HV9980WG-G

Microchip Technology
689-HV9980WG-G
HV9980WG-G

Mfr.:

Description:
LED Lighting Driver ICs 3-CHNL LED ARRAY DRIVER IC

ECAD Model:
Download the free Library Loader to convert this file for your ECAD Tool. Learn more about the ECAD Model.

Availability

Stock:
Non-Stocked
Factory Lead Time:
Minimum: 1000   Multiples: 1000
Unit Price:
-,-- €
Ext. Price:
-,-- €
Est. Tariff:
This Product Ships FREE

Pricing (EUR)

Qty. Unit Price
Ext. Price
Full Reel (Order in multiples of 1000)
1,67 € 1 670,00 €

Product Attribute Attribute Value Select Attribute
Microchip
Product Category: LED Lighting Driver ICs
RoHS:  
3 Output
Buck
80 mA
SOIC-Wide-24
160 V
100 V
500 kHz
200 V
- 40 C
+ 85 C
PWM Dimming, Short Circuit and Thermal Protection
Reel
Brand: Microchip Technology
Input Voltage: 100 V to 160 V
Moisture Sensitive: Yes
Mounting Style: SMD/SMT
Number of Channels: 3 Channel
Pd - Power Dissipation: 1.3 W
Product Type: LED Lighting Drivers
Factory Pack Quantity: 1000
Subcategory: Driver ICs
Supply Current - Max: 3 mA
Unit Weight: 1,098 g
Products found:
To show similar products, select at least one checkbox
Select at least one checkbox above to show similar products in this category.
Attributes selected: 0

This functionality requires JavaScript to be enabled.

TARIC:
8541210000
CNHTS:
8541210000
CAHTS:
8541210000
USHTS:
8541210095
JPHTS:
8541210101
KRHTS:
8541219000
MXHTS:
85412101
ECCN:
EAR99

IS32LT3175N/P Single-Channel Linear LED Drivers

ISSI IS32LT3175N/P Single-Channel Linear LED Drivers come with fade in/out and PWM dimming. The regulators serve as a stand-alone LED driver-configurable from 20mA to 150mA with external resistors, no microcontroller is necessary. A logic level “courtesy light” signal from the PWM pin can be interfaced to precisely drive the LED channel. The IS32LT3175P obtains a positive polarity PWM signal. In addition, the IS32LT3175N obtains a negative polarity PWM signal. The regulator integrates a 63-step fade-in and fades out the algorithm (Gamma correction). This causes the output LED current to increasingly rise up to the full source value after the EN pin is pulsed.