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Home > products > Discrete Magnetic Transformers > PA1736NL Flyback Transformer High Frequency SMT 12 Pins 11.4mm Max Height

PA1736NL Flyback Transformer High Frequency SMT 12 Pins 11.4mm Max Height

Product Details

Place of Origin: Guangdong,China

Brand Name: LINK-PP

Certification: UL,RoHS,Reach,ISO

Model Number: PA1736NL

Payment & Shipping Terms

Minimum Order Quantity: 400/2000/10K/25K

Price: $0.06-$3.2

Packaging Details: T&R

Delivery Time: Stock

Payment Terms: TT,NET30/60/90 Days

Supply Ability: 3KK/Month

Get Best Price
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lan discrete transformer

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network transformer

PN:
PA1736NL
Power Range:
95W
Height:
11.4mm Max
Footprint:
29.2mm X 21.8mm Max
Toplogy:
Forward And Flyback
Mass Production:
LP1736NL
PN:
PA1736NL
Power Range:
95W
Height:
11.4mm Max
Footprint:
29.2mm X 21.8mm Max
Toplogy:
Forward And Flyback
Mass Production:
LP1736NL
PA1736NL Flyback Transformer High Frequency SMT 12 Pins 11.4mm Max Height

PA1736NL Flyback Transformer High Frequency Wire Wound Transformers SMT 12Pins


PA1736NL => LP1736NL FLYBACK TRANSFORMER Forward and Flyback

 

Notes:

 

High Frequency Wire Wound Transformers

 

  • Power Range: up to 95W
  • Height: 11.4mm Max
  • Footprint: 29.2mm x 21.8mm Max
  • Toplogy: Forward and Flyback


1. The temperature of the component (ambient plus temperature rise) must be within the
stated operating temperature range.
2. The above transformers and inductors have been tested and approved by Pulse’s power
IC partners and are sited in the appropriate datasheet or evaluation board documentation
at these companies. To determine which IC and IC partners are matched with the above
Pulse part numbers please consult the IC Cross Reference on the Pulse website.
3. For flyback topology applications, it is necessary to ensure that the transformer will not
saturate in the application. The peak flux density (Bpk) should remain below 2700Gauss.
To calculate the peak density, use the following formula:
Bpk (Gauss) = K1_Factor * Ipk (A)
4. In high volt-sec applications, it is important to calculate the core loss of the transformer.
Approximate transformer core loss can be calculated as:
CoreLoss (W) = 1.32E-13 * (Freq_kHz) * (ΔB_Gauss)
where ΔB can be calculated as:
For Flyback Topology: ΔB = K1_Factor * (A)
For Forward Topology: ΔB = K1_Factor * Volt-µsec

5. Optional Tape & Reel packaging can be ordered by adding a “T” suffix to the part
number (i.e. PA0273NL becomes PA0273NLT). Pulse complies with industry standard tape
and reel specification EIA481. The tape and reel for this product has a width (W=44mm),
pitch (Po=32mm) an depth (Ko=11.78mm).
6. The “NL” suffix indicates an RoHS-compliant part number. Non-NL suffixed parts are
not necessarily RoHS compliant, but are electrically and mechanically equivalent to NL
versions. If a part number does not have the “NL” suffix, but an RoHS compliant version
is required, please contact Pulse for availability.

 

PA1736NL Flyback Transformer High Frequency SMT 12 Pins 11.4mm Max Height 0

 

PA1736NL Flyback Transformer High Frequency Wire Wound Transformers SMT 12Pins
PA0273NL PA1477NL PA1835NL PA2291NL
PA0751NL PA1558NL PA1836NL PA2398NL
PA0769NL PA1692NL PA1837NL PA2041NL
PA1066NL PA1735NL PA2047NL PB2089NL
PA1366NL PA1736NL PA2053NL PA1736NL 

PA1736NL Flyback Transformer High Frequency Wire Wound Transformers SMT 12Pins