Electronic Components Datasheet Search
  English  ▼
ALLDATASHEET.NET

X  

AD7750 Datasheet(PDF) 14 Page - Analog Devices

Part # AD7750
Description  Product-to-Frequency Converter
PDF  16 Pages
Scroll/Zoom Zoom In 100%  Zoom Out
Manufacturer  AD [Analog Devices]
Direct Link  http://www.analog.com
Logo AD - Analog Devices

AD7750 Datasheet(HTML) 14 Page - Analog Devices

Back Button AD7750 Datasheet HTML 8Page - Analog Devices AD7750 Datasheet HTML 9Page - Analog Devices AD7750 Datasheet HTML 10Page - Analog Devices AD7750 Datasheet HTML 11Page - Analog Devices AD7750 Datasheet HTML 12Page - Analog Devices AD7750 Datasheet HTML 13Page - Analog Devices AD7750 Datasheet HTML 14Page - Analog Devices AD7750 Datasheet HTML 15Page - Analog Devices AD7750 Datasheet HTML 16Page - Analog Devices  
Zoom Inzoom in Zoom Outzoom out
 14 / 16 page
background image
AD7750
–14–
REV. 0
Registering the Power Output
The low frequency pulse outputs (F1 and F2) of the AD7750
provide the frequency output from the product-to-frequency
conversion. These outputs can be used to drive a stepper motor
or impulse counter.
A high frequency output is available at the pin FOUT. This high
frequency output is used for calibration purposes. In Mode 2
the output frequency is 16
× F1(2). With a load current of Ib
the frequency at FOUT will be 1.4656 Hz (0.0916 Hz
× 16 from
calculations). If a higher frequency output is required, the FS
pin can be set to VDD 5 V for calibration. In this case the output
frequency is equal to 64
× F1 or 5.8624 Hz at Ib—see Table I.
NO LOAD THRESHOLD OF THE AD7750
The AD7750 will detect when the power drops below a certain
level. When the power (current) drops below a predefined
threshold the AD7750 will cease to generate an output drive for
the stepper motor (F1, F2). This feature of the AD7750 is
intended to reproduce the behavior of Ferraris meters. A
Ferraris meter will have friction associated with the wheel rota-
tion, therefore the wheel will not rotate below a certain power
level. The no load threshold is only implemented in the Magni-
tude Only modes (Modes 1, 2, 5 and 6—see Table I). The
IEC1036 specification includes a test for this effect by requiring
no output pulses during some predetermined time period. This
time period is calculated as:
time period = 60,000/pulses-per-minute
If a meter is calibrated to 100 PPKWHR with a FOUT running
16 times faster than F1 and F2, this time period is 37.5 minutes
(60,000/1,600). The IEC1036 specifications state that the no
load threshold must be less than the start up current level. This
is specified as 0.4% of Ib.
The threshold level for a given design can be easily calculated
given that the minimum output frequency of the AD7750 is
0.00048% of the maximum output frequency for a full-scale
differential dc input. For example if FS = 0, the maximum
output frequency for a full-scale dc input is 2.9 Hz (see Table II)
and the minimum output frequency is, therefore, 1.39
× 10–5 Hz.
Calculating the Threshold Power (Current)
The meter used in this example is calibrated to 100 PPKWHR,
has an Ib (basic current) of 15 A rms, the line voltage is 220 V
rms and the turns ratio of the CT on Channel 1 is 120:1 with an
2
Ω shunt resistor.
The nominal voltage on Channel 2 of the AD7750 is 255 mV
rms. An FMAX of 6.8 Hz is selected by setting FS = 0. A Magni-
tude Only Mode (Mode 2) is selected to enable the no load thresh-
old. The gain on Channel 1 is set to 1. The threshold power or
current can be found by using the transfer function in Table I.
F1, F2 = (1.32
× V
1
× V
2
× Gain × F
MAX)/VREF
2
From the transfer function V1 is calculated as 37.95
µV rms—
see Calculation 3.
This is equivalent to a line current of:
(37.95
µV/2 Ω ) × 120 = 2.27 mA rms or 0.5 W
or
(2.27 mA/15 A)
× 100% = 0.015% of Ib.
NOTE: The no load threshold as a percentage of Ib will be
different for each value of Ib since the no load in watts is fixed:
FS = 0, the no load threshold is (FMAX = 6.8 Hz)
0.5 Watts for a 100 PPKWHR meter
5 Watts for a 10 PPKWHR meter
FS = 1, the no load threshold is (FMAX = 13.6 Hz)
1 Watt for a 100 PPKWHR meter
10 Watts for a 10 PPKWHR meter
Calculation 3
FMIN = 1.32
× V
1
× V
2
× Gain × 6.8 Hz) V
REF
2
1.39
× 10–5 Hz = V
1
× 0.2555 × 1 × 6.8)/6.25
V1 = 37.95
µV
EXTERNAL LEAD/LAG COMPENSATION
External phase compensation is often required in a power meter
design to eliminate the phase errors introduced by transducers
and external components. The design restriction on any external
compensating network is that the network must have an overall
low-pass response with a 3 dB point located somewhere between
5 kHz and 6 kHz. The corner frequency of this LPF(s) is much
higher than the band of interest. The reason for this is to mini-
mize its effect on phase variation at 50 Hz due to component
tolerances.
With the antialiasing filters on all channels having the same
corner (–3 dB) frequency, the main contribution to phase error
will be due to the CT. A phase lead in a channel is compensated
by lowering the corner frequency of the antialiasing filter to
increase its associated lag and therefore cancel the lead. A phase
lag in a channel should be compensated by introducing extra lag
in the other channel. This can be done as previously described,
i.e., moving the corner frequency of the antialiasing filters. The
result in this case is that the signal on both channels has the
same amount of phase lag and is therefore in phase at the analog
inputs to the AD7750. The recommended RC values for the
antialiasing filters on the voltage and current channels (see
Antialiasing Components Channels 1 and 2) are R = 1 k
Ω,
C = 33 nF and R = 100
Ω, C = 330 nF respectively. These
values produce a phase lag of 0.6
° through the filters. Varying R
in the antialiasing network from 80
Ω to 100 Ω or 800 Ω to 1 kΩ
produces a phase variation from 0.475
° to 0.6° at 50 Hz. This
allows the user to vary the lag by 0.125
°.



Html Pages

1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16


Datasheet Download

Go To PDF Page


Link URL



Does ALLDATASHEET help your business so far?  [ DONATE ] 

About Alldatasheet   |   Advertisement   |   Contact us   |   Privacy Policy   |   Link to Datasheet    |   Link Exchange   |   Manufacturer List
All Rights Reserved©Alldatasheet.com


Mirror Sites
English : Alldatasheet.com  |   English : Alldatasheet.net  |   Chinese : Alldatasheetcn.com  |   German : Alldatasheetde.com  |   Japanese : Alldatasheet.jp
Russian : Alldatasheetru.com  |   Korean : Alldatasheet.co.kr  |   Spanish : Alldatasheet.es  |   French : Alldatasheet.fr  |   Italian : Alldatasheetit.com
Portuguese : Alldatasheetpt.com  |   Polish : Alldatasheet.pl  |   Vietnamese : Alldatasheet.vn
Indian : Alldatasheet.in  |   Mexican : Alldatasheet.com.mx  |   British : Alldatasheet.co.uk  |   New Zealand : Alldatasheet.co.nz
Family Site : ic2ic.com  |   icmetro.com