dspic33fj16gs404t-i-pt Microchip Technology Inc., dspic33fj16gs404t-i-pt Datasheet - Page 316

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dspic33fj16gs404t-i-pt

Manufacturer Part Number
dspic33fj16gs404t-i-pt
Description
High-performance, 16-bit Digital Signal Controllers
Manufacturer
Microchip Technology Inc.
Datasheet
dsPIC33FJ06GS101/X02 and dsPIC33FJ16GSX02/X04
TABLE 24-38: COMPARATOR AC AND DC SPECIFICATIONS
TABLE 24-39: DAC DC SPECIFICATIONS
TABLE 24-40: DAC AC SPECIFICATIONS
DS70318D-page 314
Note 1:
Note 1:
Note 1:
Param.
Param.
Param.
No.
No.
No.
V
V
V
CMRR
T
INL
DNL
EOFF
EG
Symbol Characteristic
Symbol Characteristic
CV
CV
RESP
IOFF
ICM
GAIN
Parameters are for design guidance only and are not tested in manufacturing.
Parameters are for design guidance only and are not tested in manufacturing.
Parameters are for design guidance only and are not tested in manufacturing.
Symbol Characteristic
T
SET
RSRC
RES
Input Offset Voltage
Input Common Mode
Voltage Range
Open Loop Gain
Common Mode
Rejection Ratio
Large Signal Response
External Reference Voltage
Resolution
Transfer Function Accuracy
Integral Nonlinearity Error
Differential Nonlinearity Error
Offset Error
Gain Error
Settling Time
(1)
(1)
(1)
(1)
Standard Operating Conditions (unless otherwise stated)
Operating temperature: -40°C ≤ T
Min
(1)
90
70
0
Preliminary
Standard Operating Conditions (unless otherwise stated)
Operating temperature: -40°C ≤ T
Standard Operating Conditions (unless otherwise stated)
Operating temperature: -40°C ≤ T
Typ
Min
±5
20
Min
0
AV
±1.0
±0.8
±2.0
±2.0
DD
Typ
Typ
Max
±15
10
30
– 1.5
AV
-40°C ≤ T
Max
650
Units
DD
Max
mV
db
db
ns
V
-40°C ≤ T
– 1.6
-40°C ≤ T
Units
nsec
A
V+ input step of 100 mv while
V- input held at AV
measured from analog input pin to
PWM output pin.
A
≤ +125°C for Extended
≤ +85°C for Industrial
Units
LSB
LSB
LSB
LSB
Bits
A
V
A
A
Measured when range = 1
© 2009 Microchip Technology Inc.
(high range), and
CMREF<9:0> transitions
from 0x1FF to 0x300.
A
≤ +125°C for Extended
≤ +85°C for Industrial
≤ +125°C for Extended
≤ +85°C for Industrial
AV
DAC
Comments
DD
Comments
REF
= 3.3V,
Comments
DD
= (AV
/2. Delay
DD
/2)V

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