LA-ISPPAC-POWR1014-01TN48E LATTICE SEMICONDUCTOR, LA-ISPPAC-POWR1014-01TN48E Datasheet - Page 13

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LA-ISPPAC-POWR1014-01TN48E

Manufacturer Part Number
LA-ISPPAC-POWR1014-01TN48E
Description
IC, PROG POWER SUPPLY SUPERVISOR TQFP-48
Manufacturer
LATTICE SEMICONDUCTOR

Specifications of LA-ISPPAC-POWR1014-01TN48E

Input Voltage
4.5V
Supply Voltage Range
2.8V To 3.96
No. Of Pins
48
Operating Temperature Range
-40°C To +105°C
Frequency
25MHz
No. Of Macrocells
24
Termination Type
SMD
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
LA-ISPPAC-POWR1014-01TN48E
Manufacturer:
Lattice Semiconductor Corporation
Quantity:
10 000
Lattice Semiconductor
Figure 6. LA-ispPAC-POWR1014/A Voltage Monitors
Figure 6 shows the functional block diagram of one of the 10 voltage monitor inputs - ‘x’ (where x = 1...10). Each
voltage monitor can be divided into three sections: Analog Input, Window Control, and Filtering.
The voltage input is monitored by two individually programmable trip-point comparators, shown as CompA and
CompB. Table 1 shows all trip points and the range to which any comparator’s threshold can be set.
Each comparator outputs a HIGH signal to the PLD array if the voltage at its positive terminal is greater than its pro-
grammed trip point setting, otherwise it outputs a LOW signal.
A hysteresis of approximately 1% of the setpoint is provided by the comparators to reduce false triggering as a
result of input noise. The hysteresis provided by the voltage monitor is a function of the input divider setting. Table 3
lists the typical hysteresis versus voltage monitor trip-point.
AGOOD Logic Signal
All the VMON comparators auto-calibrate immediately after a power-on reset event. During this time, the digital
glitch filters are also initialized. This process completion is signalled by an internally generated logic signal:
AGOOD. All logic using the VMON comparator logic signals must wait for the AGOOD signal to become active.
Programmable Over-Voltage and Under-Voltage Thresholds
Figure 7 (a) shows the power supply ramp-up and ramp-down voltage waveforms. Because of hysteresis, the com-
parator outputs change state at different thresholds depending on the direction of excursion of the monitored power
supply.
VMONx
Trip Point A
Trip Point B
Analog Input
+
+
LA-ispPAC-POWR1014/A
Comp A
Comp B
LA-ispPAC-POWR1014/A Automotive Family Data Sheet
13
Window Control
Comp A/Window
Select
Glitch
Glitch
Filter
Filter
Filtering
VMONxA
Signal
Logic
VMONxB
Signal
Logic
POWR1014A only)
Unit (LA-ispPAC-
VMONx Status
I
To ADC
(LA-ispPAC-POWR1014A on
2
C Interface
Array
PLD

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