




Sai Pallavi Mam Inspired Katan Silk Saree
You can add customisation like – Tassles, Ready to Wear and Blouse Stitching on the cart page.
In ready to wear saree the bottom pleats of the saree will be pre made , you just have to button up and you’re ready (Blouse will not be stitched in this )
There will be handmade tassles (Latkans) at the pallu end for the additional effect
Once you place order for blouse stitching our team will contact you for your measurement for the same to be done more precisely
The Sai Pallavi Mam Inspired Katan Silk Saree takes inspiration from the actress's understated traditional style. Made from Semi-Katan Silk, this saree has a structured yet comfortable feel with a graceful drape. Its celebrity-inspired styling makes it a distinctive choice for women who prefer a classic saree look with a contemporary touch.
Measuring 5.5 metres with a 0.9-metre blouse piece, the saree offers enough fabric for a traditional drape and personalised styling. With a weight of approximately 800 grams, it balances the rich appearance of Katan Silk with a practical feel for occasions where you want your saree to make an impression without looking overly elaborate.
This saree can be worn for weddings, festive celebrations, family functions, traditional events and special gatherings. It comes with free shipping and is dispatched within 12 to 15 days. Dry clean only is recommended for care. Returns are accepted within 7 days, with an opening video compulsory for return requests. Please note that the actual saree colour may vary slightly due to screen resolution and lighting conditions.
Product Details
- Product Name: Sai Pallavi Mam Inspired Katan Silk Saree
- Fabric: Semi-Katan Silk
- Saree Length: 5.5 Meter
- Blouse Length: 0.9 Meter
- Weight: 800 gms
- Care Instructions: Dry Clean Only
- Shipping: Free Shipping
- Shipping Time: Within 12 to 15 Days
- Return Policy: Return Accepted Within 7 Days
- Return Requirement: Opening Video is Compulsory
- Note: Saree colour may vary due to different screen resolutions and lighting conditions.
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