Datasheet - Littelfuse

Radial Lead Fuses
TE5® > Time-Lag > 399 Series
399 Series, TE5® Inrush Protector Fuse
Description
The 399 Series are TE5®, time-Lag type, 65V rated
fuses. For Short Circuit Protection of Sensitive Electronic
Components and Assemblies.
Features
• Reduced PCB space
requirements
• Flame resistant
encapsulated casing
• Highly defined cut-off
times
• Halogen free
• Available from 125mA
to 4A
• Low internal resistance
Agency Approvals
Agency
Agency File Number
Ampere Range
E67006
125mA - 4A
• Irreversible physical
separation
Applications
• IC Chip Protection
Electrical Characteristics
Additional Information
Datasheet
% of Ampere
Rating
Opening Time
300
20 Seconds, Max.
Samples
Resources
Electrical Characteristics
Amp Code
Rated
Current
Marking
Code*
Voltage
Rating
0125
0160
0200
0250
0315
0400
0500
0630
0800
1100
1125
1160
1200
1250
1315
1400
125 mA
160 mA
200 mA
250 mA
315 mA
400 mA
500 mA
630 mA
800 mA
1.00 A
1.25 A
1.60 A
2.00 A
2.50 A
3.15 A
4.00 A
IP13
IP16
IP20
IP25
IP32
IP40
IP50
IP63
IP80
IP100
IP125
IP160
IP200
IP250
IP315
IP400
65 V
65 V
65 V
65 V
65 V
65 V
65 V
65 V
65 V
65 V
65 V
65 V
65 V
65 V
65 V
65 V
Power
Disspation
1.0×IN max.
(mW)
Melting
Integral
10×IN
typ. (A2s)
Agency
Approvals
Breaking Capacity
Cold
Resistance
0.1×IN
typ. (mΩ)
50A / 65 VAC/DC
50-60 Hz cosϕ=1.0
1600
1100
775
550
330
265
190
130
92
65
47
33
23
17
13
10
125
140
155
170
190
220
240
265
300
330
370
420
460
520
580
650
0.13
0.2
0.29
0.42
0.62
0.92
1.4
2
3
4.3
6.5
9.8
14
20
40
75
x
x
x
x
x
x
x
x
x
x
x
x
x
x
x
x
* Physical Marking on top of the device
Note: 1.00 means the number one with two decimal places. 1,000 means the number one thousand.
© 2013 Littelfuse, Inc.
Specifications are subject to change without notice.
Revised: 12/19/13
Radial Lead Fuses
TE5® > Time-Lag > 399 Series
Average Time Current Curves
0.125A
0.160A
0.200A
0.250A
0.315A
0.400A
0.500A
0.630A
0.800A
1.00A
1.25A
1.60A
2.00A
2.50A
3.15A
4.00A
Temperature Rerating Curve
140
100000
PERCENT OF RATING
120
100
10000
80
60
1000
40
23°C
TIME IN SECONDS
20
0
-40
-20
0
20
40
80
60
AMBIENT TEMPERATURE (°C)
100
10
1
0.100
0.010
0.001
0.20
1
10
100
1000
CURRENT IN AMPERES
Soldering Parameters - Wave Soldering
Recommended Process Parameters:
280
260
Wave Parameter
240
220
Lead-Free Recommendation
Preheat:
200
(Depends on Flux Activation Temperature)
180
160
140
120
100
80
60
40
(Typical Industry Recommendation)
Temperature Minimum:
100° C
Temperature Maximum:
Preheat Time:
150° C
60-180 seconds
Solder Pot Temperature:
260° C Maximum
Solder Dwell Time:
2-5 seconds
Time (Seconds)
Cooling Time
Preheat Time
Dwell Time
240
230
220
210
200
190
180
170
160
150
140
130
120
110
90
100
80
70
60
50
40
30
20
0
10
20
0
Temperature (°C) - Measured on bottom side of board
300
Recommended Hand-Solder Parameters:
Solder Iron Temperature: 350° C +/- 5°C
Heating Time: 5 seconds max.
Note: These devices are not recommended for IR or
Convection Reflow process.
© 2013 Littelfuse, Inc.
Specifications are subject to change without notice.
Revised: 12/19/13
Radial Lead Fuses
TE5® > Time-Lag > 399 Series
Product Characteristics
Base/Cap: Brown Thermoplastic
Polyamide PA 6.6, UL 94V-0
Round Pins: Copper, Tin-plated
Materials
Lead Pull Strength
10 N (EN 60068-2-21)
Solderability
260ºC, ≤ 3s. (Wave)
350ºC, ≤ 1s. (Soldering Iron)
Soldering Heat
Resistance
260ºC, 10s. (IEC 60068-2-20)
350ºC, 3s. (Soldering Iron)
Dimensions
Operating Temperature
-40ºC to +85ºC (consider de-rating)
Climatic Category
-40ºC to +85ºC/21 days
(EN 60068-1,-2-1,-2-2,-78)
Stock Conditions
+10 ºC to +60 ºC RH,
≤ 75% yearly average, without dew,
maximum value for 30 days-95%
Vibration Resistance
24 cycles at 15 min. each
(EN 60068-6)
10 - 60 Hz at 0.75 mm amplitude
60 - 2000 Hz at 10 g acceleration
Part Numbering System
max. 4
Series
0.6
5.08
1 +0.1 0.5 min
18.8
max. 8
8.5
Dimensions (mm)
1.5
Packaging Code
Holes in the printed circuit board
Packaging
Packaging Option
399 Series
Tape & Ammopack
Packaging Specification
Quantity
Quantity &
Packaging Code
Reel Size
N/A
1,400
000
N/A
© 2013 Littelfuse, Inc.
Specifications are subject to change without notice.
Revised: 12/19/13