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HY5PS121621CFP-S6I 数据表(PDF) 11 Page - Hynix Semiconductor

部件名 HY5PS121621CFP-S6I
功能描述  512Mb DDR2 SDRAM
Download  38 Pages
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制造商  HYNIX [Hynix Semiconductor]
网页  http://www.skhynix.com/kor/main.do
标志 HYNIX - Hynix Semiconductor

HY5PS121621CFP-S6I 数据表(HTML) 11 Page - Hynix Semiconductor

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Rev. 0.8 / Oct. 2007
11
1HY5PS12421C(L)FP-xI
1HY5PS12821C(L)FP-xI
1HY5PS121621C(L)FP-xI
3. AC & DC Operating Conditons
3.1 DC Operating Conditions
3.1.1 Recommended DC Operating Conditions (SSTL_1.8)
3.1.2 ODT DC electrical characteristics
Symbol
Parameter
Rating
Units
Notes
Min.
Typ.
Max.
VDD
Supply Voltage
1.7
1.8
1.9
V
1
VDDL
Supply Voltage for DLL
1.7
1.8
1.9
V
1,2
VDDQ
Supply Voltage for Output
1.7
1.8
1.9
V
1,2
VREF
Input Reference Voltage
0.49*VDDQ
0.50*VDDQ
0.51*VDDQ
mV
3,4
VTT
Termination Voltage
VREF-0.04
VREF
VREF+0.04
V
5
1. Min. Typ. and Max. values increase by 100mV for C3(DDR2-533 3-3-3) speed option.
2. VDDQ tracks with VDD,VDDL tracks with VDD. AC parameters are measured with VDD,VDDQ and VDD.
3. The value of VREF may be selected by the user to provide optimum noise margin in the system. Typically the
value of VREF is expected to be about 0.5 x VDDQ of the transmitting device and VREF is expected to track vari-
ations in VDDQ
4. Peak to peak ac noise on VREF may not exceed +/-2% VREF (dc).
5. VTT of transmitting device must track VREF of receiving device.
PARAMETER/CONDITION
SYMBOL
MIN NOM MAX UNITS NOTES
Rtt effective impedance value for EMRS(A6,A2)=0,1; 75 ohm
Rtt1(eff)
60
75
90
ohm
1
Rtt effective impedance value for EMRS(A6,A2)=1,0; 150 ohm Rtt2(eff)
120
150
180
ohm
1
Rtt effective impedance value for EMRS(A6,A2)=1,1; 50 ohm
Rtt3(eff)
40
50
60
ohm
1
Deviation of VM with respect to VDDQ/2
delta VM
-6
+6
%
1
Note:
1. Test condition for Rtt measurements
Measurement Definition for Rtt(eff): Apply VIH (ac) and VIL (ac) to test pin separately, then measure current I(VIH
(ac)) and I(VIL(ac)) respectively. VIH (ac), VIL (ac), and VDDQ values defined in SSTL_18
Measurement Definition for VM : Measurement Voltage at test pin(mid point) with no load.
Rtt(eff) =
V
IH (ac) - VIL (ac)
I(V
IH (ac)) - I(VIL (ac))
delta VM =
2 x Vm
VDDQ
x 100%
- 1


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