PDP SEO Portlet

EVL80WLED-STCH03

80W Primary Side Current Loop Control LED Driver Demonstration Board

Manufacturer:STMicroelectronics
Avnet Manufacturer Part #: EVL80WLED-STCH03
Secondary Manufacturer Part#: EVL80WLED-STCH03
  • Legend Information Icon RoHS 10 Compliant
  • Legend Information Icon Tariff Charges

80W-1A primary side current loop control LED driver with STCH03 is a demonstration board for street lighting applications with a primary current sensing control loop. The LED driver is a fixed current source with a very fast start-up time, protections to short-circuit and to open load. The board is optimized to supply an LED string load in the range from 40V to 80V with a fixed 1A current source with a very low current ripple. Due to current primary side STCH03 control loop, the output stage is composed of a simple diode rectification and the output capacitor. Form factor is compatible with street lighting application. At full load the efficiency is above the 90% at nominal voltages and remains very close to this value till half the load. Output short-circuit and no-load protections are auto-restart for a safe operation in lighting environment. Low input power is there at no-load conditions.

  • Input voltage (Vin) range from 90Vrms to 265Vrms, input frequency range from 45Hz to 66Hz
  • LED string range fro 40V to 80V / 1A, output current ripple is 50mA
  • Fast start-up is 300ms, high power factor, low THD (5%)
  • No-load power is 0.5W at 230Vin
  • Average full load efficiency is 90%
  • Short circuit protection with auto-restart
  • LED string open with auto-restart
  • According to EN61000-3-2 class-C or JEITA-MITI class-C
  • EMI according to EN55022 class B conducted emissions
  • Safety according to EN60065C

Technical Attributes

Find Similar Parts

Description Value

ECCN / UNSPSC / COO

Description Value
Country of Origin: UNKNOWN
ECCN: EAR99
HTSN: 8542330001
Schedule B: 8542330000
In Stock :  0
Additional inventory
Factory Lead Time: 372 Weeks
Price for: Each
Quantity:
Min:5  Mult:1  
USD $: