. Max.  
ꢄꢊꢈꢃ¡$  
Time 25°C to PeakTemp (TP)  
Do not exceed  
Environmental Specifications  
80% Rated VDRM (VAC Peakꢉꢀꢄꢇꢊꢆ¡$ꢀPSꢀꢄꢇꢆꢃ¡$ꢋꢀ  
504 or 1008 hrs. MIL-STD-750 (Method 1040)  
JEDEC, JESD22-A-101  
Physical Specifications  
HighTempVoltage  
Blocking  
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cycles. MIL-STD-750 (Method 1051) EIA/JEDEC,  
JESD22-A104  
Lead Material  
Terminal Finish  
Body Material  
Copper Alloy  
Temp Cycling  
100% Matte-Tin Plated  
52 VDCꢀꢍꢄꢅꢆ¡$ꢉꢀꢅꢆꢎ3)ꢋꢀꢆꢃꢂꢀVQꢀUPꢀꢇꢃꢃꢅꢀISTꢌꢀꢀ&*"ꢏ  
JEDEC, JESD22-A-101  
BiasedTemp &  
Humidity  
UL recognized epoxy meeting flammability  
classification 94V-0  
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JEDEC, JESD22-A-101  
HighTemp Storage  
LowTemp Storage  
-65°C, 1008 hrs.  
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10 cycles. MIL-STD-750 (Method 1056) JEDEC,  
JESD22-A-106  
Part Numbering  
Thermal Shock  
Autoclave (Pressure  
CookerTest)  
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JEDEC, JESD22-A-102  
P xxx 4  
UCMCL RP  
TYPE  
P = SIDACtor  
REEL PACK  
Resistance to Solder  
Heat  
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RoHS COMPLIANT  
MC Series  
MEDIAN VOLTAGE  
Moisture Sensitivity  
Level  
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CONSTRUCTION VARIABLE  
PACKAGE TYPE  
IPP RATING  
Part Marking  
Part Marking Code  
(Refer to Electrical CharacteristicsTable)  
XXXXXXXXX  
XXXXX  
Date Code  
© 2011 Littelfuse, Inc.  
70  
Revised: February 22, 2011  
Specifications are subject to change without notice.  
Please refer to www.littelfuse.com for current information.  
SIDACtor® ProtectionThyristors  
Broadband OptimizedProtection  
Dimensions — MS-013  
Inches  
Millimeters  
Dimensions  
Min  
Max  
Min  
Max  
0.065  
(1.65)  
Pad Outline  
A
B
C
D
E
F
G
H
J
0.360  
0.352  
0.400  
0.043  
0.047  
0.293  
0.289  
0.089  
0.041  
0.020  
0.133  
0.364  
0.356  
0.412  
0.045  
0.055  
0.297  
0.293  
0.093  
0.049  
9.14  
8.94  
10.16  
1.09  
1.19  
7.44  
9.25  
9.04  
10.46  
1.13  
1.40  
7.54  
7.44  
2.36  
1.24  
C
0.460  
(11.68)  
0.138  
(3.50)  
Dimension are in inches  
(and millimeters).  
0.059  
(1.50)  
E
D
7ºTYP  
J
7ºTYP  
A
7.34  
G
F
Burr Side  
H
96º  
A
2.26  
1.04  
0.51  
3.38  
Mold Split  
Line  
4º  
A
Detail A  
MIN Length  
of Flat  
7ºTYP  
K
BSC*  
K
BSC*  
7ºTYP  
B
0.143  
3.63  
* BSC = Basic Spacing between Centers  
Packing Options  
Industry Standard  
EIA-481-D  
N/A  
PackageType  
Description  
Quantity  
Added Suffix  
Modified MS-013 6-pin  
Tape and Reel Pack  
1500  
RP  
TP  
U
Modified MS-013 6-pin  
Tube Pack  
500 (50 per tube)  
Tape and Reel Specification — MS-013  
.157  
(4.0)  
.630  
(16.0)  
.472  
(12.0)  
12.99  
(330)  
.512 (13.0) Arbor  
Hole Dia.  
Dimensions are in inches  
(and millimeters)  
0.700  
(17.8)  
Direction of Feed  
Tube Pack Dimensions — MS-013  
Message Location  
.020 .005  
WALL TYP.  
.045  
(1.14)  
(0.51 0.13)  
20.000 .030  
(508.00 0.76)  
.310  
(7.87)  
.108  
(2.74)  
90˚  
.005 A  
.110  
(2.79)  
6
.165  
(4.19)  
Interior of the Tube  
A
.225  
(5.72)  
.150  
(3.81)  
Dimensions are in inches  
(and millimeters)  
.525  
(13.34)  
© 2011 Littelfuse, Inc.  
Specifications are subject to change without notice.  
Please refer to www.littelfuse.com for current information.  
71  
Revised: February 22, 2011  

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