LTC2413CGN#PBF Linear Technology, LTC2413CGN#PBF Datasheet - Page 6

IC A/D CONV 24BIT MICRPWR 16SSOP

LTC2413CGN#PBF

Manufacturer Part Number
LTC2413CGN#PBF
Description
IC A/D CONV 24BIT MICRPWR 16SSOP
Manufacturer
Linear Technology
Datasheet

Specifications of LTC2413CGN#PBF

Number Of Bits
24
Sampling Rate (per Second)
6.8
Data Interface
MICROWIRE™, Serial, SPI™
Number Of Converters
2
Power Dissipation (max)
1mW
Voltage Supply Source
Single Supply
Operating Temperature
0°C ~ 70°C
Mounting Type
Surface Mount
Package / Case
16-SSOP (0.150", 3.90mm Width)
Number Of Elements
1
Resolution
24Bit
Architecture
Delta-Sigma
Sample Rate
0.007KSPS
Input Polarity
Bipolar
Input Type
Voltage
Rated Input Volt
±2.75V
Differential Input
Yes
Power Supply Requirement
Single
Single Supply Voltage (typ)
3.3/5V
Single Supply Voltage (min)
2.7V
Single Supply Voltage (max)
5.5V
Dual Supply Voltage (typ)
Not RequiredV
Dual Supply Voltage (min)
Not RequiredV
Dual Supply Voltage (max)
Not RequiredV
Integral Nonlinearity Error
14ppm of Vref
Operating Temp Range
0C to 70C
Operating Temperature Classification
Commercial
Mounting
Surface Mount
Pin Count
16
Package Type
SSOP N
Input Signal Type
Differential
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Company:
Part Number:
LTC2413CGN#PBFLTC2413CGN
Manufacturer:
LT
Quantity:
10 000
Company:
Part Number:
LTC2413CGN#PBF
Manufacturer:
LINEAR/凌特
Quantity:
20 000
LTC2413
6
TYPICAL PERFOR A CE CHARACTERISTICS
12
10
–0.5
–1.0
–1.5
–0.5
–1.0
–1.5
8
6
4
2
0
1.5
1.0
0.5
1.5
1.0
0.5
–0.8 –0.6 –0.4 –0.2
0
0
–2.5 –2 –1.5 –1 –0.5 0 0.5 1 1.5 2 2.5
–2.5 –2 –1.5 –1 –0.5 0 0.5 1 1.5 2 2.5
Noise Histogram (Output Rate =
6.83Hz, V
Integral Nonlinearity vs
Temperature (V
V
10,000 CONSECUTIVE
READINGS
V
V
V
REF
REF
IN
IN
F
T
Total Unadjusted Error vs
Temperature (V
V
O
A
CC
REF
IN
REF
+
REF
V
REF
REF
V
V
F
= GND
= 25 C
V
REF
REF
V
V
F
= 0V
O
+
= 2.5V
= 2.5V
CC
REF
INCM
= 5V
O
CC
REF
INCM
= 5V
= 5V
= GND
= GND
OUTPUT CODE (ppm OF V
= GND
= 5V)
+
= 5V
= 5V)
+
= 5V
= 5V
= 5V
= 5V
= GND
= 5V
= GND
= 2.5V
= 2.5V
CC
= 5V, V
V
V
T
0
IN
CC
IN
CC
A
T
(V)
(V)
A
= 25 C
REF
= 5V,
= –45 C
0.2
= 5V,
T
A
T
T
GAUSSIAN
DISTRIBUTION
m = 0.105ppm
A
A
= –45 C
= 5V)
= 90 C
= 25 C
= 0.153ppm
0.4
REF
W
T
)
A
= 90 C
0.6
2413 G07
2413 G01
2413 G04
U
0.8
–0.5
–1.0
–1.5
–0.5
–1.0
–1.5
1.5
1.0
0.5
1.5
1.0
0.5
12
10
0
0
8
6
4
2
0
–0.8 –0.6 –0.4 –0.2
Total Unadjusted Error vs
Temperature (V
V
Integral Nonlinearity vs
Temperature (V
V
Noise Histogram (Output Rate =
22.5Hz, V
REF
REF
T
T
T
10,000 CONSECUTIVE
READINGS
V
V
V
REF
REF
IN
IN
F
T
V
REF
REF
V
V
F
A
A
A
O
–1
–1
CC
REF
IN
A
O
CC
REF
INCM
+
= 90 C
= 25 C
= –45 C
= 460800Hz
= 25 C
= GND
= 0V
= 2.5V
= 2.5V
+
= 5V
= 2.5V)
+
= 2.5V)
= 5V
= 5V
= 5V
= GND
= 2.5V
OUTPUT CODE (ppm OF V
= 2.5V
= GND
= 1.25V
–0.5
–0.5
CC
= 5V, V
V
V
IN
IN
CC
CC
0
0
0
(V)
(V)
= 5V,
T
= 5V,
T
A
A
T
REF
0.2
= –45 C
A
= 25 C
V
REF
REF
V
V
F
= 90 C
O
CC
REF
INCM
GAUSSIAN
DISTRIBUTION
m = 0.067ppm
0.5
0.5
= GND
= 5V)
= 0.151ppm
+
0.4
= 5V
REF
= 2.5V
= 2.5V
= GND
= 1.25V
)
0.6
2413 G02
2413 G05
2413 G08
1
1
0.8
–10
–10
12
10
–2
–4
–6
–8
10
10
–2
–4
–6
–8
8
6
4
2
0
8
6
4
2
0
–9.8 –9.4 –9 –8.6 –8.2 –7.8 –7.4 –7 –6.6
8
6
4
2
0
Total Unadjusted Error vs
Temperature (V
V
10,000 CONSECUTIVE
READINGS
V
V
V
REF
REF
IN
IN
F
T
Integral Nonlinearity vs
Temperature (V
V
Noise Histogram (Output Rate =
52.5Hz, V
O
A
CC
REF
IN
REF
REF
V
REF
REF
V
REF
REF
V
V
F
+
= 1075200Hz
= 25 C
O
–1
CC
CC
REF
INCM
–1
= 0V
+
= 2.5V
= 2.5V
= 5V
= GND
= 5V
= 5V
= GND
+
+
= 2.7V
= 2.7V
= 2.5V)
= 2.5V)
= 2.5V
= 2.5V
= GND
OUTPUT CODE (ppm OF V
= 2.5V
= GND
= 1.25V
–0.5
–0.5
T
T
T
CC
A
A
A
V
V
F
= 90 C
= 25 C
= –45 C
O
REF
INCM
= 5V, V
= GND
V
V
IN
IN
CC
= 2.5V
CC
0
= 1.25V
0
(V)
(V)
= 2.7V,
= 2.7V,
REF
T
GAUSSIAN
DISTRIBUTION
m = 8.285ppm
0.5
0.5
A
= 5V)
= 0.311ppm
= 90 C
T
REF
A
sn2413 2413fs
T
A
= –45 C
)
= 25 C
2413 G09
2413 G03
1
2413 G06
1

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