• 0.7A-10A PPTC Resettable Fuses Overcurrent Protection Chip For Battery
  • 0.7A-10A PPTC Resettable Fuses Overcurrent Protection Chip For Battery
  • 0.7A-10A PPTC Resettable Fuses Overcurrent Protection Chip For Battery
  • 0.7A-10A PPTC Resettable Fuses Overcurrent Protection Chip For Battery
  • 0.7A-10A PPTC Resettable Fuses Overcurrent Protection Chip For Battery
0.7A-10A PPTC Resettable Fuses Overcurrent Protection Chip For Battery

0.7A-10A PPTC Resettable Fuses Overcurrent Protection Chip For Battery

Product Details:

Place of Origin: China
Brand Name: Tian Rui
Certification: RoHS、Reach、HF、UL、C-UL、TUV
Model Number: TVS Series

Payment & Shipping Terms:

Minimum Order Quantity: 500PCS
Price: Negotiable
Packaging Details: 500pcs/bag
Delivery Time: 5-7 Days
Payment Terms: D/P, T/T,Paypal, Western Union
Supply Ability: 1000000PCS/Month
Get Best Price Contact Now

Detail Information

Rated Current: 0.7A-10A Rated Voltage: 10V 16V
Lead Material: 1/4 Hardness Nickel Sheet Insulating Material: Polyester Film, Meets UL94V-0
Shape: Sheet Type Operating Or Storage Temperature:: -40 To +70 Degree Celsius
Package: Bulk Application: Battery
Type: PTC Resettable Fuse Breaking Capacity: Low
High Light:

10A PPTC Resettable Fuses

,

Overcurrent Protection PPTC Resettable Fuses

,

UL94V-0 Self Resettable Fuse

Product Description

Recharger Batteries TVS Series Overcurrent Protection Chip Battery PTC Self-Recovery Resettable PPTC Fuse

 

Features

◆ Axial leaded
◆ Fully compatible with current industry standards
◆ Very low internal resistance
◆ Nickel terminals
◆ UL(E352136), C-UL(E352136), TUV(Pending)
◆ RoHS, Reach, HF compliance

 

Applications

◆ Any application that requires protection at low resistances
◆ Cellular phones
◆ Laptop computers
◆ Rechargeable battery pack protection

 

0.7A-10A PPTC Resettable Fuses Overcurrent Protection Chip For Battery 0

 

Packing Quantity

Model Bulk(-0) package Q’t y/bag
TLS070~TLS420 500pcs
TLV190~TLV1000 500pcs
TVS170~TVS230 500pcs

0.7A-10A PPTC Resettable Fuses Overcurrent Protection Chip For Battery 1

P/N A B C D F
Min. Max. Min. Max. Min. Max. Min. Max. Min. Max.
TLS070 17.0 23.1 4.9 5.5 0.6 1.0 3.5 6.0 3.8 4.2
TLS100 17.0 23.1 4.9 5.5 0.6 1.0 3.5 6.0 3.8 4.2
TLS120 17.0 23.1 4.9 5.5 0.6 1.0 3.5 6.0 3.8 4.2
TLS120L 19.9 22.1 4.9 5.2 0.6 1.0 5.5 7.5 3.8 4.1
TLS150 21.3 23.1 4.6 5.5 0.5 1.0 3.5 6.0 3.8 4.2
TLS170 20.9 23.1 4.6 5.5 0.5 1.0 3.5 6.0 3.8 4.2
TLS175 20.9 23.1 4.9 5.2 0.6 1.0 4.1 5.5 3.8 4.1
TLS200 21.3 23.4 10.2 11.0 0.5 1.1 5.0 7.6 4.8 5.4
TLS350 28.4 31.8 13.0 13.5 0.5 1.1 6.3 8.9 6.0 6.6
TLS420 30.6 32.4 12.9 13.6 0.5 1.1 5.0 7.5 6.0 6.6
TVS170 15.4 17.5 6.9 7.4 0.5 1.0 5.0 6.2 3.8 4.2
TVS170N 16.0 18.0 4.9 5.5 0.6 0.9 4.1 5.8 3.9 4.1
TVS175 21.9 24.5 3.0 3.6 0.5 1.0 4.5 5.5 2.4 2.6
TVS175N 16.0 18.0 4.9 5.5 0.6 0.9 4.1 5.8 3.9 4.1
TVS200 21.9 24.5 3.0 3.6 0.5 1.0 4.0 5.5 2.4 2.6
TVS210 21.9 24.5 3.0 4.0 0.5 1.0 4.5 5.5 2.4 2.6
TVS210N 20.9 23.1 4.9 5.5 0.6 0.9 4.1 5.8 3.9 4.1
TVS230 20.9 23.1 4.9 5.5 0.6 0.9 4.1 5.8 3.9 4.1
TLV175 20.9 23.1 4.6 5.5 0.6 1.0 3.5 6.0 3.8 4.2
TLV180 20.9 23.0 4.6 5.5 0.6 1.0 3.5 6.0 3.8 4.2
TLV190 20.9 23.1 4.6 5.5 0.6 1.0 3.5 6.0 3.8 4.2
TLV190L 9.7 10.3 3.0 3.3 0.5 1.0 2.7 3.3 2.2 2.4
TLV200 20.9 23.1 4.6 5.5 0.6 1.0 3.5 6.0 3.8 4.2
TLV210 20.9 23.1 4.6 5.5 0.6 1.0 3.5 6.0 3.8 4.2
TLV250L 9.7 10.3 3.0 3.3 0.5 1.0 2.7 3.3 2.2 2.4
TLV260 20.9 23.1 4.6 5.5 0.6 1.0 3.5 6.0 3.8 4.2
TLV280L 9.7 10.3 3.0 3.3 0.5 1.0 2.7 3.3 2.2 2.4
TLV300 24.0 27.5 6.9 7.5 0.5 1.0 4.0 6.0 4.8 5.2
TLV310 24.0 28.5 6.9 7.5 0.5 1.0 4.0 6.0 4.8 5.2
TLV340 24.0 28.5 6.9 7.5 0.5 1.0 4.0 6.0 4.8 5.2
TLV350 24.0 27.5 6.9 7.5 0.5 1.0 4.0 6.0 4.8 5.2
TLV350L 9.7 10.3 3.0 3.3 0.5 1.0 2.7 3.3 2.2 2.4
TLV380 24.0 27.5 6.9 7.5 0.5 1.0 4.0 6.0 4.8 5.2
TLV420 24.0 28.5 9.8 10.5 0.5 1.0 4.0 6.0 4.8 5.2
TLV450 24.0 28.5 9.8 10.5 0.5 1.0 4.0 6.0 4.8 5.2
TLV550 24.0 28.5 9.8 10.5 0.5 1.0 4.0 6.0 4.8 5.2
TLV600 24.0 26.5 13.9 14.5 0.6 1.2 4.1 5.5 5.9 6.1
TLV730 27.1 29.1 13.9 14.5 0.6 1.2 4.1 5.5 5.9 6.1
TLV900 45.0 48.0 7.9 8.5 0.6 1.3 4.0 7.0 5.9 6.1
TLV1000 50.0 52.0 7.9 8.5 0.6 1.3 5.0 7.0 5.9 6.1

 

TLS/TVS/TLV Series
 
P/N Hold current Trip current Maxi voltage Maxi current Maxi impulse voltage Power consumption Resistance range(Ω)
IH, (A) IT, (A) V max, (V) I max, (A) I(A) T(Sec.) Pd typ, (W) R min, R max, R1max,
TLS070 0.70 2.25 16 100 3.50 5.0 1.2 0.100 0.200 0.330
TLS100 1.00 2.50 16 100 5.00 5.0 1.2 0.070 0.130 0.215
TLS120 1.20 2.70 16 100 6.00 5.0 1.2 0.060 0.120 0.198
TLS120L 1.20 2.70 15 100 6.00 5.0 1.2 0.085 0.160 0.264
TLS150 1.50 3.00 15 100 7.50 5.0 1.3 0.040 0.080 0.149
TLS170 1.70 3.40 15 100 8.50 5.0 1.5 0.030 0.065 0.149
TLS175 1.75 3.80 15 100 9.00 4.0 1.5 0.050 0.090 0.149
TLS200 2.00 4.40 30 100 10.00 5.0 1.9 0.030 0.060 0.099
TLS350 3.50 6.30 30 100 20.00 3.0 2.5 0.017 0.031 0.051
TLS420 4.20 7.60 30 100 20.00 6.0 2.9 0.012 0.024 0.040
TVS170 1.70 3.40 16 100 8.50 5.0 2.1 0.030 0.052 0.086
TVS170N 1.70 4.10 10 100 8.50 5.0 2.1 0.018 0.032 0.053
TVS175 1.75 3.80 16 100 8.75 5.0 2.1 0.029 0.051 0.102
TVS175N 1.75 4.20 10 100 8.50 5.0 2.1 0.017 0.031 0.051
TVS200 2.00 4.40 16 100 10.00 5.0 2.3 0.020 0.040 0.080
TVS210 2.10 4.70 16 100 10.50 5.0 2.4 0.018 0.030 0.050
TVS210N 2.10 5.00 10 100 10.50 5.0 2.4 0.010 0.020 0.033
TVS230 2.30 5.20 10 100 12.50 5.0 2.6 0.018 0.036 0.059
TLV175 1.75 3.80 16 100 8.75 5.0 1.7 0.030 0.065 0.107
TLV180 1.80 3.80 16 100 9.00 5.0 1.7 0.030 0.060 0.099
TLV190 1.90 4.20 16 100 9.50 5.0 1.8 0.025 0.045 0.074
TLV190L 1.90 4.20 16 100 9.50 5.0 1.8 0.007 0.014 0.074
TLV200 2.00 4.40 16 100 10.00 5.0 1.9 0.020 0.040 0.090
TLV210 2.10 4.40 16 100 10.50 5.0 2.0 0.020 0.035 0.058
TLV250L 2.50 5.00 16 100 12.50 5.0 2.2 0.005 0.011 0.020
TLV260 2.60 5.20 16 100 13.00 5.0 2.3 0.015 0.030 0.050
TLV280L 2.80 5.60 16 100 14.00 5.0 2.3 0.004 0.010 0.020
TLV300 3.00 6.30 16 100 15.00 5.0 2.4 0.020 0.031 0.058
TLV310 3.10 6.30 16 100 15.50 5.0 2.4 0.015 0.030 0.058
TLV340 3.40 6.80 16 100 17.00 5.0 2.5 0.015 0.027 0.042
TLV350 3.50 7.00 16 100 17.50 5.0 2.5 0.017 0.025 0.045
TLV350L 3.50 7.00 16 100 17.50 5.0 2.5 0.004 0.010 0.020
TLV380 3.80 7.60 16 100 19.00 5.0 2.5 0.013 0.020 0.033
TLV420 4.20 8.40 16 100 21.00 5.0 2.0 0.012 0.020 0.033
TLV450 4.50 8.90 16 100 22.50 5.0 1.4 0.011 0.018 0.033
TLV550 5.50 10.50 16 100 27.50 5.0 1.4 0.009 0.016 0.031
TLV600 6.00 11.70 16 100 30.00 5.0 2.8 0.007 0.014 0.023
TLV730 7.30 14.10 16 100 36.50 5.0 3.0 0.005 0.010 0.020
TLV900 9.00 18.00 16 100 45.00 5.0 3.2 0.004 0.010 0.020
TLV1000 10.00 20.00 16 100 50.00 5.0 3.4 0.004 0.009 0.018

 

P/N Working temperature
-40℃ -20℃ 0℃ 25℃ 40℃ 50℃ 60℃ 70℃ 85℃
TLS070 1.11 0.10 0.90 0.70 0.55 0.50 0.45 0.40 0.30
TLS100 1.60 1.40 1.25 1.00 0.80 0.75 0.65 0.55 0.40
TLS120 1.90 1.70 1.50 1.20 1.00 0.90 0.80 0.70 0.50
TLS120L 1.90 1.70 1.50 1.20 1.00 0.90 0.80 0.70 0.50
TLS150 2.20 2.00 1.80 1.50 1.30 1.10 1.00 0.90 0.70
TLS170 2.50 2.30 2.00 1.70 1.50 1.30 1.20 1.10 0.90
TLS175 2.50 2.30 2.00 1.75 1.50 1.30 1.20 1.10 0.90
TLS200 3.20 2.80 2.50 2.00 1.70 1.60 1.40 1.20 0.90
TLS350 5.40 4.80 4.30 3.50 3.00 2.80 2.50 2.20 1.70
TLS420 6.40 5.70 5.10 4.20 3.60 3.30 3.00 2.60 2.10
TVS170 2.70 2.40 2.10 1.70 1.40 1.25 1.10 1.00 0.70
TVS170N 2.70 2.40 2.10 1.70 1.40 1.25 1.10 1.00 0.70
TVS175 2.75 2.45 2.20 1.75 1.45 1.30 1.15 1.00 0.70
TVS175N 2.75 2.45 2.20 1.75 1.45 1.30 1.15 1.00 0.70
TVS200 3.15 2.80 2.50 2.00 1.70 1.50 1.35 1.15 0.85
TVS210 3.30 2.95 2.60 2.10 1.75 1.55 1.40 1.20 0.90
TVS210N 3.30 2.95 2.60 2.10 1.75 1.55 1.40 1.20 0.90
TVS230 3.64 3.26 2.88 2.30 1.92 1.73 1.53 1.34 0.96
TLV175 2.60 2.30 2.10 1.75 1.45 1.35 1.30 1.10 0.90
TLV180 2.65 2.35 2.20 1.80 1.52 1.40 1.30 1.10 0.95
TLV190 2.80 2.50 2.30 1.90 1.60 1.50 1.40 1.20 1.00
TLV190L 3.20 2.80 2.40 1.90 1.60 1.40 1.20 1.00 0.80
TLV200 2.90 2.60 2.40 2.00 1.70 1.55 1.45 1.30 1.00
TLV210 3.10 2.75 2.55 2.10 1.75 1.65 1.55 1.35 1.10
TLV250L 4.20 3.70 3.20 2.50 2.10 1.80 1.50 1.30 1.00
TLV260 3.80 3.40 3.15 2.60 2.20 2.00 1.90 1.65 1.40
TLV280L 4.70 4.10 3.50 2.80 2.30 2.00 1.70 1.40 1.10
TLV300 4.40 3.90 3.60 3.00 2.50 2.35 2.20 1.90 1.55
TLV310 4.60 4.00 3.70 3.10 2.65 2.40 2.20 1.90 1.60
TLV340 4.95 4.40 4.00 3.40 3.00 2.80 2.65 2.35 1.95
TLV350 5.10 4.55 4.15 3.50 2.95 2.70 2.55 2.25 1.90
TLV350L 5.90 5.20 4.40 3.50 2.80 2.40 2.10 1.70 1.30
TLV380 5.50 4.90 4.40 3.80 3.30 3.00 2.80 2.50 2.10
TLV420 6.00 5.45 4.85 4.20 3.60 3.30 3.05 2.70 2.30
TLV450 6.50 5.80 5.30 4.50 3.90 3.60 3.30 2.90 2.50
TLV550 8.00 7.10 6.20 5.50 4.70 4.30 4.00 3.60 3.00
TLV600 8.70 7.80 7.10 6.00 5.20 4.70 4.40 3.90 3.30
TLV730 10.60 9.50 8.60 7.30 6.30 5.70 5.35 4.75 4.00
TLV900 13.00 11.60 10.10 9.00 7.60 6.80 6.45 5.90 4.80
TLV1000 15.60 13.90 12.10 10.00 9.15 8.20 7.75 7.00 5.75
 

Principle of Action

 

Battery over-current protection sheet (referred to as PTC) is made of polymer polymer materials doped with conductors. In the normal working state, the resistance value of the element is much smaller than the remaining resistance in the circuit. When the current increases rapidly, the battery overcurrent protection sheet reacts to the overcurrent situation and instantly changes from low resistance to high resistance to protect the battery. The increase in impedance limits the passage of large currents, thereby reducing the current in the battery to a value that can be safely carried by any circuit element, while protecting the battery from damage. The battery over-current protection sheet is also a protection device specially used to prevent battery over-temperature caused by battery over-charging and over-discharging. Battery over-temperature is the most concerned issue of battery pack designers. Although there are overvoltage and overcurrent detection safety protection circuits in the battery pack, when the voltage protection circuit fails and there is no temperature protection, the battery will generate excessive heat during overcharging or overdischarging, causing the battery to rupture or leak. Liquid, smoke, or even explosion. The battery overcurrent protection sheet is connected in series with the primary battery in the battery pack. The device can play a protective role regardless of whether the temperature rise is caused by short circuit or caused by overcharge and overdischarge.
 

Advantage

 

1. Nickel is used as the pin, the size is small and thin, and it can be directly welded to the original battery to reduce the installation cost. 2. A variety of material characteristics and installation methods provide engineers with more design flexibility. 3. It can meet the assembly of high-capacity electronic products and help meet the adjustment requirements. 4. Low impedance components extend battery working time.

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