RN5VM111C

Features: • Low supply current:Supply current TYP. 3.0A Standby current (after detecting over-discharge) TYP. 0.3A• High withstand :Absolute maximum ratings 28V (VDDV-)• High accuracy detector threshold :Over-charge detector ±50mV Over-discharge detector ±2.5%• Variety of d...

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SeekIC No. : 004478628 Detail

RN5VM111C: Features: • Low supply current:Supply current TYP. 3.0A Standby current (after detecting over-discharge) TYP. 0.3A• High withstand :Absolute maximum ratings 28V (VDDV-)• High accur...

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Part Number:
RN5VM111C
Supply Ability:
5000

Price Break

  • Qty
  • 1~5000
  • Unit Price
  • Negotiable
  • Processing time
  • 15 Days
Total Cost: $ 0.00

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Upload time: 2026/1/21

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Product Details

Description



Features:

• Low supply current:Supply current TYP. 3.0A
   Standby current (after detecting over-discharge) TYP. 0.3A
• High withstand :Absolute maximum ratings 28V (VDDV-)
• High accuracy detector threshold :Over-charge detector ±50mV
   Over-discharge detector ±2.5%
• Variety of detector threshold:Over-charge detector threshold 4.0V to 4.4V/step of 0.01V
   Over-discharge detector threshold 2.0V to 3.0V/step of 0.05V
• Built-in protection circuit:Excess current trip/Short circuit protector
• Output delay of over-charge :Time delay at C3= 0.01F and VDD=4.3V 75ms for RN5VM111´
• Ultra small package :SOT-23-6



Application

• Over-charge/over-discharge protection for Li+ one-cell pack
• High precision protectors for cell-phones and any other gadgets using on board Li+ one-cell battery



Pinout

  Connection Diagram


Specifications

Symbol
Item
Rating
Unit
VDD
Supply Voltage
0.3 to 12
V
V-Vct
VInput
Voltage
V- pin
VDD28 to VDD+0.3
V
Ct pin
Vss0.3 to VDD+0.3
V
VCOUT
Output Voltage COUT pin
VDD28 to VDD+0.3
V
VDOUT
DOUT pin
Vss0.3 to VDD+0.3
V
PD
Power Dissipation
150
mW
Topt
Operating Temperature Range
40 to +85
°C
Tstg
Storage Temperature Range
55 to +125
°C
Absolute Maximum ratings are threshold limit values that must not be exceeded even for an instant under any conditions. Moreover, such values for any two items must not be reached simultaneously. Operation above these absolute maximum ratings may cause degradation or permanent damage to the device. These are stress ratings only and do not necessarily imply functional operation below these limits.


Description

The RN5VM111C Series are protection ICs for over-charge/discharge of rechargeable one-cell Lithium-ion (Li+) batteries by
CMOS process.

The RN5VM111C Series can detect over-charge/discharge of Li+ one-cell and excess load current, further include a short circuit protector for preventing large external short circuit current. Each of these ICs is composed of three voltage detectors, a reference unit, a hysteresis circuit, and a short circuit protector.
When charging voltage crosses the detector threshold from a low value to a value higher than VDET1, the output of COUT pin, the output of over-charge detector/VD1, switches to low level, ..charger's negative pin level. After detecting overcharge the VD1 can be reset and the output of COUT pin becomes "H" when the VDD voltage is coming down to a level lower than "VDET1 - VHYS1", or when a charger is disconnected from the battery pack while the VDD level is in between "VDET1"and "VDET1 - VHYS1" in the RN5VM1**C version.

While in the RN5VM111C ´´D version after detecting over-charge, any load current can not be drawn from the battery pack when the VDD voltage stays over "VDET1 - VHYS1", excepting that the VD1 can be reset and it allows to draw load current when the VDD voltage is coming down to a level lower than "VDET1 - VHYS1" because of a cell internal discharging.

The output of DOUT pin, the output of over-discharge detector/VD2, switches to "L" after internally fixed delay time passed, when discharging voltage crosses the detector threshold from a high value to a value lower than VDET2. An excess load current can be sensed and cut off after internally fixed delay time passed through the built in excess current detector, VD3, with DOUT being enabled to low level. Once after detecting excess current, the VD3 is released and DOUT level switches to "H" by detaching a battery pack from a load system.

Further, short circuit protector makes DOUT level to "L" immediately with external short circuit current and removing external short circuit leads DOUT level to "H". After detecting over-discharge, supply current will be kept extremely "L" byhalting some internal circuits operation. The output delay of over-charge detectors can be set by connecting external capacitors.Output type of COUT and DOUT are CMOS. SOT23-6 is available.




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