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Setup

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5.4

JP2/JP3 - Input Capacitors

During normal operation the shorting jumper is removed on JP3 and JP4. These jumpers connect C1 and
C2 capacitors (unpopulated) from the input of the device to ground. Refer to the Applications Section of
the Datasheet for additional information on selecting the input capacitor.

5.5

JP4/JP5/JP6/JP7 – Output Parallel Connections

JP4-JP7 connects VOUT1 and VOUT2 together and is used when testing both device switches in parallel
configuration.

5.6

TP1/TP2 – VIN1-VIN2

These are input connections to the device.

5.7

TP3/TP4 - VIN Sense, TP7/TP8 - VOUT Sense

These two connections are used when very accurate measurements of the input or output are required.
RON measurements should be made using these sense connections when measuring the voltage drop
from VIN to VOUT and then calculating the resistance.

5.8

TP5/TP6 – VOUT1-VOUT2

These are output connections to the device.

5.9

TP10 – VBIAS

This is the VBIAS connection point. VBIAS must be applied to the TPS22968/68N-Q1 device at a voltage
level of 2.5 V to 5.5 V level for proper operation. VBIAS may be applied direct at this connection point or
applied using JP1.

5.10 TP9/TP11 – ON1-ON2

These are the enable inputs for the device. Apply an external enable/disable source to TP9 and TP11.
The TPS22968/68N-Q1 is active high. ON1 and ON2 must not be left floating. Refer to the datasheet for
proper ON and OFF voltage level settings. A switching signal may also be used and connected at these
points.

5.11 TP12 – VOUT1 // VOUT2

This is the common connection point for VOUT when the switch output are connected in parallel
configuration.

5.12 TP13 – TP17 GND

These are the GND connection points to the EVM.

6

TPS22968/68N-Q1 Dual Channel, 5.5-V, 4-A, 27-m

Ω

Load Switch Evaluation

SLVUAE2A – January 2015 – Revised November 2015

Module

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Copyright © 2015, Texas Instruments Incorporated

Содержание TPS22968-Q1

Страница 1: ...JP3 Input Capacitors 6 5 5 JP4 JP5 JP6 JP7 Output Parallel Connections 6 5 6 TP1 TP2 VIN1 VIN2 6 5 7 TP3 TP4 VIN Sense TP7 TP8 VOUT Sense 6 5 8 TP5 TP6 VOUT1 VOUT2 6 5 9 TP10 VBIAS 6 5 10 TP9 TP11 ON1...

Страница 2: ...tch wettable flanks and extended temperature range make the TPS22968 68N Q1 ideal for automotive applications The TPS22968 Q1 device can be evaluated using the TPS22968Q1EVM module while the TPS22968N...

Страница 3: ...ce the TPS22968 68N Q1 datasheet SLVSCP7 3 Schematic Figure 1 TPS22968Q1EVM TPS22968NQ1EVM Schematic 3 SLVUAE2A January 2015 Revised November 2015 TPS22968 68N Q1 Dual Channel 5 5 V 4 A 27 m Load Swit...

Страница 4: ...e 2 TPS22968Q1EVM TPS22968NQ1EVM Top 4 TPS22968 68N Q1 Dual Channel 5 5 V 4 A 27 m Load Switch Evaluation SLVUAE2A January 2015 Revised November 2015 Module Submit Documentation Feedback Copyright 201...

Страница 5: ...h current connections for the outputs of the EVM Connect the positive lead to J3 and J4 terminal and the negative lead to GND connection point 5 3 JP1 VBIAS These jumpers connect VBIAS to either VIN1...

Страница 6: ...nce 5 8 TP5 TP6 VOUT1 VOUT2 These are output connections to the device 5 9 TP10 VBIAS This is the VBIAS connection point VBIAS must be applied to the TPS22968 68N Q1 device at a voltage level of 2 5 V...

Страница 7: ...VOUT2 TP9 ON1 ON1 Connection TP10 VBIAS VBIAS Connection TP11 ON2 ON2 Connection TP12 VOUT1 VOUT2 VOUT1 VOUT2 connected in parallel configuration TP13 GND Ground Connection TP14 GND Ground Connection...

Страница 8: ...channel The EVM is shipped with a default CT value of 1 nF 2 Set up the EVM per Figure 5 3 Set SOURCE1 level to 5 0 V 4 Place a shunt across JP1 from pin1 to pin2 5 Place a load on VOUT1 and VOUT2 a 1...

Страница 9: ...2968Q1EVM TPS22968NQ1EVM Recommended RON Test Set Up 9 SLVUAE2A January 2015 Revised November 2015 TPS22968 68N Q1 Dual Channel 5 5 V 4 A 27 m Load Switch Evaluation Module Submit Documentation Feedba...

Страница 10: ...VM TPS22968NQ1EVM Recommended TR Test Set Up 10 TPS22968 68N Q1 Dual Channel 5 5 V 4 A 27 m Load Switch Evaluation SLVUAE2A January 2015 Revised November 2015 Module Submit Documentation Feedback Copy...

Страница 11: ...erformance curves for TPS22968Q1EVM and TPS22968NQ1EVM 7 1 tR and tON Scope Capture Figure 6 TPS22968Q1EVM TPS22968NQ1EVM tR With VIN 5 V CT 1 nF and Load 10 11 SLVUAE2A January 2015 Revised November...

Страница 12: ...cted in parallel configuration by adding shorting shunts across JP4 JP5 JP6 and JP7 Parallel switch configuration lowers RON and raises maximum continuous current capability Refer to Applications Note...

Страница 13: ...01D 4 J1 J2 J3 J4 Terminal Block 5 08 MM VERT 2POS TH On Shore Technology ED120 2DS 14 JP1 JP2 JP3 Header 100 mil 2x1 Gold TH Samtec TSW 102 07 G S JP4 JP5 JP6 JP7 1 SH JP1 Shunt 100mil Gold plated Bl...

Страница 14: ...Added a description for the turn off behavior of the TPS22968N Q1 2 Modified test setup images to reflect the new board layout 9 Added the TPS22968N Q1 to the BOM 13 NOTE Page numbers for previous re...

Страница 15: ...ing the warranty period to the address designated by TI and that are determined by TI not to conform to such warranty If TI elects to repair or replace such EVM TI shall have a reasonable time to repa...

Страница 16: ...transmitter has been approved by Industry Canada to operate with the antenna types listed in the user guide with the maximum permissible gain and required antenna impedance for each antenna type indic...

Страница 17: ...ified allowable ranges some circuit components may have elevated case temperatures These components include but are not limited to linear regulators switching transistors pass transistors current sens...

Страница 18: ...REMOVAL OR REINSTALLATION ANCILLARY COSTS TO THE PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES RETESTING OUTSIDE COMPUTER TIME LABOR COSTS LOSS OF GOODWILL LOSS OF PROFITS LOSS OF SAVINGS LOSS OF USE L...

Страница 19: ...sponsible for compliance with all legal regulatory and safety related requirements concerning its products and any use of TI components in its applications notwithstanding any applications related inf...

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