0230001.DRT1P Littelfuse Inc, 0230001.DRT1P Datasheet - Page 2

FUSE 250V SLO-BLO 2AG 1A AXIAL

0230001.DRT1P

Manufacturer Part Number
0230001.DRT1P
Description
FUSE 250V SLO-BLO 2AG 1A AXIAL
Manufacturer
Littelfuse Inc
Series
230Pr
Type
Subminiaturer
Datasheets

Specifications of 0230001.DRT1P

Fuse Type
Slow Blow, Time Lag
Voltage - Rated
250VAC
Current
1A
Package / Case
Axial, 2AG, 5x15mm
Size / Dimension
0.177" Dia x 0.570" L (4.50mm x 14.48mm)
Mounting Type
Through Hole
Operating Temperature
-55°C ~ 125°C
Melting I²t
5.64
Voltage Rating Vac
250V
Fuse Current
1A
Breaking Capacity
35A @ 250VAC / 10kA @ 125VAC
Fuse Size Code
2AG
Fuse Size Metric
5 X 15mm
Blow Characteristic
Slow Blow
Acting
Slow Blow
Voltage Rating (vac)
250V
Current Rating
1A
Operating Temp Range
-55C to 125C
Mounting
Through Hole
Product Length (mm)
20mm
Product Depth (mm)
Not Requiredmm
Product Height (mm)
Not Requiredmm
Housing Material
Glass
Operating Temperature Classification
Military
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Color
-
Lead Free Status / Rohs Status
Compliant
Other names
230001.T1P
230001T1P
Axial Lead and Cartridge Fuses
Subminiature Glass Body
SURGE WITHSTAND SPECIFICATIONS
Our standard 229P and 230P Series Slo-Blo
requirements of the Telecom industry. These Fuses combine
conventional overcurrent protection with the ability to withstand high cur-
rent, short duration pulses. These fuses comply with the short circuit
requirements of UL 1459 for telephone equipment. Insulating Sleeve
Option available. We have characterized these fuses for the Telecom
industry requirements as shown below.
ELECTRICAL CHARACTERISTICS:
Short Circuit Capabilities:
• Meets UL 497 Specifications
PEAK WITHSTAND CURRENT (lp):
repetitions of a double exponential impulse wave having peak currents
(lp) and peak voltages as listed.
2AG
1
2
ENVIRONMENTAL SPECIFICATIONS:
Operating Temperature:
Shock:
(100 G’s peak for 6 milliseconds).
Vibration:
total excursion).
Salt Spray:
Insulation Resistance (After Opening): MIL-STD-202, Method 302,
Test Condition B.
Resistance to Soldering Heat:
MIL-STD-202, Method 210A, Test Condition B (260°C, 3 Seconds).
Thermal Shock:
Test Condition B (–65°C to 125°C).
Moisture Resistance:
(90-98% RH, 65°C).
Solderability:
Method 208.
500A peak, 2500V, 2 x 10 microseconds, 20 repetitions.
Complies with Telcordia GR-1089-CORE and TIA-968-A surge specifications
RoHS
Cartridge
Catalog
Number
229.250P
229.350P
229.375P
229.500P
229.600P
229.750P
229.800P
229 001P
229 1.25P
400
UL 60950 (UL 1459 Included):
MIL-STD-202, Method 213, Test Condition I
229 P/230P Series General Specifications
MIL-STD-202, Method 201 (10–55 Hz, 0.06 inches
Pb
Axial Lead
Catalog
MIL-STD-202 Method 101, Test Condition B (48 hours).
Number
230 1.25P*
230.250P*
230.350P*
230.375P*
230.500P*
230.600P*
230.750P*
230.800P*
230 001P*
(Axial Leaded Fuses): MIL-STD-202,
2AG
MIL-STD-202, Method 107,
Ampere microsec.
Rating
MIL-STD-202, Method 106
1/4
.350
3/8
1/2
6/10
3/4
8/10
1
1
1
/
4
2
–55°C to 125°C.
Slo-Blo
10 x 160
1500V
104.0A
130.0A
162.0A
(Axial Leaded Fuses):
23.0A
34.0A
40.0A
60.0A
71.0A
91.0A
®
2.2A,
60A,
40A,
7A,
Fuse 229P/230P Series
These fuses will withstand 50
®
fuses meet the demanding
microsec.
10 x 560
118.1A
600VAC
600VAC
600VAC
600VAC
800V
16.6A
25.8A
25.4A
37.7A
47.2A
65.5A
68.9A
88.6A
w w w . l i t t e l f u s e . c o m
10 x 1000
microsec.
100.0A
1000V
12.4A
19.3A
19.0A
28.2A
35.3A
49.0A
51.6A
66.3A
INDICATING SLO-BLO ® FUSE
The 2AG Indicating Slo-Blo
opening by showing a discoloration of its glass body. Guesswork
and time consuming circuit testing are eliminated. This unique
design offers the same quality performance characteristics as
the standard 2AG fuse design.
* When ordering the 2AG Indicating Slo-Blo Fuse, an ‘S’ is
PHYSICAL SPECIFICATIONS:
Materials:
(Insulating sleeve option available).
SOLDERING PARAMETERS:
Example:
-1A Indicating Slo-Blo
required after the catalog number.
Wave solder — 500°F (260°C), 3 seconds Max.
Reflow solder — Not recommended.
Glass Body, Nickel-Plated Brass Fuse Caps.
®
Fuse = 230 001S
®
fuse instantly identifies itself upon

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