MAX16048ETN+ Maxim Integrated Products, MAX16048ETN+ Datasheet - Page 12

IC EE-PROG SYS MGR 8CH 56-TQFN

MAX16048ETN+

Manufacturer Part Number
MAX16048ETN+
Description
IC EE-PROG SYS MGR 8CH 56-TQFN
Manufacturer
Maxim Integrated Products
Type
System Managerr
Datasheet

Specifications of MAX16048ETN+

Number Of Voltages Monitored
8
Output
Open Drain, Push-Pull
Reset
Active Low
Reset Timeout
Adjustable/Selectable
Voltage - Threshold
Adjustable/Selectable
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
56-TQFN
Manual Reset
Resettable
Watchdog
Yes
Supply Voltage (max)
14 V
Supply Voltage (min)
3 V
Supply Current (typ)
6500 uA
Maximum Power Dissipation
3810 mW
Mounting Style
SMD/SMT
Maximum Operating Temperature
+ 85 C
Minimum Operating Temperature
- 40 C
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
12-Channel/8-Channel EEPROM-Programmable
System Managers with Nonvolatile Fault Registers
12
MAX16046 MAX16048
45–50
51, 52
53–56
37
38
39
41
42
43
44
______________________________________________________________________________________
THIN QFN
PIN
45–50
51, 52
37
38
39
41
42
43
44
EN_OUT1–
EN_OUT7–
EN_OUT9–
EN_OUT12
EN_OUT6
EN_OUT8
GPIO1
GPIO2
GPIO3
GPIO4
NAME
ABP
DBP
V
EP
CC
Internal Analog Voltage Bypass. Bypass ABP to GND with a 1µF ceramic capacitor.
ABP powers the internal circuitry of the MAX16046/MAX16048. Do not use ABP to
power any external circuitry.
Power-Supply Input. Bypass V
Internal Digital Voltage Bypass. Bypass DBP to GND with a 1µF ceramic capacitor.
DBP supplies power to the EEPROM memory, to the internal logic circuitry, and to the
internal charge pumps when the programmable outputs are configured as charge
pumps. 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 logic 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 logic 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 logic 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 logic 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
an open-drain or push-pull configuration. Program the EEPROM to configure
EN_OUT1–EN_OUT6 as 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.
MON_
+ 5V). EN_OUT1–EN_OUT4 can also be used for closed-loop tracking.
CC
to GND with a 10µF ceramic capacitor.
Pin Descriptions (continued)
FUNCTION

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