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TPS2068 Series

1.5A loading, 2.7-5.5V, 70mΩ USB power switch, active-low, reverse blocking

Manufacturer: Texas Instruments
Link to Manufacturer Page: https://www.ti.com/

Catalog

1.5A loading, 2.7-5.5V, 70mΩ USB power switch, active-low, reverse blocking

PartMounting TypeRatio - Input:Output [custom]Fault ProtectionSupplier Device PackageNumber of OutputsOperating Temperature [Max]Operating Temperature [Min]Output ConfigurationSwitch TypeInput TypePackage / Case [x]Package / Case [x]Package / CaseOutput TypeInterfaceCurrent - Output (Max) [Max]FeaturesVoltage - Supply (Vcc/Vdd)Voltage - Load [Max]Voltage - Load [Min]Rds On (Typ)Package / CaseGradeQualification
Texas Instruments
TPS2068CDGNR
Surface Mount
1:1
Current Limiting (Fixed), Over Temperature, Reverse Current, UVLO
8-HVSSOP
1
85 °C
-40 °C
High Side
USB Switch
Inverting
0.118 in
3 mm
8-MSOP, 8-TSSOP, Exposed Pad
N-Channel
On/Off
1.5 A
Output Discharge
Not Required
5.5 V
4.5 V
69 mOhm
Texas Instruments
TPS2068DGNRG4
Surface Mount
1:1
Current Limiting (Fixed), Over Temperature, Reverse Current, UVLO
8-HVSSOP
1
105 °C
-40 °C
High Side
General Purpose
Non-Inverting
0.118 in
3 mm
8-MSOP, 8-TSSOP, Exposed Pad
N-Channel
On/Off
1.5 A
Status Flag
Not Required
5.5 V
2.7 V
70 mOhm
Texas Instruments
TPS2068DGN
Surface Mount
1:1
Current Limiting (Fixed), Over Temperature, Reverse Current, UVLO
8-HVSSOP
1
105 °C
-40 °C
High Side
General Purpose
Non-Inverting
0.118 in
3 mm
8-MSOP, 8-TSSOP, Exposed Pad
N-Channel
On/Off
1.5 A
Status Flag
Not Required
5.5 V
2.7 V
70 mOhm
Texas Instruments
TPS2068CDGN
Surface Mount
1:1
Current Limiting (Fixed), Over Temperature, Reverse Current, UVLO
8-HVSSOP
1
85 °C
-40 °C
High Side
USB Switch
Inverting
0.118 in
3 mm
8-MSOP, 8-TSSOP, Exposed Pad
N-Channel
On/Off
1.5 A
Output Discharge
Not Required
5.5 V
4.5 V
69 mOhm
Texas Instruments
TPS2068DR
Surface Mount
1:1
Current Limiting (Fixed), Over Temperature, Reverse Current, UVLO
8-SOIC
1
105 C
0 °C
High Side
General Purpose
Non-Inverting
8-SOIC
N-Channel
On/Off
1.5 A
Status Flag
Not Required
5.5 V
2.7 V
70 mOhm
3.9 mm
Texas Instruments
TPS2068DGNR
Surface Mount
1:1
Current Limiting (Fixed), Over Temperature, Reverse Current, UVLO
8-HVSSOP
1
105 °C
-40 °C
High Side
General Purpose
Non-Inverting
0.118 in
3 mm
8-MSOP, 8-TSSOP, Exposed Pad
N-Channel
On/Off
1.5 A
Status Flag
Not Required
5.5 V
2.7 V
70 mOhm
Texas Instruments
TPS2068IDGNRQ1
Surface Mount
1:1
Current Limiting (Fixed), Over Temperature, UVLO
8-HVSSOP
1
105 °C
-40 °C
High Side
General Purpose
Non-Inverting
0.118 in
3 mm
8-MSOP, 8-TSSOP, Exposed Pad
N-Channel
On/Off
1.5 A
Status Flag
Not Required
5.5 V
2.7 V
70 mOhm
Automotive
AEC-Q100
Texas Instruments
TPS2068D
Surface Mount
1:1
Current Limiting (Fixed), Over Temperature, Reverse Current, UVLO
8-SOIC
1
105 C
0 °C
High Side
General Purpose
Non-Inverting
8-SOIC
N-Channel
On/Off
1.5 A
Status Flag
Not Required
5.5 V
2.7 V
70 mOhm
3.9 mm

Key Features

70-mΩ High-Side MOSFET1.5-A Continuous CurrentThermal and Short-Circuit ProtectionAccurate Current Limit (1.6 A min, 2.6 A max)Operating Range: 2.7 V to 5.5 V0.6-ms Typical Rise TimeUndervoltage LockoutDeglitched Fault Report (OC)NoOCGlitch During Power Up1-µA Maximum Standby Supply CurrentReverse Current BlockingTPS2060/64 Temperature Range: 0°C to 70°CTPS2068/69 DGN Package Temperature Range: –40°C to 85°CTPS2068 D Package Temperature Range:0°C to 70°CUL Listed – File No. E169910TPS2068/69: CB CertifiedAPPLICATIONSHeavy Capacitive LoadsShort-Circuit Protections70-mΩ High-Side MOSFET1.5-A Continuous CurrentThermal and Short-Circuit ProtectionAccurate Current Limit (1.6 A min, 2.6 A max)Operating Range: 2.7 V to 5.5 V0.6-ms Typical Rise TimeUndervoltage LockoutDeglitched Fault Report (OC)NoOCGlitch During Power Up1-µA Maximum Standby Supply CurrentReverse Current BlockingTPS2060/64 Temperature Range: 0°C to 70°CTPS2068/69 DGN Package Temperature Range: –40°C to 85°CTPS2068 D Package Temperature Range:0°C to 70°CUL Listed – File No. E169910TPS2068/69: CB CertifiedAPPLICATIONSHeavy Capacitive LoadsShort-Circuit Protections

Description

AI
The TPS206x power-distribution switches are intended for applications where heavy capacitive loads and short-circuits are likely to be encountered. This device incorporates 70-mΩ N-channel MOSFET power switches for power-distribution systems that require single or dual power switches in a single package. Each switch is controlled by a logic enable input. Gate drive is provided by an internal charge pump designed to control the power-switch rise times and fall times to minimize current surges during switching. The charge pump requires no external components and allows operation from supplies as low as 2.7 V. When the output load exceeds the current-limit threshold or a short is present, the device limits the output current to a safe level by switching into a constant-current mode, pulling the overcurrent (OCx) logic output low. When continuous heavy overloads and short-circuits increase the power dissipation in the switch, causing the junction temperature to rise, a thermal protection circuit shuts off the switch to prevent damage. Recovery from a thermal shutdown is automatic once the device has cooled sufficiently. Internal circuitry ensures that the switch remains off until valid input voltage is present. Current limit is typically 2.1 A. The TPS206x power-distribution switches are intended for applications where heavy capacitive loads and short-circuits are likely to be encountered. This device incorporates 70-mΩ N-channel MOSFET power switches for power-distribution systems that require single or dual power switches in a single package. Each switch is controlled by a logic enable input. Gate drive is provided by an internal charge pump designed to control the power-switch rise times and fall times to minimize current surges during switching. The charge pump requires no external components and allows operation from supplies as low as 2.7 V. When the output load exceeds the current-limit threshold or a short is present, the device limits the output current to a safe level by switching into a constant-current mode, pulling the overcurrent (OCx) logic output low. When continuous heavy overloads and short-circuits increase the power dissipation in the switch, causing the junction temperature to rise, a thermal protection circuit shuts off the switch to prevent damage. Recovery from a thermal shutdown is automatic once the device has cooled sufficiently. Internal circuitry ensures that the switch remains off until valid input voltage is present. Current limit is typically 2.1 A.