CY8C42000-24LFXI CYPRESS [Cypress Semiconductor], CY8C42000-24LFXI Datasheet - Page 3

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CY8C42000-24LFXI

Manufacturer Part Number
CY8C42000-24LFXI
Description
Manufacturer
CYPRESS [Cypress Semiconductor]
Datasheet
4.2
The Digital System is composed of 4 digital PSoC blocks, 2
Enhanced Basic (Type D) and 2 Basic (Type C) to provide
unique power control pulse width modulator (PWM) features.
The power control features include integrated deadband,
latched kill, and synchronous or asynchronous kill. The kill
feature can be combined with a comparator to implement a
fast over-current protection circuit. Each block is an 8-bit
resource that can be used alone or combined with other blocks
to form 8-, 16-, 24-, and 32-bit peripherals, which are called
user module references. A sampling of digital block configura-
tions is listed below.
The digital blocks can be connected to any GPIO (or digital
high voltage output) through a set of global buses that can
route any signal to any pin. The buses also allow signal multi-
plexing and the combining of signals through logic operations.
This configurability frees designs from the constraints of a
fixed peripheral controller.
4.3
The CY8C42x23 devices can have some of the system
resources (the SleepTimer/Watchdog Timer, the Voltage
Regulator or the Power Supply Supervisor) powered down in
order to achieve the desired level of sleep current. Sleep
modes with current levels from 750 µA in idle to 0.1 µA in deep
sleep, and wakeup times from instantaneous to 400 µsec are
available. Deeper sleep modes have longer wakeup times and
sleep modes with more resource power typically have shorter
wakeup times.
4.4
The CY8C42x23 devices have solid analog performance, low
(100 µV) offsets, reduced temperature sensitivity, and are
capable of measuring 0.75% absolute voltage accuracy.
The Analog System is composed of configurable blocks to
allow creation of complex analog signal flows. Analog periph-
erals are very flexible and can be customized to support
specific application requirements. Following are some of the
more common PSoC analog functions (most available as user
modules).
Document 38-12034 Rev. *C
• PWMs (8 to 32 bit)
• PWMs with Deadband (8 to 16 bit)
• Counters (8 to 32 bit)
• Timers (8 to 32 bit)
Digital System
Multiple Sleep Modes
Analog System
PRELIMINARY
HVO[1]
GDO1
P0[7]
P0[5]
P0[3]
P0[1]
P1[1]
VS1
4.5
Two types of high voltage outputs are available. HVO[0] and
HVO[1] are digital outputs that can each be configured as a
CMOS output connected between HV
configured as an open-drain drive that can be externally pulled
up to HV
The second type, Gate Drive Outputs (GDO0 and GDO1), can
each be used to drive the gate of a high-side PFET in a linear
or switched regulator. The GDO0 and GDO1 outputs will drive
between HV
"logic level" PFET. The Gate Drive Outputs can be driven by
an amplifier and used to control a PFET in a linear mode. A
sense voltage can be fed back to the amplifier through an HV
attenuator to implement a constant voltage or constant current
driver. The output of the VDAC can be used to set the target
voltage of the regulator. Alternately, the Gate Drive Outputs
can be connected to the output gated PWM and used to drive
a PFET as a high-side switch in a boost or buck convertor.
• Analog-to-digital converters (up to 12-bit resolution with
• Adjustable input gain of 1/4, 1, 4, or 16 for the ADC.
• Pin-to-pin comparator with low power mode for operation
• Single-ended or differential comparators (up to 2) with
• 1.3V reference (as a System Resource).
single-ended or differential inputs).
during sleep.
absolute (1.3V) reference or internal DAC reference.
High Voltage Interface
IDAC1
HV Driver
dd
COMP1
DBC01
or down to Vss.
Figure 4-1. Analog Block Diagram
dd
ANALOG and HIGH VOLTAGE SECTIONS
-5V and HV
VDAC1
ODAC1
ODAC1
AMuxBus3
AMuxBus1
Atten1
CY8C42123/CY8C42223
CY8C42323/CY8C42423
VDAC1
dd
Convertor
Analog to
Digital
IBIAS
, the signal level required for a
VBG
VDAC0
AMuxBus0
AMuxBus2
ODAC0
Atten0
ODAC0
VDAC0
dd
DBC00
HV Driver
and Vss, or
COMP0
Page 3 of 42
IDAC0
GDO0
VS0
HVO[0]
P0[6]
P0[4]
P0[2]
P0[0]
P1[0]

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