ST92F150CV1 STMicroelectronics, ST92F150CV1 Datasheet - Page 139

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ST92F150CV1

Manufacturer Part Number
ST92F150CV1
Description
8-bit MCU
Manufacturer
STMicroelectronics
Datasheet

Specifications of ST92F150CV1

Internal Memory
Single Voltage FLASH up to 256 Kbytes, RAM up to 8Kbytes, 1K byte E3 (Emulated EEPROM)
Minimum Instruction Time
83 ns (24 MHz int. clock)

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CERAMIC RESONATORS
Murata Electronics CERALOCK resonators have been tested with the ST92F150 at 3, 3.68, 4 and 5 MHz.
These recommended resonators have built-in capacitors (see
The test circuit is shown in
Figure 69. Test Circuit
Table 32
Table 32. Obtained Results
Advantages of using ceramic resonators:
CSTCR and CSTCC types have built-in loading
capacitors.
Smallest loading capacitor resonators are recom-
mended for standard applications.
Highest loading capacitor resonators are recom-
mended for automotive applications with CAN and
tight frequency tolerance.
Test conditions:
The evaluation conditions are 4.5 to 5.5 V for the
supply voltage and -40° to 105° C for the tempera-
ture range.
Caution:
These circuit conditions are for design reference
only.
Recommended C1, C2 value depends on the cir-
cuit board used.
(MHz)
Freq.
3.68
5
4
3
shows the recommended conditions at different frequencies.
CSTCR5M00G55A-R0
CSTCC5M00G56A-R0
CSTCR4M00G55A-R0
CSTCC4M00G56A-R0
CSTCC3M00G56A-R0
CSTCC3M68G56A-R0
ST92F124/F150/F250 - RESET AND CLOCK CONTROL UNIT (RCCU)
Parts Number
Figure
69.
V
OSCIN
DD
CERALOCK
C1
ST92F150
C2
OSCOUT
For tight frequency tolerance applications, please
contact the nearest Murata office for more de-
tailled PCB evaluation regarding layout.
Note 1:
Attention must be paid to leakage currents around
the OSCIN pin. Leakage paths from V
ter the DC polarization of the inverter stage and in-
troduce a mismatch with the second stage, and
possibly stop the clock signal. It is recommended
to surround the oscillator components by a ground
ring on the printed circuit board and if necessary to
apply a coating film to avoid humidity problems.
Note 2:
Attention must be paid to the capacitive loading of
OSCOUT. OSCOUT must not be used to drive ex-
ternal circuits.
Rd
C1 (pF)
39
47
39
47
47
47
Table
V
32).
SS
C2 (pF)
39
47
39
47
47
47
Rd (Ohm)
DD
0
0
0
0
0
0
could al-
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