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What is MX636?

This electronic component, produced by the manufacturer "Maxim Integrated Products", performs the same function as "True RMS-to-DC Converters".


MX636 Datasheet PDF - Maxim Integrated Products

Part Number MX636
Description True RMS-to-DC Converters
Manufacturers Maxim Integrated Products 
Logo Maxim Integrated Products Logo 


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19-0824; Rev 2; 3/96
True RMS-to-DC Converters
General Description
The MX536A and MX636 are true RMS-to-DC convert-
ers. They feature low power and are designed to accept
low-level input signals from 0 to 7VRMS for the MX536A
and 0 to 200mVRMS for the MX636. Both devices accept
complex input waveforms containing AC and DC com-
ponents. They can be operated from either a single sup-
ply or dual supplies. Both devices draw less than 1mA
of quiescent supply current, making them ideal for bat-
tery-powered applications.
Input and output offset, positive and negative waveform
symmetry (DC reversal), and full-scale accuracy are
laser trimmed, so that no external trims are required to
achieve full rated accuracy.
________________________Applications
Digital Multimeters
Battery-Powered Instruments
Panel Meters
Process Control
Pin Configurations
TOP VIEW
IOUT
10
RL 1
9 BUF IN
COMMON 2
+VS 3
MX536A
MX636B
8 BUF OUT
7 dB
VIN 4 5 6
-VS
TO-100
CAV
____________________________Features
o True RMS-to-DC Conversion
o Computes RMS of AC and DC Signals
o Wide Response:
2MHz Bandwidth for VRMS > 1V (MX536A)
1MHz Bandwidth for VRMS > 100mV (MX636)
o Auxiliary dB Output: 60dB Range (MX536A)
50dB Range (MX636)
o Single- or Dual-Supply Operation
o Low Power: 1.2mA typ (MX536A)
800µA typ (MX636)
Ordering Information
PART
TEMP. RANGE PIN-PACKAGE
MX536AJC/D
0°C to +70°C
Dice**
MX536AJCWE
0°C to +70°C
16 Wide SO
MX536AJD
0°C to +70°C
14 Ceramic
MX536AJH
0°C to +70°C
10 TO-100
MX536AJN
0°C to +70°C
14 Plastic DIP
MX536AJQ*
0°C to +70°C
14 CERDIP
MX536AKCWE
0°C to +70°C
16 Wide SO
MX536AKD
0°C to +70°C
14 Ceramic
MX536AKH
0°C to +70°C
10 TO-100
MX536AKN
0°C to +70°C
14 Plastic DIP
MX536AKQ*
0°C to +70°C
14 CERDIP
MX536ASD
-55°C to +125°C 14 Ceramic
Ordering Information continued at end of data sheet.
* Maxim reserves the right to ship ceramic packages in lieu of
CERDIP packages.
** Dice are specified at TA = +25°C.
_________Typical Operating Circuits
CAV
VIN 1
N.C. 2
-VS 3
CAV 4
dB 5
BUF OUT 6
BUF IN 7
MX536A
MX636
14 +VS
13 N.C.
12 N.C.
11 N.C.
10 COMMON
9 RL
8 IOUT
DIP
Pin Configurations continued at end of data sheet.
VIN
1
ABSOLUTE
14
+VS
VALUE
2 13
-VS
3
SQUARER
DIVIDER
12
4 11
5
CURRENT
MIRROR
10
VOUT 6
9
7 BUF
8
Typical Operating Circuits continued at end of data sheet.
________________________________________________________________ Maxim Integrated Products 1
For free samples & the latest literature: http://www.maxim-ic.com, or phone 1-800-998-8800.
For small orders, phone 408-737-7600 ext. 3468.

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MX636 equivalent
True RMS-to-DC Converters
ELECTRICAL CHARACTERISTICS—MX636 (continued)
(TA = +25°C, +VS = +3V, -VS = -5V, unless otherwise noted.)
PARAMETER
CONDITIONS
INPUT CHARACTERISTICS
Continuous RMS, All Supplies
Input Signal Range
Peak Transient
+3V, -5V Supplies
±2.5V Supplies
±5V Supplies
Safe Input
All Supplies
Input Resistance
Input Offset Voltage
MX636J
MX636K
OUTPUT CHARACTERISTICS (Note 5)
Offset Voltage
TA = +25°C
TA = TMIN to TMAX
With Supply Voltage
MX636J
MX636K
Output Voltage Swing
+3V, -5V Supplies
±5V to ±16.5V Supplies
Output Resistance
dB OUTPUT
Error
7mV VIN 300mV
MX636J
MX636K
Scale Factor
Scale Factor Tempco
IREF
IREF Range
IOUT TERMINAL
IOUT Scale Factor
IOUT Scale Factor Tolerance
Output Resistance
0dB = 1VRMS
Voltage Compliance
BUFFER AMPLIFIER
Input and Output Voltage Range
Input Offset Voltage
Input Current
Input Resistance
Output Current
Short-Circuit Current
Small-Signal Bandwidth
Slew Rate (Note 9)
RS = 10k
Source
Sink
MX636J
MX636K
MIN TYP MAX
0 to 200
±2.8
±2
±5
±12
5.33 6.7 8.00
±0.5
±0.2
0 to 1
0 to 1
8
±10
±0.1
1.4
10
±0.5
±0.2
12
±0.3 ±0.5
±0.1 ±0.2
-3
+0.33
-0.033
248
1 50
100
-20 ±10 +20
8 10 12
-VS to
(+VS - 2.0)
-VS to
(+VS - 2)
+5
-130
±0.8
±0.5
100
108
20
1
5
±2
±1
300
UNITS
mVRMS
VPK
VPK
k
mV
mV
µV/°C
mV/V
V
k
dB
mV/dB
%/°C
dB/°C
µA
µA
µA/VRMS
%
k
V
V
mV
nA
mA
µA
mA
MHz
V/µs
_______________________________________________________________________________________ 5


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