BD2046AFJ-E2 Rohm Semiconductor, BD2046AFJ-E2 Datasheet - Page 9

IC SWITCH HIGH SIDE 2CH SOP-J8

BD2046AFJ-E2

Manufacturer Part Number
BD2046AFJ-E2
Description
IC SWITCH HIGH SIDE 2CH SOP-J8
Manufacturer
Rohm Semiconductor
Type
High Sider
Datasheet

Specifications of BD2046AFJ-E2

Input Type
Non-Inverting
Number Of Outputs
2
On-state Resistance
100 mOhm
Current - Output / Channel
250mA
Current - Peak Output
500mA
Voltage - Supply
2.7 V ~ 5.5 V
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
8-SOPJ
Output Voltage
- 0.3 V to 6 V
Output Current
250 mA
Output Power
560 mW
Input Voltage
2.7 V to 5.5 V
Operating Temperature Range
- 40 C to + 85 C
Mounting Style
SMD/SMT
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
BD2046AFJ-E2TR

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
BD2046AFJ-E2
Manufacturer:
ROHM Semiconductor
Quantity:
50
Functional description
© 2009 ROHM Co., Ltd. All rights reserved.
BD2046AFJ, BD2056AFJ
www.rohm.com
1. Switch operation
2. Thermal shutdown circuit (TSD)
3. Over current detection (OCD)
4. Under voltage lockout (UVLO)
5. Error flag (/OC) output
IN terminal and OUT terminal are connected to the drain and the source of switch MOSFET respectively. And the IN
terminal is used also as power source input to internal control circuit.
When the switch is turned on from EN/EN control input, IN terminal and OUT terminal are connected by a 100mΩ switch.
In on status, the switch is bidirectional. Therefore, when the potential of OUT terminal is higher than that of IN terminal,
current flows from OUT terminal to IN terminal.
Since a parasitic diode between the drain and the source of switch MOSFET is canceled, in the off status, it is possible to
prevent current from flowing reversely from OUT to IN.
Thermal shut down circuit have dual thermal shutdown threshold. Since thermal shutdown works at a lower junction
temperature when an overcurrent occurs, only the switch of an overcurrent state become off and error flag is output.
Thermal shut down action has hysteresis. Therefore, when the junction temperature goes down, switch on and error flag
output automatically recover. However, until cause of junction temperature increase such as output shortcircuit is removed
or the switch is turned off, thermal shut down detection and recovery are repeated. The thermal shut down circuit works
when the switch of either OUT1 or OUT2 is on (EN,/EN signal is active).
The over current detection circuit limits current (I
MOSFET exceeds a specified value. There are three types of response against over current. The over current detection
circuit works when the switch is on (EN,/EN signal is active).
3-1. When the switch is turned on while the output is in shortcircuit status
3-2. When the output shortcircuits while the switch is on
3-3. When the output current increases gradually
UVLO circuit prevents the switch from turning on until the V
the switch turns on, then UVLO shuts off the switch. UVLO has hysteresis of a 100mV(Typ).
Under voltage lockout circuit works when the switch of either OUT1 or OUT2 is on (EN,/EN signal is active).
Error flag output is N-MOS open drain output. At detection of over current, thermal shutdown, low level is output.
Over current detection has delay filter. This delay filter prevents instantaneous current detection such as inrush current at
switch on, hot plug from being informed to outside.
When the switch is turned on while the output is in shortcircuit status or so, the switch gets in current limit status soon.
When the output shortcircuits or large capacity is connected while the switch is on, very large current flows until the
over current limit circuit reacts. When the current detection, limit circuit works, current limitation is carried out.
When the output current increases gradually, current limitation does not work until the output current exceeds the over
current detection value. When it exceeds the detection value, current limitation is carried out.
SC
) and outputs error flag (/OC) when current flowing in each switch
9/13
IN
exceeds 2.3V(Typ.). If the V
IN
drops below 2.2V(Typ.) while
Technical Note
2009.05 - Rev.A

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