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VP216 데이터시트 PDF




Zarlink Semiconductor에서 제조한 전자 부품 VP216은 전자 산업 및 응용 분야에서
광범위하게 사용되는 반도체 소자입니다.


 

PDF 형식의 VP216 자료 제공

부품번호 VP216 기능
기능 Dual 90MHz 6-Bit Analog to Digital Converter
제조업체 Zarlink Semiconductor
로고 Zarlink Semiconductor 로고


VP216 데이터시트 를 다운로드하여 반도체의 전기적 특성과 매개변수에 대해 알아보세요.




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VP216 데이터시트, 핀배열, 회로
This product is obsolete.
This information is available for your
convenience only.
www.DataSheet4U.com
For more information on
Zarlink’s obsolete products and
replacement product lists, please visit
http://products.zarlink.com/obsolete_products/




VP216 pdf, 반도체, 판매, 대치품
DC CHARACTERISTICS (cont.)
Characteristic
Symbol
CLKSEL
Input voltage high
Vih
Input voltage low
Vil
Input current high
Iih
Input current low
Iil
VCO
Input capacitance
Bias voltage
AGC voltage
Reference voltage
REF 2.5
REF 3.0
REF 3.5
AC CHARACTERISTICS
Characteristic
Switching performance
Clock high pulse width
Clock low pulse width
Max. conversion rate
Data setup time
Data hold time
Aperture delay
Aperture delay matching
Aperture jitter
Dynamic performance
Differential non-linearity
Integral non-linearity
Signal to noise ratio
Total harmonic distortion
Effective No. of bits
Crosstalk rejection
Input offset
Error rate
Ctank
Vbias
Vagc
VRB
VRM
VRT
Symbol
Tpw1
Tpw0
Fmax
Tsu
Th
Tad
Tadδ
Taj
DNL
INL
SNR
THD
ENOB
CTR
Vos
BER
Temp.
+25°C
Full
+25°C
Full
+25°C
Full
+25°C
Full
+25°C
+25°C
+25°C
+25°C
+25°C
+25°C
Temp.
+25°C
+25°C
+25°C
Full
Full
+25°C
+25°C
+25°C
+25°C
+25°C
+25°C
+25°C
+25°C
+25°C
+25°C
+25°C
Test
Level
1
4
1
4
1
4
1
4
5
1
1
1
1
1
Test
Level
4
4
1
4
4
4
4
4
1
1
1
4
1
5
1
5
Min.
2.0
-
-
-
-
-
–50
-
-
1.4
1.3
2.374
2.848
3.323
Min.
30
30
90
8
2
2
-
10
–0.95
-
31.8
40
5.0
-
-
-
Value
Typ.
-
-
-
-
-
-
–100
-
2.0
1.6
1.65
2.525
3.03
3.55
Value
Typ.
50
50
-
10
4
3
0.2
25
-
-
-
-
5.5
50
±0.5
10e-8
VP216
Max.
Units Conditions
-
-
0.8
-
1.0
-
–150
-
-
1.8
1.7
2.677
3.212
3.747
V
V
V
V
µA DVCC = 5.25V
Vih = 2.7V
µA DVCC = 5.25V
Vil = 0.4V
pF
V
V
}V
V no load
V
Max.
Units Conditions
70 % Cload=10pF
70 % Cload=10pF
- MHz
- ns
- ns
4 ns
0.5 ns
50 ps rms
+1.2
±1
-
-
-
-
±1
-
LSB
LSB
dB
dBc
bits
dBc
LSB
AIN=15MHz
AIN=15MHz
AIN=15MHz
AIN=15MHz
NOTES
1. An input voltage of 0.0 volts ±0.5 LSB should nominally correspond to the ‘011111’ to ‘100000’B transition edge.
TEST LEVELS
Level 1 - 100% production tested.
Level 2 - 100% production tested at 25°C and sample
tested at specified temperatures.
Level 3 - Sample tested only.
Level 4 - Parameter is guaranteed by design and
characterisation testing.
Level 5 - Parameter is typical value only.
3

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VP216 전자부품, 판매, 대치품
VP216
AIN_(Q,I)
V ref.
Comparator
C
Latch
L
Clock to ADC
Output
Buffer
Output
Buffer
Data Out
CLKOUT
N-1 N N+1
AIN_(Q,I)
CLKOUT
Tpw 1
Tpw 0
Data Outputs
Th
N-1
Tsu
N
N+1 TTL
Threshold
Fig.4 System timing diagram
ELECTRICAL CHARACTERISTICS DEFINITIONS
Analog Bandwidth
The analog input frequency at which the spectral power
of the fundamental frequency, as determined by FFT analysis
is reduced by 3dB.
Aperture Delay
The delay between the rising edge of the 90MHz clock
signal and the instant the analog input signal is sampled.
Aperture Jitter
The sample to sample variation in aperture delay.
Bit Error Rate (BER)
The number of spurious code errors produced for any
given input sinewave frequency at a given clock frequency. In
this case it is the number of codes occurring outside the
histogram cusp for a 1/2 FS sinewave.
Data Outputs, Set-up and Hold Time
Data output timings are measured from 2.4V and 0.4V to
the 1.4V threshold on the rising edge of the output clock.
Differential Non-linearity
The deviation in any code width from an ideal 1 LSB step.
Effective Number of Bits (ENOB)
This is a measure of a device's dynamic performance
and may be obtained from the SNR or from a sine wave
curve test fit according to the following expressions:
ENOB = SNR-1.76/6.02 or
ENOB = N-log2[rms error (actual)/rms error (ideal)]
where N is the conversion resolution and the actual rms error
is the deviation from an ideal sine wave, calculated from the
converter outputs with a sine wave input.
Integral Non-linearity (INL)
The deviation of the centre of each code from a
reference line which has been determined by a least squares
curve fit.
Signal-to-Noise Ratio (SNR)
The ratio of the rms signal amplitude to the rms value of
‘noise’ which is defined as the sum of all other spectral
components, including the harmonics, but excluding D.C.
with a full-scale analog input signal.
6

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