參數(shù)資料
型號(hào): DC1010A-B
廠商: Linear Technology
文件頁(yè)數(shù): 2/24頁(yè)
文件大?。?/td> 0K
描述: BOARD DELTA SIGMA ADC LTC2489
軟件下載: QuikEval System
設(shè)計(jì)資源: DC1010A Design File
DC1010A Schematic
標(biāo)準(zhǔn)包裝: 1
系列: Easy Drive™, QuikEval™
ADC 的數(shù)量: 1
位數(shù): 16
采樣率(每秒): 7.5
數(shù)據(jù)接口: I²C,串行
已用 IC / 零件: LTC2489
已供物品:
相關(guān)產(chǎn)品: LTC2489IDE#TRPBF-ND - IC ADC 16BIT DELTA SIG 14-DFN
LTC2489CDE#TRPBF-ND - IC ADC 16BIT DELTA SIG 14-DFN
LTC2489CDE#PBF-ND - IC ADC 16BIT DELTA SIG 14-DFN
LTC2489IDE#PBF-ND - IC ADC 16BIT DELTA SIG 14-DFN
LTC2489
10
2489fa
cancellation does not interfere with the transparent offset
and full-scale auto-calibration and the absolute accuracy
(full scale + offset + linearity + drift) is maintained even
with external RC networks.
Power-Up Sequence
The LTC2489 automatically enters an internal reset state
when the power supply voltage, VCC, drops below ap-
proximately 2.0V. This feature guarantees the integrity of
the conversion result and input channel selection.
When VCC rises above this threshold, the converter creates
an internal power-on-reset (POR) signal with a duration
of approximately 4ms. The POR signal clears all internal
registers. The conversion immediately following a POR
cycle is performed on the input channels IN+ = CH0 and
IN= CH1. The first conversion following a POR cycle
is accurate within the specification of the device if the
power supply voltage is restored to (2.7V to 5.5V) before
the end of the POR interval. A new input channel can be
programmed into the device during this first data input/
output cycle.
Reference Voltage Range
This converter accepts a truly differential, external refer-
ence voltage. The absolute/common mode voltage range
for the REF+ and REFpins covers the entire operating
range of the device (GND to VCC). For correct converter
operation, VREF must be positive (REF+ > REF).
The LTC2489 differential reference input range is 0.1V to
VCC. For the simplest operation, REF+ can be shorted to VCC
and REFcan be shorted to GND. The converter output noise
is determined by the thermal noise of the front end circuits.
Since the transition noise is well below 1LSB (0.02LSB), a
decrease in reference voltage will proportionally improve
the converter resolution and improve INL.
Input Voltage Range
The analog inputs are truly differential with an absolute,
common mode range for the CH0-CH3 and COM input
pins extending from GND – 0.3V to VCC + 0.3V. Within
these limits, the LTC2489 converts the bipolar differen-
tial input signal VIN = IN+ – IN(where IN+ and INare
the selected input channels), from –FS = –0.5 VREF
to +FS = 0.5 VREF where VREF = REF+ - REF. Outside this
range, the converter indicates the overrange or the under-
range condition using distinct output codes (see Table 1).
In order to limit any fault current due to input ESD leakage
current, resistors of up to 5k may be added in series with
the input. The effect of series resistance on the converter
accuracy can be evaluated from the curves presented in
the Input Current/Reference Current sections. In addition,
series resistors will introduce a temperature dependent
error due to input leakage current. A 1nA input leakage
current will develop a 1ppm offset error on a 5k resistor
if VREF = 5V. This error has a very strong temperature
dependency.
I2C INTERFACE
The LTC2489 communicates through an I2C interface. The
I2C interface is a 2-wire open-drain interface supporting
multiple devices and multiple masters on a single bus. The
connected devices can only pull the data line (SDA) low
and can never drive it high. SDA is required to be externally
connected to the supply through a pull-up resistor. When
the data line is not being driven, it is high. Data on the
I2C bus can be transferred at rates up to 100kbits/s in the
standard mode and up to 400kbits/s in the fast mode. The
VCC power should not be removed from the device when
the I2C bus is active to avoid loading the I2C bus lines
through the internal ESD protection diodes.
Each device on the I2C bus is recognized by a unique
address stored in that device and can operate either as a
transmitter or receiver, depending on the function of the
device. In addition to transmitters and receivers, devices
can also be considered as masters or slaves when perform-
ing data transfers. A master is the device which initiates a
data transfer on the bus and generates the clock signals
to permit that transfer. Devices addressed by the master
are considered a slave.
The LTC2489 can only be addressed as a slave. Once ad-
dressed, it can receive channel selection bits or transmit
the last conversion result. The serial clock line, SCL, is
always an input to the LTC2489 and the serial data line SDA
is bidirectional. The device supports the standard mode and
the fast mode for data transfer speeds up to 400kbits/s.
Figure 2 shows the definition of the I2C timing.
APPLICATIONS INFORMATION
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