LM5069MMX-2/NOPB

Texas Instruments
926-LM5069MMX-2/NOPB
LM5069MMX-2/NOPB

Mfr.:

Description:
Hot Swap Voltage Controllers 9-V to 80-V hot swap controller with pow A 926-LM5069MM-2/NOPB

ECAD Model:
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Availability

Stock:
0

You can still purchase this product for backorder.

On Order:
6.666
Expected 2/12/2026
Factory Lead Time:
12
Weeks Estimated factory production time for quantities greater than shown.
Minimum: 1   Multiples: 1
Unit Price:
-,-- €
Ext. Price:
-,-- €
Est. Tariff:
Packaging:
Full Reel (Order in multiples of 3500)

Pricing (EUR)

Qty. Unit Price
Ext. Price
Cut Tape / MouseReel™
2,43 € 2,43 €
1,81 € 18,10 €
1,66 € 41,50 €
1,49 € 149,00 €
1,41 € 352,50 €
1,36 € 680,00 €
1,32 € 1.320,00 €
Full Reel (Order in multiples of 3500)
1,26 € 4.410,00 €
1,25 € 8.750,00 €
† A MouseReel™ fee of 5,00 € will be added and calculated in your basket. All MouseReel™ orders are non-cancellable and non-returnable.

Product Attribute Attribute Value Select Attribute
Texas Instruments
Product Category: Hot Swap Voltage Controllers
RoHS:  
Controllers & Switches
Adjustable
80 V
9 V
1 Channel
1.3 mA
- 40 C
+ 125 C
SMD/SMT
MSOP-10
Reel
Cut Tape
MouseReel
Yes
Brand: Texas Instruments
Development Kit: LM5069EVAL/NOPB
Operating Supply Voltage: 80 V
Product Type: Hot Swap Voltage Controllers
Series: LM5069
Factory Pack Quantity: 3500
Subcategory: PMIC - Power Management ICs
Type: Positive High Voltage
Unit Weight: 110 mg
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TARIC:
8542399000
CNHTS:
8542399000
CAHTS:
8542310000
USHTS:
8542310030
JPHTS:
8542390990
MXHTS:
85423999
ECCN:
EAR99

LM5060 High-Side Protection Controllers

Texas Instruments LM5060 High-Side Protection Controllers with Low Quiescent Current offers intelligent control of a high-side N-channel MOSFET during normal on/off transitions and fault conditions. The constant rise time of the output voltage results from the inrush current control. Both an Input UVLO (with hysteresis) and a programmable input OVP are provided, with an enable input offering a remote on or off control. The initial start-up VGS fault detection delay time, the transition VDS fault detection delay time, and the continuous over-current VDS fault detection delay time is programmed from a single capacitor. The MOSFET is latched off until either the enable input, or the UVLO input is toggled low and then high when a detected fault condition persists longer than the allowed fault delay time.