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Part Number |
X9C303 |
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Manufacturer |
Intersil Corporation |
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Semiconductor DataSheet |
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DataSheet View |
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X9C303
Logarithmic Digitally Controlled Potentiometer (XDCP™)
Data Sheet January 24, 2007 FN8223.1
Terminal Voltage ±5V, 100 Taps, Log Taper Description
The Intersil X9C303 is a digitally controlled potentiometer (XDCP). The device consists of a resistor array, wiper switches, a control section, and nonvolatile memory. The wiper position is controlled by a three-wire interface. The resistor array is composed of 99 resistive elements. Between each element and at either end are tap points accessible to the wiper terminal. The position of the wiper element is controlled by the CS, U/D, and INC inputs. The position of the wiper can be stored in nonvolatile memory and then be recalled upon a subsequent power-up operation. The device can be used as a three-terminal potentio-meter or as a two-terminal variable resistor in a wide variety of applications ranging from control, to signal processing, to parameter adjustment. Digitally-controlled potentiometers provide three powerful application advantages; (1) the variability and reliability of a solid-state potentiometer, (2) the flexibility of computer-based digital controls, and (3) the use of nonvolatile memory for potentiometer settings retention.
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Features
• Solid-state potentiometer • Three-wire serial interface • 100 wiper tap points - Wiper position stored in nonvolatile memory and recalled on power-up • 99 resistive elements, log taper - Temperature compensated - End to end resistance, 32kΩ ±15% - Terminal voltages, ±5V • Low power CMOS - VCC = 5V - Active current, 3mA max. - Standby current, 750µA max. • High reliability - Endurance, 100,000 data changes per bit - Register data retention, 100 years • Packages - 8 Ld TSSOP - 8 Ld SOIC - 8 Ld PDIP
Block Diagram
U/D INC CS 7-Bit Up/Down Counter 99 98 97 7-Bit Nonvolatile Memory 96 One of OneHundred Decoder 2 Store and Recall Control Circuitry 1 0 RL/VL RW/VW RH/VH
Transfer Gates
Resistor Array
VCC VSS
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CAUTION: These devices are sensitive to electrostatic discharge; follow proper IC Handling Procedures. 1-888-INTERSIL or 1-888-468-3774 | Intersil (and design) is a registered trademark of Intersil Americas Inc. XDCP is a trademark of Intersil Americas Inc. Copyright Intersil Americas Inc. 2005, 2007. All Rights Reserved All other trademarks mentioned are the property of their respective owners.
X9C303 Ordering Information
PART NUMBER X9C303P X9C303PI X9C303PIZ (Note) X9C303PZ (Note) X9C303S8* X9C303S8I* X9C303S8IZ* (Note) X9C303S8Z* (Note) X9C303V8* X9C303V8I* X9C303V8IZ* (Note) X9C303V8Z* (Note) X9C303S8I-2.7 X9C303S8IZ-2.7 (Note) PART MARKING X9C303P X9C303P I X9C303P ZI X9C303P Z X9C303S X9C303S I X9C303S ZI X9C303S Z 9C303 C303 I C303 IZ 9CC303 Z X9C303S G X9C303S ZG TEMPERATURE RANGE (°C) 0 to +70 -40 to +85 -40 to +85 0 to +70 0 to +70 -40 to +85 -40 to +85 0 to +70 0 to +70 -40 to +85 -40 to +85 0 to +70 -40 to +85 -40 to +85 8 Ld PDIP 8 Ld PDIP 8 Ld PDIP (300 mil) (Pb-free) 8 Ld PDIP (300 mil) (Pb-free) 8 Ld SOIC (150 mil) 8 Ld SOIC (150 mil) 8 Ld SOIC (150 mil) (Pb-free) 8 Ld SOIC (150 mil) (Pb-free) 8 Ld TSSOP (4.4mm) 8 Ld TSSOP (4.4mm) 8 Ld TSSOP (4.4mm) (Pb-free) 8 Ld TSSOP (4.4mm) (Pb-free) 8 Ld SOIC (150 mil) 8 Ld SOIC (150 mil) (Pb-free) PACKAGE PKG. DWG. # MDP0031 MDP0031 MDP0031 MDP0031 MDP0027 MDP0027 MDP0027 MDP0027 M8.173 M8.173 M8.173 M8.173 MDP0027 MDP0027
NOTE: Intersil Pb-free plus anneal products employ special Pb-free material sets; molding compounds/die attach materials and 100% matte tin plate termination finish, which are RoHS compliant and compatible with both SnPb and Pb-free soldering operations. Intersil Pb-free products are MSL classified at Pb-free peak reflow temperatures that meet or exceed the Pb-free requirements of IPC/JEDEC J STD-020. *Add "T1" suffix for tape and reel.
Pin Descriptions
VH and VL
The high (VH) and low (VL) terminals of the device are equivalent to the fixed terminals of a mechanical potentiometer. The minimum voltage is –5V and the maximum is +5V. It should be noted that the terminology of VL and VH references the relative position of the terminal in relation to wiper movement direction selected by the U/D input and not the voltage potential on the terminal.
Pinout
X9C303 (8 LD SOIC, 8 LD TSSOP, 8 LD PDIP) TOP VIEW
(CS) INC (VCC) U/D (INC) VH (U/D) V SS 1 2 3 4 X9C303 8 7 6 5 VCC (VL) CS VL VW (VW) (VSS) (VH)
VW
VW is the wiper terminal, equivalent to the movable terminal of a mechanical potentiometer. The position of the wiper within the array is determined by the control inputs. The wiper terminal series resistance is typically 40Ω.
Pin Names
SYMBOL VH VW VL VSS VCC U/D INC CS NC DESCRIPTION High Terminal (Potentiometer) Wiper Terminal (Potentiometer) Low Terminal (Potentiometer) Ground Supply Voltage Up/Down Control Input Increment Control Input Chip Select Control Input No Connection
Up/Down (U/D)
The U/D input controls the direction of the wiper movement and whether the counter is incriminated or decremented.
Increment (INC)
The INC input is negative-edge triggered. Toggling INC will move the wiper and either increment or decrement the counter in the direction indicated by the logic level on the U/D input.
Chip Select (CS)
The device is selected when the CS input is LOW. The current counter value is stored in nonvolatile memory when CS is returned HIGH while the INC input is also HIGH. After the store operation is complete the device will be placed in the low power standby mode until the device is selected once again.
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FN8223.1 January 24, 2007
X9C303 Potentiometer Relationships
S100 VH (VS) R99 R98 S99
Instructions and Programming
The INC, U/D and CS inputs control the movement of the wiper along the resistor array. With CS set LOW the device is selected and enabled to respond to the U/D and INC inputs. HIGH to LOW transitions on INC will increment or decrement (depending on the state of the U/D input) a seven-bit counter. The output of this counter is decoded to select one of onehundred wiper positions along the resistive array. The value of the counter is stored in nonvolatile memory whenever CS transitions HIGH while the INC input is also HIGH. The system may select the X9C303, move the wiper, and deselect the device without having to store the latest wiper position in nonvolatile memory. The wiper movement is performed as described above; once the new position is reached, the system would the keep INC LOW while taking CS HIGH. The new wiper position would be maintained until changed by the system or until a power-down/up cycle recalled the previously stored data. This would allow the system to always power-up to a preset value stored in nonvolatile memory; then during system operation minor adjustments could be made. The adjustments might be based on user preference: system parameter changes due to temperature drift, etc... The state of U/D may be changed while CS remains LOW. This allows the host system to enable the device and then move the wiper up and down until the proper trim is attained.
S98 VW
S3 R2
S2 S1
R1 VL
R1 + R2 + . . . + Ri VW G i = 20Log ------------------------------------------------- = --------- ( V L = 0V ) R V TOTAL S R +R +...+R =R 1 2 99 TOTAL (Refer Test Circuit 1)
Principles of Operation
There are three sections of the X9C303: the input control, counter and decode section; the nonvolatile memory; and the resistor array. The input control section operates just like an up/down counter. The output of this counter is decoded to turn on a single electronic switch connecting a point on the resistor array to the wiper output. Under the proper conditions the contents of the counter can be stored in nonvolatile memory and retained for future use. The resistor array is comprised of 99 individual resistors connected in series. At either end of the array and between each resistor is an electronic switch that transfers the potential at that point to the wiper. The wiper, when at either fixed terminal, acts like its mechanical equivalent and does not move beyond the last position. That is, the counter does not wrap around when clocked to either extreme. The electronic switches on the device operate in a “make before break” mode when the wiper changes tap positions. If the wiper is moved several positions, multiple taps are connected to the wiper for tIW (INC to VW change). The RTOTAL value for the device can temporarily be reduced by a significant amount if the wiper is moved several positions. When the device is powered-down, the last counter position stored will be maintained in the nonvolatile memory. When power is restored, the contents of the memory are recalled and the counter is reset to the value last stored.
Mode Selection
CS L L H H X L L L INC U/D H L X X X H L Wiper Up Wiper Down Store Wiper Position Standby Current No Store, Return to Standby Wiper Up (not recommended) Wiper Down (not recommended) MODE
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FN8223.1 January 24, 2007
X9C303 Symbol Table
WAVEFORM INPUTS Must be steady May change from Low to High May change from High to Low Don’t Care: Changes Allowed N/A OUTPUTS Will be steady Will change from Low to High Will change from High to Low Changing: State Not Known Center Line is High Impedance
Typical Electrical Taper
100.0% 90.0% 80.0% 70.0% % TOTAL RESISTANCE 60.0% 50.0% 40.0% 30.0% 20.0% 10.0% 0.0% 0 3 6 9 12 15 18 21 24 27 30 33 36 39 42 45 48 51 54 57 60 63 66 69 72 75 78 81 84 87 90 93 96 CL 10pF R(VH - VW) R(VW - VL) 99 RL
TAP
Test Circuit #1
VH
Test Circuit #2
VH Test Point
Circuit #3 SPICE Macro Model
RTOTAL RH CH VW Force Current 10pF CW
VS VW VL
Test Point
25pF
VL
RW
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FN8223.1 January 24, 2007
X9C303
Absolute Maximum Ratings
Temperature Under Bias . . . . . . . . . . . . . . . . . . . . .-65°C to +135°C Storage Temperature . . . . . . . . . . . . . . . . . . . . . . . .-65°C to +150°C Voltage on CS, INC, U/D and VCC with Respect to VSS . -1V to +7V Voltage on VH and VL Referenced to VSS . . . . . . . . |