參數(shù)資料
型號(hào): LTC2356CMSE-12
廠商: LINEAR TECHNOLOGY CORP
元件分類: ADC
英文描述: Serial 12-Bit/14-Bit, 3.5Msps Sampling ADCs with Shutdown
中文描述: 1-CH 12-BIT PROPRIETARY METHOD ADC, SERIAL ACCESS, PDSO10
封裝: PLASTIC, MSOP-10
文件頁(yè)數(shù): 15/16頁(yè)
文件大?。?/td> 253K
代理商: LTC2356CMSE-12
15
LTC2356-12/LTC2356-14
2356f
into your processor serial port. The 14-bit serial data will
be received right justified, in a 16-bit word with 16 or more
clocks per frame sync. It is good practice to drive the
LTC2356-12/LTC2356-14 SCK input first to avoid digital
noise interference during the internal bit comparison
decision by the internal high speed comparator. Unlike the
CONV input, the SCK input is not sensitive to jitter because
the input signal is already sampled and held constant.
Serial Data Output (SDO)
Upon power-up, the SDO output is automatically reset to
the high impedance state. The SDO output remains in high
impedance until a new conversion is started. SDO sends
out 12/14 bits in 2’s complement format in the output data
stream beginning at the third rising edge of SCK after the
rising edge of CONV. SDO is always in high impedance
APPLICATIU
W
U
U
mode when it is not sending out data bits. Please note the
delay specification from SCK to a valid SDO. SDO is always
guaranteed to be valid by the next rising edge of SCK. The
16-bit output data stream is compatible with the 16-bit or
32-bit serial port of most processors.
Loading on the SDO line must be minimized. SDO can
directly drive most fast CMOS logic inputs directly. How-
ever, the general purpose I/O pins on many programmable
logic devices (FPGAs, CPLDs) and DSPs have excessive
capacitance. In these cases, a 100
resistor in series with
SDO can isolate the input capacitance of the receiving
device. If the receiving device has more than 10pF of input
capacitance or is located far from the LTC2356-12/
LTC2356-14, an NC7SVU04P5X inverter can be used to
provide more drive.
MSE Package
10-Lead Plastic MSOP
(Reference LTC DWG # 05-08-1663)
U
PACKAGE DESCRIPTIO
MSOP (MSE) 0603
0.53
±
0.152
(.021
±
.006)
SEATING
PLANE
0.18
(.007)
1.10
(.043)
MAX
0.17 – 0.27
(.007 – .011)
TYP
0.127
±
0.076
(.005
±
.003)
0.86
(.034)
REF
0.50
(.0197)
BSC
1 2 3 4 5
4.90
±
0.152
(.193
±
.006)
0.497
±
0.076
(.0196
±
.003)
REF
8
9
10
7 6
3.00
±
0.102
(.118
±
.004)
(NOTE 3)
3.00
±
0.102
(.118
±
.004)
(NOTE 4)
NOTE:
1. DIMENSIONS IN MILLIMETER/(INCH)
2. DRAWING NOT TO SCALE
3. DIMENSION DOES NOT INCLUDE MOLD FLASH, PROTRUSIONS OR GATE BURRS.
MOLD FLASH, PROTRUSIONS OR GATE BURRS SHALL NOT EXCEED 0.152mm (.006") PER SIDE
4. DIMENSION DOES NOT INCLUDE INTERLEAD FLASH OR PROTRUSIONS.
INTERLEAD FLASH OR PROTRUSIONS SHALL NOT EXCEED 0.152mm (.006") PER SIDE
5. LEAD COPLANARITY (BOTTOM OF LEADS AFTER FORMING) SHALL BE 0.102mm (.004") MAX
0.254
(.010)
0
°
– 6
°
TYP
DETAIL “A”
DETAIL “A”
GAUGE PLANE
5.23
(.206)
MIN
3.20 – 3.45
(.126 – .136)
0.889
±
0.127
(.035
±
.005)
RECOMMENDED SOLDER PAD LAYOUT
0.305
±
0.038
(.0120
±
.0015)
TYP
2.083
±
0.102
(.082
±
.004)
2.794
±
0.102
(.110
±
.004)
0.50
(.0197)
BSC
10
1
BOTTOM VIEW OF
EXPOSED PAD OPTION
1.83
±
0.102
(.072
±
.004)
2.06
±
0.102
(.081
±
.004)
Information furnished by Linear Technology Corporation is believed to be accurate and reliable.
However, no responsibility is assumed for its use. Linear Technology Corporation makes no represen-
tation that the interconnection of its circuits as described herein will not infringe on existing patent rights.
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