8700 E. Thomas Road
Scottsdale, AZ 85252
Phone: (480) 941-6300
Fax: (480) 947-1503
FEATURES:
•
•
•
•
•
UNIDIRECTIONAL AND BIDIRECTIONAL SURFACE MOUNT TAZ
2000 WATTS PEAK POWER
VOLTAGE RANGE: 5.0 TO 170 VOLTS
LOW INDUCTANCE
FOR SURFACE MOUNTING
HSMCJ5.0
thru
HSMCJ170A
5.0 thru 170 Volts
2000 Watts
Transient Absorption
Zeners
DESCRIPTION:
This series of TAZ (transient absorption zeners) are available in surface
mountable packages to optimize board space. Packaged for use with
surface mount technology automated assembly equipment, these parts
can be placed on printed circuit boards and ceramic substrates to
protect sensitive components from transient voltage damage.
The HSMCJ series, rated for 2000 watts during a one millisecond pulse,
can be used to protect sensitive circuits against transients induced by
lightning and inductive load switching. With a response time of 1 x 10
-12
seconds (theoretical), they are also effective against electrostatic
discharge and NEMP.
SUGGESTED SOLDER
PAD LAYOUT (INCHES)
0.171
MAXIMUM RATINGS:
2000 watts if Peak Power dissipation (10 x 1000µs)
µ
Clamping (0 volts to V
(BR)
min): less than 1 x 10
(theoretical)
-12
seconds
0.110
Package Dimensions
Forward surge rating: 200 Amps, 1/120 sec @ 25°C (Excluding
°
Bidirectional)
Operating and Storage Temperature: -55° to +150°C
°
°
Note: A TAZ is normally selected according to the reverse "Stand Off
Voltage" (V
RM
) which should be equal to or greater than the dc or
continuous peak operating voltage level.
100
Package Dimensions
See Figure 5
Mechanical
Characteristics
CASE: Molded, Surface Mountable.
TERMINALS: C-Bend (modified J-
bend) leads, tin plated
POLARITY: Cathode indicated by
band. No markings on bidirectional
devices.
P
PP
Peak Pulse Power kW
10
(Wave Form - See
Figure 2)
Non-Repetitive
1.0
0.1
100ns
1µs
10µs
100µs
1ms
10ms
PACKAGING: 16mm tape (See EIA
Std. RS-481.)
THERMAL RESISTANCE: 10°C/W
°
(typical) junction to lead (tab) at
mounting plane.
tp Pulse Time - sec
Figure 1
Peak Pulse Power vs Pulse Time
MSC1065.PDF 6/21/99
0.200
HSMCJ5.0
thru
HSMCJ170A
ELECTRICAL CHARACTERISTICS @ 25°C
MICROSEMI
PART NUMBER
MODIFIED "J"
BEND LEAD
HSMCJ36
HSMCJ36A
HSMCJ40
HSMCJ40A
HSMCJ43
HSMCJ43A
HSMCJ45
HSMCJ45A
HSMCJ48
HSMCJ48A
HSMCJ51
HSMCJ51A
HSMCJ54
HSMCJ54A
HSMCJ58
HSMCJ58A
HSMCJ60
HSMCJ60A
HSMCJ64
HSMCJ64A
HSMCJ70
HSMCJ70A
HSMCJ75
HSMCJ75A
HSMCJ78
HSMCJ78A
HSMCJ85
HSMCJ85A
HSMCJ90
HSMCJ90A
HSMCJ100
HSMCJ100A
HSMCJ110
HSMCJ110A
HSMCJ120
HSMCJ120A
HSMCJ130
HSMCJ130A
HSMCJ150
HSMCJ150A
HSMCJ160
HSMCJ160A
HSMCJ170
HSMCJ170A
REVERSE
STAND-
OFF
VOLTAGE
(See Note)
V
WM
VOLTS
36
36
40
40
43
43
45
45
48
48
51
51
54
54
58
58
60
60
64
64
70
70
75
75
78
78
85
85
90
90
100
100
110
110
120
120
130
130
150
150
160
160
170
170
MIN.
40.0
40.0
44.4
44.4
47.8
47.8
50.0
50.0
53.3
53.3
56.7
56.7
60.0
60.0
64.4
64.4
66.7
66.7
71.1
71.1
77.8
77.8
83.3
83.3
86.7
86.7
94.4
94.4
100
100
111
111
122
122
133
133
144
144
167
167
178
178
189
189
BREAKDOWN
VOLTAGE
V
BR
@ I
T
VOLTS
IT
mA
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
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
MAXIMUM
CLAMPING
VOLTAGE
@ I
PP
VOLTS
PEAK
PULSE
CURRENT
MAXIMUM
REVERSE
LEAKAGE
@ V
WM
I
D
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
(See Fig. 2)
I
PP
AMPS
MAX.
48.9
44.2
54.3
49.1
58.4
52.8
61.1
55.3
65.1
58.9
69.3
62.7
73.3
66.3
78.7
71.2
81.5
73.7
86.9
78.6
95.1
86.0
102.0
92.1
106.0
95.8
115.0
104.0
1.22
111
136
123
149
135
163
147
176
159
204
185
218
197
231
209
µA
64.3
58.1
71.4
64.5
76.7
69.4
80.3
72.7
85.5
77.4
91.1
82.4
96.3
87.1
103.0
93.6
107.0
96.8
114.0
103.0
125
113
134
121
139
126
151
137
160
146
179
162
196
177
214
193
231
209
268
243
287
259
304
275
31.0
34.3
27.9
30.9
26.1
28.7
24.9
27.4
23.3
25.8
24.6
24.2
20.7
22.9
19.4
21.3
18.6
20.6
17.6
19.4
16.0
17.7
14.9
16.5
14.4
15.2
13.2
13.8
12.5
13.7
11.2
12.4
10.2
11.2
9.3
10.4
8.6
9.6
7.4
8.2
6.9
7.7
6.5
7.3
For bi-directional indicate a C or CA suffix after the part number. (i.e.: HSMCJ170C or HSMCJ170CA
Microsemi Corporation's HSMCJ Series (2000W) surface mountable packages are designed specifically for
transient voltage suppression. The wide leads assure a large surface contact for good heat dissipation, and a low
resistance path for surge current flow to ground. These high speed transient voltage suppressors can be used to
effectively protect sensitive components such as integrated circuits and MOS devices.
MSC1065.PDF 6/21/99