1460746078-dae43b7f-4fd4-4663-bcea-5ea425bdd38d

1. An electronic apparatus for inputting Chinese characters by utilizing a phonetic input method, comprising:
a plurality of input keys divided into three groups: initial consonant keys, compound vowel keys, and medial vowel keys; and
a switch circuit used for switching the function of some of the initial consonant keys into that of tone keys after an user presses one of the plurality of input keys to determine a first phonetic symbol of a phonetic symbol combination.
2. An electronic apparatus according claim 1, wherein the electronic apparatus comprises 6 of the initial consonant keys, 3 of the compound vowel keys, and 3 of the medial vowel keys.
3. A Chinese input method used for a hand-held electronic device, wherein the hand-held electronic device comprises a plurality of input keys used for inputting phonetic symbols, the input keys are divided into three groups: initial consonant and tone keys, compound vowel keys, and medial vowel keys, and the Chinese input method comprises:
pressing one of the plurality of input keys to input a first phonetic symbol of a Chinese character;
switching the function of some of the initial consonant and tone keys to function as tone keys; and
pressing one of the tone keys to input a tone for the Chinese character.
4. The Chinese input method according to claim 3, wherein there are 6 of the initial consonant and tone keys, and the phonetic symbols represented by the 6 initial consonant and tone keys are respectively the groups of , , , , , and .
5. The Chinese input method according to claim 4, wherein the input keys used for the initial consonant keys are labeled as 1, 2 3, 4, 5, and 6 respectively, in which the initial consonant keys labeled as 1\u02dc5 are switchable to function as the tone keys and represent Ying Ping tone, Yang Ping tone, Shang Sheng tone, Qu sheng tone, and an unstressed tone, respectively.
6. The Chinese input method according to claim 3, wherein there are 3 of the compound vowel keys, and the phonetic symbols of the compound vowel keys are respectively the groups of , , and .
7. The Chinese input method according to claim 3, wherein there are 3 of the medial vowel keys, and the phonetic symbols of the medial vowel keys are respectively , , and .
8. A mobile phone supporting a Chinese input method for sequentially inputting phonetic symbols and a tone of a Chinese character, the mobile phone comprising 12 input keys labeled as 1\u02dc9, 0, #, and *, respectively, for inputting phonetic symbols and tones, comprising:
six initial consonant keys, phonetic symbols of the initial consonant keys being respectively the groups of , , , , , and , wherein numeral keys used for the respective initial consonant keys are labeled as 1\u02dc6, wherein the keys labeled as 1\u02dc5 are switchable to function as tone keys and represent Ying Ping tone, Yang Ping tone, Shang Sheng tone, Qu sheng tone, and an unstressed tone respectively;
three compound vowel keys, phonetic symbols of the compound vowel keys being respectively the groups of , , and and
three medial vowel keys, phonetic symbols of the medial vowel keys being respectively , , and ;
wherein, after an user presses one of the input keys to determine a first phonetic symbol of a phonetic symbol combination, the switch circuit switches the function of some of the initial consonant keys into that of the tone keys, and thereby the user is permitted to input the proper tone key to finish the Chinese character input.

The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.

1. A suspension for a head gimbal assembly, which comprising:
a flexure having a plurality of connection pads to connect with a control system at one end and a plurality of electrical multi-traces at the other end; which comprising:
a tongue to hold the slider;
a suspending portion to suspend the tongue from the flexure; wherein the suspending portion has a narrower width than that of the tongue.
2. The suspension as claimed in claimed 1, wherein the flexure further comprises a top support bar connecting with the suspending portion in its middle area, and two side support bars to connect with the top support bar in its two ends.
3. The suspension as claimed in claimed 2, wherein the top support bar has a width larger than 0.085 mm.
4. The suspension as claimed in claimed 2, wherein the side support bar has a width larger than 0.10 mm.
5. The suspension as claimed in claimed 1, wherein the suspending portion has a width ranged from 0.5 mm to 0.9 mm.
6. The suspension as claimed in claimed 1, wherein the suspension further comprising a load beam having a dimple thereon for supporting the tongue, the dimple is positioned to support the suspending portion.
7. The suspension as claimed in claimed 6, wherein the dimple is located in the coupling edge between the suspending portion and the tongue.
8. The suspension as claimed in claimed 6, wherein the dimple is located in the tongue side in regarding to the coupling edge between the suspending portion and the tongue.
9. The suspension as claimed in claimed 2, wherein the flexure further comprises at least a trace support bridge to support the electrical multi-traces.
10. The suspension as claimed in claimed 9, wherein the trace support bridge is made of PI material.
11. A head gimbal assembly comprising:
a slider;
a suspension to load the slider; wherein the suspension comprising:
a flexure having a plurality of connection pads to connect with a control system at one end and a plurality of electrical multi-traces at the other end; which comprising:
a tongue to hold the slider;
a suspending portion to suspend the tongue from the flexure; wherein the suspending portion has a narrower width than that of the tongue.
12. The head gimbal assembly as claimed in claimed 11, wherein the suspension further comprising a load beam having a dimple thereon for supporting the tongue, the dimple is positioned to support the suspending portion.
13. The head gimbal assembly as claimed in claimed 11, wherein the flexure further comprises a top support bar connecting with the suspending portion in its middle area, and two side support bars to connect with the top support bar in its two ends.
14. The head gimbal assembly as claimed in claimed 13, wherein the top support bar has a width larger than 0.085 mm.
15. The head gimbal assembly as claimed in claimed 13, wherein the side support bar has a width larger than 0.10 mm.
16. The head gimbal assembly as claimed in claimed 12, wherein the dimple is located in the coupling edge between the suspending portion and the tongue.
17. The head gimbal assembly as claimed in claimed 12, wherein the dimple is located in the tongue side in regarding to the coupling edge between the suspending portion and the tongue.
18. The head gimbal assembly as claimed in claimed 12, wherein the flexure comprises at least a trace support bridge to support the electrical multi-traces.
19. The head gimbal assembly as claimed in claimed 18, wherein the bridge is made of PI material.
20. The head gimbal assembly as claimed in claimed 12, wherein the head gimbal assembly further comprises a micro-actuator to hold and displace the slider.
21. A disk drive unit comprising:
a head gimbal assembly;
a drive arm to connect with the head gimbal assembly;
a disk; and
a spindle motor to spin the disk; wherein the head gimbal assembly comprising a slider and a suspension to load the slider; wherein the suspension comprising:
a flexure having a plurality of connection pads to connect with a control system at one end and a plurality of electrical multi-traces at the other end; which comprising:
a tongue to hold the slider;
a suspending portion to suspend the tongue from the flexure; wherein the suspending portion has a narrower width than that of the tongue.