LTC2351HUH-14#PBF Linear Technology, LTC2351HUH-14#PBF Datasheet - Page 15

IC ADC 14BIT 1.5MSPS 32-QFN

LTC2351HUH-14#PBF

Manufacturer Part Number
LTC2351HUH-14#PBF
Description
IC ADC 14BIT 1.5MSPS 32-QFN
Manufacturer
Linear Technology
Datasheet

Specifications of LTC2351HUH-14#PBF

Number Of Bits
14
Sampling Rate (per Second)
1.5M
Data Interface
Serial, SPI™
Number Of Converters
1
Power Dissipation (max)
16.5mW
Voltage Supply Source
Single Supply
Operating Temperature
-40°C ~ 125°C
Mounting Type
Surface Mount
Package / Case
32-WFQFN Exposed Pad
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Company:
Part Number:
LTC2351HUH-14#PBFLTC2351HUH-14
Manufacturer:
LT
Quantity:
10 000
APPLICATIONS INFORMATION
INPUT SPAN VERSUS REFERENCE VOLTAGE
The differential input range has a unipolar voltage span
that equals the difference between the voltage at the
reference buffer output V
ground. The differential input range of the ADC is 0V to
2.5V when using the internal reference. The internal ADC
is referenced to these two nodes. This relationship also
holds true with an external reference.
DIFFERENTIAL INPUTS
The ADC will always convert the difference of CH
CH
of inputs. The common mode rejection holds up at high
frequencies (see Figure 3.) The only requirement is that
both inputs not go below ground or exceed V
Integral nonlinearity errors (INL) and differential nonlinear-
ity errors (DNL) are largely independent of the common
mode voltage. However, the offset error will vary. DC CMRR
is typically better than –90dB.
Figure 4 shows the ideal input/output characteristics for
the LTC2351-14 in unipolar mode (BIP = LOW). The code
transitions occur midway between successive integer LSB
values (i.e., 0.5LSB, 1.5LSB, 2.5LSB, FS – 1.5LSB). The
output code is straight binary with 1LSB = 2.5V/16384 =
153μV for the LTC2351-14. The LTC2351-14 has 0.7 LSB
RMS of gaussian white noise.
, independent of the common mode voltage at any pair
–120
–100
–20
–40
–60
–80
0
100
Figure 3. CMRR vs Frequency
1k
10k 100k
FREQUENCY (Hz)
REF
(Pin 23) and the voltage at
1M
10M 100M 1G
235114 F03
DD
.
+
minus
Figure 5 shows the ideal input/output characteristics for
the LTC2351-14 in bipolar mode (BIP = HIGH). The code
transitions occur midway between successive integer LSB
values (i.e., 0.5LSB, 1.5LSB, 2.5LSB, FS – 1.5LSB). The
output code is 2’s complement with 1LSB = 2.5V/16384 =
153μV for the LTC2351-14. The LTC2351-14 has 0.7 LSB
RMS of gaussian white noise.
Figure 5. LTC2351-14 Transfer Characteristic
in Bipolar Mode (BIP = HIGH)
Figure 4. LTC2351-14 Transfer Characteristic
in Unipolar Mode (BIP = LOW)
111...111
111...110
111...101
000...010
000...001
000...000
011...111
011...110
011...101
100...010
100...001
100...000
–FS
0
INPUT VOLTAGE (V)
INPUT VOLTAGE (V)
LTC2351-14
FS – 1LSB
FS – 1LSB
235114 F04
235114 F05
15
235114fb

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