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Compact surge resistant fuse Hongda RXF-1W-2.2R-J-T52 ideal for electronic equipment safety protection

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Product Description

Product Overview

The RXF series fuses from DONGGUAN HONGDA ELECTRONIC TECHNOLOGY CO.,LTD offer excellent surge resistance and fusing consistency in a compact, easy-to-install design. They are widely used in electronic equipment such as light sources, switching power supplies, chargers, and home appliances, providing reliable safety protection.

Product Attributes

  • Brand: HONGDA
  • Origin: Dongguan, China
  • Certifications: VDE, UL/CUL (E359590), CQC

Technical Specifications

Dimensions and Lead Lengths

Model Rated Power (W) Dimensions (mm) Dmax. x Lmax. x H1 Lead Allowable Length* (mm) d0.05
RXF 0.25, 0.5S, 1WX 3.0 3.0 x 7.0 x 6070 0.380.45 1
0.5, 1S, 2WX 4.0 4.0 x 10.0 x 6090 0.430.60 1.5
1, 2S, 3WX 5.0 5.0 x 12.0 x 6070 0.540.72 -
2, 3S 6.0 6.0 x 16.0 x 6080 0.600.72 -

Electrical Characteristics

Model Rated Power (W) Resistance Range () Resistance Tolerance (%) Insulation Voltage (V) (DC or AC Peak) Component Limit Voltage (V)
RXF 0.25, 0.5S, 1X - 0.22-300 5, 10 250 200
0.5, 1S, 2X - 250
1, 2S, 3X - 350
2, 3S - 0.22-47 5, 10 500 350

General Data

  • Nominal resistance allowable deviation: 5%, 10%
  • Climate category: 55/155/21
  • Low air pressure: 8.5kpa
  • Stability grade: 5%
  • Resistance change limit: Long-term test: (5%R+0.1); Short-term test: (1%R+0.05)
  • Temperature coefficient: Standard type 350 ppm; Semi-fuse type, explosion-proof type, high lightning surge type: 35001500 ppm
  • Rated current: I(A) = P(W)/R()
  • Derating curve is shown in Figure 2 (Rated power is the maximum value for continuous operation at 70. Power consumption is reduced according to the curve when exceeding 70).
  • Fusing characteristic: Defined as the time required for the resistance to significantly increase and the current flowing through it to drop to below 1/50 of the initial test current when subjected to a specified overload. Fusing time is the time from the application of the specified overload until fusing occurs.

Fusing Time Requirements (Standard Type and High Lightning Surge Type - Table 3-1)

Rated Current Multiplier (times) Fusing Time (S)
0.25W R1 6
0.25W R1 7
30 -
0.52W R1 6
0.52W R1 6
30 -
122 100
58.5 -
55 25
70 155
275 -

Note: Fusing time can be customized according to user requirements.

Fusing Time Requirements (Explosion-proof Type - Table 3-2)

(Data not fully provided in the input)

Fusing Time Requirements (Semi-fuse Type - Table 3-3)

(Data not fully provided in the input)

Impact Resistance Performance

According to Figure 3, by closing switch K1 and opening K2, repeatedly switch K1 ON/OFF for 2S ON and 2S OFF for 100 times. The test resistor should not become open-circuited.

Notes: 1. Capacitor C capacity is selected based on customer requirements. If no special requirements, C=10uF. 2. Resistor R value is selected based on the circuit used and converted to internal resistance. Resistor power is 20W, power factor is 0.8. Resistors below 10W generally use 20W, 5.1K (5%).

Main Test Items, Methods, and Performance Requirements

Serial No. Test Item Test Method Performance Requirements
1 Resistance Measured by resistance error sorter. Resistance value is within the nominal resistance and allowable deviation range.
2 Short-time Overload Apply 2.5 times the rated voltage to the resistor for 5S, then measure resistance after 1-2h recovery and calculate the resistance change rate. Resistance change: R(2%R+0.05)
3 Solderability Dip the resistor leads into a solder pot at (2605) for 20.5S, with an immersion depth of 2+0/-0.5mm from the component body. Observe the solder coverage area after removal. Surface circumference coverage of the immersed part is over 90%.
4 Withstand Voltage Place the resistor in a metal "V" groove. Apply the specified insulation voltage between the connected resistor leads and the "V" groove for 60S. No visible damage to the appearance, clear markings; no breakdown or arcing.
5 Resistance to Soldering Heat Measure resistance before the test. Dip the resistor leads into a solder pot at (35010) for 3.50.5S, with an immersion depth of 2+0/-0.5mm from the component body. Measure resistance after 1h recovery and calculate the resistance change rate. Resistance change: R(1%R+0.05)
6 Rapid Temperature Change Perform 5 cycles of: low temperature (-553) for 30 min, room temperature for 2-3 min, high temperature (1553) for 30 min, room temperature for 2-3 min. Measure resistance after 1-2h recovery and calculate the resistance change rate. Resistance change: R(1%R+0.05)
7 Endurance Place the resistor in a constant temperature oven at (703). Apply rated DC voltage, 1.5h ON, 0.5h OFF, cycle for 1000h. Measure resistance after 1-4h recovery and calculate the resistance change rate. Resistance change: R(5%R+0.1)
8 Lead Strength Tensile force: Apply a 10N force for 10S; Bending: Apply a 5N load to the lead, tilt the resistor body approximately 90 within (2-3)S, then bend in the opposite direction after recovery, performing 2 bends in total. Resistance change: R(1%R+0.05)
9 Vibration Distance between resistor body and mounting point is 61mm. Vibration frequency range 10-500Hz, amplitude: 0.75mm or acceleration 98m/s (whichever is smaller). Vibration direction along Z, X, Y axes for 2h each, total 6h. Cycle: 1min (10-55-10Hz). Measure resistance after the test and calculate the resistance change rate. 1) Appearance: No mechanical damage.
2) Resistance change: R(1%R+0.05)
10 Climatic Sequence Dry heat - Cyclic damp heat (Test Db, first cycle) - Cold - Low pressure - Cyclic damp heat (Test Db, remaining cycles) - DC load. Resistance change: R(5%R+0.1)
Insulation resistance: 100M
11 Accidental Overload Install the test sample inside a single-layer wire mesh cylinder at a distance of 253mm from the resistor body. Apply 5, 10, 16 times rated power overload for 5min or until the resistor becomes open-circuited. Wire mesh cylinder does not ignite.

Taping Style and Dimensions (Figure 4, Table 5)

Taping Specification Dimensions (mm) U x W P (mm) L1-L2 (mm) T (mm) Z (mm) R (mm) t (mm) S (mm) T2 (mm)
T26 381 x 260.5 50.5 0.5 60.1 1 3.2 1.5 - -
T52 642 x 521 - 1 - - - - - -
T63 752 x 631 100.5 1.2 - - - - - -
T72 842 x 722 50.5 1.2 - - - - - -

Sleeved Product Style and Dimensions (Figure 5, Table 6)

Shape Dimensions (mm) H1 H11.5 H21.5 hh (15%) h12 h22
TA Type 70 20 20 50 10 10
TB Type 80 5 25 40 10 30

Note: 1. Exposed lead length 5mm, tolerance is +2/-1mm. 2. Sleeve dimensions can be customized according to customer requirements.

Molded Style and Dimensions (Figure 6, Table 7)

Shape Dimensions (mm) P1.0 H1 h0.5
n Type 5 3.5 8
B Type 5 3.5 8
L Type 12.5 4.5 14.5
L Type - 5.5 -

Note: Molded shape and dimensions can be customized according to customer requirements.

Model Specification Name Explanation (Example)

RXF 1W S 10 J

  • Rated Power: 0.25w, 0.5w, 1w, 2w, 3w
  • Resistance Allowable Error: J 5%, K 10%, M 20%
  • Nominal Resistance: E24 Series (See diagram below)
  • Model: RXF
  • Wire-wound: S: Miniature, X: Ultra-miniature

Color Code Marking Diagram

Color 1st Digit 2nd Digit 3rd Digit Multiplier Tolerance
Black 0 0 0 10 -
Brown 1 1 1 10 1%
Red 2 2 2 10 2%
Orange 3 3 3 10 -
Yellow 4 4 4 10 -
Green 5 5 5 10 0.5%
Blue 6 6 6 10 0.25%
Violet 7 7 7 10 0.1%
Gray 8 8 8 10 -
White 9 9 9 10 -
Gold - - - 10 5%
Silver - - - 10 10%
Plain - - - - 20%

Packaging Method

  • Inner box packaging: Taped reel 1K/box
  • Outer box packaging: (Details not provided)

Get in Touch

Have questions about our products or want to discuss a custom order? Our team is ready to help you.

Company Beijing Silk Road Enterprise Management Services Co., Ltd.
Location 16 Floor, Unit B, Jiatai International Mansion, No 41, Dongsihuan Zhong Road, Chaoyang District, Beijing
Contact Person Sellina

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