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 CAT5133 16 Volt Digitally Programmable Potentiometer (DPPTM) with 128 Taps and an Increment Decrement Interface
FEATURES
Single linear DPP with 128 taps End-to-end resistance of 10k, 50k or 100k 2-wire (I2C-like) interface Fast Up/Down wiper control mode Non-volatile wiper setting storage Automatic wiper setting recall at power-up Digital Supply range (VCC): 2.7V to 5.5V Analog Supply range (V+): +8V to +16V Low Standby Current: 15A 100 Year wiper setting memory Industrial Temperature range: -40C to +85C RoHS-compliant 10-pin MSOP package
DESCRIPTION
The CAT5133 is a high voltage Digital Programmable Potentiometer (DPP) integrated with E2PROM memory and control logic to operate in a similar manor to a mechanical potentiometer. The DPP consists of a series of resistive elements connected between two externally accessible end points. The tap points between each resistive element are connected to the wiper outputs with CMOS switches. A 7-bit wiper control register (WCR) independently controls the wiper tap switches for the DPP. Associated with the control register is a 7-bit nonvolatile memory data register (DR) used for storing the wiper settings. Changing the value of the wiper control register or storing that value into the nonvolatile memory is performed via a 3-input Increment-Decrement interface. The CAT5133 comes with 2 voltage supply inputs: VCC (digital supply voltage) input and V+ (analog bias supply) input. Providing separate Digital and Analog inputs allow the potentiometer terminals to be as much as 10 volts above VCC and 16 volts above ground. The CAT5133 can be used as a potentiometer or as a two terminal, variable resistor. It is designed for circuit level or system level adjustments in a wide variety of applications. On power-up, the contents of the nonvolatile data register (DR) are transferred to the wiper control register (WCR) and the wiper is positioned to that location. The CAT5133 is shipped with the DR programmed to position 64.
APPLICATION
LCD screen Adjustment Volume Control Mechanical potentiometer replacement Gain adjustment Line impedance matching VCOM settings adjustment For Ordering Information details, see page 9.
BLOCK DIAGRAM
(c) 2006 Catalyst Semiconductor, Inc. Characteristics subject to change without notice
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Doc. No. 2125 Rev. B
CAT5133
PIN CONFIGURATION
USOP Package (GZ)
PIN DESCRIPTIONS
Pin 1 2 3 4 5 6 7 8 9 10 Name U/D GND VCC CS N/C RH RW RL V+ INC Function Up/Down Data Input - Determines the direction of movement of the wiper Ground Logic Supply Voltage (2.7V to 5.5V) Chip Select - The chip is selected when the input is low. No Connect High Reference Terminal for the Potentiometer Wiper Terminal for the Potentiometer Low Reference Terminal for the Potentiometer Analog Bias Voltage Input (+8.0V to +16.0V) Increment Input - Moves the wiper in the direction determined by the Up/Down input on each negative edge
DEVICE OPERATION
The CAT5133 operates like a digitally controlled potentiometer with RH and RL equivalent to the high and low terminals and RW equivalent to the mechanical potentiometer's wiper. There are 128 available tap positions including the resistor end points, RH and RL. There are 127 resistor elements connected in series between the RH and RL terminals. The wiper terminal is connected to one of the 128 taps and controlled by three inputs, INC U/D and . These inputs control a , CS 7-bit up/down counter whose output is decoded to select the wiper position. The selected wiper position can be stored in nonvolatile memory using the INC and inputs. CS With set LOW the CAT5133 is selected and will CS respond to the U/D and INC inputs. HIGH to LOW transitions on INC will increment or decrement the wiper (depending on the state of the U/D input and 7-bit counter). The wiper, when at either fixed terminal, acts like its mechanical equivalent and does not move beyond the last position. The value of the counter is stored in nonvolatile memory whenever transitions CS HIGH while the INC input is also HIGH. When the CAT5133 is powered-down; the last stored wiper counter position is maintained in the nonvolatile memory. When power is restored, the contents of the memory are recalled and the counter is set to the value stored. With INC set low, the CAT5133 may be de-selected and powered down without storing the current wiper position in nonvolatile memory. This allows the system to always power up to a preset value stored in nonvolatile memory.
OPERATION MODES INC High to Low High to Low High Low X CS Low Low Low to High Low to High High U/D High Low X X X Operation Wiper toward H Wiper toward L Store Wiper Position No Store, Return to Standby Standby
Doc. No. 2125 Rev. B
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(c) 2006 Catalyst Semiconductor, Inc. Characteristics subject to change without notice
CAT5133
POWER-ON AND POTENTIOMETER CHARACTERISTICS The CAT5133 is a 128-position, digital controlled potentiometer. When applying power to the CAT5133, VCC must be supplied prior to or simultaneously with V+. At the same time, the signals on RH, RW and RL terminals should not exceed V+. If V+ is applied before VCC, the electronic switches of the DPP are powered in the absence of the switch control signals, that could result in multiple switches being turned on. This causes unexpected wiper settings and possible current overload of the potentiometer. When VCC is applied, the device turns on at the midpoint wiper location (64) until the wiper register can be loaded with the nonvolatile memory location previously stored in the device. After the nonvolatile memory data is loaded into the wiper register the wiper location will change to the previously stored wiper position. At power-down, it is recommended to turn-off first the signals on RH, RW and RL, followed by V+ and, after that, VCC, in order to avoid unexpected transitions of the wiper and uncontrolled current overload of the potentiometer. The end-to-end nominal resistance of the potentiometer has 128 contact points linearly distributed across the total resistor. Each of these contact points is addressed by the 7 bit wiper register which is decoded to select one of these 128 contact points. Each contact point generates a linear resistive value between the 0 position and the 127 position. These values can be determined by dividing the end-to-end value of the potentiometer by 127. The 10k potentiometer has a resistance of ~79 between each wiper position. However in addition to the ~79 for each resistive segment of the potentiometer, a wiper resistance offset must be considered. Table 8 shows the effect of this value and how it would appear on the wiper terminal. This offset will appear in each of the CAT5133 end-toend resistance values in the same way as the 10k example. However resistance between each wiper position for the 50k version will be ~395 and for the100k version will be ~790.
Potentiometer Resistance and Wiper Resistance Offset Effects Position 0 01 63 127 Typical RW to RL Resistance for 10k DPP 70 or 149 or 5,047 or 10,070 or 0 + 70 79 + 70 4,977 + 70 10,000 + 70 Position 00 64 126 127 Typical RW to RH Resistance for 10k DPP 10,070 or 5,047 or 149 or 70 or 10,000 + 70 4,977 + 70 79 + 70 0 + 70
ABSOLUTE MAXIMUM RATINGS(1)
Parameters Temperature Under Bias Storage Temperature Voltage on any U/D, INC Pins with Respect to VCC(2) ,& CS Voltage on RH, RL, & RW Pins with Respect to VCC VCC with Respect to Ground V+ with respect to Ground Wiper Current Lead Soldering temperature (10 seconds) Ratings -55 to +125 -65 to +150 -0.3 to +VCC+0.3 V+ -0.3 to +6.0 -0.3 to +16.5 6 +300 Units C C V V V V mA C
Notes: (1) Stresses above those listed under "Absolute Maximum Ratings" may cause permanent damage to the device. These are stress ratings only, and functional operation of the device at these or any other conditions outside of those listed in the operational sections of this specification is not implied. Exposure to any absolute maximum rating for extended periods may affect device performance and reliability. (2) Latch-up protection is provided for stresses up to 100mA on the digital from -0.3V to VCC +0.3V.
(c) 2006 Catalyst Semiconductor, Inc. Characteristics subject to change without notice
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Doc. No. 2125 Rev. B
CAT5133
RECOMMENDED OPERATING CONDITIONS
VCC V+ = +2.7V to +5.5V = +8.0V to +16.0V
Operating Temperature Range: -40C to +85C
POTENTIOMETER CHARACTERISTICS
(Over recommended operating conditions unless otherwise stated.) Symbol RPOT RPOT RPOT RTOL IW RW VTERM RES ALIN RLIN TCRPOT TCRatio CH/CL/C fc
Notes: (1) (2) (3) (4) (5) (6) (7) This parameter is tested initially and after a design or process change that affects the parameter. Absolute linearity is utilized to determine actual wiper voltage versus expected voltage as determined by wiper position when used as a potentiometer. Relative linearity is utilized to determine the actual change in voltage between two successive tap positions when used as a potentiometer. LSB = (RHM - RLM)/127; where RHM and RLM are the highest and lowest measured values on the wiper terminal. n = 1, 2, ..., 127. + V @ RH; 0V @ RL; VW measured @ RW, with no load. Contact factory for availability on this version of the CAT5133.
Parameter Test Conditions Potentiometer Resistance (10k) Potentiometer Resistance (50k)(7) Potentiometer Resistance (100k)(7) Potentiometer Resistance Tolerance Power Rating Wiper Current Wiper Resistance Voltage on RW , RH or RL 25C IW = +1mA @ V+ = 12V IW = +1mA @ V+ = 8V GND = 0V; V+ = 8V to 16V
Min
Limits Typ 10 50 100
Max
Units k k k % mW mA V % LSB(4) LSB(4) ppm/C ppm/C pF MHz
20 50 3 150 200 V+
70 110 GND 0.78
Resolution Absolute Linearity(2) VW(n)(actual) - VW(n)(expected)(5), (6) (3) Relative Linearity VW(n+1) - [VW(n) +LSB](5), (6) (1) Temperature Coefficient of RPOT Ratiometric Temperature Coefficient (1) (1) Potentiometer Capacitances Frequency Response RPOT = 50k
1 0.5 300 30 10/10/25 0.4
Doc. No. 2125 Rev. B
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(c) 2006 Catalyst Semiconductor, Inc. Characteristics subject to change without notice
CAT5133
DC ELECTRICAL CHARACTERISTICS
VCC = +2.7V to +6.0V, unless otherwise specified. Symbol ICC1 ICC2 ISB(VCC) ISB(V+) ILI ILO VIL VIH VOL1 Parameter Power Supply Current Power supply Current Nonvolatile WRITE Standby Current (VCC = 5V) V+ Standby Current Input Leakage Current Output Leakage Current Input Low Voltage Input High Voltage Output Low Voltage (VCC = 3.0V) Test Conditions VCC = 5.5V, fINC = 1MHz, Input = GND VCC = 5.5V, fINC = 1MHz, Input = GND VIN = GND or VCC, INC = VCC VCC = 5V, V+ = 16V VIN = GND to VCC VOUT = GND to VCC Min Max 1 3.0 Units mA mA A A A A V V V
IOL = 3 mA
5 10 10 10 -1 VCC x 0.3 VCC x 0.7 VCC + 1.0 0.4
CAPACITANCE
TA = 25C, f = 1.0MHz, VCC = 5.0V Symbol CI/O CIN Parameter Input/Output Capacitance (SDA) Input Capacitance (A0, A1, SCL) Test Conditions VI/O = 0V(1) VIN = 0V(1) Min Max 8 6 Units pF pF
POWER UP TIMING(1)(2)
Symbol tPUR tPUW Parameter Power-up to Read Operation Power-up to Write Operation Min Max 1 1 Units ms ms
XDCP TIMING
Symbol tWRPO tWRL Parameter Wiper Response Time After Power Supply Stable Wiper Response Time After Instruction Issued Min 5 5 Max 10 10 Units s s
WRITE CYCLE LIMITS
Symbol tWR
Notes: (1) This parameter is tested initially and after a design or process change that affects the parameter. (2) tPUR and tPUW are the delays required from the time VCC is stable until the specified operation can be initiated.
Parameter Write Cycle Time
Min
Max 5
Units ms
(c) 2006 Catalyst Semiconductor, Inc. Characteristics subject to change without notice
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Doc. No. 2125 Rev. B
CAT5133
RELIABILITY CHARACTERISTICS
(Over recommended operating conditions unless otherwise stated.) Symbol NEND(1) TDR(1)
Notes: (1) This parameter is tested initially and after a design or process change that affects the parameter.
Parameter Endurance Data Retention
Reference Test Method MIL-STD-883, Test Method 1033 MIL-STD-883, Test Method 1008
Min 100,000 100
Max
Units Cycles/Byte Years
A.C. OPERATIONG CHARACTERISTICS
VCC = +2.5V to +6.0V, VH = VCC, VL = 0V, unless otherwise specified. Symbol tCI tDI tID tIL tIH tIC tCPH tCPH tIW tCYC tR, tF(2) tPU(2) tWR Parameter to INC Setup CS U/D to Setup INC U/D to Hold INC LOW Period INC HIGH Period INC Inactive to Inactive INC CS Deselect Time (NO STORE) CS Deselect Time (STORE) CS to VOUT Change INC Cycle Time INC Input Rise and Fall Time INC Power-up to Wiper Stable Store Cycle Min 100 50 100 250 250 1 100 10 1 500 1 10 Typ(1) Max Units ns ns ns ns ns s ns ms s s s ms ms
1
5
5
A.C. TIMING
Notes: (1) (2) (3) Typical values are for TA=25C and nominal supply voltage. This parameter is periodically sampled and not 100% tested. MI in the A.C. Timing diagram refers to the minimum incremental change in the W output due to a change in the wiper position.
Doc. No. 2125 Rev. B
6
(c) 2006 Catalyst Semiconductor, Inc. Characteristics subject to change without notice
CAT5133
TYPICAL PERFORMANCE CHARACTERISTICS
Resistance betw een R W and R L
12.000 10.000 8.000
ICC2 (NV write) vs Temperature ICC2 (NV write) vs Temperature
400 350 300
Vcc= 2.7V; V+=8v Vcc=5.5V; V+=16V
RWL (Kohm)
ICC2 (A)
250 200 150 100
Vcc = 2.7V Vcc = 5.5V
6.000 4.000 2.000 0.000 0 16 32 48 64 Tap position 80 96 112 128
50 0 -50 -30 -10 10 30 50 70 90 110 130
Temperature (C)
Absolute Line arity Error per Tap Position
Relative Line arity Error
0.500 0.400 0.300 0.200 Tam b = 25C Rtotal = 10K Vcc=2.7V; V+=8V Vcc=5.5V; V+=16V
1.000 0.800 0.600
Tam b = 25 C Rtotal = 10K Vcc=2.7V; V+=8v Vcc=5.5V; V+=16V
ALIN Error (LSB)
0.400 0.200 0.000 -0.200 -0.400 -0.600 -0.800 -1.000 0 16 32 48 64 Tap position 80 96 112 128
R LIN Error (LSB)
0.100 0.000 -0.100 -0.200 -0.300 -0.400 -0.500 0 16 32 48 64 Tap position 80 96 112 128
(c) 2006 Catalyst Semiconductor, Inc. Characteristics subject to change without notice
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Doc. No. 2125 Rev. B
CAT5133
PACKAGE OUTLINES
10-LEAD MSOP
E1
E
e
D GAUGE PLANE
A2
A
b
A1
L
SYMBOL A A1 A2 b D E E1 e L
MIN 0.00 0.75 0.17 2.90 4.75 2.90 0.40 0
NOM 0.05 0.85
MAX 1.10 0.15 0.95 0.27
3.00 4.90 3.00 0.50 BSC
3.10 5.05 3.10 0.8 8
For current Tape and Reel information, download the PDF file from: http://www.catsemi.com/documents/tapeandreel.pdf.
Notes: 1. All dimensions are in millimeters. Angles in degrees. 2. Complies with JEDEC Specification MO-187. 3. Stand off height/coplanarity are considered as special characteristics.
Doc. No. 2125 Rev. B
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(c) 2006 Catalyst Semiconductor, Inc. Characteristics subject to change without notice
CAT5133
EXAMPLE OF ORDERING INFORMATION
Prefix CAT Device # 5133 Suffix Z I -10 -G T3
Company ID Product Number 5133
Temperature Range I = Industrial (-40C to 85C) Resistance -10: 10k ohms -50: 50k ohms(4) -00: 100k ohms(4)
T: Tape & Reel 3: 3000/Reel Lead Finish G: NiPdAu
Package Z: MSOP
Notes:
(1) All packages are RoHS-compliant (Lead-free, Halogen-free). (2) The standard lead finish is NiPdAu. (3) The device used in the above example is a CAT5133ZI-10-GT3 (MSOP, Industrial Temperature range, 10k ohms, NiPdAu, Tape & Reel). (4) For additional package and temperature options, please contact your nearest Catalyst Semiconductor Sales office.
ORDERING PART NUMBER
CAT5133ZI-10-GT3 CAT5133ZI-50-GT3(4) CAT5133ZI-00-GT3(4)
(c) 2006 Catalyst Semiconductor, Inc. Characteristics subject to change without notice
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Doc. No. 2125 Rev. B
REVISION HISTORY
Date 04/28/06 11/03/06 Rev. A B Reason Initial Issue Update Ordering Information
Copyrights, Trademarks and Patents Trademarks and registered trademarks of Catalyst Semiconductor include each of the following: AE2 TM Beyond Memory
TM
DPP TM
MiniPot
TM
Quad-ModeT
M
Catalyst Semiconductor has been issued U.S. and foreign patents and has patent applications pending that protect its products. CATALYST SEMICONDUCTOR MAKES NO WARRANTY, REPRESENTATION OR GUARANTEE, EXPRESS OR IMPLIED, REGARDING THE SUITABILITY OF ITS PRODUCTS FOR ANY PARTICULAR PURPOSE, NOR THAT THE USE OF ITS PRODUCTS WILL NOT INFRINGE ITS INTELLECTUAL PROPERTY RIGHTS OR THE RIGHTS OF THIRD PARTIES WITH RESPECT TO ANY PARTICULAR USE OR APPLICATION AND SPECIFICALLY DISCLAIMS ANY AND ALL LIABILITY ARISING OUT OF ANY SUCH USE OR APPLICATION, INCLUDING BUT NOT LIMITED TO, CONSEQUENTIAL OR INCIDENTAL DAMAGES. Catalyst Semiconductor products are not designed, intended, or authorized for use as components in systems intended for surgical implant into the body, or other applications intended to support or sustain life, or for any other application in which the failure of the Catalyst Semiconductor product could create a situation where personal injury or death may occur. Catalyst Semiconductor reserves the right to make changes to or discontinue any product or service described herein without notice. Products with data sheets labeled "Advance Information" or "Preliminary" and other products described herein may not be in production or offered for sale. Catalyst Semiconductor advises customers to obtain the current version of the relevant product information before placing orders. Circuit diagrams illustrate typical semiconductor applications and may not be complete.
Catalyst Semiconductor, Inc. Corporate Headquarters 2975 Stender Way Santa Clara, CA 95054 Phone: 408.542.1000 Fax: 408.542.1200 www.catsemi.com
Document No: 2125 Revision: B Issue date: 11/03/06


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