1.5KE220CA-RL [STMICROELECTRONICS]

Transil 1500 W;
1.5KE220CA-RL
型号: 1.5KE220CA-RL
厂家: ST    ST
描述:

Transil 1500 W

文件: 总10页 (文件大小:137K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
1.5KE  
Transil™  
Datasheet production data  
Features  
Peak pulse power: 1500 W (10/1000 µs)  
A
Breakdown voltage range:  
From 6.8 V to 440 V  
Uni and bidirectional types  
Low clamping factor  
K
Fast response time  
UL 497B file number: QVGQ2.E136224  
DO-201  
Description  
Transil diodes provide high overvoltage protection  
by clamping action. Their instantaneous response  
to transient overvoltages makes them particularly  
suited to protect voltage sensitive devices such as  
MOS Technology and low voltage supplied IC’s.  
TM:Transil is a trademarks of STMicroelectronics.  
March 2012  
Doc ID 2913 Rev 4  
1/10  
This is information on a product in full production.  
www.st.com  
10  
Characteristics  
1.5KE  
1
Characteristics  
Table 1.  
Symbol  
Absolute maximum ratings (T  
= 25 °C)  
amb  
Parameter  
Value  
Unit  
PPP  
P
Peak pulse power dissipation (1)  
Tj initial = Tamb  
Tamb = 75 °C  
1500  
5
W
W
Power dissipation on infinite heatsink  
tp = 10 ms  
Non repetitive surge peak forward current for unidirectional  
types  
IFSM  
200  
A
Tj initial = Tamb  
Tstg  
Tj  
Storage temperature range  
-65 to + 175  
175  
°C  
°C  
°C  
Maximum operating junction temperature  
TL  
Maximum lead temperature for soldering during 10s at 5mm from case.  
230  
1. For a surge greater than the maximum values, the diode will fail in short-circuit.  
Table 2.  
Symbol  
Thermal parameter  
Parameter  
Value  
Unit  
Rth(j-l)  
Junction to leads  
20  
75  
°C/W  
Rth(j-a)  
Junction to ambient on printed circuit. L lead = 10 mm  
Figure 1.  
Electrical characteristics - definitions  
I
I
IPP  
IF  
VRM Stand-off voltage  
VBR Breakdown voltage  
VCL Clamping voltage  
IRM Leakage current @ VRM  
IPP Peak pulse current  
IR Breakdown current  
αT Voltage temperature  
coefficient  
Unidirectional  
IR  
IRM  
VF  
VCLVBR VRM  
V
VCLVBR VRM  
V
IRM  
IR  
IRM  
IR  
VRMVBR VCL  
VF Forward voltage drop  
RD Dynamic impedance  
Bidirectional  
IPP  
IPP  
2/10  
Doc ID 2913 Rev 4  
1.5KE  
Characteristics  
Table 3.  
Electrical characteristics - parameter values (T  
= 25 °C)  
amb  
VCL @ IPP  
10/1000 µs  
V
CL @ IPP  
(1)  
IRM @ VRM  
max.  
VBR  
@
IR  
αT(2)  
C(3)  
8/20 µs  
Order code  
max. nom. min.  
max.  
max.  
max.  
typ.  
pF  
µA  
V
V
V
V
mA  
V
A
V
A
10-4/ °C  
1.5KE6V8A/CA  
1.5KE7V5A/CA  
1.5KE10A/CA  
1.5KE12A/CA  
1.5KE15A/CA  
1.5KE18A/CA  
1.5KE22A/CA  
1.5KE24A/CA  
1.5KE27A/CA  
1.5KE30A/CA  
1.5KE33A/CA  
1.5KE36A/CA  
1.5KE39A/CA  
1.5KE47A/CA  
1.5KE56A/CA  
1.5KE62A/CA  
1.5KE68A/CA  
1.5KE82A/CA  
1.5KE100A/CA  
1.5KE120A/CA  
1.5KE150A/CA  
1.5KE180A/CA  
1.5KE200A/CA  
1.5KE220A/CA  
1.5KE250A/CA  
1.5KE300A/CA  
1.5KE350A/CA  
1.5KE400A/CA  
1.5KE440A/CA  
1000  
500  
10  
5
5.8 6.45 6.8  
6.4 7.13 7.5  
7.14  
7.88  
10.5  
12.6  
15.8  
18.9  
23.1  
25.2  
28.4  
31.5  
34.7  
37.8  
41.0  
49.4  
58.8  
65.1  
71.4  
86.1  
105  
10 10.5  
10 11.3  
143  
132  
100  
90  
13.4 746  
14.5 690  
18.6 538  
21.7 461  
27.2 368  
5.7  
6.1  
9500  
8500  
7000  
6000  
5000  
4300  
3700  
3500  
3200  
2900  
2700  
2500  
2400  
2050  
1800  
1700  
1550  
1350  
1150  
1000  
850  
8.55 9.5  
10.2 11.4  
12.8 14.3  
15.3 17.1  
18.8 20.9  
20.5 22.8  
23.1 25.7  
25.6 28.5  
28.2 31.4  
30.8 34.2  
33.3 37.1  
40.2 44.7  
47.8 53.2  
53.0 58.9  
58.1 64.6  
70.1 77.9  
10  
12  
15  
18  
22  
24  
27  
30  
33  
36  
39  
47  
56  
62  
68  
82  
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
14.5  
16.7  
21.2  
25.2  
30.6  
33.2  
37.5  
41.5  
45.7  
49.9  
53.9  
64.8  
77  
7.3  
7.8  
1
71  
8.4  
1
59.5 32.5 308  
8.8  
1
49  
45  
39.3 254  
42.8 234  
48.3 207  
53.5 187  
59.0 169  
64.3 156  
69.7 143  
9.2  
1
9.4  
1
40  
9.6  
1
36  
9.7  
1
33  
9.8  
1
30  
9.9  
1
28  
10.0  
10.1  
10.3  
10.4  
10.4  
10.5  
10.6  
10.7  
10.8  
10.8  
10.8  
10.8  
11  
1
23.2  
19.5  
17.7  
16.3  
13.3  
11  
84  
119  
1
100 100  
1
85  
111  
121  
146  
178  
212  
265  
90  
83  
69  
56  
47  
38  
1
92  
1
113  
137  
165  
207  
246  
274  
328  
344  
414  
482  
548  
603  
1
85.5 95.0 100  
102 114 120  
128 143 150  
154 171 180  
171 190 200  
188 209 220  
213 237 250  
256 285 300  
299 332 350  
342 380 400  
376 418 440  
1
126  
9.1  
7.2  
6.1  
5.5  
4.6  
5.0  
5.0  
4.0  
4.0  
3.5  
1
158  
1
189  
317 31.5  
725  
1
210  
353  
388  
442  
529  
618  
706  
776  
28  
26  
23  
19  
16  
14  
13  
675  
1
231  
625  
1
263  
560  
1
315  
11  
500  
1
368  
11  
430  
1
420  
11  
390  
1
462  
11  
360  
1. Pulse test: tp < 50 ms (see Figure 2)  
2. ΔVBR = αT × (Tamb - 25) × VBR(25 °C)  
3. VR = 0 V, F = 1 MHz. For bidirectional types, capacitance value is divided by 2.  
Doc ID 2913 Rev 4  
3/10  
 
Characteristics  
Figure 2. Pulse definition for electrical characteristics  
1.5KE  
% I  
pp  
Repetitive pulse current  
t = rise time (µs)  
r
100  
50  
t
= pulse duration time (µs)  
p
0
t
t
p
r
Figure 3.  
Peak pulse power dissipation  
versus initial junction temperature  
(printed circuit board)  
Figure 4.  
Peak pulse power versus  
exponential pulse duration  
100%  
80%  
Peak power  
(on printed circuit)  
60%  
40%  
20%  
T initial  
j
0%  
0
20  
40  
60  
80 100 120 140 160 180 200  
Figure 5.  
Clamping voltage versus peak  
pulse current  
Figure 6.  
Capacitance versus reverse applied  
voltage for unidirectional types  
(typical values)  
v
(v)  
cl  
C (pF)  
1000  
100  
% I  
pp  
10000  
1.5KE440A  
1.5KE220A  
1
1
.
.
100  
50  
T
initial = 25°C  
5
5
K
K
j
E
E
Tj = 25 °C  
F = 1 MHz  
7
1
V
5
5
0
t
t
p
r
1.5KE100A  
1.5KE56A  
t
r <10µs  
1
1
.
.
5
5
K
K
E
E
6
1
8
1000  
100  
0
0
1.5KE22A  
1.5KE12A  
10  
1
1.5KE6V8A  
tp = 20 µs  
tp = 1 ms  
tp = 10 ms  
I
(A)  
10  
pp  
1
10  
100  
500  
0.1  
1
10  
100  
1000  
The curves of Figure 5 are specified for a junction temperature of 25 °C before surge. The  
given results may be extrapolated for other junction temperatures by using the following  
formula:  
ΔV = αT × (Tamb - 25) × V (25 °C).  
BR  
BR  
For intermediate voltages, extrapolate the given results.  
4/10  
Doc ID 2913 Rev 4  
 
1.5KE  
Characteristics  
Figure 7.  
Capacitance versus reverse applied Figure 8.  
voltage for bidirectional types  
(typical values)  
Peak forward voltage drop versus  
peak forward current (typical values  
for unidirectional types)  
I
(A)  
FM  
500  
10000  
Multiply by 2 for units with VBR > 220 V  
F
100  
1000  
100  
10  
1
V
(V)  
FM  
4
10  
1
10  
100  
500  
0
0.5  
1
1.5  
2
2.5  
3
3.5  
4.5  
5
Figure 9.  
Transient thermal impedance  
junction-ambient versus pulse  
duration  
Figure 10. Relative variation of leakage  
current versus junction  
temperature  
Zth (j-a) (°C/W)  
100  
10  
Epoxy printed circuit board, FR4  
copper thickness = 35 µm  
1
t
(s)  
p
0.1  
0.01  
0.1  
1
10  
100  
1000  
Doc ID 2913 Rev 4  
5/10  
Ordering information scheme  
1.5KE  
2
Ordering information scheme  
Figure 11. Ordering information scheme  
1.5 KE 100 CA  
-
RL  
Peak pulse power  
1.5 = 1500 W  
Breakdown voltage  
100 = 100 V  
Type  
A = Unidirectional  
CA = Bidirectional  
Delivery mode  
blank = Ammopack  
RL = Tape and reel  
6/10  
Doc ID 2913 Rev 4  
1.5KE  
Package information  
3
Package information  
Epoxy meets UL94, V0  
Lead-free package  
In order to meet environmental requirements, ST offers these devices in different grades of  
®
®
ECOPACK packages, depending on their level of environmental compliance. ECOPACK  
specifications, grade definitions and product status are available at: www.st.com.  
®
ECOPACK is an ST trademark.  
Table 4.  
DO-201 dimensions  
dimensions  
Millimeters  
B
A
B
Ref.  
Inches  
Min. Max.  
Min.  
Max.  
ØD  
A
8.5  
25.4  
4.8  
9.5  
0.335  
1
0.374  
ØC  
B
Ø C  
Ø D  
5.3  
0.189  
0.038  
0.209  
0.042  
0.96  
1.06  
Doc ID 2913 Rev 4  
7/10  
Package information  
1.5KE  
Table 5.  
Marking  
Marking(1)  
Order code  
Order code  
Marking(1)  
1.5KE6V8A  
1.5KE7V5A  
1.5KE10A  
1.5KE12A  
1.5KE15A  
1.5KE18A  
1.5KE22A  
1.5KE24A  
1.5KE27A  
1.5KE30A  
1.5KE33A  
1.5KE36A  
1.5KE39A  
1.5KE47A  
1.5KE56A  
1.5KE62A  
1.5KE68A  
1.5KE82A  
1.5KE100A  
1.5KE120A  
1.5KE150A  
1.5KE180A  
1.5KE200A  
1.5KE220A  
1.5KE250A  
1.5KE300A  
1.5KE350A  
1.5KE400A  
1.5KE440A  
1.5KE 6V8A  
1.5KE 7V5A  
1.5KE 10A  
1.5KE 12A  
1.5KE 15A  
1.5KE 18A  
1.5KE 22A  
1.5KE 24A  
1.5KE 27A  
1.5KE 30A  
1.5KE 33A  
1.5KE 36A  
1.5KE 39A  
1.5KE 47A  
1.5KE 56A  
1.5KE 62A  
1.5KE 68A  
1.5KE 82A  
1.5KE 100A  
1.5KE 120A  
1.5KE 150A  
1.5KE 180A  
1.5KE 200A  
1.5KE 220A  
1.5KE 250A  
1.5KE 300A  
1.5KE 350A  
1.5KE 400A  
1.5KE 440A  
1.5KE6V8A  
1.5KE7V5A  
1.5KE10A  
1.5KE12A  
1.5KE15A  
1.5KE18A  
1.5KE22A  
1.5KE24A  
1.5KE27A  
1.5KE30A  
1.5KE33A  
1.5KE36A  
1.5KE39A  
1.5KE47A  
1.5KE56A  
1.5KE62A  
1.5KE68A  
1.5KE82A  
1.5KE100A  
1.5KE120A  
1.5KE150A  
1.5KE180A  
1.5KE200A  
1.5KE220A  
1.5KE250A  
1.5KE300A  
1.5KE350A  
1.5KE400A  
1.5KE440A  
1.5KE6V8CA  
1.5KE7V5CA  
1.5KE10CA  
1.5KE12CA  
1.5KE15CA  
1.5KE18CA  
1.5KE22CA  
1.5KE24CA  
1.5KE27CA  
1.5KE30CA  
1.5KE33CA  
1.5KE36CA  
1.5KE39CA  
1.5KE47CA  
1.5KE56CA  
1.5KE62CA  
1.5KE68CA  
1.5KE82CA  
1.5KE100CA  
1.5KE120CA  
1.5KE150CA  
1.5KE180CA  
1.5KE200CA  
1.5KE220CA  
1.5KE250CA  
1.5KE300CA  
1.5KE350CA  
1.5KE400CA  
1.5KE440CA  
1.5KE 6V8CA  
1.5KE 7V5CA  
1.5KE 10CA  
1.5KE 12CA  
1.5KE 15CA  
1.5KE 18CA  
1.5KE 22CA  
1.5KE 24CA  
1.5KE 27CA  
1.5KE 30CA  
1.5KE 33CA  
1.5KE 36CA  
1.5KE 39CA  
1.5KE 47CA  
1.5KE 56CA  
1.5KE 62CA  
1.5KE 68CA  
1.5KE 82CA  
1.5KE 100CA  
1.5KE 120CA  
1.5KE 150CA  
1.5KE 180CA  
1.5KE 200CA  
1.5KE 220CA  
1.5KE 250CA  
1.5KE 300CA  
1.5KE 350CA  
1.5KE 400CA  
1.5KE 440CA  
1.5KE6V8CA  
1.5KE7VCA5  
1.5KE10CA  
1.5KE12CA  
1.5KE15CA  
1.5KE18CA  
1.5KE22CA  
1.5KE24CA  
1.5KE27CA  
1.5KE30CA  
1.5KE33CA  
1.5KE36CA  
1.5KE39CA  
1.5KE47CA  
1.5KE56CA  
1.5KE62CA  
1.5KE68CA  
1.5KE82CA  
1.5KE100CA  
1.5KE120CA  
1.5KE150CA  
1.5KE180CA  
1.5KE200CA  
1.5KE220CA  
1.5KE250CA  
1.5KE300CA  
1.5KE350CA  
1.5KE400CA  
1.5KE440CA  
1. Marking with space is used to differentiate assembly location.  
8/10  
Doc ID 2913 Rev 4  
 
1.5KE  
Ordering information  
4
Ordering information  
Table 6.  
Order codes  
Order code  
Marking  
Package Weight Base qty Delivery mode  
1900  
600  
Tape and reel  
Ammopack  
1.5KExxxA/CA(1)  
See Table 5  
1.5KE  
0.876g  
1. Where xxx is nominal value of VBR and A or CA indicates unidirectional or bidirectional version. See Table 3 for list of  
available devices and their order codes  
5
Revision history  
Table 7.  
Document revision history  
Date  
Feb -2002  
12-Mar-2012  
Revision  
Changes  
3A  
4
Last issue  
Added UL statement,Table 5 and ordering information.  
Doc ID 2913 Rev 4  
9/10  
1.5KE  
Please Read Carefully:  
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10/10  
Doc ID 2913 Rev 4  

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