P0602ACMCL [LITTELFUSE]
Two-chip MicroCapacitance; 双芯片MicroCapacitance型号: | P0602ACMCL |
厂家: | LITTELFUSE |
描述: | Two-chip MicroCapacitance |
文件: | 总3页 (文件大小:157K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
Two-chip MicroCapacitance (MC) SIDACtor® Device
RoHS
¨
This two-chip MicroCapacitance SIDACtor design provides a through-hole technology
1
3
protection solution. It is intended for telecom applications that do not require a balanced
solution. For primary protection applications, devices with higher holding current and
integrated failsafe options are available.
(T)
2
(G)
(R)
SIDACtor devices enable equipment to comply with various regulatory requirements
including GR 1089, ITU K.20, K.21 and K.45, IEC 60950, UL 60950, and TIA-968-A
(formerly known as FCC Part 68).
Electrical Parameters
V
V
S
V
DRM
V
S
DRM
Volts
Volts
Volts
Volts
Part
V
T
I
I
S
I
T
I
H
DRM
Number *
Pins 1-2, 3-2
Pins 1-3
Volts
µAmps
mAmps
Amps
mAmps
P0302AAMCL
P0602AAMCL
6
25
40
12
50
50
80
4
4
5
5
800
2.2
50
25
800
2.2
50
V
V
S
V
DRM
V
S
DRM
Volts
Volts
Volts
Volts
Part
V
I
I
S
I
I
H
T
DRM
T
Number *
Pins 1-2, 3-2
Pins 1-3
Volts
µAmps
mAmps
Amps
2.2
2.2
2.2
2.2
2.2
2.2
2.2
2.2
2.2
2.2
mAmps
P0602ACMCL
P1402ACMCL
P1602ACMCL
P2202ACMCL
P2702ACMCL
P3002ACMCL
P3602ACMCL
P4202ACMCL
P4802ACMCL
P6002ACMCL
25
58
40
50
80
4
4
4
4
4
4
4
4
4
4
5
5
5
5
5
5
5
5
5
5
800
50
77
116
130
180
240
280
340
380
440
550
154
190
260
320
360
440
500
600
700
800
150
150
150
150
150
150
150
150
150
65
95
800
90
130
160
180
220
250
300
350
800
120
140
170
190
220
275
800
800
800
800
800
800
* “L” in part number indicates RoHS compliance. For non-RoHS compliant device, delete “L” from part number.
For surge ratings, see table below.
General Notes:
•
•
•
•
•
•
All measurements are made at an ambient temperature of 25 °C. I applies to -40 °C through +85 °C temperature range.
PP
I
PP
is a repetitive surge rating and is guaranteed for the life of the product.
Listed SIDACtor devices are bi-directional. All electrical parameters and surge ratings apply to forward and reverse polarities.
V
V
is measured at I
DRM.
is measured at 100 V/µs.
DRM
S
Special voltage (V and V
) and holding current (I ) requirements are available upon request.
DRM H
S
Surge Ratings in Amps
I
PP
0.2x310 * 2x10 *
8x20 *
10x160 * 10x560 * 5x320 * 10x360 * 10x1000 * 5x310 *
I
TSM
0.5x700 ** 2x10 ** 1.2x50 ** 10x160 ** 10x560 ** 9x720 ** 10x360 ** 10x1000 ** 10x700 ** 50 / 60 Hz
di/dt
Amps/µs
500
Amps
20
Amps
150
Amps
150
Amps
90
Amps
50
Amps
75
Amps
75
Amps
45
Amps
75
Amps
20
A
C
50
500
400
200
150
200
175
100
200
50
500
* Current waveform in µs
** Voltage waveform in µs
www.littelfuse.com
3 - 48
© 2006 Littelfuse • Telecom Design Guide
Two-chip MicroCapacitance (MC) SIDACtor® Device
Thermal Considerations
Package
Symbol
Parameter
Operating Junction Temperature Range
Storage Temperature Range
Value
-40 to +150
-65 to +150
50
Unit
°C
T
J
Modified
TO-220
T
°C
S
R
Thermal Resistance: Junction to Ambient
°C/W
θJA
PIN 1
PIN 3
PIN 2
Capacitance Values
pF
pF
Pin 1-2 / 3-2
Tip-Ground, Ring-Ground
Pin 1-3
Tip-Ring
Part Number
P0302AAMCL
P0602AAMCL
P0602ACMCL
P1402ACMCL
P1602ACMCL
P2202ACMCL
P2702ACMCL
P3002ACMCL
P3602ACMCL
P4202ACMCL
P4802ACMCL
P6002ACMCL
MIN
MAX
55
35
45
60
55
70
60
55
50
50
45
45
MIN
15
10
10
20
20
25
20
20
15
15
15
15
MAX
35
20
25
35
35
40
35
35
30
30
30
25
25
15
25
40
35
45
40
35
35
30
30
30
Note: Off-state capacitance (C ) is measured at 1 MHz with a 2 V bias.
O
Telecom Design Guide • © 2006 Littelfuse
3 - 49
www.littelfuse.com
Two-chip MicroCapacitance (MC) SIDACtor® Device
+I
tr = rise time to peak value
td = decay time to half value
IT
Peak
Value
100
IS
IH
Waveform = tr x td
IDRM
-V
50
+V
Half Value
VDRM
VT
VS
0
tr
td
0
t – Time (µs)
-I
V-I Characteristics
t x t Pulse Waveform
r d
14
12
10
8
2.0
1.8
1.6
1.4
1.2
1.0
0.8
0.6
0.4
6
4
25 ˚C
25 ˚C
2
0
-4
-6
-40 -20
0
20 40 60 80 100 120 140 160
-8
Case Temperature (TC) – ˚C
-40 -20
0
20 40 60 80 100 120 140 160
Junction Temperature (TJ) – ˚C
Normalized V Change versus Junction Temperature
S
Normalized DC Holding Current versus Case Temperature
www.littelfuse.com
3 - 50
© 2006 Littelfuse • Telecom Design Guide
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LITTELFUSE
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