P4KE6.8(C)A [FORMOSA]

400W Axial Leaded Transient Voltage Suppressors-6.8V-440V; 400W轴向引线型瞬态电压抑制器- 6.8V - 440V
P4KE6.8(C)A
型号: P4KE6.8(C)A
厂家: FORMOSA MS    FORMOSA MS
描述:

400W Axial Leaded Transient Voltage Suppressors-6.8V-440V
400W轴向引线型瞬态电压抑制器- 6.8V - 440V

文件: 总6页 (文件大小:156K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
Transient Voltage Suppressor  
Formosa MS  
P4KE SERIES  
List  
1
List.................................................................................................  
Package outline...............................................................................  
Features..........................................................................................  
Mechanical data...............................................................................  
Maximum ratings ..............................................................................  
Rating and characteristic curves........................................................  
Pinning information...........................................................................  
Suggested thermal profiles for soldering processes.............................  
High reliability test capabilities...........................................................  
2
2
2
2~3  
4
5
5
6
http://www.formosams.com/  
TEL:886-2-22696661  
FAX:886-2-22696141  
Document ID  
DS-222803  
Issued Date  
2008/02/10  
Revised Date  
2010/03/10  
Revision  
B
Page.  
6
Page 1  
Transient Voltage Suppressor  
Formosa MS  
P4KE SERIES  
400W Axial Leaded Transient Voltage  
Suppressors - 6.8V-440V  
Package outline  
Features  
DO-41  
Axial lead type devices for through hole design.  
400W peak pulse power capability with a 10/1000us  
waveform, repetition rate (duty cycle): 0.01%.  
1.0(25.4)  
MIN.  
Excellent clamping capability.  
Low incremental surge resistance.  
.107(2.7)  
Fast response time from 0V to VBR, typically less than  
.080(2.0)  
DIA.  
1 pS for uni-directional & 5 nS for bi-directional types.  
Ultra high-speed switching.  
.205(5.2)  
.166(4.2)  
Glass passivated chip junction.  
Lead-free parts meet environmental standards of  
MIL-STD-19500 /228  
Suffix "-H" indicates Halogen free parts, ex. P4ΚΕ6.8Α-H  
1.0(25.4)  
MIN.  
.034(.9)  
Mechanical data  
.028(.7)  
DIA.  
Epoxy : UL94-V0 rated flame retardant  
Case : Molded plastic, DO-41  
Dimensions in inches and (millimeters)  
Lead : Axial leads, solderable per MIL-STD-202,  
Method 208 guaranteed  
Polarity: Color band denotes cathode end  
Mounting Position : Any  
Weight : Approximated 0.33 gram  
Maximum ratings (AT TA=25oC unless otherwise noted)  
MAX.  
400  
See table 1  
1.0  
Symbol  
TYP.  
UNIT  
MIN.  
PARAMETER  
CONDITIONS  
PPPM  
IPPM  
W
A
Peak power dissipation  
Peak pulse current  
with a 10/1000us waveform, Note 1 & Fig. 1  
with a 10/1000us waveform  
PM(AV)  
at TL=75°C lead length 0.375” (9.5 mm)  
Steady state power dissipation  
W
A
8.3ms single half sine-wave superimposed  
on rated load (jedec method), note 2  
Peak forward surge current  
IFSM  
40  
Maximum instantaneours  
forward voltage  
for uni-directional types only,at 25A, see note 3  
VF  
V
3.5/5.0  
OC  
OC  
Operating temperature  
-55  
-65  
+150  
+175  
TJ  
Storage temperature  
Note 1. Non-repetitive current pulse, per Fig. 3 and derated above TA=25OC per Fig. 2  
TSTG  
2. Measured on 8.3 ms single half sine-wave or equivalent square wave, duty cycle=4 pulses per minute maximum  
3. VF=3.5V max. for devices of VBR <200V, and VF=5.0V max. for devices of VBR>201V  
http://www.formosams.com/  
TEL:886-2-22696661  
FAX:886-2-22696141  
Document ID  
DS-222803  
Issued Date  
2008/02/10  
Revised Date  
2010/03/10  
Revision  
B
Page.  
6
Page 2  
Electrical characteristics (at TA=25oC unless otherwise noted)  
Table 1  
Absolute Maximum Rating(TA = 25OC)  
Electricity Characteristics(TA = 25OC)  
Part No.  
VRWM  
VBR Min  
VBR Max  
IT  
IFSM  
Max. VC@IPPM  
Volts  
Max. IR@VRWM  
Volts  
5.80  
6.40  
7.02  
7.78  
8.55  
9.40  
10.2  
11.1  
Volts  
6.45  
7.13  
7.79  
8.65  
9.50  
10.5  
11.4  
Volts  
7.14  
7.88  
8.61  
9.55  
10.5  
11.6  
mA  
10  
(A)@8.3ms  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
IPPM(A)  
40.0  
37.0  
35.0  
31.0  
29.0  
27.0  
25.0  
23.0  
20.0  
19.0  
17.0  
15.0  
14.0  
13.0  
11.2  
10.0  
9.0  
1000  
500  
200  
50  
10  
5
P4KE6.8(C)A  
P4KE7.5(C)A  
P4KE8.2(C)A  
P4KE9.1(C)A  
P4KE10(C)A  
P4KE11(C)A  
P4KE12(C)A  
P4KE13(C)A  
10.5  
11.3  
10  
10  
12.1  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
13.4  
14.5  
15.6  
5
12.6  
13.7  
15.8  
16.8  
18.9  
21.0  
23.1  
25.2  
28.4  
31.5  
34.7  
37.8  
41.0  
45.2  
49.4  
53.6  
58.8  
65.1  
71.4  
78.8  
86.1  
95.5  
105.0  
116.0  
126.0  
137.0  
158.0  
168.0  
179.0  
189.0  
210.0  
231.0  
16.7  
5
12.4  
14.3  
15.2  
17.1  
19.0  
20.9  
22.8  
25.7  
28.5  
31.4  
34.2  
37.1  
40.9  
44.7  
48.5  
53.2  
58.9  
64.6  
71.3  
77.9  
86.5  
95.0  
105.0  
114.0  
124.0  
143.0  
152.0  
162.0  
171.0  
190.0  
209.0  
18.2  
5
12.8  
13.6  
15.3  
17.1  
18.8  
20.5  
23.1  
25.6  
28.2  
30.8  
33.3  
36.8  
40.2  
43.6  
47.8  
53.0  
58.1  
64.1  
70.1  
77.8  
85.5  
94.0  
102.0  
111.0  
128.0  
136.0  
145.0  
154.0  
171.0  
185.0  
21.2  
P4KE15(C)A  
P4KE16(C)A  
P4KE18(C)A  
P4KE20(C)A  
P4KE22(C)A  
P4KE24(C)A  
P4KE27(C)A  
P4KE30(C)A  
5
22.5  
5
25.5  
5
27.7  
5
30.6  
5
33.2  
5
37.5  
5
41.4  
5
45.7  
P4KE33(C)A  
P4KE36(C)A  
P4KE39(C)A  
P4KE43(C)A  
P4KE47(C)A  
P4KE51(C)A  
P4KE56(C)A  
P4KE62(C)A  
P4KE68(C)A  
P4KE75(C)A  
P4KE82(C)A  
P4KE91(C)A  
P4KE100(C)A  
P4KE110(C)A  
P4KE120(C)A  
P4KE130(C)A  
P4KE150(C)A  
P4KE160(C)A  
P4KE170(C)A  
P4KE180(C)A  
P4KE200(C)A  
P4KE220(C)A  
5
49.9  
8.4  
5
53.9  
7.8  
5
59.3  
7.1  
5
64.8  
6.5  
5
70.1  
6.0  
5
77.0  
5.5  
5
85.0  
5.0  
5
92.0  
4.6  
5
103.0  
113.0  
125.0  
137.0  
152.0  
165.0  
179.0  
207.0  
219.0  
234.0  
246.0  
274.0  
328.0  
4.1  
5
3.7  
5
3.4  
5
3.1  
2.8  
5
2.5  
5
5
2.3  
5
2.0  
5
1.9  
5
1.8  
5
1.7  
1.53  
1.22  
5
5
P4KE250(C)A  
P4KE300(C)A  
P4KE350(C)A  
P4KE400(C)A  
P4KE440(C)A  
5
5
5
5
5
214.0  
256.0  
300.0  
342.0  
376.0  
237.0  
285.0  
332.0  
380.0  
418.0  
263.0  
315.0  
368.0  
420.0  
462.0  
1.0  
1.0  
1.0  
1.0  
1.0  
40  
40  
40  
40  
40  
344.0  
414.0  
482.0  
548.0  
600.0  
1.16  
0.97  
0.83  
0.73  
0.67  
Note 1. VBR measured after IT applied for 300us, IT=square wave pulse or equivalent  
2. Surge current waveform per Fig. 3 and derated per Fig. 2  
3. For bi-directional types having VRWM of 10 volts and less, the IR limit is doubled  
4. Suffix ‘C’ denotes bi-directional devices. Suffix ‘A’ denotes 5% tolerance devices, no suffix denotes 10% tolerance devices.  
5. All terms and symbols are consistent with ANS/IEEE C62.35  
http://www.formosams.com/  
TEL:886-2-22696661  
FAX:886-2-22696141  
Document ID  
DS-222803  
Issued Date  
2008/02/10  
Revised Date  
2010/03/10  
Revision  
B
Page.  
6
Page 3  
Rating and characteristic curves (P4KE SERIES)  
Fig.1 - PEALK PULSE POWER RATING CURVE  
Fig.2 - PULSE DERATING CURVE  
100  
75  
50  
25  
0
100  
10  
pulse width (td) is defined  
as the point where the peak  
current decays to 50%  
1.0  
0.1  
0.1u  
1.0u  
10u  
100u  
1.0m  
10m  
0
25  
50  
75 100 125 150 175 200  
PULSE WIDTH, td (sec)  
AMBIENT TEMPERATURE, TA (°C)  
Fig.3 - Pulse Waveform  
Fig.4 - Typical Junction Capacitance  
150  
100  
50  
10000  
1000  
100  
10  
pulse width (td) is defined  
as the point where the peak  
current decays to 50%  
tr=10us  
Bi-directional VR=0V  
Uni-directional VR=0V  
peak value IPPM  
Uni-directional  
@ VRWM  
half value IPPM/2  
10/1000 us waveform  
Bi-directional  
@ VRWM  
Tj=25°C  
f=1.0MHz  
Vsig=50mVp-p  
1
1.0  
td  
0
10.0  
100.0  
1000.0  
0
1.0  
2.0  
TIME, t (ms)  
3.0  
4.0  
BREAKDOWN VOLTAGE, VBR (Volts)  
Fig.6 - MAXIMUM NON-REPETITIVE  
FORWARD SURGE CURRENT  
Fig.5 - STEADY STATE POWER DERATING CURVE  
1.00  
45  
40  
35  
30  
25  
20  
15  
10  
5
0.75  
0.50  
0.25  
0
0
0
25  
50  
75 100 125 150 175 200  
1
10  
100  
LEAD TEMPERATURE, TL (°C)  
NUMBER OF CYCLES AT 60Hz  
http://www.formosams.com/  
TEL:886-2-22696661  
FAX:886-2-22696141  
Document ID  
DS-222803  
Issued Date  
2008/02/10  
Revised Date  
2010/03/10  
Revision  
Page.  
6
B
Page 4  
Transient Voltage Suppressor  
Formosa MS  
P4KE SERIES  
Pinning information  
Pin  
Simplified outline  
Symbol  
Uni-Directional  
Pin1 cathode  
Pin2 anode  
1
2
1
2
Bi-Directional  
Suggested thermal profiles for soldering processes  
1.Lead free temperature profile wave-soldering  
280  
Peak soldering temperature not  
to exceed 260ºC  
260  
240  
220  
200  
180  
160  
140  
120  
Peak  
Max well  
time 5 Max  
100  
80  
Cool Down  
60  
40  
20  
Max gradient-4ºC/s  
Suggested gradient -2ºC/s or  
less  
Preheat  
Max gradient 2ºC/s  
0
0
20 40 60 80 100 120 140 160 180 200 220 240  
Time(Sec)  
http://www.formosams.com/  
TEL:886-2-22696661  
FAX:886-2-22696141  
Document ID  
DS-222803  
Issued Date  
2008/02/10  
Revised Date  
2010/03/10  
Revision  
B
Page.  
6
Page 5  
Transient Voltage Suppressor  
Formosa MS  
P4KE SERIES  
High reliability test capabilities  
Item Test  
1. Solder Resistance  
Conditions  
Reference  
MIL-STD-750D  
METHOD-2031  
at 260±5oC for 10±2sec.  
immerse body into solder 1/16"±1/32"  
at 245±5oC for 5 sec.  
2. Solderability  
MIL-STD-202F  
METHOD-208  
3. Pull Test  
MIL-STD-750D  
METHOD-2036  
1.0kg in axial lead direction for 10 sec.  
4. Bend Lead  
MIL-STD-750D  
METHOD-2036  
1.0kg weight applied to each lead bending  
arc 90o±5o for 3 times.  
VRWM=80% rate at TJ=150oC for 168 hrs.  
15PSIG at TA=121oC for 4 hrs.  
5. High Temperature Reverse Bias  
8. Pressure Cooker  
7. Temperature Cycling  
8. Thermal Shock  
MIL-STD-750D  
METHOD-1038  
JESD22-A102  
-55oC to +125oC dwelled for 30 min.  
and transferred for 5min. total 10 cycles.  
MIL-STD-750D  
METHOD-1051  
MIL-STD-750D  
METHOD-1056  
0oC for 5 min. rise to 100oC for 5 min. total 10 cycles.  
at TA=85oC, RH=85% for 1000hrs.  
at 175oC for 1000 hrs.  
MIL-STD-750D  
METHOD-1021  
9. Humidity  
MIL-STD-750D  
METHOD-1031  
10. High Temperature Storage Life  
http://www.formosams.com/  
TEL:886-2-22696661  
FAX:886-2-22696141  
Document ID  
DS-222803  
Issued Date  
2008/02/10  
Revised Date  
2010/03/10  
Revision  
B
Page.  
6
Page 6  

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