STEVAL-IHP001V3 STMicroelectronics, STEVAL-IHP001V3 Datasheet - Page 30

BOARD SMART PLUG STM32 SPZB260PR

STEVAL-IHP001V3

Manufacturer Part Number
STEVAL-IHP001V3
Description
BOARD SMART PLUG STM32 SPZB260PR
Manufacturer
STMicroelectronics
Series
Zigbee™ SmartPlugr
Type
Microcontroller, Energy Meteringr
Datasheets

Specifications of STEVAL-IHP001V3

Frequency
2.4GHz
For Use With/related Products
STM32F10x, SPZB260-PRO, STPM01
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
497-10677
Theory of operation
Figure 21. Positive energy stepper driving signals
Figure 22. Negative energy stepper driving signals
8.16
30/60
When a no-load condition is detected MOP and MON are held low.
Using STPM01 in microcontroller based meter (peripheral)
The higher flexibility of STPM01 allows its use in very high end microcontroller based energy
meters. In this case the STPM01 must be programmed to work in peripheral mode, all the
SPI pins (SCS, SCLNCL, SDATD, SYN) are used only for communication purposes allowing
the microcontroller to write and read the internal STPM01 registers. The peripheral mode
has two further different configuration modes according to the status of the APL
configuration bit. The APL bit status changes the function of MOP, MON and LED pins
according to the description below.
APL = 0:
In the MOP pin, the ZCR signal is available (see paragraph 3 for details about ZCR signal);
The pin MON provides the DOG signal. The DOG signal generates a 16 ms long positive
pulse every 1.6 seconds. Generation of these pulses can be suspended if data are read in
intervals shorter than 1.6 s. The DOG signal is actually a watchdog reset signal which can
be used to control an operation of an on-board microcontroller. It is set to high whenever the
V
DDA
voltage is below 2.5 V, but after V
Hi
Lo
Hi
Lo
Hi
Lo
Hi
Lo
Doc ID 10853 Rev 7
DDA
goes above 2.5 V this signal starts to run.
MON
MON
MOP
MOP
STPM01

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