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CY8C53 Fiches technique(PDF) 51 Page - Cypress Semiconductor

No de pièce CY8C53
Description  Programmable System-on-Chip (PSoC) DC to 67 MHz operation
PDF  106 Pages
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Fabricant  CYPRESS [Cypress Semiconductor]
Site Internet  http://www.cypress.com
Logo CYPRESS - Cypress Semiconductor

CY8C53 Fiches technique(HTML) 51 Page - Cypress Semiconductor

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PRELIMINARY
PSoC® 5: CY8C53 Family Datasheet
Document Number: 001-66237 Rev. *A
Page 51 of 106
8.5.3 PGA
The PGA amplifies an external or internal signal. The PGA can
be configured to operate in inverting mode or noninverting mode.
The PGA function may be configured for both positive and
negative gains as high as 50 and 49 respectively. The gain is
adjusted by changing the values of R1 and R2 as illustrated in
Figure 8-7. The schematic in Figure 8-7 shows the configuration
and possible resistor settings for the PGA. The gain is switched
from inverting and non inverting by changing the shared select
value of the both the input muxes. The bandwidth for each gain
case is listed in Table 8-2.
Figure 8-7. PGA Resistor Settings
The PGA is used in applications where the input signal may not
be large enough to achieve the desired resolution in the ADC, or
dynamic range of another SC/CT block such as a mixer. The gain
is adjustable at runtime, including changing the gain of the PGA
prior to each ADC sample.
8.5.4 TIA
The Transimpedance Amplifier (TIA) converts an internal or
external current to an output voltage. The TIA uses an internal
feedback resistor in a continuous time configuration to convert
input current to output voltage. For an input current Iin, the output
voltage is VREF - Iin x Rfb, where VREF is the value placed on the
non inverting input. The feedback resistor Rfb is programmable
between 20 K
Ω and 1 MΩ through a configuration register.
Table 8-3 shows the possible values of Rfb and associated
configuration settings.
Figure 8-8. Continuous Time TIA Schematic
The TIA configuration is used for applications where an external
sensor's output is current as a function of some type of stimulus
such as temperature, light, magnetic flux etc. In a common
application, the voltage DAC output can be connected to the
VREF TIA input to allow calibration of the external sensor bias
current by adjusting the voltage DAC output voltage.
8.6 LCD Direct Drive
The PSoC Liquid Crystal Display (LCD) driver system is a highly
configurable peripheral designed to allow PSoC to directly drive
a broad range of LCD glass. All voltages are generated on chip,
eliminating the need for external components. With a high
multiplex ratio of up to 1/16, the CY8C53 family LCD driver
system can drive a maximum of 736 segments. The PSoC LCD
driver module was also designed with the conservative power
budget of portable devices in mind, enabling different LCD drive
modes and power down modes to conserve power.
PSoC Creator provides an LCD segment drive component. The
component wizard provides easy and flexible configuration of
LCD resources. You can specify pins for segments and
commons along with other options. The software configures the
device to meet the required specifications. This is possible
because of the programmability inherent to PSoC devices.
Key features of the PSoC LCD segment system are:
LCD panel direct driving
Type A (standard) and Type B (low power) waveform support
Wide operating voltage range support (2 V to 5 V) for LCD
panels
Table 8-2. Bandwidth
Gain
Bandwidth
1
6.0 MHz
24
340 kHz
48
220 kHz
50
215 kHz
R1
R2
20 k to 980 k
S
20 k or 40 k
1
0
1
0
Vin
Vref
Vref
Vin
Table 8-3. Feedback Resistor Settings
Configuration Word
Nominal Rfb ()
000b
20
001b
30
010b
40
011b
60
100b
120
101b
250
110b
500
111b
1000
V ref
Vout
I in
R fb
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