JRC NSVS1150 User Manual

NSVS1150 Oct. 2004
Application
Electrical Specification: (Table 1) The device characteristics are measured in the circuit shown in Fig.2.
Table 1. Electrical Specifications (@25[ºC ]) Item Spec. Typ. Center frequency Absolute frequency - 315.100MHz Tolerance from 315.100MHz - ±50kHz Insertion Loss @Minimum Loss 1.0dB max. ­Temperature Stability Turnover Temperature - 33 ºC Temperature Coefficient - -0.040 ppm/ºC DC Insulation Resistance between any two terminals 1.0M ohm min. ­RF Equivalent Motional Resistance (RM) - 19.0 ohm RLC Model (fig.1) Motional Inductance (LM) - 38.275 μH Motional Capacitance (CM) - 6.670 fF Shunt Static Capacitance (C0) - 3.40 pF
Fig.1 RF Equivalent RLC Model
Mechanical Specifications: (Fig.3) Package is designed as small as 3.0x3.0x1.15[mm
Notice:
This part is electrostatic discharge sensitive and may be damaged by improper handling.
315.10MHz Resonator
CM LM RM
JRC STW RESONATOR
NSVS1150
Maximum Rating: (Table 2)
Table2. Maximum Ratings Item Rating Maximum Input Power +5dBm
Communications Equipment Division
Communications Equipment Marketing Department
10-1, Nishi-Shinjuku 6-chome, Shinjuku-ku,
http://www.jrc.co.jp/jp/product/device/saw/index.html
http://www.jrc.co.jp/eng/product/saw/index.html
Operating Temperature Range -20~+60ºC Storage Temperature -30~+85ºC
3
] for SMD (Surface Mount Device) type.
Tokyo, 160-8328 Japan
Tel. +81 3-3348-3845
Fax. +81 3-3348-3935
(Japanese)
(English)
2
NSVS1150 Oct. 2004
IN 50
1
2 34
SAW
6 5
OUT 50
(a)
Fig.2 Measuring circuit
3. 0±0. 15
(b)
3. 0±0. 15
4X1
(c)
(1)
JB
3
2
1. 15±0. 15
(2)
(1.80)
(0.6)
Marking (1) Lot Number (a) Year (b) Month *Oct.--- X
(0.25)
4
[2x]
(0.6)
5
Nov.--- Y Dec.--- Z (c) Date *1-9--- 0 10-19--- 1 20-31--- 2 (2) Part Number Mark
1
(0.45)
Fig.3 Package dimensions (in mm)
3.8
0.93
(0. 75)
[4x]
6
[4x]
(0.53)
Pin no. Connection
1 GND 2 IN/OUT 3 GND 4 GND 5 OUT/IN 6 GND
2.2
1.15
0.6
3.8
1.15
0.93
Fig.4 Desirable land area (in mm)
NSVS1150 Oct. 2004
Notice
1. Use this component within operating temperature range. It might not be satisfied with electrical specification without operating temperature range. When it is used less than -20ºC or more than +60ºC, it might be a cause of degradation or destruction of the component. Even if it endures during a short time, it causes degradation of qualification.
2. When soldering iron is used, solder with the temperature at the tip of soldering iron: 350ºC max., the time of soldering: 10 seconds max., the power of soldering iron: 30W max..
3. Notice that the allowed time of soldering with soldering iron is accumulated time, when soldering is repeated.
4. As rapid temperature change for cleaning after reflow soldering might be a cause of destruction clean this component after confirming that temperature of this component goes down to room temperature.
5. Confirm that there are not any influence for qualification to this component in mounting on PCB when this component is cleaned.
6. As it might be a cause of degradation of destruction to apply static electricity to this component, do not apply static electricity or excessive voltage while assembling and measuring. And do not transport this component with bare hand.
Note
1. This specification specifies the quality of this component as a single unit. Make sure that this component is evaluated and confirmed against this specification when it is mounted to your products.
2. The information contained herein may be changed without prior notice. It is therefore advisable to contact Japan Radio Company before proceeding with the design of equipment incorporating this product.
3. The products are designed to be used with ordinary electronic equipment (data and communications equipment, office equipment, audio-video equipment, measuring instruments, etc). Japan Radio Company does not assume any liability for the case using the products with the application required high reliability or safety extremely (such as space equipment, sea-bottom equipment, medical equipment etc). When intending to use any our product please contact our sales representatives in advance.
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