MAX16046EVKIT+ Maxim Integrated Products, MAX16046EVKIT+ Datasheet - Page 14

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MAX16046EVKIT+

Manufacturer Part Number
MAX16046EVKIT+
Description
IC EE-PROG SYS MGR 12CH 56-TQFN
Manufacturer
Maxim Integrated Products
Datasheets

Specifications of MAX16046EVKIT+

Main Purpose
Power Management, Power Supply Supervisor/Tracker/Sequencer
Utilized Ic / Part
MAX16046, MAX16048
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Secondary Attributes
-
Embedded
-
Primary Attributes
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
12-Channel/8-Channel EEPROM-Programmable
System Managers with Nonvolatile Fault Registers
14
MAX16046
52–57
58, 59
60–63
______________________________________________________________________________________
42
43
44
46
47
50
51
TQFP
PIN
MAX16048
58, 59
52–57
42
43
44
46
47
50
51
EN_OUT1–
EN_OUT9–
EN_OUT12
EN_OUT7,
EN_OUT6
EN_OUT8
NAME
GPIO1
GPIO2
GPIO3
GPIO4
ABP
DBP
V
EP
CC
Internal Analog Voltage Regulator Output. Bypass ABP to GND with a 1µF ceramic
capacitor. ABP powers the internal circuitry of the MAX16046/MAX16048 and
supplies power to the internal charge pumps when the programmable outputs are
configured as charge pumps. Do not use ABP to power any external circuitry.
Power-Supply Input. Bypass V
Internal Digital Voltage Regulator Output. Bypass DBP to GND with a 1µF ceramic
capacitor. DBP supplies power to the EEPROM memory and the internal logic
circuitry. All push-pull outputs are referenced to DBP. Do not use DBP to power any
external circuitry.
General-Purpose Input/Output 1. Configure GPIO1 as a TTL input, a return sense
line for closed-loop tracking, an open-drain/push-pull fault output, or an open-
drain/push-pull output port. Use the EEPROM to configure GPIO1. See the General-
Purpose Inputs/Outputs section.
General-Purpose Input/Output 2. GPIO2 is configurable as a TTL input, a return
sense line for closed-loop tracking, an open-drain/push-pull fault output, or an open-
drain/push-pull output port. GPIO2 is also configurable as a dedicated MARGINUP
input. Use the EEPROM to configure GPIO2. See the General-Purpose
Inputs/Outputs section.
General-Purpose Input/Output 3. GPIO3 is configurable as a TTL input, a return
sense line for closed-loop tracking, an open-drain/push-pull fault output, or an open-
drain/push-pull output port. GPIO3 is also configurable as a dedicated MARGINDN
input. Use the EEPROM to configure GPIO3. See the General-Purpose
Inputs/Outputs section.
General-Purpose Input/Output 4. GPIO4 is configurable as a TTL input, a return
sense line for closed loop tracking, an open-drain/push-pull fault output, or an open-
drain/push-pull output port. GPIO4 is also configurable as an active-low manual
reset, MR. Use the EEPROM to configure GPIO4. See the General-Purpose
Inputs/Outputs section.
Output. EN_OUT1–EN_OUT6 are configurable with active-high/active-low logic and
with open-drain or push-pull configurations. Program the EEPROM to configure
EN_OUT_ with a charge-pump output 5V greater than the monitored input voltage
(V
Output. Configure EN_OUT_ with active-low/active-high logic and with an open-drain
or push-pull configuration.
Output. Configure EN_OUT_ with active-low/active-high logic and with an open-drain
or push-pull configuration.
Exposed Pad. Internally connected to GND. Connect to GND. EP also functions as a
heatsink to maximize thermal dissipation. Do not use as the main ground connection.
IN_
+ 5V). EN_OUT1–EN_OUT4 can also be used for closed-loop tracking.
CC
Pin Descriptions (continued)
to GND with a 10µF ceramic capacitor.
FUNCTION

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