R5590X NISSHINBO | Alldatasheet

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Technical content

Rectifier Switch for Reverse Battery Connection No. EA-320-1811214 OUTLINE The R5590x is a rectifier switch, which allows the reverse conn ection of battery. This device can output the voltage rectified in either positive or negative polarity regardless of the polarity of the input voltage. Therefore, this device allows the various applications without being limit ed by the battery loading directions or the connector insertion directions. This device also protect the de vice system from the accidental reverse connection of battery. A small loss resistance of typically 0.4 Ω (SON1612-6)/ 0.5 Ω (SOT-23-5) and a small supply current of typically 50 nA at 1.5 V input voltage make this device ideal for the applications using a battery. For the applications using multiple batteries in series or in parallel, the output pin should also be connected in series or in parallel to rectify the power source and protect the device system. This device is offered in a small 5-pin SOT-23-5 package or an ultra-small and thin 6-pin SON1612-6 package which achieves easy and the smallest possible footprint solutions on board where area is limited.

FEATURES

 Input Voltage Range (Maximum Rating) ············· 0.9 V to 5.25 V (6.0 V) Typ. 0.5 Ω (Input Voltage 1.5 V, SOT-23-5)

APPLICATIONS

 Battery Driven Toys, Remote Controllers, Mouse  Mobile Health Care Devices

No. EA-320-181214 SELECTION GUIDE The package is a user-selectable option. Selection Guide Product Name Package Quantity per Reel Pb Free Halogen Free R5590D001A-TR-FE SON1612-6 4,000 pcs Yes Yes R5590N001A-TR-FE SOT-23-5 3,000 pcs Yes Yes BLOCK DIAGRAMS SW Controller IN1 IN2 OUT(-) OUT(+) R5590x001A Block Diagram

No. EA-320-181214 PIN DESCRIPTION 1 2 3 6 5 4 (mark side) 4 5 2 3 (mark side) SON1612-6 Pin Configuration SOT-23-5 Pin Configuration SON1612-6 Pin Description Pin No. Symbol Description

1 IN2 Input Pin 2

2 OUT (−) Negative Output Pin (1)

3 NC No Connection

4 IN1 Input Pin 1

5 OUT (−) Negative Output Pin (1)

6 OUT (+) Positive Output Pin

Pin No. Symbol Description

1 IN1 Input Pin 1

2 OUT (−) Negative Output Pin

4 IN2 Input Pin 2

5 OUT (+) Positive Output Pin

(1) No. 2 pin and No. 5 pin must be wired together at mounting on a board.

No. EA-320-181214 ABSOLUTE MAXIMUM RATINGS Absolute Maximum Ratings Symbol Parameter Rating Unit ∆VIN Input Pin Voltage Difference (|IN1 − IN2|) 6.0 V ∆VOUT Output Pin Voltage (OUT(+) − OUT(−)) 0 to ∆VIN V IOUT Output Current 400 mA PD Power Dissipation (2) SON1612-6 Standard Test Land Pattern 500 mW SOT-23-5 JEDEC STD.51-7 660 Tj Junction Temperature Range −40 to 125 °C Tstg Storage Temperature Range −55 to 125 °C ABSOLUTE MAXIMUM RATINGS Electronic and mechanical stress momentarily exceeded absolute maximum ratings may cause the permanent damages and may degrade the life time and safety for both device and system using the device in the field. The functional operation at or over these absolute maximum ratings is not assured. RECOMMENDED OPERATING CONDITIONS Recommended Operating Conditions Symbol Parameter Rating Unit VIN Input Voltage 0.9 ~ 5.25 V Ta Operating Temperature Range −40 ~ 85 °C RECOMMENDED OPERATING CONDITONS All of electronic equipment should be designed that the mounted semiconductor devices operate within the recommended operating conditions. The semiconductor devices cannot operate normally over the recommended operating conditions, even if when they are used over such conditions by momentary electronic noise or surge. And the semiconductor devices may receive serious damage when they continue to operate over the recommended operating conditions. (2) Refer to POWER DISSIPATION for detailed information.

No. EA-320-181214

ELECTRICAL CHARACTERISTICS

The specifications surrounded by are guaranteed by design engineering at −40°C ≤ Ta ≤ 85°C. Symbol Parameter Test Conditions/Comments Min. Typ. Max. Unit ∆VIN Input Pin Voltage Difference 0 .9 5 . 2 5V RON Switch On Resistance VIN = 1 V, IOUT = 100 mA 0.65 1.40 Ω VIN = 1.5 V, IOUT = 100 mA 0.40 0.85 VIN = 5.25 V, IOUT = 100 mA 0.30 0.62 ISS Supply Current VIN = 1.5 V, IOUT = 0 mA Ta = 25°C 0.05 μA VIN = 5.25 V, IOUT = 0 mA Ta = 25°C 0.15 4.5 −40°C ≤ Ta ≤ 85°C 55 All parameters listed under ELECTRICAL CHARACTERISTICS are done under the pulse load condition (Tj ≈ Ta = 25°C). R 5 5 9 0 N 0 0 1 A E l e c t r i c a l C h a r a c t e r i s t i c s (Ta = 25°C) Symbol Parameter Test Conditions/Comments Min. Typ. Max. Unit ∆VIN Input Pin Voltage Difference 0.9 5 . 2 5V RON Switch On Resistance VIN = 1 V, IOUT = 100 mA 0.75 1.45 Ω VIN = 1.5 V, IOUT = 100 mA 0.50 0.88 VIN = 5.25 V, IOUT = 100 mA 0.35 0.65 ISS Supply Current VIN = 1.5 V, IOUT = 0 mA Ta = 25°C 0.05 μA VIN = 5.25 V, IOUT = 0 mA Ta = 25°C 0.15 4.5 −40°C ≤ Ta ≤ 85°C 55 All test items listed under ELECTRICAL CHARACTERISTICS are done under the pulse load condition (Tj ≈ Ta = 25°C).

No. EA-320-181214

APPLICATION INFORMATION

If the input voltage difference becomes less than output voltage difference, which could happen when the AC power source is rectified or the DC power source having different voltage is used in parallel, the current flows from the output side to the input side. To prevent this, use a reverse current prevention diode. The short circuit current flows when the output pin is shorted while bias voltage is applied to the input pin. The R5590x should be operated within the absolute maximum ratings of each package. Typical Rectification Circuit with 2 Serial Batteries R5590x Series IN1 IN2 MOUT POUT Application Circuit R5590x Series IN1 IN2 MOUT POUT

No. EA-320-181214 TYPICAL CHARACTERISTICS Note: Typical Characteristics are intended to be used as reference data; they are not guaranteed. 1. Output Current vs. Output Pin Voltage (Ta = 85°C) 2. Operating Temperature vs. Supply Current (IN1=5.25V) 0.0 0.2 0.4 0.6 0.8 1.0 1.2 1.4 1.6 1.8 2.0 0 50 100 150 200 250 300 350 400 I OUT (m A) ΔVOUT (V) ΔVI N =0.9V ΔVI N =1V ΔVI N =1.2V ΔVI N =1.5V

POWER DISSIPATION SON1612-6 Ver. A i The power dissipation of the package is dependent on PCB material, layout, and environmental conditions. The following conditions are used in this measurement. Measurement Conditions Item Standard Test Land Pattern Environment Mounting on Board (Wind Velocity = 0 m/s) Board Material Glass Cloth Epoxy Plastic (Double-Sided Board) Board Dimensions 40 mm × 40 mm × 1.6 mm Copper Ratio Top Side: Approx. 50% Bottom Side: Approx. 50% Through-holes  0.5 mm × 24 pcs Measurement Result (Ta = 25°C, Tjmax = 125°C) Item Standard Test Land Pattern Power Dissipation 500 mW Thermal Resistance (ja) ja = 200°C/W Thermal Characterization Parameter (ψjt) ψjt = 82°C/W ja: Junction-to-Ambient Thermal Resistance ψjt: Junction-to-Top Thermal Characterization Parameter Power Dissipation vs. Ambient Temperature Measurement Board Pattern

PACKAGE DIMENSIONS SON1612-6 Ver. A i

POWER DISSIPATION SOT-23-5 Ver. A i The power dissipation of the package is dependent on PCB material, layout, and environmental conditions. The following measurement conditions are based on JEDEC STD. 51-7. Measurement Conditions Item Measurement Conditions Environment Mounting on Board (Wind Velocity = 0 m/s) Board Material Glass Cloth Epoxy Plastic (Four-Layer Board) Board Dimensions 76.2 mm × 114.3 mm × 0.8 mm Copper Ratio Outer Layer (First Layer): Less than 95% of 50 mm Square Inner Layers (Second and Third Layers): Approx. 100% of 50 mm Square Outer Layer (Fourth Layer): Approx. 100% of 50 mm Square Through-holes  0.3 mm × 7 pcs Measurement Result (Ta = 25°C, Tjmax = 125°C) Item Measurement Result Power Dissipation 660 mW Thermal Resistance (ja) ja = 150°C/W Thermal Characterization Parameter (ψjt) ψjt = 51°C/W ja: Junction-to-Ambient Thermal Resistance ψjt: Junction-to-Top Thermal Characterization Parameter Power Dissipation vs. Ambient Temperature Measurement Board Pattern

PACKAGE DIMENSIONS SOT-23-5 Ver. A i 2.9±0.2 1.9±0.2 (0.95) (0.95) 5 4 1 2 3 1.6-0.1 +0.2 2.8±0.3 0.4±0.1 0.8±0.1 1.1±0.1 0~0.1 0.15-0.05 +0.1 0.2min.

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