ETC P1300EA

05121
PP0640EA
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PP3500EC
. . . engineered solutions for the transient environment™
BIDIRECTIONAL THYRISTOR SURGE SUPPRESSOR
APPLICATIONS
✔ T1/E1 Trunk & Line Card
✔ SLIC Line Card
✔ DBX Branch Exchange Switches
✔ FCC Part 68 Customer Premise Equipment
✔ Line Interface Modem
✔ xDSL Architecture Interface
✔ ISDN Architecture Interface
TO-92
IEC COMPATIBILITY (EN61000-4)
✔ 61000-4-2 (ESD): Air - 15kV, Contact - 8kV
✔ 61000-4-4 (EFT): 40A - 5/50ns
✔ 61000-4-5 (Surge): 24A, 8/20µs - Level 2(Line-Gnd) & Level 3(Line-Line)
DEVICE SYMBOL
(BIDIRECTIONAL)
FEATURES
✔ Complies with: FCC Part 68, UL 1459, Bellcore 1089, ITU-K.20 & K.21
✔ Peak Off-State Voltage from 58 to 300 Volts
✔ Surge Current Capability(See Table 1)
✔ ESD Protection > 40 kilovolts
✔ Low Capacitance for T1/E1 Trunk & Line Card Applications
MECHANICAL CHARACTERISTICS
✔ Molded TO-92 Package
✔ Weight 0.18 grams (Approximate)
✔ Flammability Rating UL 94V-0
✔ Device Marking: Logo & Marking Code
TABLE 1 - SURGE RATINGS
SERIES
IPP
2 X 10µs
AMPS
EA
EB
EC
125
300
500
IPP
IPP
IPP
10 X 160µs 10 X 560µs 10 X 1000µs
AMPS
AMPS
AMPS
100
150
200
50
100
200
50
75
100
ITSM
60 Hz
AMPS
20
32
60
di/dt
dv/dt
AMPS/µs
AMPS/µs
(See Note 1) (See Note 1)
500
500
500
2000
2000
2000
Note 1: Critital Rate of Rise for On-State Current (di/dt) and Off-State Voltage (dv/dt).
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DEVICE CHARACTERISTICS
MAXIMUM RATINGS @ 25°C Unless Otherwise Specified
SYMBOL
VALUE
UNITS
ITSM
60
Amps
Junction Temperature
Tj
-40 to 150
°C
Storage Temperature
T STG
-55 to 150
°C
Thermal Resistance(Junction) - EA & EB Series
Rqjc
28
°C/Watt
Thermal Resistance(Junction) - EC Series
Rqjc
26
°C/Watt
Thermal Resistance(Ambient) - EA & EB Series
Rqjc
90
°C/Watt
Thermal Resistance(Ambient) - EC Series
Rqjc
85
°C/Watt
PARAMETER
Surge Current - 50/60 Hz
ELECTRICAL CHARACTERISTICS PER LINE @ 25°C Unless Otherwise Specified
PART
NUMBER
(See Note 1)
DEVICE
MARKING
CODE
REPETITIVE
PEAK
OFF-STATE
VOLTAGE
SWITCHING
VOLTAGE
MINIMUM
HOLDING
CURRENT
(See Fig. 4)
VDRM
VOLTS
@100V/µs
VS
VOLTS
di/dt = 1A/ms
IH
mA
SWITCHING
CURRENT
MAXIMUM
OFF-STATE
VOLTAGE
(See Fig. 3)
MAXIMUM
ON-STATE
VOLTAGE
(See Fig. 3)
ON-STATE
CURRENT
TYPICAL
CAPACITANCE
(See Note 2)
IS
mA
@VDRM
IDRM
µA
@IT
VT
VOLTS
IT
AMPS
@2V, 1 MHz
C
pF
PP0640EA
PP0720EA
PP0800EA
PP1100EA
PP1300EA*
PP1500EA
PP1800EA
PP2300EA*
PP2600EA*
PP3100EA
PP3500EA
GC
GD
GE
GF
GG
GH
GI
GJ
GK
GL
GM
58
65
75
90
120
140
160
190
220
275
300
77
88
98
130
160
180
220
260
300
350
400
150
150
150
150
150
150
150
150
150
150
150
800
800
800
800
800
800
800
800
800
800
800
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
60
60
60
60
40
40
40
30
30
30
30
PP0640EB*
PP0720EB
PP0800EB
PP1100EB
PP1300EB
PP1500EB*
PP1800EB
PP2300EB
PP2600EB
PP3100EB*
PP3500EB*
GP
GQ
GR
GS
GT
GU
GV
GW
GX
GY
GZ
58
65
75
90
120
140
160
190
220
275
300
77
88
98
130
160
180
220
260
300
350
400
150
150
150
150
150
150
150
150
150
150
150
800
800
800
800
800
800
800
800
800
800
800
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
60
60
60
60
40
40
40
30
30
30
30
PP0640EC*
PP0720EC
PP0800EC
PP1100EC
PP1300EC*
PP1500EC*
PP1800EC
PP2300EC*
PP2600EC
PP3100EC*
PP3500EC*
HC
HD
HE
HF
HG
HH
HI
HJ
HK
HL
HM
58
65
75
90
120
140
160
190
220
275
300
77
88
98
130
160
180
220
260
300
350
400
150
150
150
150
150
150
150
150
150
150
150
800
800
800
800
800
800
800
800
800
800
800
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
120
120
120
120
80
80
80
60
60
60
60
Note 1: * Indicates preferred a part number.
Note 2: Capacitance imbalance between positive and negative polarities is typically < 15pF.
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GRAPHS
FIGURE 1
PULSE WAVE FORM
IPP - Peak Pulse Current - % of IPP
100
FIGURE 2
V-I CHARACTERISTIC CURVE
TEST
WAVEFORM
PARAMETERS
tf = 10µs
td = 1,000µs
tf
Peak Value IPP
IPP
ITSM
IT
IS
IH
VS
td = t I /2
PP
50
IDRM
VT
VDRM
-t
e
0
0
1
2
3
t - Time - µs
FIGURE 3
ON-STATE CURRENT VS SURGE CURRENT DURATION
Non-Repetitive On-State Current (ITSM) - Amps
100
PPxxxxEA
PPxxxxEC
PPxxxxEB
10
1
1
05121.R1 4/02
10
100
Surge Current Duration - Full Cycles
3
1,000
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GRAPHS
FIGURE 4
TYPICAL PEAK OFF-STATE CURRENT VS JUNCTION TEMPERATURE
100
IT - On-State Current - A
IDRM - Peak Off-State Current - µA
10
1
0.1
0.01
-40
1.15
0
40
80
tJ- Temperature - °C
10
1
0
120
FIGURE 6
TYPICAL NORMALIZED VS VS JUNCTION TEMPERATURE
2.5
1.1
FIGURE 5
TYPICAL ON-STATE CURRENT VS ON-STATE VOLTAGE
1
2
3
4
VT - On-State Voltage - V
5
6
7
FIGURE 7
TYPICAL HOLDING CURRENT VS JUNCTION TEMPERATURE
2
IH/IH (tJ 25°C)
Normalized VS
1.05
1
0.95
1.5
1
0.9
0.5
0.85
0.8
-40
05121.R1 4/02
0
40
80
tJ- Temperature - °C
0
-40
120
4
0
40
80
tJ- Temperature - °C
120
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APPLICATION NOTES
FIGURE 1: UL 1459 & FCC Part 68 - Metallic Protection
Fuse
RTip
TIP
The TSS (Thyristor Surge Suppressor) device is located across the
tip-to-ring after a limiting resistor and fuse combination. RTIP and
RRING resistors are optional depending upon the TSS device
selection. Without the resistors, the PP3100EB/EC is recommended.
However, with a resistance value of 7.5 Ohms for tip and ring, the
PP3100EA is recommended. Digital signals may use a lower TSS
device depending upon the total tip to ring voltage range. Selection
of the TSS device, either PPxxxxEA or EB/EC is based upon the
value of the tip and ring resistors. For the National Electric Code
(NEC) article 800, it is recommended that at least one fuse be used
in the tip or ring line for metallic surges. Fuses may be replaced with
a suitable Positive Temperature Coefficient (PTC) automatic
resettable current limiting device.
To
Protected
Equipment
RRing
RING
FIGURE 1 - Metallic Protection
R
Tip
TIP
FIGURE 2 - UL 1459 & FCC Part 68 - Longitudinal Protection
There are two TSS devices, one located from tip-to-ground and one
ring-to-ground. For standard analog signals, the PP3100EA is
recommended with a typical resistor value for tip and ring of 15
Ohms. The PP3100EB/EC is recommended for resistor values of
7.5 Ohms each. The National Electric Code (NEC) article 800
requires two fuse elements when connecting to ground. Fuses or a
suitable Positive Temperature Coefficient (PTC) automatic resettable
current limiting device may be used. The purpose of this circuit is to
limit AC power current from getting on the ground line causing any
safety hazard.
To
Protected
Equipment
R
Ring
RING
FIGURE 2 - Longitudinal Protection
FIGURE 3 - UL 1459 & FCC Part 68 - Metallic & Longitudinal
Protection
Three equal TSS devices are used in this application for metallic (tipto-ring) and longitudinal (tip-to-ground and ring-to-ground) protection.
For analog signals, the PP3100EB/EC is recommended. With a
resistance value of 15 Ohms for the tip and ring resistors, the
PP3100EA may be used. The National Electric Code (NEC) article
800 requires two fuse elements when connecting to ground. Fuses
or a suitable Positive Temperature Coefficient (PTC) automatic
resettable current limiting device may be used. This circuit is
recommended for protection against the Bellcore requirement: First
Level Lightning Surge Tests (Telecommunications Port), document #
GR-1089-CORE.
R
Tip
TIP
To
Protected
Equipment
R
Ring
RING
FIGURE 3 - Metallic & Longitudinal Protection
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PACKAGE OUTLINE & DIMENSIONS
PACKAGE OUTLINE
TO-92
TC MEASURING POINT
A
N
DIMENSIONS
DIM
A
B
D
E
F
G
H
J
K
L
M
N
B
PIN 1
PIN 3
E
M
H
G
L
F
D
MILLIMETERS
MIN
MAX
4.47
12.70
2.41
3.81
1.16
3.43
2.23
4.47
2.23
0.38
0.33
-
4.98
2.67
1.37
3.68
2.44
4.73
2.44
0.51
0.43
1.52
INCHES
MIN
MAX
0.176
0.500
0.095
0.150
0.046
0.135
0.088
0.176
0.088
0.015
0.013
-
0.196
0.105
0.054
0.145
0.096
0.186
0.096
0.020
0.017
0.060
NOTES:
1. All leads insulate from case. Case is electrically
nonconductive.
K
J
06031 Rev 0 - 4/02
ProTek Devices
2929 South Fair Lane, Tempe, AZ 85282
Tel: 602-431-8101 Fax: 602-431-2288
E-Mail: [email protected]
Web Site: www.protekdevices.com
COPYRIGHT © ProTek Devices 2001
SPECIFICATIONS: ProTek reserves the right to change the electrical and or mechanical characteristics described herein without notice (except JEDEC).
DESIGN CHANGES: ProTek reserves the right to discontinue product lines without notice, and that the final judgement concerning selection and specifications is the buyer’s and that in furnishing
engineering and technical assistance, ProTek assumes no responsibility with respect to the selection or specifications of such products.
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