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ADP5071AREZ-R7 Datasheet(PDF) 7 Page - Analog Devices

Part # ADP5071AREZ-R7
Description  Independent Positive and Negative Outputs
PDF  28 Pages
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Manufacturer  AD [Analog Devices]
Direct Link  http://www.analog.com
Logo AD - Analog Devices

ADP5071AREZ-R7 Datasheet(HTML) 7 Page - Analog Devices

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ADP5071
Data Sheet
Rev. A | Page 6 of 27
PIN CONFIGURATIONS AND FUNCTION DESCRIPTIONS
14
13
12
1
3
4
VREG
15 PVIN1
AGND
VREF
11 FB2
INBK
SEQ
2
SYNC/FREQ
SLEW
5
FB1
ADP5071
TOP VIEW
(Not to Scale)
NOTES
1. EXPOSED PAD. CONNECT THE EXPOSED PAD TO AGND.
Figure 2. 20-Lead LFCSP Pin Configuration
1
2
3
4
5
6
7
8
9
10
20
19
18
17
16
15
14
13
12
11
SW1
INBK
SYNC/FREQ
FB1
SLEW
SEQ
PGND
PVIN2
PVINSYS
PVIN1
VREF
AGND
VREG
SS
EN1
COMP1
EN2
COMP2
FB2
SW2
ADP5071
TOP VIEW
NOTES
1. EXPOSED PAD. CONNECT THE EXPOSED PAD TO AGND.
Figure 3. 20-Lead TSSOP Pin Configuration
Table 5. Pin Function Descriptions
Pin No.
Mnemonic
Description
LFCSP
TSSOP
1
3
INBK
Input Disconnect Switch Output for the Boost Regulator.
2
4
SYNC/FREQ
Frequency Setting and Synchronization Input. To set the switching frequency to 2.4 MHz, pull the SYNC/FREQ
pin high. To set the switching frequency to 1.2 MHz, pull the SYNC/FREQ pin low. To synchronize the
switching frequency, connect the SYNC/FREQ pin to an external clock.
3
5
SEQ
Start-Up Sequence Control. For manual VPOS/VNEG startup using an individual precision enabling pin, leave
the SEQ pin open. For simultaneous VPOS/VNEG startup when the EN2 pin rises, connect the SEQ pin to VREG
(the EN1 pin can be used to enable the internal references early, if required). For a sequenced startup, pull the
SEQ pin low. Either EN1 or EN2 can be used, and the corresponding supply is the first in sequence; hold
the other enable pin low.
4
6
SLEW
Driver Stage Slew Rate Control. The SLEW pin sets the slew rate for the SW1 and SW2 drivers. For the
fastest slew rate (best efficiency), leave the SLEW pin open. For normal slew rate, connect the SLEW pin to
VREG. For the slowest slew rate (best noise performance), connect the SLEW pin to AGND.
5
7
FB1
Feedback Input for the Boost Regulator. Connect a resistor divider between the positive side of the boost
regulator output capacitor and AGND to program the output voltage.
6
8
COMP1
Error Amplifier Compensation for the Boost Regulator. Connect the compensation network between this
pin and AGND.
7
9
EN1
Boost Regulator Precision Enable. The EN1 pin is compared to an internal precision reference to enable
the boost regulator output.
8
10
SS
Soft Start Programming. Leave the SS pin open to obtain the fastest soft start time. To program a slower
soft start time, connect a resistor between the SS pin and AGND.
9
11
EN2
Inverting Regulator Precision Enable. The EN2 pin is compared to an internal precision reference to enable
the inverting regulator output.
10
12
COMP2
Error Amplifier Compensation for the Inverting Regulator. Connect the compensation network between
this pin and AGND.
11
13
FB2
Feedback Input for the Inverting Regulator. Connect a resistor divider between the negative side of the
inverting regulator output capacitor and VREF to program the output voltage.
12
14
VREF
Inverting Regulator Reference Output. Connect a 1.0 μF ceramic filter capacitor between the VREF pin and
AGND.
13
15
AGND
Analog Ground.
14
16
VREG
Internal Regulator Output. Connect a 1.0 μF ceramic filter capacitor between the VREG pin and AGND.
15
17
PVIN1
Power Input for the Boost Regulator.
16
18
PVINSYS
System Power Supply for the ADP5071.
17
19
PVIN2
Power Input for the Inverting Regulator.



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