DS1844E-010 Maxim Integrated Products, DS1844E-010 Datasheet - Page 2

IC POT DIG QUAD 10K 20-TSSOP

DS1844E-010

Manufacturer Part Number
DS1844E-010
Description
IC POT DIG QUAD 10K 20-TSSOP
Manufacturer
Maxim Integrated Products
Datasheet

Specifications of DS1844E-010

Taps
64
Resistance (ohms)
10K
Number Of Circuits
4
Temperature Coefficient
750 ppm/°C Typical
Memory Type
Volatile
Interface
2-Wire or 5-Wire Serial
Voltage - Supply
2.7 V ~ 5.5 V
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
20-TSSOP
Resistance In Ohms
10K
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant

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DS1844
The DS1844 is available in standard 10 kW, 50 kW, and 100 kW versions. Mixed resistor combinations
are also available through custom setups. The DS1844 is specified to operate over the industrial
temperature range: -40°C to +85°C. Packages for the DS1844 include 20-pin DIPs, SOICs, and TSSOPs.
OPERATION
The DS1844 contains four 64-position potentiometers. Each potentiometer is independent and has three
accessible terminals, which include H
, L
, and W
. Each potentiometer is comprised of 63 individual
X
X
X
resistor elements. Between each resistor element is a tap-point that is multiplexed to the wiper terminal,
W
. Additionally, the wiper terminal can be multiplexed directly to the end-terminals, H
and L
.
X
X
X
The DS1844 supports two interface control options. Both options allow for the direct placement of the
wiper position on the resistor ladder. Each wiper has an associated 6-bit register used to hold its positional
value.
The DS1844 is a volatile device and will always power-up with the wiper positions set to mid-tap
(position 32-decimal). The end-terminal H
will have wiper position value 63-decimal and the L
terminal
X
X
will have wiper position value 0-decimal. Because the DS1844 is a 64-position device only 6 bits of data
are necessary to write a wiper’s value. However, communication with the DS1844 will require using a
full 8 bits, with the remaining 2 bits specifying the potentiometer selected. A discussion of proper
communication protocol is provided under the section entitled Serial Port Operation. A block diagram of
the DS1844 is shown in Figure 1.
SERIAL PORT OPERATION
As stated, the DS1844 can support two types of serial interface control. This includes a 5-wire serial
interface and a 2-wire addressable interface. The type interface supported during operation is selectable
via the port select input pin, PS. Additionally, certain pins provide dual functionality dependent on the
serial port selected. The pin description table lists pin functionality according to the interface selected.
5-Wire Serial Port Control
The 5-wire serial interface provides an 8-bit I/O shift register for loading and reading wiper data. The 5-
wire serial interface control is selected when the port select input, PS, is in a low state. This interface is
controlled by the signals
, DIN, DOUT, CLK, and R/
. Timing diagrams for the 5-wire serial port
RST
W
can be found in Figure 3. Timing information for the 5-wire serial port is provided in the AC Electrical
Characteristics table for 5-wire serial communications.
Data is loaded MSB first and in multiples of 8 bits. The 8-bit data to specify wiper position has the format
or protocol as that shown in Figure 2. The 8-bit data is divided into potentiometer select data and wiper
position value. The 6 least significant bits of data specify the wiper position value while the 2 most
significant bits specify the potentiometer to be loaded. This allows the interface control logic/protocol to
provide order independent potentiometer loading, as well as variable-length data loads.
As stated earlier, the 5-wire serial port is selected when the PS input is in a low state. If the device will
only be used in the 5-wire mode, the PS input can be tied directly to ground. Communication via the 5-
wire interface is enabled when
is in a high state. A low-to-high transition on the
indicates the
RST
RST
start of a communication transaction with the DS1844. While
is high, data can be read or written to
RST
the part. Data will be read or written dependent on the state of the read-write enable input, R/
. The
W
state of R/
must be stable before a low-to-high transition on
. Once the
input has begun a
W
RST
RST
communication transaction, the serial port will ignore any transitions on the R/
input.
W
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