LMR24220RB/NOPB

Texas Instruments
926-LMR24220RB/NOPB
LMR24220RB/NOPB

Mfr.:

Paglalarawan:
Power Management IC Development Tools LMR24220 Ref Brd

May Stock: 2

Stock:
2 Maaaring Ipadala Agad
Lead-Time ng Pabrika:
12 (na) Linggo Tinatayang oras ng paggawa sa pabrika para sa mga bilang na mas marami kaysa ipinakita.
Minimum: 1   Mga Multiple: 1   Maximum: 5
Presyo ng Unit:
₱-.--
Ext. Presyo:
₱-.--
Est. Taripa:

Presyo (PHP)

Dami Presyo ng Unit
Ext. Presyo
₱1,740.58 ₱1,740.58

Katangian ng Produkto Value ng Attribute Pumili ng Attribute
Texas Instruments
Kategorya ng Produkto: Mga Tool sa Pag-develop ng Power Management IC
RoHS:  
Reference Design Boards
Voltage Regulator - Switching Regulator
5 V to 32 V
1.2 V, 1.8 V, 3.3 V
LMR24220, LMZ10501
LMR24220
Brand: Texas Instruments
Mga Dimensiyon: 20.32 mm x 13.34 mm x 2 mm
Maximum na Operating Temperature: + 125 C
Minimum na Operating Temperature: - 40 C
Current ng Output: 1 A
Uri ng Produkto: Power Management IC Development Tools
Dami ng Pack ng Pabrika: 1
Subcategory: Development Tools
Pangalang pangkalakal: Simple Switcher
Timbang ng Unit: 72.793 g
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Mga Piniling Attribute: 0

CNHTS:
9030900090
USHTS:
8473301180
TARIC:
8473302000
MXHTS:
8473300499
ECCN:
EAR99

LMR24220RB/NOPB Multi-Rail Reference Board

Texas Instruments LMR24220RB/NOPB Multi-Rail Reference Board implements an extremely compact solution. It is designed to convert from 12V or 24V rails down to typical point-of-load voltages of 3.3V, 1.8V, and 1.2V. This design utilizes an LMR24220 Nano Regulator and two LMZ10501 Nano Modules to demonstrate a complete solution for space-constrained multi-rail applications. The LMR24220 Nano Regulator is ideal for intermediate rail conversions and can withstand input voltages up to 42V. It uses a constant on-time (COT) with emulated ripple mode architecture that requires no loop compensation and allows the use of low ESR ceramic capacitors. To further reduce conducted noise on the input supply a pi filter has been implemented on the LMR24220. The LMZ10501 Nano Module is ideal at the point-of-load and uses a current mode architecture combined with an integrated inductor for high efficiency, low noise, and low EMI.