STEVAL-IPE009V1 STMicroelectronics, STEVAL-IPE009V1 Datasheet - Page 16

BOARD EVAL ST72321BR9/STPM14

STEVAL-IPE009V1

Manufacturer Part Number
STEVAL-IPE009V1
Description
BOARD EVAL ST72321BR9/STPM14
Manufacturer
STMicroelectronics
Type
Other Power Managementr
Datasheets

Specifications of STEVAL-IPE009V1

Main Purpose
Power Management, Energy/Power Meter
Embedded
Yes, MCU, 8-Bit
Utilized Ic / Part
STPM14, ST72F321BR9T6
Primary Attributes
1-Ph 220 VAC, LCD Displays: No-Load, Reverse, Fraud, or Case Tampering
Secondary Attributes
Up to 4 Tariff Rates, Data Accumulated for Meter Life, Time Stamp for: Tamper, Fraud, Power Failure
Input Voltage
220 V
Product
Power Management Modules
Silicon Manufacturer
ST Micro
Silicon Core Number
ST72321BR9 And STPM14
Features
Continuously Detects, Displays No-Load Condition, Reverse Direction, Fraud And Case Tamper Condition
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
For Use With/related Products
STPM14, ST72321BR9
Other names
497-8434
STEVAL-IPE009V1
Theory of operation
Table 8.
Table 9.
7.3
16/46
Gain
16
24
32
8
8
8
Gain
16
24
32
32
The
Configuration of current sensors
Configuration of current sensors
Both the voltage and current channels implement an active offset correction architecture
which has the benefit of avoiding any offset compensation.
The analog voltage and current signals are processed by the ∑ Δ Analog to digital
converters that feed the hardwired DSP. The DSP implements an automatic digital offset
cancellation that makes possible avoiding any manual offset calibration on the analog
inputs.
∑Δ A/D Converters
The analog to digital conversion in the STPM1X is carried out using two first order ∑ Δ
converters. The device performs A/D conversions of analog signals on two independent
channels in parallel. In STPM13/14, the current channel is multiplexed as primary or
secondary current channel in order to be able to perform a tamper function. The converted
∑ Δ signals are supplied to the internal hardwired DSP unit, which filters and integrates
those signals in order to boost the resolution and to yield all the necessary signals for
computations.
8
8
Primary
Table 8
Rogowsky Coil
Current channel
Sensor
CT
and
Table 9
Rogowsky Coil
below show the gain values according to the configuration bits:
Sensor
Shunt
CT
Gain
16
24
32
32
8
8
Doc ID 13167 Rev 7
Secondary
STPM11/12
STPM13/14
Rogowsky Coil
Sensor
Shunt
CT
PST (2bits)
STPM11, STPM12, STPM13, STPM14
0
0
1
1
2
3
Configuration Bits
PST (2bits)
0
0
1
1
2
3
Configuration Bits
ADDG (1 bit)
ADDG (1 bit)
0
1
0
1
x
x
0
1
0
1
x
x

Related parts for STEVAL-IPE009V1