FIXED IND 7.6UH 5.7A 18.5MOHM SM Product overview: P1172.762NLT from Pulse Electronics is an Inductor and Choke for power conversion, EMI filtering, RF circuits, signal conditioning, and energy storage in switching supplies. It is useful for engineers and buyers comparing datasheets, replacement parts, BOM lines, package options, lifecycle status, and procurement availability. Key searchable attributes include 7.6UH, 5.7A, 18.5MOHM. Search-friendly keywords include inductor, choke, ferrite bead, power conversion, EMI, 7.6UH, 5.7A, 18.5MOHM, Inductor and Choke, Fixed Inductors. This listing supports clearer product discovery for industrial, commercial, repair, automation, power, sensing, and embedded system projects. Product number 71-P1172.762NLT can be used for catalog matching and distributor lookup.
Manufacturer: Pulse Electronics Power
Win Source Part Number: 733241-P1172.762NLT
Packaging: Tape and Reel
Type: Wirewound
Mounting Style: SMD
Shielding: Shielded
Inductance: 7.6μH
Tolerance: ±30%
Current - Saturation: 6.2A
Frequency - Self Resonant: 25MHz
Categories: Inductors, Coils, Chokes
DC Resistance (DCR): 18.5mOhm Max
Temperature Range - Operating: -40°C ~ 130°C
Manufacturer Package: Nonstandard
Height - Seated (Maximum): 0.315" (8.00mm)
Popularity: Low
Fake Threat In the Open Market: 48 pct.
Supply and Demand Status: Limited
Manufacturer Pack Quantity: 400
MSL Level: 1 (Unlimited)
Parts Dimension: 0.482" L x 0.482" W (12.24mm x 12.24mm)
Current Rating (Amps): 5.7A
Inductance Frequency - Test: 100kHz
| ERSAELECTRONICS PTE. LTD. | Win Source Electronics | |
|---|---|---|
| Product Category | Inductors, Coils, and Chokes | Inductors, Coils, and Chokes |
| Product Number | 71-P1172.762NLT | 733241-P1172.762NLT |
| Product Name | 7.6UH 5.7A 18.5MOHM Inductor and Choke | Fixed Inductors - P1172.762NLT |
| Operating Temperature | -40 to 130 C (-40 to 266 F) | -40 to 130 C (-40 to 266 F) |
| Mounting Option | Surface Mount | |
| Technology | Wirewound | Wirewound |
| Inductance Range | 7.6 microH | 7.6 microH |
| Inductance Tolerance | 30 (+/- %) |