P4SMA75A [GOOD-ARK]

SURFACE MOUNT TRANSIENT VOLTAGE SUPPRESSORS; 表面贴装瞬态电压抑制器
P4SMA75A
型号: P4SMA75A
厂家: GOOD-ARK ELECTRONICS    GOOD-ARK ELECTRONICS
描述:

SURFACE MOUNT TRANSIENT VOLTAGE SUPPRESSORS
表面贴装瞬态电压抑制器

二极管 光电二极管 局域网
文件: 总3页 (文件大小:692K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
P4SMA6.8A thru P4SMA220CA  
Surface Mount Transient Voltage Suppressors  
Peak Pulse Power 400W Breakdown Voltage 6.8 to 220V  
Features  
‹ Plastic package has Underwriters Laboratory Flammability  
Classification 94V-0  
‹ Optimized for LAN protection applications  
‹ Ideal for ESD protection of data lines in accordance with  
IEC 1000-4-2 (IEC801-2)  
‹ Ideal for EFT protection of data lines in accordance with  
IEC1000-4-4 (IEC801-4)  
‹ Low profile package with built-in strain relief for surface  
mounted applications  
‹ Glass passivated junction  
‹ Low incremental surge resistance, excellent clamping capability  
‹ 400W peak pulse power capability with a 10/1000us wave-  
form, repetition rate (duty cycle): 0.01% (300W above 91V)  
‹ Very Fast response time  
‹ High temperature soldering guaranteed: 250oC/10 seconds  
at terminals  
Mechanical Data  
‹ Case: JEDEC DO-214AC molded plastic over passivated chip  
‹ Terminals: Solder plated, solderable per MIL-STD-750,  
Method 2026  
‹ Polarity: For uni-directional types the band denotes the cathode,  
which is positive with respect to the anode under normal TVS  
operation  
‹ Mounting Position: Any  
‹ Weight: 0.002oz., 0.064g  
Devices for Bidirectional Applications  
For bi-directional devices, use suffix CA (e.g. P4SMA10CA). Electrical characteristics apply in both directions.  
Maximum Ratings and Characteristics  
(TA=25oC unless otherwise noted)  
Parameter  
Symbol  
Value  
Unit  
Peak pulse power dissipation with a 10/1000us waveform (1)(2)  
(Fig. 1)  
PPPM  
400  
W
Peak pulse current with a 10/1000us waveform (1) (Fig. 3)  
IPPM  
See Next Table  
1.0  
A
Power dissipation on infinite heatsink, TA=50oC  
PM(AV)  
W
Peak forward surge current, 8.3ms single half sine-wave  
uni-directional only (2)  
IFSM  
40  
A
Thermal resistance junction to ambient air (3)  
RθJA  
RθJL  
120  
30  
oC/W  
oC/W  
oC  
Thermal resistance junction to leads  
Operating junction and storage temperature range  
TJ, TSTG  
-65 to +150  
Notes:  
1. Non-repetitive current pulse, per Fig. 3 and derated above TA=25oC per Fig. 2. Rating is 300W above 91V.  
2. Mounted on 0.2 x 0.2” (5.0 x 5.0mm) copper pads to each terminal  
3. Mounted on minimum recommended pad layout  
527  
Electrical Characteristics  
Ratings at 25oC ambient temperature unless otherwise specified. VF=3.5V at IF=25A (uni-directional only)  
Maximum  
reverse  
leakage  
at VWM  
Breakdown voltage  
Maximum  
peak pulse  
current  
Maximum  
clamping  
voltage at  
IPPM  
Maximum  
temperature  
coefficient  
of V(BR)  
Device marking  
code  
V(BR)  
Test  
current  
at IT  
Stand-off  
voltage  
VWM  
(Volts) (1)  
(3)  
(2)  
ID  
IPPM  
Device type  
P4SMA6.8A  
P4SMA7.5A  
P4SMA8.2A  
P4SMA9.1A  
P4SMA10A  
P4SMA11A  
P4SMA12A  
P4SMA13A  
P4SMA15A  
P4SMA16A  
P4SMA18A  
P4SMA20A  
P4SMA22A  
P4SMA24A  
P4SMA27A  
P4SMA30A  
P4SMA33A  
P4SMA36A  
P4SMA39A  
P4SMA43A  
P4SMA47A  
P4SMA51A  
P4SMA56A  
P4SMA62A  
P4SMA68A  
P4SMA75A  
P4SMA82A  
P4SMA91A  
P4SMA100A  
P4SMA110A  
P4SMA120A  
P4SMA130A  
P4SMA150A  
P4SMA160A  
P4SMA170A  
P4SMA180A  
P4SMA200A  
P4SMA220A  
UNI  
6V8A  
7V5A  
8V2A  
9V1A  
10A  
BI  
Min.  
6.45  
7.13  
7.79  
8.65  
9.50  
10.5  
11.4  
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  
Max.  
7.14  
7.88  
8.61  
9.55  
10.5  
11.6  
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  
(mA)  
(Volts)  
(uA)  
1000  
500  
200  
50  
(A)  
38.1  
35.4  
33.1  
29.9  
27.6  
25.6  
24.0  
22.0  
18.9  
17.8  
15.9  
14.4  
13.1  
12.0  
10.7  
9.7  
VC (Volts)  
(% / oC)  
6V8C  
7V5C  
8V2C  
9V1C  
10C  
10  
10  
5.80  
6.40  
7.02  
7.78  
8.55  
9.40  
10.2  
11.1  
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  
10.5  
11.3  
12.1  
13.4  
14.5  
15.6  
16.7  
18.2  
21.2  
22.5  
25.2  
27.7  
30.6  
33.2  
37.5  
41.4  
45.7  
49.9  
53.9  
59.3  
64.8  
70.1  
77.0  
85.0  
92.0  
104  
113  
0.057  
0.061  
0.065  
0.068  
0.073  
0.075  
0.078  
0.081  
0.084  
0.086  
0.088  
0.090  
0.092  
0.094  
0.096  
0.097  
0.098  
0.099  
0.100  
0.101  
0.101  
0.102  
0.103  
0.104  
0.104  
0.105  
0.105  
0.106  
0.106  
0.107  
0.107  
0.107  
0.106  
0.108  
0.108  
0.108  
0.108  
0.108  
10  
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  
10  
11A  
11C  
5.0  
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  
12A  
12C  
13A  
13C  
15A  
15C  
16A  
16C  
18A  
18C  
20A  
20C  
22A  
22C  
24A  
24C  
27A  
27C  
30A  
30C  
33A  
33C  
8.8  
36A  
36C  
8.0  
39A  
39C  
7.4  
43A  
43C  
6.7  
47A  
47C  
6.2  
51A  
51C  
5.7  
56A  
56C  
5.2  
62A  
62C  
4.7  
68A  
68C  
4.3  
75A  
75C  
3.9  
82A  
82C  
3.5  
91A  
91C  
3.2  
125  
137  
152  
165  
179  
207  
219  
234  
246  
274  
328  
100A  
110A  
120A  
130A  
150A  
160A  
170A  
180A  
200A  
220A  
100C  
110C  
120C  
130C  
150C  
160C  
170C  
180C  
200C  
220C  
2.2  
116  
2.0  
114  
126  
1.8  
124  
137  
111  
1.7  
143  
158  
128  
1.4  
152  
168  
136  
1.4  
162  
179  
145  
1.3  
171  
189  
154  
1.2  
190  
210  
171  
1.1  
209  
231  
185  
0.9  
Notes:  
1. V(BR) measured after IT applied for 300us, IT=square wave pulse or equivalent  
2. Surge current waveform per Fig. 3 and derate per Fig. 2  
3. All terms and symbols are consistent with ANSI/IEEE CA62.35  
4. For bidirectional types with VR 10 Volts and less, the ID limit is doubled  
528  
RATINGS AND CHARACTERISTIC CURVES  
(TA = 25oC unless otherwise noted)  
529  

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