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ADE7762ARWZ Fiches technique(PDF) 7 Page - Analog Devices

No de pièce ADE7762ARWZ
Description  Polyphase Energy Metering IC with Phase Drop Indication
Download  28 Pages
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Fabricant  AD [Analog Devices]
Site Internet  http://www.analog.com
Logo AD - Analog Devices

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Preliminary Technical Data
ADE7762
Rev. PrB | Page 7 of 28
PIN CONFIGURATION AND FUNCTION DESCRIPTIONS
LED_CTRL 1
LED_A 2
CF
3
DGND
4
LED_B
28
LED_C
27
F1
26
F2
25
VDD 5
S1
24
REVP 6
S0
23
IAP 7
CLKOUT
22
IAN
8
CLKIN
21
IBP 9
SCF
20
IBN 10
ABS
19
ICP 11
VAP
18
ICN 12
VBP
17
AGND 13
VCP
16
REFIN/OUT 14
VN
15
ADE7762
TOP VIEW
(Not to Scale)
Figure 4. Pin Configuration
Table 4. Pin Function Descriptions
Pin No.
Mnemonic
Description
1
LED_CTRL
LED Control Output. The LED_CTRL signal multiplexes the indication of phase drop, phase sequence
error, and per phase reverse power on the LED_A, LED_B, and LED_C pins.
2
LED_A
Phase A Phase Monitor Output. LEDs are connected to this pin to indicate phase drop or reverse power
on phase A (see the Phase Monitor section).
3
CF
Calibration Frequency Logic Output. The CF logic output gives instantaneous active power information.
This output is intended to be used for calibration purposes.
4
DGND
This provides the ground reference for the digital circuitry in the ADE7762, that is, multiplier, filters, and
digital-to-frequency converter. Because the digital return currents in the ADE7762 are small, it is
acceptable to connect this pin to the analog ground plane of the whole system.
5
VDD
Power Supply. This pin provides the supply voltage for the digital circuitry in the ADE7762. The supply
voltage should be maintained at 5 V ± 5% for specified operation. This pin should be decoupled to
DGND with a 10 μF capacitor in parallel with a 100 nF ceramic capacitor.
6
REVP
This logic output goes logic high when negative power is detected on the sum of the three phase
powers. This output is not latched and resets when positive power is once again detected (see the
Negative Power Information section).
7, 8;
9, 10;
11, 12
IAP, IAN;
IBP, IBN;
ICP, ICN
Analog Inputs for Current Channels. These channels are intended for use with current transducers and
are referenced in this document as current channels. These inputs are fully differential voltage inputs
with maximum differential input signal levels of ±0.5 V (see the Analog Inputs section). Both inputs
have internal ESD protection circuitry; in addition, an overvoltage of ±6 V can be sustained on these
inputs without risk of permanent damage.
13
AGND
This pin provides the ground reference for the analog circuitry in the ADE7762 (ADCs and reference).
This pin should be tied to the analog ground plane or the quietest ground reference in the system. This
quiet ground reference should be used for all analog circuitry, such as, anti-aliasing filters and current
and voltage transducers. To keep ground noise around the ADE7762 to a minimum, the quiet ground
plane should only connect to the digital ground plane at one point. It is acceptable to place the entire
device on the analog ground plane.
14
REFIN/OUT
This pin provides access to the on-chip voltage reference. The on-chip reference has a nominal value of
2.4 V ±8% and a typical temperature coefficient of 25 ppm/°C. An external reference source can also be
connected at this pin. In either case, this pin should be decoupled to AGND with a 1 μF ceramic
capacitor.
15, 16, 17,
18
VN, VCP, VBP, VAP
Analog Inputs for the Voltage Channels. These channels are intended for use with voltage transducers
and are referenced in this document as voltage channels. These inputs are single-ended voltage inputs
with a maximum signal level of ±0.5 V with respect to VN for specified operation. All inputs have
internal ESD protection circuitry; in addition, an overvoltage of ±6 V can be sustained on these inputs
without risk of permanent damage.
19
ABS
This logic input is used to select the method by which the three active energies from each phase are
summed. It selects between the arithmetical sum of the three energies (ABS logic high) or the sum of
the absolute values (ABS logic low). See the Mode Selection of the Sum of the Three Active Energies
section.
20
SCF
Select Calibration Frequency. This logic input is used to select the frequency on the calibration output
CF. Table 7 shows how the calibration frequencies are selected.


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