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05F6930 PDF预览

05F6930

更新时间: 2022-01-18 23:23:00
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其他 - ETC /
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12页 324K
描述
IC-ANALOGUE MULTIPLIER

05F6930 数据手册

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Internally Trimmed  
Precision IC Multiplier  
a
AD534  
PIN CONFIGURATIONS  
FEATURES  
Pretrimmed to ؎0.25% max 4-Quadrant Error (AD534L)  
All Inputs (X, Y and Z) Differential, High Impedance for  
[(X1 – X2) (Y1 – Y2)/10 V] + Z2 Transfer Function  
Scale-Factor Adjustable to Provide up to X100 Gain  
Low Noise Design: 90 V rms, 10 Hz–10 kHz  
Low Cost, Monolithic Construction  
TO-100 (H-10A)  
TO-116 (D-14)  
Package  
Package  
X1  
10  
+V  
X1  
14  
13  
12  
11  
10  
9
1
2
3
4
5
6
7
S
+V  
X2  
S
9
1
NC  
X2  
NC  
SF  
AD534  
TOP VIEW  
(Not To Scale)  
Excellent Long Term Stability  
OUT  
Z1  
SF  
Y1  
8
7
2
3
AD534  
TOP VIEW  
(Not To Scale)  
OUT  
APPLICATIONS  
Z1  
Z2  
High Quality Analog Signal Processing  
Differential Ratio and Percentage Computations  
Algebraic and Trigonometric Function Synthesis  
Wideband, High-Crest rms-to-dc Conversion  
Accurate Voltage Controlled Oscillators and Filters  
Available in Chip Form  
4
6
NC  
Y1  
Y2  
5
Z2  
Y2  
–V  
NC  
S
–V  
S
8
NC = NO CONNECT  
PRODUCT DESCRIPTION  
LCC (E-20A)  
Package  
The AD534 is a monolithic laser trimmed four-quadrant multi-  
plier divider having accuracy specifications previously found  
only in expensive hybrid or modular products. A maximum  
multiplication error of ±0.25% is guaranteed for the AD534L  
without any external trimming. Excellent supply rejection, low  
temperature coefficients and long term stability of the on-chip  
thin film resistors and buried Zener reference preserve accuracy  
even under adverse conditions of use. It is the first multiplier to  
offer fully differential, high impedance operation on all inputs,  
including the Z-input, a feature which greatly increases its flex-  
ibility and ease of use. The scale factor is pretrimmed to the  
standard value of 10.00 V; by means of an external resistor, this  
can be reduced to values as low as 3 V.  
3
20 19  
2
1
18  
17  
16  
15  
14  
4
OUT  
NC  
Z1  
NC  
NC  
SF  
5
6
7
8
AD534  
TOP VIEW  
(Not To Scale)  
NC  
Z2  
NC  
NC  
12 13  
10 11  
9
NC = NO CONNECT  
The wide spectrum of applications and the availability of several  
grades commend this multiplier as the first choice for all new  
designs. The AD534J (±1% max error), AD534K (±0.5% max)  
and AD534L (±0.25% max) are specified for operation over the  
0°C to +70°C temperature range. The AD534S (±1% max) and  
AD534T (±0.5% max) are specified over the extended tempera-  
ture range, –55°C to +125°C. All grades are available in her-  
metically sealed TO-100 metal cans and TO-116 ceramic DIP  
packages. AD534J, K, S and T chips are also available.  
such as those used to generate sine and tangent. The utility of  
this feature is enhanced by the inherent low noise of the AD534:  
90 µV, rms (depending on the gain), a factor of 10 lower than  
previous monolithic multipliers. Drift and feedthrough are also  
substantially reduced over earlier designs.  
UNPRECEDENTED FLEXIBILITY  
The precise calibration and differential Z-input provide a degree  
of flexibility found in no other currently available multiplier.  
Standard MDSSR functions (multiplication, division, squaring,  
square-rooting) are easily implemented while the restriction to  
particular input/output polarities imposed by earlier designs has  
been eliminated. Signals may be summed into the output, with  
or without gain and with either a positive or negative sense.  
Many new modes based on implicit-function synthesis have  
been made possible, usually requiring only external passive com-  
ponents. The output can be in the form of a current, if desired,  
facilitating such operations as integration.  
PROVIDES GAIN WITH LOW NOISE  
The AD534 is the first general purpose multiplier capable of  
providing gains up to X100, frequently eliminating the need for  
separate instrumentation amplifiers to precondition the inputs.  
The AD534 can be very effectively employed as a variable gain  
differential input amplifier with high common-mode rejection.  
The gain option is available in all modes, and will be found to  
simplify the implementation of many function-fitting algorithms  
REV. A  
Information furnished by Analog Devices is believed to be accurate and  
reliable. However, no responsibility is assumed by Analog Devices for its  
use, nor for any infringements of patents or other rights of third parties  
which may result from its use. No license is granted by implication or  
otherwise under any patent or patent rights of Analog Devices.  
One Technology Way, P.O. Box 9106, Norwood, MA 02062-9106, U.S.A.  
Tel: 617/329-4700  
Fax: 617/326-8703  

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