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HI5804 の電気的特性と機能

HI5804のメーカーはIntersil Corporationです、この部品の機能は「5 MSPS A/D Converter」です。


製品の詳細 ( Datasheet PDF )

部品番号 HI5804
部品説明 5 MSPS A/D Converter
メーカ Intersil Corporation
ロゴ Intersil Corporation ロゴ 




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HI5804 Datasheet, HI5804 PDF,ピン配置, 機能
Semiconductor
October 1998
NOT RECOMMENSDeEeDHIF5O80R5NEW DESIGNS
HI5804
12-Bit, 5 MSPS A/D Converter
Features
Description
• Sampling Rate . . . . . . . . . . . . . . . . . . . . . . . . . . 5 MSPS
• Low Power
• Internal Sample and Hold
The HI5804 is a monolithic, 12-bit, Analog-to-Digital
Converter fabricated in Harris’ HBC10 BiCMOS process. It is
designed for high speed, high resolution applications where
wide bandwidth and low power consumption are essential.
• Fully Differential Architecture
The HI5804 is designed in a fully differential pipelined
architecture with a front end differential-in-differential-out
• Full Power Input Bandwidth . . . . . . . . . . . . . . . 100MHz
[ /Title (HI5804)
/SLuobwjeDcits(t1or2t-ioBnit, 5 MSPS A/D Converter)
sample-and-hold (S/H). The HI5804 has excellent dynamic
performance while consuming 300mW power at 5 MSPS.
/AInuttehronral(R) eference
The 100MHz full power input bandwidth is ideal for
communication systems and document scanner
/KTeTyLw/CoMrdOsS(CHoamrrpiastiSbelemDiicgoitnaldIu/Octor, A/D, Analog to Daipgp-lications. Data output latches are provided which present
itaDligCitoanl vOeurttpeur,tsN. a. .rr.o. w. . .B.a. n. d. ., .C. o. .m. .m. u. .n.ic. a. .ti3oVntso, 5HVighvalid data to the output bus with a latency of 3 clock cycles.
Speed Converters, High Resolution Converters, BaseTsthae-digital outputs have a separate supply pin which can be
tAiopnp, lCicealltuiolanr)s
powered from a 3.0V to 5.0V supply.
/CHreigahtoSrp(e)ed Data Acquisition Systems
/DOCINFO pdfmark
• Digital IF Communication Systems
[/DPoacguemMeontdaen/dUFsielmOSuctlainnneesrs
/DMOeCdiVcaIlEImWagpindgfmark
Ordering Information
PART
SAMPLE
TEMP.
PKG.
NUMBER
RATE RANGE (oC) PACKAGE NO.
HI5804KCB 5 MSPS
0 to 70 28 Ld SOIC M28.3
• Radar Signal Analysis
HI5804EVAL
25 Evaluation Board
• Vibration/Waveform Spectrum Analysis
• Digital Servo Loop Control
• Reference Literature
- AN9214 Using Harris High Speed Converters
- AN9647 Using the HI5804 Evaluation Board
Pinout
CLK 1
DVCC1 2
DGND1 3
DVCC1 4
DGND1 5
AVCC 6
AGND 7
VIN+ 8
VIN- 9
VDC 10
VROUT 11
VRIN 12
AGND 13
AVCC 14
HI5804
(SOIC)
TOP VIEW
28 D0
27 D1
26 D2
25 D3
24 D4
23 D5
22 DVCC2
21 DGND2
20 D6
19 D7
18 D8
17 D9
16 D10
15 D11
CAUTION: These devices are sensitive to electrostatic discharge. Users should follow proper IC Handling Procedures.
Copyright © Harris Corporation 1998
1
File Number 4026.5

1 Page





HI5804 pdf, ピン配列
HI5804
Absolute Maximum Ratings
Thermal Information
Supply Voltage, AVCC or DVCC to AGND or DGND . . . . . . . . . . . +6.0V
DGND to AGND. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 0.3V
Digital I/O Pins . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . DGND to DVCC
Analog I/O Pins. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . AGND to AVCC
Operating Conditions
Temperature Range, HI5804KCB . . . . . . . . . . . . . . . . . . 0oC to 70oC
Thermal Resistance (Typical, Note 1)
θJA(oC/W)
HI5804KCB . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
70
Maximum Junction Temperature . . . . . . . . . . . . . . . . . . . . . . . 150oC
Maximum Storage Temperature Range . . . . . . . . . . -65oC to 150oC
Maximum Lead Temperature (Soldering, 10s) . . . . . . . . . . . . 300oC
(SOIC - Lead Tips Only)
CAUTION: Stresses above those listed in “Absolute Maximum Ratings” may cause permanent damage to the device. This is a stress only rating and operation of
the device at these or any other conditions above those indicated in the operational sections of this specification is not implied.
NOTE:
1. θJA is measured with the component mounted on an evaluation PC board in free air.
Electrical Specifications AVCC = DVCC1 = DVCC2 = +5.0V, fS = 5 MSPS at 50% Duty Cycle, VRIN = 3.5V, CL = 10pF,
TA = 25oC, Unless Otherwise Specified
PARAMETER
TEST CONDITIONS
MIN TYP MAX
ACCURACY
Resolution
12 -
-
Integral Linearity Error, INL
Differential Linearity Error, DNL
(Guaranteed No Missing Codes)
fIN = DC
fIN = DC
- ±2 -
-
± 0.5
±1
Offset Error, VOS
Full Scale Error, FSE
DYNAMIC CHARACTERISTICS
fIN = DC
fIN = DC
- 12 -
- 24 -
Minimum Conversion Rate
No Missing Codes
- 0.5 -
Maximum Conversion Rate
No Missing Codes
-5-
Effective Number of Bits, ENOB
Signal to Noise and Distortion Ratio, SINAD
= R-----M-----S------NR----oM---i--sS---e---S--+--i-g--D--n--i-a-s--l-t-o----r--t-i--o---n-
fIN = 1MHz
fIN = 1MHz
- 10.3 -
- 64 -
UNITS
Bits
LSB
LSB
LSB
LSB
MSPS
MSPS
Bits
dB
Signal to Noise Ratio, SNR
= R-R----M-M----S-S-----SN----i-og---in-s---ae---l
fIN = 1MHz
Total Harmonic Distortion, THD
2nd Harmonic Distortion
3rd Harmonic Distortion
Spurious Free Dynamic Range, SFDR
Intermodulation Distortion, IMD
Transient Response
fIN = 1MHz
fIN = 1MHz
fIN = 1MHz
fIN = 1MHz
f1 = 1MHz, f2 = 1.02MHz
Over-Voltage Recovery
0.2V Overdrive
ANALOG INPUT
Maximum Peak-to-Peak Differential Analog Input Range
(VIN+ - VIN-)
Maximum Peak-to-Peak Single-Ended Analog Input Range
Analog Input Resistance, RIN
Analog Input Capacitance, CIN
Analog Input Bias Current, IB+ or IB-
Differential Analog Input Bias Current IB DIFF = (IB+ - IB-)
Full Power Input Bandwidth, FPBW
(Notes 2, 3)
Analog Input Common Mode Voltage (VIN+ + VIN-)/2
Differential Mode (Note 2)
- 65 - dB
- -70 - dBc
- -73
dBc
- -73 - dBc
- 73 - dBc
- -66 - dBc
- 1 - Cycle
- 2 - Cycle
- ±2.0 -
V
- 4.0 -
V
1 - - M
- 10 - pF
-10 - +10 µA
- ±0.5 -
µA
- 100 - MHz
1 2.3 4
V
3


3Pages


HI5804 電子部品, 半導体
Typical Performance Curves
HI5804
11.0
10.8
70oC
10.6
25oC
fS = 5 MSPS
10.4
10.2
10.0
1
23 4
INPUT FREQUENCY (MHz)
FIGURE 3. TYPICAL ENOB vs INPUT FREQUENCY
5
67
66
70oC
65
25oC
fS = 5 MSPS
64
63
62
1
23 4
INPUT FREQUENCY (MHz)
FIGURE 4. TYPICAL SINAD vs INPUT FREQUENCY
5
68
fS = 5 MSPS
67
66
70oC
65
25oC
64
63
62
1
23 4
INPUT FREQUENCY (MHz)
FIGURE 5. TYPICAL SNR vs INPUT FREQUENCY
5
78
77
25oC
76
70oC
75
fS = 5 MSPS
74
73
72
1
23 4
INPUT FREQUENCY (MHz)
FIGURE 6. TYPICAL -THD vs INPUT FREQUENCY
5
80
25oC
70oC
78
76
74
fS = 5 MSPS
70oC
25oC
340
fS = 5 MSPS
VIN+ = VIN- = VDC
320
300
280
260
72
1
23 4
INPUT FREQUENCY (MHz)
FIGURE 7. TYPICAL SFDR vs INPUT FREQUENCY
5
240
15
25 35 45 55
TEMPERATURE (oC)
65 75
FIGURE 8. TYPICAL POWER DISSIPATION vs TEMPERATURE
6

6 Page



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共有リンク

Link :


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